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Investigation of recast and crack formation in laser trepanning drilling of CMSX-4 angled holes

机译:CMSX-4斜孔激光冲孔钻中重铸和裂纹形成的研究

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摘要

This paper presents an experimental investigation on the influences of laser trepanning drilling process parameters on the recast layer thickness and surface crack formation in CMSX-4 nickel-based superalloy angled holes. The effects of peak power, pulse frequency and the trepanning speed as input parameters were investigated in details by varying the laser drilling conditions using Taguchi orthogonal array-based design of experiment approach. Analysis of variance identifies the significant parameters affecting the output responses. It is found that the output responses are affected mainly by the peak power and trepanning speed. The experimental results reveal that the recast layer thickness increases with the increase of peak power and trepanning speed whereas the crack number density decreases with the increase of peak power only. Pulse frequency has no significant effect on both output responses within the range of values investigated. The knowledge gained in this parametric study could be used to improve the metallurgical characteristics of laser-drilled nickel-based acute angled holes.
机译:本文对CMSX-4镍基高温合金角孔中激光挖孔工艺参数对重铸层厚度和表面裂纹形成的影响进行了实验研究。通过使用Taguchi正交阵列设计的实验方法,通过改变激光钻孔条件,详细研究了峰值功率,脉冲频率和击穿速度作为输入参数的影响。方差分析确定了影响输出响应的重要参数。发现输出响应主要受峰值功率和击穿速度的影响。实验结果表明,重铸层厚度随峰值功率和击穿速度的增加而增加,而裂纹数密度仅随峰值功率的增加而减小。在所研究的数值范围内,脉冲频率对两个输出响应均无明显影响。在此参数研究中获得的知识可用于改善激光钻孔的镍基锐角孔的冶金特性。

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