• 제목/요약/키워드: geometric impact

검색결과 154건 처리시간 0.02초

충격하중을 받는 원통의 최초좌굴시간의 변동성에 대한 기하학적 초기결함의 영향 (Influence of Geometric Initial Imperfection on the First Buckling Time Variation of Cylinder Under Impact Load)

  • 김두기
    • 전산구조공학
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    • 제10권1호
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    • pp.173-183
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    • 1997
  • 본 논문에서는 랜덤한 축대칭 기하학적 초기결함을 갖는 원통이 축방향 충격하중을 받는 경우의 반경방향 변위가 임계기준치를 최초로 통과하는 확률론적 충격좌굴 파괴시간을 해석할 수 있는 방법을 제시하였다. 랜덤한 기하학적 초기결함의 생성을 위해 초기결함의 평균함수 및 상관함수를 이용하여 확률장을 형성하는 방법을 사용하였다. 본 논문에서 제시된 방법은 실제적인 기하학적 초기결함이 갖는 불확실성을 취급하는데 적절하고 실용적이므로 이를 고려한 원통의 구조안전도해석에 이용할 수 있다.

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기하학적 초기형상결함을 갖는 보강 원통의 충격좌굴 신뢰성 해석 (Impact Buckling Reliability Analysis of Stiffened Cylinder With Initial Geometric Imperfection)

  • 김두기
    • 소음진동
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    • 제6권6호
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    • pp.735-747
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    • 1996
  • In this paper, buckling reliability analyses of stiffened cylinder with random initial geometric imperfection under axial impact load are performed by the combined response surface method. The effect of random geometric imperfection on the failure probability and reliability is recognized quantitatively. Buckling reliability decreases with the increase of mean value, cov of initial geometric imperfection under the same external load. Buckling probability under impact load is greater than those under static load with the same condition. From the probabilistic characteristics of imapct buckling load, relation between reliability index and safety parameter can be obtained in addition to the relation between load and reliability index. And those results can be used to determine the range of required safety parameter and acceptable imperfaction.

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Nonlinear dynamic response of axially moving GPLRMF plates with initial geometric imperfection in thermal environment under low-velocity impact

  • G.L. She;J.P. Song
    • Structural Engineering and Mechanics
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    • 제90권4호
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    • pp.357-370
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    • 2024
  • Due to the fact that the mechanism of the effects of temperature and initial geometric imperfection on low-velocity impact problem of axially moving plates is not yet clear, the present paper is to fill the gap. In the present paper, the nonlinear dynamic behavior of axially moving imperfect graphene platelet reinforced metal foams (GPLRMF) plates subjected to lowvelocity impact in thermal environment is analyzed. The equivalent physical parameters of GPLRMF plates are estimated based on the Halpin-Tsai equation and the mixing rule. Combining Kirchhoff plate theory and the modified nonlinear Hertz contact theory, the nonlinear governing equations of GPLRMF plates are derived. Under the condition of simply supported boundary, the nonlinear control equation is discretized with the help of Gallekin method. The correctness of the proposed model is verified by comparison with the existing results. Finally, the time history curves of contact force and transverse center displacement are obtained by using the fourth order Runge-Kutta method. Through detailed parameter research, the effects of graphene platelet (GPL) distribution mode, foam distribution mode, GPL weight fraction, foam coefficient, axial moving speed, prestressing force, temperature changes, damping coefficient, initial geometric defect, radius and initial velocity of the impactor on the nonlinear impact problem are explored. The results indicate that temperature changes and initial geometric imperfections have significant impacts.

