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Journal articles on the topic 'Polymer-abrasive tools'

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1

BELOTSERKOVSKY, Marat A., Anastasia O. GRISHCHENKO, and Igor I. TARAN. "USING FLAME SPRAYING TECHNOLOGY IN THE MANUFACTURE OF TOOLS WITH ABRASIVE-CONTAINING POLYMER COATING." Mechanics of Machines, Mechanisms and Materials 4, no. 69 (2024): 88–96. https://doi.org/10.46864/1995-0470-2024-4-69-88-96.

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The possibility of forming abrasive-containing coatings based on ultra-high molecular weight polyethylene by flame spraying has been studied. Using the method of differential scanning calorimetry, it is shown that in the process of gas-flame spraying, particles do not reach the temperature range of thermal-oxidative destruction, and the basic structure of UHMWPE is preserved. The dependence of the adhesion strength of abrasive-containing coatings on their cooling rate and the composition of the propane-air mixture has been determined. Spraying modes have been determined for coatings containing
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2

Abrashkevich, Yury, Hrigoriy Machyshyn, Oleksandr Marchenko, and Svitlana Komotska. "Mechanized processing of building equipment by abrasive working bodies." Gіrnichі, budіvelnі, dorozhnі ta melіorativnі mashini, no. 97 (July 29, 2021): 36–46. http://dx.doi.org/10.32347/gbdmm2021.97.0302.

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Carrying out of the clearing operations at carrying out mechanized processing of construction equipment from paints and varnishes, rust, various kinds of pollution belongs to mass labour-consuming operations [1]. To carry out these operations, widespread use of hand-held machines, working bodies that have abrasive wheels and metal brushes. The versatility and versatility of these machines, combined with the correct selection of the desired abrasive work tool, can significantly accelerate and facilitate the performance of cleaning and grinding operations with the desired effect.
 However,
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3

Tamarkin, M. A., Eh Eh Tishchenko, A. V. Verchenko, and V. M. Troitskii. "Formation of surface layer quality under abrasive treatment of polymer-composite materials." Advanced Engineering Research 20, no. 3 (2020): 235–42. http://dx.doi.org/10.23947/2687-1653-2020-20-3-235-242.

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Introduction. The study results of the abrasive processing of parts made of polymer-composite materials are presented. The features of processing polymer composites and the technology of preforming through waterjet cutting are described. The stages of preparation of a part made of polymer-composite material for the “glueing” operation are investigated.Materials and Methods. Dependences for determining the surface roughness under waterjet cutting of polymercomposite material are considered. Research is carried out to achieve the required surface roughness under adhesive bonding of workpieces. T
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4

Kumar S, Santhosh, and Somashekhar S. Hiremath. "Temperature-dependent rheological properties of viscoelastic polymer based flexible abrasive media for finishing process." Proceedings of the Institution of Mechanical Engineers, Part E: Journal of Process Mechanical Engineering 235, no. 4 (2021): 973–85. http://dx.doi.org/10.1177/0954408920987904.

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The objective of the present investigation is to develop and study the thermal and rheological properties of the in-house developed flexible abrasive media. It is a mixer of viscoelastic polymer and plasticizer mixed with micro-abrasive particles, used for removing debris and irregularities present on internal and external complex surfaces used in the aerospace, automotive and medical industries. This paper presents, morphology of the developed abrasive media is captured using the Scanning Electron Microscope (SEM), thermal properties of the abrasive media are studied using Thermo Gravimetric
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Kapłonek, Wojciech, Krzysztof Nadolny, Krzysztof Rokosz, et al. "Internal Cylindrical Grinding Process of INCONEL® Alloy 600 Using Grinding Wheels with Sol–Gel Alumina and a Synthetic Organosilicon Polymer-Based Impregnate." Micromachines 11, no. 2 (2020): 115. http://dx.doi.org/10.3390/mi11020115.

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The development of modern jet engines would not be possible without dynamically developed nickel–chromium-based superalloys, such as INCONEL® The effective abrasive machining of above materials brings with it many problems and challenges, such as intensive clogging of the grinding wheel active surface (GWAS). This extremely unfavorable effect causes a reduction in the cutting ability of the abrasive tool as well as increase to grinding forces and friction in the whole process. The authors of this work demonstrate that introduction of a synthetic organosilicon polymer-based impregnating substan
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6

Pavlo, Tryshyn, Honchar Natalia, Kondratiuk Eduard, and Stepanov Dmytro. "Development of technological restrictions when operating disc polymer-abrasive brushes." Eastern-European Journal of Enterprise Technologies 6, no. 1(108) (2020): 27–33. https://doi.org/10.15587/1729-4061.2020.212820.

