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微观金相 Microstructure英语短句 例句大全

时间:2019-03-11 04:07:10

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微观金相 Microstructure英语短句 例句大全

微观金相,Microstructure

1)Microstructure[英]["maikr?u,str?kt??][美]["ma?kro,str?kt??]微观金相

1.Against the quantitative analyse about metal magnetic memory technology in the course of engineering application,this paper explore the relationship between the macroscopical magneitic memory signal and the microstructure from the micro-perspective.在Q235材料静载拉伸过程中不同变形阶段磁记忆信号特征分析的基础上,通过制备标准拉伸试样进行拉伸过程中磁记忆信号与微观金相组织的同期观测,研究了宏观上磁记忆信号特征和微观、细观层面上的金相表征之间的对应关系。

2)microscopic metallographic structure微观金相组织

1.Its chemical composition ,shorttime tensile properties at high temperature,microscopic metallographic structure, and deterioration of service life are compared to those of conventional furnace tubes.对静态铸造的含静态混合元件的乙烯炉管,进行了高温机械性能和微观组织的评价,对其材料的化学成分、高温短时拉伸性能和微观金相组织与寿命消耗分散程度等方面进行了与常规炉管的对比分析。

3)microscopic phase-field微观相场

1.Based on themicroscopic phase-field model, the reageing behavior of Ni-11at%Al-7at%Cr alloy from 873 K to 1023 K was simulated at atomic-scale, The order parameter profiles and volume fraction of the ordered phase was calculated according to the atomic morphology evolution, and the reageing process from 873 K to 1023 K was compared with ageing at 1023 K.基于三元体系的微观相场动力学模型,从原子层次上模拟了Ni-11at%Al-7at%Cr合金在873K预时效,1023K再时效的组织演化过程,结合原子图像,计算了有序相内序参数分布和体积分数随时间的变化,并与1023K下的单级时效工艺进行了对比。

2.Based on themicroscopic phase-field dynamic model and the microelasticity theory, the morphology evolution of Ni_3Al(γ′)phase and early precipitation mechanism in Ni-Al alloy were simulated.基于微观相场动力学模型和微观弹性能理论,对Ni-Al合金中沉淀相Ni_3Al(γ′)形貌演化、早期沉淀机制和后期粗化过程进行了原子层面的计算机模拟。

3.0alloy were simulated based on themicroscopic phase-field kinetic model and the microelasticity theory in this paper.基于微观相场动力学模型和微观弹性理论,对Ni75Cr19Al6。

英文短句/例句

1.Microscopic Phase-Field Simulation of Antisite Defect Evolution of Al_3Li PhaseAl_3Li相反位缺陷演化的微观相场模拟

2.MICROSCOPIC PHASE-FIELD METHOD SIMULATION FOR THE IN SITU TRANSFORMATION OF Ll_0 PHASE AND Ll_2 PHASE STRUCTUREL1_0相和L1_2相结构原位转变的微观相场法模拟

3.Microscope Phase-Field Simulation of Early Precipitation Process of Ni-Cr-Al Alloy;Ni-Cr-Al合金沉淀早期的微观相场模拟

4.The Computer Simulation of the Fe-Mo Binary Alloy Spinodal Decomposition with Microscopic Phase-Field Model;Fe-Mo合金调幅分解的微观相场模拟

5.Microscopic Phase-Field Simulation Coupled with Strain Energy for the Precipitation Process of Nickle Base Alloys;镍基合金沉淀过程的含畸变能微观相场模拟

6.Antisite defect types and temporal evolution characteristics of D0_(22)-Ni_3V structure:Studied by the microscopic phase field微观相场计算D0_(22)-Ni_3V结构反位缺陷类型及演化

7.Microscopic phase-field simulation for the temperature effects on the precipitation of Ni-Al-Cr alloy温度对Ni-Al-Cr合金沉淀影响的微观相场模拟

8.Microscopic phase-field calculate on aging behavior of Ni_(75)Al_(21.5)Ti_(3.5) alloyNi_(75)Al_(21.5)Ti_(3.5)合金时效行为的微观相场计算

9.Microscopic Phase-Field Study of Antisite Defect of Ni_3Al in High Al Concentration Ni_(75)Al_xV_(25-x)Alloy微观相场法研究高铝Ni_(75)Al_xV_(25-x)中Ni_3Al反位缺陷

10.Microscopic Phase-Field Simulation of the Heat Treatment Process for Al-Zr Intermetallic CompoundAl-Zr中间合金热处理过程的微观相场模拟

