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首页> 外文期刊>Journal of testing and evaluation >Response Behavior of Asphalt Mixtures at Low Temperatures Under Varying Indirect Tensile Test Loading Conditions
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Response Behavior of Asphalt Mixtures at Low Temperatures Under Varying Indirect Tensile Test Loading Conditions

机译:间接拉伸试验载荷条件下沥青混合料在低温下的响应行为

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摘要

This paper investigates the effect of loading level and loading rate on the damage development and strength of asphalt mixtures. Indirect tensile creep tests with different loading levels and strength tests with three loading rates were performed at three low temperatures for ten mixtures. An acoustic emission (AE) system with eight recording channels was used to monitor the development of micro cracking in the specimens for both tests for one mixture. The experimental results show that test temperature has a significant effect on the behavior of the material. Data analysis from the creep test indicates that the creep loading level significantly affects the response of the tested material. The AE rate analysis shows that no actual damage develops when a creep load is less than 20 % of the strength and significant micro damage accumulates when the applied creep load is more than 30 % of the strength value. The loading rate was found to have a significant effect on the measured tensile strength even at a relatively low temperature, and the measured tensile strength increases with the increase of the loading rate for all the test temperatures considered in this study. However, this effect was found to be diluted with the decrease of the test temperature. The AE analysis indicates that a damage zone develops in both the creep and strength tests. The damage zone decreases with temperature decrease and increases with the increase of the loading level applied during the creep test. The damage zone obtained from the strength test was approximately equal to that from the creep testing with a loading level about 25-50 % of the strength value.
机译:本文研究了加载量和加载速率对沥青混合料破坏发展和强度的影响。在三种低温下对十种混合物进行了不同载荷水平的间接拉伸蠕变试验和三种载荷速率的强度试验。对于两种混合物的一种测试,均使用具有八个记录通道的声发射(AE)系统来监控样品中微裂纹的发展。实验结果表明,测试温度对材料的性能有显着影响。蠕变测试的数据分析表明,蠕变载荷水平会显着影响被测材料的响应。 AE速率分析表明,当蠕变载荷小于强度的20%时,不会发生实际损伤,而当施加的蠕变载荷大于强度值的30%时,会累积明显的微损伤。发现即使在相对较低的温度下,加载速率也对测得的拉伸强度有显着影响,并且在本研究中考虑的所有测试温度下,测量的拉伸强度均随加载速率的增加而增加。然而,发现该效果随着测试温度的降低而减弱。声发射分析表明,在蠕变和强度测试中都会出现损伤区域。损伤区域随温度降低而减小,并随蠕变测试期间施加的载荷水平的增加而增加。从强度测试获得的损伤区域大约等于从蠕变测试获得的损伤区域,其载荷水平约为强度值的25%至50%。

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