Development of the Device with a High Positioning Accuracy Serving for Residual Stress Quantification using Optical Methods

M. Pástor, P. Čarák, M. Hagara
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引用次数: 2

Abstract

The paper describes some procedures required for functional verification of a newly designed unique positioning device developed to quantify residual stresses by modern optical methods with a combination of the hole-drilling method based on ASTM-E 837-13a American standard. The high precision of milling a circular groove or a hole belongs to essential requirements for achieving relevant results in the quantification of residual stresses using semi-destructive methods. At the beginning of the paper, the mechanical parts of the developed drilling device are briefly described. Subsequently, two analyses were realized and present in the paper. While the first one verifies the possibilities and accuracy of the cutter positioning in the vertical direction, the second one is focused on the investigation of the milled groove circularity. The results of both analyses are processed tabularly and prove the possibility to use the drilling device in residual stress analysis.
高定位精度光学残余应力定量测量装置的研制
本文介绍了基于ASTM-E 837-13a美国标准的钻孔法与现代光学方法相结合,新设计的一种独特定位装置的功能验证过程。铣削圆槽或圆孔的高精度,是利用半破坏性方法对残余应力进行量化,达到相关结果的基本要求。本文首先对所研制的钻孔装置的机械部分作了简要介绍。随后,本文实现了两种分析方法。前者验证了刀具在垂直方向上定位的可能性和精度,后者侧重于铣削槽圆度的研究。对两种分析结果进行了表格化处理,证明了在残余应力分析中使用钻削装置的可能性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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