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1

Sanata, Andi, Nasrul Ilminnafik, Muhammad Maulana Asyhar, Hendry Y. Nanlohy, Franciscus Xaverius Kristianta, and Imam Sholahuddin. "Characterization of Combustion in Cylindrical Meso-Scale Combustor with Wire Mesh Flame Holder as Initiation of Energy Source for Future Vehicles." Automotive Experiences 7, no. 1 (2024): 97–110. http://dx.doi.org/10.31603/ae.10715.

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The research aims to analyze and reveal combustion characteristics in a Cylindrical Meso Scale (CMS) Combustor with a wire mesh flame holder as a reference for designing a compact, efficient, and high-density energy source for future vehicles. This experiment analyzes the combustion ’s of a butane gas (C4H10)-air mixture in a cylindrical meso-scale (CMS) combustor with the addition of wire mesh flame holder on the stability of the combustion flame, as initiation of future vehicle energy source. The diameter of the CMS combustor with wire mesh flame holder is varied to give an idea of the effec
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2

Lin, Yu-Liang, Peng-Fei Fang, Xin Wang, Jie Wu, and Guo-Lin Yang. "Experimental and Numerical Study on Tensile Behavior of Double-Twisted Hexagonal Gabion Wire Mesh." Buildings 13, no. 7 (2023): 1657. http://dx.doi.org/10.3390/buildings13071657.

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Double-twisted hexagonal gabion wire mesh is a type of reinforced soil material that is used in gabion retaining walls to stabilize the soil slope in geotechnical engineering. In this study, a series of tensile tests were conducted to investigate the tensile behavior of hexagonal gabion wire mesh. Meanwhile, numerical models of gabion wire mesh were built to investigate the whole tensile loading-strain process. The influence of wire diameter, mesh width, and mesh length on the tensile strength of hexagonal gabion wire mesh were evaluated based on laboratory tests and numerical simulation. The
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3

Li, Chaozhong, and Zhaoyao Zhou. "Charpy Impact Behavior of a Novel Stainless Steel Powder Wire Mesh Composite Porous Plate." Materials 14, no. 11 (2021): 2924. http://dx.doi.org/10.3390/ma14112924.

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A novel powder wire mesh composite porous plate (PWMCPP) was fabricated with 304 stainless steel powders and wire mesh as raw materials by vacuum solid-state sintering process using self-developed composite rolling mill of powder and wire mesh. The effects of different mesh volume fractions, mesh diameters, and sintering temperatures on the pore structure and Charpy impact properties of PWMCPPs were studied. The results show that PWMCPPs have different shapes and sizes of micropores. Impact toughness of PWMCPPs decreases with increasing wire mesh volume fraction, and increases first and then d
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Shyagali, Tarulatha R., Deepak P. Bhayya, Chandralekha B. Urs, and Shashikala Subramaniam. "Finite element study on modification of bracket base and its effects on bond strength." Dental Press Journal of Orthodontics 20, no. 2 (2015): 76–82. http://dx.doi.org/10.1590/2176-9451.20.2.076-082.oar.

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OBJECTIVE: This article aims to analyze the difference in stresses generated in the bracket-cement-tooth system by means of a peel load in single and double-mesh bracket bases using a three-dimensional finite element computer model. MATERIAL AND METHODS: A three-dimensional finite element model of the bracket-cement-tooth system was constructed and consisted of 40,536 bonds and 49,201 finite elements using a commercial mesh generating programmer (ANSYS 7.0). Both single and double-mesh bracket bases were modified by varying the diameter from 100-400 µm progressively, and the spacing between th
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Guan, Gong Shun, Dong Dong Pu, and Yue Ha. "Investigation into Damage of Stainless Steel Mesh/ALPlate Multi-Shock Shield under Hypervelocity AL-Spheres Impact." Key Engineering Materials 525-526 (November 2012): 397–400. http://dx.doi.org/10.4028/www.scientific.net/kem.525-526.397.

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A series of hypervelocity impact tests on stainless steel mesh/aluminum plate multi-shock shield were practiced with a two-stage light gas gun facility. Impact velocity was approximately 4km/s. The diameter of projectiles was 6.4mm. The impact angle was 0°. The fragmentation and dispersal of hypervelocity particle against stainless steel mesh bumper varying with mesh opening size and the wire diameter were investigated. It was found that the mesh wall position, diameter of wire, separation distance arrangement and mesh opening had high influence on the hypervelocity impact characteristic of st
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Li, Hui, Lin Guang Shao, and Yuan Yuan Jiao. "Analysis of Resistance of Current Collector in Packing-Type Microbial Fuel Cell." Applied Mechanics and Materials 721 (December 2014): 834–37. http://dx.doi.org/10.4028/www.scientific.net/amm.721.834.

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To reduce the power loss during producing electricity and to improve the efficiency of electron transfer in microbial fuel cell (MFC), now current collector study provide a new direction lead to how to improve its performance. This study uses Titanium mesh (size in 0.45mm×20mesh) as Packing-Type MFC’s current collector, which contains 57.7% pure titanium. The mesh and wire diameter influence its transfer efficiency, that mesh number affects contact resistance while the wire diameter affects conduction resistance.
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7

Huang, Jing, Youngin Yoo, Seung-Joo Jo, et al. "Analysis of the Characteristics of Mesh with Complex Knitting Patterns for Spaceborne Reflector Antennas." Journal of Electromagnetic Engineering and Science 24, no. 6 (2024): 565–73. https://doi.org/10.26866/jees.2024.6.r.262.

