【2h】

The role of rigidity in controlling material failure

机译:刚度在控制材料失效中的作用

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摘要

We investigate how material rigidity acts as a key control parameter for the failure of solids under stress. In both experiments and simulations, we demonstrate that material failure can be continuously tuned by varying the underlying rigidity of the material while holding the amount of disorder constant. As the rigidity transition is approached, failure due to the application of uniaxial stress evolves from brittle cracking to system-spanning diffuse breaking. This evolution in failure behavior can be parameterized by the width of the crack. As a system becomes more and more floppy, this crack width increases until it saturates at the system size. Thus, the spatial extent of the failure zone can be used as a direct probe for material rigidity.
机译:我们研究了材料刚度如何作为应力下固体失效的关键控制参数。在实验和模拟中,我们都证明可以通过在保持无序量恒定的同时改变材料的基础刚度来连续调整材料破坏。随着刚度过渡的临近,由于施加单轴应力而导致的破坏从脆性裂纹发展到系统跨度的弥散断裂。破坏行为的这种演变可以通过裂纹的宽度来参数化。随着系统变得越来越松散,此裂缝宽度会增加,直到达到系统大小为止。因此,失效区域的空间范围可以用作材料刚度的直接探针。

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