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Kinematic design and analysis of a four-bar linkage-type continuously variable valve actuation mechanism

机译:四连杆机构式无级阀驱动机构的运动学设计与分析

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This paper proposes a simple mechanical CWA system using a four-bar linkage, a rotating first cam, and oscillating second cams. The relationship between the cam profiles and valve motion is analyzed using planar-cam theory. The theory is applied to analyze the second cams that have oscillatory motion with variable angular speed. The kinematic behavior of the CWA system was tested with a computer model. In order to verify the accuracy of the analysis method, calculated valve motions are compared with those from commercial CAD software. Analysis results are used to determine the feasibility of the CVVA mechanism for application to automotive engines. A prototype CWA system was designed and manufactured. The newly designed CVVA system is successfully operated on a test bench up to 7000 engine rpm, which is the range of the overrun speed of most production spark ignition engines. The CVVA system sustains proper valve timing and event control across the whole speed range.
机译:本文提出了一种简单的机械CWA系统,该系统使用四连杆机构,旋转的第一凸轮和摆动的第二凸轮。使用平面凸轮理论分析了凸轮轮廓与气门运动之间的关系。该理论适用于分析具有可变角速度振荡运动的第二凸轮。用计算机模型测试了CWA系统的运动学行为。为了验证分析方法的准确性,将计算出的气门运动与商用CAD软件的气门运动进行了比较。分析结果用于确定将CVVA机制应用于汽车发动机的可行性。设计并制造了原型CWA系统。新设计的CVVA系统在高达7000 rpm的测试台上成功运行,这是大多数生产火花点火发动机的超速范围。 CVVA系统可在整个速度范围内维持适当的气门正时和事件控制。

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