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Novel specimen design to test engineering plastics for power electronic applications

机译:新型试样设计,用于测试电力电子应用工程塑料

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The paper presents the development of a novel test specimen design for engineering plastics, which allows stressing the insulating materials with electric field strength under various environmental conditions over an extended period of time. The specimen design enables simulating long-term behavior under electrical stress at simultaneously intensified external loading situations. Thus, it becomes possible to quantify engineering plastics for the given environmental conditions in use. The study contains a quality evaluation of the injection molded test specimen. Furthermore the influence of the electrode arrangement, distance and surface roughness on the homogeneity of the electrical field between the electrodes and the resulting breakthrough behavior of engineering plastics will be discussed. Beside design aspects, the microstructure of glass-fiber and glass-sphere reinforced thermoplastics, typically used as housing materials in power electronics, is correlated to their electrical behavior under the influence of humidity and temperature using the novel test specimen design. The results show how the microstructural composition of the plastics, such as type, amount and size of filler particles or micro defects like gaps between glass-fillers and the polymer matrix, influences the dielectric strength of engineering plastics.
机译:本文提出了一种用于工程塑料的新型试样设计的开发,其在延长的一段时间内,允许在各种环境条件下强调具有电场强度的绝缘材料。样本设计使得能够在同时强化外部加载情况下模拟电力应力下的长期行为。因此,可以在使用中量化用于给定的环境条件的工程塑料。该研究含有注塑试样的质量评价。此外,将讨论电极布置,距离和表面粗糙度对电极之间电场的均匀性的影响以及工程塑料的所得突破行为的均匀性。除了设计方面,玻璃纤维和玻璃球体增强热塑性塑料的微观结构通常用作电力电子器件的外壳材料,与使用新颖的试样设计的湿度和温度的影响下的电气行为相关。结果表明的塑料,例如类型,数量和填料颗粒或微缺陷等的玻璃填料和聚合物基体之间的间隙的尺寸微结构组合物如何,影响工程塑料的介电强度。

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