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Metallic mesh with complex woven structures is commonly used as the surface in large aperture spaceborne reflector antennas. To study the electrical properties of mesh surfaces characterized by intricate patterns, this paper presents a method for building models to analyze complex meshes. High Frequency Structure Simulator and Computer Simulation Technology (CST) simulation of the reflection coefficients, with Astrakhan’s formulation as a reference, confirm that applying the wire-grid model in CST using the tetrahedral mesh type provides sufficiently accurate results. Furthermore, the rectangu
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Marchenko, E. S., Yu F. Yasenchuk, S. V. Gunther, et al. "Clinical application of titanium nickelide knitwear based on the quantitative assessment of rheological similarity to soft biological tissues." Issues of Reconstructive and Plastic Surgery 25, no. 2 (2022): 68–81. http://dx.doi.org/10.52581/1814-1471/81/07.

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Samples of metal knitted mesh made of the 40 μm, 60 μm and 90 μm diameter TiNi wires are studied by uniaxial tension to rupture and uniaxial cyclic tension. It was found that the metal knitted TiNi mesh behaves like a hyperelastic material under uniaxial tension in contrast to the superelastic wire from which it is made. Using the rheological models of Gent, Neo-Hookean, Mooney–Rivlin and Bergstrom-Boyce, the calculation of the cyclic tension of the knitted mesh was carried out. The similarity of the mechanical behavior of knitted mesh and biological tissues is shown. Criteria for quantitative
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9

Yuliati, Lilis. "Flame Stability of Gaseous Fuel Combustion inside Meso-Scale Combustor with Double Wire Mesh." Applied Mechanics and Materials 664 (October 2014): 231–35. http://dx.doi.org/10.4028/www.scientific.net/amm.664.231.

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Flame stability of gaseous fuel inside meso-scale combustor with double wire mesh was investigated experimentally. Combustor was made from quartz glass tube with an inner diameter of 3,5 mm and an outer diameter of 5 mm. Two pieces of wire meshes were made from stainless steel inserted at 10 and 13 mm from the end of combustor. Propane was used as fuel in this research. Flame was stabilized in the region between two wire meshes. The flame has a blue luminosity, indicate no soot formation condition. However, the second wire mesh and combustor wall has red luminousity at high velocity reactant,
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10

INAGAKI, Ayumu, Naoto WATANABE, and Hidemi YAMADA. "Effect of wire diameter on turbulence intensity of flow passing through the wire mesh." Proceedings of the Fluids engineering conference 2018 (2018): OS5–26. http://dx.doi.org/10.1299/jsmefed.2018.os5-26.

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Zhang, Meng Jie, Ming Hua He, Ke Gui Xin, Tian Shen Zhang, and Yuan Ma. "Experimental Study on RC Beams Strengthened by a Novel Large Diameter Pre-stressed Stainless Steel Wire Mesh – Mortar Structure." Applied Mechanics and Materials 256-259 (December 2012): 911–17. http://dx.doi.org/10.4028/www.scientific.net/amm.256-259.911.

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The pre-stressed stainless steel wire mesh (SSWM) –mortar (M) is a pre-stressed laminate structure for structural strengthening and rehabilitation. Pre-stressing the stainless steel wire mesh is the key technology for engineering practice. A jogged anchor is proposed for anchoring large diameter SSWM conveniently. The flexural performances of 5 damaged RC beams strengthened by pre-stressed SSWM-M and one referential RC beam were tested. The experimental results indicates that the large diameter pre-stressed SSWM-M has a better performance in controlling the crack growth, restoring the flexural
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12

Megarsa, Edosa, and Goshu Kenea. "Numerical Investigation on Shear Performance of Reinforced Concrete Beam by Using Ferrocement Composite." Mathematical Problems in Engineering 2022 (April 27, 2022): 1–12. http://dx.doi.org/10.1155/2022/5984177.

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This study presents an extensive analytical investigation of the shear performance of reinforced concrete beams by using ferrocement composite as transverse reinforcement. Nonlinear finite element simulation was conducted in Abaqus 6.14 software package. Fifteen beam models were selected under two-point loading. The main parameters considered includes the diameter, spacing, number of layers of wire mesh, and its combination with stirrups. The results testified that as the diameter and number of layers of wire mesh increased, the ultimate failure load, shear capacity, and stiffness of the model
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Shrirao, Pankaj, Hanumant Jagtap, Pramod Magade, Pitambar Gadhave, and Dnyaneshwar Kamble. "Thermo-hydraulic Analysis of Fluid Flowing Through Circular Pipe with Wire Mesh Inserts having Varying Mesh Porosity." IOP Conference Series: Earth and Environmental Science 1285, no. 1 (2024): 012028. http://dx.doi.org/10.1088/1755-1315/1285/1/012028.

