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Mechanical properties of ultra-lightweight cement composite at low temperatures of 0 to −60 °C

机译:超轻质水泥复合材料在0至-60°C的低温下的机械性能

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摘要

This paper presents an experimental study on mechanical properties of an innovative ultra-lightweight cement composite (ULCC) at low temperatures down to −60 °C in comparison with those at ambient temperature. Those properties include stress-strain curve, ultimate strength, elastic modulus, Poisson ratio, and flexural tensile behavior. Effect of curing condition is also evaluated. In addition, the performance of the ULCC is compared with that of a normal weight concrete (NWC) and a lightweight concrete (LWC) with similar 28-day compressive strength. The cylindrical compressive strength of the NWC and LWC was increased generally with the reduction in temperature. However, the same phenomenon was not observed for the ULCC. The elastic modulus of the ULCC did not change much, whereas the elastic modulus of the NWC increased significantly with the reduction of temperature from 30 °C to −60 °C. Strain of the ULCC at the peak load was generally much higher than that of the NWC and LWC, and was generally not affected by the temperature. The flexural strength of the three concretes was increased with the reduction in temperature. Duration of the moist curing did not affect the performance of the ULCC under compression significantly, but influenced its flexural strength significantly.
机译:本文介绍了与环境温度下的低温下低温下的创新超轻质水泥复合材料(ULCC)的力学性能的实验研究。这些性质包括应力 - 应变曲线,极限强度,弹性模量,泊松比和弯曲拉伸行为。还评估了固化条件的影响。此外,将ULCC的性能与具有相似28天抗压强度的正常重量混凝土(NWC)和轻质混凝土(LWC)进行比较。 NWC和LWC的圆柱形抗压强度通常随着温度的降低而增加。然而,ULCC未观察到相同的现象。 ULCC的弹性模量没有变化很大,而NWC的弹性模量显着增加,将温度从30℃降低到-60℃。峰值负荷下ULCC的菌株通常远高于NWC和LWC的菌株,并且通常不受温度的影响。随着温度的降低,三种混凝土的弯曲强度增加。湿润固化的持续时间不会显着影响压缩下的ULCC的性能,但显着影响其弯曲强度。

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