• 제목/요약/키워드: Dynamic stress-energy method

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마찰에너지율을 이용한 타이어 제동거리 예측 (Braking Distance Estimation using Frictional Energy Rate)

  • 전도형;최주형;조진래;김기전;우종식
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2004년도 춘계학술대회
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    • pp.519-524
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    • 2004
  • This study is concerned with the braking distance estimation using frictional energy rate. First, steady state rolling analysis is performed, and using this result, the braking distance is estimated. Dynamic rolling analysis during entire braking time period is impratical, so that this study divides the vehicle velocity by 10km/h to reduce the analysis time. The multiplication of the slip rate and the shear stress provides the frictional energy rate. Using frictional energy rate, total braking distance is estimated, In addition, ABS(Anti-lock Brake System) is considered, and two type of slip ratios are compared, One is 15% slip ratio for the ABS condition, and the other is 100% slip ratio which leads lo the almost same braking distance as the elementary kinematic theory. A slip ratio is controlled by angular velocity in ABAQUS/Explicit, A 15% slip ratio gives the real vehicle's braking distance when the frictional energy occurred al disk pad is included. Disk pad's frictional energy rate is calculated by the theoretical approach.

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노상 성토조건에 의한 다짐영향 (The Effects of Embankment Condition of Subgrade on Compaction.)

  • 노한성;김태수;최영철;백종은
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2002년도 봄 학술발표회 논문집
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    • pp.357-364
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    • 2002
  • This paper describes the feasibility of compacting subgrade layer in thicker lifts than currently permitted as 20 cm. This project involved constructing and testing a full scale test section in highway. Soil stiffness in field was evaluated by a nondestructive testing method, called Geogage. Quality control tests and FE Analysis were also conducted. Typical dynamic compaction roller of 11ton weight is applied for full scale test and a Mohr-Coulomb model and Plane strain condition are used for FE Analysis. The results showed that compaction-induced stress and dissipated energy are mainly depend on depth of soil and it could be possible to increase thickness of a lift.

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정현하중재하 진동삼축시험에 기초한 포화사질토의 액상화 한계저항특성 (A Critical Liquefaction Resistible Characteristic of Saturated Sands Based on the Cyclic Triaxial Test Under Sinusoidal Loadings)

  • 최재순;김수일
    • 한국지반공학회논문집
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    • 제20권8호
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    • pp.147-158
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    • 2004
  • 국내 액상화 상세평가에 관한 시방내용을 살펴보면, 지진을 정현하중으로 고려한 등가전단응력개념에 기초하여 전단응력을 달리한 3회 이상의 액상화 발생 실내진동시험을 수행하고 이를 토대로 액상화 저항응력비 곡선을 도시하여 지진규모별로 적용할 것을 명시하고 있다. 즉, 현행 액상화 상세평가에서는 실내진동시험결과인 응력, 변형률, 과잉간극수압, 유효응력, 응력 경괴의 변화 등의 다양한 결과들을 효과적으로 이용하지 못하고 최대전단응력과 액상화 발생시 진동재하횟수라는 단순한 시험결과만을 이용하여 액상화 평가를 수행한다. 본 연구에서는 현행 액상화 상세평가에서의 단순한 시험결과의 이용을 탈피하여 응력, 변형률, 그리고, 과잉간극수압 시간이력들과 응력-변형률 상관관계 및 유효응력경로 등의 다양한 실내진동시험 결과를 토대로 액상화 발생메카니즘을 포함한 지반의 동적저항상태를 분석하였다. 특히, 과잉간극수압의 영향을 고려한 동적 유효응력경로가 지반의 동적거동을 효과적으로 구분하여 나타낼 수 있는 점을 발견하고 이를 토대로 지반의 동적상태를 점진적 응력감소, 급진적 응력감소, 그리고 액상화 후 극한상태의 3단계로 구분하였다. 또한, 액상화 현상이 실제적으로 점진적 응력감소에서 급진적 응력감소로 전환되는 시점에서 대변형을 동반하여 발생한다는 사실을 발견하고 이를 액상화 상태전환시점으로 정의하였으며 이러한 액상화상태전환시점이 압축제하 또는 인장재제하로 하중방향이 바뀌는 시점에서 발생하는 점을 반영하여 1/4주기별 시험결과분석에 기초하여 저항특성을 나타내었다. 그리고, 본 연구를 통해 제안된 액상화 저항특성에 대한 타당성 검토를 위해 과잉간극수압으로 인해 발생하는 지반재료 내부에서 소산되는 에너지 개념과 기제안된 교란상태개념에 기초한 액상화 저항특성과 비교하였다. 연구결과, 제안된 누적 소성 전단변형률은 액상화 발생의 원인이 되는 과잉간 극수압의 영향을 합리적으로 표현하고 있을 뿐만 아니라 진동하중으로부터 소산되는 재료 내부의 에너지 변화를 신뢰성 높게 표현하고 있는 것으로 나타났다. 특히, 제안된 지반의 한계 저항특성의 경우, 기제안된 교란도 함$.$수에 기초한 수치해석방법보다 정확하게 대변형의 영향을 포함하지 않고 한계상태를 표현하고 있는 것으로 나타났다.

