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The development of a durable, cost effective, overhead valve train for application to small, 4-cycle engines

机译:开发耐用,成本效益,架空阀门火车,用于应用于小型,4个循环发动机

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This paper outlines the specifics of valve train design and construction for a small 26.2 cc, OHV, 4-cycle engine recently developed by the Ryobi Group of Companies for hand held power equipment applications. The first generation of this engine was designed to compete with existing 2-cycle technology for nylon string trimmers. As such, the valve train operates reliably at engine speeds in excess of 8,500 r.p.m. Design methodologies to minimize forces that develop during high speed operation will be reviewed. The lifter mechanism design facilitates parametric tuning of engine performance by simple variations in the geometry. A unique combination of nickel free stainless steel valve and polymeric valve spring retainer materials were used to avoid wear in the valve stem and limit valve float in a single spring design.
机译:本文概述了阀门列车设计和施工的细节,为小型26.2 CC,OHV,4个周期发动机最近由Ryobi集团公司开发的,用于手持电力设备应用。第一代该发动机旨在竞争与尼龙弦修剪器的现有2周期技术。因此,阀门列车以8,500 r.p.m的发动机速度可靠地运行。将综述设计方法,以最大限度地减少高速操作期间开发的力量。升降机构设计通过几何变化来促进发动机性能的参数调整。使用镍不锈钢阀和聚合物阀弹簧保持材料的独特组合用于避免在阀杆中磨损,并在单个弹簧设计中佩戴。

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