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Abrasive Waterjet texturing as a method to enhance the embedment of metallic inserts in composite materials

机译:磨料Waterjet纹理作为增强复合材料中金属插入物嵌入的方法

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This research work arises from the need of embedding metals in composite materials to improve mechanical performance of adapted metal inserts for the union of rotor blades by improving the inertia, while strengthening and decreasing the total weight of the structure. The resin union itself or with adhesives is not enough to achieve the high requirements demanded by industries like boat industry, civil engineering, aerospace industry or wind sector, where high loads are commonly employed. This work proposes an innovative method to assure a rigid and secure embedment of the metallic insert, thus, avoiding problems related to the decoupling of the metal-composite interface. This method consists on generating a "mechanical restraint" by texturing the metallic surface by abrasive waterjet (AWJ) technology, which has demonstrated to be a flexible method to generate different textures in metallic surfaces. This paper presents the experimental work done in steel and fiberglass/epoxy laminate.
机译:该研究作品源于在复合材料中嵌入金属的需要,以通过改善惯性来改善转子叶片联盟的适应金属插入物的机械性能,同时强化和降低结构的总重量。树脂联盟本身或粘合剂不足以实现船舶工业,土木工程,航空航天工业或风电场等行业所需的高要求,其中通常采用高负荷。这项工作提出了一种创新方法,以确保金属插入物的刚性和牢固的嵌入,从而避免了与金属复合界面的去耦相关的问题。该方法包括通过磨削水射流(AWJ)技术纹理金属表面来产生“机械束缚”,这已经证明是在金属表面中产生不同纹理的柔性方法。本文介绍了钢和玻璃纤维/环氧树脂层的实验工作。

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