首页> 外文会议>Third European Conference on Constitutive Models for Rubber Sep 15-17, 2003 London, UK >Dynamic analysis of rubber to metal devices using an unconventional numerical modelling for elastomers
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Dynamic analysis of rubber to metal devices using an unconventional numerical modelling for elastomers

机译:使用非常规弹性体数值模型对橡胶到金属设备进行动态分析

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This contribution deals with a code of automatic calculus developed to simulate the dynamic behavior of rubber-to-metal devices and more general systems made up of non-linear viscoelastic materials which are at the same lime sensitive to temperature, frequency and static pic-strain (or pic-loud) such as elastomers. Those systems are modeled by concentrated parameters models applying which they are reduced to mechanical vibrating systems with a certain number of degrees of freedom; their dynamics is analyzed in the frequency domain introducing an innovative approach to define the constitutive equations. Data coming from experimentation on standard elastomeric test, pieces constitute a cloud of non ordered points in a multidimensional domain; these are treated by a back-propagation neural network in real time to point out stiffness (complex) values to calibrate the mechanical properties of the concentrated parameters systems resulting from modelling.
机译:该贡献涉及自动演算的代码,该演算被开发为模拟橡胶到金属设备的动态行为,以及由非线性粘弹性材料组成的更通用的系统,它们对温度,频率和静态pic-应变敏感(或微声),例如弹性体。这些系统通过集中参数模型进行建模,并将其简化为具有一定自由度的机械振动系统。在频域中对它们的动力学进行了分析,引入了一种创新的方法来定义本构方程。来自标准弹性体测试的数据来自零件,这些零件构成了多维域中无序点的云;这些由反向传播神经网络实时处理,以指出刚度(复数)值,以校准由建模产生的集中参数系统的机械性能。

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