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Numerical and experimental investigations of the electrodeposition process on open porous foams, determination of the parameter influence on the coating homogeneity

机译:电沉积过程对开放多孔泡沫的数值和实验研究,测定涂层均匀性的参数影响

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摘要

The limited quantity of raw materials leads to application-optimised materials, such as open-cell hybrid foams. A nanocrystalline nickel coating significantly enhances the crash absorber properties of aluminum and PU foams with only a small increase in weight. The coating is applied by an electrodeposition process. Due to mass transport limitations during the process, an inhomogeneous coating thickness is created resulting in inhomogeneous material properties. To avoid different coating thicknesses at different points of the foam, the electrodeposition process in the foam is modelled and simulated. The results of the simulation are compared with experimental data and the influence of different parameters on the coating homogeneity is investigated by means of simulation.
机译:有限数量的原料导致应用优化的材料,例如开放式细胞混合泡沫。 纳米晶镍涂层显着增强了铝和PU泡沫的碰撞吸收性能,其重量小。 通过电沉积工艺施加涂层。 由于在该过程中的质量传输限制,产生不均匀的涂层厚度,导致不均匀的材料性能。 为了避免在泡沫的不同点处的不同涂层厚度,泡沫中的电沉积工艺被建模和模拟。 将模拟结果与实验数据进行比较,并通过模拟研究了不同参数对涂层均匀性的影响。

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