박사

충격 저감 파이로테크닉 분리 너트의 거동 특성 분석 = Behavior Analysis of Pyroshock-Reduced Separation Nut

우정민 2020년
논문상세정보
' 충격 저감 파이로테크닉 분리 너트의 거동 특성 분석 = Behavior Analysis of Pyroshock-Reduced Separation Nut' 의 주제별 논문영향력
논문영향력 선정 방법
논문영향력 요약
주제
  • Lumped Parameter Method
  • Parametric Study
  • Pyrotechnic Separation Nut
  • Segmented Nuts
  • finite-elementanalysis
  • 럼프드 파라미터 기법
  • 매개변수 연구
  • 분할 너트
  • 유한요소 해석
  • 파이로테크닉 분리 너트
동일주제 총논문수 논문피인용 총횟수 주제별 논문영향력의 평균
817 0

0.0%

' 충격 저감 파이로테크닉 분리 너트의 거동 특성 분석 = Behavior Analysis of Pyroshock-Reduced Separation Nut' 의 참고문헌

  • 유도무기 및 우주항공분야에 사용되는 저 충격 파이로 분리장치
    Kim, Z. Lee, Y.-J. Ryu, B.-T. ” The Korean Society for Noise and Vibration Engineering, Vol. 27, No. 1, , pp. 7-11 [2017]
  • [8] Forys, C., and Jeanneau, O., U.S. Patent Application for a “Pyroalliance,” Application No. US09801713, filed 09 Mar. 2001.
  • [49] Kim, D.-S., Yoo, M.-Y., Kim, H.-S., and Choi, J.-H., “Reliability Prediction of Failure Modes due to Pressure in Solid Rocket Case,” Journal of the Computational Structural Engineering Institute of Korea, Vol. 27, No. 6, 2014, pp. 635-642.
  • [44] Hohmann, C., Tipton, B. Jr., Dutton, M., “Propellant for the NASA Standard Initiator,” NASA/TP-2000-210186, Oct 2000.
  • [42] Mills, A. F., Heat Transfer, Richard D. Irwin, Homewood, 1992, p. 270.
    p. 270 [1992]
  • [35] Stainless Steel AL 17-4™ Precipitation Hardening Alloy (UNS Designation S17400). (2006). Retrieved June 11, 2013, from Allegheny Ludlum: http://www.specialtysteelsupply.com/brochure/17-4-technical-data.pdf
  • [34] Stainless Steel - Grade 17-4 (UNS S17400). (2012). Retrieved June 11, 2013, from AZO Materials: http://www.azom.com/article.aspx?ArticleID=6778
  • [30] ISO 286, Geometrical Product Specifications (GPS) - ISO Code System for Tolerances on Linear Sizes, 2010.
  • [26] Jang, S.-G., Lee, H.-N., Oh, J.-Y., Oh, S.-J., “Design and Output Characteristic Analysis of Electro-Mechanical Ignition Safety Device,” Journal of the Korean Society for Aeronautical and Space Sciences, Vol. 39, No. 12, 2011, pp. 1166-1173.
  • [25] Cha, S.-W., Woo, J., Kim, Y.-C., Oh, S.-H., Cho, J. Y., Kim, J. H., Jang, S.-G., Yang, H. W., and Roh, T.-S., “Combustion Modeling of Explosive for Pyrotechnic Initiator,” Journal of the Korean Society of Propulsion Engineers, Vol. 21, No. 6, 2017, pp. 39-48.
  • [22] Nassar, S. A., and Housari, B. A., “Effect of Thread Pitch and Initial Tension on the Self-Loosening of Threaded Fasteners,” Journal of Pressure Vessel Technology, Vol. 128, No. 4, 2005, pp. 590-598.
  • [1] Brauer, K. O., Handbook of Pyrotechnics, Chemical Publishing Company, New York, 1974, Introduction, Chap. 6.
  • Tolerance Processing in STEPCase Study
    pp . 485-486 . [2010]
  • System Modeling of Explosively Actuated Valves
    Vol . 23 , No . 5 , [2007]
  • Shigley ’ s Mechanical Engineering Design , 9th ed. , McGraw-Hill
    Chap . 6 . [2011]
  • Sensitivity Analysis for a Pyrotechnically Actuated Pin Puller Model
    pp . 240-254 . [1994]
  • S.-G. , and Yang , H. W. , “ Effect ofClearance on
    The Korean Society for Aeronautical and Space Sciences
  • Reliability Analysis of a Solid Rocket Motor Based on Response Surface Method and MonteCarlo Simulation
    [2004]
  • Reliability Analysis of Solid Rocket Motor under Bayesian Framework
    [2012]
