• 제목/요약/키워드: Local Dent

검색결과 14건 처리시간 0.036초

미국 및 수입옥수수의 특성과 생산성에 관한 연구 (Studys on the Agronomic Characterristics and of Korean Local and Imported Corn Corn breeding varceties)

  • 고영두;문영식;최낙민
    • 한국초지조사료학회지
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    • 제6권1호
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    • pp.14-18
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    • 1986
  • 우리나라에서 널리 이용(利用), 재배(栽培)되고 있는 옥수수와 도입(導入) 옥수수의 silage재료(材料)로서의 생산성(生産性)과 영양적(營養的) 가치(價値)를 구명(究明)하고자 품질별(品質別) 특성(特性) 및 생산성(生産性)과 TDN 함량(含量) 및 생산량(生産量)을 조사분석(調査分析)하여 평가(平價)한 바를 요약(要約)하면 다음과 같다. 1. 수원19호는 초장(草長) 및 간장(稈長)에서 각각(各各) 290.0cm, 258.5cm로 가장 우수하였으며, 도입(導入) 옥수수로서는 Royal dent 100이 각각(各各) 240.3cm, 203.0cm로서 우수하게 나타났다. 2. 종실생산량(種實生産量)은 수원19호가 10a당(當) 1,898kg이고 Royal dent 100이 1,828kg을 나타냈으며, 생초량(生草量)은 Snow dent 1이 6.536kg으로 가장 높게 나타났으며 수원19호가 6,513kg으로 비슷한 수준으로 나타났다. 건물생산량(乾物生産量)은 수원19호, Snow dent 1과 Royal dent 100이 10a 당(當) 2,000kg이상을 생산(生産)하였다. 3. TDN함량(含量)은 Snow dent 1이 70.3%로 가장 높게 나타났으나 전(全) 품종(品種)이 65%이상으로 비슷한 수준이었다. TDN 생산량(生産量)은 10a 당(當) 수원19호가 1,651.5kg으로 가장 많이 생산(生産)되었고, 다음으로 Royal dent 100과 Snow dent 1이 1,538kg, 1,522.9kg으로 나타났다.

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차체 외판 부품의 덴트 특성 향상을 위한 알루미늄 판재의 성형조건에 관한 연구 (Forming Condition for Automotive Body Outer Panel using Aluminum Alloy Sheet for Improved Dent Resistance)

  • 고세진;김태정;김익수
    • 소성∙가공
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    • 제20권6호
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    • pp.420-426
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    • 2011
  • Dent resistance is determined by both shape characteristics, i.e., local radius of curvature and sheet thickness, and material properties such as yield strength. This work presents results of a study on the effect of work hardening and bake hardening on dent resistance of aluminum alloy sheet parts by considering the forming condition and baking temperature.

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.

Experiments on locally dented conical shells under axial compression

  • Ghazijahani, Tohid Ghanbari;Jiao, Hui;Holloway, Damien
    • Steel and Composite Structures
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    • 제19권6호
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    • pp.1355-1367
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    • 2015
  • Steel conical shells have long been used in various parts of different structures. Sensitivity to the initial geometrical imperfection has been one of the most significant issues on the stability of these structures, which has made them highly vulnerable to the buckling. Most attention has been devoted to structures under normal fabrication related imperfections. Notwithstanding, the challenges of large local imperfections - presented herein as dent-shaped imperfections - have not been a focus yet for these structures. This study aims to provide experimental data on the effect of such imperfections on the buckling capacity of these shells under axial compression. The results show changes in the buckling mode and the capacity for such damaged thin specimens as is outlined in this paper, with an average overall capacity reduction of 11%.

해양구조물 원통부재의 최종강도에 대한 손상의 영향 (Damage Effects on the Ultimate Strength of Offshore Tubular Members)

  • 백점기;신병천
    • 한국해양공학회지
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    • 제3권2호
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    • pp.577-577
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    • 1989
  • In this paper, a detail evaluation of ultimate strength of offshore unstiffened tubular members with bending and local denting damage which are subjected to combined axial force and bending moment and to component load is presented through theoretical and experimental approaches. Based upon the results obtained here, the damage effect on the ultimate strength of tubular member under combined loads and component load is investigated.

해양구조물 원통부재의 최종강도에 대한 손상의 영향 (Damage Effects on the Ultimate Strength of Offshore Tubular Members)

  • 백점기;신병천
    • 한국해양공학회지
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    • 제3권2호
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    • pp.77-86
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    • 1989
  • In this paper, a detail evaluation of ultimate strength of offshore unstiffened tubular members with bending and local denting damage which are subjected to combined axial force and bending moment and to component load is presented through theoretical and experimental approaches. Based upon the results obtained here, the damage effect on the ultimate strength of tubular member under combined loads and component load is investigated.