충격자의 형상 및 재질변화에 따른 펄스형성에 관한 연구 (A study on the impact pulse analysis with various shapes and materials of impactor)

  • 이영신;김동진;강근희;오종수
    • 대한기계학회논문집A
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    • 제22권1호
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    • pp.52-63
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    • 1998
  • The impact programmer for impact test was designed and the impact analysis was conducted. The effects of the material and geometric parameters on the impact force and pulse shape were investigated. The impact characteristics were examined by experimental and finite element method. The impact test was conducted with free drop impact tester. The ABAQUS/Explicit 5.5 version was used for finite element analysis. The geometric parameters of the conical and dome type impact programmer were analyzed. The polyurethane impact programmers were fabricated and tested. The effects of the hardness and thickness of the impact programmer were studied. The peak acceleration and time duration of impact programmer have close correlation with the hardness, impact energy and thickness of the impactor. The experiment was good agreement with analytical predictions. The impact pulse shape generated with polyurethane impact programmer was half sine shape. The maximum impact force was proportional to impact energy. The impact acceleration was decreased with thickness of impact programmer. The maximum impact time duration level was about 2 msec.

Finite element analysis of RC walls with different geometries under impact loading

  • Husem, Metin;Cosgun, Suleyman I.;Sesli, Hasan
    • Computers and Concrete
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    • 제21권5호
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    • pp.583-592
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    • 2018
  • Today, buildings are exposed to the effects such as explosion and impact loads. Usually, explosion and impact loads that act on the buildings such as nuclear power plants, airports, defense industry and military facilities, can occur occasionally on the normal buildings because of some reasons like drop weight impacts, natural gas system explosions, and terrorist attacks. Therefore, it has become important to examine the behavior of reinforced concrete (RC) structures under impact loading. Development of computational mechanics has facilitated the modeling of such load conditions. In this study, three kinds of RC walls that have different geometric forms (square, ellipse, and circle) and used in guardhouses with same usage area were modeled with Abaqus finite element software. The three configurations were subjected to the same impact energy to determine the geometric form that gives the best behavior under the impact loading. As a result of the analyses, the transverse impact forces and failure modes of RC walls under impact loading were obtained. Circular formed (CF) reinforced concrete wall which has same impact resistance in each direction had more advantages. Nonetheless, in the case of the impact loading occurring in the major axis direction of the ellipse (EF-1), the elliptical formed reinforced concrete wall has higher impact resistance.

Impact of the geometric properties of intracranial vascular bifurcation and the mechanism of aneurysm occurrence and rupture

  • Liu, Jun;Zhang, Qingyun;Chen, Hua
    • Advances in nano research
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    • 제13권4호
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    • pp.379-391
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    • 2022
  • One factor that can heighten the risk of the rapture intracranial aneurysm (IA) is bifurcations, which can cause the IA to evaluate. This study presents the effect of geometric of intracranial vascular on the bifurcation analysis of the aneurysm occurrence. The aneurysm mechanism is mathematically modeled based on the nano pipe structures under the thermal stresses, and the impact of the aneurysm geometric on the stability and bifurcation points is analyzed. Because of the dimension of these structures, the classical theories could not predict their behavior perfectly, so the nonclassical and nonlocal theories are required for the mechanical modeling of the aneurysm. The presented results show that the bifurcation point of the aneurysm mechanism is dependent on the environment temperature, and the temperature change plays an essential role in the stability of these structures.

고속도로 선형조건별 교통사고 위험도 평가모형 개발 (호남고속도로를 중심으로) (Traffic Accident Prediction Model by Freeway Geometric Types)

