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Re-etched grids for large-strain measurement in fine-blanking

机译:重新刻蚀的网格,用于精细冲裁中的大应变测量

摘要

This paper presents an experimental remeshing process for the large strain analysis of fine-blanking. The research is to be carried out mainly because the severe and localized deformation of fine-blanking greatly obstructs the measurement of strains. In order to solve this problem, a new experimental remeshing process was developed to measure the strain in the major deformation areas of fine-blanking. Without this newly developed process, a more intensive and practical strain analysis of fine-blanking could not have been achieved. Therefore, a study of this remeshing process, with a step increment of 20 per cent, until the total punch penetration is 80 per cent of the material's thickness, is to be performed to verify its effectiveness. Low-carbon steel sheets of JISG3101 were used to split blanks. As a consequence, findings showed that an increase in the total punch penetration will clearly induce an exponential increase in the effective strain, and the severity of deformation will be augmented with the increase in the total punch penetration.
机译:本文提出了一种用于细冲坯大应变分析的实验定型方法。进行研究的主要原因是,细冲的严重且局部变形会严重阻碍应变的测量。为了解决这个问题,开发了一种新的实验定格方法来测量细冲坯主要变形区域的应变。没有这种新开发的方法,就不可能实现更精细,更深入的细冲应变分析。因此,将对这种重新定型的过程进行研究,以递增20%的步长,直到冲头的总穿透力达到材料厚度的80%为止,以验证其有效性。使用JISG3101的低碳钢板分割毛坯。结果,发现表明总的穿孔深度的增加将明显引起有效应变的指数增加,并且变形的严重性将随着总的穿孔深度的增加而增加。

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