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Local cementite cracking induced by heterogeneous plastic deformation in lamellar pearlite

机译:层状珠光体非均质塑性变形引起的局部渗碳体开裂

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To fully understand the fracture mechanism of pearlitic steel, the effects of lamellar alignment on both cementite cracking and plastic deformation behavior were investigated in two pearlitic materials with lamellar and spheroidized cementite phases. Digital image correlation revealed that local strain develops heteroge-neously in the lamellar pearlite structure, but homogeneously in the spheroidized structure. The heterogeneous local strain distribution tends to coincide better with a pearlite colony than with a pearlite block. This finding suggests that the plastic deformation behavior of pearlite is strongly affected by the alignment of the ferrite/ cementite lamellae. A detailed crystallography-based analysis revealed that the ferrite matrix was significantly plastically deformed in colonies in which the lamellae were aligned at approximately 45° relative to the direction of applied tension, regardless of the limited deformation of the cementite phase; this caused high degrees of strain in such colonies. In contrast, plastic deformation of the ferrite matrix was restricted by the lamellar cementite in colonies in which the lamellae were aligned parallel to the tensile direction. As a result, the lamellar cementite experienced plastic deformation simultaneously with the ferrite matrix as the applied strain was increased. This simultaneous plastic deformation caused shear deformation in lamellar structures on identical slip systems, by which the ductile fracture associated with cementite cracking occurred.
机译:为了充分理解珠光体钢的断裂机理,研究了两种层状和球化渗碳体相的珠光体材料中层状排列对渗碳体开裂和塑性变形行为的影响。数字图像相关性表明,局部应变在层状珠光体结构中异质发展,但在球状结构中均质发展。珠光体菌落的异质局部应变分布趋于比珠光体块更好。这一发现表明,珠光体的塑性变形行为受铁素体/渗碳体片晶排列的强烈影响。详细的基于晶体学的分析表明,铁素体基体在菌落中发生了明显的塑性变形,在这种菌落中,片晶相对于施加张力的方向大约成45°排列,而渗碳体相的变形有限。这在这样的菌落中造成了很大的压力。相反,在片状体平行于拉伸方向排列的菌落中,片状渗碳体限制了铁素体基体的塑性变形。结果,随着施加应变的增加,层状渗碳体与铁素体基体同时经历了塑性变形。这种同时发生的塑性变形在相同的滑移系统上引起了层状结构的剪切变形,由此发生了与渗碳体破裂相关的延性断裂。

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