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Magnetic Flux Controllers for Induction Heating Applications 被引量:3
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作者 Valentin Nemkov robert Goldstein robert ruffini 《材料热处理学报》 EI CAS CSCD 北大核心 2004年第5期567-572,共6页
Application of magnetic flux controllers/concentrators to induction heating coils can drastically improve the process efficiency and heat pattern control. Presentation includes: benefits provided by flux controllers, ... Application of magnetic flux controllers/concentrators to induction heating coils can drastically improve the process efficiency and heat pattern control. Presentation includes: benefits provided by flux controllers, materials available for controllers, application techniques, computer assisted design of induction coils with concentrators, examples of applications. Depending on induction system design, magnetic flux controllers can concentrate heating in a specified area, change heat source distribution and shield a particular part zone or external area preventing unintended eddy current heating. Besides of the coil efficiency improvement and optimal power distribution, magnetic flux controllers reduce the coil current demand from a supplying circuitry thus strongly reducing losses in busswork, cables, transformers and inverter components. Improvement that can be achieved due to magnetic flux controllers is case dependable. 2D and 3D computer simulation allows the designer to predict accurately effect of controllers on the coil parameters and temperature distribution and optimize the whole electromagnetic system. Special attention in presentation is paid to new magnetodielectric materials optimized for induction heating conditions. These materials have high magnetic permeability and saturation flux density, excellent machinability, good chemical and temperature resistance. Concentrators from these materials can work in a wide range of frequencies and specific powers. Examples of magnetic flux controller application include surface hardening of shafts and gears, induction surface hardfacing and brazing. 展开更多
关键词 热处理 感应器 磁通量 计算机模拟
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先进导磁体在感应热处理中的应用
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作者 robert ruffini 《金属加工(热加工)》 2014年第3期14-15,共2页
Fluxtrol 100的各向异性变小了,依赖切割方向变化的性能变小了,有更高的热传导性和力学性能.使用寿命会更长,出现问题的可能性更少。
关键词 感应热处理 导磁体 应用 力学性能 各向异性 使用寿命 热传导性 切割
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