• 제목/요약/키워드: Spring Force

검색결과 861건 처리시간 0.034초

Preangulated TMA T-loop spring의 적용 위치 변화에 따른 견치의 초기 응력 분포에 대한 유한 요소법적 연구 (A FEM study about the initial stress distribution on canine altered by the application point of preangulated TMA T-loop spring)

  • 김정민;차경석;이진우
    • 대한치과교정학회지
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    • 제29권5호
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    • pp.521-534
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    • 1999
  • 본 연구는 상악 견치, 상악 제 2 소구치, 상악 제 1 대구치의 유한요소 모델을 제작하였고, $0.018{\times}0.025$ 인치 Stainless steel wire를 고정원 강화를 위해 상악 제 2소구치와 제 1대구치에 위치시켰다. $0.017{\times}0.025$ 인치 T-loop spring의 전후방적 위치에 따른 응력 분포를 알아보기 위해 T-loop spring의 중간이 견치와 제 1대구치 거리의 중간에 위치하는 것과, 2mm전방에 위치하는 것, 2mm후방에 위치하는 것의 3가지 유한 요소모델을 제작하였다. 이 T-loop spring을 6mm 강제변위시켜 발생하는 힘을 각 치아에 적용시켰으며, 견치에서 발생하는 힘과 응력에 대하여 다음과 같은 결론을 얻었다. 1. 3가지 형태 모두에서 유사한 크기의 후방견인력을 보였다. 2. 3가지 형태 모두에서 유사한 크기와 비슷한 형태의 응력 분포를 보였다. 3. 3가지 형태 모두에서 회전 중심은 치근단 2/3 부분에 보였다. 4. 2mm 전방 위치된 T-loop spring과 2mm 후방 위치 된 T-loop spring에 각각 함입력과 정출력을 보이지만 그 크기가 작아서 응력 양상에 영향을 주지 못한다.

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기능성 스프링신발과 일반운동화의 운동역학적 비교분석 (Kinetic Differences between Normal-design Running Shoes and Spring-loaded Running Shoes)

  • 이종훈
    • 한국운동역학회지
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    • 제19권3호
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    • pp.581-592
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    • 2009
  • 본 연구는 일반운동화와 스프링신발의 운동역학적 분석을 통해 일상적인 보행에서 스프링신발이 갖는 특성을 알아보기 위해 실시하였다. 이를 위해 정상족궁인 30-40대 여성 12명을 대상으로 2종류의 실험용 신발(스프링신발)과 비교용 신발(일반운동화)을 착용시킨 후 1.7m/s의 보행속도에서 지면반력기와 EMG, 적외선 카메라를 이용한 운동 역학적 분석을 실시하였다. 분석 결과 지면반력 분석에서는 제 1정점과 제 2정점에서 실험용신발이 일반운동화에 비해 큰 전후성분값을 나타냈다. 근전도분석에서는 대퇴직근의 활동이 스프링 신발을 신었을 때 증가하는 것으로 나타났다. 후족각에서 스프링 신발이 착지 시와 제1정점간에 일반화보다 크며 발목 관절을 중심으로 내측으로 회전하는 회내 운동을 적절하게 제어 하면서 이지 시에 후족 각의 감소에 영향을 미치는 것으로 나타났다. 따라서 스프링신발은 일반 신발에 비해 보행 시 무릎 신전근들의 근력 향상에는 도움을 줄 수 있을 것으로 판단된다.

이중 나선 구조 형상기억합금 스프링 거동 예측 (The Prediction of Nonlinear behavior of Double Coil Shape Memory Alloy Spring)

  • 이종구;안성민;조규진;조맹효
    • 한국전산구조공학회논문집
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    • 제25권4호
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    • pp.347-354
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    • 2012
  • 형상기억합금의 복원력 및 복원량은 열 하중 및 기계적 하중으로 인한 마르텐사이트 상에서 오스테나이트 상으로의 상변이에 의한 상변형률 발생에 기인한다. 복원력 및 복원량은 초기 형상 및 하중 부여 방식에 따라 차이가 발생하는데 적절한 설계 전략없이 상변형률에만 의지한 경우 큰 복원력은 발생할 수 있어도 큰 복원량을 기대하기는 어렵다. 이는 형상기억합금의 큰 복원력과 작은 복원량 간의 비대칭성에 기인하며 형상기억합금의 효율적인 이용에 걸림돌이 된다. 본 연구에서는 형상기억합금의 상변이로 발생하는 복원량을 극대화하는 방안으로 형상기억합금 선이 이중으로 감겨있는 이중 나선 구조 형상기억합금 스프링을 제안한다. 그리고 열 하중에 의해 발생하는 복원량을 예측하고 단일 나선 구조 형상기억합금 스프링과 비교 분석하여 이중 나선 구조 형상기억합금 스프링이 단일 나선 구조 형상기억합금 스프링보다 성능 비대칭성을 보다 완화시킬 뿐만 아니라 복원력 대비보다 큰 복원량을 가짐을 보였다.

스프링 힘에 의한 배합부가 단조 공정의 3차원 유한요소해석 (Three-dimensional finite element analysis of forging processes with back pressure exerted by spring force)

  • 장성민;김민철;이민철;전병윤;전만수
    • 한국소성가공학회:학술대회논문집
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    • 한국소성가공학회 2009년도 추계학술대회 논문집
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    • pp.470-473
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    • 2009
  • In this paper, back pressure forging processes of which back pressures are exerted by mechanical forces including spring reaction are simulated by three-dimensional finite element method. The basic three-dimensional approach extended from two-dimensional approach is accounted for. An axisymmetric backward and forward extrusion process having a back pressing die, which is exposed to oscillation of forming load due to variation of reduction ratios with stroke and its related frequent variation of major deforming region, is simulated by both two and three dimensional approaches to justify the presented approach by their comparison. A three-dimensional forging process having a back pressing die attached to the punch by a mechanical spring is simulated and the results are investigated to reveal accuracy of the presented approach.

