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Diamond enriched lamination and winding insulation for electrical machines

机译:金刚石丰富的电机层压和绕组绝缘

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摘要

Purpose The thermal management of electrical insulations poses a challenge in electrical devices as electrical insulators are also thermal insulators. Diamond is the best solid electrical insulator and thermal conductor. This can lead to a paradigm change for electrical machine winding and lamination insulation design and thermal management. The paper introduces these techniques and discusses its effect for the design of electrical machines and its potential consequences for electromagnetic analysis, for example, in multi-physics modelling. The diamond winding insulation is patent-pending, but the diamond enriched lamination insulation is published for the benefit of the scientific community. Design/methodology/approach The windings of electrical machines are insulated to avoid contact between the coil and other conductive components, for example, the stator core. The principle of using mica tape and resin impregnation has not changed for a century and is well established to produce main insulation on a complex conductor shape and size. These insulations have poor heat-conducting properties. Similarly, the insulation of laminated steel sheets comprising the stator and rotor restrict heat flow. Diamond-based insulation provides a new path. Increased thermal conductivity means reduced temperature rise and the reduced thermal time constants in multi-physics simulations and system analysis. Findings The largest benefit of a diamond-based core insulation is in electrical machines in which the losses are conducted axially to the coolant. These are machines with radial ducts and effective cooling in the end regions. The main benefit will be in reducing the number of radial ducts that positively affect the size, production costs and the copper losses of the machine. The increased thermal conductivity of the diamond insulation system will reduce the thermal constants noticeably. These will affect system behavior and the corresponding simulation methods. Originality/value Diamond insulation can lead to a paradigm change for electrical machine winding and lamination insulation design and thermal management. It might also lead to new modeling requirements in system analysis.
机译:目的,电气绝缘的热管理在电气设备中造成挑战,因为电绝缘体也是热绝缘体。钻石是最好的固体电绝缘体和热导体。这可能导致电机绕组和层压绝缘设计和热管理的范式变化。本文介绍了这些技术,并探讨了电机设计的效果及其对电磁分析的潜在后果,例如,在多物理建模中。钻石绕线绝缘是专利申请,但钻石丰富的层压绝缘是为科学界的利益而发表的。设计/方法/方法电机的绕组绝缘以避免线圈和其他导电部件之间的接触,例如,定子芯。使用云母胶带和树脂浸渍的原理在一个世纪没有改变,并且建立了在复杂的导体形状和尺寸上产生主绝缘层。这些绝缘具有差的导热性能。类似地,包括定子和转子的层叠钢板的绝缘体限制热流。钻石的绝缘材料提供了一条新路径。导热率提高意味着降低升温和多物理模拟中的减少的热时间常数和系统分析。发现钻石的核心绝缘的最大益处是在电机中,其中损耗轴向地传导到冷却剂。这些是具有径向管道的机器,在端区中有效冷却。主要福利将减少积极影响尺寸,生产成本和机器铜损失的径向管道的数量。金刚石绝缘系统的导热系数增加将明显减少热常数。这些将影响系统行为和相应的仿真方法。原创性/值钻石绝缘可导致电机绕组和层压绝缘设计和热管理的范式变化。它还可能导致系统分析中的新建模要求。

著录项

  • 来源
    《Compel》 |2019年第4期|1245-1252|共8页
  • 作者单位

    ABB Oy Motors & Generators Technol Ctr Helsinki Finland|Pecsi Tudomanyegyet Muszaki Informatikai Kar Pecs Hungary;

    ABB Oy Motors & Generators Helsinki Finland;

    ABB Oy Motors & Generators Technol Ctr Helsinki Finland;

    ABB Oy Motors & Generators Technol Ctr Helsinki Finland;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Insulation; Electrical machine; Diamond; Multi-physics; System analysis;

    机译:绝缘;电机;钻石;多物理;系统分析;

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