斯特林发动机换能组中先进连杆菱形机构的结构分析

G. Timofeev, I. Z. Kataev, D. Samsonenko
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引用次数: 0

摘要

基于碳氢化合物的化石燃料由于其高燃烧特性而成为主要的能源来源。然而,化石燃料资源正在枯竭,因此越来越有必要设计和开发一种既能使用各种化石燃料又能使用可再生能源的通用发动机。这种发动机的一个例子是β型斯特林发动机。这种斯特林发动机结构驱动机构的设计和开发是整个动力装置设计的重要组成部分。为了保证这种发动机的长期无故障运行,菱形传动机构不应有任何冗余连接。创建没有冗余连接的机制是一项艰巨的任务。为求解该问题,采用图法对位移组中采用先进连杆的菱形传动机构进行了结构分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Structural analysis of a rhombic mechanism with the advanced connecting rod in the Stirling engine replacing group
Fossil fuel based on the hydrocarbons appears to be the main source of energy due to its high combustion specifics. However, the fossil fuel resources are depleting, thus making it increasingly necessary to design and develop a universal engine capable of running not only on various types of fossil fuels, but also on the renewable energy sources. An example of such an engine is the beta-type Stirling engine. Design and development of the drive mechanism for such Stirling engine configuration is an important part in designing the power unit as a whole. To ensure long-term and trouble-free operation of such an engine, the rhombic drive mechanism should not have any redundant connections. Creating a mechanism without redundant connections is a difficult task. To solve it using the graph method, structural analysis of the rhombic drive mechanism with the advanced connecting rod in the displacement group was carried out.
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