• 제목/요약/키워드: Shape of displacement

검색결과 1,048건 처리시간 0.029초

딤플형 내부 구조체를 가진 ISB 판넬의 굽힘 강성 특성 (Bending characteristics of ISB panel with dimple shapes as inner structures)

  • 안동규;이상훈;김진석;문경재;한길영;정창균;양동열
    • 한국정밀공학회:학술대회논문집
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    • 한국정밀공학회 2006년도 춘계학술대회 논문집
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    • pp.117-118
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    • 2006
  • The objective of this paper is to investigate into bending and failure characteristics of ISB panel with dimple shapes as inner structures. Through three-points bending test, the force-displacement curve and the failure shape are obtained to examine the deformation pattern, characteristic data including maximum load and displacement at the maximum load and failure pattern for the ISB panel. In addition, the influence of design parameters for ISB panel on the bending stiffness and failure mode has been found. From the results of the experiments, it has been shown that bending and failure characteristics of the ISB panel can be controlled by the ratio of radius and the direction of the material.

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An improved parametric formulation for the variationally correct distortion immune three-noded bar element

  • Mukherjee, Somenath;Manju, S.
    • Structural Engineering and Mechanics
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    • 제38권3호
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    • pp.261-281
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    • 2011
  • A new method of formulation of a class of elements that are immune to mesh distortion effects is proposed here. The simple three-noded bar element with an offset of the internal node from the element center is employed here to demonstrate the method and the principles on which it is founded upon. Using the function space approach, the modified formulation is shown here to be superior to the conventional isoparametric version of the element since it satisfies the completeness requirement as the metric formulation, and yet it is in agreement with the best-fit paradigm in both the metric and the parametric domains. Furthermore, the element error is limited to only those that are permissible by the classical projection theorem of strains and stresses. Unlike its conventional counterpart, the modified element is thus not prone to any errors from mesh distortion. The element formulation is symmetric and thus satisfies the requirement of the conservative nature of problems associated with all self-adjoint differential operators. The present paper indicates that a proper mapping set for distortion immune elements constitutes geometric and displacement interpolations through parametric and metric shape functions respectively, with the metric components in the displacement/strain replaced by the equivalent geometric interpolation in parametric co-ordinates.

토압분리형 교량의 구조해석을 통한 허용 변위량 검토 (Examination of Allowable Displacement by Structural Analysis of IPM Bridge)

  • 김홍배;한희수
    • 한국산학기술학회논문지
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    • 제20권4호
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    • pp.534-544
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    • 2019
  • IPM Bridge는 파일벤트가 지표면으로부터 돌출되어, 교대의 과도한 변위가 유발될 수 있다. 본 연구에 사용된 교량의 형상은 IPM Bridge의 설계지침에 제시된 최대 적용 조건인 경간 120.0m, 사각 30도, 파일벤트의 돌출높이 최대 10.0m를 적용하였다. 이 교량모델을 이용하여, IPM Bridge의 최대 경간 적용조건에 따른 최대 변위를 산정하였으며, Bozozuk가 제시한 허용 변위에 근거하여 IPM Bridge의 수평변위의 안정성을 검토하였다. IPM Bridge의 최대 수평변위는 여름철의 팽창 조건보다는 겨울철의 수축 조건에서 더 크게 산정되었으며, 수평변위는 사각보다는 교량의 길이에 더 큰 영향을 받는 것으로 나타났다. 그리고 수직 변위는 사각과 연장에 큰 영향을 받지 않는 것으로 나타났다. 경간의 증가에 따라 수평변위가 크게 증가되었으며, 연장 120.0m에서의 수평변위는 Bozozuk가 제시한 허용 변위를 초과하는 것으로 나타났다. 하지만, 파일벤트에 발생되는 모멘트가 소성모멘트를 초과하지는 않았다. IPM Bridge는 설계지침에 제시된 최대 적용조건인 파일벤트의 돌출높이 10.0m, 연장 120.0m에서는 수평변위가 과도하게 발생될 수 있으므로, 설계단계에서 면밀한 검토가 필요하다.