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Polymer-abrasive brush rotating tools are increasingly used for finishing operations in automated manufacturing. Given this, studying the process of their fibers’ wear has become important; and such a type of wear as the detachment of a whole fiber at the point of fixing has not been investigated in detail up to now. This phenomenon can lead to the disruption of stable equipment operation and the catastrophic wear of brushes. Therefore, it is a relevant task to search for and identify those limitations that could prevent fibers from detachment. This study involved the disc and cylindrica
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7

Ji, Shi Ming, Xi Zeng, and Ming Sheng Jing. "Soft-Consolidation Abrasives Pneumatic Wheel Technology Oriented to Finishing of High-Hardness Free-Form Surface." Key Engineering Materials 523-524 (November 2012): 149–54. http://dx.doi.org/10.4028/www.scientific.net/kem.523-524.149.

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In order to improve the efficiency of high-hardness laser strengthening mold polishing, especially to the free-form surface, a new precision finishing method based on soft-consolidation abrasives pneumatic wheel is brought forward. The pneumatic wheel is constituded by flexible rubber maxtrix, combined with the robbet control. The abrasives group is bond to the rubber matrix by the polymer binder. In the way, compared with those free abrasives used in other polishing method, the soft-consolidation abrasives can get more stable surpport from nearby polymer to form effective cutting. On the othe
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8

Prajwal, H. V., Wasif Mumtaz Wani, Madhav Murthy, and S. Srinivas. "Machinability and Delamination Studies on Glass Fiber Reinforced Polymer Matrix Composite Cut by Abrasive Water Jet Machine." Solid State Phenomena 305 (June 2020): 122–28. http://dx.doi.org/10.4028/www.scientific.net/ssp.305.122.

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Abrasive water jet machining possesses inherent technological and manufacturing advantages unmatched by most machine tools. They are generally used in automotive, marine and aerospace industries for machining of composites. However, abrasive water jet cutting of GFRP laminates possesses several challenges, such as surface finish and delamination of the cutspecimen. Henceforth, more experimental work is needed to provide sufficient machinability databases for manufacturing industries. This paper presents an experimental study for cutting GFRP laminates. Different AWJM conditions including press
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9

Han, Sheng Chao, Yan Chen, Jiu Hua Xu, and Jing Wen Zhou. "Experimental Study of Tool Wear in Milling Multidirectional CFRP Laminates." Materials Science Forum 770 (October 2013): 276–80. http://dx.doi.org/10.4028/www.scientific.net/msf.770.276.

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This study aims to investigate the wear of coated end mills when milling Carbon fiber reinforced polymer (CFRP) composites. Four different types of end mills are used in the milling experiments to identify the influence of tool geometry and material on tool wear. Cutting forces and wear mechanisms of coated mills are also discussed. Through the contrast experiment, diamond coated multitooth router shows the best performance with the smallest cutting force and the least wear extent under the same cutting parameter. The major failure mechanisms of coated tools are breakthrough of coating, coatin
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10

Kepczak, Norbert, Piotr Zgorniak, Paweł Lajmert, Radoslaw Rosik, and Malgorzata Sikora. "Influence of machining parameters on the polymer concrete milling process." International Journal of Advanced Manufacturing Technology 106, no. 7-8 (2020): 3017–32. http://dx.doi.org/10.1007/s00170-019-04811-x.

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AbstractThe paper examines the wear of end mill cutters, the parameters of a workpiece’s surface layer and the values of cutting forces during the machining of polymer concrete, which is one of the most difficult-to-cut materials. Increased abrasive wear of the active cutting edges is a result of the heterogeneous structure of this material, and it has a negative effect on the cutting process, the durability of the cutting tools as well as the roughness of the workpiece. It is very important to determine the machining parameters for this material from a tool durability and quality of machining
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11

Suzuki, Hirofumi, Minoru Ota, Hiroyuki Kodama, and Tatsuya Furuki. "Special Issue on Abrasive Technology for High-Precision and High-Efficiency Machining of High-Performance Materials." International Journal of Automation Technology 18, no. 2 (2024): 159–60. http://dx.doi.org/10.20965/ijat.2024.p0159.

