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An analytical model for accurate and numerically efficient tooth contact analysis under load, applied to face-milled spiral bevel gears

机译:负载下载荷准确和数值有效的牙齿接触分析的分析模型,适用于铣削螺旋锥齿轮

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摘要

An analytical model that allows for a computationally efficient analysis of face-milled spiral bevel gears, is presented. The methodology builds on the consideration that the mating tooth flanks are designed to transmit motion in a nearly conjugate manner. A multibody approach to tooth contact analysis is proposed that assumes contact between rigid surfaces. By taking advantage of the action surfaces for each flank pair, contact is detected in a computationally efficient and accurate way. An analytical load distribution model is used to translate the detected penetration into resulting contact forces, under the assumption that the flank penetration matches the deformation of the teeth if they were flexible. To account for the global tooth deformation Tredgold's approximation in combination with a set of expressions based on beam theory are utilized, while the local contact deformation is modeled based on Hertz theory. The methodology is validated against nonlinear finite element simulations. A comparison in terms of transmission error, contact patterns and contact pressure is provided. Contrary to FE simulations the proposed methodology requires significantly less computational effort, allowing further extension to optimization or system analysis problems. (C) 2018 Elsevier Ltd. All rights reserved.
机译:提出了一种允许对面铣刨螺旋锥齿轮进行计算有效分析的分析模型。该方法在考虑时构建了配合牙齿侧面被设计成以几乎缀合的方式传递运动。提出了一种牙齿接触分析的多体方法,假设刚性表面之间的接触。通过利用每个侧翼对的动作表面,以计算上的高效和准确的方式检测触点。分析负载分布模型用于将检测到的穿透转化为导致的接触力,假设侧翼渗透与牙齿的变形相媲美,如果它们是柔性的。为了考虑全局牙齿变形,利用基于光束理论的一组表达式结合的全局牙齿变形Tredgold近似,而基于赫兹理论建模局部接触变形。该方法针对非线性有限元模拟验证。在传输误差,接触图案和接触压力方面进行比较。与FE模拟相反,所提出的方法可能需要显着更少的计算工作,允许进一步扩展到优化或系统分析问题。 (c)2018年elestvier有限公司保留所有权利。

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