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Effect of impregnation conditions on prepreg properties and honeycomb core crush

机译:浸渍条件对预浸料性能和蜂窝芯破碎的影响

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摘要

The effects of fiber tension, line speed, and impregnation temperature and pressure in the prepregging process used to manufacture a commercial high temperature toughened epoxy prepreg were investigated in a Design of Experiments (DOE) to understand core crush in honeycomb composite structures. The prepregs developed in this DOE were characterized by tack, permeation, optical microscopy, and frictional resistance. Of these methods, frictional resistance was found to correlate with core crush. Tack, permeation, and optical microscopy provided a basis for understanding this relationship through impregnation and morphology, Prepregs manufactured with high fiber tension showed greater crush and less frictional resistance than prepregs with manufactured low fiber tension. These low tension prepregs were found to have more fibers at the prepreg surface, allowing them to grip the adjacent surface and resist slippage. By identifying the key actors influencing honeycomb core crush, the prepregging process was modified, producing a crush-resistant prepreg for end use manufacture.
机译:在实验设计(DOE)中研究了纤维张力,线速度,浸渍温度和压力对用于制造商业高温增韧环氧预浸料坯的预浸过程的影响,以了解蜂窝复合结构中的芯体破碎。该DOE中开发的预浸料的特点是粘性,渗透性,光学显微镜和耐摩擦性。在这些方法中,发现摩擦阻力与岩心破碎相关。粘性,渗透性和光学显微镜为通过浸渍和形态学理解这种关系提供了基础。与高纤维张力制造的预浸料相比,高纤维张力制造的预浸料显示出更大的压碎性和较小的摩擦阻力。发现这些低张力的预浸料坯在预浸料坯表面具有更多的纤维,从而使它们能够抓握相邻的表面并抵抗滑动。通过确定影响蜂窝芯破碎的关键因素,对预浸工艺进行了修改,从而生产出用于最终用途制造的耐压预浸料。

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