• 제목/요약/키워드: 5-axis microscribe

검색결과 3건 처리시간 0.021초

버핑 로봇의 오프라인 경로 프로그래밍용 5축 마이크로스크라이브 개발 및 응용 (Development of 5-Axis Microscribe System for Off-Line Buffing Robot Path Programming and Its Application)

  • 노태정
    • 한국산학기술학회논문지
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    • 제9권1호
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    • pp.1-8
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    • 2008
  • 신발 버핑공정에서 로봇 메카니즘과 같은 5축 마이크로스크라이브에 의하여 신발창 형상을 따라서 버핑 로봇 경로를 오프라인으로 프로그래밍하는 방법을 제안한다. 개발한 마이크로스크라이브 시스템은 턴테이블이 부착된 5축 로봇링크, 신호처리장치, PC 및 응용 소프트웨어 프로그램으로 구성되어 있다. 많은 조인트를 가진 마이크로스크 라이브를 신발창 표면을 따라 이동시킴으로써 로봇 경로가 만들어진다. 개발시스템은 마이크로스크라이브 암의 회전에 해당되는 엔코더 펄스 값을 환산하며, 이 각도 값을 신호처리장치를 통하여 PC로 전송한다. Denavit-Hartenberg's(D-H) 직접 키네메틱스가 마이크로스크라이브 조인트 각도 값으로서 글로벌 좌표값을 만드는데 사용된다. 마이크로스크라이브의 키네메틱스 문제는 D-H 표현에 의하여 효과적이고 시스템적으로 해결된다. 개발시스템은 D-H식에 의하여 계산된 좌표 값으로서 신발 갑피 위에 버핑 게이지 라인을 그릴 수 있으며, 또한 신발 갑피 위에 각 점들과 그 점에 수직인 벡터와 결합된 2개의 외곽 라인으로서 로봇 경로를 얻는다. 개발시스템을 FMS의 버핑 로봇에 적용함으로써 실제적인 버핑 로봇의 경로를 프로그래밍하는데 효과적으로 사용될 수 있다.

A study on Development of Footwear Shape Scanner for Off-Line Robot Path Programming

  • Lho, Tae-Jung;Song, Se-Hoon;Ju, Hyun-Woo;Lee, Jung-Wook;Cho, Jae-Kung;Ahn, Hee-Tae
    • 제어로봇시스템학회:학술대회논문집
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    • 제어로봇시스템학회 2003년도 ICCAS
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    • pp.808-812
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    • 2003
  • We need a lot of manpower and we can cut down a labor cost by applying industrial robots the footwear bonding automation process. In this study, we suggest how to program off-line robot path along a shoe's outsole shape in the footwear bonding process by 5-axis microscribe system like robot arms. This microscribe system development consists 5-axis microscribe mechanics, signal processing circuit, and PC with software. It is the system for making database of a shoe's outsole through the movement of a microscribe with many joints. To do this, first read 5-encoders' pulse values while a robot arm points a shoe's outsole shape from the initial status. Then, calculate a relative shoe's outsole by Denavit-Hatenberg's (D-H) direct Kinematics of known length of links and coordinate values. Next, calculate the encoders' pulse values of the robot arm's rotation and transmitting the angle pulse values to the PC through a circuit. Finally, it is able to display a shoe's outsole at real-time by computing the Denvavit-Hantenberg's (D-H) direct kinematics in the PC. With the coordinate values calculated above, we can draw a bonding gauge-line on the upper. Also, we can make off-line robot path programming compute a shoe's bonding area on the upper. These results will be effectively applied for programming a robot path on off-line and automatically.

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A Study on Development of Off-Line Path Programming for Footwear Buffing Robot

  • Lho, Tae-Jung;Kang, Dong-Joon;Che, Woo-Seung;Kim, Jung-Young;Kim, Min-Sung
    • 제어로봇시스템학회:학술대회논문집
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    • 제어로봇시스템학회 2004년도 ICCAS
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    • pp.1469-1473
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    • 2004
  • We suggest how to program off-line robot path along shoes' outsole shape in the footwear buffing process by a 5-axis microscribe system like robot arms. This microscribe system developed consists a 5-axis robot link with a turn table, signal processing circuit, PC and an application software program. It makes a robot path on the shoe's upper through the movement of a microscribe with many joints. To do this, first it reads 5-encoder's pulse values while a robot arm points a shoes' outsole shape from the initial status. This system developed calculates the encoder pulse values for the robot arm's rotation and transmits the angle pulse values to the PC through a circuit. Then, Denavit-Hartenberg's(D-H) direct kinematics is used to make the global coordinate from robot joint one. The determinant is obtained with kinematics equation and D-H variable representation. To drive the kinematics equation, we have to set up the standard coordinates first. The many links and the more complicated structure cause the difficult kinematics problem to solve in the geometrical way. Thus, we can solve the robot's kinematics problems efficiently and systematically by Denavit-Hartenberg's representation. Finally, with the coordinate values calculated above, it can draw a buffing gauge-line on the upper. Also, it can program off-line robot path on the shoes' upper. We are subjected to obtaining shoes' outline points, which are 2 outlines coupled with the points and the normal vector based on the points. These data is supposed to be transformed into .dxf file to be used for data of automatic buffing robot. This system developed is simulated by using spline curves coupled with each point from dxf file in Autocad. As a result of applying this system to the buffing robot in the flexible footwear manufacturing system, it can be used effectively to program the path of a real buffing robot.

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