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首页> 外文期刊>American journal of engineering and applied sciences >Die Radius Affecting Sheet Metal Extrusion Quality for Fine Blanking Process | Science Publications
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Die Radius Affecting Sheet Metal Extrusion Quality for Fine Blanking Process | Science Publications

机译:模具半径影响钣金挤压质量的精冲工艺|科学出版物

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> Problem statement: Sheet metal extrusion is a process in which the punch penetrates one surface of the sheet metal material to cause it to extrude and flow toward the outlet of the die. Therefore, the process can invent different thickness of sheet metal work piece. From these advantages on the sheet metal extrusion, nowadays, it is generally used in many manufacturing of industrial elements fields. The Sheet Metal Extrusions in Fine Blanking (SME-FB) advantages, over a conventional extrusion, are possible due to a blank holder force, a counterpunch force and a large die radius. However, the selection on those parameter values affects on the material flow and the surface quality on the extrusion parts also. Namely, it causes the crack surface and shrinkage failure which are the general problems in the SME-FB. Approach: Objective of this research was to study the effect of die radius on the SME-FB surface which investigated the formation of the failure defection with respect to the several die radiuses by using the Finite Element Method (FEM). Results: From the results, it indicated that applying the small die radius caused the material flow difficult resulting in the decreasing of smooth surface. Vice versa, in the case of large die radius, the material flow easy is resulting in the increasing of smooth surface. Conclusion: The FEM simulation results of a larger die radius will cause the residual stress at work piece.
机译: > 问题陈述:钣金挤压是一个过程,其中冲头穿透钣金材料的一个表面,使之挤压并流向模具的出口。因此,该方法可以发明不同厚度的钣金工件。由于当今在钣金挤压方面的这些优势,它通常用于许多工业元素领域的制造中。由于毛坯夹持力,反冲力和较大的模具半径,因此与常规挤出相比,精细冲裁中的钣金挤出(SME-FB)的优势是可能的。但是,这些参数值的选择也会影响材料流动和挤出零件的表面质量。即,它引起裂纹表面和收缩破坏,这是SME-FB中的普遍问题。 方法:本研究的目的是研究模具半径对SME-FB表面的影响,该方法通过使用有限元方法(FEM)研究了关于多个模具半径的失效缺陷的形成)。 结果:结果表明,施加较小的模具半径会导致材料流动困难,从而导致光滑表面的减少。反之亦然,在较大的模具半径的情况下,材料流动容易导致光滑表面的增加。 结论:较大的模具半径的FEM仿真结果将在工件上产生残余应力。

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