• Title/Summary/Keyword: Firing Posture

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Improvement of Firing Elevation Driving Method for Towed Howitzer to Prevent Musculoskeletal Problems (근골격계 질환 예방을 위한 견인곡사포 고각조정 방법의 개선)

  • Park, Sung Ho
    • Journal of Korean Institute of Industrial Engineers
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    • v.42 no.2
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    • pp.122-128
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    • 2016
  • The purpose of this study is to improve the firing elevation driving method for towed howitzer to prevent the musculoskeletal disorders. To adjust the firing elevation, it is required to rotate the hand wheel and this work has been done manually in the firing test range as the same method as field artillery troops. In the firing test range, the motor-driven firing elevation adjustment device was developed to improve the working efficiency and safety. These were compared by using posture classification scheme of RULA and REBA. It was measured elapsed time to investigate the improved operational efficiency. The optimal posture of upper body to operate the hand wheel for field artillery troops was proposed.

Development of Projectile Transfer System to Prevent Musculoskeletal Problems (근골격계 질환 예방을 위한 포탄 이송장치의 개발)

  • Park, Sung Ho;Lee, Hae Suk
    • Journal of Korean Institute of Industrial Engineers
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    • v.41 no.6
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    • pp.551-558
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    • 2015
  • The purpose of this paper is to investigate the development of mechanical projectile transfer system to prevent musculoskeletal problems in the firing test range. Prior to 2010, the projectile has been transferred from the worktable to the loading device of 155mm K9 fixed-type artillery by manual. Because the amount of firing test has been increased drastically since 2010, two types of mechanical projectile transfer system were developed to prevent musculoskeletal problems. The NIOSH lift equation and the working posture assessment system such as OWAS, RULA and REBA were used to evaluate the appropriacy of working weight and posture by manual transfer of projectile. The configuration and operation procedure of projectile transfer systems which were developed to improve work efficacy and to reduce the burden of manual transferring were described. The improvements were assessed by the number of processes, the tact time and the working posture assessment for operation of this system by comparing to the manual transfer of projectile.

Filing Experiments and Structural Analysis of Human Body (사격시험 및 인체구조해석)

  • Lee, Se-Hoon;Choi, Young-Jin;Choi, Eui-Jung;Chae, Je-Wook;Lee, Young-Shin
    • Transactions of the Korean Society of Mechanical Engineers A
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    • v.31 no.7 s.262
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    • pp.764-776
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    • 2007
  • On the human-rifle system, the human body is affected by the firing impact. The firing impact will reduce the firing accuracy and change the initial shooting posture. Therefore the study of biomechanical characteristics using human-rifle modeling and numerical investigation is needed. The musculoskeletal model is developed by finite element method using beam and spar elements. In this study structural analysis has been performed in order to investigate the human body impact by firing of 5.56mm small caliber machine gun. The firing experiments with the standing shooting postures were performed to verify analytical results. The result if this study shows analytical displacements of the human-rifle system and experimental displacements of the real firing. As the results, the analytical displacement and stress of human body are presented.

A study on the human impulse characteristics with the typical shooting posture (주요 사격자세에 따른 인체 충격량 특성 해석)

  • Choi, Young-Jin;Lee, Young-Shin;Han, Kyoo-Hyun;Chae, Je-Uk;Choi, Eui-Jung
    • Proceedings of the KSME Conference
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    • 2004.11a
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    • pp.459-464
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    • 2004
  • The rifle impact of human body affected by the posture of human for rifling. The interaction human-rifle system influence the firing accuracy. In this paper, impact analysis of human model for shooting posture is carried out. ADAMS code and LifeMOD is used in impact analysis of human model and modeling of the human body, respectively. On the shooting, human model is affected by rifle impact during the 0.001 second. Performed simulation time for shooting is 0.1 second. Applied constraint condition to human-rifle system is rotating and spherical condition. As the results, the displacement of rifle and transfer path analysis of impact of human model is presented.

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A Study on Variation of an Accuracy Rate as the Gradient of a Pistol (총기 경사도에 따른 명중률 변화에 관한 연구)

  • Yeo, Woon-Joo;Lee, Joon-Ho;Choi, Eui-Jung
    • Journal of the Korea Institute of Military Science and Technology
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    • v.14 no.2
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    • pp.167-172
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    • 2011
  • In this paper, a study on variation of an accuracy rate as the gradient of a rifle is shown. In the a state of hostilities, a soldier is not easy to take a shot vertically against the ground. If a soldier shoots as the pistol is inclined, how the accuracy rate is changed. While the pistol is shot, the change of ballistic curve is estimated. And we also verify the accuracy rate through the firing test. Then we compare two results and present some ideas which overcome the decrease of an accuracy rate. Hereafter, it is possible to adapt in the future soldier system and expected that the accuracy rate of the conventional gun is maintained.