An examination of magnetic property variation of specification-acceptable electrical steel

S. Sprague
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引用次数: 9

Abstract

The design, manufacture and testing of electrical machines involves a significant effort directed toward the optimization of a given machine for a specific end use. Central to this task is the characterization of the magnetic properties of the lamination steel to be used, providing the engineer with a baseline of material property data from which to develop an optimized machine design. Bringing an electrical machine to commercial production presents challenges beyond design optimization. Allowable variations in the properties of lamination materials demand an understanding of the potential variation in the performance of the machine that may be caused by material property fluctuation. This paper examines a narrow range of materials, non-oriented silicon steels, and discusses the range of potential magnetic property variations. Rather than opting for a “de-rating” of expected machine performance, an argument will be made for aligning material data to prevailing standards by drafting design-for-manufacture strategies that will accommodate these expected variations.
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规范合格电工钢磁性能变化的检验
电机的设计、制造和测试涉及到针对特定最终用途对给定机器进行优化的重大努力。这项任务的核心是表征将要使用的层压钢的磁性,为工程师提供材料性能数据的基线,以开发优化的机器设计。将电机引入商业生产提出了设计优化以外的挑战。层压材料性能的允许变化要求了解可能由材料性能波动引起的机器性能的潜在变化。本文考察了一个狭窄的材料范围,无取向硅钢,并讨论了潜在的磁性能变化的范围。与其选择对预期机器性能进行“降级”,不如通过起草适应这些预期变化的制造设计策略,使材料数据与现行标准保持一致。
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