按一般方法设计的冷轧窄带钢压下规程,轧制能耗不一定是最小的。
The reduction rule of cold rolled narrow steel strip by usual method, It's rolled energy consumtion isn't the least usually.
介绍了双机架可逆冷轧的工艺过程、设备组成及压下规程的设计要点。
The computer control system of double stand reversing cold rolling mill in University of Science and Technology Beijing are accomplished.
本文是为了用微机控制现有型钢矫正机最佳压下规程而设计的通用计算程序。
A general calculating program designed for optimum reduction rules for existing bar section leveller with minicomputer is introduced in the article.
通过实际算例,优化压下规程可使各道次的板型系数相等,表明板型达到最佳状态。
It is showed from the actual examples that the plate shape can be the best with optimizing the press rules to make the shape ratio for every pass equaled.
提出了新的减宽压下规程,对减宽技术进行了改进,减宽精度明显提高,带钢头尾部的切损减少。
A new sizing process schedule was applied to modify the sizing process and width reduction accuracy was improved obviously...
提出了新的减宽压下规程,对减宽技术进行了改进,减宽精度明显提高,带钢头尾部的切损减少。
A new sizing process schedule was applied to modify the sizing process and width reduction accuracy was improved obviously, the cutting loss at strip head and tail end was decreased also.
本文讨论了与采用负偏差轧制相关的原料条件、设备状况、压下规程优化与操作工艺等因素的影响及生产实际效果。
In the paper the factors concerned with negative deviation rolling, such as initial material, equipment, rolling reduction rule and operation, etc.
介绍了板、带材压下规程及型材的孔型优化设计问题,并指出了设计特点与方法,给出了优化后的效果。为钢材及其它有色金属轧制规程的设计提供了设计方法。
The optimization design for pass of shape steel and draughting regulations for plate and strip is introduced, design features and methods offered, the effect of optimization also given.
热连轧机组中的精轧机的轧制规程设定计算是带钢连轧制操作中最基本的工作,而连轧机组轧制规程设定计算的中心问题是合理确定各机架的压下负荷分配。
Set-up calculation of Hot Strip Mills(HSM) is the basic work of the continuous rolling operation and the most important problem of it is how to make the value of press load distribution of each step.
热连轧机组中的精轧机的轧制规程设定计算是带钢连轧制操作中最基本的工作,而连轧机组轧制规程设定计算的中心问题是合理确定各机架的压下负荷分配。
Set-up calculation of Hot Strip Mills(HSM) is the basic work of the continuous rolling operation and the most important problem of it is how to make the value of press load distribution of each step.
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