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1)  equal channel angular extrusion
等通道转角挤出
1.
Self-reinforced high-density polyethylene prepared via equal channel angular extrusion;
等通道转角挤出制备自增强高密度聚乙烯
2)  equal channel angular pressing
等通道转角挤压
1.
Effects of Equal Channel Angular Pressing on Microstructure and Properties of Al-5Ti-B Alloy;
Al-5Ti-1B合金等通道转角挤压的组织和性能研究
2.
Microstructure and mechanical properties of high-aluminium magnesium alloy processed by equal channel angular pressing;
等通道转角挤压高铝镁合金的微观组织和力学性能
3.
Three dimensional finite element analysis of Ti-6Al-4V alloy during equal channel angular pressing;
Ti-6Al-4V钛合金等通道转角挤压有限元模拟
3)  Equal Channel Angular Extrusion
等通道转角挤压
1.
Shear Plastic Deformation Behavior of Polymer by Equal Channel Angular Extrusion Processing;
等通道转角挤压加工中聚合物剪切塑性变形行为分析
2.
Self-reinforced i-polypropylene processed by equal channel angular extrusion;
等通道转角挤压自增强等规聚丙烯研究
3.
Equal Channel Angular Extrusion Processing of PP and PP/HDPE Composite;
PP及PP/HDPE复合材料的等通道转角挤压加工
4)  Equal-channel Angular Pressing
等通道转角挤压
1.
Research progressing of technology of equal-channel angular pressing(ECAP);
等通道转角挤压(ECAP)工艺的研究进展
2.
Microstructure and mechanical properties of ultrafine grained Mg15Al alloy processed by equal-channel angular pressing
等通道转角挤压制备超细晶Mg15Al双相合金组织与性能
3.
Effects of processing parameter of equal-channel angular pressing on the microstructure and properties of magnesium alloys
等通道转角挤压工艺参数对镁合金组织与性能的影响
5)  ECAP
等通道转角挤压
1.
Effect of Press Temperature on Equal Channel Angular Pressing (ECAP) to Cu-based Shape Memory Alloy;
挤压温度对Cu基形状记忆合金等通道转角挤压过程的影响
2.
Study on ECAP for ultra-fine alloy;
等通道转角挤压工艺制备超细化合金的研究与进展
3.
Study on ECAP of Magnesium Alloy;
镁合金等通道转角挤压的研究
6)  equal channel angular pressing(ECAP)
等通道转角挤压
1.
9%Cu(mass fraction)alloys subjected to equal channel angular pressing(ECAP)were investigated.
9%Cu(质量分数)合金进行等通道转角挤压处理,研究了Al-Cu合金冲击性能的变化。
2.
12Ni alloy fabricated by equal channel angular pressing(ECAP) were studied.
研究了退火温度对等通道转角挤压(ECAP)Fe17。
补充资料:单通道电感耦合等离子体单色仪
分子式:
CAS号:

性质:由电感耦合等离子光源与扫描单色仪组成的发射光谱分析仪器。是一种只能进行单个元素分析的装置;结构简单,造价低廉,测定速度慢,消耗氩气及试样量大。测定某元素时,将波长调到其分析线位置,然后将试样喷入电感耦合等离子体喷焰中。

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