首页> 外文期刊>Mathematical research letters: MRL >ACCURACY AND SURFACE INTEGRITY ANALYSIS OF MICRO HOLES DRILLED ON HASTELLOY-X ALLOY USING A LASER SOURCE WITH OPTIMIZATION
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ACCURACY AND SURFACE INTEGRITY ANALYSIS OF MICRO HOLES DRILLED ON HASTELLOY-X ALLOY USING A LASER SOURCE WITH OPTIMIZATION

机译:用优化激光源对Hastelloy-X合金钻探微孔的精度和表面完整性分析

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摘要

Hastelloy-X is a nickel-based superalloy used for making parts of extreme temperature applications. This paper is aimed at studying the effects of laser drilling parameters on accuracy and surface characteristics of the micro-holes drilled on Hastelloy-X alloy. The independent factors like power, pulse width, pulse repetition rate and gas pressure were selected as process variables. The experiments were designed using response surface methodology (RSM) with four factors at five levels. The process was evaluated in terms of exit diameter, entrance diameter, taper and entrance circularity error along with the surface topography analysis of the hole. Weighted principal component analysis (WPCA) is performed to calculate the accuracy of a hole through the geometric index (GI). It also determines the optimal combination among the alternatives. Relationship of GI with input parameters was established with RSM and analysis of the variance (ANOVA) was done to enact the significance of process parameters on the outputs. The obtained results proved that power, gas pressure and pulse width are the most influencing factors of accuracy. The desirability analysis also confirmed the optimal input sequence that has been obtained from the RSM-WPCA approach.
机译:Hastelloy-X是一种基于镍的超合金,用于制造各个极端温度应用。本文旨在研究激光钻孔参数对施用施舍钻孔的微孔的精度和表面特性的影响。选择电源,脉冲宽度,脉冲重复率和气体压力等独立因素作为过程变量。实验使用响应表面方法(RSM)设计,其中四个级别为四个因素。根据孔的表面形貌分析,在出口直径,入口直径,锥度和入口圆形度误差方面评估该过程。执行加权主成分分析(WPCA)以计算通过几何指数(GI)的孔的精度。它还决定了替代方案中的最佳组合。通过RSM建立了GI与输入参数的关系,并进行了对差异(ANOVA)的分析,以制定工艺参数对输出的重要性。所获得的结果证明,功率,气体压力和脉冲宽度是最精确的影响因素。期望分析还确认了从RSM-WPCA方法获得的最佳输入序列。

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