首页> 外文期刊>Energy education science and technology >Cam motion simulation and optimization based on Matlab /Simulink
【24h】

Cam motion simulation and optimization based on Matlab /Simulink

机译:基于MATLAB / SIMULINK的凸轮运动仿真与优化

获取原文
获取原文并翻译 | 示例
       

摘要

Automobile engine valve mechanism task is to ensure that the valve open or closed within the prescribed time, open or close the action should be quickly. As the camshaft speed increase, the kinematic and dynamic characteristics of the elastic deformation and inertial force on the mechanism of component will influence, causing the valve between the actual displacement, velocity, acceleration and displacement, velocity, acceleration of the name, especially the obvious difference between the actual and nominal acceleration response acceleration, so the elastic dynamic analysis the entire valve mechanism, as an elastic system, the actual output of the dynamic valve with camshaft input response, for cam profile motion / dynamics integrated to provide a theoretical basis. This paper is based on the kinetic theory of mechanical system, the dynamic response analysis of the cam mechanism, including the displacement response, velocity and acceleration response, according to the comparative analysis of results, can explain the harmonic motion law is more obvious in reducing the vibration of high speed cam mechanism effect. Analysis steps as modeling, set up the differential equations of motion and the solution of the differential equations of motion. The differential equations of motion can be obtained by analytical solutions only in some simple cases, in general, can only use the numerical method to solve. In this paper an analytic solution of dynamic response, and are compared with the ideal output response, illustrate the applicability of harmonic motion law is applied to the design of cam mechanism..
机译:汽车发动机阀门机构任务是确保阀门在规定的时间内打开或关闭,打开或关闭动作应该快速。随着凸轮轴速度的增加,弹性变形的运动和动态特性和部件机制上的惯性力会影响,导致阀门之间的实际位移,速度,加速和位移,速度,名称加速,尤其是明显实际和标称加速度响应加速度之间的差异,因此弹性动态分析整个阀门机构,作为弹性系统,动态阀的实际输出具有凸轮轴输入响应,用于凸轮轮廓运动/动力学,提供了理论基础。本文基于机械系统的动力学理论,凸轮机构的动态响应分析,包括位移响应,速度和加速度响应,根据结果的比较分析,可以解释谐波运动法在减少方面更为明显高速凸轮机构效应的振动。分析步骤为建模,建立运动的微分方程和运动的差分方程的解决方案。运动的微分方程可以通过分析解决方案在一些简单的情况下获得,通常只能使用数值方法来解决。在本文中,动态响应的分析解决方案,与理想的输出响应进行比较,说明了谐波运动法的适用性应用于凸轮机构的设计。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号