首页> 外文会议>Materials and contact characterisation VIII >EFFECTS OF PRESS PRESSURE ON THE MECHANICAL PROPERTIES OF RIB ROOT FOR GLASS FIBER REINFORCED POLYPROPYLENE COMPOSITES, MOLDED BY PRESS AND INJECTION HYBRID MOLDING
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EFFECTS OF PRESS PRESSURE ON THE MECHANICAL PROPERTIES OF RIB ROOT FOR GLASS FIBER REINFORCED POLYPROPYLENE COMPOSITES, MOLDED BY PRESS AND INJECTION HYBRID MOLDING

机译:压力对玻璃纤维增​​强聚丙烯复合材料模压和注射成型的肋条根力学性能的影响

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摘要

The press and injection hybrid molding system, which is a novel molding technology with the combination of press molding and injection molding, is expected for the production of FRTP (Fiber Reinforced Thermoplastics) with complicated shapes and high levels of stiffness and strength. Press and injection hybrid molded structures consist of an outer shell laminate of continuous fiber and injected short or long fiber reinforced thermoplastics which form the rib structure. The higher mold temperature was reported to increase the strength of the interface between the outer shell laminate and injected material. On the other hand, the penetration of continuous fibers of the outer shell laminate into the rib structure decreases the mechanical properties of the outer shell laminate. While the effects of mold temperature on the mechanical properties of hybrid molded composites were clarified, the effects of press pressure have not been clarified yet. In this study, the effects of the press pressure on the mechanical properties of the outer shell laminate and interfacial strength between the outer shell laminate and injected material were evaluated. As the lower press pressure decreases, the penetrated height of continuous fiber into the rib structure, higher in-plane tensile strength and lower interfacial strength, are obtained.
机译:冲压和注射混合成型系统是一种新颖的成型技术,将冲压成型和注射成型相结合,有望用于生产形状复杂,刚度和强度高的FRTP(纤维增强热塑性塑料)。压制和注射混合模制结构由连续纤维的外壳层压板和形成肋结构的注射的短纤维或长纤维增强热塑性塑料组成。据报道,较高的模具温度可提高外壳层压板和注塑材料之间的界面强度。另一方面,外壳层压板的连续纤维渗透到肋结构中会降低外壳层压板的机械性能。尽管阐明了模具温度对混合模塑复合材料机械性能的影响,但尚未明确压力的影响。在这项研究中,评估了压力对外壳层压板的机械性能以及外壳层压板与注入材料之间的界面强度的影响。随着较低的压力降低,连续纤维渗透到肋结构中的高度,较高的面内拉伸强度和较低的界面强度被获得。

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