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1)  large tubular forgings
大型筒锻件
2)  heavy cylindrical forging
大型筒体锻件
1.
25Cr1Mo steel heavy cylindrical forging was obtained and the interface heat-transfer coefficient was calculated by inverse heat conduction method.
25Cr1Mo钢大型筒体锻件热处理加热过程的温度场,计算了筒体在热处理过程中的温度变化;采用逆算法确定了筒体加热过程预热段和高速升温段的综合界面换热系数。
3)  heavy cylinder forging
大型圆筒形锻件
4)  tube type forging
筒型锻件
1.
With the optimized process,the various kinds of the issues found during the production have been well solved so that the rate of finished products of the tube mold has been greatly improved,meanwhile the reliable reference basis for the forming of the long tube type forging has been provided as well.
同时也为长筒型锻件的成型提供了可靠的参考依据。
5)  heavy forging
大型锻件
1.
Research in the Process of Cuboid Heavy Forging;
长方体大型锻件工艺的探讨
2.
Study on Healing of Interior Crack-type Fault in Heavy Forging by Modeling;
大型锻件内裂纹缺陷修复的物理模拟研究
3.
In order to control the microstructure of heavy forgings,an optimization method based on composite design and numerical simulation was proposed.
为了对大型锻件微观组织进行控制,提出了一种基于复合设计和数值模拟的优化设计方法,优化设计以始锻温度和锻模击打速度为优化设计变量,以终锻件晶粒均匀细小为微观组织性能评价指标。
6)  heavy forgings
大型锻件
1.
The Repairing Study for the Defects Inside the Heavy Forgings;
大型锻件内部缺陷的修复研究
2.
Microstructure of heavy forgings robust parameters control methodology based on taguchi method;
基于田口法的大型锻件微观组织健壮参数控制方法
3.
In order to control the microstructure and fracture of heavy forgings,a multiobjective optimization method based on numerical simulation was proposed.
为了对大型锻件多步锻造过程中微观组织和裂纹进行控制,提出了一种基于数值模拟的多目标优化设计方法。
补充资料:鞍山钢铁(集团)公司大型轧钢厂大型轧机热轧型钢


鞍山钢铁(集团)公司大型轧钢厂大型轧机热轧型钢


鞍山钢铁(集团)公司大型轧钢厂大型轧机热轧型钢
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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