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基于Abaqus直齿啮合齿轮多体动力学仿真 被引量:3
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作者 平建 《煤矿机械》 北大核心 2019年第11期183-185,共3页
针对直齿啮合齿轮动力学特性难以准确体现的问题,以某直齿啮合齿轮为研究对象,建立直齿啮合齿轮三维装配模型,导入Abaqus中建立啮合齿轮多体动力学仿真模型;对直齿啮合齿轮接触变形位移、动载荷系数、时变综合啮合刚度、输出角速度及振... 针对直齿啮合齿轮动力学特性难以准确体现的问题,以某直齿啮合齿轮为研究对象,建立直齿啮合齿轮三维装配模型,导入Abaqus中建立啮合齿轮多体动力学仿真模型;对直齿啮合齿轮接触变形位移、动载荷系数、时变综合啮合刚度、输出角速度及振动加速度等多体动力学参数进行仿真分析。仿真结果表明:在动态载荷作用下,啮合齿轮接触部位会产生接触变形位移;动载荷系数、时变综合啮合刚度呈现周期性变化;输出角速度、振动加速度呈现在某一固定值上下波动的趋势。该研究为直齿啮合齿轮动力学特性改善和提高提供理论依据。 展开更多
关键词 直齿啮合齿轮 多体动力学仿真 ABAQUS
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新型直齿内啮合齿轮泵的齿形分析 被引量:9
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作者 赵菊娣 《机械设计与制造》 2003年第2期83-84,共2页
通过对新型直齿内啮合齿轮泵的研究,推导出了共轭内齿轮的齿廓曲线方程,确定了影响齿轮泵性能的外齿轮齿形半角α的取值范围。
关键词 齿啮合齿轮 齿廓曲线方程 齿形半角 取值范围 齿形分析
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Influence of cutter diameter on meshing performance in spiral bevel gears
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作者 马志浩 韩星会 +2 位作者 华林 熊小双 郑方焱 《Journal of Central South University》 SCIE EI CAS CSCD 2016年第1期102-111,共10页
Playing a critical role in transmitting movement and power, the meshing performance of spiral bevel gears has a significant effect on products' operational performance. To evaluate the meshing performance, the acc... Playing a critical role in transmitting movement and power, the meshing performance of spiral bevel gears has a significant effect on products' operational performance. To evaluate the meshing performance, the accurate three-dimensional(3D) spiral bevel gear models are established through the Pro/E and MATLAB softwares, and the finite element analysis(FEA) methods are applied to the theoretical investigation of the influence of cutter diameter on meshing performance in spiral bevel gears. The results obtained show that the cutter diameter has a significant influence on spiral bevel gears' meshing performance, such as the contact area, contact pressure, bending stress, torsional stiffness and transmission error. 展开更多
关键词 spiral bevel gears meshing performance finite element analysis cutter diameter
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Mesh stiffness evaluation of an internal spur gear pair with tooth profile shift 被引量:11
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作者 CHEN ZaiGang ZHAI WanMing +1 位作者 SHAO YiMin WANG KaiYun 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2016年第9期1328-1339,共12页
Tooth profile shift will change the thickness of gear teeth and a part of geometrical parameters of a gear pair, thus influencing its mesh stiffness and consequently the dynamic performances. In this paper, an analyti... Tooth profile shift will change the thickness of gear teeth and a part of geometrical parameters of a gear pair, thus influencing its mesh stiffness and consequently the dynamic performances. In this paper, an analytical mesh stiffness calculation model for an internal gear pair in mesh considering the tooth profile shift is developed based on the potential energy principle. Geometrical representations of the tooth profile shift are firstly derived, and then fitted into the analytical tooth stiffness model of gears. This model could supply a convenient way for mesh stiffness calculation of profile shifted spur gears. Then, simulation studies are conducted based on the developed model to demonstrate the effects of tooth profile shift coefficient on the tooth compliances and the mesh stiffness of the internal spur gear pair. The results show that tooth profile shift has an obvious influence on the mean value, amplitude variation and phase of the mesh stiffness, from which it can be predicted that the dynamic response of an internal gear transmission system will be affected by the tooth profile shift. 展开更多
关键词 mesh stiffness tooth profile shift internal gear gear transmission tooth compliance
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