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A study of a variable compression ratio system with a multi-link mechanism

机译:具有多连杆机构的可变压缩比系统的研究

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This paper presents a variable compression ratio (VCR) system that has a new piston-crankshaft mechanism with multiple links. This multi-link mechanism varies the piston position at top dead center (TDC), making it possible to change the compression ratio of the engine continuously. Previous attempts have been made to achieve variable compression ratio with this type of method, but it was difficult to avoid various undesirable effects such as an increase in the engine size, substantial weight increases, increased engine block vibration due to a worsening of piston acceleration characteristics and increased friction resulting from a larger number of sliding parts. At the stage of developing the basic design of the multi-link geometry, emphasis was placed on selection of a suitable link geometry and optimization of the detailed dimensions with the aim of essentially resolving these previous issues. As a result of the studies conducted at that stage, a VCR link geometry was found that optimally resolves these various issues. Besides achieving the desired VCR capability, this VCR system also provides several new and additional benefits including: (1) a reduction of second-order vibration by making the piston stroke resemble simple harmonic motion (similar to second-order balancer function); (2) lower piston friction loss as a result of reducing the piston-side thrust load in the expansion stroke; and (3) a compact package that can be housed in the crankcase of existing engines. The basic characteristics of a prototype VCR engine that incorporates these new benefits are described on the basis of a theoretical analysis and experimental results obtained in tests conducted with the prototype engine.
机译:本文提出了具有多个链接新的活塞的曲轴机构的可变压缩比(VCR)系统。这种多连杆机构改变在上止点(TDC)的活塞位置,使得有可能连续地改变发动机的压缩比。已经作出先前的尝试,以实现这种类型的方法的可变压缩比,但它是难以避免的各种不期望的效果,例如由于增加发动机的尺寸,显着的重量增加时,增加的发动机机体振动恶化的活塞加速度特性和增加的摩擦滑动部件的较大数量的所得。在开发的多连杆几何的基本设计的阶段,重点放在与基本上解决这些问题,以往的宗旨的具体尺寸的合适的链路几何结构和优化的选择。由于在这个阶段进行的研究的结果,一个VCR链接几何发现最佳解决这些各种问题。除了实现期望的VCR能力,但此VCR系统还提供了几个新的和额外的益处,包括:(1)通过使活塞行程的减小二阶振动的类似于简谐运动(类似于二阶平衡器功能); (2)下部活塞摩擦损失作为减少在膨胀冲程中活塞侧推力负荷的结果;和(3)一个紧凑的封装,可以被容纳在已有的发动机的曲轴箱。并入这些新的利益的原型VCR发动机的基本特性的理论分析的基础上被描述并且与原型发动机进行的试验得到的实验结果。

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