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Journal articles on the topic 'Thermo-mechanical stre'

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1

Casavola, C., L. Lamberti, V. Moramarco, G. Pappalettera, and C. Pappalettere. "Experimental Analysis of Thermo-mechanical Behaviour of Electronic Components with Speckle Interferometry." Strain 49, no. 6 (2013): 497–506. http://dx.doi.org/10.1111/str.12061.

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2

Dürkop, Aiko, and Udo Röhr. "Welding Shrinkage and Deflections – A Thermo-Mechanical Computational Model for Spatial Thin-Walled Structures." Ship Technology Research 53, no. 3 (2006): 99–114. http://dx.doi.org/10.1179/str.2006.53.3.002.

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3

Hamed, Ehab, and Yeoshua Frostig. "Nonlinear thermo-mechanical behaviour of soft core sandwich panels – Creep effects." Journal of Sandwich Structures & Materials 22, no. 8 (2018): 2629–54. http://dx.doi.org/10.1177/1099636218807727.

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Sandwich panels can be subjected to significant changes in ambient temperature, which develop and sustain over certain time periods and lead to creep of the core material, and consequently to changes in the internal stresses and deformations with time. This paper deals with this issue with focus on the geometrically nonlinear aspects of structural behaviour. A theoretical model is developed, which combines the concepts of the principle of superposition of viscoelasticity, with the high-order sandwich theory (HSAPT), and the temperature dependency of the viscoelastic material properties. The no
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4

Pérez-Castellanos, J. L., D. S. Montero, C. Vázquez, J. Zahr-Viñuela, and M. González. "Photo-Thermo-Mechanical Behaviour Under Quasi-Static Tensile Conditions of a PMMA-Core Optical Fibre." Strain 52, no. 1 (2015): 3–13. http://dx.doi.org/10.1111/str.12152.

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5

Zhuang, Xiaoying, Runqiu Huang, Chao Liang, and Timon Rabczuk. "A Coupled Thermo-Hydro-Mechanical Model of Jointed Hard Rock for Compressed Air Energy Storage." Mathematical Problems in Engineering 2014 (2014): 1–11. http://dx.doi.org/10.1155/2014/179169.

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Renewable energy resources such as wind and solar are intermittent, which causes instability when being connected to utility grid of electricity. Compressed air energy storage (CAES) provides an economic and technical viable solution to this problem by utilizing subsurface rock cavern to store the electricity generated by renewable energy in the form of compressed air. Though CAES has been used for over three decades, it is only restricted to salt rock or aquifers for air tightness reason. In this paper, the technical feasibility of utilizing hard rock for CAES is investigated by using a coupl
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6

Bassyouni, Mohamed, Shereen M. S. Abdel-Hamid, Mohamed H. Abdel-Aziz, and M. Sh Zoromba. "Characterization of Vinyl Ester/Jute Fiber Bio-Composites in the Presence of Multi-Walled Carbon Nanotubes." Key Engineering Materials 730 (February 2017): 221–25. http://dx.doi.org/10.4028/www.scientific.net/kem.730.221.

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In this study, vinyl ester –Jute fiber biocomposites were prepared using vacuum-assisted resin infusion (VARI) process. Woven Jute fibers were used with mass fraction 0.68. Multi-walled carbon nanotubes (MWCNTs) are added to the resin with weight ratio 0.5: 99.5 to investigate the thermo-mechanical properties of bio-composites. Storage and loss modulus of vinyl ester bio-composites were investigated in the presence MWCNTs over a range of temperature (25 to 160 oC) to measure the capacity of bio-composite to store and dissipate energy. Damping properties of vinyl ester bio-composites were studi
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7

Cortis, Daniele, Cristina Giancarli, Francesco Ferella, et al. "Experimental Evaluation of Thermo-Mechanical Properties of GRCop-42, Produced by PBF-LB, at Low Temperatures." Metals 15, no. 6 (2025): 604. https://doi.org/10.3390/met15060604.

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Today, Powder Bed Fusion-Laser Based technology is widely used in many industrial fields, but some high-demanding applications are still not fully investigated, such as low temperatures. In basic physics research, experiments usually use low temperatures to reduce external influences and to increase the sensitivity of particle detectors, accelerators, etc. The production capabilities of this technology have become a standard for manufacturing such components, and the demand for high performance has led to the investigation of new materials, like GRCop-42. It possesses excellent thermal propert
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8

Skórczewska, Katarzyna, Joanna Szulc, Krzysztof Lewandowski, Anna Ligocka, and Sławomir Wilczewski. "Modification of Poly(vinyl chloride) with Bio-Based Cassia Oil to Improve Thermo-Mechanical and Antimicrobial Properties." Materials 16, no. 7 (2023): 2698. http://dx.doi.org/10.3390/ma16072698.

