A Review on Measurement Methods for Machining Induced Residual Stress

K. Saptaji, S. Afiqah, R. D. Ramdan
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引用次数: 14

Abstract

The chip formation in mechanical machining / cutting process involves thermal loading and mechanical loading in the form of large plastic deformations, high strain, strain rates and high temperatures in the cutting zone. These loadings usually induce plastic deformation in the form of residual stresses in the surface and sub-surface of the machined workpiece. Residual stress issue is essential to be studied in order to control the quality and fatigue life of a component or part produced by machining process. Therefore, the magnitude and depth of the residual stresses into the workpiece sub-surface is important and necessary to be measured. The objective of this paper is to discuss various study on the effects of machining parameters on residual stress and residual stress measurement methods for machined workpiece namely non-destructive, semi-destructive and destructive methods. In addition, the effect of machining process into the metallurgical conditions of the workpiece in the form of microstructural changes is also discussed.
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加工残余应力测量方法综述
机械加工/切削过程中的切屑形成涉及热载荷和机械载荷,其形式是大塑性变形、高应变、高应变率和切削区高温。这些载荷通常在被加工工件的表面和次表面以残余应力的形式引起塑性变形。为了控制加工过程中所生产的零件的质量和疲劳寿命,必须研究残余应力问题。因此,测量工件亚表面残余应力的大小和深度是重要和必要的。本文的目的是讨论加工参数对残余应力影响的各种研究以及加工工件残余应力的测量方法,即无损法、半破坏性法和破坏性法。此外,还讨论了加工过程以微观组织变化的形式对工件的金相条件的影响。
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自引率
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发文量
14
审稿时长
20 weeks
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