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"Hyun Woo Lee"

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"Hyun Woo Lee"

Articles
Effect of Thermal Conductivity of Coil Insulator Material on the Temperature Variation of High Voltage Motor
Jaehyun Park, Seung Ho Paek, Hyun Woo Lee, Heesung Park
J. Korean Soc. Precis. Eng. 2020;37(5):355-360.
Published online May 1, 2020
DOI: https://doi.org/10.7736/JKSPE.019.119
It has been an on-going issue to develop a high voltage motor with high capacity and reliability. In this study, we investigated the effective coil insulator materials in terms of thermal conductivity. To quantify the contribution of the coil insulator material, two different motors with and without the cooling structure were numerically studied. Based on the measured thermal conductivity of six different coil insulators, we have achieved the effectiveness of thermal conductivity. Consequently, the high voltage motor can be developed with the proposed effectiveness of thermal conductivity regarding coil insulator materials. Our study of fundamental material characteristics will be beneficial in enhancing thermal management technology of a high voltage motor.

Citations

Citations to this article as recorded by  Crossref logo
  • Improved thermal conductivity of anticorona insulation paint for high-voltage motor application
    Xia Zhao, Hui Zhang, Yongxin Sun, Tiandong Zhang
    Journal of Materials Science: Materials in Electronics.2023;[Epub]     CrossRef
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Study on D.D.I. Load for Forming of the CNG Storage Vessel
Hyun Woo Lee, Jun Ho Bae, Chul Kim
J. Korean Soc. Precis. Eng. 2013;30(6):629-637.
Published online June 1, 2013
In this study, a theoretical analysis method was suggested for predicting forming loads of continuous deep drawing and ironing processes (D.D.I. processes) by considering back tension and continuity equation, and FEA for D.D.I. processes was performed. Dimensions of a punch and a mold on the basis of design rules for a CNG storage vessel were applied for the analysis. To verify the suggested theoretical analysis, the results of theoretical analysis were compared with both those of FEA and experiments of previous studies. As the result of analysis, the values and tendencies of the loads predicted by the theoretical analysis were in agreement with those of FEA and the experiments. So, it is considered that the analysis suggested has reliability for predicting the forming loads of the continuous processes(deep drawing+ironing(1)+ironing(2)).
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Development of Rotor for Internal Gear Pump using Cycloid and Polycircular-arc Curves
Min Soo Kim, Hyun Woo Lee, Sung Yuen Jung, Chul Kim
J. Korean Soc. Precis. Eng. 2002;19(9):1003-1011.
Published online September 1, 2012
A new type of gerotor developed in this paper has the inner rotor designed by inserting a polycircular-arc between the hypocycloid and epicycloid curves, and we also suggest that the outer rotor be designed using the closed-form equation for the inner rotor and a method of modification. Thus, it is possible to design a gerotor for which there is no cusp and loop, as in this case undercut is prevented. We developed automated program for rotor design and calculation of the flow rate and flow rate irregularity. And we also demonstrate the superior performance of the gerotor developed in this study by analyzing the internal fluid flow using a commercial computation fluid dynamics-code (CFD).
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Optimal Design for CNG Composite Vessel Using Coupled Model with Liner and Composite Layer
Jun Ho Bae, Hyun Woo Lee, Moon-Saeng Kim, Chul Kim
J. Korean Soc. Precis. Eng. 2002;19(9):1012-1019.
Published online September 1, 2012
In this study, CNG composite vessel is analyzed by using coupled model with liner and composite layer. For the coupled model, a method using theoretical analysis and FEA is suggested: elastic solution for laminated tube is used for theoretical analysis of the composite vessel, FEA is performed to the model of CNG composite vessel in actual conditions. On the basis of these results, optimal thickness and winding angle of the composite layer considering the material properties and thickness of the liner are determined. The results of theoretical analysis and FEA are compared with those carried out in previous studies for verifying the suggested analysis method.
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Structural Safety Analysis and Reinforcement for Weak Area of the Coal Silo Tunnel using Finite Elements Analysis
Hyun Woo Lee, Sung Yuen Jung, Se Arm Song, Min Soo Kim, Jin Hyung Kim, Chul Kim
J. Korean Soc. Precis. Eng. 2012;29(4):461-468.
Published online April 1, 2012
