4.1 Article

Direct Tensile Tests of Red Sandstone Under Different Loading Rates with the Self-developed Centering Device

期刊

GEOTECHNICAL AND GEOLOGICAL ENGINEERING
卷 39, 期 2, 页码 709-718

出版社

SPRINGER
DOI: 10.1007/s10706-020-01515-y

关键词

Rock direct tensile test; Eccentric tension; Self-developed centering device; Loading rate

资金

  1. National Key Research Development Project of China [2016YFC0401804]
  2. Taishan Scholars Project Foundation of Shandong Province
  3. Natural Science Foundation Project of China [41772282]
  4. Preliminary research project of the underground laboratory for the geological disposal of high-level radioactive waste of China [YK-KY-J-2015-25]

向作者/读者索取更多资源

The self-developed centering device effectively eliminates the eccentric tension in rock direct tensile tests, providing accurate results. The direct tensile tests of red sandstone under different loading rates demonstrate a noticeable increase in tensile strength and peak tensile strain with higher loading rates.
To study the tensile strength of rock under different loading rates, direct tensile test is the most accurate method. However, the eccentric tension in the process of rock direct tensile test has a significant influence on the test results. In this paper, firstly, a self-developed centering device for rock direct tensile test is introduced, which can effectively eliminate the eccentric tension in the process of rock direct tensile test. Then, with the aid of the self-developed centering device, the direct tensile tests of red sandstone under the loading rates of 0.001 mm/s, 0.01 mm/s and 0.1 mm/s are successfully carried out. After tests, both the macro failure characteristics and the scanning electron microscope micrograph show that the fracture pattern of the rock is caused by pure tensile loading. The stress-strain curves of the direct tensile test of the red sandstone show that the process of the direct tensile test can be roughly divided into four stages. With the increase of loading rate, both of the tensile strength and the peak tensile strain of the rock increase obviously. The direct tensile test of the red sandstone shows obvious loading rate effect.

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