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Instantaneous Plane Stress Observation and Numerical Simulation During Wear in an Initial Line Contact

机译:初始线路接触中磨损瞬时平面应力观察和数值模拟

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The photoelastic technique was applied to capture in situ plane stress in a block-on-cylinder contact. This method allows researchers to qualitatively visualize the distribution of principal stress difference during wear processes. Additionally, numerical simulation of the evolution of wear was conducted. The conjugate gradient method together with fast Fourier transform was employed to solve the pressure distribution. Based on the computed pressure, the block wear was solved with Archard's wear law. The subsurface stress was computed using the influence coefficient method. The simulated results of wear and stress were compared with the experimental results; the similarities and differences between the results highlight the usefulness and limitations of the numerical method. However, the photoelastic technique together with the numerical method casts light on the nature of wear.
机译:将光弹性技术应用于在圆柱缸接触中以原位平面应力捕获。 该方法允许研究人员在磨损过程中定性可视化主应力差的分布。 另外,进行了磨损演化的数值模拟。 使用与快速傅里叶变换一起的共轭梯度方法来解决压力分布。 基于计算的压力,用Archard的磨损法解决了块磨损。 使用影响系数方法计算地下应力。 将磨损和应力的模拟结果与实验结果进行了比较; 结果之间的相似性和差异突出了数值方法的有用性和限制。 然而,光弹性技术与数值方法一起投射磨损性质。

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