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Investigation of 2D Nano-Structured Winding Insulation for High Torque Density Medium-Voltage Motor

机译:高扭矩密度中电压电动机2D纳米结构绕组绝缘的研究

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Since the introduction of mica paper and synthetic resin-based taping insulation for rotating-machines in 1950s, only evolutional improvements in their properties and processing have been made. Due to its challenging nature, much of recent insulation research has been focused on the aspect of reliability rather than performance enhancement. This paper presents the development and performance evaluation of a revolutionary nanostructured insulation in the manufacturing of large propulsion motors with game-changing torque density and payload efficiency for marine Next Generation Integrated Power System. It is demonstrated that nanostructured insulation based on 2D-platelet fillers could offer significant improvement over conventional insulation system in electrical, dielectric, thermal and mechanical properties. Optimal nanostructured insulation formation identified through a Design of Experiment study exhibits high thermal conductivity of $>0.8$ W/( $ext{m}cdot ext{K}$ ), high breakdown strength of >40 kV/mm, low dielectric constant of less than 5.5 and low dielectric loss factor of less than 2.5% at 155°C. Voltage endurance tests on coupons with optimal formulation, in accordance with IEC 60343 standard, demonstrate satisfactory endurance life. Furthermore, a multi-physics finite-element-analysis model of the winding in a medium-voltage electric motor is established to perform electromagnetic and thermal analyses in ANSYS under various temperature boundary conditions. The study indicates a remarkable increase of 14% in torque handling capacity of a motor wound with proposed nanostructured insulation material when compared to an identical motor wound with conventional micaceous insulation.
机译:自20世纪50年代引入云母纸和基于合成树脂的扶手绝缘材料,因此已经进行了其性能和加工的进化改进。由于其具有挑战性的性质,最近的大部分绝缘研究都集中在可靠性的方面而不是性能提升。本文介绍了革命性纳米结构绝缘在制造大型推进电动机中的开发和性能评价,具有变化的扭矩密度和船用下一代集成电力系统的有效载荷效率。据证明,基于2D-血小板填料的纳米结构绝缘可以在电气,电介质,热和机械性能下对传统绝缘系统进行显着改善。通过设计实验研究确定的最佳纳米结构绝缘形成表现出<内联公式XMLNS:MML =“http://www.w3.org/1998/math/mathml”xmlns:xlink =“http:// www.w3.org/1999/xlink“> $> $> 0.8 $ w /(<内联惯例xmlns:mml =”http ://www.w3.org/1998/math/mathml“xmlns:xlink =”http://www.w3.org/1999/xlink“> $ text {m } cdot 文本{k} $ ),高击穿强度> 40 kV / mm,低介电常数小于5.5,低介电损耗因子小于2.5%在155°C时。根据IEC 60343标准,高效配方的耐压试验,展示了令人满意的耐力寿命。此外,建立了中压电动机中绕组的多物理有限元分析模型,以在各种温度边界条件下在ANSYS中进行电磁和热分析。该研究表明,与具有常规云母绝缘的相同的电动机相比,具有所提出的纳米结构绝缘材料的电动机卷绕的扭矩处理能力的显着增加14%。

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