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首页> 外文期刊>Mathematical Problems in Engineering: Theory, Methods and Applications >Deformation Investigations on the Flexspline with the Conic Curve Combined Cam Wave Generator
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Deformation Investigations on the Flexspline with the Conic Curve Combined Cam Wave Generator

机译:圆锥形曲线组合凸轮波发生器对柔性芯线的变形研究

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The deformation of the flexspline and the meshing quality are largely determined by the profile of a wave generator. The wave generator with a combined profile can effectively reduce or improve the deformation stress and strain of the flexspline for improving the transmission efficiency and reducing wear or noise. In this paper, in view of the facts that conic is originally cut out of the cone and different conic curves are easy to transform, a design concept of the curve cam wave generator based on the conic curve is proposed. Firstly, the combined principle, constraint conditions, and mathematic model of the curve cam generator based on the conic curve are established. Secondly, the deformation theory of the flexspline acted by the curve cam wave generator with conic curves has been developed, and finite element analysis on stress and strain of the flexspline compared with a standard elliptic wave generator has been carried out. Finally, a cam wave generator combined with the circle and ellipse as a sample has been developed and manufactured. Circumferential strain test has been further carried out by a static strain gauge to verify the strain characteristics of the flexspline acted with the circle and ellipse combined cam wave generator. The FEM results show that, in the meshing area of the flexspline, the maximum equivalent stress of the flexspline under the action of the arc and the ellipse wave generator is about 93?MPa, which is 36.3% lower than the maximum equivalent stress of the flexspline under the action of the standard ellipse which is 143?MPa. The experimental results show that the fitting curve of the experimental results fits well with the finite element analysis curve.
机译:Flexspline的变形和啮合质量主要由波发生器的轮廓确定。具有组合型材的波发生器可以有效地减少或改善柔性件的变形应力和应变,以改善传输效率和减少磨损或噪音。在本文中,鉴于圆锥最初切出锥体和不同圆锥形曲线的事实易于变换,提出了基于圆锥曲线的曲线凸轮波发生器的设计概念。首先,建立了基于圆锥曲线的曲线凸轮发生器的组合原理,约束条件和数学模型。其次,已经开发了由曲线凸轮波发生器作用的柔性凸光线的变形理论,并且已经进行了与标准椭圆波发生器相比,柔性波线的应力和应变的有限元分析。最后,已经开发和制造了凸轮波发生器与圆圈和椭圆相结合。通过静态应变仪进一步进行了周向应变试验,以验证用圆形和椭圆组合凸轮波发生器作用的柔性件的应变特性。 FEM结果表明,在柔韧截盘的啮合面积中,弯曲架在弧形和椭圆波发生器的作用下的最大等效应力为约93μm≤MPa,比最大当量应力低36.3% Flexspline在标准椭圆的动作下,这是143?MPA。实验结果表明,实验结果的拟合曲线与有限元分析曲线合适。

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