首页> 外文期刊>Journal of polymer engineering >Optimization of process parameters in plastic injection molding for minimizing the volumetric shrinkage and warpage using radial basis function (RBF) coupled with the k-fold cross validation technique
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Optimization of process parameters in plastic injection molding for minimizing the volumetric shrinkage and warpage using radial basis function (RBF) coupled with the k-fold cross validation technique

机译:使用径向基函数(RBF)结合k倍交叉验证技术,优化塑料注射成型过程中的工艺参数以最小化体积收缩和翘曲

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摘要

In this study, a multi-objective design optimization method based on a radial basis function (RBF) model was applied to minimize the volumetric shrinkage and warpage of hip liners as an injection-molded biomedical part. The hip liners included an ultrahigh molecular weight polyethylene (UHMWPE) liner and UHMWPE reinforced with a nano-hydroxyapatite (nHA) liner. The shrinkage and warpage values of the hip liners were generated by simulation of the injection molding process using Autodesk Moldflow. The RBF model was used to build an approximate function relationship between the objectives and the process parameters. The process parameters, including mold temperature, melt temperature, injection time, packing time, packing pressure, coolant temperature, and type of liner, were surveyed to find the interaction effects of them on the shrinkage and warpage of the liners. The results indicated that the addition of nHA helps the liners to obtain more dimensional stability. The model was validated by the k-fold cross validation technique. Finally, the model revealed the optimal process conditions to achieve the minimized shrinkage and warpage simultaneously for various weights.
机译:在这项研究中,基于径向基函数(RBF)模型的多目标设计优化方法被应用来最小化作为注塑生物医学部件的髋部衬垫的体积收缩和翘曲。臀部衬里包括超高分子量聚乙烯(UHMWPE)衬里和用纳米羟基磷灰石(nHA)衬里增强的UHMWPE。髋部衬里的收缩率和翘曲值是通过使用Autodesk Moldflow进行注塑成型过程的模拟生成的。 RBF模型用于建立目标和过程参数之间的近似函数关系。调查了工艺参数,包括模具温度,熔体温度,注射时间,填充时间,填充压力,冷却液温度和衬里类型,以发现它们对衬里的收缩和翘曲的相互作用影响。结果表明,nHA的加入有助于衬里获得更大的尺寸稳定性。通过k-fold交叉验证技术验证了该模型。最后,该模型揭示了最佳工艺条件,以同时实现各种重量的最小收缩和翘曲。

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