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Experimental Measurement of the Resistant Load in Injection Pultrusion Processes

机译:注射拉挤工艺抗性负荷的实验测量

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Injection pultrusion (IP) process is a manufacturing technique for producing advanced fiber reinforced polymers having constant cross-section. Unlike the traditional pultrusion process, in which fibers are impregnated passing through an open bath of liquid resin, in IP the uncured polymer is directly injected within the advancing reinforcement in a close chamber generally connected to the die. This paper investigates the resistant forces evolution in IP process at different pulling speeds. Resistant loads are mainly due to the interaction between the advancing material and the die cavity walls, inducing residual stress and, eventually, internal defects. These loads are typically classified in three main contributes, namely fiber collimation, viscous drag and solid friction. The latter two are directly related to the resin degree of cure, and, therefore, the overall resistant load is dramatically sensitive to the changes in operative parameters. In this paper, the resistant force acting along the die cavity has been measured using a dedicated experimental setup. Measurements were performed during the pultrusion of glass-reinforced polyester with different pulling speeds to evidence the variations in resistant load as a function of the process velocity.
机译:注射拉挤型(IP)工艺是生产具有恒定横截面的先进纤维增强聚合物的制造技术。与传统的拉挤工艺不同,其中纤维浸渍通过液体树脂的开口浴,在IP中,未固化聚合物在通常连接到模具的接近腔室内直接注入前进的加强件内。本文调查了不同拉速下IP过程中的抗性势力演变。耐荷载主要是由于前进材料和模腔壁之间的相互作用,诱导残余应力,最终,内部缺陷。这些载荷通常在三个主要贡献中进行分类,即纤维准直,粘性阻力和固体摩擦。后两个与树脂固化程度直接相关,因此,整体抗载荷对操作参数的变化显着敏感。在本文中,使用专用的实验设置测量沿着模腔的抗性力。在玻璃增强型聚酯的覆膜期间进行测量,以不同的拉速,以证明作为过程速度的函数的抗性负载的变化。

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