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Application of response surface methodology for the optimisation of micro friction surfacing process

机译:响应面法在微摩擦堆焊工艺优化中的应用

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The aim of this work is to identify relationships between the input variables and the process response and to develop predictive models that can be used in the design of new friction surfacing applications. Moreover to investigate the use of standard CNC machines for friction surfacing. The experimental design techniques and response surface methodology were used to investigate and select the combination of factor levels that produced the optimal response. The main effect of the velocity ratio obtained by dividing the feed rate of mechtrode with traverse rate of substrate was observed to be the most significant factor on the process response. Based on the results of optimisation it was observed that the lower to intermediate levels of rotational speed and intermediate to higher levels of velocity ratio produced good coating quality.
机译:这项工作的目的是确定输入变量与过程响应之间的关系,并开发可用于新的摩擦堆焊应用程序设计的预测模型。此外,还研究了使用标准CNC机床进行摩擦表面处理的情况。实验设计技术和响应面方法用于研究和选择产生最佳响应的因子水平的组合。速度的主要影响是通过将焊丝的进料速度除以基材的横向速度而获得的,这是影响过程响应的最重要因素。根据优化结果,观察到较低至中等水平的转速和较高至中等水平的速比可产生良好的涂层质量。

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