• 제목/요약/키워드: Torque arm

검색결과 124건 처리시간 0.023초

드럼커터 어태치먼트의 작용력에 대한 현장시험 (Field Test for Estimation of Acting Force on the Drum Cutter Attachment)

  • 최순욱;이철호;강태호;장수호
    • 터널과지하공간
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    • 제32권6호
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    • pp.373-385
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    • 2022
  • 굴착기의 어태치먼트 형태로 사용하는 드럼커터는 현장에서 다양한 작업이 가능한 굴착기와 연계하여 사용하는 점에서 그 효용이 크다. 본 연구에서는 굴착기에 설치된 드럼커터 어태치먼트를 이용하여 노출된 암반사면을 대상으로 굴착 시 나타나는 유압과 변형률을 측정하여 드럼커터에 작용하는 하중과 토크를 추정하였다. 굴착기의 붐과 암의 작업각도와 sumping, lowering작업에 따라 8가지 작업모드로 구분하고 작업모드에 따른 유압과 작용력 변화를 분석한 결과, 유압과 유량은 드럼커터 어태치먼트의 제작사양에서 고려된 범위 내에서 문제없이 구동될 수 있음을 확인하였다. 드럼커터 어태치먼트에 작용하는 평균 하중과 토크는 제작사양의 범위 안에 있었지만, 최대하중은 제작사양의 4배까지 나타났다. 높은 지반강도의 영향으로 sumping이 적정하게 이루어지지 못한 점과 일부 위치에서 불연속면의 포함 등으로 인하여 굴착기의 붐과 암의 각도에 따른 하중과 토크의 경향을 발견하지 못하였다. 그러나 해당 결과는 높은 강도의 지반을 굴착할 경우에 드럼커터 어태치먼트에 나타나는 하중과 토크의 범위를 파악하는데 사용될 수 있을 것으로 판단된다.

ITO 터치 패널 이용한 교시 제어 연구 (Development of Direct Teaching Control using ITO Touch Panel)

  • 윤재석;남상엽;김기은;김동한
    • 전자공학회논문지
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    • 제52권3호
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    • pp.206-212
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    • 2015
  • 본 논문에서는 ITO 터치 패널 센서를 로봇의 피부로 이용하여 로봇 팔을 제어하는 물리적 인간-로봇 상호작용 방법을 제안한다. 사람과 로봇간의 물리적 상호작용을 구현하기 위해서는 힘/토크 센서를 사용하는 방법과 작은 소자 타입의 센서를 배치하여 만든 촉각 센서를 사용하는 방법이 연구되고 있다. 하지만, 이러한 센서들은 가격적인 측면이나 성능적인 측면에서 장단점이 존재하며, 본 연구에서는 터치 패널을 로봇의 피부로 사용하여 물리적 상호작용을 하는 방법을 제안하고 전체적인 시스템을 구축하여 실험을 통해 힘/토크 센서의 정확성과 소자 타입 센서의 경제성을 보이고자 한다. 실험은 터치 패널에서 기준점을 잡아 제스처를 생성하여 로봇 팔을 제어하는 방법과 엔드이펙터에 장착하여 로봇 팔을 제어하는 방법에 대해 진행하였다. 이러한 실험을 통해 터치 패널을 이용한 교시 제어의 가능성도 확인하였다.

Fatigue Life Prediction of Crank-type Rotavator

  • Kim, Dae-Chun;Park, Young-Jun;Lee, Geun-Ho
    • Journal of Biosystems Engineering
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    • 제40권4호
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    • pp.305-313
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    • 2015
  • Purpose: This study was performed to predict the fatigue life of a crank-type rotavator operated in domestic soil conditions using Recurdyn$^{(R)}$, a dynamic analysis program. Methods: Torque on the PTO shaft was measured using experiments conducted on the uplands and paddy fields in Korea. On the basis of the experimental and analytical results, the fatigue life of the crank-type rotavator was predicted by constructing an S-N curve according to the GL (Germanischer Lloyd Wind Energie GmbH) guideline. Results: The torques experienced by the PTO shaft in the paddy soil and the uplands were in the range of 472~797 N m and 313~430 N m, respectively, for every condition. In case of load condition, the peak torques (846 N m, 770 N m) were applied for severe conditions, resulting in a maximum (von Mises) stress of 75 MPa at the crank arm. The fatigue life of the crank-type rotavator was predicted to be 1,167 h that satisfies the target value of 1,110 h, by substituting the analysis results into an S-N curve of crank arm. Conclusions: The fatigue life of the crank-type rotavator was within the target life for the studied soil conditions; however, further field experiments for various soil conditions would be required to verify the prediction results.

