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Study on Compound Type Crack Propagation Behavior of Asphalt Concrete

机译:沥青混凝土复合型裂纹展开行为研究

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The furthest dangerous cracking type of asphalt pavement is usually considered of the simplex II type crack(namely shear crack) under traffic load, but the so-called II type crack should be the compound cracking at the concurrence of I type crack (namely splay crack) and II type crack. In order to study the compound type crack propagation behavior of asphalt concrete, a three point bending beam with compound type notched has been designed. Asymmetry-gap small girder specimens of asphalt concrete are adopted in the test, and the central testing equipment is MTS. A series of compound type three point bending beam tests have been performed to simulate compound type crack initiation and growth. The propagation of compound type crack is studied by a newly developed numerical code, Rock Failure Process Analysis (RFPA{sup}(2D)).it is shown that the crack initiation angle and the peak load increased as the distance of the preexisting crack from the midpoint of the beam increased, the crack propagation path follows some regularity in general and the main force of crack propagation is still tensile stress. Through this work, the understanding of the mechanism about damage and early destroy of asphalt pavement can be advanced and it can provide guidance for asphalt pavement design and maintenance.
机译:沥青路面的最远危险开裂类型通常是在交通负荷下的单纯性II型裂纹(即剪切裂纹),但所谓的II型裂纹应在I型裂纹的同时进行复合裂缝(即Splay Crack )和II型裂缝。为了研究沥青混凝土的复合型裂纹传播行为,设计了一种具有化合物型缺口的三点弯曲梁。在测试中采用沥青混凝土的不对称间隙小梁标本,中央检测设备是MTS。已经进行了一系列化合物类型三点弯曲梁测试以模拟化合物类型裂纹引发和生长。通过新开发的数值代码,岩石破坏过程分析(RFPA {SUP}(2D))研究了化合物型裂纹的传播。结果表明,随着预先存在的裂缝的距离,裂纹开始角度和峰值负荷增加光束的中点增加,裂纹传播路径通常遵循一些规则性,并且裂纹传播的主力仍然是拉伸应力。通过这项工作,对沥青路面的损坏和早期破坏的理解可以提前进步,可以为沥青路面设计和维护提供指导。

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