Determination of the Influence of the Tool Side Stress Superposition and Tool Geometry on the Cut Surface Quality during Precision Shear Cutting

IF 3.3 Q2 ENGINEERING, MANUFACTURING Journal of Manufacturing and Materials Processing Pub Date : 2023-08-08 DOI:10.3390/jmmp7040145
A. Graf, V. Kräusel, Dieter Weise, J. Petrů, J. Koziorek, Pravishan Bhandari
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Abstract

Shearing high-strength steels often leads to a subpar cut quality and excessive stress on the tool components. To enhance the quality of the cut surface, intricate techniques like fine blanking are commonly employed. However, for applications with lower quality requirements, precision shear cutting offers an alternative solution. This research paper introduces a novel approach to directly superimpose radial stress on a workpiece during the precision shear cutting process and showcases for the first time how the application of direct stress superimposition can impact the cut surface by concurrently modifying the shear cutting edge and punch surface. A statistical experimental design is employed to investigate the interrelationships between the parameters and their effects. The results indicate that the overall cut quality, including cylindricity, clean-cut angle, rollover height, and tool stress, defined by punch force and retraction force, is influenced by the superimposed stress. Regarding the clean-cut zone, the statistical significance of direct radially superimposed stress was not observed, except when interacting with sheet thickness and clearance. Additionally, the sheet thickness and cutting gap emerged as significant parameters affecting the overall quality of the cut surface.
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精密剪切切削过程中刀具侧应力叠加和刀具几何形状对切削表面质量影响的确定
剪切高强度钢往往导致切割质量低于标准,并在工具部件上施加过大的应力。为了提高切割表面的质量,通常采用精细落料等复杂技术。然而,对于质量要求较低的应用,精密剪切切割提供了另一种解决方案。本文介绍了一种在精密剪切过程中直接在工件上施加径向应力的新方法,并首次展示了直接应力叠加是如何通过同时改变剪切刃和冲头表面来影响切割表面的。采用统计实验设计来研究参数及其影响之间的相互关系。结果表明,由冲孔力和回缩力定义的整体切削质量,包括圆柱度、净切角、翻转高度和刀具应力,受叠加应力的影响。对于干净切割区,除了与板材厚度和间隙相互作用外,没有观察到直接径向叠加应力的统计显著性。此外,板材厚度和切割间隙是影响切割表面整体质量的重要参数。
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来源期刊
Journal of Manufacturing and Materials Processing
Journal of Manufacturing and Materials Processing Engineering-Industrial and Manufacturing Engineering
CiteScore
5.10
自引率
6.20%
发文量
129
审稿时长
11 weeks
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