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首页> 外文期刊>Shock and vibration >Synchronization of Two Non-Identical Coupled Exciters in a Non-Resonant Vibrating System of Linear Motion. Part II: Numeric Analysis
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Synchronization of Two Non-Identical Coupled Exciters in a Non-Resonant Vibrating System of Linear Motion. Part II: Numeric Analysis

机译:线性运动的非共振振动系统中两个非完全相同的激励器的同步。第二部分:数值分析

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The paper focuses on the quantitative analysis of the coupling dynamic characteristics of two non-identical exciters in a non-resonant vibrating system. The load torque of each motor consists of three items, including the torque of sine effect of phase angles, that of coupling sine effect and that of coupling cosine effect. The torque of frequency capture results from the torque of coupling cosine effect, which is equal to the product of the coupling kinetic energy, the coefficient of coupling cosine effect, and the sine of phase difference of two exciters. The motions of the system excited by two exciters in the same direction make phase difference close to π and that in opposite directions makes phase difference close to 0. Numerical results show that synchronous operation is stable when the dimensionless relative moments of inertia of two exciters are greater than zero and four times of their product is greater than the square of their coefficient of coupling cosine effect. The stability of the synchronous operation is only dependent on the structural parameters of the system, such as the mass ratios of two exciters to the vibrating system, and the ratio of the distance between an exciter and the centroid of the system to the equivalent radius of the system about its centroid.
机译:本文着重于定量分析非共振振动系统中两个不同激振器的耦合动力学特性。每个电动机的负载转矩由三项组成,包括相角的正弦效应转矩,耦合正弦效应转矩和耦合余弦效应转矩。频率捕获的转矩由耦合余弦效应的转矩产生,该转矩等于耦合动能,耦合余弦效应的系数和两个激励器的相位差正弦的乘积。两个激励器在相同方向上激励的系统运动使相位差接近π,而在相反方向上使系统的运动相位差接近0。数值结果表明,当两个激励器的无因次相对惯性矩为时,同步操作是稳定的。大于零且其乘积的四倍大于其耦合余弦效应系数的平方。同步操作的稳定性仅取决于系统的结构参数,例如两个激励器与振动系统的质量比,以及激励器与系统质心之间的距离与等效激励半径之比。关于质心的系统。

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