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Evaluating the Suitability of Partial Recrystallization as a Strengthening Method for Thin-Gauge, High-Strength Non-Orientated Electrical Steel

机译:评价部分再结晶作为薄规格高强度无取向电工钢的强化方法的适用性

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摘要

The increasing need for electric/hybrid electric vehicles to compete with fossil fuel-powered cars has led to new requirements and designs of the electric motor. Non-grain oriented steel (NOES) is primarily used within the electric motor to form both stator and rotor sections (dependent on design) and has traditionally been developed to possess excellent isotropic magnetic properties with little or no consideration for strength. The drive toward more powerful or efficient electric motors has resulted in higher rotational speeds and increasing associated requirements for high-strength NOES. This paper looks at utilizing the well-known theory of partial recrystallization as a strengthening mechanism to determine if the strengthening effects and associated magnetic properties are acceptable for use within the rotor section. It was found that partial recrystallization can be utilized to tailor the microstructure of NOES to create higher strength NOES that withstands operating conditions and compares favorably to commercially available high-strength NOES grades, making it a viable option.
机译:对电动/混合动力汽车与化石燃料动力汽车竞争的日益增长的需求导致了对电动机的新要求和设计。非晶粒取向钢(NOES)主要用于电动机中以形成定子和转子部分(取决于设计),并且传统上已开发为具有优异的各向同性磁性能,而很少考虑或根本不考虑强度。朝向功率更大或效率更高的电动机的驱动已导致更高的转速并增加了对高强度NOES的相关要求。本文着眼于利用众所周知的部分再结晶理论作为强化机制,以确定强化效果和相关的磁性能是否可用于转子部分。已发现,可以利用部分重结晶来调整NOES的微观结构,以产生可承受操作条件的高强度NOES,并与市售的高强度NOES牌号相比,使其成为可行的选择。

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