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THE COMPONENT MODE TUNING (CMT) METHOD, A STRATEGY ADAPTED TO THE DESIGN OF ASSEMBLIES APPLIED TO INDUSTRIAL BRAKE SQUEAL

机译:组件模式调谐(CMT)方法,一种适用于工业制动器尖叫的组件设计的策略

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Numerical prototyping is widely used in industrial design processes, allowing optimization and limiting validation costs through experimental testing. Industrial applications nowadays focus on the simulation of complex component assemblies that are generally mass produced. Coupling properties thus have to be modelled, updated and accounted for variability. For squeal applications, simulations still fail at robustly producing exploitable results due to the systems complexity, while experimentations are limited for diagnostic and design improvement. This paper presents a new application of the Component Mode Tuning, an efficient model reduction method adapted to quick system level reanalysis as function of component free modes, to study the effect of coupling. The impact of component coupling stiffness and coupling surface topology is thus assessed on a drum brake subassembly which design is sensitive to squeal. It is shown that significant system differences can come from coupling surface variations with patterns close to experimental observations. This emphases the need for refined analyses to control coupling in the perspective of robust modelling.
机译:数值原型广泛用于工业设计过程中,通过实验测试,允许优化和限制验证成本。现在,工业应用专注于仿真普遍生产的复杂部件组件。因此,必须进行建模,更新和占可变性的耦合特性。对于尖叫力应用,由于系统复杂性,模拟仍然不稳定地产生可利用的结果,而实验则限于诊断和设计改进。本文介绍了组件模式调谐的新应用,一种高效的模型减少方法,适用于快速系统级再分析作为组件自由模式的功能,研究耦合的效果。因此,在滚筒制动子组件上评估组件耦合刚度和耦合表面拓扑的影响,该组件对尖叫的设计敏感。结果表明,显着的系统差异可以来自耦合表面变化,图案与实验观察接近的图案。这重点是在鲁棒建模的角度下对控制耦合来控制耦合的需求。

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