1) rolling and spinning temperature
轧制与吐丝温度
2) laying temperature
吐丝温度
1.
Meanwhile,the effect of laying temperature and cooling speed on microstructure and peformance were studied.
介绍了唐山钢铁集团有限责任公司AWSER70S-6CO2气保焊丝用盘条的生产情况;分析了碳、锰、硅含量对该钢抗拉强度的影响和拉拔脆断产生的原因,以及吐丝温度和冷却速度对组织性能的影响。
2.
The effect of technological parameters of stelmor on the microstructure and properties of high carbon wire rolled at high speed has been studied The relationship between the microstructure and the properties of the wire rolled with different laying temperature and cooling rate has been analyzed Optimal technological parameters of stelmor have been obtaine
研究了 9mm高碳钢高速线材斯太尔摩工艺参数 ,分析了不同吐丝温度和模拟控制冷却速率对金相组织和力学性能的影响 ,确定了最佳的斯太尔摩工艺参数。
3.
The product quality is improved by optimizing chemical component, adjusting laying temperature and cooling speed to improve microstructure and property .
以牌号为GH60的钢种为例介绍高线生产含Ti焊丝的情况,通过优化化学成分、调节吐丝温度和冷却速度来改善组织性能,提高产品质量。
3) rolling temperature
轧制温度
1.
A model of regulation optimization control for thin gauge strip high-speed rolling of cold tandem mill was established,which was taken the rolling temperature of each stand as the target,and assured coiling temperature and rolling load under restriction.
根据薄带高速冷连轧生产的工艺特点,以各机架轧制温度相对均匀为目标,同时以保证终卷温度在设定范围内和各机架轧制负荷不超限为约束条件,建立了一套冷连轧机高速轧制的轧制规程优化控制模型,使用后效果较好。
2.
Using the mathematic model and the engineering log, the factors affecting the head thickness precision are analyzed and a conclusion that the rolling temperature is the main factor is got.
热轧带钢的厚度精度是产品质量的重要指标 ,文章结合数学模型和工程日志对生产中影响带钢头部厚度的原因进行了分析 ,得出轧制温度是影响厚度的主要原因。
3.
Study is made of the effect of rolling temperature and single-pass deformation rate on Kovar/Cu/Kovar laminates .
分析研究了轧制温度和单道次变形率对Kovar/Cu/Kovar层状复合材料制备的影响。
4) rolling temperature region
轧制温度区
5) hot rolled temperature parameters
热轧温度制度
6) rolling temperature control
控制轧制温度
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