Nonlocal strain gradient-based vibration analysis of embedded curved porous piezoelectric nano-beams in thermal environment

  • Ebrahimi, Farzad;Daman, Mohsen;Jafari, Ali
    • Smart Structures and Systems
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    • 제20권6호
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    • pp.709-728
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    • 2017
  • This disquisition proposes a nonlocal strain gradient beam theory for thermo-mechanical dynamic characteristics of embedded smart shear deformable curved piezoelectric nanobeams made of porous electro-elastic functionally graded materials by using an analytical method. Electro-elastic properties of embedded curved porous FG nanobeam are assumed to be temperature-dependent and vary through the thickness direction of beam according to the power-law which is modified to approximate material properties for even distributions of porosities. It is perceived that during manufacturing of functionally graded materials (FGMs) porosities and micro-voids can be occurred inside the material. Since variation of pores along the thickness direction influences the mechanical and physical properties, so in this study thermo-mechanical vibration analysis of curve FG piezoelectric nanobeam by considering the effect of these imperfections is performed. Nonlocal strain gradient elasticity theory is utilized to consider the size effects in which the stress for not only the nonlocal stress field but also the strain gradients stress field. The governing equations and related boundary condition of embedded smart curved porous FG nanobeam subjected to thermal and electric field are derived via the energy method based on Timoshenko beam theory. An analytical Navier solution procedure is utilized to achieve the natural frequencies of porous FG curved piezoelectric nanobeam resting on Winkler and Pasternak foundation. The results for simpler states are confirmed with known data in the literature. The effects of various parameters such as nonlocality parameter, electric voltage, coefficient of porosity, elastic foundation parameters, thermal effect, gradient index, strain gradient, elastic opening angle and slenderness ratio on the natural frequency of embedded curved FG porous piezoelectric nanobeam are successfully discussed. It is concluded that these parameters play important roles on the dynamic behavior of porous FG curved nanobeam. Presented numerical results can serve as benchmarks for future analyses of curve FG nanobeam with porosity phases.

STS304와 Sl5C 이종마찰압접부의 접합계면 응력해석 (Stress Analysis of Bonding Interface in the Dissimilar Friction Welded Joints)

  • 오정국;차용순;성백섭;박창언;김하식;김충환
    • 한국공작기계학회논문집
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    • 제11권3호
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    • pp.65-71
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    • 2002
  • Friction welding has may merits such as energy efficiency, simple processing, etc. but it is difficult to obtain good welding at the welded interfaces and heat affected zone. It is discovered that stress singularity exists at the interferes and heat affected zone. The computer program based on boundary element method is utilized in this study. A mathematical model is implemented based on results from several experiments performed at and around the welded interfaces and heat affected zone of disimilar metals under static and dynamic loadings. This stay is to investigate the characteristics of the deformation and fracture behavior around interfaces for friction welded materials under static tensile load. Also, the stress distribution at the tip of crack is analyzed by using BU based on Kelvin's solution of 2-dimensional binding zone. The results of BEM are identical with those in case of considering interfaces of both heat affected zone. Also, stress singularity at the tip of interfaces appears when the elastic modulus ratio is 1.07.

Transient Characteristics and Physical Constraints of Grid-Tied Virtual Synchronous Machines

  • Yuan, Chang;Liu, Chang;Yang, Dan;Zhou, Ruibing;Tang, Niang
    • Journal of Power Electronics
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    • 제18권4호
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    • pp.1111-1126
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    • 2018
  • In modern power systems, distributed generators (DGs) result in high stress on system frequency stability. Apart from the intermittent nature of DGs, most DGs do not contribute inertia or damping to systems. As a result, a new control method referred to as a virtual synchronous machine (VSM) has been proposed, which brought new characteristics to inverters such as synchronous machines (SM). DGs employing an energy storage system (ESS) provide inertia and damping through VSM control. Meanwhile, energy storage presents some physical constraints in the VSM implementation level. In this paper, a VSM mathematical model is built and analyzed. The dynamic responses of the output active power are presented when a step change in the frequency occurs. The influences of the inertia constant, damping factor and operating point on the ESS volume margins are investigated. In addition, physical constraints are proposed based on these analyses. The proposed physical constraints are simulated using PSCAD/EMTDC software and tested through RTDS experiment. Both simulation and RTDS test results verify the analysis.