캡슐 하단부 구조변경에 따른 압력강하 및 진동특성 (Pressure Drop and Vibration Characteristics of the Capsule with the Modification of Bottom Structures)

  • 최명환;주기남;조만순;김봉구
    • 한국소음진동공학회논문집
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    • 제15권12호
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    • pp.1370-1377
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    • 2005
  • The bottom structure of an instrumented capsule is a part which is joined at the receptacle of the flow tube in the reactor in-core. A geometrical change of the bottom structure has an effect on the pressure drop and the vibration of the capsule. The out-pile test to evaluate the structural integrity of the material capsule called 04M-17U was performed by using a single channel and a half core test loop. From the pressure drop test, the optimized diameter of the cone shape's bottom structure which satisfies HANARO's flow requirement (19.6 kg/s) is 71 mm. The maximum displacement of the capsule measured at the half core test loop is lower than 1.0 mm. From the analysis results, it is found that the test hole will not be interfered with near the flow tubes because its displacement due to the cooling water is very small at 0.072 mm. The fundamental frequency of the capsule under water is 9.64 Hz. It is expected that the resonance between the capsule and the fluid flow due to the cooling water in HANARO's in-core will not occur. Also, the new bottom structure of a solid cone shape with 71 mm in diameter will be applicable to the material and special capsules in the future.

캡슐 하단부 구조변경에 따른 압력강하 및 진동특성 (Pressure Drop and Vibration Characteristics of the Capsule with the Modification of Bottom Structures)

  • 최명환;주기남;조만순;이강희;김봉구
    • 한국소음진동공학회:학술대회논문집
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    • 한국소음진동공학회 2005년도 추계학술대회논문집
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    • pp.782-787
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    • 2005
  • The bottom structure of an instrumented capsule is a part which is joined at the receptacle of the flow tube in the reactor in-core. A geometrical change or the bottom structure has an effect on the pressure drop and the vibration of the capsule. The out-pile test to evaluate the structural Integrity of the material capsule called 04M-l7U was performed by using a single channel and a half core test loop. From the pressure drop test, the optimized diameter of the cone shape's bottom structure which satisfies HANARO's flow requirement (19 6 kg/s) is 71 mm. The maximum displacement of the capsule measured at the half core test loop is lower than 1.0 mm. From the analysis results, it is found that the test hole will not be interfered with near the flow tubes because its displacement due to the cooling water is very small at 0.072 mm. The fundamental frequency of the capsule under water is 9.64 Hz. It is expected that the resonance between the capsule and the fluid flow due to the cooling water in HANARO's In-core will not occur. Also, the new bottom structure of a solid cone shape with 71 mm in diameter will be applicable to the material and special capsules in the future.

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하중법을 이용한 케이블 구조물의 변위제어기법에 관한 연구 (Displacement Control Technique of Pre-stressable Cable Structures by Force Method)

  • 손수덕;;이승재
    • 한국공간구조학회논문집
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    • 제11권2호
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    • pp.139-149
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    • 2011
  • 케이블 구조물은 비교적 가볍고 넓은 공간의 형성이 쉬우나 유연한 특징으로 인해 형상의 제어가 매우 민감하다. 이런 구조물은 여러 이유에서 형상의 보정이 필요하며, 특히 부재 제어량과 어떠한 부재를 제어해야 하는가는 것은 많은 연구자들이 고심하고 있는 문제이다. 따라서 본 논문의 목적은 하중법(Force Method)를 이용해서 형상조절을 위한 변위 제어기법을 연구하는 것이다. 논문은 2장에서는 제어 방정식을 설명하고, 3장에서는 단순 케이블 넷 모델을 이용하여 동시 및 순차제어를 고려해 해석을 수행하고 결과를 고찰한다. 4장에서는 보다 더 복잡한 케이블 돔 구조물에 적용하여 가장 유용한 부재에 대해서 논의 하고, 5장에서 결과를 요약한다.

내압이 작용하는 직관과 엘보우의 경계면에 존재하는 원주방향 관통균열의 응력확대계수 및 탄성 균열열림변위 예측식 (Closed-Form Solutions for Stress Intensity Factor and Elastic Crack Opening Displacement for Circumferential Through-Wall Cracks in the Interface between an Elbow and a Straight Pipe under Internal Pressure)

