• Title/Summary/Keyword: Portable welding robot

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Development of a Motion Simulator for Portable Type Welding Robot Based on Adaptive Control (적응 제어 기반 Portable 용접 로봇 시뮬레이터 개발)

  • Ku, Nam-Kug;Ha, Sol;Roh, Myung-Il
    • Journal of the Society of Naval Architects of Korea
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    • v.49 no.5
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    • pp.400-409
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    • 2012
  • It is not easy to know the accurate mass and mass moment of inertia of robot. Because of this uncertainty, error may exist when we control the robot based on the inaccurate mass information. Moreover the properties of the portable robot can change during its operation. Therefore we developed the motion simulator based on the adaptive control. First, the computed torque control was carried out in order to minimize an error between target angles and real angles. The computed torque control is based on the equation of robot motion, which is derived from the Lagrange-Euler equation. To minimize the error between the real model and the approximated model, the adaptive control was carried out. During this simulation, the interference check was also carried out. The interference check verifies that the robot can move successfully without any collision.

Development of a Portable Welding Robot for Welding Jobs in Ship Blocks (조선소의 대형블록 용접을 위한 인력 운반형 용접로봇 개발)

  • Park, Juyi;Kim, Jin-Wook;Kim, Jung-Min;Kim, Ji-Yoon;Kim, Woongji;Kim, Soo-Ho
    • Journal of Institute of Control, Robotics and Systems
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    • v.20 no.7
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    • pp.760-766
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    • 2014
  • This paper represents a portable robot for use in the welding process of the double hulls in shipbuilding yards. It has 5 degrees of freedom and 3kg of payload. Its body weight is 17.3 [kg] so that human workers can carry it by hand to the work place. Its body is mainly made of magnesium and aluminum alloys. Since the robot is placed about 25m apart from its controller, EtherCAT is adopted for reliable connection between the robot and controller through a single light cable. RTX real-time kernel and KPA EtherCAT master are used to control the robot on a Windows XP environment. The performance of the developed robot is satisfactory to the requirement in welding tasks of U-type cells in shipbuilding yards.

Development of a Automatic Welding System for Various Marks on the Hull of Vessels (선박외판 문자 자동용접 시스템의 개발)

  • Yoon, Hun-Sung;Yang, Jong-Soo;Kim, Ho-Kyeong;Choi, Young-Dal
    • Special Issue of the Society of Naval Architects of Korea
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    • 2008.09a
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    • pp.90-95
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    • 2008
  • The letters and marks on the hull of vessels are marked by welding bead or steel plate to resist the corrosion environment. It has done by manual work. So, it cause deterioration of welding quality and process delay and so on. The automated welding device for draft mark has developed partially in the field of shipbuilding. But it can be used for draft mark only. And it has caused a few problems about that workablity and movablity are decreased owing to the size and weight of device. So we developed the automated welding device that can be used for most letters and marks on the hull. It designed to 3 axises mobile robot include to ratoation axis and stand alone type controller with multi GUI base on imbedded windows.

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Real-Time Seam Tracking System Using a Visual Device with Vertical Projection of Laser Beam (레이저빔 수직투사 구조의 시각장치를 이용한 실시간 용접선추적 시스템)

  • Kim, Jin-Dae;Lee, Jeh-Won;Shin, Chan-Bai
    • Journal of the Korean Society for Precision Engineering
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    • v.24 no.10
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    • pp.64-74
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    • 2007
  • Because of the size and environment in the shipbuilding process, the portable type robot is required for the automatic seam tracking. For this reason, the structure of laser sensor should be considered in the initial design step and the coordinate transformation between welding robot and laser sensor, which is joint finder, must be identified exactly and the real time tracking algorithm based on these consideration could be developed. In this research, laser displacement sensor in which its structure is laser beam's vertical projection, is developed to recognize the location of weld joint. In practical applications, however, images of weld joints are often degraded because of the surface specularity or spatter. To overcome the problem, the constrained joint finding algorithm is proposed. In the approach of coordinate conversion rule for the visual feedback control among welding torch, robot body and laser sensor is applied by the same reference point method. In the real time seam tracking algorithms we propose constrained sampling method which uses look ahead distance. The RLS(Recursive Least Square) filter is applied to obtain the smooth tracking path from the sensitive edge data. From the experimental results, we could see the possibility that the developed laser sensor with proposed processing algorithm and real time seam tracking method can be used as a welding under the shipbuilding condition.

Motor vehicle body assembly and auto-welding (차체조립과 자동용접)

  • 이승복
    • Journal of the korean Society of Automotive Engineers
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    • v.3 no.1
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    • pp.19-26
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    • 1981
  • 자동차제조에 있어서의 용접은 신뢰성 양산과 생력화에 대응하여 접합 조립하는 방법으로 특이한 분야를 형성하여 발전되었다. 예를 들면, 자동차의 생산은 기본적으로 양산체제를 갖추고 있 어서, 일반적으로 노동집약형 산업이라고 불리어지며 그 제조공정을 보면 stamping press 공정과 같이 용접공정도 비교적 장치산업적인 분야로 빠르게 자동화나 성인화 내지 무인화로 진행되고 있다. 자동차용접은 사람이 portable spot welder로 한점씩 용접하지만 양산에 대비한 합리화와 안정화를 위하여 다점용접 (multi spot weld)라는 자동화공법의 도입이 불가피하며 금일의 자 동차생산에 있어서 상식화가 되고 있다. 이것은 한개의 차체라면 차형의 대조 또는 press panel의 수에 따라 차이가 조금 있으나 약 4-5 천점의 점용접이 필요하기 때문에 여러 가지 반송장치와 조합하여 대규모의 line설비로 발전되어 가고 있다. 이와 같이 용접공정의 자동화는 생산성을 높이는 반면에 전용성이 높기 때문에 설계변경에 대한 초기투자의 용접설비 대부분을 갱신하여야 하는 새로운 투자의 필요문제가 증대되었다. 이러한 전용설비에 대한 유연성을 가미한 자동차로 지향되어, 그 한 방법으로 산업용 robot가 도입되었다. 근래에 와서는 자동차제조에 있어서 새 로운 용접기술을 합리적으로 효과있게 적용하는 기술이 금후의 연구과제라 하겠다.

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