Influence of a Shaft Shoulder on the Torsional Load-Bearing Behaviour of Trochoidal Profile Contours as Positive Shaft–Hub Connections

Eng Pub Date : 2024-05-11 DOI:10.3390/eng5020045
Masoud Ziaei, Marcus Selzer, Heiko Sommer
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引用次数: 0

Abstract

Shafts with a stepped shoulder are particularly well known in the field of drive technology. In combination with a form-fit shaft–hub connection, the shaft shoulder fixes the hub on the shaft as well as being responsible for the absorption of the axial forces. With profiled shafts, there is a notch overlay in the shaft shoulder, involving the shaft shoulder and profile. If the hub is also connected with the profiled shaft, the hub edge acts as an additional notch in the shaft shoulder area. The multiple resulting notches have not previously been part of research activities in the field of innovative trochoidal profile connections. Compared to conventional positive-locking connections, such as the keyway connection or the involute splined shaft profile, the favourable features of trochoidal profiles have only been based on connections with stepless shafts without a shoulder in previous studies. Accordingly, this article addresses numerical and experimental investigations of trochoidal profile connections with offset shafts for pure torsional loading. Focusing on a hybrid trochoid with four eccentricities and six drivers, a well-founded numerical and experimental investigation was carried out with numerous fatigue tests. In addition, the influence of a shaft shoulder was also demonstrated on simple epitrochoidal and hypotrochoidal profiles.
轴肩对作为正轴-毂连接件的齿形轮廓的扭转承载行为的影响
在驱动技术领域,带有阶梯肩的轴尤其为人所知。轴肩与轴毂连接配合,将轴毂固定在轴上,并负责吸收轴向力。对于异型轴,轴肩上有一个缺口,涉及轴肩和异型。如果轮毂也与异型轴连接,轮毂边缘就会在轴肩区域形成额外的缺口。由此产生的多个凹槽以前从未在创新型三叶形轮廓连接领域的研究活动中出现过。与键槽连接或渐开线花键轴轮廓等传统的正向锁定连接相比,在以前的研究中,三叶形轮廓的有利特征只基于无级轴的连接,而没有轴肩。因此,本文针对纯扭载荷下带有偏置轴的三叶形轮廓连接进行了数值和实验研究。本文以具有四个偏心和六个驱动力的混合三叶形为重点,通过大量疲劳试验进行了有理有据的数值和实验研究。此外,还证明了轴肩对简单外凸和下凸轮廓的影响。
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
Eng
Eng
CiteScore
2.10
自引率
0.00%
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0
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