选择旋转超声加工工艺参数范围的顺序程序

Dipesh Popli, M. Gupta
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引用次数: 3

摘要

镍基合金具有许多潜在的工程应用。然而,加工成本的提高阻碍了它们的广泛应用。对于镍基高温合金来说,迫切需要具有成本效益的商业化加工工艺。旋转超声加工(RUM)是一种结合了金刚石磨削和超声振动(USM)两种材料去除机制的混合加工工艺,其加工速率高于常规超声振动。在进入生产运行之前,有必要对新材料进行性能分析,然后进行中试试验。推导了期望结果与可控加工参数之间的关系。然而,通过筛选实验研究了它们之间的关系。在本文中,一个三因素二水平的析因设计随后最陡峭的上升是用来寻找条件的最终实验。[2016年9月16日收到;接受2017年3月12日]
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Sequential procedure for selecting the ranges of process parameters in rotary ultrasonic machining
Nickel-based alloys have numerous potential engineering applications. However, their widespread applications have been hindered by the elevated machining cost. There is a crucial need for commercial and cost effective machining processes for Ni-based super alloys. Rotary ultrasonic machining (RUM) is a hybrid machining process that combines the material removal mechanisms through diamond grinding and ultrasonic vibration (USM), resulting in higher machining rate than those obtained by conventional USM. Before going to the production run, it is necessary to conduct performance analysis followed by pilot experimentation for newer material. Relationships between desired outcome and the controllable machining parameters have been deducing. However, the relationships have been studied by screening the experiments. In this paper, a three-factor two-level factorial design followed by steepest ascent is utilised to find conditions for final experimentation. [Received 16 September 2016; Accepted 12 March 2017]
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