• Title/Summary/Keyword: Lead Screw

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A Study on the heat generation during implant abutment preparation (임플란트 지대주 삭제시의 발생열에 관한 연구)

  • Lee, Ho-Jin;Song, Kwang-Yeob;Jang, Tae-Yeob
    • Journal of Dental Rehabilitation and Applied Science
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    • v.19 no.1
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    • pp.27-33
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    • 2003
  • Excessive heat generation at the implant-bone interface may cause irreversible bone damage and loss of osseointegration. The effect of heat generation in vitro at the implant surface caused by abutment reduction with high-speed dental turbine was examined. Titanium-alloy abutments connected to a titanium alloy screw-implant embedded in an acrylic-resin block in a $37^{\circ}C$ water bath were prepared. Temperature changes were recorded via embedded thermocouples at the cervix and apex of the implant surface. Analysis of variance for repeated measures was used to compare seven treatment groups. Fifty seconds of continuous cutting with air and water coolant caused a mean temperature increase of $1.24^{\circ}C$ at apex and $5.77^{\circ}C$ at cervix. Similar intermittent cutting caused increase of $2.50^{\circ}C$ at apex and $1.64^{\circ}C$ at cervix. But, continuous cutting with air coolant caused a mean temperature increase of $6.47^{\circ}C$ at apex and $5.77^{\circ}C$ at cervix. Similar intermittent cutting caused increase of $6.47^{\circ}C$ at apex and $5.77^{\circ}C$ at cervix. Preparation of implant abutment does not lead to detrimental effect on peri-implant tissues provided that adequate cooling. However, without water cooling, extreme overheating could be provoked, reaching the critical temperature that would lead to irreversible bone damage within only a few seconds.

Synergetics based damage detection of frame structures using piezoceramic patches

  • Hong, Xiaobin;Ruan, Jiaobiao;Liu, Guixiong;Wang, Tao;Li, Youyong;Song, Gangbing
    • Smart Structures and Systems
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    • v.17 no.2
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    • pp.167-194
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    • 2016
  • This paper investigates the Synergetics based Damage Detection Method (SDDM) for frame structures by using surface-bonded PZT (Lead Zirconate Titanate) patches. After analyzing the mechanism of pattern recognition from Synergetics, the operating framework with cooperation-competition-update process of SDDM was proposed. First, the dynamic identification equation of structural conditions was established and the adjoint vector (AV) set of original vector (OV) set was obtained by Generalized Inverse Matrix (GIM).Then, the order parameter equation and its evolution process were deduced through the strict mathematics ratiocination. Moreover, in order to complete online structural condition update feature, the iterative update algorithm was presented. Subsequently, the pathway in which SDDM was realized through the modified Synergetic Neural Network (SNN) was introduced and its assessment indices were confirmed. Finally, the experimental platform with a two-story frame structure was set up. The performances of the proposed methodology were tested for damage identifications by loosening various screw nuts group scenarios. The experiments were conducted in different damage degrees, the disturbance environment and the noisy environment, respectively. The results show the feasibility of SDDM using piezoceramic sensors and actuators, and demonstrate a strong ability of anti-disturbance and anti-noise in frame structure applications. This proposed approach can be extended to the similar structures for damage identification.

A Study on Closed-Loop Control of a Stepping Motor for Resonance Elimination (공진배제를 위한 스템핑 모터의 폐회로제어에 관한 연구)

  • 노상현;김교형
    • Transactions of the Korean Society of Mechanical Engineers
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    • v.15 no.1
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    • pp.90-97
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    • 1991
  • A stepping motor can be driven with open-loop or closed-loop control. The major disadvantage of open-loop control is that it is subjected to resonance and instability in certain speed range, and that there is no way to check stalling or error in position. In this paper, a closed-loop control system consisting of a microcomputer, a hybrid stepping motor, a drive, a lead screw, and an encoder which is used as a position sensor is developed. A control program is programmed in assembly language for real time control and the versatile interface adapter(VIA) is used as the interface with the microcomputer. The experimental results of the stepping motor were eliminated on all kinds of inertia load, and maximum start stop pulse rate and maximum slewing pulse rate were also increased about twice respectively.