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Abstract The experimental investigation was made to analysis the rate of heat transfer of fluid flowing through a heat exchanger with varying wire-mesh porosity inserts. The Nusselt number (Nu), friction factor (f), and overall heat transfer rate (Q) were evaluated using experiments. Three different wire mesh inserts of square, hexagonal and diamond porosity were examined. The SS 316 stainless wire mesh with a porosity of 9 pores per inch (PPI) were inserted normal to the flow field with a pitch distance of 5 cm for each shape of wire mesh. The experiments were conducted on test rig with air a
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14

Hadiningrat, Mahendra Satria. "Analisis Pengaruh Diameter Kawat terhadap Distribusi Kapasitansi dari Wire Mesh Sensor Tomography menggunakan Convolutional Neural Network." Fountain of Informatics Journal 7, no. 3 (2023): 12–16. http://dx.doi.org/10.21111/fij.v7i3.9442.

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AbstrakWire Mesh Sensor (WMS) adalah sensor berbasis tomografi yang menghasilkan gambar distribusi aliran fluida. Citra distribusi merupakan pola distribusi kapasitansi yang diukur dengan elektroda sensor. Dari hasil simulasi dilakukan analisis terhadap pola sebaran potensial listrik untuk mengetahui karakteristik potensial listrik dari sistem WMS yang dimodelkan. Ditemukan ada perbedaan parameter berupa variasi jenis larutan yang dapat mempengaruhi distribusi potensial listrik. Hal ini disebabkan adanya perbedaan nilai konstanta dielektrik masing-masing jenis larutan. Kinerja sistem WMS dalam
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15

G, Trilok, Kurma Eshwar Sai Srinivas, Devika Harikrishnan, Gnanasekaran N, and Moghtada Mobedi. "Correlations and Numerical Modeling of Stacked Woven Wire-Mesh Porous Media for Heat Exchange Applications." Energies 15, no. 7 (2022): 2371. http://dx.doi.org/10.3390/en15072371.

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Metal foams have gained attention due to their heat transfer augmenting capabilities. In the literature, correlations describing relations among their morphological characteristics have successfully been established and well discussed. However, collective expressions that categorize stacked wire mesh based on their morphology and thermo-hydraulic expressions required for numerical modeling are less explored in the literature. In the present study, cross relations among the morphological characteristics of stacked wire-mesh were arrived at based on mesh-size, wire diameter and stacking type, wh
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16

Chen, Xing, Yunfei Li, Kuixun Yuan, Risheng Chen, and Zhizhong Zhang. "Behavior of ions from medium-density plasma in electric field created by plate–grid–plate geometry." AIP Advances 12, no. 4 (2022): 045316. http://dx.doi.org/10.1063/5.0087501.

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The behavior of the ions from a medium-density plasma in an electric field created by the plate–grid–plate geometry was simulated with a two-dimensional one-fluid model in which electrons are assumed to be in thermal equilibrium, and the accuracy of the model was verified by comparing with other research results. The results show that the wire mesh parameters of the grid, including the wire mesh diameter and the spacing between the two wires of the grid, have an important influence on the ion extraction time and the ion collection ratio of the cathode plate. The blocking rate of the grid obtai
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17

KANAI, Taizo, Masahiro FURUYA, Takahiro ARAI, Kenetsu SHIRAKAWA, Yoshihisa NISHI, and Nobuyuki UEDA. "ICONE19-44020 Multi-dimensional Two-Phase Flow Measurements in a Large-Diameter Pipe Using Wire-Mesh Sensor." Proceedings of the International Conference on Nuclear Engineering (ICONE) 2011.19 (2011): _ICONE1944. http://dx.doi.org/10.1299/jsmeicone.2011.19._icone1944_12.

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18

Kazam, Hasnain, Syed Saqib Mehboob, and Matiullah -. "Enhancing Shear Strength in RC Beams: A Synergistic Approach with Steel Chips and Wire Mesh." Jurnal Kejuruteraan 37, no. 1 (2025): 167–77. https://doi.org/10.17576/jkukm-2025-37(1)-11.

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This study explores a hybrid approach aimed at enhancing the shear performance of reinforced concrete (RC) beams. The methodology involves the incorporation of industrial steel chips having length 75mm to 100mm in combination with varying widths of wire mesh reinforcement. Comprehensive shear tests were conducted on precisely prepared beam specimens measuring 150mm×150mm×900mm to assess shear strength, crack patterns, and failure modes. The study induces steel chips into the concrete mix at a rate of 0.9% by weight and comprises eight sets of specimens,including a control sample without any me
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19

Guan, Gong Shun, Bao Jun Bang, and Rui Tao Niu. "Investigation into Damage of AL-Mesh Bumper under Hypervelocity AL-Spheres Impact." Key Engineering Materials 488-489 (September 2011): 202–5. http://dx.doi.org/10.4028/www.scientific.net/kem.488-489.202.

