Springback properties of single- And poly-crystalline pure aluminum processed by severe plastic deformation

被引:0
作者
Sakai, Takashi [1 ]
Yoshida, Keisuke [2 ]
Koyama, Jun-Ichi [3 ]
Nakamachi, Eiji [4 ]
机构
[1] Department of Mechanical Engineering, Takamatsu National College of Technology, Takamatsu-shi, Kagawa 761-8058
[2] Department of Mechanic Electrical System Engineering, Advanced Course of Takamatsu National College of Technology, Takamatsu-shi, Kagawa
[3] AMADA Co., Ltd.
[4] Biomedical Engineering, Faculty of Life and Medical Sciences, Doshisha University, Kyotanabe-shi, Kyoto
来源
Keikinzoku/Journal of Japan Institute of Light Metals | 2009年 / 59卷 / 04期
关键词
Bending test; Grain refinement; Microstructure; Pure aluminum; Single crystal; Springback property;
D O I
10.2464/jilm.59.179
中图分类号
学科分类号
摘要
A bending tester with an incorporated high-precision angle sensor was developed in this study. Pure aluminum single crystal and polycrystalline materials were used. Bending properties, especially the springback characteristics of materials as-received and fine-grained using AR and ECAP processes, were investigated. The springback characteristics are discussed based on various mechanical properties that were elucidated by tensile and hardness tests. Consequently, the following results were obtained. (1) AR and ECAP cold-processing refined grains of both single crystal and polycrystalline materials with almost no work hardening exhibited increased Vicker's hardness Hv without a decrease in elongation δ, at an equivalent strain εe of not less than 1.0. (2) The ECAP sample, which underwent many cycles of high strain processing, i.e., being subjected to large equivalent strain ε, indicated a large springback angle δ SB. It also turned out that springback angle increased with an increment of δ SB=0.1° per cycle of ECAP processing. (3) Both «ECAP-s [110] and «ECAP-p samples demonstrated a constant springback angle δ SB, irrespective of equivalent strain e at a bending angle of not less than δ=95°. ( 4) Fine-grained materials show a bigger springback angle δ SB than as-delivered materials. Nevertheless, AR and ECAP samples, processed with different strain loading mode, showed little difference in the trend of spring back angle δ SB against bending angle δ. (5) Steel materials over a wide range tend to indicate springback angle δ SB in direct relation to the « value. However, fine-grained pure aluminum material of this study turned out not to conform to this trend. The result of this series can constitute fundamental data that are useful toward the establishment of a plastic deformation processing method of fine-grained materials.
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页码:179 / 184
页数:5
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