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首页> 外文期刊>Journal of Applied Polymer Science >Prediction of creep of polymer concrete
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Prediction of creep of polymer concrete

机译:聚合物混凝土的蠕变预测

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摘要

Polymer concrete possesses viscoelastic properties conditioned by relaxation processes in the polymer binder. Their acceleration with an increase of temperature (principle of time-temperature equivalence) is used in predicting the long-term creep of polymer concrete. Physical aging of the polymer binder influences the creep of polymer concrete. To predict the long-term creep accounting for the aging process, an attempt to improve the time-temperature equivalence principle was undertaken. As a result of the experimental study of polyester resin-based concrete and its structural components (a resin unfilled and filled with diabase flour), it has been established that the changes in the creep compliance of the material follow according to the principle of the time-aging time equivalence with the reduction function depending on aging temperature. To predict the long-term creep of polymer concrete, a function of the time-temperature-aging time reduction was applied.
机译:聚合物混凝土在聚合物粘合剂中具有通过松弛过程调节的粘弹性质。随着温度的升高(时间-温度当量的原理),它们的加速度被用于预测聚合物混凝土的长期蠕变。聚合物粘合剂的物理老化会影响聚合物混凝土的蠕变。为了预测老化过程的长期蠕变,已尝试改善时温等效原理。通过对聚酯树脂基混凝土及其结构成分(未填充和填充辉绿岩粉的树脂)进行实验研究的结果,已经确定,材料的蠕变柔度会根据时间原理变化时效时间与降低功能等效,取决于时效温度。为了预测聚合物混凝土的长期蠕变,应用了时温度-时效时间减少的函数。

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