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The aluminum mesh/plate bumper was designed by improving on AL-Whipple shield, and a series of hypervelocity impact tests were practiced with a two-stage light gas gun facility at Harbin Institute of Technology. Impact velocities of Al-spheres were varied between 3.5km/s and 5km/s. The diameters of projectiles were 3.97mm and 6.35mm respectively. The hypervelocity impact characteristics of 5052 aluminum alloy mesh bumper were studied through hypervelocity impact on aluminum mesh/plate bumpers. The fragmentation and dispersal of hypervelocity particle against mesh bumpers varying with material
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20

AHIAKWO, Abraham. "EFFECT OF MESH COUNT AND PERCENTAGE OPEN AREA ON THROUGHPUT CAPACITY IN DEVELOPING CASSAVA CAKE SCREENING MEDIUM." Nigerian Journal of Engineering 30, no. 3 (2023): 22. http://dx.doi.org/10.5455/nje.2023.30.03.04.

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The screen is a medium for breaking cassava cake lump into fine particles before the heating process that turns the fine particles into garri. The objective of this research is ascertain the effect of mesh count and percentage open area on throughput capacity of cassava cake screening medium, with respect to two methods of development. To this end, six screens each of diameters 1.5, 3, 4.5, 6, 7.5 and 9mm were developed using perforated and the traditional woven wire mesh method respectively. Measurement was made of the mesh count and open area of the screens and screening was done with 2kg of
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Ćwirko, Marcin, and Małgorzata Jastrzębska. "Behaviour of the Steel Welded Grid during a Simplified Pullout Test in Fine Sand." Applied Sciences 11, no. 19 (2021): 9147. http://dx.doi.org/10.3390/app11199147.

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This study considered the possibility of using steel gabion baskets made of welded mesh for a soil-strengthening function. Examples of such applications are known for meshes made of wires with diameters from 6.3 to 12.7 mm and mesh openings from 125 to 225 mm. In the case of a welded grid, the pulling resistance of fine-grained soil consists of two factors: frictional resistance and bearing resistance. Therefore, for the purposes of this issue, a simplified laboratory pullout test was carried out with four types of welded steel grid (common in Europe) embedded in the fine sand. The geometry of
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Karim, G. A., and M. G. Kibrya. "Variations of the Lean Blowout Limits of a Homogeneous Methane-Air Stream in the Presence of a Metallic Wire Mesh." Journal of Engineering for Gas Turbines and Power 108, no. 3 (1986): 446–49. http://dx.doi.org/10.1115/1.3239927.

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The combustion of a homogeneous lean methane-air stream was investigated in a vertical, cylindrical combustor of 150 mm diameter in the presence of a metallic wire mesh. Eight metallic materials were deposited in turn onto a stainless steel wire mesh by electroplating. The potential improvement in the lean blowout limit due to catalytic effects was established separately from those due to the thermal and aerodynamic contributions of the wire mesh and its holder ring. The effectiveness of the various metallic surfaces tested in the lean combustion of methane was in the following descending orde
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Chung, Ji Hong, Dong Kee Sohn, and Han Seo Ko. "Study on the Influence of Central Hole Diameter in a Wire Mesh Electrode on Ionic Wind Characteristics." Micromachines 14, no. 8 (2023): 1614. http://dx.doi.org/10.3390/mi14081614.

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Ionic wind, which is generated by a corona discharge, is a promising field that offers significant advantages by directly converting electrical energy into kinetic energy. Because of the electrical characteristics of ionic wind, most studies aiming to improve the performance of ionic wind generators have focused on modifying the geometry of electrode configurations. A mesh-type electrode is one of the electrodes used as a collecting electrode in an ionic wind generator. Using a mesh electrode results in decreased momentum of the ionic wind and increased pressure drop due to frictional loss of
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Wijatmiko, Indradi, Ari Wibowo, and Christin Remayanti Nainggolan. "Characteristics of PVC Coated Welded Wire Mesh Fiber Reinforced Concrete." Civil Engineering Dimension 21, no. 1 (2019): 50–56. http://dx.doi.org/10.9744/ced.21.1.50-56.

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Fiber concrete containing fibrous materials is manufactured to improve the low tensile strength of concrete and its brittle properties. In this research, fiber obtained from PVC coated welded wire mesh with diameter of 1 mm was utilized. There were several variations of fiber concrete samples made. Samples were subjected to tensile and compressive strength tests. The elastic modulus was measured by using extensometer and strain-stress gauges. The results show that the incorporation of PVC coated welded wire mesh increases the tensile strength of concrete, when the percentage of the fiber is 1.
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Conides, Alexis, Efthimia Cotou, Dimitris Klaoudatos, and Branko Glamuzina. "An Innovative Metal–Synthetic Hybrid Thread for the Construction of Aquaculture Nets." Journal of Marine Science and Engineering 13, no. 8 (2025): 1384. https://doi.org/10.3390/jmse13081384.

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Based on the experience gained worldwide from potential solutions to the fouling problem of fisheries and aquaculture infrastructure, we attempted to design, construct and test the antifouling efficiency of a new hybrid filament created from non-laminated copper wire braided with synthetic fibers made of Dyneema. The design involved the creation of a hybrid twine substituting a percentage of the synthetic fibers with 0.1–0.15 mm diameter copper wire at 5%, 10%, 20% and 40% levels. There is limited information in the international literature for comparison with our results, since there has neve
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Cheng, He Zhang, Peng Wang, and Guang Ping Zou. "Research on Static Mechanical Properties of Metal Rubber by Wire Mesh." Applied Mechanics and Materials 633-634 (September 2014): 238–41. http://dx.doi.org/10.4028/www.scientific.net/amm.633-634.238.

