System Design and Stress–Strain Analysis for Cranking and Motoring Small-Size Engines

Q2 Engineering
Designs Pub Date : 2024-01-29 DOI:10.3390/designs8010014
Giovanni Cecere, A. Irimescu, S. Merola
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引用次数: 0

Abstract

The characterization of small-size engines requires dedicated rigs that are usually used for loading the power unit. Adding the possibility of motoring the engine is an important advantage that allows more detailed information on operating characteristics. It can be used for obtaining precious data that contribute to the development of more accurate numerical models and subsequent validation. Cost competitiveness is another essential aspect of small-size engines, given that development efforts need to be contained as much as possible. Within this context, the present work developed and tested a setup capable of cranking and motoring a small-size 50 cc spark ignition engine. Two configurations were considered for coupling an electric motor to the power unit: the first through a pulley-belt transmission and the second via a plastic clutch assembly. The main idea was to ensure the capability of motoring the engine up to a rotational velocity of 6000 rpm. Engine load was applied through a 1 kW electric generator connected directly to the crankshaft. The overall setup was designed in the two configurations and a stress–strain analysis was performed. The belt-driven option was found to be more favorable in terms of mechanical component requirements, showing a safety factor of around 4.0, while the plastic clutch assembly involved a more complex design phase and turned out to be more demanding, with a safety factor of around 2.9.
曲柄和小型发动机的系统设计和应力应变分析
小型发动机的特性分析需要专用的钻机,这些钻机通常用于装载动力装置。增加发动机驱动的可能性是一个重要的优势,可以获得更详细的运行特性信息。它可用于获取宝贵的数据,有助于开发更精确的数值模型和后续验证。成本竞争力是小型发动机的另一个重要方面,因为开发工作需要尽可能地控制成本。在此背景下,本研究开发并测试了一套能够曲柄驱动 50 毫升小型火花点火发动机的装置。在将电动机与动力装置耦合时,考虑了两种配置:第一种是通过滑轮皮带传动,第二种是通过塑料离合器组件。其主要目的是确保发动机能够以每分钟 6000 转的速度运转。发动机负载通过一个直接连接到曲轴的 1 千瓦发电机来实现。设计了两种配置的整体装置,并进行了应力应变分析。结果发现,皮带驱动方案对机械部件的要求更高,安全系数约为 4.0,而塑料离合器总成的设计阶段更为复杂,要求更高,安全系数约为 2.9。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Designs
Designs Engineering-Engineering (miscellaneous)
CiteScore
3.90
自引率
0.00%
发文量
0
审稿时长
11 weeks
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