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The demand for high-precision and high-efficient machining of high-performance materials and components has increased in various industries such as optical, automotive, communication, life sciences, and medical sciences. Certain difficult-to-machine materials can be reliably machined using deterministic precision cutting processes. However, hard and brittle materials such as ceramics, carbides, hardened steel molds, glassy materials, or semiconductor materials, require precision abrasive technologies with super abrasives like diamond, cBN, or new tool materials for machining. However, machinin
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12

Dimov, Yu V., and D. B. Podashev. "Edge quality control system at finishing treatment by elastic polymer abrasive tools and its analysis. Part 2." Proceedings of Irkutsk State Technical University 24, no. 6 (2021): 1178–89. http://dx.doi.org/10.21285/1814-3520-2020-6-1178-1189.

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13

Dimov, Yury, and Dmitry Podashev. "Edge quality control system at finishing treatment by elastic polymer abrasive tools and its analysis. Part 1." Proceedings of Irkutsk State Technical University 24, no. 5 (2020): 977–92. http://dx.doi.org/10.21285/1814-3520-2020-5-977-992.

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The purpose of the paper is to create a control system of edge quality under finishing machining of parts by elastic polymer abrasive tools, which are effective in surface conditioning and rounding of part edges. The principle of the system approach is used for a formalized description of the system characterized by the mutual interaction between the subsystems that form it. Consideration is given to the control system of these finishing operations design in order to ensure the required quality (in terms of surface roughness, size and geometric accuracy of edges) and optimal process performanc
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14

Costa, Rúben. "Impact of different parameters in the drilling of CFRPs with nanocrystalline diamond coated tools." U.Porto Journal of Engineering 9, no. 5 (2023): 89–97. http://dx.doi.org/10.24840/2183-6493_009-005_002152.

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The drilling process of composite materials, such as the carbon fiber reinforced polymer (CFRP), constitutes a challenging task due to their inhomogeneous and anisotropic characteristics, besides the highly abrasive wear behaviour of their fibers. Accordingly, machining parameters should be carefully studied to optimize the process, leading to a better surface quality (avoiding defects in the CFRP) and to a lower wear behaviour of the cutting tool. This study proposed to test the drilling of a CFRP with a thermoplastic matrix using two different tool geometries (conventional and double-point a
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15

Mikhal’chenkov, Aleksandr M., Anna A. Tyureva, Ivan A. Borshchevskiy, and Larisa S. Kiseleva. "THE INFLUENCE OF THE COMPOSITION AND SIZE OF THE FRACTIONS OF THE COMPOSITE GRAVEL FILLER WITH AN EPOXY MATRIX ON ITS WEAR." Tekhnicheskiy servis mashin 3, no. 144 (2021): 100–107. http://dx.doi.org/10.22314/2618-8287-2021-59-3-100-107.

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The widespread use of polymer-based composite materials made it possible to replace expensive metal alloys, increase the strength indicators of structures and improve tribotechnical properties. Their use as protective coatings for structural elements operating in an abrasive environment has yielded good results in increasing wear resistance, which is especially important for parts of tillage tools. (Research purpose) The research purpose is in studying the influence of the composition and size of the fractions of the composite gravel filler with an epoxy matrix on its wear. (Materials and мeth
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16

Dimov, Yu V., and D. B. Podashev. "Material deformation and chip formation under single abrasive grain action." iPolytech Journal 28, no. 1 (2024): 10–20. http://dx.doi.org/10.21285/1814-3520-2024-1-10-20.

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The purpose of the work is to determine the volume of material destroyed by a single grain (microasperity), which produces elastic and plastic deformation of the material when an abrasive tool interacts with the treated surface. To calculate the intensity of deformation of the plastically displaced material of the workpiece under the action of a single grain, the slip-line technique (method of characteristics) was used. To determine the volume of material destroyed by a single grain as a result of polydeformation when moving in the tangential direction, the following is determined: area of the
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17

Honchar, Natalia, Pavlo Tryshyn, Dmytro Pavlenko, Dmytro Stepanov, and Olena Khavkina. "Model of Influence of the Machined Material Properties on Wear of the Polymeric-Abrasive Tool Filaments." Strojnícky časopis - Journal of Mechanical Engineering 73, no. 1 (2023): 67–85. http://dx.doi.org/10.2478/scjme-2023-0006.