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A Study on 3-Dimensional Profilometry of Steam Generator Tube Using a New Eddy Current Probe

  • Kim, Young-Kyu;Song, Myung-Ho;Choi, Myung-Sik
    • 비파괴검사학회지
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    • 제30권3호
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    • pp.225-235
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    • 2010
  • There are many types of the geometric transitions such as dent, bulge, protrusion, expansion, etc, on the inner and outer surfaces of heat exchanger tubes, steam generator tubes, and condenser tubes of nuclear power plants. Such geometric transition causes a local residual stress in heat exchanger tubes and acts as a structural factor accelerating the evolution of defects, in particular stress corrosion cracks. In the conventional eddy current test methods, the bobbin coil profilometry can provide 2-dimensional geometric information on the variation of the average inner diameter along the tube length, but the 3-dimensional distribution and the quantitative size of a local geometric transition existing in the tube cannot be measured. In this paper, a new eddy current probe, developed for the 3-dimensional profile measurement, is introduced and its superior performance is compared with that from the conventional bobbin coil profilometry for the various types of geometric transition. Also, the accuracy of the probe for the quantitative profile measurement is verified by comparing the results with that from the laser profilometry. It is expected that the new eddy current probe and techniques can be effectively used for an optimization of the tube expansion process, and the management of tubes with geometric transitions in service.

Buckling assessment of dented truncated cones under external pressure

  • Ghazijahani, Tohid Ghanbari;Showkati, Hossein;Jiao, Hui
    • Advances in Computational Design
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    • 제1권4호
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    • pp.345-356
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    • 2016
  • Notwithstanding a considerable body of references in the literature on the buckling response of conical shell structures, it seems imperative to provide further insight on the buckling response of locally imperfect steel cones. This paper contains different simulations including non-linear FE analysis and discusses the influence of dent imperfection on the buckling load of these structures subject to external pressure. Data of the present work are evaluated against available experimental results, codes and recommendations and the effect of the local damages is exhaustively set forth. It is also found that the employed FE program can reliably predict the structural response of locally damaged conical shells.

손상원통부재(損傷圓筒部材)의 최종강도(最終强度) 해석(解析)에 관한 연구(硏究) (A Study on the Ultimate Strength Analysis of Damaged Tubular Members)

  • 백점기;신병천
    • 대한조선학회지
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    • 제27권1호
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    • pp.24-34
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    • 1990
  • 본 연구에서는 축력과 굽힘모멘트의 조합하중(組合荷重)을 받는 손상원통부재의 최종강도(最終强度)를 해석하기위하여 간이유한요소해석이론을 정식화한다. 여기서, 굽힘 및 국부손상이 존재하는 원통부재(圓筒部材)를 보요소로 모델링하며, 각요소의 접선탄성강성행렬(接線彈性剛性行列)은 기하학적 비선형 효과를 고려하여 updated Lagrangian 기법에 의하여 도출한다. 이때, 국부손상부위의 강성이 외력에 대한 저항에 기여하는 정도는 비교적 작다고 생각되므로 요소의 강성평가시에 국부손상부위의 강성은 무시한다. 요소의 소성화는 국부손상부위의 영향을 고려한 전단면(全斷面) 소성강도(塑性强度) 상관관계식을 적용하여 요소의 각절점에서 판정하며, 접선(接線) 탄소성(彈塑性) 강성행렬(剛性行列)은 소성절점법(塑性節點法)에 의하여 계산한다. 마지막으로 본 연구에서 정식화한 해석법을 바탕으로 컴퓨터프로그램을 작성하고 실험 등에 의하여 얻어진 기존의 결과에 대해 재해석하여 본해석법의 정도와 유용성을 확인한다.

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유한요소해석을 통한 섬유보강 아스팔트의 파괴거동특성 분석 (Finite Element Analysis for Fracture Resistance of Fiber-reinforced Asphalt Concrete)

  • 백종은;유평준
    • 한국도로학회논문집
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    • 제17권3호
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    • pp.77-83
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    • 2015
  • PURPOSES : In this study, a fracture-based finite element (FE) model is proposed to evaluate the fracture behavior of fiber-reinforced asphalt (FRA) concrete under various interface conditions. METHODS : A fracture-based FE model was developed to simulate a double-edge notched tension (DENT) test. A cohesive zone model (CZM) and linear viscoelastic model were implemented to model the fracture behavior and viscous behavior of the FRA concrete, respectively. Three models were developed to characterize the behavior of interfacial bonding between the fiber reinforcement and surrounding materials. In the first model, the fracture property of the asphalt concrete was modified to study the effect of fiber reinforcement. In the second model, spring elements were used to simulated the fiber reinforcement. In the third method, bar and spring elements, based on a nonlinear bond-slip model, were used to simulate the fiber reinforcement and interfacial bonding conditions. The performance of the FRA in resisting crack development under various interfacial conditions was evaluated. RESULTS : The elastic modulus of the fibers was not sensitive to the behavior of the FRA in the DENT test before crack initiation. After crack development, the fracture resistance of the FRA was found to have enhanced considerably as the elastic modulus of the fibers increased from 450 MPa to 900 MPa. When the adhesion between the fibers and asphalt concrete was sufficiently high, the fiber reinforcement was effective. It means that the interfacial bonding conditions affect the fracture resistance of the FRA significantly. CONCLUSIONS : The bar/spring element models were more effective in representing the local behavior of the fibers and interfacial bonding than the fracture energy approach. The reinforcement effect is more significant after crack initiation, as the fibers can be pulled out sufficiently. Both the elastic modulus of the fiber reinforcement and the interfacial bonding were significant in controlling crack development in the FRA.