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Variation of Fracture Energy Dissipation along Evolving Fracture Process Zones in Concrete

机译:混凝土中断裂能沿发展过程中断裂能的变化

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This paper examines the fracture energy properties over ligament length for crack propagation process accompanied by fracture process zone (FPZ) advancement. Local fracture energy as well as its average value along the crack path is investigated by considering the influence of specimen boundaries on the development of FPZ. To address the specimen boundary affected region over which local fracture energy generally spreads in a non-uniform manner, two concepts are introduced: Back boundary affected length and overall boundary affected length. Tests were conducted on wedge splitting concrete specimens to identify the variation of fracture energy dissipation when FPZ evolves toward the specimen back surface. Results included here reveal that the back boundary affected length is decreasing approximately in a linear way along with crack evolution. The overall boundary affected length, however, proves to be increasing at early stages of crack growth and then decreasing in a way similar to the back boundary affected length. Local fracture energy over crack extension decreases before FPZ gains its full development. For the case of a full-developed FPZ, it can be described by two different forms: one is in the form of a horizontal line, the other part shows to be decreasing but with a constant average value. The average value of local fracture energy, however, is predicted to increase along with the evolution of FPZ.
机译:本文研究了裂纹扩展过程中伴随断裂过程带(FPZ)推进的韧带长度上的断裂能特性。通过考虑试样边界对FPZ发展的影响,研究了局部断裂能及其沿裂纹路径的平均值。为了解决局部断裂能通常以不均匀的方式分布在其上的样本边界影响区域,引入了两个概念:后边界影响长度和整体边界影响长度。在楔形劈裂混凝土样品上进行了测试,以确定当FPZ向样品背面发展时,断裂能量耗散的变化。此处包括的结果表明,随着裂纹的发展,后边界受影响的长度大约呈线性减小。然而,总的边界影响长度在裂纹扩展的早期阶段被证明是增加的,然后以类似于后边界影响长度的方式减小。在FPZ获得充分发展之前,裂纹扩展上的局部断裂能降低。对于完全开发的FPZ,可以用两种不同的形式来描述:一种是水平线形式,另一部分呈递减趋势,但平均值不变。然而,预计局部断裂能的平均值会随着FPZ的发展而增加。

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