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Improvements in Tooling and Injection for High Volume Fraction LCM

机译:高体积分数LCM的工具和注射方法的改进

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Liquid composite molding (LCM) processes have been effectively used for the production of low cycle time, low volume fraction, and high cycle time, high volume fraction parts, but the production of high fiber fraction structural composites combined with short cycle times required by even low volume automotive production remains a challenge. With support from the NIST's Advanced Technology Program, Stewart Automotive Research has developed tooling and molding technology that allows a fiber preform to be filled primarily through its thickness, greatly reducing the flow path and infusion times, resulting in volume fractions comparable to autoclave cured composites. By manipulating an articulated upper mold surface under computer control, the preform is held in place while resin is distributed over its surface and then forced through the thickness. Infusion time is largely independent of part size, while tooling costs scale linearly with size. Because of the short infusion path, the process can operate at low pressures, which helps to offset the cost of the more complex tooling. Altair Engineering (Troy, Michigan) has developed a robust process simulation that is used to optimize the program controlling the mold actuation.
机译:液体复合材料成型(LCM)工艺已被有效地用于生产低循环时间,低体积分数和高循环时间,高体积分数零件,但是高纤维分数结构复合材料的生产与短循环时间相结合,甚至需要小批量汽车生产仍然是一个挑战。在NIST的高级技术计划的支持下,斯图尔特汽车研究公司开发了工具和成型技术,该技术可使纤维预成型件主要通过其厚度进行填充,从而大大减少了流路和注入时间,从而产生了与高压釜固化复合材料相当的体积分数。通过在计算机控制下操纵铰接的上模具表面,可以将预成型件固定在适当的位置,同时将树脂分布在其整个表面上,然后迫使其穿过厚度。灌注时间很大程度上与零件尺寸无关,而模具成本则随尺寸线性增加。由于输液路径短,该过程可以在低压下运行,这有助于抵消更复杂工具的成本。 Altair工程公司(密歇根州特洛伊市)开发了强大的过程仿真,可用于优化控制模具驱动的程序。

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