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1.
Simulation of grain growth of AZ31Mg alloy during recrystallization by phase field model
相场法模拟AZ31镁合金再结晶晶粒长大
2.
Grain change of 33Mn2V steel for seamless oil well tubes in tube-piercing process
无缝钢管穿管过程动态再结晶晶粒变化规律
3.
Hot Deformation and Dynamic Recrystallization Behaviors of 316LN
316LN热变形行为及动态再结晶晶粒的演变规律
4.
The models for predicting the recrystallized grain size and the recrystallization volume percent have been established with the artificial neural network.
采用人工神经网络的方法建立了再结晶晶粒尺寸和再结晶体积分数的预测模型。
5.
Research on the Grain Ultra-refinement in Austenite by Dynamic Recrystallization and Its Martensitic Transformation;
奥氏体动态再结晶晶粒超细化及其马氏体相变研究
6.
Computation Model and Confirmation of Magnesium Alloy AZ91D Inverted Extrusion Dynamic Recrystallization Size
镁合金AZ91D反挤压动态再结晶晶粒度计算模型与验证
7.
Two-dimensional numerical simulation of dynamically recrystallized grain change of new steel 33Mn2V for oil well tubes in tube-piercing process
新型油井管钢33Mn2V穿管过程动态再结晶晶粒变化的二维数值模拟
8.
The evolution equations of the volume fraction of dynamic recreastallization and varieties of grain size are derived from this model.
由此模型导出了再结晶体积分数及有关晶粒尺寸的演化方程。
9.
Average grain size after recrystallizatin was measured in microscopic test.
通过金相实验分析,测量了发生再结晶后的平均晶粒尺寸。
10.
Simulation of Grain Growth and Recrystallization Based on Cellular Automata Method;
基于元胞自动机法的材料晶粒长大和再结晶模拟
11.
Numerical Simulation of Recrystallization and Grain Growth of Metal Hot Forging Process;
金属热锻过程再结晶与晶粒长大演化的数值模拟
12.
Modeling for Grain Size of Stainless Steel by Forging Recrystallization Based on BP Neural Network
基于BP神经网络不锈钢锻造再结晶的晶粒尺寸模型
13.
Celluar Automaton Simulation(Ⅱ) in Static Recrystallization Process Variation of Grain Size and Its Side
静态再结晶过程的元胞自动机模拟(Ⅱ)——晶粒尺寸和边数的变化
14.
Grain boundary migration in recrystallised Armco iron during grain growth has been studied by vacuum etching method.
本文叙述用真空热侵蚀方法研究α-铁再结晶后,晶粒长大晶界迁移的一些结果.
15.
EBSD analyses on grain orientation and grain boundary structure of grain-oriented silicon steel
EBSD研究取向硅钢晶粒取向和晶界结构
16.
Avoid larger crystals or a concentration of crystals towards the bottom of the ware.
避免大的结晶粒或密集结晶粒接近坯件底部。
17.
Microstructure of Surface Recrystallization of Single Crystal Superalloy DD6
单晶高温合金DD6表面再结晶组织
18.
Recrystallization on Interface between NiCoCrAlYTa Coating and Nickel-Based Super-Alloy
NiCoCrAlYTa涂层/镍基单晶高温合金界面再结晶