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Abstract For polymer-abrasive brush tools (PABT) working on CNC machines it is necessary to correct their wear constantly, since it is much higher compared to the wear of metal tools. Based on the dependence of tool wear on machining parameters for various materials, it is necessary to study the influence of the physical and mechanical properties of the material machined. The purpose of the paper is to study the process of finishing the surfaces of parts made of materials of different types with PABT. The analysis of dimensional wear of disc PABTs during the polishing various materials with ce
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18

Jackson, Mark J., Jameson K. Nelson, Michael D. Whitfield, Jonathan S. Morrell, Rodney G. Handy, and Peter L. Schmidt. "Chip formation and similarity in the plano-grinding of explosive surrogates." Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture 232, no. 12 (2017): 2071–82. http://dx.doi.org/10.1177/0954405416683972.

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The processing of polymer-bonded explosives is not widely reported in the literature, especially the machining of explosive surrogates in the combined planing and grinding operation known as plano-grinding. The process of machining long pieces of an inert substitute using a wax binder to hold sugar particles together and then subjecting the surrogate material to a linear cutting motion to generate chip fragments is described. The aim and purpose of this work is to analyze the machining of explosive surrogates in terms of chip formation models (oscillating and stress ratio models) and similarit
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19

Shinozuka, Jun. "Fabrication of Multiple Micro-Grooves by Ultrasonic Machining with a Tool that Laminated Thin Hard-Material and Thin Soft-Material." Advanced Materials Research 76-78 (June 2009): 577–82. http://dx.doi.org/10.4028/www.scientific.net/amr.76-78.577.

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A micro-grooving method by ultrasonic machining with a lamination tool has been devised. Thin walls on the tip of an ultrasonic tool can fabricate many grooves on a workpiece by one ultrasonic-machining process. Thinner wall for fabricating micro grooves, however, poses the lack of the stiffness of the tool, resulting in the difficulty of the grooving. Then the walls are enfolded with a soft material such as a polymer plastic to supplement the lack of the stiffness. Since soft material absorbs the energy of the ultrasonic vibration, the damage by the impacts of the abrasive particle on the wor
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20

Nikonova, Tatyana, Łukasz Gierz, Alexandra Berg, et al. "Comparative Analysis of Strength Fatigue Properties and Abrasive Wear Resistance for a New Composition of Polymer Concrete Coated with Metal Alloy Powders." Coatings 13, no. 3 (2023): 586. http://dx.doi.org/10.3390/coatings13030586.

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The possibility of using powder spraying to improve the strength properties of polymer concrete products has been studied. Different compositions of polymer concrete mixtures have been compared and analyzed in order to find out the adhesive and cohesive properties of coatings. An analysis of the stress-strain state under static loads has been carried out. To improve the tribological properties and wear resistance of critical parts of metal-cutting machine tools, such as beds, it is proposed to spray polymer concrete surfaces using the gas-thermal method. Two types of powder mixtures for sprayi
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21

Alexandr, Salenko, Chencheva Olga, Glukhova Valentyna, et al. "EFFECT OF SLIME AND DUST EMISSION ON MICRO-CUTTING WHEN PROCESSING CARBON-CARBON COMPOSITES." Eastern-European Journal of Enterprise Technologies 3, no. 1 (105) (2020): 38–51. https://doi.org/10.15587/1729-4061.2020.203279.

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Results of theoretical and experimental studies aimed at establishing features of micro-cutting with abrasive grains characterized by active emission of slime and dust particles were presented. The slime particles are just partially withdrawn from the interaction zone and partially change surfaces of the tool and the workpiece of a carbon composite material, in particular, of carbon-carbon and carbon-polymer groups. The above materials possessing a complex of unique physical and mechanical properties are used in high-tech production though composites remain difficult to process materials. The
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22

Khavin, G. "FORMULATION OF TOOL WEAR LAW WHEN CUTTING POLYMER COMPOSITES." Integrated Technologies and Energy Saving, no. 3 (November 9, 2021): 36–45. http://dx.doi.org/10.20998/2078-5364.2021.3.04.

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Numerous experimental studies in the field of mechanical processing of composite materials for individual materials and tools made it possible to formulate particular models for describing tool wear, changing its microgeometry during operation and predicting durability. There are significant difficulties in measuring current wear and recalculation in mathematical models, since they include a large number of parameters. This does not allow for simple technical control of cutting edge wear and predicting tool life. The formulation of the wear-contact problem of the tool tip and the material inte
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23

Tamarkin, Mihail, Elina Tischenko, and Aleksey Verchenko. "Technological fundamentals of polymer-composite parts with flexible abrasive tool." Science intensive technologies in mechanical engineering, no. 8 (September 1, 2021): 25–34. http://dx.doi.org/10.30987/2223-4608-2021-8-25-34.

