WORM GEAR ANALYSIS IN TERMS OF NUMERICAL MODELLING

Q3 Engineering
M. Biegaj, K. Dziedziech, Adam Macheta
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引用次数: 0

Abstract

A worm gear mechanism, widely used in numerous mechanical applications, is the essential component in energy ef­ficiency considerations. Compared to traditional gearboxes, worm gear is characterized by lower value of efficiency, provided by the manufacturers as 70-90%. However, the efficiency level can differ depending on the specific conditions of operation such as output torque, input rotational velocity, ambient temperature and type of lubrication. In order to analyse and simulate the worm gear mechanism in mechanical systems, it is essential to establish the actual efficiency value for specific conditions. The following article contains the description of efficiency test performed for the worm gear as a part of tram pantograph system studied in frame of ESTOMAD project. The aim of the experiment was to deter­mine the actual efficiency value of the transmission tested. The worm gear has been tested in an open loop configuration, therefore the efficiency has been determined basing on input and output torque and rotational velocity measurements. The tests have been performed for various output torques and input velocities to obtain view on losses in worm gear under different operational conditions, paying special attention to the velocity that drives the pantograph mechanism. The efficiency changes with the output torque variation, while the impact of rotational velocity level on the mentioned value is minimal. The results of measurements are used in modelling phase of worm gear component in 1D simulation environment, particularly creating new model and its correlation and validation.
蜗轮蜗杆的数值模拟分析
蜗轮机构广泛应用于许多机械应用中,是能源效率考虑的重要组成部分。与传统的齿轮箱相比,蜗轮的特点是效率值较低,制造商提供的效率值为70-90%。然而,效率水平可以根据具体的操作条件,如输出扭矩、输入转速、环境温度和润滑类型而有所不同。为了对机械系统中的蜗轮机构进行分析和仿真,必须建立特定条件下的实际效率值。下面的文章描述了在ESTOMAD项目框架下,对作为电车受电弓系统一部分的蜗轮进行的效率试验。实验的目的是确定被测变速器的实际效率值。蜗轮在开环结构下进行了测试,因此根据输入、输出扭矩和转速测量来确定效率。在不同的输出扭矩和输入速度下进行了试验,以了解不同工作条件下蜗轮蜗杆的损耗情况,并特别关注驱动受电弓机构的速度。效率随输出转矩的变化而变化,转速水平对效率的影响最小。将测量结果应用于蜗轮蜗杆部件的一维仿真建模阶段,重点介绍了新模型的建立及其关联和验证。
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
International Journal of Mechanics and Control
International Journal of Mechanics and Control Engineering-Computational Mechanics
CiteScore
2.10
自引率
0.00%
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0
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