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A self-piercing-through riveting method for joining of discontinuous carbon fiber reinforced nylon 6 composite

机译:一种不连续碳纤维增强尼龙6复合材料的自穿孔铆接方法

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摘要

An innovative self-piercing-through riveting (SPTR) method for joining of discontinuous carbon fiber reinforced nylon 6 composite (C-f/PA6) to serve as a peel stopper has been developed. In this joining method, the leg of the rivet is forced through the workpieces and into contact with the die troughs, and the leg flares out along the trough surfaces to create a hook mechanically linking the adjacent workpieces. To develop this method, SPTR of 2.5 mm thick compression molded C-f/PA6 with 30% mass fiber and the load-displacement characteristics of the riveted lap-shear joints under a quasi-static loading were tested and modeled. The results showed that the static strength and displacement of the self-piercing-through riveted joint were significantly stronger than those of the joints made with conventional self-piercing riveting (SPR) process. These results were primarily attributed to a greater amount of materials being clinched in SPTR process with solid mechanical interlocks formed between the rivet and workpieces. Although the severe local deformation was induced next to the tip of the rivet leg during SPTR process, the mechanical interlock (i.e., undercut) between the rivet and workpieces appeared to be a dominant factor in determining the static strength of the self-piercing-through riveted C-f/PA6.
机译:已经开发出一种创新的自穿孔铆接(SPTR)方法,用于连接不连续的碳纤维增强尼龙6复合材料(C-f / PA6)以用作剥离塞。在这种连接方法中,铆钉的腿被迫穿过工件并与模具槽接触,并且该腿沿槽表面张开以形成机械地连接相邻工件的钩子。为了开发这种方法,测试并建模了具有30%质量纤维的2.5毫米厚压缩成型C-f / PA6的SPTR和铆接搭接接头在准静态载荷下的载荷位移特性。结果表明,自穿孔铆接接头的静态强度和位移明显强于采用传统自穿孔铆接(SPR)工艺制成的接头。这些结果主要归因于在SPTR加工过程中,铆钉和工件之间形成了牢固的机械互锁,从而压制了更多的材料。尽管在SPTR过程中在铆钉腿的尖端附近引起了严重的局部变形,但是铆钉与工件之间的机械互锁(即咬边)似乎是确定自穿孔式静态强度的主要因素。铆接Cf / PA6。

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