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ON THE STRUCTURE OF PLASTIC AND DAMAGE ZONES IN DIFFERENT MATERIALS AND AT VARIOUS SCALES

机译:不同材料塑料和损伤区结构及各种尺度的结构

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The regularities of the formation and structure of plastic and damage zones in structural materials of different types are considered. Our own experimental investigations of the plastic zone structure in metals and extensive literature data analysis are used as the basis for identifying general and particular features of the development of localised damage zones in various materials and at various length scales differing by several orders of magnitude. A single zone of severe deformation (the fracture process zone) is formed at the tip of a crack or a notch in a material in the brittle state. We show that the process of fracture in ductile and quasi-brittle materials is accompanied by the formation of at least of two localised zones characterised by different degrees of deformation and damage: the inner fracture process zone (FPZ) of severe deformation, and the outer, plastic zone (PZ) or damage zone (DZ) where the degree of damage or deformation is lower. It is the presence of the outer zone of moderate deformation and damage (PZ or DZ) that gives rise to the appearance of the size effect. We consider the structure of crack tip zones (FPZ, and PZ or DZ) in materials other than metals, namely, in rubber toughened polymers, concrete, and rocks. We discuss that the fracture properties of different materials are determined by the mechanisms of damage accumulation in the crack tip zones and by the transition from low constraint (plane stress) to high constraint (plane strain) conditions near the crack tip. Although the mechanisms of damage accumulation in different materials may differ, we suggest that in all cases the disappearance of the outer zone (and hence the lack of size effect on strength) is a consequence of the presence of material hardening (as opposed to softening).
机译:考虑了不同类型的结构材料中塑料和损伤区域的形成和结构的规律。我们自己的塑料区结构在金属和广泛的文献数据分析中的实验研究用作识别各种材料中局部损伤区域的局部损伤区域的概念和特定特征的基础,并且在各种长度下不同的长度尺度。在脆性状态下的裂缝尖端或凹口中形成单个严重变形(断裂处理区)区域。我们表明,延性和准脆性材料中骨折的过程伴随着至少两种局部区域的形成,其特征在于不同程度的变形和损伤:严重变形的内部骨折处理区(FPZ)和外部,塑料区(PZ)或损伤区(DZ),其中损坏或变形程度较低。它存在适中变形和损伤(PZ或DZ)的外部区域,其产生尺寸效应的外观。我们考虑在金属以外的材料中的裂缝尖端(FPZ和PZ或DZ)的结构,即橡胶钢化聚合物,混凝土和岩石。我们讨论不同材料的断裂性能是通过在裂纹尖端区域损伤累积的机制和通过从低约束(平面应力)到高约束(平面应变)裂纹尖端附近的条件的过渡来确定。虽然不同材料中损伤积累的机制可能不同,但我们建议在所有情况下,外部区域的消失(并且因此缺乏对强度的尺寸效果)是材料硬化的存在(与软化相反)的结果。

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