首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers. Part L, Journal of Materials: Design and Application >Estimating and optimizing the flexural strength of bonding welded polypropylene sheets by friction-stir welding method
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Estimating and optimizing the flexural strength of bonding welded polypropylene sheets by friction-stir welding method

机译:摩擦搅拌焊接法估算和优化粘合焊接聚丙烯片的弯曲强度

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摘要

In recent years, the growing trend of using polymer materials in various industries has led to significant improvements in the methods of production and bonding of polymer materials. The present study aimed to optimize the flexural strength of polypropylene sheets welded by the friction-stir method, which is considered as one of the most efficient methods in this field. The surface quality and mechanical properties of the components produced in this method highly rely on the parameters of rotational speed, linear speed, geometry, and tool tilt. Therefore, this research seeks to evaluate the effect of these parameters on three different levels, both experimentally and statistically, in order to investigate the welding flexural strength. By applying the analysis of variance and Box–Behnken response surface methodology, the results revealed the existence of a significant relationship between the properties and parameters of the process and the possibility to examine the effect of the interaction of different parameters in the process using mathematical modeling and Chart analysis. In addition, optimal models were introduced through process optimization so that the flexural strength of the weld joint was increased by up to 96% of that of the base specimen, after conducting further experimental tests, resulting in confirming the optimal model. Finally, the efficiency of the designed model was evaluated by comparing the measurement errors obtained from the experimental results and the prediction of the model.
机译:近年来,在各个行业中使用聚合物材料的日益增长的趋势导致了聚合物材料的生产和粘合方法的显着改善。本研究旨在优化摩擦搅拌方法焊接的聚丙烯片的弯曲强度,其被认为是该领域中最有效的方法之一。该方法生产的部件的表面质量和机械性能高度依赖于转速,线性速度,几何形状和工具倾斜的参数。因此,该研究旨在在实验和统计上评估这些参数在三种不同水平上的效果,以研究焊接弯曲强度。通过应用方差和Box-Behnken响应面方法的分析,结果显示了使用数学建模在过程中进行不同参数的相互作用的性能与参数之间存在显着关系的存在和图表分析。此外,通过工艺优化引入最佳模型,使得在进行进一步的实验测试之后,焊接接头的抗弯强度增加了基础样本的96%,导致确认最佳模型。最后,通过比较从实验结果获得的测量误差和模型预测来评估设计模型的效率。

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