steel vessel

英 [stiːl ˈvesl] 美 [stiːl ˈvesl]

网络  铁壳船; 钢制容器; 钢船

化学



双语例句

  1. Against pressure vessel wet H2S in the environment often stress corrosion damage, combing work practice, discussed in different situations steel pressure vessel in the selection requirements.
    针对压力容器设备在湿硫化氢环境中经常产生的应力腐蚀破坏,结合工作实践,讨论了在不同情况下压力容器用钢的选材要求。
  2. In Japan and the United States, a thick concrete and steel containment vessel surrounds the reactor vessel.
    在11区和美帝,反应容器一般被一层厚厚的钢筋混凝土包裹。
  3. Code for construction and acceptance of steel pressure vessel used in oil field oil and gas treatment
    油田油气处理用钢制压力容器施工及验收规范
  4. Sealed adaptation is an effective method to resolve leakiness problem when the steel vessel is inserted by the optical fiber.
    为解决光纤进入钢制容器时造成的泄漏问题,密封转接是一种有效方法。
  5. Hot forming is a common method in steel pressure vessel manufacturing.
    热压制是压力容器封头制造中常见的工艺之一。
  6. The DR furnace is a steel vessel with an internal refractory lining in the reducing zone.
    直接还原炉是一种钢制容器,在其还原带内具有耐火材料做的炉衬。
  7. Control of Welding of Stress and Concaving Deformation for Man-hole of Steel Vessel
    钢制容器人孔焊接应力及塌陷变形的控制
  8. Reliability Design of Corrosion Allowance for Steel Pressure Vessel and Piping
    钢制压力容器与管道腐蚀裕量的可靠性设计
  9. Fabrication and Application of Seamless Steel Pressure Vessel
    钢制无缝压力容器的制造与应用
  10. Analysis to Manufacture Process of Chromium-molybdenum Steel Pressure Vessel
    铬钼钢压力容器制造工艺分析
  11. Test and Analysis on Residual Weld Stress of Steel Pressure Vessel
    钢制压力容器焊接残余应力测试分析
  12. Research and Development of Welding CAPP for Steel Pressure Vessel
    钢制压力容器焊接CAPP技术及实现
  13. The analysed results show that the material cost of combined pressure vessel is lower than the pure steel vessel and that the weight of combined pressure vessel is much decreased in the same condition of internal pressure and containing volume.
    分析结果表明,在相同的内压和容积条件下,组合压力容器的材料费比单纯钢制容器低,组合压力容器的重量显著减轻。
  14. Application of Welding Machine of Plasma Longitudinal Seam on the Manufacture of Stainless Steel Vessel
    等离子纵缝焊机在不锈钢容器制造工艺中的应用
  15. Welding technique for clad sheet steel vessel
    复合板容器的焊接工艺
  16. An approach to the scrapping obsolete steel vessel alongside wharf An Approximate Calculation of Required Tug Power in Berth Manoeuvres of Large Vessels
    大型船舶横向靠离码头所需拖船协助力的近似计算
  17. Process Control of the Erode-proof Performance of Stainless Steel Vessel
    不锈钢压力容器酸洗钝化的工艺控制
  18. Application of Automatic SAW in Austenitic Stainless Steel Pressure Vessel Manufacturing
    埋弧自动焊在奥氏体不锈钢压力器制造中的应用
  19. He total design idea and function realized of welding technology assessment specialist system of maked steel pressure vessel, building-up and organization of data storeroom and major characteristic of system are introduced.
    主要介绍了钢制压力容器焊接工艺评定专家系统的总体设计思想和功能实现,数据库的建立与组织,以及系统的主要特点。
  20. Measurement of the height of liquid level in big steel vessel by ultrasonic
    超声检测大钢质容器内的液面高度
  21. Calculation of steel vessel and pipe on vertical beam or bracket
    纵梁或纵向支座上的钢制设备管道计算
  22. The dipping test in the work media, toxicity determination and test of adhesion to stainless steel vessel painted with the coating were carried out.
    对涂饰该涂料的不锈钢器皿作了工作介质浸泡试验、毒性检测和附着力检测实验。
  23. The principle of FEM equivalent stress method, with introducing of the ideas of stress classification and equivalent linearization method in 'design by analysis' for steel pressure vessel, is further developed.
    引入分析设计法中关于应力分类和等效线性化的概念,进一步阐述了有限元等效应力法的原理。
  24. Welding stress and concaving deformation of man-hole of steel vessel influence directly welding quality and life of using.
    钢制容器人孔的焊接应力及塌陷变形,直接影响容器的焊接质量和使用寿命。
  25. Optimization and Arrangement for Welding Procedure Qualification of Steel Pressure Vessel
    钢制压力容器焊接工艺评定项目的优化和整合
  26. The post heat treatment of Cr-Ni austenitic stainless steel vessel
    铬镍奥氏体不锈钢制容器的焊后热处理
  27. ApplicatiOn of water base lubricant in drawing stainless steel pressure vessel
    新型水基润滑剂在不锈钢拉深中的应用
  28. In addition, on the basis of the numerical solution, the stress distribution characteristics of the composite steel pressure vessel were discussed in detail.
    另外,在数值解的基础上,对复合钢板压力容器应力分布特性进行了详细讨论。
  29. There is no essential distinction between the modern high speed Aluminium alloy ship and ordinary steel ship in the design of the overall performance, but in terms of the materials 'selection and structural design is much more complicated than the steel vessel.
    现代化的高速铝合金船舶,在总体的性能设计上与普通钢质船舶并无本质上的区别,但是在材料的选择和结构的设计方面则要比钢质船舶复杂得多。