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The Analysis of a Distribution Mechanism for the Miller-Atkinson Cycle

机译:米勒 - 阿特金森循环分配​​机制分析

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In this paper the authors consider a classic distribution mechanism designed to implement the Miller-Atkinson cycle for an internal combustion engine. The mechanism was presented in a previous paper and it is characterized by the spherical head of valve and the asymmetrical motion of the roller of the lever on the spherical head. Only the contact between the roller of the lever and the valve is considered here, the synthesis of the cam being the object of another study. In our paper we extend the discussion for the vibration of the lever considering its angular velocity and acceleration with respect to the rotational angle of the shaft. The analysis of the non-linear vibration of the lever is performed with respect to different geometric parameters: radius of the spherical head of the valve, radius of the roller of the lever, dimensions and positions of different elements. The maximum values of the angular velocity and acceleration of the lever are highlighted in each case by numerical simulation. A great attention is paid to the relative motion between the roller and the spherical head of the valve, which is a measure of the wear of these two elements. The same problem of wear is discussed for the vibrations of the lever in its joint with the aid of the angular velocity and acceleration. The authors also discuss the particular case of the flat head of the valve. In this paper we consider different laws of displacement of the valve in function of the angle of rotation of the shaft; for each such a law we perform a complete discussion using the results obtained by numerical methods. The most important characteristic of these laws of motion of the valve is that they simulate the Miller-Atkinson cycle of the internal combustion engine. The analysis is performed from the kinematic point of view, the authors highlighting the advantages and disadvantages of the laws of motion considered in their study.
机译:本文作者认为,旨在实现对内燃机的米勒 - 阿特金森循环的经典分配机制。该机制在先前文件中提出,它的特征在于,阀的球形头部和球形头部的杆的辊子的非对称运动。仅杆的辊和阀之间的接触此处考虑,凸轮位于另一研究的对象的合成。在我们的论文中,我们延伸,用于考虑到其角速度和加速度相对于所述轴的旋转角度的控制杆的振动的讨论。杠杆的非线性振动的分析,相对于不同的几何参数进行的:阀的球形头部,杆,尺寸和不同的元素的位置的滚子的半径的半径。角速度和所述杆的加速度的最大值被突出显示在每种情况下通过数值模拟。一个伟大的着眼于所述辊和所述阀,这是这两个元件的磨损的量度的球形头部之间的相对运动。磨损的同样的问题是为在其与角速度和加速度的辅助接合杠杆的振动讨论。作者还讨论了阀的平头的具体情况。在本文中,我们考虑在轴的旋转角度的功能,阀的位移不同的法律;每个这样的法律,我们使用由数值方法得到的结果的完整讨论。的阀的运动的这些法律的最重要的特征是,它们模拟内燃机的米勒 - 阿特金森循环。从来看运动学角度进行分析,作者突出的优势和运动在他们的研究中所考虑的法律缺陷。

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