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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Multi-response optimization on single-point incremental forming of hyperbolic shape Al-1050/Cu bimetal using response surface methodology
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Multi-response optimization on single-point incremental forming of hyperbolic shape Al-1050/Cu bimetal using response surface methodology

机译:用响应面法测定双曲面形状Al-1050 / Cu双金属单点增量成型的多响应优化

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In present work, experimental and numerical investigations were carried out on single-point incremental forming of explosive bonded clad sheets. The sheets were produced by explosion welding from 1050 aluminum alloy and C10100 copper alloy sheets. A generatrix of hyperbolic curve was utilized as profile of final shapes formed by SPIF process. During some investigations, the interaction and main effect of the process parameters viz. tool diameter, step down, rotational speed, and sheet arrangement were evaluated on the fracture depth and wall thickness at fracture using ANOVA method. For experimentation, a customized design table was built with three quantify and one qualify factors in two levels. The design table totally provides four input factors and two responses in 12 runs. The responses are fracture depth and wall thickness. A multi-response optimization was conducted to find optimum values for input parameters using response surface methodology (RSM) and the confirmatory experiment revealed the reliability of RSM in this regard. Moreover, predictive models were presented in confidence interval of 95% to formulate the relationship between the responses and the input factors using RSM approach. Additionally, a finite element analysis was carried out on the SPIF based on optimal input parameters to depict reaction force changing, thickness variation, and stress distribution.
机译:在目前的工作中,对爆炸粘结包层片的单点增量形成进行了实验和数值研究。通过从1050铝合金和C10100铜合金板材的爆炸焊接生产纸张。双曲线曲线的Generatrix用作由SPIF工艺形成的最终形状的轮廓。在一些调查期间,过程参数viz的相互作用和主要效应。使用ANOVA方法对裂缝深度和壁厚进行评估工具直径,降压,转速和片材布置。对于实验,建立了一个定制的设计表,其中三个量化和一个有资格在两个级别的因素。设计表完全提供了四个输入因子和12个运行中的两个响应。响应是断裂深度和壁厚。进行多响应优化以找到使用响应表面方法(RSM)的输入参数的最佳值,并且确认实验显示了对此的RSM的可靠性。此外,预测模型以95%的置信区间呈现,以制定使用RSM方法的响应与输入因子之间的关系。另外,基于最佳输入参数在SPIF上进行有限元分析,以描绘反作用力变化,厚度变化和应力分布。

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