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Disc brake lining shape optimization by multibody dynamic analysis

机译:圆盘制动衬里形状通过多体动态分析优化

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Improving the performance characteristics of a typical disc brake encompasses a number of design strategies as well as limitations imposed by cost objectives. Utilizing pad loading uniformity in a design is one strategy that offers an improvement in desired performance characteristics, including a reduction in tapered lining wear as well as a possible reduced propensity for noise generation. To approach this design strategy, a procedure has been developed to tailor the brake pad lining profile to maximize pad loading uniformity in a multibody dynamics model of a typical disc brake. In determining an optimal lining configuration, a suitable compromise for gaining beneficial performance improvements in a cost-effective manner is reached. The implementation of this design strategy involves the parametric definition of the lining profile by introducing a series of variables that are linked to the profile markers. These variables can be used to conduct a sensitivity analysis, design of experiments, or an optimization to investigate factors that affect pad loading characteristics. Furthermore, this approach has the flexibility to allow for additional constraints, including pad wear and the ability to generate a lining profile for a desired pad loading distribution. An optimization was conducted to minimize pad load standard deviation, where the variables that define the lining profile are considered as design variables. The optimal profile results are contrasted with the baseline, showing a good percent reduction in pad force standard deviation under the given operating conditions for the inboard and outboard pads.
机译:提高典型光盘制动器的性能特征包括许多设计策略以及成本目标所施加的限制。利用设计中的焊盘装载均匀性是一种策略,其提供了提高所需的性能特性,包括减少锥形衬里磨损的降低以及可能降低的噪声产生倾向。为了接近这种设计策略,已经开发了一种过程来定制制动垫衬里轮廓以最大化典型盘式制动器的多体动力学模型中的垫装载均匀性。在确定最佳衬里配置时,达到用于以成本有效的方式获得有益性能改进的合适的折衷。这种设计策略的实现涉及通过引入链接到配置文件标记的一系列变量来参数定义介入型材。这些变量可用于进行敏感性分析,实验设计,或者优化,以调查影响焊盘装载特性的因素。此外,这种方法具有允许额外的约束的灵活性,包括垫磨损和产生所需焊盘装载分布的衬里轮廓的能力。进行了优化以最小化PAD负载标准偏差,其中定义衬里轮廓的变量被认为是设计变量。最佳轮廓结果与基线形成对比,显示在内侧和外侧焊盘的给定操作条件下焊盘力标准偏差的良好百分比。

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