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Effect of processing parameters on the fabrication of fiber metal laminates by vacuum infusion process

机译:真空输注过程加工参数对纤维金属层压板制备的影响

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摘要

Fiber metal laminates (FMLs) are hybrid structures made of fibrous composite layers that are located between thin metal layers and joined together by resin. In the current fabrication process, FMLs require prepreg and use of an autoclave or press. This will increase the cost of production and limit the size of the piece to the dimensions of the autoclave or press. Hence, there is an interest in finding methods of construction that are affordable and have no dimensional limitations but also does not reduce the quality of the part. Vacuum infusion is a convenient and economical way to provide high-quality composite components. In this article, the possibility to construct FMLs with this method, as well as the effects of different parameters such as the number of layers, the type of fiber, and the presence of holes in metal layers on the time and quality of parts, is investigated. The fibers used consisted of unidirectional fibers (300 and 600 g/m(2)), woven, and CFM (300 g/m(2)). The results show that, increasing the number of fibrous layers, metal sheets or using woven fibers increased the infusion time, and the presence of holes in aluminum layers or using CFM fibers reduced the infusion time. However, the presence of holes in aluminum layers significantly reduces the time of infusion but weakens the mechanical properties of the FMLs. The results of the tensile tests showed that, although the elastic modulus does not change, ultimate strength and fracture strain of the specimen containing holes were 9% and 27% less than the specimen without hole, respectively.
机译:纤维金属层压板(FMLS)是由纤维复合层制成的混合结构,其位于薄金属层之间并通过树脂连接在一起。在当前的制造过程中,FMLS需要预浸料和使用高压釜或压力机。这将提高生产成本,并将件的尺寸限制为高压釜或压力机的尺寸。因此,对找到实惠的构造方法有兴趣,并且没有尺寸限制,但也不会降低部分的质量。真空输注是一种方便,经济的方式提供高质量的复合部件。在本文中,可以使用这种方法构建FML的可能性,以及不同参数的影响,例如层数,光纤类型,光纤的类型以及零件的​​时间和质量的金属层中的孔的存在。调查。使用的纤维由单向纤维(300和600g / m(2)),编织和CFM(300g / m(2))组成。结果表明,增加纤维层的数量,金属板或使用编织纤维增加输液时间,并且铝层中的孔或使用CFM纤维的存在降低了输注时间。然而,铝层中的孔的存在显着减少了输注的时间,但削弱了FML的机械性能。拉伸试验的结果表明,尽管弹性模量不改变,但分别含有孔的最终强度和裂缝菌株的孔的裂缝分别比没有孔的样品少的9%和27%。

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