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Metal rubber material is a mesh structure woven by wire (metal rubber called MR), a new type of isolated-vibrated material with elastic rubber property [1, 2]. Static mechanical properties of MR are discussed in this paper. First of all, this paper introduces load-displacement function of micro element spring. And a constitutive model of MR is proposed. Secondly, this paper discusses how different parameters such as wire diameter and relative density influence energy dissipation. Also, compared the theoretical results with the experimental results in order to test the accuracy of the theory.
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Niu, Xiangdong, Kepeng Hou, and Huafen Sun. "A New Method for Calculating Anchor Mesh Parameters Based on the Energy Absorption Mechanism of Helmet." Advances in Civil Engineering 2023 (June 30, 2023): 1–6. http://dx.doi.org/10.1155/2023/7506467.

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Considering the pressure-bearing mechanism of the safety helmet and as an anchored net is subjected to the surrounding rock mass, researchers should regard the support force as a safety criterion. Thus, a method for calculating the anchored mesh support parameters (mesh width and reinforcement diameter) is proposed in this paper. The method can provide a theoretical basis for selecting the technical parameters of an anchored mesh in active support in underground engineering. Calculation results show that a strong power relationship exists between the mesh width a of the anchor net and the dist
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Granados-Ortiz, Francisco-Javier, Martínez Alejandro López, Joaquin Ortega-Casanova, and Choi-Hong Lai. "Semi-analytical calculation of pore-related parameters of wire/woven screens." International Journal of Mechanical Sciences 242 (December 1, 2022): 107972. https://doi.org/10.1016/j.ijmecsci.2022.107972.

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Wire/woven screens have a wide range of applications, from being used as simple mechanical screening device to nanoscreen wicking with nanofluids. The vast number of applications makes important to study these screens with high accuracy, to reduce errors in characterisation and performance predictions. Previous works to date focused either on the study of these screens as a two-dimensional surface (e.g. in ventilation openings as insect-proof screens) or as three-dimensional structures under important assumptions (symmetric mesh, thickness of two times their diameter, linear evolution of
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Catur, A. D., P. D. Setyawan, Y. A. Padang, I. M. Nuarsa, and A. A. A. Triadi. "Kuat lentur dan berat jenis beton ringan selular diperkuat serat kain pakaian bekas." Dinamika Teknik Mesin 12, no. 1 (2022): 8. http://dx.doi.org/10.29303/dtm.v12i1.497.

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Cellular lightweight concrete has an advantage in its specific gravity, with the presence of foam making it lighter. However, the presence of foam reduces its strength. Utilization of used clothing fibers is carried out to increase the flexural strength of cellular lightweight concrete and is useful for reducing environmental loads. Used clothing fibers are added to the cellular lightweight concrete in the amount of 0%; 0.3%; 0.6%; 0.9% and 1.2% of weight. Cellular lightweight concrete is also reinforced with steel wire mesh with a wire diameter of 0.5 mm with a side length of ¼ inch x ¼ inch.
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Atiko Putri, Ni'mah Izati, David Malaiholo, and Septiana Widi Astuti. "EVALUATION OF REMAINING MATERIALS FOR RAILWAY CONSTRUCTION PROJECT." Indonesian Journal of Engineering and Science 5, no. 2 (2024): 055–65. http://dx.doi.org/10.51630/ijes.v5i2.141.

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This study investigates residual materials in the railway construction project. The Fishbone Diagram method identifies factors causing material waste, while the Waste Hierarchy guides material management by contractors. The remaining materials include spun piles, ballast stopper cover plates, wiremesh, concrete pad anchoring systems, and PVC pipes. The quantities are 1306.5 meters of spun pile, 86 ballast stopper cover plates, 4 wire mesh sheets, and a concrete pad anchoring system with 160 e-clips, 160 insulators, 80 rail pads, and 7 pieces of 6-inch diameter PVC pipe, along with 13 pieces of
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Cai, Yong Qing, Xiao Xiang Yang, and Bing Wei He. "Effect of Surface Texture Molded by a Stainless Steel Mesh on the Invisalign Material Friction Coefficient." Advanced Materials Research 1090 (February 2015): 55–60. http://dx.doi.org/10.4028/www.scientific.net/amr.1090.55.

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Objective: This study aimed to evaluate the effect of surface texture mold by stainless steel (SS) mesh on Invisalign material friction coefficient. Materials and methods: Ten kinds of SS mesh were used to mold surface texture on Invisalign material. Experiments were conducted using a zirconia ball that slid against Invisalign material plates with different surface textures. In the experiments, the coefficients of friction under normal loads of 100, 200, and 300 g under dry and artificial saliva conditions were recorded. Results: The coefficient of friction was relative to the pore size and wi
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Rashid, Muhammad Harunur, Zahangir Alam, Firoz Mahmud, and M. S. Anita. "Durability and Performance of Ferrocement Infill Wall Panel." Civil Engineering Journal 5, no. 6 (2019): 1205–13. http://dx.doi.org/10.28991/cej-2019-03091325.

