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冲压制造的钢/CFRP混合部件界面行为预测

Prediction of the Interface Behavior of a Steel/CFRP Hybrid Part Manufactured by Stamping.

作者信息

Ryu Jae-Chang, Lee Chan-Joo, Shin Do-Hoon, Ko Dae-Cheol

机构信息

Department of Nanomechatronics Engineering, Pusan National University, Busan 46241, Republic of Korea.

Precision Manufacturing & Control R&D Group, Korea Institute of Industrial Technology, Jinju 52845, Republic of Korea.

出版信息

Materials (Basel). 2024 Aug 30;17(17):4291. doi: 10.3390/ma17174291.

Abstract

Carbon fiber-reinforced plastic (CFRP) is a lightweight material. The automotive industry has focused on producing a steel/CFRP hybrid part to reduce overall weight. After manufacturing, delamination can occur at the interface between the CFRP and steel owing to the hybrid part constituting dissimilar materials. However, most studies have focused only on designing the manufacturing processes for the hybrid part or evaluating the adhesive used at the interface. Therefore, it is necessary to predict the behavior of the interface after demolding the hybrid part. This study aimed to predict the interface behavior of a steel/CFRP hybrid part by considering its forming and cohesive properties. First, double cantilever beam (DCB) and end-notched flexure (ENF) tests were performed to obtain cohesive parameters, such as energy release rate of modes I and II (G, G). The experimentally obtained properties were applied to the bonding area of the hybrid part. Subsequently, a forming simulation was performed to obtain the stress of the steel blank in the hybrid part. The stress distribution after forming was utilized as the initial condition for spring-back simulation. Finally, the interface behavior of the hybrid part was predicted by a spring-back simulation. The simulation was conducted using the residual stress of steel outer and the cohesive properties on the interface, without the application of any external forces. The cases of spring-back simulation were divided as delamination occurrence and attached state. The simulation results for prediction of delamination occurrence and bonding showed good agreement in both cases with experimental ones. The proposed method would contribute to expanding the manufacturing of the hybrid part by stamping and reducing the manufacturing cost by prediction of delamination occurrence.

摘要

碳纤维增强塑料(CFRP)是一种轻质材料。汽车行业一直致力于生产钢/CFRP混合部件以减轻整体重量。制造后,由于混合部件由不同材料构成,在CFRP与钢的界面处可能会发生分层。然而,大多数研究仅专注于设计混合部件的制造工艺或评估界面处使用的粘合剂。因此,有必要预测混合部件脱模后的界面行为。本研究旨在通过考虑钢/CFRP混合部件的成型和内聚性能来预测其界面行为。首先,进行双悬臂梁(DCB)和端部切口弯曲(ENF)试验以获得内聚参数,如I型和II型能量释放率(G₁、G₂)。将实验获得的性能应用于混合部件的粘结区域。随后,进行成型模拟以获得混合部件中钢坯的应力。成型后的应力分布用作回弹模拟的初始条件。最后,通过回弹模拟预测混合部件的界面行为。模拟使用钢外层的残余应力和界面处的内聚性能进行,无需施加任何外力。回弹模拟的情况分为分层发生和附着状态。分层发生预测和粘结的模拟结果在两种情况下与实验结果均显示出良好的一致性。所提出的方法将有助于通过冲压扩大混合部件的制造,并通过预测分层发生来降低制造成本。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1e3f/11396715/2c79fbf6aa1c/materials-17-04291-g001a.jpg

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