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Mold-Face Heating Mechanism Overflow-Well Design and Their Effect on Surface Weldline and Tensile Strength of Long-Glass-Fiber-Reinforced Polypropylene Injection Molding

机译:模具面部加热机构溢流孔设计及其对长玻璃纤维增​​强聚丙烯注塑成型的表面焊接线和拉伸强度的影响

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摘要

Long-fiber polymers offer the advantage of a lower production cost because specific tool designs are required for conventional injection molding equipment to produce long-fiber polymer parts. The use of long fibers allows relatively high fiber aspect ratios to be obtained, thereby enhancing composite stiffness, strength, creep endurance, and fatigue endurance. However, the multigate design of the injection-molded part can result in weldline formation during the molding process, which reduces the structural strength of the molded part. Therefore, in this study, the surface quality, fiber compatibility, and structural strength of long-glass-fiber-reinforced polypropylene (PP/LGF) injection-molded samples were compared in the use versus nonuse of a mold-cavity overflow-well area and the mold-face infrared heating method. The experimental results indicate that the mold-cavity overflow-well area more greatly improved the surface roughness of the PP/LGF molded samples. Moreover, the infrared heating of the mold-face decreased the weldline depth of the samples. Optical-microscopy images and mold-cavity pressure distributions indicated that the weldline tensile strength and the interface compatibility between fibers and melts at the weldline region during the molding stage were higher in the use than in the nonuse of the mold-cavity overflow-well and mold-face infrared heating method.
机译:长纤维聚合物提供较低的生产成本的优点,因为传统的注塑设备需要特定的工具设计,以生产长纤维聚合物零件。使用长纤维允许获得相对高的纤维纵横比,从而提高复合刚度,强度,蠕变耐久性和疲劳耐久性。然而,注塑部件的复合设计可以在模制过程中导致焊接线形成,这降低了模塑部件的结构强度。因此,在本研究中,比较了长玻璃纤维增​​强聚丙烯(PP / LGF)注塑样品的表面质量,纤维相容性和结构强度,在使用与模具腔溢流井面积的使用相比和模具面红外加热方法。实验结果表明,模腔溢流阱面积更大地改善了PP / LGF模塑样品的表面粗糙度。此外,模具面的红外加热降低了样品的焊缝深度。光学显微镜图像和模腔压力分布表明,在模塑阶段期间,纤维之间的焊缝抗拉强度和纤维之间的界面相容性比在模具腔溢流井的非使用中的使用中较高。模具面红外加热方法。

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