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轮齿接触的英文

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"轮齿接触"怎么读用"轮齿接触"造句

英文翻译手机手机版

  • gear tooth contact

例句与用法

  • Contact pattern tooth contact pattern
    轮齿接触斑点
  • Tooth contact analysis
    轮齿接触分析
  • Tooth contact pattern
    轮齿接触斑点
  • Cylindrical gears - code of inspection practice - part 4 : recommendations relative to surface texture and tooth contact pattern checking
    圆柱齿轮检验实施规范第4部分:表面结构和轮齿接触斑点检验
  • Analyze the stresses distributing of helical gear in long direction using 3dcbem . optimize the shape of dentiform using cvm as the optimize algorithm . the result were satisfied
    作者编制了斜齿轮前处理程序,应用边界元应力分析程序3dcbem分析了沿齿宽方向的轮齿接触应力的分布。
  • Compared with the traditional cantilever structure , the bearing life of two - terminal bracing structure is improved by 17 . 51 times , while the contact stress of gear tooth is reduced by 45 . 7 % , and the bending stress of gear tooth is reduced by 62 . 8 %
    与传统主动齿轮悬臂结构相比两端支撑结构的轴承寿命提高了17 . 51倍、轮齿接触应力降低45 . 7 % 、轮齿齿根弯曲应力减小62 . 8 % 。
  • 3 . studying on prediction methods of the initiation life of aero - gear using shakedown analysis methods in order to directly consider in a quantitative way the details of stress - inelastic strain responses , residual stress and residual strain computations , fatigue crack initiation life was evaluated in aero - gear by using th
    利用chaboche的材料模型,研究了航空齿轮韧性材料在弹、塑性安定下的轮齿接触疲劳裂纹萌生准则,该研究结果与相关的齿轮实验结果比较分析表明:塑性安定下的疲劳裂纹萌生预测方法预测航空齿轮的萌生寿命是较安全的。
  • Based on the theories of gear engagement , contact analysis , friction and heat transfer , a three - dimensional finite element model of gear tooth was established to investigate temperature distributions and variations along the contact path over a range of applied loads and operating speeds with consideration of lubrication conditions . sensitivity analysis of surface temperature to gear configuration , frictional heat flux , heat transfer coefficients , and oil and ambient temperature was conducted and the major parameters influencing surface temperature were evaluated
    本文基于齿轮啮合原理、轮齿接触分析、摩擦学和传热学,以有限元分析方法和理论分析计算相结合为手段并以实验测量结果作为参考,建立了适用于工业应用并具有较高计算精度的高速齿轮传动轮齿温度分析的模型和方法,系统地分析了轮齿本体温度的大小和分布以及齿轮几何、载荷及转速和润滑冷却条件等对轮齿本体温度的影响。
用"轮齿接触"造句  
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