유한요소법을 이용한 코오드-고무 복합판의 동적특성에 관한 연구 (A study on the dynamic characteristics of the cord-rubber laminates rectangular plate by finite element method)

  • 김두만;김항욱
    • 오토저널
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    • 제8권2호
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    • pp.51-64
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    • 1986
  • There has been considerable interest over the last twenty years in the subject of the elastic properties of the cord-rubber laminate. This has been due to the rather intensive study of the composites materials characteristics brought about by the increased use of rigid composites materials characteristics brought about by the increased use of rigid composites in many structural applications. The object of this study is to obtain the natural frequencies and modes of the simply supported cord-rubber laminate plates prior to the study on the analysis of the dynamic properties of the pneumatic tire. To obtain these natural frequencies and modes, the 12 degrees of freedom orthotropic rectangular plate finite elements are developed. By using classical lamination theory, the stress-strain relations are represented. The governing equation for the finite element is derived by energy method. To find the natural frequencies and modes, he eigenvalues and corresponding eigenvectors are computed by the well known Jacobi power method. In order to verify the capability of this present finite element, the results of the specially orthotropic plate and the angle-ply laminate plate are compared with the analytical solution. The analytical and numberical results are in good agreement. The following problems of the simply supported plate are analyzed by the present finite element. a) the natural frequencies and mode shapes of the cord-rubber laminate plate for various aspect ratio. b) The natural frequencies and mode shapes of the orthotropic plate with the rectangular hole in its center.

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적응적 방법을 이용한 동적 유한요소해석 (An Adaptive Procedure in Finite Element Analysis of Elastodynamic Problems)

  • 최창근;정흥진
    • 한국전산구조공학회:학술대회논문집
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    • 한국전산구조공학회 1994년도 봄 학술발표회 논문집
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    • pp.1-8
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    • 1994
  • An automated procedure which allows adaptation of spatial and time discretization simultaneously in finite element analysis of linear elastodynamic problems is presented. For dynamic problems having responses dominated by high frequency modes, such as those with impact, explosive, traveling and earthquake loads high gradient stress regions change their locations from time to time. And the time step size may need to vary in order to deal with whole process ranging from transient phase to steady state phase. As the sizes of elements in space vary in different regions, the procedure also permits different time stepping. In such a way, the best performance attainable by the finite element method can be achieved. In this study, we estimate both of the kinetic energy error and stran energy error induced by spatial and time discretization in a consistent manner. Numerical examples are used to demonstrate the performance of the procedure.

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4관능성 에폭시 수지/불소를 함유한 에폭시 수지 블렌드 시스템의 경화거동 및 파괴인성에 관한 연구 (Studies on Curing Behavior and Fracture Toughness of Tetrafunctional Epoxy Resin/Fluorine-containing Epoxy Resin Blend System)

  • Jin, Fan-Long;Lee, Jae-Rock;Park, Soo-Jin;Shin, Jae-Sup
    • 한국복합재료학회:학술대회논문집
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    • 한국복합재료학회 2002년도 추계학술발표대회 논문집
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    • pp.273-275
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    • 2002
  • In this studies, curing behavior and mechanical properties of tetrafunctional epoxy resin (4EP)/ fluorine-containing epoxy resin (FEP) blend systems was investigated with 4, 4'-diaminodiphenol methane (DDM) as a curing agent. The cure activation energies $(E_a)$) were studied by Flynn-Wall-Ozawa's equation with dynamic DSC method. For the fracture toughness of the casting specimens, the critical stress intensity factor ($K_{IC}$) and the specific fracture energy ($G_{IC}$) were determined by fracture toughness test.

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Closed-form solution for the buckling behavior of the delaminated FRP plates with a rectangular hole using super-elastic SMA stitches

  • Soltanieh, Ghazaleh;Yam, Michael CH.;Zhang, Jing-Zhou;Ke, Ke
    • Structural Engineering and Mechanics
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    • 제81권1호
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    • pp.39-50
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    • 2022
  • Layer separation (delamination) is an essential threat to fiber-reinforced polymer (FRP) plates under dynamic, static, and fatigue loads. Under compressive load, the growth of delamination will lead to structural instability. The aim of this paper is to present a method using shape memory alloy (SMA) stitches to suppress the delamination growth in a FRP plate and to improve the buckling behavior of the plate with a rectangular hole. The present paper is divided into two parts. Firstly, a closed-form (CF) formulation for evaluating the buckling load of the FRP plate is presented. Secondly, the finite element method (FEM) will be employed to calculate the buckling loads of the plates which serves to validate the results obtained from the closed-form method. The novelty of this work is the development of the closed-form solution using the p-Ritz energy approach regarding the stress-dependent phase transformation of SMA to trace the equilibrium path. For the FEM, the Lagoudas constitutive model of the SMA material is implemented in FORTRAN programming language using a user material subroutines (VUMAT). The model is simulated in ABAQUS/Explicit solver due to the nature of the loading type. The cohesive zone model (CZM) is applied to simulate the delamination growth.