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1)  non-uniplanar rolling
异面轧制
2)  differential speed rolling
异步轧制
1.
Research on drawability of AZ31 magnesium alloy sheet processed by differential speed rolling at room temperature;
异步轧制AZ31镁合金板材室温冲压性能研究
2.
Microstructure of AZ31 magnesium alloy sheets processed by differential speed rolling;
异步轧制AZ31镁合金板材组织
3.
The objective of this study on microstructure and grain orientation of AZ31 magnesium alloy sheets produced by differential speed rolling was to investigate the possibility of improving deformability of AZ31 magnesium alloy sheets.
主要对异步轧制AZ31镁合金板材的显微组织和晶粒取向进行了研究,以探讨提高镁合金板材塑性变形能力的途径。
3)  asymmetric rolling
异步轧制
1.
It is revealed that the cold rolling texture is composed of strong incomplete α(〈110〉∥RD) fiber and relatively weak complete γ fiber(〈111〉∥ND) no matter what rolling schedule is taken on,but asymmetric rolling affects greatly the textural strength and its distribution along thickness.
研究了同步和异步轧制下无取向硅钢的冷轧织构及其沿层厚的分布特征。
2.
By means of analyzing four high mill for its rolling torque,this paper has established a structrural modle that suit to calculate the rolling torque of cold strip mill drived through back-up rolls in asymmetric rolling.
用辊系力矩分析法,建立了支持辊传动四辊冷轧机异步轧制轧制力矩的理论计算结构式,并对异步冷轧轧制力矩特性进行了生产实验分析,为异步工艺在冷轧带钢生产中的应用提供了理论及实验依据。
3.
This paper is to research the thickness distribution across the strip and it's re-lationship with roll's thermal crown in asymmetric rolling.
从而为将异步轧制工艺应用于冷轧窄带钢生产提供了完整的实测数据资料和实用工程计算软件。
4)  Asynchronous Rolling
异步轧制
1.
Microstructure and Properties Evolution of Asynchronous Rolling AZ31 Magnesium Alloy Sheets during Annealing
异步轧制AZ31镁合金板材在退火处理中的组织性能演变
2.
The magnetic rariance is studied of different thiclcness two crystallization grain-oriented silicon steel finished product, underasynchronous rolling condition, the relationship is found between the tnagnetic and finished products thickness and asynchronous speed ratio of the grain oriented silicon steels.
研究了异步轧制条件下不同厚度的二次再结晶取向硅钢成品的磁性能的变化,找到了硅钢磁性能与成品厚度和异步速比之间的关系。
3.
The results indicated that the asynchronous rolling is effective to decrease rolling passes and improve the rolled texture and magnetic properties of thin silicon steel sheets.
结果表明 :异步轧制可有效地减少轧制道次 ,并有利于改善硅钢薄带的织构和磁性
5)  asymmetrical rolling
异径轧制
1.
Experimental study on asymmetrical rolling with work roll edge contact;
异径轧制低碳钢的力学性能参数与粗糙度实验研究
6)  cross shear rolling
异步轧制
1.
Evolution of texture of the AZ31 magnesium alloy by the cross shear rolling at room temperature;
AZ31镁合金室温异步轧制的织构演变
2.
Effect of the cross shear rolling technological parameters on tertiary recrystallization of ultra - thin silicon steel strips;
异步轧制对硅钢极薄带三次再结晶的影响
3.
Effect of reduction on textures of high purity aluminum foils after cross shear rolling;
冷轧形变量对异步轧制高纯铝箔织构的影响
补充资料:轧制面


轧制面
rolling plane

zhQZhimion轧制面(rolling plane)纵井。时通过上下两个或两个以上轧机轴线的垂直平面,即轧件从轧辊轧出处的垂直平面。孔型布置在轧制面内,孔型的尺寸是指轧制面上的尺寸而言。 (朱殿强)
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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