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Experimental Techniques for Investigating Microstructural Effects on Solid Mechanics Behavior

Lakshay Malik

Abstract


It is critical to comprehend the complex interaction between mechanical behavior and microstructure in order to optimize material performance and create solid engineering components. In the topic of solid mechanics, this review article offers a thorough summary of the experimental methods used to look into the influence of microstructural characteristics on solid behavior. It highlights the fundamentals, possibilities, and uses of a broad variety of experimental techniques, including as mechanical testing, diffraction, and microscopy. Additionally, new advances in experimental methods for examining microstructural impacts are reviewed, along with potential future possibilities. This study is a useful resource for academics and engineers trying to understand the intricacies of microstructural impacts on solid mechanics behavior by summarizing important results and spotlighting new trends.


Keywords


Scanning Electron Microscopy, Electron Backscatter Diffraction, Compression Testing, Compression Testing

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References


Experimental study of the ultrasonic and mechanical properties of a naturally fractured limestone.Int J Rock Mech Min Sci.(2020).

Burman, E.; Hansbo, P.; Larson, M.G. The Augmented Lagrangian Method as a Framework for Stabilised Methods in Computational Mechanics. Arch. Comput. Methods Eng. 2023, 30,

–2604.

Chang, W.J. Research on Microstructural Damage and Its Numerical Simulation Method for Composite Solid Propellant. Master’s Thesis, Nanjing University of Science and Technology, Nanjing, China, 2013.

N. Ali, et al. Evaluation of the 12–24 mm basalt fibres and boron waste on reinforced metakaolin-based geopolymer.Constr. Build. Mater., 251 (2020).

X.Y. Zhuang, et al. Fly ash-based geopolymer: clean production, properties and applications. J. Cleaner Prod., 125 (2016), pp. 253-267.

P. Nuaklong, et al. Enhancement of mechanical properties of fly ash geopolymer containing fine recycled concrete aggregate with micro carbon fibre. J. Build. Eng., 41 (2021),

X. Li, J. Dai, M. Deng. Shear behavior of high ductile fibre reinforced concrete beams. Alexandria Eng. J., 60 (1) (2021), pp. 1665-1675.

A. Raza, et al.Mechanical Performance of Geopolymer Composites Containing Nano-Silica and Micro-Carbon Fibres Arab. J. Sci. Eng. (2022), pp. 1-12.

C.K. Yip, et al. Effect of calcium silicate sources on geopolymerisation Cem. Concr. Res., 38(4) (2008), pp. 554-564




DOI: https://doi.org/10.37591/joeam.v14i3.7904

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