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DETERMINATION OF THE ELONGATIONAL PROPERTIES OF POLYMERS USING A MIXED NUMERICAL-EXPERIMENTAL METHOD

机译:用混合数实验法测定聚合物的伸长性能

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The biaxial properties of materials such as rubbers or polymers are often difficult to identify, and generally a simple isotropic behaviour derived from classical ID tensile test is considered. However, biaxial properties are useful for the simulation of plastic-processing operations such as blow moulding [I] or thermoforming. As previously reported, the rheological behaviour and the mechanical properties of rubbers and polymers can be obtained by using a bubble inflation rheometer [2-4], or multi-axial tensile test [5]. In this work, experimental data provided by optical measurements on tensile tests and bubble inflation tests are coupled with Finite Element Method simulations for identifying the rheological behaviour. This work is actually based on natural rubber and will be extend to thermoplastic (PP and PET) materials.
机译:诸如橡胶或聚合物的材料的双轴性质通常难以识别,并且通常考虑衍生自经典ID拉伸试验的简单各向同性行为。然而,双轴性质对于模拟塑料处理操作是有用的,例如吹塑[I]或热成型。如前所述,通过使用气泡膨胀流变仪[2-4]或多轴拉伸试验[5],可以获得橡胶和聚合物的流变行为和机械性能[5]。在这项工作中,通过光学测量来提供的拉伸试验和气泡膨胀试验提供的实验数据与用于识别流变行为的有限元方法模拟。这项工作实际上基于天然橡胶,并将延伸到热塑性(PP和PET)材料。

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