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Corner Deformation of Injected Thermoplastic Parts

机译:注塑热塑性零件的拐角变形

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During the cooling process in injection molding, heat fluxes in the mold are generally lower in inner regions of corners. This asymmetric cooling generates a corner deformation: the part angle is smaller than the mold one. This phenomenon is known to be the main cause of corner warpage in injection molding of thermoplastics. The second phenomenon leading to a corner warpage has firstly been described for thin compression molded SMC parts and is called "spring forward effect". Due to the large fiber-length/part-thickness ratio, most fibers in SMC parts are oriented in the planar direction leading to higher thermal expansion coefficients in the thickness direction as compared to those in the surface direction. When the part cools after polymer curing, a decrease of the enclosed angle in a corner occurs after mold extraction. Because of mold restraints for injection molded thermoplastic parts, the shrinkage in the thickness direction is much larger than the in-plane shrinkage and so the spring forward effect can appear. An experimental study and a two dimensional thermo-viscoelastic calculation of a polymer corner deformation in a mold performed on Abaqus code were carried out. We show that the spring forward effect is generally the major source of corner deformation for injected thermoplastic parts.
机译:在注射成型的冷却过程中,模具中的热通量通常在拐角的内部区域较低。这种不对称的冷却会产生角部变形:零件角小于模具角。已知该现象是热塑性塑料注塑成型中拐角翘曲的主要原因。首先针对薄压模成型的SMC零件描述了导致拐角翘曲的第二种现象,这种现象称为“弹簧向前效应”。由于纤维的长径比/厚度比大,所以SMC部件中的大多数纤维在平面方向上取向,与在表面方向上相比,在厚度方向上具有更高的热膨胀系数。当零件在聚合物固化后冷却时,在脱模后拐角处的包角减小。由于用于注塑成型的热塑性零件的模具限制,厚度方向上的收缩率比面内收缩率大得多,因此会出现弹跳效应。进行了实验研究,并根据Abaqus编码对模具中的聚合物角部变形进行了二维热粘弹性计算。我们表明,弹簧向前效应通常是注塑热塑性零件拐角变形的主要来源。

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