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首页> 外文期刊>Journal of Engineering Research >Experimental investigation and optimization of process parameters for through induction hardening using factorial design of experiments
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Experimental investigation and optimization of process parameters for through induction hardening using factorial design of experiments

机译:使用因子分解设计进行感应淬火的工艺研究和工艺参数优化

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Induction hardening is a heat treating process that is used to selectively case hardens the surface of material providing improved material properties. In this paper, a novel methodology is introduced to optimize hardness in longitudinal & cross sectional directions over the entire part, instead of selective region, without deforming the surface. The experimental trials are conducted on portable induction hardening machine using completely randomized factorial design model to analyze significant factors. Analysis of variance (ANOVA) technique has been used to study the effect of factors (i.e., Power & Heating Time) & their interaction on Hardness. Optical microscopy has also been performed to find out the change in phases by varying the factors. A mathematical model relating hardness with power and heating time has been developed which can be used for response prediction.
机译:感应淬火是一种热处理工艺,用于选择性地对材料表面进行表面硬化处理,从而提高材料性能。在本文中,介绍了一种新颖的方法来优化纵向和横向硬度。整个零件的横截面方向,而不是选择区域,而不会使表面变形。使用完全随机的因子设计模型在便携式感应淬火机上进行实验试验,以分析重要因素。方差分析(ANOVA)技术已用于研究因素(即功率和加热时间)和功率因数的影响。他们在硬度上的互动。还已经进行了光学显微镜检查以通过改变因素来找出相位变化。已经建立了将硬度与功率和加热时间相关联的数学模型,该模型可用于响应预测。

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