Thermal

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  1. [JAC198] Bus Bar Thermal Stress Analysis

    Here, temperature distributions for bus bars are obtained when the power supply frequency is changed.

  2. [JAC186] Gear Induction Hardening Analysis Using Two Frequencies

    In this material, the validity of coil geometry used for quenching is evaluated by heating the gear top and bottom at high and low frequencies, respectively, to confirm uniform te…

  3. [JAC172] High-Frequency Induction Heating Analysis of a Test Piece (Rotational Induction Hardening)

    This Application Note explains how to create a numerical analysis model when obtaining the optimum coil geometry, current conditions (power supply frequency, current value), and r…

  4. Magnetic Field Analysis of Rectifiers

    Tomohisa Yamagishi, Fuji Electric Co.,Ltd.

  5. Investigations in Coil Design for Induction Heating Using JMAG and the Optimization Tool HEEDS

    Toshiaki Matsumura, AW ENGINEERING CO.,LTD.

  6. Design Exploration of Heating Coil Shape by Cooperation of JMAG and HEEDS

    Hiroshi Yuki, NTN corporation

  7. Shape Optimization of Induction Heating Coil by JMAG – Optimus Cooperation

    Ayaka Nakata, KOYO THERMO SYSTEMS CO.,LTD.

  8. Introduction and Application of JMAG on Induction Heating

    Tomohiro Adachi, DAI-ICHI KIDEN CO., LTD.

  9. Introduction of Coupled Analysis Case Giving New Added Value to Electromagnetic Field Analysis: – Electromagnetic Field – Fluid, Electromagnet…

    Hiroshi Kawakami, Prometech Software, Inc.

  10. Detailed Evaluation of High-frequency Transformers/Reactors

    Takayuki Nishio, JSOL Corp.

  11. Comparison of electromagnetic and thermal modelling with JMAG with electromagnetic and thermal equivalent circuit models and experimental test results

    Shinara UTEGENOVA, Airbus Helicopters

  12. The thermal field simulation analysis of the JMAG platform for the FAW Technology Center

    Zeng jingling, China FAW Group Corporation R&D Center

  13. Optimization calculation of JMAG and its application in proportional solenoid valve

    Zhou Wangjing, Wuxi Fuel Injection Equipment Research Institute, FAW, China

  14. Electromagnetic-thermal coupled multi-objective optimization on HPC systems for rotating electrical machines used in phev applications

    David Philipp Morisco, GS-EH/EDM1, Robert Bosch GmbH

  15. Multi-Physics Machine Design Optimization Based on Finite Element Analysis Using High-Throughput Computing

    Wenying Jiang, Department of Electrical Engineering, Nanjing University of Aeronautics and Astronautics

  16. Coupled Thermal/Structural/Magnetic Field Analysis Using JMAG

    Shinya Tanaka, Solution Division(Kawasaki) CAE Center Kurashiki Gr., JFE Techno-Research Corporation

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