TR

Transient Magnetic (3D)

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  1. [JFT036] Eccentricity Setting for Inclining the Rotation Axis

    This document shows setting to tilt the rotation axis.

    • [JFT021] Setting Magnet Material with Coercive Force Distribution and Residual Magnetic Flux Distribution Considering Temperature Dependence

      This document describes how to set a magnet material with coercive force and residual magnetic flux density taking into account temperature dependence.

    • [JFT035] Eccentricity Setting for Inclining the Motion Region Axis

      This document shows setting to tilt the motion region axis.

      • [JFT034] Eccentricity Setting for Parallelly Offsetting the Rotation Axis

        This document shows setting to move the rotation axis in parallel.

        • [JFT033] Eccentricity Setting for Parallelly Moving the Motion Region Initial Location

          This document shows how to set the eccentricity to account for the moving part’s axis remaining parallel to the central axis while moving from the initial position and afterwards.

          • [JAC284] Analysis of Minute Electromagnetic Forces Acting on a Magnet

            In this example, we obtain the minute electromagnetic forces acting on a magnet that is moving translationally.

          • Rolls-Royce Hungary Kft

            Electrical Machine Loss Simulation and Model Validation Using JMAG and MATLAB Simulink

            Zoltán Nádudvari, Rolls-Royce Hungary Kft

          • Development of Magnet Unit for the Endurance Test Equipment of Flexible Devices

            Tomonori Katsuta, Industrial Technology Center of Okayama Prefecture

          • Kanzaki Kokyukoki Mfg. Co.,Ltd.

            Examination of Motor Thermal Evaluation by Combining FEA and Thermal Equivalent Circuit

            Yusuke Nakamura, Kanzaki Kokyukoki Mfg. Co.,Ltd.

          • Efforts for Thermal Analysis of a Motor at JFE Techno-Research Corporation

            Shin-ya Tanaka, JFE Techno-Research Corporation

          • Nabtesco Corporation

            Motor Design Study Using Optimization and Thermal Simulation Functions

            Keigo Nakamura, Nabtesco Corporation

          • KOBE STEEL, LTD.

            Application of Thin Wire of Soft Magnetic Pure Iron to AC Solenoid

            Shota Iimura, KOBE STEEL, LTD.

          • Stray Loss Analysis of Large Power Transformer Using 3D Magnetic Field Analysis

            Masaki Sakuma, Fuji Electric Co., Ltd.

          • [RTML-041] PMSTEP_01

            Type: PMSTEP | Stator(Outside Diameter): 60.0(mm) | Height: 24(mm) | Voltage: DC24(V) | Rotor/Mover: PM

          • [RTML-046] ALTERNATOR_01

            Type: ALTERNATOR | Stator(Outside Diameter): 140(mm) | Height: 45(mm) | Voltage: DC200(V) | Rotor/Mover: WF

          • [JAC216] Simulation of a Claw-Pole Type Alternator Using a Control Simulator and JMAG-RT

            In this example, the output voltage and field current of a claw-pole type alternator is checked when the rotor speed is changed.

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