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- Calculation on Tooth Surface Contact Stress Course of Hypoid Gears 准双曲面齿轮齿面接触应力过程计算
- tooth surface contact stress 齿面接触应力
- A film of mucus and bacteria on a tooth surface. 齿菌斑牙齿表面一层粘液和细菌的膜
- A research for influence of the gear pressure angle on tooth surface contact intensity 轮齿压力角对齿面接触强度的影响分析
- In turn outwash each tooth each tooth surface. 依次刷净每个牙齿的每个牙面。
- tooth- surface contact stress 齿面接触应力
- The formulae given by ISO 6336 and AGMA 2001-B88 for calculating the coefficient of contact ratio for tooth surface durability were discussed and a new formula was proposed. 同时对ISO6336及AGMA2001 B88中接触强度重合度系数公式提出了商榷,并提出了新的公式。
- Simulation test of packer rubber-casing wall contact stress. 封隔器胶筒对套管接触应力模拟试验研究。
- Basingon the loca1 synthesis method, TCA and LTCA techniques, ahigh contact ratio can obtained by enlarging the bias angle ofcontact path at the tooth surface. 利用局部综合法、轮齿接触分析(TCA)、轮齿承载接触分析(LTCA)和啮合仿真技术,通过齿面接触路径倾斜,达到了高重合度的设计目的。
- Imperfections may interfere with brush to surface contact. 缺陷会影响到炭刷于表面的接触。
- These formulae are suitable for any contacting point of tooth surface meshing. 这些公式适用于齿面啮合的任何接触点。
- Dental ecofilm is a community of bacteria colonized on tooth surface. 摘要牙面生态膜是细菌致龋活动场所。
- When the working load is large, the contact stress between cam surface and follower ends becomes the main cause of cam mechanism failure. 当工作载荷较大时,凸轮表面和从动件端部的接触疲劳破坏就成为凸轮机构失效的主要形式之一。
- The surfaces contact at this point. 这些面在这一点交汇到一起。
- This method is also applicable to solving contact stress and residual stress. 该方法同样适用于解决接触应力和残余应力问题。
- To remove(tartar) from tooth surfaces with a pointed instrument. 除牙垢用带尖工具除去牙齿表面的(污垢)
- The sealing contact stress is an important parameter of sealing capability. 密封接触应力是影响密封性能的重要技术参数。
- To remove(tartar)from tooth surfaces with a pointed instrument. 除牙垢用带尖工具除去牙齿表面的(污垢)
- This article has described the column surface 4 steps expanded calculation method adopted for the Hertz contact stress calculation of heavy machineries. 介绍在重型机械赫茨接触应力计算中,采用圆柱面4阶展开的计算方法。
- The curvature radius was derivated and the contact stress of the three-arc-sect isometric type surface was calculated through the elastic dynamics theory. 应用弹性力学理论,推导出接触点的曲率半径,对三弧段等距型面联接进行接触应力计算。