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Contact problem and numeric method of a planetary drive with small teeth number difference

机译:齿数差小的行星传动的接触问题和数值方法

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This paper deals with a theoretical study on contact problem and numeric analysis of a planetary drive with small teeth number difference (PDSTD). A mechanics model and finite element method (FEM) solution are presented in this paper to conduct three-dimensional (3D) contact analysis and load calculations of the PDSTD through developing concepts of the mathematical programming method [T.F. Conry, A. Serireg, A mathematical programming method for design of elastic bodies in contact, Transactions of ASME, Journal of Applied Mechanics 38 (6) (1971) 387-392] and finite element method [S. Li, Gear contact model and loaded tooth contact analysis of a three-dimensional, thin-rimmed gear, Transactions of ASME, Journal of Mechanical Design 124(3) (2002) 511-517; S. Li, Finite element analyses for contact strength and bending strength of a pair of spur gears with machining errors, assembly errors and tooth modifications, Mechanism and Machine Theory 42 (1) (2007) 88-114] to solve a more complex engineering contact problem. FEM programs are developed through many years' efforts. Contact states of teeth, pins and bearing rollers of the PDSTD are made clear through performing contact analysis of the PDSTD with the developed FEM programs. It is found that there are only four pairs of teeth in contact for the PDSTD used as research object when it is loaded with a torque 15 kg m. It is also found that these four pairs of teeth are not located in the offset direction of the external gear. They are located at an angular position of 20-30° away from the offset direction. Loads shared by teeth, pins and rollers have big difference. The maximum load shared by the teeth is much greater than the ones shared by pins and rollers. This means that strength calculations of the teeth are more important than the ones of pins and rollers for the PDSTD. It is also found that all pins share loads while only a part of rollers share loads.
机译:本文针对具有小齿数差(PDSTD)的行星驱动器进行接触问题的理论研究和数值分析。本文提出了一种力学模型和有限元方法(FEM)解决方案,以通过发展数学编程方法[TF.F.F.F.F.]进行PDSTD的三维(3D)接触分析和载荷计算。 Conry,A。Serireg,一种用于接触弹性体设计的数学编程方法,ASME交易,应用力学学报38(6)(1971)387-392]和有限元方法[S. Li,三维薄齿齿轮的齿轮接触模型和负载齿接触分析,ASME,机械设计学报124(3)(2002)511-517; S. Li,对具有加工误差,装配误差和齿变形的正齿轮对的接触强度和弯曲强度进行有限元分析,《机械原理》,第42(1)(2007)88-114页],以解决更复杂的工程联系问题。 FEM程序是经过多年努力而开发的。通过使用开发的FEM程序对PDSTD进行接触分析,可以清楚地了解PDSTD的齿,销和轴承滚轮的接触状态。结果发现,当PDSTD承受15 kg m的扭矩时,只有四对接触的牙齿用作研究对象。还发现这四对齿不在外齿轮的偏移方向上。它们位于偏离偏移方向20-30°的角度位置。齿,销和滚子分担的载荷有很大的不同。齿所分担的最大负载远大于销和滚子所分担的最大负载。这意味着齿的强度计算比PDSTD的销和滚子的齿计算更为重要。还发现所有销均分担负载,而只有一部分滚轮分担负载。

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