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There are presented investigation results of polymer-composite parts abrasion. The dependences for the definition of surface roughness at polymer-composite material hydro-abrasive cutting are shown. The results of theoretical and experimental investigations of hydro-abrasive cutting processes are presented. A procedure for their carrying out, tool and equipment used is described. The results of experimental investigations on polymer-composite parts preparation to splicing are shown. A procedure for designing a technological process of polymer-composite parts abrasion is offered.
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24

Stango, Robert J., Lienjing Chen, and Vikram Cariapa. "Automated Deburring with a Filamentary Brush: Prescribed Burr Geometry." Journal of Manufacturing Science and Engineering 121, no. 3 (1999): 385–92. http://dx.doi.org/10.1115/1.2832693.

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In this paper, a dynamic model for removal of edge burrs with a compliant brushing tool is reported. Description of the burr geometry is assumed to be known through on-line measurement methods such as a computer vision system in the flexible manufacturing cell. Dynamic response of the brush/workpiece system is evaluated on the basis of experimentally obtained data. Master Curves are introduced as machining descriptors which characterize the incremental burr removal performance of the brush/workpiece system, leading to the development of an analytical dynamic model for orthogonal burr removal u
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25

Kozhukhova, Aleksandra, Larisa Tolmacheva, Irina Dmitrieva, and Inessa Kalyakina. "The dependence of the performance of the process of finishing vibration processing on the shape of the abrasive tool (granules)." E3S Web of Conferences 175 (2020): 05002. http://dx.doi.org/10.1051/e3sconf/202017505002.

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The article presents the results of experimental studies of the influence of polymer abrasive granules shape on the surface roughness formation and metal removal during vibrational finishing and hardening treatment (VFHT). As is known, surface roughness and the amount of metal removal are affected by a number of factors: binder material, material and granularity of the abrasive, technological lubricant-coolant medium (LCM) type, loading mass, initial roughness, etc. Processing was carried out for 120 min on a UVG-4x10 vibrating machine, with a working chamber volume of 10 dm3. Metal removal Q
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26

Musiał, Janusz, Serhiy Horiashchenko, Robert Polasik, et al. "Abrasion Wear Resistance of Polymer Constructional Materials for Rapid Prototyping and Tool-Making Industry." Polymers 12, no. 4 (2020): 873. http://dx.doi.org/10.3390/polym12040873.

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The original test results of abrasive wear resistance of different type of construction polymer materials were presented and discussed in this article. Tests were made on an adapted test stand (surface grinder for form and finish grinding). Test samples were made of different types of polymer board materials including RenShape®, Cibatool® and phenolic cotton laminated plastic laminate (TCF). An original methodology based on a grinding experimental set-up of abrasion wear resistance of polymer construction materials was presented. Equations describing relations between material type and wear re
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27

Shahruddin, Najlah Sakinah, Nur Haifa Syazwina Mustaffa, Aisyah Madihah Mustafa, and Nor Farah Huda Abd Halim. "An experimental study of tool wear during end milling of carbon fibre reinforced polymer in cutting fluid condition." Journal of Physics: Conference Series 2051, no. 1 (2021): 012054. http://dx.doi.org/10.1088/1742-6596/2051/1/012054.

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Abstract Carbon fibre reinforced polymer (CFRP) is replacing metallic components and become a valuable material that has been used in many industrial applications including biomedical, marine and automobile. This is due to their excellent performance in term of reliability, high strength and light weight. However, the machining of CFRP is challenging because the abrasiveness of their reinforcement component often resulted in high tool wear rate. This experiment was carried out to investigate the effect of cutting parameters (cutting speed and cutting condition) on tool wear of uncoated tungste
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28

Zanatta, André Marcon, José Divo Bressan, Jefferson de Oliveira Gomes, Fábio Dondeo Origo, and Alvaro José Damião. "Surface Finish Assessment of Polishing Process of Tool Steels by Abrasion, Using Diamond and Alumina Particles." Advanced Materials Research 716 (July 2013): 423–29. http://dx.doi.org/10.4028/www.scientific.net/amr.716.423.

