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Minimizing the Micro-Edge Damage at Each Constituent Layer of the Clad Composite during AWJM

机译:最小化在AWJM期间复合复合材料的每个成分层的微边缘损伤

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摘要

The development of layered/clad composites with a blend of desired characteristics has emerged as a valuable substitute for expensive materials. The inherent heterogeneity offers challenges whenever the cutting of cladded plates/sheets is to be done. The conventional means of cutting such as gas/plasma arc yield a poor cut quality and heat-affected zones. Abrasive waterjet machining (AWJM) is a valuable alternative to mitigate the aforesaid cutting issues. However, the intrinsic attribute of edge damage during AWJM poses a limitation on its use, especially for precision applications. Specifically, it is challenging to control the edge damage in terms of pit depth at both the constituent clad layers and addressing this challenge is the novelty of this work. The said cutting accuracy issues have been thoroughly investigated herein. Four key control parameters of AWJM have been selected for evaluating their impact during machining of stainless-clad steel using L18 Taguchi design. Experimental results have been thoroughly examined using statistical and microscopical evidence. The optimal parametric combination resulting in the minimum magnitude of pit depth at both the clad layers has been developed and experimentally validated. The magnitude of pits depth realized at stainless steel layer (S ) and mild steel layer (M ) significantly reduced to 5 µm and 4 µm respectively, at the optimal parametric combination.
机译:具有所需特性的共混物的层状/包覆复合材料的开发已经成为昂贵材料的有价值的替代品。每当切割覆层板/片时,固有的异质性都会带来挑战。诸如气体/等离子弧之类的常规切割方式产生差的切割质量和热影响区。磨料水射流加工(AWJM)是缓解上述切割问题的一种有价值的替代方法。但是,AWJM期间边缘损坏的内在属性对其使用造成了限制,尤其是对于精密应用而言。具体地说,要在两个覆层上控制凹坑深度方面的边缘损伤是一项挑战,解决这一挑战是这项工作的新颖之处。所述切割精度问题已在本文中被彻底研究。选择了AWJM的四个关键控制参数,以评估使用L18 Taguchi设计在不锈钢包钢加工过程中的影响。实验结果已经使用统计和微观证据进行了彻底检查。已经开发并通过实验验证了导致两个包层的凹坑深度最小的最佳参数组合。在最佳参数组合下,在不锈钢层(S)和低碳钢层(M)上实现的凹坑深度大小分别分别降至5 µm和4 µm。

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