Effects of Drive Side Pressure Angle on Gear Fatigue Crack Propagation Life for Spur Gears With Symmetric and Asymmetric Teeth

F. Karpat, Oğuz Doğan, Tufan G Yılmaz, C. Yuce, O. Kalay, E. Karpat, O. Kopmaz
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引用次数: 2

Abstract

Today gears are one of the most crucial machine elements in the industry. They are used in every area of the industry. Due to the high performances of the gears, they are also used in aerospace and wind applications. In these areas due to the high torques, unstable conditions, high impact forces, etc. cracks can be seen on the gear surface. During the service life, these cracks can be propagated and gear damages can be seen due to the initial cracks. The aim of this study is to increase the fatigue crack propagation life of the spur gears by using asymmetric tooth profile. Nowadays asymmetric gears have a very important and huge usage area in the industry. In this study, the effects of drive side pressure angle on the fatigue crack propagation life are studied by using the finite element method. The initial starting points of the cracks are defined by static stress analysis. The starting angles of the cracks are defined constant at 45°. The crack propagation analyses are performed in ANSYS SMART Crack-Growth module by using Paris Law. Four different drive side pressure angles (20°-20°, 20°-25°, 20°-30° and 20°-35°) are investigated in this study. As a result of the study the fatigue crack propagation life of the gears is increased dramatically when the drive side pressure angle increase. This results show that the asymmetric tooth profile not only decrease the bending stress but also increase the fatigue crack propagation life strongly.
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对称齿和非对称齿直齿轮驱动侧压力角对齿轮疲劳裂纹扩展寿命的影响
今天,齿轮是工业中最重要的机器元件之一。它们被应用于工业的各个领域。由于齿轮的高性能,它们也用于航空航天和风力应用。在这些区域,由于高扭矩,不稳定的条件,高冲击力等,裂纹可以在齿轮表面看到。在使用寿命期间,这些裂纹可以扩展,并且由于初始裂纹可以看到齿轮损坏。本研究的目的是利用非对称齿形来提高直齿轮的疲劳裂纹扩展寿命。目前,非对称齿轮在工业上有着非常重要和巨大的应用领域。本文采用有限元方法研究了驱动侧压力角对疲劳裂纹扩展寿命的影响。通过静应力分析确定了裂纹的起始点。裂纹的起始角被定义为45°。在ANSYS SMART裂纹扩展模块中,利用Paris定律进行了裂纹扩展分析。本研究研究了四种不同的驱动侧压力角(20°-20°,20°-25°,20°-30°和20°-35°)。研究结果表明,当驱动侧压力角增大时,齿轮的疲劳裂纹扩展寿命显著延长。结果表明,非对称齿形不仅能降低弯曲应力,而且能显著提高疲劳裂纹扩展寿命。
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