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Optimization of processing parameters in induction hardening using response surface methodology

机译:使用响应面法优化感应淬火中的加工参数

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In this paper, an effective procedure of response surface methodology (RSM) has been utilized for ?nding the optimal values of process parameters while induction hardening of AISI 1040 under two different conditions of the material i.e., rolled and normalized. Various process parameters, such as feed rate (speed at which the induction coil moves, which is measured in mm/sec), current, dwell time (time after which heat intensity starts to heat work piece in seconds) and gap between the work piece and induction coil have been explored by experiments. Hardness at two different conditions has been considered as performance characteristic. The experiment plan was based on rotatable, central composite design (CCD). The experimental results showed that the proposed mathematical models suggested could describe the performance indicators within the limits of the factors being investigated. The obtained optimal process parameters have been predicted and veri?ed by con?rmation experiments. Microstructure and SEM (scanning electron microscope) analyses were also done for justi?cation of the work.
机译:在本文中,已采用一种有效的响应表面方法(RSM)来确定工艺参数的最佳值,同时在两种不同的材料条件下(即轧制和归一化)对AISI 1040进行感应淬火。各种工艺参数,例如进给速度(感应线圈移动的速度,以毫米/秒为单位),电流,停留时间(热强度开始加热工件的时间,以秒为单位)以及工件之间的间隙通过实验探索了感应线圈。两种不同条件下的硬度被认为是性能特征。实验计划基于可旋转的中央复合设计(CCD)。实验结果表明,所提出的数学模型可以在所研究因素的限制内描述性能指标。已通过确认实验对获得的最佳工艺参数进行了预测和验证。还进行了微观结构和SEM(扫描电子显微镜)分析以证明工作的合理性。

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