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带有反向螺纹的同轴变速单螺杆三维流场分析 被引量:1
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作者 左晓甜 郭树国 金子云 《中国油脂》 北大核心 2025年第1期147-152,共6页
为了改善单螺杆挤出机混炼性能,设计了一种装配内嵌式摆线齿轮减速器和反向螺纹元件的新型螺杆。使用Solid works软件建模,利用ANSYS和CFX软件分析新型同轴变速单螺杆挤出机的流道内三维流场变化,根据流道内的压力、速度矢量、截面速度... 为了改善单螺杆挤出机混炼性能,设计了一种装配内嵌式摆线齿轮减速器和反向螺纹元件的新型螺杆。使用Solid works软件建模,利用ANSYS和CFX软件分析新型同轴变速单螺杆挤出机的流道内三维流场变化,根据流道内的压力、速度矢量、截面速度等变化,探究物料在其流道内的剪切和混合情况。结果表明:在外部情况相同时,新型螺杆建压能力弱于传统螺杆,即新型螺杆的挤出效率较低;新型螺杆因为装配内嵌式摆线齿轮减速器使其混炼区域的速度降为传统螺杆的1/6,引起物料对流,加快压力场变化,使其速度流线更加混乱;新型螺杆因为装配有反向螺纹元件,使其混炼区域出现反向建压能力,在此作用下物料出现反向速度,出现回流现象。综上,摆线齿轮减速器和反向螺纹元件均延长了物料在流道内的停留时间,增加了物料的挤压剪切次数,从而增强了挤出机的混合分布能力和挤压剪切效果。 展开更多
关键词 摆线齿轮减速器 反向螺纹 单螺杆挤出机
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Mesh stiffness calculation of cycloid-pin gear pair with tooth profile modification and eccentricity error 被引量:7
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作者 LI Xuan CHEN Bing-kui +1 位作者 WANG Ya-wen LIM Teik Chin 《Journal of Central South University》 SCIE EI CAS CSCD 2018年第7期1717-1731,共15页
Cycloid speed reducers are widely used in many industrial areas due to the advantages of compact size, high reduction ratio and high stiffness. However, currently, there are not many analytical models for the mesh sti... Cycloid speed reducers are widely used in many industrial areas due to the advantages of compact size, high reduction ratio and high stiffness. However, currently, there are not many analytical models for the mesh stiffness calculation, which is a crucial parameter for the high-fidelity gear dynamic model. This is partially due to the difficulty of backlash determination and the complexity of multi-tooth contact deformation during the meshing process. In this paper, a new method to calculate the mesh stiffness is proposed including the effects of tooth profile modification and eccentricity error. The time-varying mesh parameters and load distribution of cycloid-pin gear pair are determined based on the unloaded tooth contact analysis (TCA) and the nonlinear Hertzian contact theory, allowing accurate calculations of the contact stiffness of single tooth pair and the torsional stiffness of multi-tooth pairs. A detailed parametric study is presented to demonstrate the influences of tooth profile modification, applied torque and eccentricity error on the torsional mesh stiffness, loaded transmission error, Hertzian contact stiffness and load sharing factor. This model can be applied to further study the lost motion and dynamic characteristics of cycloid speed reducer and assist the optimization of its precision, vibration and noise levels. 展开更多
关键词 cycloid speed reducer mesh stiffness tooth contact analysis load distribution modification
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