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纤维增强聚合物复合材料与金属的机械连接——综述。第二部分:铆接、压铆、非粘结形状锁定接头、销钉和环连接

Mechanical Joining of Fibre Reinforced Polymer Composites to Metals-A Review. Part II: Riveting, Clinching, Non-Adhesive Form-Locked Joints, Pin and Loop Joining.

作者信息

Galińska Anna, Galiński Cezary

机构信息

Institute of Aeronautics and Applied Mechanics, Faculty of Power and Aeronautical Engineering, Warsaw University of Technology, Nowowiejska 24, 00-665 Warsaw, Poland.

出版信息

Polymers (Basel). 2020 Jul 28;12(8):1681. doi: 10.3390/polym12081681.

Abstract

As fiber reinforced plastic composites gain an increasingly larger share in aerospace structures, the problem of joining them with metal elements becomes significant. The current paper is the second part of the literature review, which gathers and evaluates knowledge about methods suitable for the mechanical joining of composite and metal elements. This paper reviews the joining methods other than bolted joining, which are discussed in the first part of the review, namely self-piercing riveting, friction riveting, clinching, non-adhesive form-locked joints, pin joints, and loop joints. Some of those methods are full-fledged and employed in commercial applications, whereas others are merely ideas tested at the level of specimens. The current review describes the ideas and the qualities of the joining methods as well as the experimental work carried out so far. The summary section of this paper contains a comparison of those methods with the reference to their qualities, which is important from the point of view of a composite structure designer: possibility of the joint disassembly, damages induced in composite, complication level, weight penalty, range of possible materials to be joined, and the joint strength.

摘要

随着纤维增强塑料复合材料在航空航天结构中的占比越来越大,将它们与金属部件连接的问题变得日益重要。本文是文献综述的第二部分,该综述收集并评估了有关适用于复合材料与金属部件机械连接方法的知识。本文回顾了除螺栓连接之外的连接方法,螺栓连接在综述的第一部分已有讨论,即自冲铆接、摩擦铆接、压铆、无胶粘剂形状锁定接头、销钉接头和环扣接头。其中一些方法已经成熟并应用于商业领域,而其他一些方法仅仅是在试件层面进行过测试的设想。当前的综述描述了这些连接方法的设想和特性,以及迄今为止开展的实验工作。本文的总结部分对这些方法的特性进行了比较,这从复合材料结构设计者的角度来看很重要:接头拆卸的可能性、复合材料中产生的损伤、复杂程度、重量增加、可连接材料的范围以及接头强度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9ae5/7465176/131260cd88f0/polymers-12-01681-g001.jpg

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