1.
critical cooling rate
马氏体临界冷却速度
2.
Microstructure of low carbon bainite steel at different cooling rate
低碳贝氏体钢不同冷却速度下的组织结构研究
3.
Effect of Cooling Rate on Microstructure and Solidification Mode in Cr15Mn9Cu2Ni1N Austenitic Stainless Steel
冷却速度对奥氏体不锈钢Cr15Mn9Cu2Ni1N组织与凝固模式的影响
4.
Secondly, we can heat the steel above a certain critical temperature, and then allow it to cool at different rates.
其次,可以把钢加热到某一临界温度以上,然后再让它以不同的冷却速度冷却。
5.
Model of austenite transformation and temperature coupling for hot rolled strip during cooling process
热轧带钢冷却过程奥氏体相变与温度耦合模型
6.
a solid solution of ferric carbide or carbon in iron; cools to form pearlite or martensite.
含铁碳化物或含碳铁的固体溶体,冷却可形成珠光体或马氏体。
7.
Entropy generation analysis of gas cooler in CO_2 trans-critical cycle
CO_2跨临界循环中气体冷却器的熵产分析
8.
Simulation of the Trans-critical Carbon Dioxide Refrigeration System with Semi-theoretical Models and Performance Analysis of the Gas Cooler;
基于半理论模型的跨临界CO_2制冷系统仿真及气体冷却器性能研究
9.
Carbon Dioxide Refrigeration Cycle of Transcritical to the Analysis and Study of Micro-Chanel Gas Cooler;
二氧化碳跨临界制冷循环性能分析及微通道气体冷却器的研究
10.
Effect of cooling rate on the formation of acicular ferrite in Ti deoxidized steel
冷却速度对Ti脱氧钢中针状铁素体形成的影响
11.
The Research on the Model of Austenitid Transformation and Temperature Coupling for Hot Rolled Strips during Cooling Process;
热轧带钢冷却过程奥氏体相变与温度耦合模型的研究
12.
Study of Continuous Cooling after Austenite Deformation of Low Carbon Bainitic Steels;
低碳贝氏体型钢变形奥氏体连续冷却研究
13.
Continuous Cooling Transformation Curve of Overcooling Austenite for 20MnSi Steel
20MnSi钢奥氏体连续冷却转变曲线
14.
Continuous cooling transformation curve of undercooling austenite about Q345 steel
Q345钢奥氏体连续冷却转变曲线(CCT图)
15.
Exponential Convergence Rates for Markov Processes with Markovian Switching
带马氏切换的马氏过程的指数收敛速度
16.
Don't race the motor while it's cold.
马达冷却时不要快速空转它。
17.
The main cause of low impact toughness is that following the long cooling time, the structure becomes coarsing and appears corse-grained twin-mastensite.
冷却时间长,显微组织粗化,出现粗大孪晶马氏体,这是影响韧性低的主要原因。
18.
"The furnace is equipped with a high efficiency compact spray cooling device with high cooling capacity, high cooling rate and good uniformity, by which the length of the cooling zone is reduced. "
采用高效紧凑式喷射冷却装置,冷却能力大,速度快,冷却均匀,大大缩短了冷却段的长度