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The present work investigates the surface finishing of two mould tool steels (WNr 1.2738~P20 and WNr 1. 4305) after polishing by conventional method and automatic laboratory equipment. These steels are employed in the fabrication of polymer injection moulds due to its good machinability, homogeneous microstructure and hardness. The polishing process was performed in laboratory by manual and automated processes. The surface finishing was measured by mechanical and optical methods. In the manual polishing, SiC paper grit 320, 600 and 1200 was used. Final polishing was carried out with polishing
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29

Kumar, Mayank, Ajay M. Sidpara, and Vikranth Racherla. "Finishing of OFHC copper using fluid filled open-cell porous flexible abrasive impregnated tools." Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture, July 27, 2022, 095440542211118. http://dx.doi.org/10.1177/09544054221111879.

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Super finishing of oxygen-free high thermal conductivity (OFHC) copper disks is of great interest as copper is widely used material for high power rated mirrors in laser and other optical systems. It is difficult to super finish copper using traditional finishing processes as it is soft and can be scratched easily. Flexible tools that conform to component shape and maintain low as well as uniform pressure are needed for finishing of soft materials. In this work, open-cell porous flexible abrasive tools are developed using solvent casting method with polyurethane as the base polymer and SiC par
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30

Sapunov, V. V., N. I. Vetkasov, and L. V. Khudobin. "Increasing of bakelite binder strength due to use of microwave energy in heat treatment of semi-finished abrasive tools." Strengthening Technologies and Coatings, 2023, 483–87. http://dx.doi.org/10.36652/1813-1336-2023-19-11-483-487.

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The results of a study of the influence of the type of heat treatment on the strength and structural characteristics of an abrasive tool on a bakelite bundle are presented. The prospects of using microwave energy in the production of polymer composites are noted. In particular, the use of microwave heat treatment makes it possible to reduce the duration of the technological cycle, specific energy consumption and increase the strength of the finished product.
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31

"Experimentation on Mechanical Properties of Fiber Reinforced Polymer Composite Material." International Journal of Innovative Technology and Exploring Engineering 9, no. 3 (2020): 1028–33. http://dx.doi.org/10.35940/ijitee.c8001.019320.

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The naturally available material such as Sisal has been using in several applications in fabricating composite materials due to its exceptional durability with a minimum wear and tear and due to its ability to stretch. Using sisal fiber as reinforcement to form sisal fiber reinforced polymer composites, strengthen the study of mechanical properties of the composites. In this project, we have enhanced the mechanical properties of the sisal/glass fiber incorporated with polyurethane. Polyurethane is an extremely versatile elastomer used in countless applications worldwide. It has some excellent
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32

Liang, Wei, Liang Cheng, Huiyue Dong, Minghua Zhu, Yingjie Guo, and Yinglin Ke. "Geometry accuracy control in abrasive water jet taper hole machining of ultra‐thick carbon fiber‐reinforced polymer (CFRP) laminates." Polymer Composites, August 5, 2024. http://dx.doi.org/10.1002/pc.28847.

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AbstractThe primary factors affecting the geometric accuracy of abrasive water jet (AWJ) machining of ultra‐thick carbon fiber‐reinforced polymer (CFRP) laminates are the cutting front drag and kerf width deviation caused by energy dissipation. Firstly, this study comprehensively analyzes the influence of the coupling relationship between cutting front drag and kerf width deviation on the geometric accuracy of hole machining. Secondly, a gradient distribution theory for jet traverse speed with cutting depth is proposed for taper hole machining characteristics. Finally, a general geometric erro
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33

Shyha, Islam, Dehong Huo, Peyman Hesamikojidi, Hossam Eldessouky, and Mahmoud Ahmed El-Sayed. "Performance of a new hybrid cutting-abrasive tool for the machining of fibre reinforced polymer composites." International Journal of Advanced Manufacturing Technology, December 22, 2020. http://dx.doi.org/10.1007/s00170-020-06464-7.

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AbstractA new hybrid cutting-abrasive machining tool (turn-grind) is detailed for high-quality machining of fibre reinforced polymer (FRP) composites, comprising single point carbide inserts electroplated with multi-layers of diamond abrasives 120 μm grain size, to form an abrasive region adjacent to an abrasive-free cutting edge. Experimental data are presented for turning tubes of CFRP and GFRP. The surface quality of workpieces after machining was evaluated through surface roughness measurements and SEM imaging. Cutting-only caused more defects such as delamination and fibre to pull out. Co
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