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Ferrocement is composed of cement mortar reinforced with small diameter closely spaced steel wire mesh to form a thin section conforming high performance of serviceability. The present study investigates the performance of ferrocement panels focused on the mechanical properties, water absorption and durability. A series of specimens were cast with single and double mesh layers. Flexural performance was carried out following sixty days in temperature cycle and in corrosion cell. These results was compared with the controlled sample. The test results shows that the flexural strength performance
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Szymborski, Tomasz, Evelin Witkowska, Krzysztof Niciński, et al. "Steel Wire Mesh as a Thermally Resistant SERS Substrate." Nanomaterials 8, no. 9 (2018): 663. http://dx.doi.org/10.3390/nano8090663.

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In this paper, we present novel type of Surface-enhanced Raman spectroscopy (SERS) platform, based on stainless steel wire mesh (SSWM) covered with thin silver layer. The stainless steel wire mesh, typically used in chemical engineering industry, is a cheap and versatile substrate for SERS platforms. SSWM consists of multiple steel wires with diameter of tens of micrometers, which gives periodical structure and high stiffness. Moreover, stainless steel provides great resistance towards organic and inorganic solvents and provides excellent heat dissipation. It is worth mentioning that continuou
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Ayeni, O. D., Q. A. Onilude, P. J. Adekola, et al. "Effect of Light Intensities on Growth Performance of Tetrapleura tetraptera Seedlings Schum. (Thonn.)." Journal of Applied Sciences and Environmental Management 25, no. 1 (2021): 93–97. http://dx.doi.org/10.4314/jasem.v25i1.13.

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The study assessed the effect of varying light intensities and optimum percentage of sunlight favourable for raising Tetrapleura tetraptera seedlings. The light intensity was measured through photometer. The experiment was subjected to a control without wire mesh(T1) and three other treatments (T2, T3 and T4) covered with different layers of black wire mesh with 99.5%, 75%, 49.8% and 25% light intensities respectively. Each of the treatments was replicated six times in a completely randomized design. The plant height, leaf production and stem diameter were all monitored for 12 weeks. Analysis
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R., Manojguru, and Ravindranath Chandra R. "EXPERIMENTAL STUDY ON HIGH TEMPERATURE MESH CONFINED CONCRETE." International Journal of Engineering Research and Modern Education Special Issue, April 2017 (2017): 242–47. https://doi.org/10.5281/zenodo.579566.

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This paper presents a fire accidents are happening in most of the buildings which causes heavy damage to the buildings and result in loss of durability. In order to avoid the consequences an experimental investigation is carried out using mesh confinement concrete. Concrete is a non-combustible material and has a slow rate of heat transfer. High temperature can cause the formation of cracks. These cracks resembles like any other cracks propagation may eventually cause loss of structural collapse and shorting of span life. One mighty problem which occurs when concrete is exposed to fire is spal
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Manikandhan, Mr KU, and M. Thiyaga Bala. "Experimental Investigation on Flexural Behaviour of Ferrocement Laminates Using Different Forms of Meshes." International Journal for Research in Applied Science and Engineering Technology 10, no. 12 (2022): 1942–46. http://dx.doi.org/10.22214/ijraset.2022.48174.

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Abstract: The present study describes the results of testing ferrocement panels reinforced with of different types of meshes. The main objective of the study was to investigate the effect of different types of meshes as reinforcement in thin mortar specimen and select the best suitable mesh for further work. Types of meshes were used expanded metal mesh, galvanized woven mesh and welded mesh has a diameter of 1.58 mm. Size of openings are 20x35 mm, 10x10 mm and 15x15 mm. Panels of a size of 560x150x35 mm were reinforced with three layers of wire mesh. Panels were casted with mortar of mix prop
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Study, The Behaviour Bending Phenomenon of Ferrocement Slab Panels A. Review, Kumar Ajay, and Nitin Thakur Er. "10.31142/ijtsrd14255." International Journal of Trend in Scientific Research and Development 2, no. 4 (2018): 1222–25. https://doi.org/10.31142/ijtsrd14255.

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The fibrocement is a special type of reinforced concrete used for thin elements. It is made by cement micro concrete reinforced by continuous mesh layers from small diameter wires. The ferrocement is a building material with evident advantages for thin walled members and spatial structures for this type of material. In this chapter describes the behaviour of ferrocement, advantages or disadvantages of ferrocement, quality and uses of ferrocement, objective of the thesis and organization of thesis. Ferrocement serve as an innovative and low cost construction material. It has proven itself as an
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Ajay, Kumar, and Nitin Thakur Er. "Study The Behaviour Bending Phenomenon of Ferrocement Slab Panels." International Journal of Trend in Scientific Research and Development 2, no. 4 (2019): 1226–33. https://doi.org/10.31142/ijtsrd14258.

