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Mechanical Characterization and Numerical Modelling of Rubber Shockpads in 3G Artificial Turf

机译:3G人造草皮中橡胶减震垫的力学特性和数值建模

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Third generation (3G) artificial turf systems use in sporting applications is increasingly prolific. These multi-component systems are comprised of a range of polymeric and elastomeric materials that exhibit non-linear and strain rate dependent behaviours under the complex loads applied from players and equipment. To further study and better understand the behaviours of these systems, the development of a numerical model to accurately predict individual layersa?? behaviour as well as the overall system response under different loading conditions is necessary. The purpose of this study was to characterise and model the mechanical behaviour of a rubber shockpad found in 3G artificial surfaces for vertical shock absorption using finite element analysis. A series of uniaxial compression tests were performed to characterise the mechanical behaviour of the shockpad. Compression loading was performed at 0.9 Hz to match human walking speeds. A Microfoam material model was selected from the PolyUMod library and optimised using MCalibration software before being imported into ABAQUS for analysis. A finite element model was created for the shockpad using ABAQUS and a compressive load applied to match that of the experimental data. Friction coefficients were altered to view the effect on the loading response. The accuracy of the model was compared using a series of comparative measures including the energy loss and root mean square error.
机译:在体育应用中使用的第三代(3G)人造草皮系统越来越多。这些多组分系统由一系列聚合材料和弹性材料组成,这些材料在播放器和设备施加的复杂载荷下表现出非线性和应变率相关的行为。为了进一步研究和更好地理解这些系统的行为,开发了一种精确预测单个层的数值模型。行为以及整个系统在不同负载条件下的响应都是必要的。这项研究的目的是使用有限元分析来表征和建模3G人造表面中用于垂直减震的橡胶减震垫的机械性能。进行了一系列单轴压缩测试以表征减震垫的机械性能。压缩负荷以0.9 Hz进行,以匹配人类的步行速度。从PolyUMod库中选择了微泡材料模型,并使用MCalibration软件对其进行了优化,然后将其导入ABAQUS进行分析。使用ABAQUS为减震垫创建了有限元模型,并施加了压缩载荷以匹配实验数据。更改摩擦系数以查看对载荷响应的影响。使用一系列比较措施(包括能量损失和均方根误差)比较了模型的准确性。

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