1500字范文,内容丰富有趣,写作好帮手!
1500字范文 > TC4合金叶片 TC4 titanium alloy blade英语短句 例句大全

TC4合金叶片 TC4 titanium alloy blade英语短句 例句大全

时间:2023-01-19 18:58:42

相关推荐

TC4合金叶片 TC4 titanium alloy blade英语短句 例句大全

TC4合金叶片,TC4 titanium alloy blade

1)TC4 titanium alloy bladeTC4合金叶片

英文短句/例句

1.Preform Design of TC4 Alloy Blade Based on 3D Electrostatic Fields基于三维静电场的TC4合金叶片预制坯设计

2.Finite Element Simulation of Grain Size during Isothermal Forging Process of the TC4 Aerofoil BladeTC4钛合金叶片锻造过程中晶粒尺寸的数值模拟

3.Research on Laser Beam Welding TC4 Titanium Alloy to Steel;TC4钛合金—钢复合激光焊接工艺研究

4.Tensile Deformation Behavior of Fine-Grained TC4 Titanium Alloy at High Temperature;细晶TC4钛合金高温拉伸变形行为研究

5.Design and Control of Recrystal Microstructure of Ti-6Al-4V Alloy in Hot Die Forging;TC4合金的热模锻过程设计与质量控制

6.Research on Brazing of Hydrogenated TC4 Titanium Alloy;置氢TC4钛合金钎焊连接工艺研究

7.High-temperature Deformation Process and Microstructural Characteristics of TC4 AlloyTC4合金高温形变工艺与显微组织特征

8.Research on Processing Technology for Cold Drawing Wire of TC4 Titanium AlloyTC4钛合金棒线材冷拉拔加工工艺研究

9.Research on Microstructures and Properties of Laser Welding Joints of TC4 Titanium AlloyTC4钛合金激光焊接接头组织性能研究

10.Theory and Experimental Study on High Speed Milling Titanium Alloy钛合金TC4高速铣削的理论和实验研究

11.Thermal Stress Analysis for the Welding Between TC4 Titanium Aalloy and SteelTC4钛合金-钢激光焊接热应力分析

12.Effect of Hydrogen on Machinability of TC4 Alloy氢对TC4合金切削加工性能的影响

13.Influence of Hydrogen on Deformation Behavior of TC4 Alloy at Room Temperature氢对TC4钛合金室温变形行为的影响

14.Influence of Abnormal Forging Processes on Microstructures and Tensile Properties of TC4 AlloyTC4钛合金异形锻件锻造工艺探索

15.Localized Adiabatic Shear Deformation of TC4 and DT4 AlloysTC4和DT4合金的绝热剪切行为

16.Temperature measurement in milling titanium alloy TC4,TC11钛合金TC4和TC11铣削温度的测量

17.Investigations on Room Temperature Deformation Behaviors of Hydrogenated TC4 Alloys置氢TC4钛合金室温变形行为研究

18.Numerical Simulation on Hot Sizing of Titanium Alloy TC4钛合金TC4热应力校形的数值模拟

相关短句/例句

TC4 alloyTC4合金

1.Effect of low temperature on tensile properties of agedTC4 alloy;低温对时效态TC4合金拉伸性能的影响

2.The equal channel angular pressing onTC4 alloy was numerically simulated by applying a thermo-mechanical coupled technology with the commercial FEM software DEFORM-3D.采用商用有限元软件DEFORM-3D的热力耦合分析技术,对TC4合金的等径角挤压工艺进行了数值模拟。

3.Effect of holding time on the deformation behavior and high temperature microstructures of hydrogenationTC4 alloy at high temperature has been investigated using tensile tests and SEM technology.文章通过高温拉伸实验和扫描电镜观察,研究了保温时间对置氢TC4合金超塑流动特性及其组织的影响,结合高温组织和钛氢相图分析了影响机制。

3)TC4 Ti alloyTC4钛合金

1.Welded joint property ofTC4 Ti alloy by electron beam welding;TC4钛合金电子束焊接头性能研究

2.Stretching fixation was proposed to improve milling surface quality ofTC4 Ti alloy.在TC4钛合金铣削过程中采用拉伸装夹技术强化表面质量。

3.The thick plate ofTC4 Ti alloy is welded by TIG,the structure of welding joint of Ti-6Al-4V is studied and analysed,at the same time,the property of welding joint is measured,as a result, appropriate welding craft and welding method are found.采用 TIG 焊方法对 TC4钛合金厚板进行焊接,分析、研究了 Ti-6Al-4V 合金焊接接头的组织,测定了 Ti-6Al-4V 合金焊接接头的性能,摸索出了合适的焊接方法与工艺。

4)TC4 titanium alloyTC4钛合金

1.Hot spinning technology of wheel rim ofTC4 titanium alloy;TC4钛合金轮圈热旋成形技术研究

2.Effects of local heat treatment by electron beam on microstructure and properties ofTC4 titanium alloy welded joint;电子束局部热处理对TC4钛合金焊接接头组织和性能的影响

3.Microstructures and high-temperature properties ofTC4 titanium alloy joints welded by electron beam;TC4钛合金电子束焊接接头高温性能与组织

5)TC4-DTTC4-DT合金

1.Mathematical Description on Fatigue Crack Growth Rate of the Damage-ToleranceTC4-DT Alloy;损伤容限型TC4-DT合金疲劳裂纹扩展速率的数学描述

6)TC4 alloyTC4钛合金

1.Microstructures and properties ofTC4 alloy joints welded by the e lectron beam welding;TC4钛合金电子束焊接接头组织和性能

2.Study on the precise welding technology ofTC4 alloy;TC4钛合金精密焊接工艺研究

3.Active brazing of SiO_2 glass ceramic toTC4 alloySiO_2玻璃陶瓷与TC4钛合金的活性钎焊

延伸阅读

[3-(aminosulfonyl)-4-chloro-N-(2.3-dihydro-2-methyl-1H-indol-1-yl)benzamide]分子式:C16H16ClN3O3S分子量:365.5CAS号:26807-65-8性质:暂无制备方法:暂无用途:用于轻、中度原发性高血压。

本内容不代表本网观点和政治立场,如有侵犯你的权益请联系我们处理。
网友评论
网友评论仅供其表达个人看法,并不表明网站立场。