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The fibrocement is a special type of reinforced concrete used for thin elements. It is made by cement micro concrete reinforced by continuous mesh layers from small diameter wires. The ferrocement is a building material with evident advantages for thin walled members and spatial structures for this type of material. In this chapter describes the behaviour of ferrocement, advantages or disadvantages of ferrocement, quality and uses of ferrocement, objective of the thesis and organization of thesis. Ferrocement serve as an innovative and low cost construction material. It has proven itself as an
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Li, Peiwen, Yasuo Kawaguchi, Hisashi Daisaka, Akira Yabe, Koichi Hishida, and Masanobu Maeda. "Heat Transfer Enhancement to the Drag-Reducing Flow of Surfactant Solution in Two-Dimensional Channel With Mesh-Screen Inserts at the Inlet." Journal of Heat Transfer 123, no. 4 (2000): 779–89. http://dx.doi.org/10.1115/1.1370518.

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The heat transfer enhancement of drag-reducing flow of high Reynolds number in a two-dimensional channel by utilizing the characteristic of fluid was studied. As the networks of rod-like micelles in surfactant solution are responsible for suppressing the turbulence in drag-reducing flow, destruction of the structure of networks was considered to eliminate the drag reduction and prevent heat transfer deterioration. By inserting wire mesh in the channel against the flow, the drag-reducing function of the micellar structure in surfactant aqueous solution was successfully switched off. With the Re
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Dong, Yuming, Haitao Luo, Yuxin Li, and Dehui Li. "Simulation study on the passability of the soft lunar surface of the wire screen wheel." Journal of Physics: Conference Series 2951, no. 1 (2025): 012083. https://doi.org/10.1088/1742-6596/2951/1/012083.

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Abstract In order to evaluate the passing performance of the wire mesh screen wheel designed for the lunar mobile platform, a beam element co-node method was proposed to build the finite element model of the wheel net according to its special wheel net structure. The wheel net model built by the beam element co-node method not only ensures the mesh quality and wire cross-section characteristics, but also greatly reduces the number of meshes compared with the direct meshing of the model. The lunar soil discrete element particle model and the screen wheel finite element model were set up in LS-D
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Singh, Sanjay, N. Nain, and S. Tripathi. "Influence of sieve sizes for media preparation on growth and seedling quality of tropical trees in root trainers." Indian Journal of Forestry 34, no. 4 (2011): 423–26. http://dx.doi.org/10.54207/bsmps1000-2011-jbvd12.

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Experiments were conducted employing six different types of sieve sizes of wire-mesh (5.8 mm2 or 3 square hole cm-2, 4 mm2 or 6 square hole cm-2, 3.3 mm2 or 9 square hole cm-2, 3 mm2 or 11 square hole cm-2, 2.5 mm2 or 16 square hole cm-2 and 2 mm2 or 24 square hole cm-2) for preparation of growing media to grow planting stock of four tropical broadleaved forestry species Acacia catechu, Azadirachta indica, Phyllanthus emblica and Pongamia pinnata in root trainers. Morphological (height and root collar diameter), biomass (shoot biomass, root biomass and total biomass) and seedling quality param
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42

Raiyani, Sunil, Paresh Patel, and S. Suriya Prakash. "Effectiveness of Partial Wrapping of Stainless-Steel Wire Mesh on Compression Behavior of Concrete Cylinders." Frattura ed Integrità Strutturale 18, no. 69 (2024): 71–88. http://dx.doi.org/10.3221/igf-esis.69.06.

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Partial confinement can provide sufficient reinforcement to enhance the compressive strength and ductility of concrete with lesser confining material. This paper presents the results of an axial compression test conducted on eighteen plain concrete cylinders of 150 mm diameter and 300 mm height partially confined with a Stainless-Steel Wire Mesh (SSWM) strip of different widths. The study included two specimens without wrapping, two fully wrapped specimens, and others wrapped with two SSWM strips of varying widths at both the ends of concrete cylinder. The strain on SSWM up to failure is measu
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Al-Hadithi, Abdulkader Ismail, Khalil Ibrahim Aziz, and Mohammed Tarrad Nawar Al-Dulaimi. "Behavior of Ferro-Cement Slabs Modified by Polymer under Low Velocity Impact." Advanced Materials Research 925 (April 2014): 3–7. http://dx.doi.org/10.4028/www.scientific.net/amr.925.3.

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Ferro-cement is a type of thin reinforced concrete made of cement-sand mortar mixture with closely spaced of relatively small diameter wire meshes. The main aim of this work was to study investigate the behavior of Ferro-cement slabs under impact loading. A total of 36 Ferro-cement slabs were constructed and tested under low velocity impact, The main parameter considered in the present investigation was number of wire mesh layers, content of (SBR) polymer and height of falling mass (falling velocity). A special testing rig was used to achieve the impact forces using a falling mass (1300 gm ste
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Guan, Gong Shun, and Rui Tao Niu. "Numerical Simulation of Hypervelocity Impact on Mesh Bumper Causing Fragmentation and Ejection." Key Engineering Materials 525-526 (November 2012): 401–4. http://dx.doi.org/10.4028/www.scientific.net/kem.525-526.401.

