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首页> 外文期刊>Journal of advanced concrete technology >Behaviour of Strain-Hardening Cement-Based Composites Under High Strain Rates
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Behaviour of Strain-Hardening Cement-Based Composites Under High Strain Rates

机译:高应变速率下硬化水泥基复合材料的行为

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In this research project the behaviour of strain-hardening cement-based composites (SHCC) subjected to low and high strain rates was studied. Uniaxial tension tests on dumbbell-shaped SHCC specimens were performed at rates ranging from 10~(-5)s~(-1) to 50s~(-1). For the tests performed at strain rates of 10~(-2)s~(-1) and below, SHCC yielded a moderate increase in tensile strength and simultaneous decrease in strain capacity with increasing strain rate. When tested for higher strain rates from 10 to 50s~(-1) a considerable increase in tensile strain and strain capacity was measured. Microscopic investigation of the fracture surfaces showed that almost no fibre failure and an average pullout length of 2.5mm were found in the high strain rate test. This observation is in contrast to that of rapid quasi-static testing, where the average fibre pullout length of 300μm was much shorter. Furthermore, the fibres on the fracture surfaces produced in the high rate tests exhibited pronounced plastic deformations. Finally, quasi-static and high-speed tension tests on individual fibres and single fibre pullout tests were performed. While the increase in the tensile strength of the fibre was only moderate in the range of strain rates investigated, a considerable increase in bond strength between fibre and matrix was determined.
机译:在本研究项目中,研究了应变硬化水泥基复合材料(SHCC)在低应变率和高应变率下的行为。对哑铃形SHCC试样进行单轴拉伸试验,试验速率为10〜(-5)s〜(-1)至50s〜(-1)。对于在10〜(-2)s〜(-1)及以下的应变速率下进行的测试,SHCC随拉伸速率的增加而产生适度的拉伸强度增加,同时应变能力降低。当测试10至50s〜(-1)的较高应变速率时,测得的拉伸应变和应变容量显着增加。断裂表面的显微镜研究表明,在高应变率测试中几乎没有发现纤维断裂,平均拉拔长度为2.5mm。此观察结果与快速准静态测试的结果相反,后者的平均纤维拉出长度为300μm,要短得多。此外,在高速率试验中在断裂表面上产生的纤维表现出明显的塑性变形。最后,对单根纤维进行准静态和高速拉伸测试,以及单根纤维拉出测试。尽管在研究的应变速率范围内,纤维的拉伸强度仅增加了适度,但可以确定纤维与基体之间的粘结强度有了显着提高。

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