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   高压扭转法 的翻译结果: 查询用时:0.195秒
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高压扭转法
相关语句
  high pressure and torsion
     According to the forming characteristics of High Pressure and Torsion (HPT), this paper applied it to the research of powder forging process, which was done by coupled thermo-mechanical FEM numerical simulation of Titanium alloy (Ti-6AL-4V) powder during the HTP process, and compared analyzed influences of some factors on the quality of forming.
     将高压扭转法运用于粉末烧结体的锻造成形研究,并采用热力耦合有限元法对合金(Ti-6AL-4V)粉末烧结体的热扭压成形过程进行模拟。 结果表明与镦粗成形相比,扭压工艺能明显提高粉末锻件的致密度。
  “高压扭转法”译为未确定词的双语例句
     Of all the SPD methods, ECAP (Equal Channel Angular Pressing) and HPT (High Pressure Torsion) are most intensively utilized and investigated.
     在常用的强塑性变形方法中,等通道转角挤压和高压扭转法是为材料学家使用和研究最多的两种方法。
短句来源
  相似匹配句对
     Lorsion of Testis
     睾丸扭转
短句来源
     Torsion of the epididymis
     附睾扭转
短句来源
     HIGH PRESSURE HEAT EXCHANGER
     高压换热器
短句来源
     Grain refinement and its correlation with strain for pure copper subjected to high pressure torsion
     高压扭转致纯铜晶粒细化及与应变的关系
短句来源
     Hyperbaric oxygen effectively prevents apoptosis in the bilateral testes after ipsilateral testicular torsion and detorsion
     高压氧对睾丸扭转/复位后生精细胞凋亡的作用
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Compared with traditional processing methods, the severe plastic deformation (SPD) has some advantages. It can produce ultra-fine grain metals or alloys and has a strong impact on the microstructure and mechanical properties of materials. Three principal SPD methods, i.e. accumulative roll bonding, equal channel angular pressing, and high pressure and torsion, as well as the characteristics, present state and perspectives of SPD are summarized in this paper.

深度塑性变形加工与传统变形方法相比具有很大的优点,可得到超细晶金属和合金,其微观组织结构和性能也发生很大的变化。通过介绍累积轧合法、等通道角挤压法和高压扭转法等3种目前最主要的深度塑性变形方法,分析了深度塑性变形法的特点和现状,并对其未来进行了展望。

>=According to the forming characteristics of High Pressure and Torsion (HPT), this paper applied it to the research of powder forging process, which was done by coupled thermo-mechanical FEM numerical simulation of Titanium alloy (Ti-6AL-4V) powder during the HTP process, and compared analyzed influences of some factors on the quality of forming. This research thus offered possibility and condition to select technical parameter matching in order to produce high-performance powder forging products with method...

>=According to the forming characteristics of High Pressure and Torsion (HPT), this paper applied it to the research of powder forging process, which was done by coupled thermo-mechanical FEM numerical simulation of Titanium alloy (Ti-6AL-4V) powder during the HTP process, and compared analyzed influences of some factors on the quality of forming. This research thus offered possibility and condition to select technical parameter matching in order to produce high-performance powder forging products with method of SPD.

高压扭转法运用于粉末烧结体的锻造成形研究,并采用热力耦合有限元法对合金(Ti-6AL-4V)粉末烧结体的热扭压成形过程进行模拟。结果表明与镦粗成形相比,扭压工艺能明显提高粉末锻件的致密度。进一步对比分析一些工艺条件对扭压成形质量的影响,得到影响产品质量的关键因素,从而为寻求用大塑性变形法生产高性能的粉末锻件选择合理的工艺参数提供条件。

 
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