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Floated Wafer Motion Modeling of Clean Tube system

  • Shin, Dong-Hun;Yun, Chung-Yong;Jeong, Kyoo-Sik;Choi, Chul-Hwan
    • 제어로봇시스템학회:학술대회논문집
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    • 제어로봇시스템학회 2004년도 ICCAS
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    • pp.1264-1268
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    • 2004
  • This paper presents a wafer motion modeling of the transfer unit and the control unit in the clean tube system, which was developed as a means for transferring the air-floated wafers inside the closed tube filled with the super clean airs. The motion in the transfer unit is modeled as a mass-spring-damper system where the recovering force by air jets issued from the perforated plate is modeled as a linear spring. The motion in the control unit is also modeled as another mass-spring-damper system, but in two dimensional systems. Experiments with a clean tube system built for 12-inch wafers show the validity of the presented force and motion models.

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스풀밸브를 이용한 축압식 연료분사계의 작동특성에 관한 연구 (A Study on the Characteristics of Accumulator Type Fuel Injection System with Spool Valve)

  • 최영하;이장희;윤석주
    • 한국분무공학회지
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    • 제6권1호
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    • pp.1-8
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    • 2001
  • Fuel injection system is very important in diesel combustion. Recently electronic control of fuel injection system and common rail systems are introduced to reduce the emission and to increase the energy efficiency from diesel engine by control of the injection timing and duration. In this study, evaluation possibility of the system for electronic control by spool valve, one of the accumulator type injection systems with spool valve using solenoid was composed and the operating characteristics were investigated to evaluate the effects of spring coefficient, initial spring force, solenoid driving time, fuel supply pressure on the injection timing and duration. We could confirm the capability that diesel injection was electronically controlled by spool valve.

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스프링 힘에 의한 배압부가 단조 공정의 3차원 유한요소해석 (Three-Dimensional Finite Element Analysis of Forging Processes with Back Pressure Exerted by Spring Force)

  • 장성민;김민철;이민철;전병윤;전만수
    • 소성∙가공
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    • 제19권5호
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    • pp.273-276
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    • 2010
  • In this paper, back pressure forging processes of which back pressures are exerted by mechanical forces including spring reaction are simulated by three-dimensional finite element method. The basic three-dimensional approach extended from two-dimensional approach is accounted for. An axisymmetric backward and forward extrusion process having a back pressing die, which is exposed to oscillation of forming load due to variation of reduction ratios with stroke and its related frequent variation of major deforming region, is simulated by both two and three dimensional approaches to justify the presented approach by their comparison. A three-dimensional forging process having a back pressing die attached to the punch by a mechanical spring is simulated and the results are investigated to reveal accuracy of the presented approach.

EGR 밸브 액추에이터 모델링 (Modeling of EGR Valve Actuator)

  • 서은성;신휘범
    • 전력전자학회논문지
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    • 제22권5호
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    • pp.390-396
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    • 2017
  • In this paper, an exact mathematical model is derived for an exhaust gas recirculation (EGR) valve actuator driven by an H-bridge converter. Particularly, a spring torque model of the EGR valve is proposed. The spring torque model is proposed by converting spring force and Coulomb frictional force in linear motion into a rotational torque. Moreover, a mechanical end-stop model was proposed by the valve mechanism. The accuracy of the proposed model is verified by comparing the experimental results with the simulated results.

Optimum stiffness values for impact element models to determine pounding forces between adjacent buildings

  • Jaradat, Yazan;Far, Harry
    • Structural Engineering and Mechanics
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    • 제77권2호
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    • pp.293-304
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    • 2021
  • Structural failure due to seismic pounding between two adjacent buildings is one of the major concerns in the context of structural damage. Pounding between adjacent structures is a commonly observed phenomenon during major earthquakes. When modelling the structural response, stiffness of impact spring elements is considered to be one of the most important parameters when the impact force during collision of adjacent buildings is calculated. Determining valid and realistic stiffness values is essential in numerical simulations of pounding forces between adjacent buildings in order to achieve reasonable results. Several impact model stiffness values have been presented by various researchers to simulate pounding forces between adjacent structures. These values were mathematically calculated or estimated. In this study, a linear spring impact element model is used to simulate the pounding forces between two adjacent structures. An experimental model reported in literature was adopted to investigate the effect of different impact element stiffness k on the force intensity and number of impacts simulated by Finite Element (FE) analysis. Several numerical analyses have been conducted using SAP2000 and the collected results were used for further mathematical evaluations. The results of this study concluded the major factors that may actualise the stiffness value for impact element models. The number of impacts and the maximum impact force were found to be the core concept for finding the optimal range of stiffness values. For the experimental model investigated, the range of optimal stiffness values has also been presented and discussed.

PID 제어기에 의한 소형 로봇용 그리퍼의 힘 제어 (PID Force Control of a miniature robot Gripper)

  • 홍동표
    • 한국생산제조학회지
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    • 제8권2호
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    • pp.44-49
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    • 1999
  • This paper is concerned with the theoretical and experimental study on the force conrtrol of a miniature robotic gripper. The gripper is an uniform flexible cantilever equipped with a distributed set of compact force sensor. As an actuator piezoelectric acturator, piezoelectric acturator is fixed with cupper plate at which the beam is clamped. The mathematical model of the assembled electro-mechaincal system is developed. The force sensor is described by a set of concentrated mass-spring system. The formulated equations of motion are applied to he study of a control problem where the gripper is commanded to grip an object The usefulness of the PID control technique is verified by experiment.

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