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Simple manufacturing method for a thermoplastic composite using PP-Straw

机译:使用PP-Straw的热塑性复合材料的简单制造方法

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摘要

Disposable PP-straws are cylindrical tubes composed of a thermoplastic film and are readily used as thermoplastic composites intermediate if carbon fiber (CF) is reinforced. Herein, we used PP-straw as a matrix material and developed a carbon fiber PP-straw prepreg (CSP) using CF reinforced materials. Disposable straws can be recycled to produce composites by using PP-straws, and the manufacturing process of the thermoplastic composite material is simplified. The CF content suitable for PP-straws was determined at 40 wt% by tensile strength and electrical resistance changes in pressurizing CSP. In manufacturing CSP, field emission scanning electron microscopy (FE-SEM) showed that the PP matrix was impregnated when the gap between the fibers was >5 mu m, thus air texturing was used to widen the gap between the CF tows. Suitable fiber configurations for the CSP were formed at 4 kPa of air texturing pressure, and the CSP properties were degraded because of damaged fibers under higher-pressure conditions. The tensile impact and inter-laminar shear strengths (ILSS) were evaluated, and the improved properties of the CF PP-straw composites were confirmed with increasing fiber length.
机译:一次性PP吸管是由热塑性薄膜组成的圆柱管,如果碳纤维(CF)增强,则很容易用作热塑性复合材料的中间体。在本文中,我们使用PP秸秆作为基质材料,并使用CF增强材料开发了碳纤维PP秸秆预浸料(CSP)。可以使用PP吸管回收一次性秸秆以生产复合材料,从而简化了热塑性复合材料的制造过程。通过加压CSP中的拉伸强度和电阻变化,将适于PP吸管的CF含量确定为40重量%。在生产CSP时,场发射扫描电子显微镜(FE-SEM)显示,当纤维之间的间隙> 5μm时,PP基体被浸渍,因此采用空气织构化来加宽CF丝束之间的间隙。用于CSP的合适纤维构型是在4 kPa的空气变形压力下形成的,由于在高压条件下纤维受损,导致CSP性能下降。评估了拉伸冲击强度和层间剪切强度(ILSS),并且随着纤维长度的增加,证实了CF PP-稻草复合材料的性能得到改善。

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