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首页> 外文期刊>Journal of Applied Polymer Science >Stress-Strain Curve Modeling and Length Effect of Polymer Concrete Subjected to Flexural Compressive Stress
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Stress-Strain Curve Modeling and Length Effect of Polymer Concrete Subjected to Flexural Compressive Stress

机译:弯曲压缩应力作用下聚合物混凝土的应力-应变曲线建模和长度效应

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摘要

Stress-strain relation, stress-block parameters, and length effect of polymer concrete flexural compression members were experimentally investigated. For these purposes, a series of C-shaped polymer concrete specimens subjected to a flexural compressive load were tested. On the basis of the test results, we proposed an equation to predict stress-strain relation of polymer concrete. In this model, we took account of the slope of descending branch beyond the peak stress point of a single curve. The proposed equation was numerically integrated to compute the rectangular stress-block parameters. Computed beta(1) was greater than the values prescribed in ACT 318 Code for cement concrete, and alpha(1) was about 0.85 that is similar to the value regulated in ACI. A series of C-shaped specimens were also tested to study the length effect. The test results were curve fitted to obtain parameters for the existing length effect equation.
机译:通过实验研究了聚合物混凝土弯曲受压构件的应力-应变关系,应力阻滞参数和长度效应。为此,测试了一系列承受弯曲压缩载荷的C形聚合物混凝土试样。根据测试结果,我们提出了一个方程来预测聚合物混凝土的应力-应变关系。在此模型中,我们考虑了超过单个曲线的峰值应力点的下降分支的斜率。对拟议的方程进行数值积分以计算矩形应力块参数。计算出的beta(1)大于ACT 318规范中规定的水泥混凝土值,而alpha(1)约为0.85,与ACI中规定的值相似。还测试了一系列C形试样以研究长度效应。对测试结果进行曲线拟合,以获得现有长度效应方程式的参数。

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