首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers. Part L, Journal of Materials: Design and Application >Multiaxial fatigue prediction on crack initiation for rubber antivibration design - Location and orientation with stress ranges
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Multiaxial fatigue prediction on crack initiation for rubber antivibration design - Location and orientation with stress ranges

机译:橡胶防振设计裂纹启动的多轴疲劳预测 - 压力范围的位置和方向

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摘要

In antivibration applications, it is essential that the given rubber product has a suitable service period; therefore, an accurate fatigue assessment during design is key. In this study, the effective stress approach was applied to two industrial products: a drum mount for road engineering and a Metacone spring for rail vehicles. This method employed a three-dimensional tensor that took all principal stress ranges into consideration, without underestimating fatigue damage, in a multi-axial stress state. As both the magnitude and direction of the effective stress were obtained based on analytical functions, there was no need to use the expensive critical plane search method to detect the plane of failure. The calculated angles (67.5 degrees and -63.2 degrees from the horizontal plane, respectively) were validated against the observed fatigue cracks. Engineers would be able to accelerate their design processes by using the approach presented in the current study, due mainly to three aspects: visualising all of the whole product's hot spots, circumventing an expensive critical plane search, and presenting the effective stress ranges. As the proposed effective stress approach was validated in only two specific industrial cases, an investigation into further engineering applications is still needed to lend this concept greater support.
机译:在防真应用中,给定的橡胶产品必须具有合适的服务期间;因此,设计期间的准确疲劳评估是关键。在这项研究中,有效的应力方法适用于两个工业产品:用于道路工程的鼓座和用于轨道车辆的代码簧。该方法采用三维张量,以考虑到所有主应力范围,而不会在多轴向应力状态下低估疲劳损坏。由于基于分析函数获得有效应力的幅度和方向,因此不需要使用昂贵的关键平面搜索方法来检测故障平面。对观察到的疲劳裂缝验证了计算的角度(分别从水平平面67.5度和-63.2度。工程师能够通过使用当前研究中提出的方法来加速他们的设计过程,主要是三个方面:可视化所有整个产品的热点,避免昂贵的关键平面搜索,并呈现有效的应力范围。由于拟议的有效应力方法仅在两个特定的工业案例中验证,仍然需要调查进一步的工程申请,以借此概念更大的支持。

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