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Numerical simulation of the fractures of anisotropic materials characterized by the high degree of anisotropy of elongation at break

机译:具有高断裂伸长率各向异性的各向异性材料断裂的数值模拟

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摘要

The failure criteria of anisotropic materials, the criteria being expressed via deformations, are rarely applied in practice, and are usually used for low-ductility materials. Another situation involves the simulation of failures in materials with the high anisotropy of mechanical properties and that suffer elastic-brittle fracture. For such materials the failure criteria are formulated using ultimate strains and strain tensor invariants. For simulating the fractures of materials that are characterized by the anisotropy of strength properties, the failure criteria are applied with the critical values of stresses and strains, as well as their intensities. Using the value of cumulative plastic strain as a failure criterion does reflect the anisotropy of elastic and plastic properties of a material, but it does not reflect that of the strength properties. The application of this method allows accounting the total plastic strain induced by tension and compression in the conditions of the wave strain of targets during their impact loading.
机译:各向异性材料的破坏准则是通过变形表达的,在实践中很少应用,通常用于低延展性材料。另一种情况是模拟具有高机械各向异性的材料的失效,并遭受弹性脆性断裂。对于此类材料,使用极限应变和应变张量不变式来制定破坏标准。为了模拟以强度特性各向异性为特征的材料的断裂,将破坏标准与应力和应变的临界值及其强度一起应用。使用累积塑性应变值作为破坏准则可以反映材料的弹性和塑性特性的各向异性,但不能反映强度特性的各向异性。该方法的应用允许考虑在目标的冲击载荷期间在目标的波浪应变的条件下由拉伸和压缩引起的总塑性应变。

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