首页> 外文会议>ICALEO Congress >LASER REMOTE CUTTING AND SURFACE TREATMENT IN MANUFACTURING ELECTRICAL MACHINES - HIGH PRODUCTIVITY, FLEXIBILITY AND PERFECT MAGNETIC PERFOMANCE
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LASER REMOTE CUTTING AND SURFACE TREATMENT IN MANUFACTURING ELECTRICAL MACHINES - HIGH PRODUCTIVITY, FLEXIBILITY AND PERFECT MAGNETIC PERFOMANCE

机译:制造电机激光远程切割和表面处理 - 高生产率,灵活性和完美的磁力性能

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From industrial electrical machine production it is well known, that processing of non-oriented electrical steels causes changes in the lattice and microstructure that also affect the magnetic structure. While applying these manufacturing techniques (punching or laser fusion cutting), mechanical and thermal stresses are induced due to elastic and plastic deformation or temperature gradients within the material. For more than 15 years, fusion cutting with CO_2-lasers enabled a flexible and wear-free production but mostly for prototypes and small batches. Ten years ago, the development of fraction limited solid-state lasers started and thus enabled laser remote cutting. Nowadays, industry demands sheet thicknesses between 0.35 mm and 0.5 mm due to the fact of eddy current loss reduction. Concerning this context, best choice is laser remote cutting (LRC). Within this work, latest results are presented in terms of resulting cutting speed, cutting edge quality and magnetic properties. Cutting speed of LRC beats laser fusion cutting with keeping the high rate of flexibility. The magnetic material properties of laser remote cut laminates are identical or even better to conventional punched parts. Therefore, the manufacturer has been given the possibility to tweak his process towards perfect magnetic behavior or high output volume. All in all, it will be possible to produce high efficient electrical machines regarding the application demands of the costumer.
机译:从工业机械生产中众所周知,不定向电钢的加工导致晶格和微观结构的变化也影响磁性结构。在应用这些制造技术(冲压或激光融合切割)的同时,由于材料内的弹性和塑性变形或温度梯度,诱导机械和热应力。超过15年,使用CO_2-LASERS的融合切割使得灵活和无耐磨的生产,但主要用于原型和小批次。十年前,馏分有限的固态激光器的开发开始,从而使激光远程切割。如今,由于涡流损失减少的事实,行业要求板厚0.35毫米和0.5毫米。关于这种背景,最佳选择是激光远程切割(LRC)。在这项工作中,通过导致切割速度,切削刃质量和磁性性能来提出最新结果。 LRC的切割速度击败激光融合切割,保持高柔韧性。激光远程切割层压板的磁性材料特性与传统的冲孔部件相同甚至更好。因此,制造商已经有可能在完美的磁性行为或高输出量下调整他的过程。总而言之,可以生产关于客户需求的高效电机。

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