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1)  superplastic forming(SPF)
超塑性胀形成形
2)  superplastic bulging
超塑性胀形
1.
Combination of differential temperature drawing and superplastic bulging;
差温拉深/超塑性胀形复合工艺研究
3)  superplastic bulging
超塑胀形
1.
On the basis of the rigid visco-plastic FEM technique,the numerical simulation of the cavity-damage evoluation process during superplastic bulging process was carried out using the model of cavity-damage evolution deduced from continuous damage mechanics.
利用刚粘塑性有限元技术采用连续损伤力学导出的空洞损伤演变模型对超塑胀形的空洞损伤演变过程进行了数值模拟。
2.
In order to shorten forming time and to achieve uniform thickness of parts in superplastic bulging of void-sensitive materials, it is well known that maximum effective strain rate should be kept within a very small range.
压力 -时间曲线在超塑胀形工艺参数的选择和工艺过程优化设计中至关重要。
3.
Therefore, there will be more practical significance on its practical application to the expansion of the scope of a more complex shape of magnesium alloy parts, whether or not it has superplasticity study under certain conditions using superplastic bulging forming.
从而为指导超塑胀形实验及生产,预测成形缺陷提供了一条有效途径。
4)  Superplastic Bulging
超塑性气压胀形
1.
Research on Design and Implement of a Pressure-Time Curve Controlled Superplastic Bulging System;
超塑性气压胀形测控系统的设计与实现
5)  superplastic forming
超塑性成形
1.
The properties,classification and characteristics of magnesium alloys are discussed,and the magnesium alloy material and the related smelting techniques are described including cast,mechanicle process,plastic forming,superplastic forming technologies,the present questions of our nation's magnesium industry are discussed too,the superiority and prospect for future are indicated finally.
论述了镁合金的性能、种类及特点,介绍了镁合金材料及其熔炼技术,以及镁合金的铸造、机加工、塑性变形、超塑性成形等成形技术,并对中国镁合金工业存在的问题进行了讨论,指出了中国发展镁合金工业的优势,并展望了发展前景。
2.
The properties of bulk amorphous alloys,especially the superplastic forming property in the supercooled liquid region are summarized.
对各种精细零部件成形方法进行了比较,介绍了典型大块非晶合金的特性,尤其是大块非晶合金在过冷温度域的超塑性成形性能,概述了目前国外已开发的非晶合金精细零部件超塑性成形技术及其在典型精细零部件成形方面的应用。
6)  superplastic forming
超塑成形
1.
Finite element simulation and deformation analysis of superplastic forming of a Ti6Al4V blade;
TC4叶片超塑成形有限元模拟及其变形分析
2.
Hot-press sintering and superplastic forming of nano-ceramics*;
纳米陶瓷的热压烧结及超塑成形(英文)
3.
Theory and practice in the field of superplastic forming ——Contribution of Professor Z. R. Wang in the research field of superplasticity;
超塑成形理论与实践——王仲仁教授在超塑性研究领域的贡献
补充资料:超改进控制加权形心单纯形法
分子式:
CAS号:

性质:结合了超改进单纯形法与控制形心单纯形法两者的优点而产生的一种单纯形优化方法。由除响应值最差的顶点w以外的其余各单纯形顶点的响应值计算加权形心点pw,引入控制参数γ调节加权形心点的位置,确定w的反射点pγ,以保证单纯形沿逼近梯度的方向推移。在确定的推移方向上,根据顶点w、加权形心点pw。和反射点pγ的响应值用二次曲线拟合求导,决定单纯形的新顶点,以保证新顶点在该推移方向上是最优的,从而加快了优化速度。

说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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