张压循环荷载作用下全级配混凝土损伤规律试验研究

Chunlei Li, Lijun Zhao, Haibo Wang, J. Tu
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引用次数: 0

摘要

考虑地震荷载的往复作用和高拱坝的高压应力水平,研究了全级配混凝土在拉压循环荷载作用下的损伤规律。基于15MN大型动态材料试验机和专门设计的连接装置,利用高精度轴向伸长仪和VIC-3D获得了全级配混凝土在循环荷载作用下的完整应力-应变曲线。试验数据表明,即使在中、低压应力水平下,全级配混凝土也会产生一定量的残余变形,且与压力呈良好的线性关系。由于混凝土抗拉极限应变与抗压极限应变之差约为10倍,因此抗压残余对混凝土抗拉极限应变影响较大。忽略高压下残余变形会高估全级配混凝土的抗拉强度,是不安全的。由全级配混凝土的拉伸损伤应力-应变曲线可以看出,全级配混凝土的弹性模量在拉压转换后不能立即恢复,但存在明显的过渡区。忽略过渡区的模型计算结果是不安全的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Experimental study on damage law of fully graded concrete under tension compression cyclic load
Considering the reciprocating action of seismic load and the high compressive stress level of high arch dam, the damage law of fully graded concrete under tension compression cyclic load is studied. Based on 15MN large-scale dynamic material testing machine and specially designed linking device, the complete stress-strain curve of full graded concrete under cyclic load is obtained by means of high-precision axial extensometer and VIC-3D. The test data show that even at the medium and low pressure stress level, the full graded concrete will produce a certain amount of residual deformation, and has a good linear relationship with the pressure. Because the difference of ultimate strain between tension and compression of concrete is about 10 times, the compressive residual has great influence on the ultimate tensile strain. Ignoring the residual deformation under high pressure will overestimate the tensile strength of fully graded concrete, which is unsafe. Based on the stress-strain curve of tensile damage of fully graded concrete, it can be seen that the elastic modulus of fully graded concrete cannot be recovered immediately after tension compression conversion, but there is an obvious transition zone. The calculation results of the model ignoring the transition zone are unsafe.
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