11.Microscopic Phase-Field Simulation for Correlations of Ni_3Al Precipitates in Ni-Al AlloysNi-Al合金中沉淀相Ni_3Al相互关系的微观相场模拟(英文)

12.Simulation of Ordered Domain Interfaces Formed between DO_(22) Phases in Ni-Al-V Alloy Using Microscopic Phase-Field ModelNi-Al-V合金DO_(22)相间有序畴界面的微观相场模拟

13.Microscopic Phase-Field Simulation of Effect of Temperature on the Precipitation Process of Ni_(75)Al_xV_(25-x) Alloy;温度对Ni_(75)Al_xV_(25-x)合金沉淀过程影响的微观相场模拟

14.Microscopic Phase Field Simulation of Aging-Reaging and Retrogression-Reaging on Al-Li Alloys;Al-Li合金的分级时效和回归再时效的微观相场模拟

15.Microscopic phase-field simulation of influence of interfacial mismatch stress on coarsening mechanism of aluminum alloy界面错配应力对铝合金粗化机制影响的微观相场模拟

16.Microscopic Phase-Field Simulation for the Effect of the Fourth-Nearest Pair Potentials on Precipitation Mechanism of Ni_(75)Al_5V_20 Alloy四近邻对势对Ni_(75)Al_5V_20合金沉淀机制影响的微观相场模拟

17.The Study of Microstructure Numerical Simulation of Aluminum Alloy under Solidification Process Using Phase-field Method;铝合金微观组织相场法数值模拟技术研究

18.Phase-field Method of Dendrite Growth and Microsegregation during Solidification凝固过程枝晶生长与微观偏析的相场法模拟

相关短句/例句

microscopic metallographic structure微观金相组织

1.Its chemical composition ,shorttime tensile properties at high temperature,microscopic metallographic structure, and deterioration of service life are compared to those of conventional furnace tubes.对静态铸造的含静态混合元件的乙烯炉管,进行了高温机械性能和微观组织的评价,对其材料的化学成分、高温短时拉伸性能和微观金相组织与寿命消耗分散程度等方面进行了与常规炉管的对比分析。

3)microscopic phase-field微观相场

1.Based on themicroscopic phase-field model, the reageing behavior of Ni-11at%Al-7at%Cr alloy from 873 K to 1023 K was simulated at atomic-scale, The order parameter profiles and volume fraction of the ordered phase was calculated according to the atomic morphology evolution, and the reageing process from 873 K to 1023 K was compared with ageing at 1023 K.基于三元体系的微观相场动力学模型,从原子层次上模拟了Ni-11at%Al-7at%Cr合金在873K预时效,1023K再时效的组织演化过程,结合原子图像,计算了有序相内序参数分布和体积分数随时间的变化,并与1023K下的单级时效工艺进行了对比。

2.Based on themicroscopic phase-field dynamic model and the microelasticity theory, the morphology evolution of Ni_3Al(γ′)phase and early precipitation mechanism in Ni-Al alloy were simulated.基于微观相场动力学模型和微观弹性能理论,对Ni-Al合金中沉淀相Ni_3Al(γ′)形貌演化、早期沉淀机制和后期粗化过程进行了原子层面的计算机模拟。

3.0alloy were simulated based on themicroscopic phase-field kinetic model and the microelasticity theory in this paper.基于微观相场动力学模型和微观弹性理论,对Ni75Cr19Al6。

4)microscopic phase field微观相场

1.An dynamic model of precipitation process in ternary alloys was introduced,which was based onmicroscopic phase field diffusion equation and described the composition clustering and ordering reactions by ordering parameter and the probabilities of finding an atom at a given lattice.三元合金沉淀过程动力学模型基于微观相场扩散方程建立,以原子占位几率和序参数描述合金沉淀过程的成分簇聚和有序化。

2.The microstructure evolution of Al-Li alloys during aging, aging-reaging and retrogression-reaging were simulated usingmicroscopic phase field method.本文采用微观相场方法,模拟了Al-Li合金的单级时效、分级时效、回归再时效工艺。

3.The influence of Ni-Al ordering energy from the first to the fourth layer on the atom long range order progress in Ni75Al13Cr12 alloy was investigated bymicroscopic phase field model.通过微观相场方法研究了Ni75Al13Cr12合金Ni-Al第一到四层有序能对原子长程有序进程的影响。

5)microphase separation微观相变

6)metallographic observation金相观察

延伸阅读

半奥氏体沉淀硬化不锈钢的金相组织半奥氏体沉淀硬化不锈钢的金相组织黝半奥氏体沉淀硬化不锈钢的金相组织

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