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纤维金属层板成形极限测试的新试样设计
引用本文:何诞,陶杨洋,陶杰.纤维金属层板成形极限测试的新试样设计[J].哈尔滨工业大学学报,2022,54(5):94-103.
作者姓名:何诞  陶杨洋  陶杰
作者单位:南京航空航天大学 材料科学与技术学院,南京211106
基金项目:国家重点研发计划(2017YFB0703301)
摘    要:在拉深成形过程中,纤维金属层板常见的失效模式主要有起皱、纤维拉伸断裂以及界面分层.受金属拉深成形测试的启发,经研究,当纤维金属层板以纤维拉伸断裂与界面分层失效为主要的失效模式时,可以将纤维应变引入到成形极限图中.但是,由于用于拉深测试的传统金属条状试样形状会干扰纤维金属层板内纤维应变的计算,因此,本研究设计了一种新型切...

关 键 词:玻璃纤维增强铝合金层板  纤维拉伸断裂  界面分层  纤维应变  切槽试样
收稿时间:2021/2/8 0:00:00

New specimen design for forming limit test of fibre metal laminates
HE Dan,TAO Yangyang,TAO Jie.New specimen design for forming limit test of fibre metal laminates[J].Journal of Harbin Institute of Technology,2022,54(5):94-103.
Authors:HE Dan  TAO Yangyang  TAO Jie
Affiliation:College of Materials Science and Technology, Nanjing University of Aeronautics and Astronautics, Nanjing 211106, China
Abstract:In the process of deep drawing, the common failure modes of fibre metal laminates are wrinkling, fibre tensile fracture, and interface delamination. Inspired by the deep drawing test of metal, fibre strain can be introduced into the forming limit diagram when fibre tensile fracture and interface delamination failure are the main failure modes of fibre metal laminates. However, since the shape of the traditional metal strip specimen used for deep drawing test is an obstacle for the calculation of fibre strain in fibre metal laminates, a new notched specimen was designed in this study. The formability of glass fibre/polyamide resin (Gf/PA) composite-aluminum alloy laminate was investigated by comparing the forming tests of traditional strip specimens and the proposed notched specimens. Results show that the proposed notched specimen could ensure the calculated fibre strain level within 6%. Through the classification of different fibre strain intervals, it could be clearly divided that the failure form of deep drawing of laminates was fibre tensile fracture or interface delamination. It was found that the forming limit diagram of the notched specimen consisted of three regions: forming safety zone, fibre tensile fracture zone, and interface delamination zone. In addition, the forming limit curves obtained from the notched specimens could combine the deformation evolution with the failure mechanism, and more effectively characterize the deep drawing formability of fibre metal laminates.
Keywords:glass fibre reinforced aluminium alloy laminate  fibre tensile fracture  interface delamination  fibre strain  notched specimen
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