titanium sheet

美 [tɪˈteɪniəm ʃiːt]英 [tɪˈteɪniəm ʃiːt]
  • 网络钛片;钛板;钛薄板
titanium sheettitanium sheet
  1. A Study of the Hot Sizing and High Temperature Mechanical Behavior of Titanium Sheet

    钛板热校形及其高温力学性质的研究

  2. Study of Ultrasonic Inspection for Titanium Sheet of 8 mm in Thickness

    8mm厚钛板的超声板波探伤方法研究

  3. Quality Requirement for Titanium Sheet about Titanium Clad Steel Plate Used to Pressure Vessel

    压力容器用钛-钢复合板覆材的选择

  4. Study on Biaxial Strengthening Effect of Titanium Sheet

    钛板双向强化效应研究

  5. Heat Treatment and Cold Forming Properties of β - 21S Titanium Sheet

    β-21S钛合金薄板材的热处理工艺和冷成形性能研究

  6. The Influence of Cold Rolling on the Formation of Recrystallization Texture in Titanium Sheet

    冷轧形变量对钛板材再结晶织构形成的影响

  7. On the Texture Controlling Methods and Mechanical Property Anisotropy in Commercially Pure Titanium Sheet

    钛的织构控制方法与力学性能各向异性的研究

  8. Titanium sheet for plate heat exchangers

    GB/T14845-1993板式换热器用钛板

  9. The essence of hot sizing for titanium sheet part is the softening of materials and stress relaxation .

    钛板零件热校形的本质是材料软化及应力松弛。

  10. TiO2 thin film was prepared by electrothermal oxidation of metal titanium sheet through control of the current density .

    控制流过金属钛的电流密度,可以在表面形成TiO2薄膜。

  11. The shell is difficult to form by conventional drawing because of the great deformation and the mechanical properties of the titanium sheet .

    由于变形程度较大和钛板的机械特性,用常规拉深法较难成形。

  12. Welding of sb - 265 - GR1 titanium sheet

    SB-265-Gr1钛薄板的焊接

  13. The effect of rolling reduction on the formation of texture in cold rolled and annealed titanium sheet has been in investigated by means of the crystallite orientation distribution function analysis ( CODF ) .

    采用三维晶体学取向分布函数(CODF)分析法研究了工业纯钛板材不同冷轧形变量对织构形成的影响。

  14. Mathematical model of the stable full penetration laser welding for titanium alloy sheet

    薄板钛合金激光焊熔透稳定性临界条件的计算

  15. Finite element simulation of titanium alloy sheet flanging process

    钛合金板材翻边成形的有限元数值模拟

  16. Study on Deformation and Residual Stresses of Titanium Alloy Sheet after Laser Shock Forming

    激光冲击成形钛合金板的变形与残余应力分析

  17. Bonding of titanium alloy sheet and stainless steel web

    钛合金板与不锈钢丝网异质接头焊接

  18. Research on Shape Distortion in Bore-Expanding Process with Titanium Alloy Sheet

    钛合金板扩孔成形中的形状畸变现象研究

  19. Process Experimentation of Titanium Alloy Sheet Production

    钛合金薄板生产工艺试验

  20. Quantitative Phase Analysis on Textured Titanium Alloy Sheet

    织构钛合金轧板定量相分析

  21. Study on the Effects of Electropulsing on Microstructures and Properties of Titanium Alloys Sheet

    脉冲电流处理对钛合金板材组织和性能影响的研究

  22. Research on the Law of Springback in Bend-Forming with Titanium Alloy Sheet

    TA2M钛合金板材弯曲成形回弹规律的研究

  23. Experimental Investigations on Aluminum and Titanium Alloy Sheet Viscous Medium Bulging with Backpressure

    有反向压力粘性介质胀形铝、钛合金板实验研究

  24. Formability and nonaxisymmetric changes for the hole flanging process with titanium alloy sheet

    钛板圆孔翻边成形极限与形状非轴对称化研究

  25. The experiments of titanium alloy sheet formation on the large area and profile modeling of typical workpiece are carried out .

    对钛合金板大面积激光多点冲击成形和典型件的仿形冲击成形实验研究。

  26. Influences of heat treatment and processing route on properties and microstructures of Ti-15-3 titanium alloys sheet were studied .

    研究了Ti153合金板材的加工工艺和热处理工艺及其对板材组织性能的影响。

  27. On the base of single-point shocking experiments , the influence of the main factors on the deformation of titanium alloy sheet is studied .

    实验研究了单点冲击下激光冲击成形中各因素对钛合金板成形量的影响。

  28. Based on the preliminary study on LSF ( Laser Shock Forming ) both at home and abroad , the LSF of titanium alloy sheet is studied .

    本文在分析了国内外激光冲击成形研究现状的基础上,对钛合金板激光冲击成形进行了实验研究。

  29. The varieties of the microstructure and the surface hardness of the titanium alloys sheet after the deformation are analyzed by the metallography microscope , SEM and the microsclerometer .

    并利用金相显微镜、扫描电镜(SEM)和显微硬度计分析了冲击成形后试样组织结构和表层硬度的变化。

  30. Titanium alloy sheet workpieces are used widely in aviation , aerospace , automobile and marine industries owing to its lightweight , high specific strength , excellent mechanical property in high or low temperature and corrosion resistant .

    钛合金钣金件由于轻质、高比强度、高低温力学性能好、耐腐蚀,而被广泛应用于航空航天、汽车、舰船等领域。