단일물체 조작을 위한 두 협조 로봇의 협조제어 (A Coordination Control Methodlolgy for Two Cooperating Arms Handling a Single Object)

  • 여희주
    • 제어로봇시스템학회논문지
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    • 제6권2호
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    • pp.190-196
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    • 2000
  • A hybrid position/force control scheme to regulate the force and position by dual arms is proposed where two arms are treated as one rm in a kinematic viewpoint. The force error calculated from the information of two force/torque sensors attached to the end of each arm is transferred to minimum configuration space coordinates and then is distributed to total system joint coordinates, The position adjustment at the total con-figuration coordinates is computed based on the effective compliance matrix with respect to total joint coordinates which is obtained by coordinate transformation between the task coordinates and the total joint coordinates. The proposed scheme is applied to sawing task. When the trajectory of the saw is planned to follow a line in a horizontal plane 2 position parameters are to be controlled(i.e., two translational positions) Also a certain level of contact force has to be controlled along the vertical direction(i.e. minus z-direction) not to loose the contact with the object to be sawn. We experimentally show that the performance of the velocity and force response are satisfactory. The proposed hybrid control scheme can be applied to arbitrary two cooperating arm system regardless of their kinematic structure and the number of actuated joints.

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고온 환경 단조 공정자동화를 위한 6축 수직다관절 로봇의 기구학 및 동특성 해석에 관한 연구 (A Study on Kinematics and Dynamics Analysis of Vertical Articulated Robot with 6 axies for Forging Process Automation in High Temperatures Environments)

  • 조상영;김민성;구영목;원종범;강정석;한성현
    • 한국산업융합학회 논문집
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    • 제19권1호
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    • pp.10-17
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    • 2016
  • In general, articulated robot control technology is limited to the design of robot arm control systems considering each joint of the robot joint as a simple servomechanism. This method describes the varying dynamics of a manipulator inadequately because it neglects the motion and configuration of the whole arm mechanism. The changes of the parameters in the controlled system are significant enough to render conventional feedback control strategies ineffective. This basic control system enables a manipulator to perform simple positioning tasks such as in the pock and place operation. However, joint controllers are severely limited in precise tracking of fast trajectories and sustaining desirable dynamic performance for variations of payload and parameter uncertainties. In many servo control applications the linear control scheme proposes unsatisfactory, therefore, a need for nonlinear techniques that increasing. for Forging process automation.

신체측정치수를 적용하여 다중회귀 분석을 통한 위팔두갈래근 등장성 운동의 근지구력시간 예측모델 연구 (Prediction Model of Endurance Time to Isotonic Contraction Exercise for Biceps Brachii using Multiple Regression Analysis with Personal Factors and Anthropometric Data)

  • 정주영;이상식
    • 한국정보전자통신기술학회논문지
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    • 제8권2호
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    • pp.178-186
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    • 2015
  • 근지구력시간은 근피로를 평가하는 매우 중요한 지시자이다. 근지구력 시간을 직접 측정할 경우 근골격계 손상의 위험이 있다. 따라서 본 연구에서는 근지구력시간을 개인요소와 신체측정치수의 간접측정으로 예측할 수 있는 모델을 제시하려고 한다. 초기에는 개인요소인 성칭과 연령이 근지구력시간의 예측에 상관없다는 결과가 있었지만, 최근에는 팔의 중력토크(GTA, gravitational torque of the horizon arm, stretched arm)와 최대자율수축강도(MVC, maximum voluntary contraction) 등을 독립변수 또는 예측변수로 적용하여 근지구력시간을 예측하였다. 본 연구에서는 등장성 운동 시 개인요소와 신체측정치수를 이용하여 근지구력시간을 예측할 수 있는 변인들에 관하여 연구하였다. 총 25명의 피검자가 자원하여 10%,20%,30%,40% 그리고 50%MVC 강도의 등장성 운동을 수행하였다. 그 후 회귀분석을 통해 산출된 상관계수를 비교하였으며, 그 결과 다중회귀모델에서 유의성 있는 상관계수가 있었으며 근지구력시간을 예측하는 변인으로써 유용함을 알 수 있었다.

볼링 투구동작의 운동역학적 연구 (Biomechanical Analysis of a Bowling Swing)

  • 이해명;이성철;이해동
    • 한국운동역학회지
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    • 제16권3호
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    • pp.53-63
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    • 2006
  • The general objective of this study was to investigate biomechanical characteristics of bowling swing using three-dimensional cinematography. This study focused specifically on movements of the upper body segments during a bowling swing. Eight elite female bowling players participated in this study. Subjects performed bowling swing and their performance was sampled at 60 frame/sec using two high-speed video cameras with a synchronizer. After digitizing images from two cameras, the two-dimensional coordinates were used to produce three-dimensional coordinates of the 12 body segments (20 joint reference makers). The obtained three-dimensional coordinates were fed to a custom-written kinematic and kinetic analyses program (LabView 6.1, National Instrument, Austin, TX, USA). The analyses determined the linear and angular kinematic variables of the body segments with which joint force and torque of the lower and upper trunks and the shoulder were estimated based on the Newton-Euler equations. It was found that during the bowling swing the peak linear velocities of the body segments were reached in sequence the trunk, the shoulder, the elbow, the wrist, and the bowl. This result indicates that linear momentum of the lower body and the trunk transmits to the arm segment during the bowling swing. The joint torques of the torso and the arm occurred almost simultaneously, indicating that bowling swing seem to be a push-like motion, rather than a proximal-distal sequence motion in which many of throwing motions are categorized. The ultimate objective of the bowling swing is to release a heavy-weight bowl with power and consistency. Therefore, the bowling swing observed in this study well agrees with that bowlers use the stepping to increase the linear velocity of the bowl, the simple pendulum system and the push-like segmental motion in the torso and the arm segment to enhance the power at the release of the bowl.

