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1)  rolling deforming schedule
轧制变形规程
1.
The characteristics of rolling deforming schedule on hot continuous rolling strip and the application on optimization method in this field are studied.
研究了目前板带热连轧轧制变形规程设计方法及在该领域中的应用状况 ,分析并建立了以能耗最低、负荷分配最均衡及板形质量最优的多目标优化模型 ,并运用模糊学的理论和方法对板带热连轧轧制变形规程多目标优化问题进行了求解 。
2)  rolling schedule
轧制规程
1.
Development and application of rolling schedule optimization design system for plate mill;
中厚板轧制规程优化设计系统的开发及应用
2.
The reasonable rolling schedule is an important guarantee to make the rolling process achieve the optimum conditions.
合理的轧制规程是使轧制过程达到最佳状态的重要保证。
3.
Good results have been achieved in designing of rolling schedule for blooming mill with this system.
根据初轧大圆钢轧制规程的设计要求,利用Visual Basic算法语言开发了轧制规程设计系统,进行大圆钢轧制规程的设计。
3)  rolling rules
轧制规程
1.
: This paper builds an optimized design model for copper strips rolling rules with dynamic programming method.Describes the method of defining and separating of the rolling area ,and shows an example of optimized design
建立了用动态规划法进行铜板带轧制规程优化设计的模型,介绍了综合可轧区间的确定与离散方法及优化设计实例。
2.
Rolling rules are core content of steel rolling,appropriate rolling rules make the steel rolling manufacture more stable,reduce the occurrence of production accident and the consumption of energy,produce the best economic benefit with the lowest cost.
轧制规程是轧钢生产的核心内容,一套好的轧制规程可以使轧钢生产稳定顺行,减少生产事故的发生,降低生产能耗,以最低的成本发挥最大的经济效益。
3.
This system takes advantage of expert system theory in artificial intelligence, 1C AD technology and expert experience to achieve the rolling rules, the important parameters of rolling mill and the three-dimensional parameterization model building.
本系统利用人工智能中的专家系统理论、智能CAD技术和专家经验,完成热连轧精轧机轧制规程的制定、主要结构参数的设计和三维参数化建模。
4)  rolling deformation
轧制变形
1.
The influence of rolling deformation and heat treatment temperature on structures, mechanical properties is studied.
X射线衍射结果表明,随着轧制变形量的增加,Ti50Ni47Fe3合金在轧制方向上出现了择优取向;Ti50Ni47Fe3合金的晶粒尺寸随着轧制变形量的增加而减小,随着热处理温度的升高而增大;Ti50Ni47Fe3合金的抗拉强度和屈服强度随着轧制变形量的增加而增大,随热处理温度的升高而降低。
2.
The results show that the orientation distribution calculated by the FC (full constraints)Taylor model is closer to experimental results than those by other models at the low rolling deformation de.
结果表明:在低轧制变形程度时,完全限制(FC)模型计算结果的取向分布较其它模型更符合实际结果。
3.
The results show that the rolling textures for the sample with initial randomly distributed texture mainly consists of C,S and B components during rolling deformation while the orientation density values for the three textures only have slight difference, most crystallites a.
结果表明:随着轧制变形的进行,对于初始自由分布的样品,晶粒取向主要向α,β取向线附近聚集,其形变织构主要由C,S及B织构组成,且3种织构成分密度值相差不大;对于初始具有近似立方织构的样品,晶粒取向主要向β取向线上聚集,其形变织构主要由C,S织构组成,B织构成分相对较弱。
5)  thermomechanical rolling
形变轧制
6)  rule-free rolling
无规程轧制
补充资料:板带轧制速度规程(见板带轧制规程设计)


板带轧制速度规程(见板带轧制规程设计)
speed schedule for plate and strip rolling

  bandai zhazhi sudu guieheng板带轧制速度规程(speed seheduxe fo:plateand strip rolling)见板带札制规程设计。
  
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条