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Micro-scaled progressive forming of bulk micropart via directly using sheet metals

机译:通过直接使用钣金进行的微小零件的微尺度渐进成形

摘要

In our prior study, a progressive forming system to fabricate meso-scaled bulk cylindrical and flanged parts by using sheet metals has been developed. In this forming system, the cylindrical part is formed via blanking, while the flanged part is formed via the progressive punching, extrusion and blanking. In forming of the flanged part, the preform is attached to the metal strip and positioned based on the geometry of preform. The formed part is finally trimmed out by shearing in the last operation. In such a way, the transporting, positioning and ejecting of preform/part are facilitated. In this paper, the research is aimed at further studying the feasibility of forming microscaled parts by using the previously developed forming system and examining its characteristics based on the material flow behavior, microstructure evolution, the quality and property of the final formed parts. It is revealed that the length of blanked cylinder decreases with the increase of grain size. When the grain size is large compared to the workpiece thickness, an inclined fracture surface is formed on the blanked cylinder and the rollover surface on the flanged part becomes rough. A rough fracture surface with microvoids is formed after shearing operation. The number of microvoids on the fracture surface decreases with the increase of grain size. The developed process is proved to be promising and efficient for mass production of bulk microparts directly using sheet metal.
机译:在我们先前的研究中,已经开发了一种渐进成形系统,该系统通过使用钣金来制造中等尺寸的块状圆柱体和法兰零件。在该成形系统中,圆柱形部分是通过冲切形成的,而凸缘部分是通过逐步冲压,挤压和冲切形成的。在形成凸缘部分时,将预成型件附接到金属带并基于预成型件的几何形状进行定位。最后在最后的操作中通过剪切修整成型的零件。以这种方式,便于预型件/零件的运输,定位和弹出。在本文中,该研究旨在通过使用先前开发的成形系统并基于材料的流动行为,微观结构演变,最终成形零件的质量和性能来研究其微观特征,以进一步研究形成微型零件的可行性。结果表明,落料圆柱体的长度随着晶粒尺寸的增加而减小。当晶粒尺寸与工件厚度相比较大时,在冲裁圆柱体上形成倾斜的断裂表面,并且凸缘部分上的翻转表面变得粗糙。剪切操作后形成具有微孔的粗糙断裂表面。裂纹表面上的微孔数量随着晶粒尺寸的增加而减少。事实证明,所开发的方法对于直接使用钣金进行批量微零件的批量生产是有前途且高效的。

著录项

  • 作者

    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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