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Contact Pressure Analysis of Rolling Bearing Raceways With Geometrical Singularities

机译:具有几何奇异性滚动滚滚道的接触压力分析

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Sustainability is the focus of most engineering projects nowadays. The challenge of taking the efficiency to its maximum, in order to reduce the CO_2 emission, became so hard that even a minor innovation is a relevant step. Among the efficiency villains in automotive branch it is possible to quote the mechanical friction losses. One of the main factors concerning to these sort of losses is the contact pressure in rolling bearings. This pressure is highly influenced by singularities on raceways. Different geometry profiles can be a friction source, affecting the usage and leading to a wasteful exploitation. This paper aims to scrutinize the influence that different abnormalities on raceways has on the contact pressure of high speed and low load axial ball bearings. The study will be based on numerical simulations on a contact calculation software. The contact pressure will be evaluated around the edges of dented, bulged, grooved and ridged profiles.
机译:可持续性是现在大多数工程项目的重点。 为了减少CO_2排放的挑战,以减少CO_2排放,使得即使是小型创新也是一个相关的一步。 在汽车分支中的效率恶棍中,可以引出机械摩擦损失。 关于这些损失的主要因素之一是滚动轴承中的接触压力。 这种压力受到跑道奇点的影响。 不同的几何配置文件可以是摩擦源,影响使用情况并导致浪费的剥削。 本文旨在仔细审查不同异常对高速和低负荷轴向滚珠轴承接触压力的影响。 该研究将基于联系人计算软件上的数值模拟。 将在凹陷,凸出,凹槽和脊状型材的边缘周围评估接触压力。

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