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1)  star-wheel mechanism
星轮机构
2)  star wheel loading mechanism
星轮装载机构
1.
By mechanical analysis of star wheel loading mechanism,the relationship between rotating speed of star wheel and its structural parameters is determined.
通过对星轮装载机构的力学分析,确定星轮转速与星轮结构参数之间的关系,在此基础上,得出了在一定的星轮转速条件下星轮轮齿的中心线。
2.
In view of the stress inconstant problem of the star wheel in the work process,by analyzing the star wheel loading mechanism of dynamics,the exciting force of coal material to star wheel are determined and taking the star wheel of straight inclined shape as an example,the modal analysis and harmonic response of star wheel is analyzed under the Ansys.
针对星轮装载机构在工作过程中存在受力不恒定的问题,对星轮机构进行动力学分析,确定了煤岩对星轮的激振力,并以直斜形星轮为例,利用Ansys软件对星轮进行模态分析和谐响应分析,得出了星轮机构在动载荷作用下的振型、应力及应变情况,分析指出了星轮受载荷最大处的位置,为研究改进星轮的设计和改善星轮的性能提供理论依据。
3)  planet gear mechanism
行星齿轮机构
1.
This paper takes Toyota A43DE auto trans as an example to analyze in detail the design of various one-way clutches in Simpson planet gear mechanism of an automatic transmission, as well as their functions and working principles.
本文以丰田A43DE自动变速器为例,详细分析了自动变速器中辛普森式行星齿轮机构中的各个单向离合器的设计意图,及他们的作用和工作原理,以供借鉴。
4)  planetary gear mechanism
行星齿轮机构
1.
Combined application of two methods on calculating the transmission ratio of a planetary gear mechanisms;
两种计算行星齿轮机构传动比方法的联合应用
2.
According to the forming principle of hypocycloid,a prototype and a dynamical model of the internal cycloid planetary gear mechanism for a single-cylinder engine are developed using Solidworks and ADAMS.
根据内摆线形成原理,利用Solidworks和ADAMS软件建立了内摆线单缸柴油机行星齿轮传动机构实体模型和动力学模型,机构动态特性仿真数据能为内摆线行星齿轮机构的结构设计与优化设计提供依据。
3.
Transmission ratio calculation is chock correlated with the meshing efficiency calculation on the complex planetary gear mechanism,i.
将复合行星齿轮机构的传动比和啮合效率计算密切联系起来,即先用速比转换法求出传动比公式,然后根据传动比公式写出效率公式,同时,对传动比法进行了改进。
5)  planetary gear set
行星齿轮机构
1.
The dynamics characteristics of the power split device in hybrid electric vehicles (HEV) based on planetary gear set as its core are analyzed with dynamics equations derived.
针对混合动力汽车功率分配装置这一关键部件,分析了以行星齿轮机构为核心的功率分配装置的动力学特性,得出了动力学方程,详细讨论了在各种驱动模式下的功率分配传动过程和效率,其结果可作为下一步混合电动汽车整车能量优化控制研究的基础。
6)  planetary transmission
行星齿轮机构
1.
A dynamical model of the planetary transmission has been built in ADAMS Engine block,and the procedure of modeling of the planetary transmission in template has been introduced, and the dynamical simulation has been tried in the engine starting phase at last.
基于ADAMS软件的Engine模块建立了行星齿轮机构的动力学模型,介绍了在Template中的具体建模过程;针对发动机启动阶段的运动特性,进行了动力学仿真。
2.
The foundation is theoretically laid for the systematically dynamic analyzing of planetary transmission.
通过把行星齿轮机构划分成几个相互关联的子系统 ,应用牛顿第二定律 ,详细推导了行星齿轮的振动公式 ,建立了系统的弹性动力学分析模型。
3.
Parameterized Dynamic Modeling And Simulating of Planetary Transmission;
应用ADAMS软件的ENGINE模块建立了行星齿轮机构的动力学模型,介绍了在Template中的建模方法;针对发动机启动阶段的运动特性,进行了动力学仿真。
补充资料:轮埵
【轮埵】
 (术语)图轮之耳埵也。就佛之相好而言。般若经三百八十一曰:“世尊耳厚,广大周长,轮埵成就。”
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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