Silo is a warehouse for storing granular materials such as grain, cement, petroleum compound and coal. When compared to other warehouses, the silo can use space efficiently. The coal silo are consists of silo, tunnel and extractor. Of these, there are not sufficient study and design data on tunnel. It depends heavily upon trial and error method by field engineers with several years of experience. Recently, silos are constructed with a large size, and tunnel becomes to be in danger of severe cracking and collapse by a huge load of coal. So it is necessary to analyze structural safety for tunnel. In this study, the problems of the tunnel are analyzed by field data, and reinforcement of structural weak area using FE analysis has been carried out to design the tunnel satisfying structural safety. From FE Analysis, the reinforced model which does not exceed the yield strength of the material has been proposed.
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Process Planning for Insert Metal of Weather Strip Using High Speed Rolling-Type
Ji Su Park, Hyun Woo Lee, Sung Yuen Jung, Jun Ho Bae, Hwa Young Kim, Chul Kim
J. Korean Soc. Precis. Eng. 2011;28(11):1279-1287.
Published online November 1, 2011
Weather strip is a functional component of a car body and doors for leaking protection, isolating outside noise and vibration reduction. Insert metal inserted to the weather strip plays a key role to keep the shape of the weather strip and increase its strength. Insert metal is mainly produced by a press process, which has low productivity and 40% material loss due to the scraps. To solve the problems, a high-speed rolling process for manufacturing the insert metal of weather strip is being attempted. In this study, the insert metal is manufactured by a high-speed rolling process, and its process variables: reduction, relative velocity of rollers and the number of passes, are optimized by using the FEA and the actual tests. The prototype was manufactured by the optimal process.
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Shape Optimal Design of an Automotive Pedal Arm Using the Taguchi Method
Boo Youn Lee, Hyun Woo Lee
J. Korean Soc. Precis. Eng. 2007;24(3):76-83.
Published online March 1, 2007
The Taguchi method is applied to obtain the optimal design of an automotive pedal arm in consideration of the stiffness test specification. Design parameters are defined to describe shape of the pedal arm. Volume, maximum Von-Mises stress and maximum displacement of the pedal arm are established as the smaller-the-better characteristics. Optimal parameters are determined on the basis of the analyzed level averages of the characteristics.
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A Study on Determination of the Area Function of Nano Indenter Tip with AFM
Sung Jo Park, Hyun Woo Lee, Seung Woo Han
J. Korean Soc. Precis. Eng. 2004;21(6):145-152.
Published online June 1, 2004
Depth-sensing indentation is widely used for evaluation of mechanical properties of thin films. It is generally accepted that the most significant source of uncertainty in nanoindentation measurement is the geometry of the indenter tip. Therefore the successful application of the technique requires accurate calibration of the indenter tip geometry. The direct measurement of geometry of a Berkovich indenter was determined using a atomic force microscope. The indentation geometrical calibration of contact area was performed by analyzing the indenter tip profile. The equations of area functions were proposed for nanoscale thin films.
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A Study on the Micro Tool Fabrication using Electrolytic In-process Dressing
Hyun Woo Lee, Hon Zong Choi, Seok Woo Lee, Jae Young Choi, Hae Do Jeong
J. Korean Soc. Precis. Eng. 2002;19(12):171-178.
Published online December 1, 2002
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Study on the Fatigue Limit at Random Contact Loading
Young Gu Ok, Deuk Man An, Yong Ju Cho, Hyun Woo Lee
J. Korean Soc. Precis. Eng. 2002;19(8):84-91.
Published online August 1, 2002
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A Study on The Burr Minimization by The Chemical Mechanical Micro Machining( C3M)
Hyun woo Lee, Jun Min Park, Sang Cheol Jeong, Hae Do Jeong, Eung Sug Lee
J. Korean Soc. Precis. Eng. 2001;18(12):177-184.
Published online December 1, 2001
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A Study of Crack Growth Behavior of Al2024
Won Seok Lee, Hyun Woo Lee
J. Korean Soc. Precis. Eng. 2000;17(10):49-55.
Published online October 1, 2000
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Effect of Crack Closure on the Fatigue Crack Growth Behavior of Forged A17050-T7452
Won Suk Lee, Jong Yoon Choi, Hyun Woo Lee
J. Korean Soc. Precis. Eng. 1997;14(7):82-90.
Published online July 1, 1997
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Fatigue Life Estimation Using the Multi-Axial Multi-Point Load Counting Method under Variable Amplitude Loading
Won Suk Lee, Hyun Woo Lee
J. Korean Soc. Precis. Eng. 1997;14(6):22-27.
Published online June 1, 1997
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A Study on the Damage Process of Fatigue Crack Growth Using the Stochastic Model
Won Suk Lee, Kyu Seoung Cho, Hyun Woo Lee
J. Korean Soc. Precis. Eng. 1996;13(10):130-138.
Published online October 1, 1996
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