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水轮机叶片     
相关语句
  hydraulic turbine blade
     Application of CAD/CAM in the Forming Technology for Hydraulic Turbine Blade
     CAD/CAM在水轮机叶片热模压成型工艺中的应用
短句来源
     FINITE ELEMENT ANALYSIS OF STIFFNESS AND STRENGTH FOR AXIAL-FLOW HYDRAULIC TURBINE BLADE
     轴流式水轮机叶片刚度和强度有限元分析
短句来源
     TRAJECTORY CONTROL OF THE ARC-WELDING MANIPULATOR FOR REPAIRING HYDRAULIC TURBINE BLADE
     水轮机叶片修复用电弧焊机械手的轨迹控制
     Control of the Arc-welding Manipulator to Repair Hydraulic Turbine Blade
     水轮机叶片修复用弧焊机械手的控制
短句来源
     The Influence on Precision of Shaping Technology for Hydraulic Turbine Blade
     水轮机叶片成型工艺对精度的影响
短句来源
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  turbine blade
     Application of CAD/CAM in the Forming Technology for Hydraulic Turbine Blade
     CAD/CAM在水轮机叶片热模压成型工艺中的应用
短句来源
     FINITE ELEMENT ANALYSIS OF STIFFNESS AND STRENGTH FOR AXIAL-FLOW HYDRAULIC TURBINE BLADE
     轴流式水轮机叶片刚度和强度有限元分析
短句来源
     Manufacturing Technology of Free-Form Surface of Turbine Blade Based on RPM
     基于RPM的水轮机叶片复杂曲面制造技术
短句来源
     TRAJECTORY CONTROL OF THE ARC-WELDING MANIPULATOR FOR REPAIRING HYDRAULIC TURBINE BLADE
     水轮机叶片修复用电弧焊机械手的轨迹控制
     Control of the Arc-welding Manipulator to Repair Hydraulic Turbine Blade
     水轮机叶片修复用弧焊机械手的控制
短句来源
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  hydraulic turbine blades
     Study on the Heat-treatment of ZG0Cr16Ni5Mo Used on Hydraulic Turbine Blades
     水轮机叶片材料ZG0Cr16Ni5Mo的热处理工艺研究
短句来源
     The strengthening layer of 2 ̄6mm with super fine tempering martensitic structure and high hardness (HRC>40) and high strength(σb>1200MPa)for the large hydraulic turbine blades made of ZG0Cr13Ni4Mo low-carbon martensitic stainless steel was obtained by using induction heating up to 1000℃,water quenching and tempering at 250℃.
     针对ZG0Cr13Ni4Mo低碳马氏体不锈钢水轮机叶片,采用感应加热至1000℃、水淬然后250℃回火处理,获得超细回火马氏体组织强化层(2~6mm)。 强化层的σb>1200MPa、HRC>40。
短句来源
     Study and Application of Dynamical Multimetering System for Hydraulic Turbine Blades Stresses
     水轮机叶片应力多点动态测量系统的研究和应用
短句来源
     Experimental Study on Vibration Behavior of Hydraulic Turbine Blades
     水轮机叶片振动特性试验研究
短句来源
     The Generation of Cracks in Hydraulic Turbine Blades and the Countermeasure
     水轮机叶片裂纹的产生及对策
短句来源
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  blade of hydraulic turbine
     ABRASION RESISTING SPRAY WELDING MATERIAL Ni67 AND ITS APPLICATION TO BLADE OF HYDRAULIC TURBINE
     金属抗磨蚀Ni67喷焊材料及其在水轮机叶片上的应用
短句来源
     Research on blade of hydraulic turbine measurement
     水轮机叶片测量研究
短句来源
     The paper introduces the blade of hydraulic turbine measurement system,which has two components: data collection and data processing.
     介绍了水轮机叶片测量系统,该系统由数据采集和数据处理两部分组成。
短句来源
     According to the designing equation for blade of hydraulic turbine, a shape adaptation was carried out on the blade quilt surface of hydraulic turbine.
     根据水轮机叶片设计方程,对水轮机叶片曲面进行了拟合。
短句来源
     The running tests of the alloy coatings on the blade of hydraulic turbine produced using oxy - acetylene spray welding procedure manifested that the average service life of many different hydraulic turbine obtained a lot improvement after spray welding.
     应用氧乙炔喷焊工艺在水轮机叶片上制备合金涂层,经过数台机组多年的实际运行,表明该材料抗磨蚀性能优异,喷焊后的水轮机叶片的平均使用寿命得到大幅度提高。
短句来源
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  hydraulic turbine blade
Mobile platform for hydraulic turbine blade repair robot
      
The wall-climbing mobile platform (MP) of a robot for repairing a hydraulic turbine blade onsite is developed.
      
The platform can automatically adapt to complex spatial surfaces, which satisfy the requirements of a hydraulic turbine blade in-situ repair robot.
      
The system was specifically developed to measure two types of hydraulic turbine blade with dimensions of approximately 1.5m x 1.5m x 0.5m.
      
  turbine blade
Mobile platform for hydraulic turbine blade repair robot
      
The wall-climbing mobile platform (MP) of a robot for repairing a hydraulic turbine blade onsite is developed.
      
A mechanism of three revolution degrees of freedom, which connects the magnetic devices with the platform's chassis, is developed to make the platform self-adapt to the complex curved surface of the turbine blade.
      
The platform can automatically adapt to complex spatial surfaces, which satisfy the requirements of a hydraulic turbine blade in-situ repair robot.
      
Probability strength design of steam turbine blade and sensitivity analysis with respect to random parameters based on response
      
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