Theoretical Velocity Analysis of Micro Robot Based on Crawling Locomotive Mechanism for Pipe Inspection Micro Robot (Crawling 방식을 이용한 관 탐사용 소형 로봇의 이동속도 해석)

  • Jang, Ki-Hyun;Park, Hyun-Jun;Kim, Byung-Kyu
    • Transactions of the Korean Society of Mechanical Engineers A
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    • v.32 no.8
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    • pp.633-641
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    • 2008
  • Recently, the necessity for diagnosis and management of pipes has emerged as the issue due to contamination of water supply generated by corrosion of pipes. Although inspection has been performed with industrial endoscopes, the method has limits for full diagnosis of pipes due to the lack of working range. As a solution for this problem, many locomotive mechanisms for a micro robot with endoscope functions were proposed. In this paper, we analyze the locomotive mechanism of crawling robot proposed as locomotive device for pipe inspection. Based on a mechanical modeling of motor and micro robot inside small pipe, the theoretical formula for velocity is obtained. This derived theoretical formula is demonstrated the feasibility through the comparison with experimental result. Also, we could find the most important element influencing the moving velocity of micro robot when the robot operates in small pipe. Consequently, it is expected that this study can supply useful information to design of crawling robot to move in small pipe.

Computer Simulation and Control performance evaluation for Feedback System of Ultra Precision Positioning by using Laser Interferometer (Laser Interferometer를 이용한 초정밀위치결정 피드백시스템의 컴퓨터 시뮬레이션 및 제어성능 평가)

  • Kim, Jae-Yeol;Kim, Young-Seok;Yoon, Sung-Un;Kwac, Lee-Ku;Han, Jae-Ho;You, Sin
    • Proceedings of the Korean Society of Machine Tool Engineers Conference
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    • 2001.10a
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    • pp.68-74
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    • 2001
  • This system is composed of fine and coarse apparatus, measurement system and control system. Piezoelectric actuator is designed for fine positioning. We make a study of precision apparatus that is used in the various industrial machine. The study was carried out to develope a precision positioning apparatus, consisting of servo motor and piezoelectric actuator. Coarse positioning using lead screw is drived by servo motor. Control system output a signal from laser interferometer to amplifier of servo motor and piezoelectric actuator after digital signal processing(DSP). Resolution of this apparatus measure with laser interferometer. In this study, design method and control system with ultra precision position apparatus are researched. As the first step, we have estimated for control performance and system stability before an actual apparatus is manufactured by MATLAB with SIMULINK including various functions those are composed of pre-design and system modeling.

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Design and Dynamic Walking Simulation of a Biped Robot (이족보행로봇의 설계와 동적보행을 위한 모의실험)

  • Park, In-GYu;Youm, Young-Il
    • Proceedings of the KIEE Conference
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    • 2001.11c
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    • pp.87-90
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    • 2001
  • This paper presents a design of new type biped robot and dynamic walking simulation for this system. The robot is distinguished from other one by which has a parallel mechanism type trunk and lead-screw type actuators to drive the joints of the trunk, knee and ankle. The basic consideration on the design is that it is able to accommodate itself to human's daily environments without any other modification of around and also to operate its upper limbs more smoothly with a spine functional trunk. It is designed according to a human with about 130 cm height and about 30 kg weight. And it also is able to dynamically walk on an even ground. It has constructed with total 14 DOFs which have two legs, a hip, and a trunk. The joints of each leg and trunk are adopted with a parallel structure which has good kinematic characteristics and take light weight. To test of the capacity of joint actuators and to analysis of the dynamic properties of the biped robot, optimized trunk trajectory is determined by means of an approximated FFT method based on ZMP criteria, and dynamic simulation is performed using DADS with a 1.1 time/step velocity on the even ground during four steps.

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Computer Simulation and Control Performance Evaluation for Feedback System of Ultra Positioning by using Laser Interferometer (Laser Interferometer를 이용한 초정밀위치결정 피드백시스템의 컴퓨터 시뮬레이션 및 제어성능 평가)

  • 김재열;이규태;곽이구;한재호;김창현
    • Transactions of the Korean Society of Machine Tool Engineers
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    • v.11 no.1
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    • pp.17-25
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    • 2002
  • This system is composed of fine and coarse apparatus, measurement system and control system. Piezoelectric actuator is designed far fee positioning. We make a study of precision apparatus that is used in the various industrial machine. The study was carried out to develope a precision positioning apparatus, consisting of servo motor and piezoelectric actuator Coarse positioning using lead screw is thrived by servo motor. Control system output a signal from laser interferometer to amplifier of servo motor and piezoelectric actuator after digital signal processing (DSP). Resolution of this apparatus measure with laser interferometer. In this study, design method and control system with ultra precision position apparatus are researched. As the first step, we have estimated for control performance and system stability before an actual apparatus is manufactured by MATLAB with SIMUUNK including various frictions those are composed of pre-design and system modeling.

