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1)  nonisothermal drawing
差温拉延
1.
The distributions of temperature and nonisothermal drawing process were discussed.
采用热力耦合技术对镁合金板材温热冲压过程中的温度场进行了数值模拟,研究了冲压过程中温度场的分布规律,并对差温拉延工艺进行了分析。
2)  stainless steels/temperature-differential drawing
不锈钢/温差拉延
3)  thermal tensioning
温差拉伸
1.
Using thermal tensioning and trailing intense cooling simultaneously to reduce welding distortion;
温差拉伸和随焊激冷配合使用控制焊接变形
2.
The effects of distortion control in welding thin aluminum alloy plates by two kinds of thermal tensioning were investigated.
对两种形式的温差拉伸控制铝合金薄板焊接残余变形的效果和规律进行了研究。
4)  differential temperature drawing
差温拉深
1.
Combination of differential temperature drawing and superplastic bulging;
差温拉深/超塑性胀形复合工艺研究
2.
Superplastic differential temperature drawing of 5083 aluminum alloy bracket based on finite element simulation
基于有限元仿真的5083铝合金支架超塑性差温拉深
3.
The combination of superplastic differential temperature drawing(SDTD) and sizing was investigated with thermal-mechanical coupled numerical simulation and experiment.
采用热-力耦合数值模拟与试验结合,研究超塑性差温拉深与整形复合工艺。
5)  warm drawing
温差拉深
1.
Research on numerical simulation of warm drawing of cup;
筒形件温差拉深数值模拟研究
2.
Temperature is an important factor that affects the warm drawing.
温差拉深可以提升金属板料的成形性,减少引伸成形的拉伸次数。
6)  superplastic differential temperature drawing
超塑性差温拉深
1.
In this paper, the superplastic differential temperature drawing of AA5083aluminum alloy is performed.
超塑性差温拉深主要是通过控制拉深件突缘与凸模底部之间的温度差来实现板料拉深性能的提高。
补充资料:差差
1.犹参差。不齐貌。
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