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In order to study the fragmentation of projectile and ejection of debris clouds caused by hypervelocity impacting mesh bumper, simulation of aluminum sphere projectile hypervelocity normal impacting aluminum mesh bumper was practiced with SPH arithmetic of LS-DYNA soft. The diameter of projectile was 4mm. Impact velocities of aluminum spheres were varied between 2.2km/s and 6.2km/s. The impact angle was 0°. The relationship between the debris clouds characteristic of projectile and the impact position on aluminum mesh bumper was studied. The effect on fragmentation of projectile from different
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Hájek, Jiří, Milan Malý, Ondřej Hájek, Ondřej Cejpek, Patrik Bouchal, and Miroslav Jícha. "Liquid dispersion in inner cavity of rotating packed bed." EPJ Web of Conferences 299 (2024): 01012. http://dx.doi.org/10.1051/epjconf/202429901012.

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Majority of power producing, and industrial processes generate a significant amount of carbon dioxide (CO2). To reduce their CO2 emissions, CCS (carbon capture and storage) can be used. One of the ways for CO2 capture is rotating packed bed (RPB), which operates on a similar principle as an absorption tower. However, in the RPB, mass transfer rate is driven by a centrifugal force, hence the RPB could be much smaller than the absorption tower, which relay on gravitational force. Also, the internal design of the RPB could affect efficiency of CO2 capture. There are several types of packing desig
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Danladi, A., and G. Jerome. "DESIGN, CONSTRUCTION AND IMPLEMENTATION OF A 3 METER SATELLITE DISH ANTENNA (PARABOLOID REFLECTORS)." Continental J. Engineering Sciences 3 (July 22, 2008): 37–41. https://doi.org/10.5281/zenodo.833669.

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<em>The objective of this work is to design, construct and implement a 3m diameter paraboloid reflector with a frequency allocation of 3GHZ and above. The design was achieved with the help of wire mesh, aluminum span, mild steel, aluminum foil and glass fiber. The designed model was able to pick up signal from Arabian Satellite CNN, Adamawa Broadcasting television station and other channels with the help of low noise amplification block (LNB)</em>
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Zou, Xuyan, Xiyuan Zhang, Ziyuan Li, and Juntao Zhu. "Experimental Study on Lap-Spliced Performance of High-Strength Stainless Steel Wire Mesh in Engineering Cementitious Composites." Materials 16, no. 11 (2023): 3959. http://dx.doi.org/10.3390/ma16113959.

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To investigate the mechanical properties of high-strength stainless steel wire mesh (HSSSWM) in Engineering Cementitious Composites (ECCs) and determine a reasonable lap length, a total of 39 specimens in 13 sets were designed and fabricated by considering the diameter of the steel strand, spacing of the transverse steel strand, and lap length. The lap-spliced performance of the specimens was tested through a pull-out test. The results revealed two failure modes in the lap connection of steel wire mesh in ECCs: pull-out failure and rupture failure. The spacing of the transverse steel strand ha
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Zhao, Feng Hua, Yong Sheng Qi, and Y. Y. Zhou. "Nonlinear Finite Element Analysis of FQQB." Applied Mechanics and Materials 438-439 (October 2013): 639–43. http://dx.doi.org/10.4028/www.scientific.net/amm.438-439.639.

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The mechanical properties of the whole wall and the wall with openings under vertical loads are analyzed by nonlinearity finite element method (NFEM). The results show that the stress of steel wire has a direct relationship with the load form. The inclined plug wire mainly carries the stress caused by load differences between the two sides of concrete, it makes both sides of concrete work together better. As the diameter of the inclined plug wire increased, the effects on the FQQB mechanical properties become greater, wire mesh stress on both sides decrease, and the vertical displacement of FQ
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Fischer, Gunther, Sotiria C. Apostolopoulou, Spyros Rammos, Maria Kiaffas, and Hans Heiner Kramer. "Transcatheter closure of coronary arterial fistulas using the new Amplatzer® vascular plug." Cardiology in the Young 17, no. 3 (2007): 283–87. http://dx.doi.org/10.1017/s1047951107000510.

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We report our initial experience in using the Amplatzer® vascular plug for closure of coronary arterial fistulas. The self-expanding, cylindrical, device is made from Nitinol wire mesh, and is available from 4 to 16 millimetres in diameter. We have now used the device to close fistulas in 3 patients, aged from 3 to 14 years, who presented with ratios of pulmonary-to-systemic flow from 1.5 to 3. In 2 patients, fistulas arising from the proximal right and left coronary arteries, with maximal diameters of 9 and 10 millimetres, respectively, had their narrowest diameter, of 6 millimetres, proximal
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Zou, Xuyan, Yawen Liu, Juntao Zhu, Ke Li, and Jinglong Cao. "Analytical and Numerical Modeling of the Pullout Behavior between High-Strength Stainless Steel Wire Mesh and ECC." Materials 15, no. 16 (2022): 5649. http://dx.doi.org/10.3390/ma15165649.

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Bond behavior is a key factor in the engineering application of composite material. This study focuses on the constitutive model of the bond behavior between high-strength stainless steel strand mesh and Engineered Cementitious Composites (ECC). In this paper, the effects of strand diameter, bond length and transverse steel strand spacing on bond behavior were studied based on 51 direct pullout tests. Experimental results showed that the high-strength stainless steel strand mesh provided specimens an excellent ductility. Based on the experimental data, the existing bond–slip model was revised
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