  • 강정규;이성관
    • 대한교통학회지
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    • 제20권4호
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    • pp.163-175
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    • 2002
  • 교통사고의 원인은 도로, 차량들의 물리적 요인과 인적요인으로 분류하고 있다. 이중 차량과 관련해서는 수많은 신기술들이 개발되었고 또 개발 중에 있으며 인적요인에 관해서는 최근 국내에서도 중요한 연구들이 수행 중에 있으나 그 결과를 실용화하는데는 더 많은 시간이 필요할 것으로 보인다. 도로요인에 관한 그 동안의 연구가 국도 등에 집중되었기 때문에 오히려 도로의 위계상 최상위 위치에 있는 고속도로를 중심으로 한 연구가 미진한 것처럼 비쳐지는 것도 부정할 수 없는 사실이다. 미국은 도로 안전도 증진을 목표로 IHSDM(Interactive Highway Safety Design Module)이라는 통합설계모듈의 개발을 추진 중에 있으며, 국내에서도 기초적인 연구가 시작되었다. 이러한 평가모듈의 개발에 필수적인 것이 도로설계대안별로 교통안전도를 계량적으로 평가하는 모형의 개발이다. 본 연구에서는 먼저 교통사고의 원인이 되는 도로요인 중 특히 도로선형과 교통사고와의 관계를 밝혀내기 위해 도로선형의 변화(선형개량, 도로확장)가 비교적 적었던 호남고속도로를 대상으로 고속도로의 선형요소와 교통사고와의 미시적인 관계를 규명하였다. 이를 위해 대상도로를 직선부, 곡선부. 완화곡선부 등으로 1차 구분하였으며 이들 구간의 선형요소와 지난 5개년('96년∼'00년) 간의 교통사고 자료를 데이터베이스화하여 모형산정에 이용하였다. 또한 도로선형 요소 중 특히 교통사고와 관계가 큰 것으로 분석된 몇몇 요소들을 이용해 고속도로 선형조건별 안전도평가모형을 구축하였다.

승용차 시트프레임의 강도해석 (The Strength Analysis of Passenger Car Seat Frame)

  • 임종명;장인식
    • 한국자동차공학회논문집
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    • 제11권6호
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    • pp.205-212
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    • 2003
  • This paper may provide a basic design data for the safer car seat mechanism and the quality of the material used by finding out the passenger's dynamic behavior when protected by seat belt during collision. A computer simulation with finite element method is used to accomplish this objective. At first, a detailed geometric model of the seat is constructed using CAD program. The formation of a finite element from a geometric data of the seat is carried out using Hyper-Mesh that is the commercial software for mesh generation and post processing. In addition to seat modeling, the finite element model of seat belt and dummy is formed using the same software. Rear impact analysis is accomplished using Pam-Crash with crash pulse. The part of the recliner and right frame is under big stress in rear crash analysis because the acceleration force is exerted on the back of the seat by dummy. The stress condition of the part of the bracket is checked as well because it is considered as an important variable on the seat design. Front impact model which including dummy and seal belt is analyzed. A Part of anchor buckle of seat frame has high stress distribution because of retraction force due to forward motion of dummy at the moment of collision. On the basis of the analysis result, remodeling and reanalysis works had been repeatedly done until a satisfactory result is obtained.

속도 제한에 의한 충격량 도형에 관한 연구 (An analysis on the robotic impact geometry with task velocity constraint)

  • 이지홍
    • 제어로봇시스템학회논문지
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    • 제5권8호
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    • pp.955-960
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    • 1999
  • This paper describes the effect of impact configurations on a single robot manipulator. The effect of different configurations of kinematically redundant arms on impact forces at their end effectors during contact with the environment is investigated. Instead of the well-known impact ellipsoid, I propose an analytic method on the geometric configuration of the impact directly from the mathematical definition. By calculating the length along the specified motion direction and volume of the geometry, we can determine the characteristics of robot configurations in terms of both the impact along the specified direction and the ability of the robot withstanding the impact. Simulations of various impact configurations are discussed at the end of this paper.

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CFD analysis of geometric parameters that affect dean flow in a helical microchannel

  • Prasad, Bibin;Kim, Jung Kyung
    • Journal of Advanced Marine Engineering and Technology
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    • 제38권10호
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    • pp.1269-1274
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    • 2014
  • Due to the presence of Dean flow in curved ducts, helical channels have drawn attention recently because of the practical industrial applications. The manipulation of fluids through microfluidic devices is widely used in many scientific and industrial areas. In the present study, numerical simulations were performed on a helical microchannel to predict the impact of different design parameters that affect Dean flow. Important geometric parameters such as the channel cross section, pitch, radius of curvature, and number of turns were considered for the analysis. The study also incorporates the effect of varying flow rate on Dean flows. It was found from the simulation results that microchannel cross section and pitch have a significant impact on maintaining the Dean flow, compared to the radius of curvature, number of turns, and flow rate.