• 제목/요약/키워드: Static Denting, Dynamic Denting

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A Parameter Study for Static and Dynamic Denting

  • Jung, Dong-Won;Worswick, M.J.
    • Journal of Mechanical Science and Technology
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    • 제18권11호
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    • pp.2009-2020
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    • 2004
  • A parametric study of the factors controlling static and dynamic denting, as well as local stiffness, has been made on simplified panels of different sizes, curvatures, thicknesses and strengths. Analyses have been performed using the finite element method to predict dent resistance and panel stiffness. A parametric approach is used with finite element models of simplified panels. Two sizes of panels with square plan dimensions and a wide range of curvatures are analysed for several combinations of material thickness and strength, all representative of auto-motive closure panels. Analysis was performed using the implicit finite element code, LS-NIKE, and the explicit dynamic code, LS-DYNA for the static and dynamic cases, respectively. Panel dent resistance and stiffness behaviour are shown to be complex phenomena and strongly interrelated. Factors favouring improved dent resistance include increased yield strength and panel thickness. Panel stiffness also increases with thickness and with higher curvatures but decreases with size and very low curvatures. Conditions for best dynamic and static dent performance are shown to be inherently in conflict ; that is, panels with low stiffness tend to perform well under impact loading but demonstrate inferior static dent performance. Stiffer panels are prone to larger dynamic dents due to higher contact forces but exhibit good static performance through increased resistance to oil canning.

준정적하중(準靜的荷重)을 받는 해양구조물(海洋構造物)의 원통부재(圓筒部材)에 대한 손상예측(損傷豫測) (Damage Estimation for Offshore Tubular Members Under Quasi-Static Loading)

  • 백점기;신병천;김창렬
    • 대한조선학회지
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    • 제26권4호
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    • pp.81-93
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    • 1989
  • 본(本) 논문(論文)에서는 충돌(衝突)이나 중량물(重量物) 낙하(落下)등에 의한 사고하중(事故荷重)을 받는 해양구조물(海洋構造物)의 원통부재(圓筒部材)에 대한 손상변형거동(損傷變形擧動)을 실용적(實用的)으로 추정(推定)할 수 있는 새로운 손상예측(損傷豫測) 모델을 제안(提案)한다. 본(本) 논문(論文)은 하중속도(荷重速度)가 비교적(比較的) 느리고 준정적(準靜的) 문제(問題)로서 다룰수 있는 경우만을 대상(對象)으로 하고 있다. 본연구(本硏究)에서 취급하는 원통부재(圓筒部材)는 양단단순(兩端單純) 지지(支持)되어 있고 축방향(軸方向)의 변위(變位)는 구속(拘束)되어 있으며, 하중(荷重)은 부재(部材)의 중앙위치(中央位置)에서 횡방향(橫方向)으로 작용(作用)한다고 가정(假定)한다. 지금까지의 연구성과(硏究成果) 및 본(本) 연구(硏究)에서 직접(直接) 수행(遂行)한 실험결과(實驗結果)를 바탕으로 사고하중작용시(事故荷重作用時)의 원통부재(圓筒部材)에 대한 손상변형거동(損傷變形擧動)을 상세(詳細)히 파악(把握)하고, 국부(局部) Dent 손상(損傷) 및 전체적(全體的)인 굽힘 처짐의 상관효과(相關效果)를 고려(考慮)한 하중-손상변형(荷重-損傷變形) 관계식(關係式)을 도출(導出)하였으며, 실제적(實際的)인 원통부재(圓筒部材)에 대한 실험결과(實驗結果)와 본연구(本硏究)에서 제안(提案)한 예측(豫測) 모델에 의한 추정결과(推定結果)는 잘 대응(對應)하고 있다는 것을 확인(確認)하였다. 특(特)히, 이 같은 하중상태하(荷重狀態下)에서의 실제부재(實際部材)의 손상변형거동(損傷變形擧動)에 대하여는 국부(局部) Dent 손상(損傷)과 전체적(全體的)인 굽힘처짐의 상관효과(相關效果)가 매우 크다는 것을 알았으며, 본예측(本豫測) 모델은 이들의 효과(效果)도 잘 나타내고 있다.

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Contact forces generated by fallen debris

  • Sun, Jing;Lam, Nelson;Zhang, Lihai;Gad, Emad;Ruan, Dong
    • Structural Engineering and Mechanics
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    • 제50권5호
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    • pp.589-603
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    • 2014
  • Expressions for determining the value of the impact force as reported in the literature and incorporated into code provisions are essentially quasi-static forces for emulating deflection. Quasi-static forces are not to be confused with contact force which is generated in the vicinity of the point of contact between the impactor and target, and contact force is responsible for damage featuring perforation and denting. The distinction between the two types of forces in the context of impact actions is not widely understood and few guidelines have been developed for their estimation. The value of the contact force can be many times higher than that of the quasi-static force and lasts for a matter of a few milli-seconds whereas the deflection of the target can evolve over a much longer time span. The stiffer the impactor the shorter the period of time to deliver the impulsive action onto the target and consequently the higher the peak value of the contact force. This phenomenon is not taken into account by any contemporary codified method of modelling impact actions which are mostly based on the considerations of momentum and energy principles. Computer software such as LS-DYNA has the capability of predicting contact force but the dynamic stiffness parameters of the impactor material which is required for input into the program has not been documented for debris materials. The alternative, direct, approach for an accurate evaluation of the damage potential of an impact scenario is by physical experimentation. However, it can be difficult to extrapolate observations from laboratory testings to behaviour in real scenarios when the underlying principles have not been established. Contact force is also difficult to measure. Thus, the amount of useful information that can be retrieved from isolated impact experiments to guide design and to quantify risk is very limited. In this paper, practical methods for estimating the amount of contact force that can be generated by the impact of a fallen debris object are introduced along with the governing principles. An experimental-calibration procedure forming part of the assessment procedure has also been verified.

노후 함정 강재의 기계적 특성 평가 (Mechanical Properties Assessment of Steels Obtained from an Aged Naval Ship)

  • 박상현;장영식;이수민;조상래;전상수;황주영;백남기
    • 대한조선학회논문집
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    • 제60권2호
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    • pp.65-75
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    • 2023
  • Ships operated at sea for a long time are subjected to various kinds of loads, which may cause various types of damage. Such damages will eventually reduce the strength of hull structures. Therefore, it is necessary to estimate and evaluate the residual strength and remaining fatigue life of aging ships in order to secure structural safety, establish a reasonable maintenance plan, and make a judgment of life extension. For this purpose, the corrosion damage and local denting damage should be measured, fatigue damage estimation should be performed, and material properties of aged steel should be identified. For this study, in order to investigate the mechanical properties of aged steel, steel plates were obtained from a naval ship that reached the end of her life span. The specimens were manufactured from the obtained steel plates, and static and dynamic tensile tests, fatigue tests, and metallographic tests were performed. The mechanical properties obtained from the aged steel plates were compared with those of new steel plates to quantify the aging effect on the mechanical properties of marine steel materials.