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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Effect of acoustic excitation on fiber-reinforced polypropylene and the influence on melt viscosity
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Effect of acoustic excitation on fiber-reinforced polypropylene and the influence on melt viscosity

机译:声激励对纤维增强聚丙烯的影响及其对熔体粘度的影响

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摘要

The paper describes a novel technological approach to influencing the rheological properties of thermoplastic materials exposed to acoustic energy. The flow behavior of polypropylene with different mass percentages of glass fibers is investigated in a parallel plate rheometer under high-frequency longitudinal excitation. The influence of oscillation frequency on the melt viscosity is explained by means of shear thinning criteria. The dependence of the oscillation shape using sinusoidal excitation on shear thinning as a function of different fiber reinforcement percentages is also investigated. A phenomenological view describes the mutually influencing parameters with regard to different material compositions and different excitation frequencies over the time course of the rheometric measurement. Interacting relationships are analyzed and discussed and the potential of the actuator system to influence the plastic melt is worked out. Based on this, a technological approach follows which describes the transfer of an oscillating mold surface to plastics processing methods, which, especially in the case of energy-intensive injection molding technology, leads to the expectation of possible resource efficiency in energy and material.
机译:本文描述了一种影响暴露于声能的热塑性材料流变性能的新技术方法。在平行板流变仪中研究了不同质量百分比玻璃纤维聚丙烯在高频纵向激励下的流动行为.振荡频率对熔体粘度的影响通过剪切稀化准则来解释。此外,还研究了使用正弦激励的振荡形状对剪切稀化作为不同纤维增强百分比函数的依赖性。唯象学观点描述了在流变测量过程中不同材料成分和不同激发频率的相互影响参数。分析和讨论了相互作用的关系,并研究了致动器系统影响塑料熔体的潜力。基于此,接下来是一种技术方法,描述了将摆动模具表面转移到塑料加工方法中,特别是在能源密集型注塑成型技术的情况下,这导致了对能源和材料可能资源效率的期望。

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