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The purpose of this study was to modify plasticised PVC to obtain a material with antimicrobial properties and selected mechanical properties. Natural cassia oil (CO) was used to modify plasticised PVC materials. The modified material was produced by extrusion. The introduced modifier had a maximum concentration of 20 phr. Rheological and mechanical properties were evaluated, and the glass transition temperature was determined. The antioxidant and antimicrobial activity of the agar diffusion method was investigated by analysing the growth inhibition zones against Enterococcus faecalis and List
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9

Kiema, Benjamin, Ousmane Coulibaly, and Emmanuel Ouedraogo. "Study of The Influence of Storage Media on the Thermo-mechanical Behavior of Concrete and Cement Blocks." Physical Science International Journal 28, no. 1 (2024): 45–55. http://dx.doi.org/10.9734/psij/2024/v28i1820.

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Once all construction materials have been formulated, it is necessary to find a suitable environment in which to store them before using them in the building. Generally speaking, in developing countries, materials are not preserved under the real conditions of temperature and humidity and are exposed to often severe climatic conditions. This has an impact on the behaviour of these materials. With this in mind, we conducted our study on concrete and cement bricks, the two materials most commonly used in building construction in Africa. The overall objective of our study is to analyse the effect
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10

Gencel, Osman, Mehrab Nodehi, Gökhan Hekimoğlu, et al. "Foam Concrete Produced with Recycled Concrete Powder and Phase Change Materials." Sustainability 14, no. 12 (2022): 7458. http://dx.doi.org/10.3390/su14127458.

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In construction industry, phase change materials (PCMs), have recently been studied and found effective in increasing energy efficiency of buildings through their high capacity to store thermal energy. In this study, a combination of Capric (CA)-Palmitic acid (PA) with optimum mass ratio of 85–15% is used and impregnated with recycled concrete powder (RCP). The resulting composite is produced as foam concrete and tested for a series of physico-mechanical, thermal and microstructural properties. The results show that recycled concrete powder can host PCMs without leaking if used in proper quant
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11

V. Voronin, Denis, Evgenii Ivanov, Pavel Gushchin, Rawil Fakhrullin, and Vladimir Vinokurov. "Clay Composites for Thermal Energy Storage: A Review." Molecules 25, no. 7 (2020): 1504. http://dx.doi.org/10.3390/molecules25071504.

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The development of novel materials and approaches for effective energy consumption and the employment of renewable energy sources is one of the current trends in modern material science. With this respect, the number of researches is focused on the effective harvesting and storage of solar energy for various applications. Phase change materials (PCMs) are known to be able to store thermal energy of the sunlight due to adsorption and release of latent heat through reversible phase transitions. Therefore, PCMs are promising as functional additives to construction materials and paints for advance
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12

Vidal, Rubén, Sebastià Olivella, Maarten W. Saaltink, and François Diaz-Maurin. "Heat storage efficiency, ground surface uplift and thermo-hydro-mechanical phenomena for high-temperature aquifer thermal energy storage." Geothermal Energy 10, no. 1 (2022). http://dx.doi.org/10.1186/s40517-022-00233-3.

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AbstractHigh-temperature aquifer thermal energy storage (HT-ATES) systems can help in balancing energy demand and supply for better use of infrastructures and resources. The aim of these systems is to store high amounts of heat to be reused later. HT-ATES requires addressing problems such as variations of the properties of the aquifer, thermal losses and the uplift of the surface. Coupled thermo-hydro-mechanical (THM) modelling is a good tool to analyse the viability and cost effectiveness of HT-ATES systems and to understand the interaction of processes, such as heat flux, groundwater flow an
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13

King, Michael, and Salaheddin Rahimi. "Optimisation of sample geometry for thermo‐mechanical testing of precipitation hardenable nickel‐based superalloys with an ETMT machine." Strain, July 17, 2023. http://dx.doi.org/10.1111/str.12458.

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14

palit, Sabarna, and Sriman Kumar Bhattacharyya. "RESPONSE OF STEEL FRAME ASSEMBLY UNDER LOCALIZED FIRE EFFECT." Proceedings of International Structural Engineering and Construction 9, no. 1 (2022). http://dx.doi.org/10.14455/isec.2022.9(1).str-34.

