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Selection of optimum parameter for compression testing based on design of experiments using Taguchi method

机译:基于使用Taguchi方法设计的基于实验设计的压缩测试的选择性参数选择

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Optimizing parameters for effective operations are significant, for which several new technologies getting introduced in the production realm. This study considers one such problem to optimize the process parameter of compression testing based on design of experiments using well known, Taguchi method. With the precision of process parameters, the effectiveness can be observed in material's high strength and ductility. This research work considers Al2024 alloy for to explore the process parameters under the different temperature constraints which includes room temperature, elevated temperature (400 C-omicron) and cryogenic temperature (-190 C-omicron). This study considers Al2024 due to its wide successful applications on engineering functions. The other parameters which play a significant roles in this study includes thickness, cross sectional area, compressive load and compressive strength. Finally, this study concludes with the optimization of effective process parameters of Al2024 with the concerned of varied temperature owing to increase in its mechanical properties.
机译:优化有效操作的参数很大,其中几种新技术在生产领域中引入。本研究考虑了优化基于使用众所周知的实验设计的压缩测试的过程参数的一个问题,TAGUCHI方法。随着工艺参数的精度,可以在材料的高强度和延展性中观察到有效性。本研究工作考虑了AL2024合金,用于探讨不同温度约束下的工艺参数,包括室温,升高的温度(400℃)和低温温度(-190 C-OMICRON)。本研究认为,由于其对工程职能的广泛应用程序,因此考虑了AL2024。在该研究中发挥重要作用的其他参数包括厚度,横截面积,压缩载荷和抗压强度。最后,本研究结论,由于其机械性能的增加,通过优化AL2024的有效过程参数的优化。

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