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Design and analysis of low-stress and low-noise lightweight railway wheel

机译:低应力低噪声轻轨车轮设计与分析

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The finite-element and boundary-element methods were applied to develop the low-stress and low-noise lightweight railway wheel. First, stress analyses for the existing wheels under the condition of drag braking or track loading were performed. Following these analyses, a design methodology was developed and applied, leading to the development of new plate shapes of the wheel, whose stresses generated were lower than those of conventional wheels. Candidate plate shapes were selected based on the analyses. Next, eigenvalue analyses and transient dynamic analyses were carried out for the wheels. At the same time, to verify the analytical results, these wheels were manufactured and experiments implemented. Finally, acoustic analyses were performed and results compared with those obtained by field measurements. From this study, a new plate shape of the lightweight railway wheel was obtained, which reduces the radiated noise as well as the maximum stresses generated in the plate region to a remarkable extent. [PUBLICATION ABSTRACT]
机译:运用有限元和边界元方法开发了低应力,低噪声的轻质铁路车轮。首先,在阻力制动或履带载荷条件下对现有车轮进行了应力分析。在进行了这些分析之后,开发并应用了一种设计方法,从而导致开发出了新的轮盘形状,其所产生的应力低于传统轮毂。基于分析选择候选板的形状。接下来,对车轮进行特征值分析和瞬态动力学分析。同时,为了验证分析结果,制造了这些车轮并进行了实验。最后,进行声学分析,并将结果与​​通过现场测量获得的结果进行比较。通过这项研究,获得了一种轻质铁路车轮的新板状形状,该形状可显着降低辐射噪声以及在板状区域中产生的最大应力。 [出版物摘要]

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    M Akama M Sasakura K Furuno;

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    M Akama1*, M Sasakura1, and K Furuno21 Vehicle Structure Technology Division, Railway Technical Research Institute, Tokyo, Japan2 Computational Science and Engineering Division 1, Advance Soft, Tokyo, JapanThe manuscript was received on 25 October 2007 and was accepted after revision for publication on 13 June 2008.DOI: 10.1243/09544097JRRT188* Corresponding author: Vehicle Structure Technology Division, Railway Technical Research Institute, 2-8-38, Hikari-cho, Kokubunji-shi, Tokyo 185-8540, Japan. email: akama@rtri.or.jp;

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