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The focus of the present paper is on the investigation of the deformation and forces of an isolated steel beam column sub-frame exposed to localized fire. The investigated frame is modelled using finite element software ABAQUS considering three dimensional solid elements. A sequentially coupled thermo-mechanical analysis, where the derived temperature distribution obtained from the heat transfer analysis used as an input for the mechanical analysis, is carried out. The input heat flux which acts as Neumann boundary condition for the heat transfer analysis is considered from widely recognized h
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15

Todd, Fiona, Christopher McDermott, Andrew Fraser Harris, Alexander Bond, and Stuart Gilfillan. "Modelling physical controls on mine water heat storage systems." Geoenergy, March 13, 2024. http://dx.doi.org/10.1144/geoenergy2023-029.

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The use of abandoned mines as a heat source and store has been receiving increased attention as a renewable heat source and storage solution in the transition away from traditional gas heating. The hydraulic, thermal and geomechanical processes governing heat storage and extraction are complex and understanding these processes is critical to safe heat extraction and injection into mine water systems. This paper outlines the development of a fully coupled thermo-hydraulic-mechanical (THM) 2D model to understand the mechanical stability of room and pillar workings during heat injection and extra
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16

Sacchet, Sereno, Francesco Valentini, Caterina Rizzo, Riccardo Po, and Luca Fambri. "High density polyethylene with phase change materials for thermal energy management." Energy Materials 5, no. 4 (2025). https://doi.org/10.20517/energymater.2024.112.

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Phase change materials (PCMs) represent an innovative solution to passively manage device temperature or store heat, taking advantage of the material phase transitions. In this work, the attitude of high density polyethylene (HDPE) for the shape stabilization of three selected organic PCMs with a melting temperature close to 55 °C was investigated. Composites with PCM content in the range of 50-61 wt.% were produced by melt compounding, and lab-scale panels were produced by compression molding. The ability of the supporting olefinic matrix to stabilize the PCM and contain leakage was verified
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17

Boukelia, Ahmed, Sandrine Rosin-Paumier, Adel Abdallah, and Farimah Masrouri. "Coupld thermo-hydraulic modelling of heat storage in an embankment." Symposium on Energy Geotechnics 2023, October 2, 2023. http://dx.doi.org/10.59490/seg.2023.562.

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Under temperate climates, the storage of excess heat collected in summer to compensate for insufficient heat supply during winter corresponds to the concept of long-term heat storage [1]. Fisch et al. [2] analyzed the cost-performance ratios of twenty-seven existing or planned large-scale storage systems in Europe. Their results showed that the seasonal storage model could meet 50-70% of the annual heat demand, while the diurnal model could meet only 10-20%. The storage of thermal energy is possible in different modalities among which heat storage in the form of sensible heat consists of raisi
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18

Pourbehi, Mohammad S., and Breda Strasheim. "A SLOT-CUTTING TECHNIQUE FOR REPAIR AND REHABILIATION OF CONCRETE DAMS AFFECTED BY ALKALI-SILICA REACTION." Proceedings of International Structural Engineering and Construction 7, no. 2 (2020). http://dx.doi.org/10.14455/isec.2020.7(2).str-45.

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The combined impacts of earthquake damage and aging of concrete material on vulnerable aged dam systems have been typical causes of structural failure. The possible malfunction or loss of these vital systems and components can have serious socio-economic consequences and impacts on potable water resource availability, crop irrigation, and electric power generation. Worldwide extensive work has been done to evaluate the structural safety of aged concrete dam system components and to develop suitable remedial action and rehabilitation strategies. This paper reports a Chemo-Thermo-Mechanical Fini
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19

Perron, Paul, Laetitia Le Pourhiet, Michel Guiraud, et al. "Control of inherited accreted lithospheric heterogeneity on the architecture and the low long-lived subsidence rate of intracratonic basins." BSGF - Earth Sciences Bulletin, September 14, 2020. http://dx.doi.org/10.1051/bsgf/2020038.

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Intracratonic basins tend to subside much longer than the timescale predicted by thermal relaxation of the lithosphere. Many hypotheses have been suggested to explain their longevity, yet few have been tested using quantitative thermo-mechanical numerical models, which capture the dynamic of the lithosphere. Lithospheric scale geodynamic modelling preserving the tectono-stratigraphic architecture of these basins is challenging because they display only few kilometres of subsidence over 1000 of km during time periods exceeding 250 Myr. Here we present simulations that are designed to examine th
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