  • 장윤영;정재욱;허남수;김기석;조우연
    • 한국생산제조학회지
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    • 제24권5호
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    • pp.553-560
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    • 2015
  • Fracture mechanics analysis for cracked pipes is essential for applying the leak-before-break (LBB) concept to nuclear piping design. For LBB assessment, crack instability and leak rate should be predicted accurately for through-wall cracked pipes. In a nuclear piping system, elbows are connected with straight pipes by circumferential welding; this weld region is often considered a critical location. Hence, accurate crack assessment is necessary for cracks in the interface between elbows and straight pipes. In this study, the stress intensity factor (SIF) and elastic crack opening displacement (COD) were estimated through detailed 3D elastic finite element (FE) analyses. Based on the results, closed-form solutions of shape factors for calculating the SIFs and elastic CODs were proposed for circumferential through-wall cracks in the abovementioned interfaces under internal pressure. In addition, the effect of the elbow on shape factors was investigated by comparing the results with the existing solutions for a straight pipe.

인간동력항공기의 붙임각 변화에 따른 날개 끝단 굽힘변위 최소화 연구 (Minimization of the Bending Deflection of the Human-powered Aircraft Wing Induced by Change of an Incidence Angle)

  • 이창배;임병욱;주현식;신상준
    • 한국항공우주학회지
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    • 제47권2호
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    • pp.98-106
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    • 2019
  • 인간동력항공기의 날개는 고세장비의 형상을 가지고 있어 큰 굽힘변위가 발생한다. 본 논문에서는 고세장비 형상의 날개가 가지는 구조적인 한계를 붙임각을 변경함으로써 개선하고자 하였다. 날개의 익형 및 단면형상을 고정시킨 후 동일 수준의 양력 발생을 만족시킨다는 전제하에 붙임각의 변경에 따른 날개 끝단의 굽힘변위 변화 경향을 관측하였다. 이를 위해 유한날개의 양력, 항력, 모멘트 하중을 날개의 각 섹션에 분포시켰다. 그리고 EDISON의 "geometrically exact beam (GEB)" 프로그램과 "Variational Asymptotic Beam Sectional Analysis (VABS)" 단면해석 프로그램을 사용하여 변경된 설계안의 구조 안전도를 평가하였다. 또한, 다물체 동역학 해석 프로그램 DYMORE를 이용하여 본 논문에서 예측한 날개의 끝단 변위 예측값을 비교 검증하였다.

Dendrite 형상 구리 입자의 무전해 은 도금에 의한 열적 안정성 향상에 관한 연구 (Study on Improvement of Thermal Stability of Dendrite-shape Copper Particles by Electroless Silver Plating)

  • 황인성;남광현;정대원
    • 공업화학
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    • 제33권6호
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    • pp.574-580
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    • 2022
  • Dendrite 형태의 구리 입자 표면을 은으로 무전해 도금을 하는 과정에서, 치환도금(displacement plating)과 화학 환원도금(reducing electroless plating)을 병용하여 다양한 silver-coated copper (Ag@Cu) 입자들을 제조하였다. Ag@Cu 입자들의 물리화학적 특성은 SEM-EDS, TGA, XPS, XRD 및 BET 등으로 분석하였으며, 환원반응에 의하여 코팅되는 은은 구리 입자 표면에 나노 입자 형태로 형성되는 것을 확인할 수 있었다. Ag@Cu 입자들을 에폭시 수지와 복합화하여 도전성 필름을 제조하고 그의 열적 안정성을 평가하였다. 치환 반응과 환원 반응의 차이가 Ag@Cu 필름의 초기 저항 및 열적 안정성에 미치는 영향에 관하여 연구하였다.

Analytical performance evaluation of modified inclined studs for steel plate concrete wall subjected to cyclic loads

  • Lim, Jin-Sun;Jeong, Young-Do;Nam, Jin-Won;Kim, Chun-Ho;Yi, Seong-Tae
    • Computers and Concrete
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    • 제17권2호
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    • pp.227-240
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    • 2016
  • An analytical study was conducted to investigate the effect of the shape and spacing of modified inclined studs used as shear connector between concrete and steel plate on the cyclic behavior of steel plate concrete (SC) shear wall. 9 different analysis cases were adopted to determine the optimized shape and spacing of stud. As the results, the skeleton curves were obtained from the load-displacement hysteresis curves, and the ultimate and yielding strengths were increased as the spacing of studs decrease. In addition, the strength of inclined studs is shown to be bigger compared to that of conventional studs. The damping ratios increased as the decrease of stiffness ratio. Finally, with decreasing the spacing distance of studs, the cumulative dissipated energy was increased and the seismic performance was improved.