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首页> 外文期刊>Polymers & Polymer Composites >Pull Speed Influence on Fiber Compaction and Wetout in Tapered Resin Injection Pultrusion Manufacturing
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Pull Speed Influence on Fiber Compaction and Wetout in Tapered Resin Injection Pultrusion Manufacturing

机译:锥形树脂喷射制造中纤维压实与湿湿的拉速影响

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In the resin injection pultrusion process (RIP), liquid resin is injected into the tapered injection chamber through the injection slots to completely wetout continuously pulled fibers. As the resin penetrates through the fibers, the resin also pushes the fibers away from the wall towards the centerline, causing compaction of the fiber reinforcements. The fibers are squeezed together due to compaction, making resin penetration more difficu thus at low resin injection pressures, the resin cannot effectively penetrate through the fibers to achieve complete wetout. However, if the resin injection pressure is too high, the fibers are squeezed together to such an extent that even greater injection pressure is necessary to wetout the compacted fibers. The design of the injection chamber significantly affects the minimum injection pressure required to wetout the fiber reinforcements. A tapered injection chamber is considered such that wetout occurs at lower injection pressures due to the taper angle of the injection chamber. In this study, the effect of fiber pull speed on the fiber reinforcement compaction and complete fiber wetout for a tapered injection chamber is investigated.
机译:在树脂注射拉挤法(RIP)中,通过喷射槽将液体树脂注入锥形喷射室中,以完全湿润连续拉出纤维。当树脂穿透纤维时,树脂也将纤维推远离壁向中心线,导致纤维增强剂的压实。纤维由于压实而被压在一起,使树脂渗透更加困难;因此,在低树脂注射压力下,树脂不能通过纤维有效地穿透纤维以实现完全湿润。然而,如果树脂注入压力太高,则纤维被挤压在一起,使得甚至更大的喷射压力是避难的压缩纤维所必需的程度。注射室的设计显着影响湿纤维增强剂所需的最小注射压力。被认为是锥形喷射室,使得由于喷射室的锥角导致的较低注射压力以较低的注射压力发生。在该研究中,研究了纤维拉速对锥形喷射室的纤维增强压实和完全纤维湿湿的影响。

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