물체의 효율적인 이송을 위한 양팔 로봇의 최적 자세 (Optimization of Dual-arm Configurations for Efficient Handling of Objects)

  • 박치성;하현욱;손준배;이장명
    • 로봇학회논문지
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    • 제6권2호
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    • pp.130-140
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    • 2011
  • This paper proposes an optimal posture for the task-oriented movement of dual arm manipulator. A stability criterion function which consists of three kinds of feature-representative parameters has been utilized to define the optimal posture. The first parameter is the force which is applied to the object. The torque of each joint and position of arm are attained from the current sensor and encoder, respectively. From these two data, the applied force to an object is estimated using sum of vectors of the joint torques estimated from the measured current. In order to investigate the robustness of each posture, the variation of the end-effector from the encoder information has been utilized as the second parameter. And for the last parameter for the optimality, the total energy consumption has been used. The total consuming energy of each posture can be computed from the current information and the battery voltage. The proposed robot structure consists of a mobile inverted pendulum and dual manipulators. In order to define the optimal posture for the each object, external disturbances are applied to the mobile inverted pendulum robot and the first and second parameters are investigated to find the optimal posture among the pre-selected most representative postures. Finally, the proposed optimal posture has been verified by the proposed stability criterion function which consists of total force to the object, the fluctuation of the end-effector position, and total energy consumption. The effectiveness of the proposed algorithms has been verified and demonstrated through the practical simulations and real experiments.

Comparison of inclination and vertical changes between single-wire and double-wire retraction techniques in lingual orthodontics

  • Hung, Bui Quang;Hong, Mihee;Yu, Wonjae;Kyung, Hee-Moon
    • 대한치과교정학회지
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    • 제50권1호
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    • pp.26-32
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    • 2020
  • Objective: The Heat Induction Typodont System (HITS), used in some recent studies, has a distinct advantage over previous tooth movement simulation methods. This study aimed to compare inclination and vertical changes between the single-wire and double-wire techniques during en masse retraction with different lengths of lever arms in lingual orthodontics using an upgraded version of the HITS. Methods: Duet lingual brackets, which have two main slots, were used in this study. Forty samples were divided into four groups according to the length of the lever arm (3-mm or 6-mm hook) and the retraction wire (single-wire or double-wire). Four millimeters of en masse retraction was performed using lingual appliances. Thereafter, 3-dimensional-scanned images of the typodont were analyzed to measure inclination and vertical changes of the anterior teeth. Results: Incisor inclination presented more changes in the single-wire groups than in the double-wire groups. However, canine inclination did not differ between these groups. Regarding vertical changes, only the lateral incisors in the single-wire groups presented significantly larger values than did those in the double-wire groups. Combining the effect of hook lengths, among the four groups, the single-wire group with the 3-mm hook had the highest value, while the double-wire group with the 6-mm hook showed the least decrease in crown inclination and extrusion. Conclusions: The double-wire technique with an extended lever arm provided advantages over the single-wire technique with the same lever arm length in preventing torque loss and extrusion of the anterior teeth during en masse retraction in lingual orthodontics.

고온 환경 단조공정 자동화를 위한 수직다관절 로봇의 실시간 작업경로 제어에 관한 연구 (A Study on Real Time Working Path Control of Vertical Articulated Robot for Forging Process Automation in High Temperature Environments)

  • 조상영;김민성;도기훈;한성현;하언태;심현섭;임창식
    • 한국산업융합학회 논문집
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    • 제20권1호
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    • pp.34-48
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    • 2017
  • This study proposes a new approach to control a trajectory control of vertical type articulated robot arm with six revolution joints by computed torque method for manufacturing process automation. The proposed control scheme takes advantage of the properties of the fuzzy controllers. The proposed method is suitable to control of the trajectory and path control in cartesian space for vertical type articulated robot manipulator for forging manufacturing process automation. The results is illustrated that the proposed fuzzy computed torque controller is more stable and robust than the conventional computed torque controller. This study is included with an analytical methodology of inverse kinematic computation for 6 DOF manipulators. And an intelligent PID based on feed forward fuzzy control structure is applied to control the working path control with disturbances caused by uncertainty parameters of the manipulator dynamic model. Lastly, the validity of proposed is verified by simulations and experiments.