电钢带旋转切割工艺的潜力

M. Ziegler, M. Schneider, M. Hubert, J. Franke
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引用次数: 6

摘要

为了最大限度地减少涡流损耗,定子和转子传统上是叠层设计的。为了达到这个目的,单片被绝缘层相互隔开。转子和定子堆用电工钢片的生产分为切割、堆叠和连接三个步骤。目前,每个流程步骤都有几种可能性。选择合适的工艺取决于电工钢片的用途、数量和尺寸。在批量生产中,电工钢带的分离主要采用冲压工艺。在原型制造和小批量生产中,层压是用激光切割的。此外,在特定应用中还应用了线切割和水射流切割。电带钢的旋转切割是一种尚未在工业上应用的工艺。然而,这种新方法有很大的潜力,因为投资和加工成本相对较低。此外,该工艺适用于生产用于电动汽车牵引电机的薄层(小于0.3 mm)。
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Potentials of the Rotary Cutting Process for Electrical Steel Strip
To minimize eddy current losses, stators and rotors are traditionally designed laminated. For this purpose, the single sheets are electrically separated from each other by an insulation layer. The production of electrical steel laminations for rotor and stator stacks is divided into the steps of cutting, stacking and joining. Currently, there are several possibilities for each process step. The selection of the suitable process depends on the application, quantity and size of the electrical steel laminations. In mass production, the electrical steel strip is separated mainly by stamping. In prototype manufacturing and for small series, the lamination is cut out by laser. In addition, wire EDM and water-jet cutting are applied in specific applications. Rotary cutting of electrical steel strip is a process that is not yet used in industry. However, the novel approach has a great potential, since investment and tooling costs are relatively low. Furthermore, the process is suitable for the production of thin laminations (smaller than 0.3 mm) which are used in traction motors for electric vehicles.
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