Ankle Syndesmotic Injury (족근 관절 경비 인대 결합 손상)

  • Gwak, Heui-Chul;Kwon, Young-Wook
    • Journal of Korean Foot and Ankle Society
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    • v.15 no.4
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    • pp.187-194
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    • 2011
  • Ankle injuries may involve the distal tibiofibular syndesmosis and can be associated with a variable degree of trauma to the soft tissue and osseous structures that play an important role in ankle joint stability. Ankle syndesmotic injury may occur solely as a soft tissue injury or in association with variable ankle fractures. Ankle syndesmotic injury does not necessarily lead to ankle instability; however, the coexistence of deltoid ligament injury critically destabilizes the ankle joint. The prevalence of these injuries may be higher than previously reported. The diagnosis of syndesmotic injury as not always easy because isolated ankle sprains may be missed in the absence of a frank diastasis and syndesmotic instability may be unnoticed in the presence of bimalleolar ankle fractures. Controversies arise at almost every phase of treatment includings : type of fixation(screw size, type of implant), number of cortices required for fixation and of need for hardware removal. Regardless of controversies, the most important goal should be restore and maintain the normal tibiofibular relationship to allow for healing of the ligamentous structures of the syndesmosis.

마이크로 구동 요소부품의 PECVD를 이용한 플라즈마 질화 공정의 기계적특성 연구

  • Lee, Sang-Min;Kim, Gang-Sam;An, Gyeong-Jun;Lee, Ji-Hwan
    • Proceedings of the Korean Vacuum Society Conference
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    • 2013.02a
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    • pp.301-301
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    • 2013
  • 구동형 부품(Actuated component)중의 하나인 LeadScrew는 이송장치를 구성하는 핵심 부품으로 소재로는 탄소강, 합금강, 스테인레스강 등이 주로 이용된다. 다양한 IT기기의 정밀 이송 및 고속 구동에 사용되며, 제품의 성능을 결정하는 중요 핵심 부품으로 사용되고 있다. IT기기용 구동 요소 부품은 정밀 가공성의 제약으로 내식성이 우수한 스테인레스강 소재보다는 일반적으로 소재비가 저렴하고 가공성이 우수한 탄소강 소재를 사용하게 되며, 위 소재를 사용하면 대기중의 수분등에 의한 부식환경에서 쉽게 부식되어 부식방지를 위한 표면처리 기술개발이 필요하다.또한, 구동형 부품은 부품 상호간의 심한 마찰 등과 같은 가혹한 조건에 노출되어, 부품의 내마모성 및 표면 경도등을 향상시켜 부품의 수명을 연장하고자 한다. 그러기 위해 선 표면경도, 내마모성, 내식성 등의 다양한 기능이 요구되며, 성능을 만족시키기 위해서 열표면처리 공정을 확인하고자 한다.본 연구에서는 냉간압조용 강선인 SWCH계열 표면에 PECVD 장치로 플라즈마 질화공정을 이용하여 동일조건(압력, Gas flow, Power)하에서 $500{\sim}550^{\circ}C$의 온도 범위 내에서 30~300 min의 시간 조건으로 실험을 진행하였다. 위 시험편으로 XRD를 통해 각 플라즈마 질화 공정 조건에 따른 상 변화를 확인하였고, 염수분무테스트를 통해 내식성을 확인하였다. 표면경도 및 단면경도를 통한 실용질화층을 확인하고, 마모테스트를 통하여 마찰계수를 확인하여 표면경도, 내마모성, 내식성을 충족하는 공정에 대한 실험을 진행하였다.

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A Dual-mode Pico-positioning System using Active Aerostatic Coupling

  • Mizumoto, Hiroshi;Yabuta, Yoshito;Arii, Shiro;Yabuya, Makoto;Tazoe, Yoichi
    • International Journal of Precision Engineering and Manufacturing
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    • v.8 no.2
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    • pp.32-37
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    • 2007
  • This paper proposes a dual-mode ultra precision positioning system for machine tools and measuring machines. The objective was to position a machine table with a picometer order of resolution, i.e., pico-positioning. A twist-roller friction drive (TFD) was used in coarse-mode positioning. The TFD, which was driven by an AC servomotor, is a kind of lead screw in mechanical terms, and several centimeters of machine table movement was controlled with a nanometer order of positioning resolution. To eliminate lateral vibration caused by the TFD, an active aerostatic coupling driven by piezoelectric actuators was inserted between the TFD and the machine table. This active aerostatic coupling was also applied as a feed drive device for fine-mode positioning; in the fine mode, the positioning resolution was 50 pm. Factors influencing pico-positioning, such as how noise from displacement sensors and vibrations in the aerostatic guideway affect positioning resolution, are discussed.