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Thermally resistant unsaturated polyester resin with low dielectric loss based on special benzyl alcohol terminated hyperbranched polysiloxane for producing high efficiency motors using vacuum pressure impregnation technique

机译:基于特殊苄醇的低介电损耗的导热不饱和聚酯树脂终止的高溴化聚硅氧烷,使用真空压力浸渍技术生产高效电机

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Motors with higher efficiency and smaller size are the premise for producing higher performance electrical products and achieving an energy-saving world, so the motors should be fabricated with Vacuum Pressure Impregnation (VPI) technique and the matrices for the motors should be high performance resins that have higher thermal resistance and lower dielectric loss. However, available resins for common motors do not simultaneously have VPI processing characteristics, high thermal resistance and low dielectric loss. Herein, based on unsaturated polyester (UP), the common VPI resin for which the thermally resistant level is as low as F level (155 °C), a unique high performance resin is developed by co-polymerizing UP resin with a novel benzyl alcohol terminated hyperbranched polysiloxane (Vi-HPSi). The structure and integrated performances of Vi-HPSi/UP resins were intensively studied. Results show that Vi-HPSi/UP resin not only meets the strict processing requirements of VPI technique, but also has better curing features, thus endowing Vi-HPSi/UP resins with higher crosslinking density and reduced free volume than the UP resin. In addition, compared with the UP resin, Vi-HPSi/UP resins have much better toughness and bond strength, greatly improved thermal stability, and reduced dielectric loss. Typically, for the Vi-HPSi/UP resin with 20 wt% Vi-HPSi (20Vi-HPSi/UP), its initial degradation temperature is as high as 331 °C, about 80 °C higher than that of the UP resin, and this is also the highest value among modified UP resins reported; while the dielectric loss of 20Vi-HPSi/UP is about 0.62 times of that of the UP resin. These attractive performances demonstrate that the Vi-HPSi/UP resin has great potential for fabricating new generation motors with higher efficiency for cutting-edge applications.
机译:效率高,尺寸较高的电机是生产更高的性能电气产品的前提,实现节能的世界,因此电机应用真空压力浸渍(VPI)技术制造,电动机的基质应该是高性能树脂具有更高的耐热性和较低的介电损耗。然而,用于公共电机的可用树脂不同时具有VPI处理特性,高耐热性和低介电损耗。在此,基于不饱和聚酯(上),通过用新的苄醇共聚树脂共聚树脂,开发了常见的抗体水平低于F水平(155℃)的常见VPI树脂,其具有独特的高性能树脂。终止的超支化聚硅氧烷(VI-HPSI)。 Chrience地研究了VI-HPSI / UP树脂的结构和综合性能。结果表明,VI-HPSI / UP树脂不仅满足VPI技术的严格加工要求,还具有更好的固化特征,从而赋予了具有较高交联密度的VI-HPSI / UP树脂并减少了比上树脂的自由体积减少。另外,与上树脂相比,VI-HPSI / UP树脂具有更好的韧性和粘合强度,极大地提高了热稳定性,降低了介电损耗。通常,对于具有20wt%VI-HPSI(20VI-HPSI / UP)的VI-HPSI / UP树脂,其初始降解温度高达331℃,约80℃高于上瓣树脂,以及这也是报告的改性树脂中的最高值;虽然20VI-HPSI / Up的介电损耗约为上树脂的0.62倍。这些有吸引力的表演表明,VI-HPSI /上部树脂具有较高的尖端应用效率的制造新一代电机的潜力。

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