  • Pyrotechnic Devices , Shock Levels and Their Applications
    [2002]
  • Pyroshock Testing , ” Harris ’ Shock and Vibration Handbook
    pp 26.15-26.33 [2002]
  • Probabilistic Approach for Reliability Prediction ofCritical Failure Modes in Solid Rocket Motor
    [2016]
  • Prediction of Pyroshock-Reduced Separation Nut Behaviors
    Vol . 34 , No . 5 , [2018]
  • Performance Modeling of a Pyrotechnically Actuated Pin Puller
    Vol . 15 , No . 1 , [2014]
  • Performance Modeling of Explosively Actuated Valves
    [2005]
  • Parametric Analysis and Design Optimization of a Pyrotechnically Actuated Device
    Vol . 17 , No . 3 , [2016]
  • Numerical Simulation for the Combustion of a Zirconium/Potassium Perchlorate Explosive inside a Closed Vessel ,
    Vol . 42 , No . 10 , 2017 , pp . 1168-1178 .
  • New Criteria for Self- Loosening of Fasteners Under Vibration
    pp . 314-335 . [1969]
  • Modeling the Energy Release and Burn Rate Characteristics of ZPP Based Initiators
    [2011]
  • Modeling of a Hydraulically Damped Pyrotechnic Actuator
    [2009]
  • Modeling Pyrotechnic Shock in a NASA Standard Initiator Driven Pin Puller
    [1994]
  • Load and Stress Distribution in Screw Threads
    Vol . 25 , No . 3 , [1985]
  • Introduction to the Design and Behavior of Bolted Joints : Nongasketed Joints , 4th ed.
    [2008]
  • Guidelines for Use of Vapor Cloud Dispersion Models , 2 nd ed.
    Chap . 4 [1996]
  • Guideline for Bolted Joint Design and Analysis : Version 1.0
    [2008]
  • Formulations , Predictions , and Sensitivity Analysis of a Pyrotechnically Actuated Pin Puller Model
    Vol . 10 , No . 4 , [1994]
  • Fluid Mechanics , 4th ed. , McGraw-Hill
    pp . 129-183 . [1999]
  • Finite Element Modeling and Pyroshock Response Analysis of Separation Nuts
    Vol . 68 ,pp . 380-390 . [2017]
  • Effect of Thread and Bearing Friction Coefficients on the Vibration-Induced Loosening of Threaded Fasteners
    Vol . 129 , No . 4 , [2007]
  • Effect of Thread Pitch and Initial Tension on the Self-Loosening of Threaded Fasteners
    Vol . 128 , No . 4 , [2005]
  • E. L. Igniter Materials Handbook
    [1975]
  • Development of an UltraLow-Shock Separation Nut
    pp . 87-98 . [1982]
  • Deployment and Release Devices Efforts at the Air Force Research Laboratory Space Vehicles Directorate
    [2001]
  • Computer Program for Calculation of Complex Chemical Equilibrium Compositions and Applications I. Analysis
  • Comparison of the Main Charge Characteristics for Pressure Cartridge
    pp . 440- 443 [2013]
  • Combustion of Boron Particles at Atmospheric Pressure
    Vol . 1 , No . 3 , [1969]
  • Bolt loosening analysis under transverse vibration for reliable pyrotechnic separation nut design using segmented nuts
    [2019]
  • A Study on the Nut Factor of Segmented Nuts in the Pyro Separation Nut
    [2018]
  • A Study of the Role of Pyrotechnic Systems on the Space Shuttle Program
  • A Study of the Helical Effect on the Thread Connection by Three Dimensional Finite Element Analysis ,
    Vol . 191 , No . 2 , [1999]
  • A Manual for Pyrotechnic Design , Development and Qualification
  • A Family of Embedded Runge-Kutta Formulae
    Vol . 6 , No . 1 , [1980]
  • , and Yang , H. W. , “ Bolt Loosening Analysis under Transverse
    Korean Society for Aeronautical and Space Sciences ,