Jeong-Woo Shin
Korea Aerospace Research Institute
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Featured researches published by Jeong-Woo Shin.
Transactions of The Korean Society of Mechanical Engineers A | 2010
Jeong-Woo Shin; Tae-Uk Kim; In-Hee Hwang; Jeong-Jun Jo; Jeong-Sun Lee; Chong-Yeong Park
To improve occupants` safety in an emergency, crashworthy design is necessary to rotorcraft design and development. Especially, landing gear has the important role for crashworthy design because landing gear absorbs relatively large energy for the crash landing. In addition, military specifications require failure of landing gear shall not increase danger to any occupants by penetration of the airframe. To meet the specification requirements, crashworthiness device like failure mechanism should be prepared so that landing gear is collapsed safely and doesn`t penetrate the airframe. In this study, design and design development test of the failure mechanism which is necessary for the rotorcraft landing gear was performed. First, collapse scenario was determined for the landing gear not to penetrate the airframe. Then, the failure pin which is the most important part of the failure mechanism was designed with 2 strength range in order to meet design criteria. Finally, design of the failure mechanism was verified successfully by design development test.
Transactions of The Korean Society of Mechanical Engineers A | 2012
Sang-Wook Lee; Seunggyu Lee; Jeong-Woo Shin; Tae-Uk Kim; Sung-Chan Kim; In-Hee Hwang; Je-Dong Lee
S-N . 피로설계 요구조건 충족 여부를 최종 검증한다 본 논문에서는 항공기 착륙장치의 피로수명 해석 및 . 시험절차를 실제 적용 사례를 통해 제시하였다. Abstract: For the fatigue design of aircraft landing gear, the safe-life approach is applied. Structural defects such as cracks or detrimental deformations should not occur under the fatigue load spectrum depicting the entire lifetime usage of the aircraft. In the design phase, the fatigue life of the landing gear is estimated analytically by adopting the stress-based approach because the fatigue of aircraft landing gear is generally high-cycle fatigue. This utilizes S-N curves that are factored to produce design curves that account for the scatter and surface finish of the material. In the test and evaluation phases, a fatigue test should be conducted for full-scale landing gear to substantiate the fatigue design requirement in the end. In this study, the procedure for the fatigue test and evaluation of aircraft landing gear is presented with real application cases.
Journal of The Korean Society for Aeronautical & Space Sciences | 2012
Tae-Uk Kim; Sang-Wook Lee; Jeong-Woo Shin; Seung-Kyu Lee; Sung-Chan Kim; In-Hee Hwang; Jeong-Jun Jo; Je-Dong Lee
The main function of a landing gear is to absorb the impact energy during touchdown. It it occasionally required for landing gear to have crashworthiness for improving survivability and safety in case of emergency landing. This paper introduces the design concept, performance analysis and drop test procedures for the development of the crashworthy landing gear. The shock absorbing ability and the crash behavior are proved by analyzing various sensor data and video clips from high speed camera recording during drop tests.
Journal of The Korean Society for Aeronautical & Space Sciences | 2010
Tae-Uk Kim; Sang-Wook Lee; Jeong-Woo Shin; Seung-Kyu Lee; Sung-Chan Kim; In-Hee Hwang; Shin-Hyun Kang
The main function of a landing gear is to absorb the impact energy during touchdown. Most landing gear use an oleo-pneumatic shock absorber which essentially consists of an oil damper and a gas spring. The performance of a shock absorber can be estimated by analysis but it should be verified by drop test, which is required by MIL Spec. and FAR. In the drop test, various data such as ground loads, shock absorber pressure, stroke and mass travel are analyzed to validate the shock absorbing efficiency and the mathematical model for analysis. This paper presents the introduction of drop test facility, the test procedure and data evaluation method with real drop test example.
Journal of the Korean Society for Aviation and Aeronautics | 2015
Sang Wook Park; Jeong-Woo Shin; Mu-Hyoung Lee; Tae-Uk Kim
Journal of the Korean Society for Aviation and Aeronautics | 2016
Hyungi Kim; Sung-Joon Kim; Sung Chan Kim; Jeong-Woo Shin; Seunggyu Lee; Sang Wook Park; Tae-Uk Kim
Transactions of The Korean Society of Mechanical Engineers A | 2017
Sang-Wook Lee; Sang-Wook Park; Jeong-Woo Shin
ASCE-ASME Journal of Risk and Uncertainty in Engineering Systems, Part B: Mechanical Engineering | 2017
Tae-Uk Kim; Jeong-Woo Shin; Sang Wook Lee
Journal of the Korean Society for Aviation and Aeronautics | 2015
Seunggyu Lee; Jeong-Woo Shin; Tae-Uk Kim
Composites Research | 2009
Jin-Bong Kim; Moon-Kwang Um; Sang-Yong Lee; Tae-Uk Kim; Jeong-Woo Shin