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Study on dynamic response characteristics of impact of freeze-thaw saturated marble in plateau area

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Listed:
  • Wuhu Huang
  • Jiandong Yin
  • Xianglong Li
  • Defeng Hou
  • Jianguo Wang
  • Zhiping Zhang
  • Ting Zuo
  • Ximing Jian
  • Wendong Li
  • Yang Yang

Abstract

To study the effects that the perennial freeze–thaw environment exerts on the dynamic mechanical properties of marble, which characterizes the Qinghai-Tibet Plateau, impact tests were conducted, and saturated marble was utilized; thus, we analyzed the effect of different loading rates on its dynamic compressive strength, fragmentation pattern, and energy-absorbing density. The results indicate the following: (1) When 42.02s-1 ≤ε˙≤ 49.20s-1, the degree of fragmentation and the fractal dimension of saturated state marble is greater than that of the dry state marble; when ε˙ 49.20s-1, the dry state marble exhibits greater fragmentation than the saturated marble; (2) When the saturated state marble is subjected to a specific fractal dimension, the energy-absorbing density of the marble that characterizes the saturated state is great compared with the dry state, and when the fractal dimension increases, the energy-absorbing densities that characterize the two states gradually converge. (3) The effect of water on the mechanical properties of marble has an obvious rate dependence, showing a weakening effect at low strain rates and a strengthening effect at high strain rates. In regard to the analysis pertaining to the dynamic fracture mechanism of marble under the influence of the freeze-thaw environment that characterizes the plateau, the aforementioned experimental results exhibit considerable significance.

Suggested Citation

  • Wuhu Huang & Jiandong Yin & Xianglong Li & Defeng Hou & Jianguo Wang & Zhiping Zhang & Ting Zuo & Ximing Jian & Wendong Li & Yang Yang, 2023. "Study on dynamic response characteristics of impact of freeze-thaw saturated marble in plateau area," PLOS ONE, Public Library of Science, vol. 18(9), pages 1-18, September.
  • Handle: RePEc:plo:pone00:0290628
    DOI: 10.1371/journal.pone.0290628
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    References listed on IDEAS

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    1. Xinying Liu & Feng Dai & Yi Liu & Pengda Pei & Zelin Yan, 2021. "Experimental Investigation of the Dynamic Tensile Properties of Naturally Saturated Rocks Using the Coupled Static–Dynamic Flattened Brazilian Disc Method," Energies, MDPI, vol. 14(16), pages 1-18, August.
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