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The influence of size effect on the ductile fracture in micro-scaled plastic deformation

机译:尺寸效应对微尺度塑性变形中延性断裂的影响

摘要

In macro-scaled plastic deformation processes, viz., macroforming, the so-called ductile fracture has been extensively studied in terms of the physics, mechanisms, affecting factors and the prediction criteria of ductile fracture. In micro-scaled plastic deformation processes, or microforming, all of these are relatively new and have not yet been extensively investigated. In tandem with this, the applicability of the traditional fracture criteria in micro-scaled plastic deformation and how the size effect affects the deformation and fracture in the microforming processes are critical. Using micro scale flanged upsetting as a case study process, the fracture in the process is studied via experiment and finite element (FE) simulation. The FE simulation is conducted using the established model based on the widely accepted surface layer model in microforming. Both the physical experiment and simulation show that the size factor has a significant effect on fracture formation in micro-scaled plastic deformation. Based on the proposed surface layer model, the fracture in micro scaled plastic deformation is predicted by considering the size factor in Cockcroft fracture criterion and the results are corroborated and verified by experiments. It is found that the ductile fracture affected by size effect is difficult to occur in microforming in the same deformation conditions under which the fracture happens in macroforming scenario. The research thus provides an in-depth understanding of the fracture in micro-scaled plastic deformation.
机译:在宏观塑性变形过程(即宏观成形)中,从韧性,断裂机理,影响因素和预测标准等方面对所谓的韧性断裂进行了广泛的研究。在微型塑性变形过程或微成形中,所有这些都是相对较新的并且尚未进行广泛研究。与之同时,传统断裂准则在微观塑性变形中的适用性以及尺寸效应如何影响微观成型过程中的变形和断裂至关重要。使用微型法兰up粗作为案例研究过程,通过实验和有限元(FE)模拟研究了过程中的断裂。使用已建立的模型进行有限元模拟,该模型基于在微成形中被广泛接受的表面层模型。物理实验和模拟均表明,尺寸因子对微观尺度塑性变形中的裂缝形成具有显着影响。在提出的表面层模型的基础上,通过考虑Cockcroft断裂准则中的尺寸因子来预测微观塑性变形中的断裂,并通过实验证实并验证了结果。发现在宏观成形情况下,在相同的变形条件下,受尺寸效应影响的延性断裂很难在显微成形中发生。因此,该研究提供了对微观尺度塑性变形中的断裂的深入理解。

著录项

  • 作者

    Ran JQ; Fu MW; Chan WL;

  • 作者单位
  • 年度 2013
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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