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1)  Direct extrusion-ECAP
正挤压-等径道弯曲
2)  equal-channel angular process(ECAP)
等通道弯曲挤压
1.
Ultrafine-grained 2J4 hysteresis alloy processed by equal-channel angular process(ECAP),has the average grain size approximate 0.
利用等通道弯曲挤压的方法得到的晶粒平均尺寸大约为0。
3)  equal channel angular extrusion(ECAE)
等径弯角挤压
1.
The novel equal channel angular extrusion(ECAE) process was used for hot forged Ti-50.
采用先进的等径弯角挤压(ECAE)技术对热锻态Ti-50。
2.
Micron TiNi alloy block was fabricated at high temperature by equal channel angular extrusion(ECAE),using hot-forged Ti-50.
6%Ni合金为原料,采用新型的等径弯角挤压(ECAE)工艺在高温下制备了微米级TiNi合金块体材料,考察了ECAE及退火处理对TiNi合金磨损性能的影响。
3.
Pure aluminum was subjected to equal channel angular extrusion(ECAE) at room temperature.
室温下对纯铝试样进行了等径弯角挤压(ECAE)。
4)  equal channel angular pressing
等通道弯角挤压
1.
Buck ultra-fine grained materials(submicrostructured or nanostructured materials) could be obtained by equal channel angular pressing (ECAP), and it is one of the most promising process for the industrialization.
等通道弯角挤压(ECAP)过程是目前制备块状超细晶粒材料(亚微米或纳米微观结构材料)最具工业前景的工艺之一,研究ECAP变形机理从而开发出具有工程化和商品化价值的工艺具有十分重要的意义。
5)  equal channel angular pressing (ECAP)
等径弯曲通道
1.
The fatigue life and cyclic deformation behavior of ultrafine-grained (UFG) T3 copper produced by equal channel angular pressing (ECAP) were studied and the changes of the grain size and the development of slip bands are observed by means of electron back scattering and SEM, respectively.
研究了等径弯曲通道(ECAP)变形后的超细晶T3铜在恒应力幅控制条件下的疲劳寿命和循环形变行为。
6)  ECAE
等径道角挤压
1.
Numerical Simulation of ECAE Process for Preparing AZ91D Semi-solid Billet;
AZ91D镁合金等径道角挤压制备半固态坯数值模拟
2.
Mechanical properties and microstructure of semi-solid MB15-RE magnesium alloy billets prepared by ECAE have been investigated.
研究了等径道角挤压法制备半固态MB15-RE镁合金坯,其中包括挤压前后力学性能对比和半固态球化过程微观组织演变规律。
3.
The results reveal that microstructure of the Mg-Al-Zn alloy can be greatly refined as a result of desirable strain induction effects by equal angular extrusion(ECAE)in new SIMA method,in which average grain size of 20μm can be obtained and whi.
研究结果表明,新SIMA法中的等径道角挤压能使Mg-Al-Zn合金获得良好的应变诱导效果,即铸坯微观组织被大大细化,平均晶粒尺寸达到20μm,材料力学性能大幅度提高;该坯料在560℃保温20min制备的半固态坯料的固相晶粒细小,球化程度高,组织均匀,平均晶粒尺寸为25μm。
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