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首页> 外文期刊>International Journal of Fracture >Simulation of dynamic fracture with the Material Point Method using a mixed J-integral and cohesive law approach
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Simulation of dynamic fracture with the Material Point Method using a mixed J-integral and cohesive law approach

机译:混合J积分和内聚律法的物质点法模拟动态断裂。

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摘要

A new approach to simulating fracture, in which toughness is partitioned between the crack tip and, optionally, a process zone, is applied to dynamic fracture processes. In this approach, classical frac?ture mechanics determines crack tip propagation, and cohesive laws characterize process zone response and determine crack root and process zone propagation. The approach is implemented in the Material Point Method, a particle method in which the fracture path is unconstrained by a body-fitted mesh. The approach is found suitable for modeling a range of dynamic frac?ture processes, from brittle fracture to fracture with crack bridging. A variety of ways of partitioning tough?ness are explored with the aim of distinguishing model parameters via experimental measurements, particu?larly R curves. While no unique relationship exists, R curves, or effective R curves, on a suite of materials would provide substantial insight into model parame?ters. Advantages to the approach are identified, both inversatility and in regards to practical matters associated with implementing numerical fracture algorithms. It is found to perform well in dynamic fracture scenarios.
机译:一种模拟断裂的新方法,其中将韧性分配在裂纹尖端和可选的工艺区域之间,该方法应用于动态断裂过程。在这种方法中,经典的断裂力学确定了裂纹尖端的扩展,内聚规律表征了过程区域的响应,并确定了裂纹根部和过程区域的扩展。该方法在“材料点方法”中实现,该方法是一种粒子方法,其中断裂路径不受身体贴合的网格的约束。已发现该方法适合于建模一系列动态断裂过程,从脆性断裂到带有裂纹桥接的断裂。探索了多种划分韧性的方法,目的是通过实验测量(尤其是R曲线)来区分模型参数。尽管不存在唯一的关系,但是在一组材料上的R曲线或有效R曲线将提供对模型参数的实质性了解。确定了该方法的优势,既具有通用性,又具有与实现数值断裂算法相关的实际问题。已发现它在动态断裂情况下表现良好。

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