Cross-section distortion and springback characteristics of double-cavity aluminum profile in force controlled stretch-bending

IF 4.7 1区 材料科学 Q1 METALLURGY & METALLURGICAL ENGINEERING Transactions of Nonferrous Metals Society of China Pub Date : 2024-08-01 DOI:10.1016/S1003-6326(24)66554-4
Zhi-wen LIU , Zi-xuan DONG , Cong-chang XU , Jie YI , Luo-xing LI
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Abstract

A 3D elastic-plastic FE model for simulating the force controlled stretch-bending process of double-cavity aluminum profile was established using hybrid explicit−implicit solvent method. Considering the computational accuracy and efficiency, the optimal choices of numerical parameters and algorithms in FE modelling were determined. The formation mechanisms of cross-section distortion and springback were revealed. The effects of pre-stretching, post-stretching, friction, and the addition of internal fillers on forming quality were investigated. The results show that the stress state of profile in stretch-bending is uniaxial with only a circumferential stress. The stress distribution along the length direction of profile is non-uniform and the maximum tensile stress is located at a certain distance away from the center of profile. As aluminum profile is gradually attached to bending die, the distribution characteristic of cross-section distortion along the length direction of profile changes from V-shape to W-shape. After unloading the forming tools, cross-section distortion decreases obviously due to the stress relaxation, with a maximum distortion difference of 13% before and after unloading. As pre-stretching and post-stretching forces increase, cross-section distortion increases gradually, while springback first decreases and then remains unchanged. With increasing friction between bending die and profile, cross-section distortion slightly decreases, while springback increases. Cross-section distortion decreases by 83% with adding PVC fillers into the cavities of profile, while springback increases by 192.2%.

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力控拉伸弯曲双腔铝型材的截面变形和回弹特性
采用显式-隐式混合溶剂法,建立了模拟双腔铝型材受力控制拉伸弯曲过程的三维弹塑性有限元模型。考虑到计算精度和效率,确定了 FE 建模中数值参数和算法的最佳选择。揭示了截面变形和回弹的形成机理。研究了预拉伸、后拉伸、摩擦和添加内部填料对成形质量的影响。结果表明,拉伸弯曲时型材的应力状态是单轴的,只有圆周应力。沿型材长度方向的应力分布不均匀,最大拉伸应力位于距离型材中心一定距离的位置。当铝型材逐渐贴到弯曲模具上时,型材截面变形沿长度方向的分布特征由 V 型变为 W 型。成型模具卸载后,由于应力松弛,横截面变形明显减小,卸载前后的最大变形差为 13%。随着预拉伸力和后拉伸力的增加,横截面变形逐渐增大,而回弹先减小后保持不变。随着弯曲模具和型材之间摩擦力的增加,横截面变形略有减小,而回弹增加。在型材空腔中加入聚氯乙烯填料后,横截面变形减少了 83%,而回弹增加了 192.2%。
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来源期刊
CiteScore
7.40
自引率
17.80%
发文量
8456
审稿时长
3.6 months
期刊介绍: The Transactions of Nonferrous Metals Society of China (Trans. Nonferrous Met. Soc. China), founded in 1991 and sponsored by The Nonferrous Metals Society of China, is published monthly now and mainly contains reports of original research which reflect the new progresses in the field of nonferrous metals science and technology, including mineral processing, extraction metallurgy, metallic materials and heat treatments, metal working, physical metallurgy, powder metallurgy, with the emphasis on fundamental science. It is the unique preeminent publication in English for scientists, engineers, under/post-graduates on the field of nonferrous metals industry. This journal is covered by many famous abstract/index systems and databases such as SCI Expanded, Ei Compendex Plus, INSPEC, CA, METADEX, AJ and JICST.
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