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Optimizing fusion zone grain size and hardness of pulsed current micro plasma arc welded Inconel625 sheets using Hooke and Jeeves Algorithm

机译:使用Hooke和Jeeves算法优化脉冲电流微等离子体弧焊接Inconel625板的熔合区晶粒度和硬度

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Purpose - The purpose of this paper is to optimize the fusion zone grain size and hardness using Hooke and Jeeves Algorithm.Design/methodology/approach - Experiments are conducted as per four factors, five levels response surface method based central composite design matrix. Empirical relations for predicting grain size and harness are developed. The effect of welding variables on grain size and hardness are studies. Grain size and hardness are optimised using Hooke and Jeeves Algorithm. Findings - The developed empirical relations can be effectively used to predict grain size and hardness values of micro plasma arc welded Inconel 625 sheets. The values of grain size and hardness obtained by Hooke and Jeeves Algorithm matches with experimental values with great accuracy.Research limitations/implications - The developed mathematical models are valid for 0.25 mm thick Inconel 625 sheets only.Practical implications - In the present paper only four important factors namely peak current,back current, pulse rate and pulse width are considered, however one may consider other parameters like plasma gas flow rate, shielding gas flow rate, etc.Originality/value - The present work is very much useful to sheet metal industries manufacturing metal bellows, diaphragms, etc.
机译:目的-本文的目的是使用Hooke和Jeeves算法优化熔合区的晶粒尺寸和硬度。设计/方法/方法-基于四个因素,基于五级响应面法的中央复合设计矩阵进行了实验。建立了预测晶粒尺寸和线束的经验关系。研究了焊接变量对晶粒尺寸和硬度的影响。使用Hooke和Jeeves算法优化了晶粒尺寸和硬度。发现-所开发的经验关系可以有效地用于预测微型等离子弧焊接Inconel 625薄板的晶粒尺寸和硬度值。通过Hooke和Jeeves算法获得的晶粒度和硬度值与实验值非常吻合。研究局限/意义-所开发的数学模型仅适用于0.25 mm厚的Inconel 625板材。实际意义-在本文中只有四个重要的因素包括峰值电流,反向电流,脉冲速率和脉冲宽度,但是可以考虑其他参数,例如等离子气体流量,保护气体流量等。原始数据/值-本工作对钣金非常有用工业生产金属波纹管,隔膜等

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