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Numerical tests of thermal cracking induced by temperature gradient in cement-based composites under thermal loads

机译:荷载作用下水泥基复合材料温度梯度引起热裂纹的数值试验

摘要

This paper presents the development of a new method to model the thermal stresses and cracks in a heterogeneous cement-based composite material under elevated temperature. Numerical case studies were performed to determine the effects of temperature gradient, heating rate, and variable coefficient of thermal expansion and heterogeneity of materials on the thermal stresses and associated cracking in a cement-based composite material exposed to a transient thermal load. It is found that (1) the settling time and the temperature difference between the surface and the center of specimen increase with the heating rate; (2) the thermal stresses increase with temperature difference, but remain constant if the temperature difference only increases uniformly; (3) most of the cracks induced by temperature gradient are formed before the settling time, and thereafter the thermal mismatch-induced cracks continue to propagate; (4) uncertainties of the occurrence of explosive spalling are probably caused by the thermally induced cracks and the heterogeneities of the constitute materials.
机译:本文提出了一种新的方法的模型,该方法可以模拟高温下非均质水泥基复合材料中的热应力和裂纹。进行了数值案例研究,以确定温度梯度,加热速率以及材料的可变热膨胀系数和异质性对承受瞬态热负荷的水泥基复合材料中的热应力和相关裂纹的影响。结果发现:(1)沉降时间和试样表面与中心之间的温差随加热速率的增加而增加; (2)热应力随温度差而增加,但如果温度差仅均匀增加,则保持恒定。 (3)由于温度梯度引起的裂纹大多数是在沉降时间之前形成的,此后由热失配引起的裂纹继续扩展。 (4)爆炸剥落发生的不确定性可能是由热裂纹和构成材料的异质性引起的。

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