• 제목/요약/키워드: 드릴링 토크

검색결과 5건 처리시간 0.021초

다면 드릴의 성능 해석과 최적화 (Analysis of multi-facet drill(MFD) performance and optimization of MFD geometry)

  • 이상조;윤영식
    • 대한기계학회논문집
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    • 제14권6호
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    • pp.1523-1532
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    • 1990
  • 본 연구에서는 다면드릴을 연구 대상으로 하여 다면 드릴의 기하학적 형상인 자들을 이용하여 드릴 작업시 추력과 토크를 예측하는 데 적합한 절삭력 예측 모델을 유도하였으며, 추력과 토크를 최소화하는 방향으로 다면드릴의 각 형상인자를 최적화 하였다.

머시닝센터에서 드릴링 토크 제어기의 설계 (Design of a Drilling Torque Controller in a Machining Center)

  • 오영탁;권원태;주종남
    • 한국정밀공학회:학술대회논문집
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    • 한국정밀공학회 2001년도 춘계학술대회 논문집
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    • pp.513-518
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    • 2001
  • As the machining depth increases, the drilling torque increases and fluctuates and the risk of drill failure also increases. Hence, drilling torque control is very important to prevent the drill from failure. In this study, a PID controller was designed to control the drilling torque in a machining center. The plant including the feed drive system, cutting process, and spindle system was modeled for controller design. The Ziegler-Nichols rule was used to determine the controller gain and control action times. The root locus plot was used to tune the controller gain for a certain cutting condition. Also, suggested was a simple method to obtain the tuned controller gain for an arbitrary cutting condition not using the Ziegler-Nichols rule and root locus plot. The cutting torque control, performance of the designed controller and the effect of gain tuning on the control performance were examined.

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드릴 공정시 절삭 토크 제어 제 2 편 : 주축 모터 전류를 이용한 드릴링 토크의 제어와 드릴 플랭크 마모에 대한 영향 (Cutting Torque Control in Drilling Part 2 : Drilling Torque Control Using Spindle Motor Current and Its Effect on Drill Flank Wear)

  • 오영탁;김기대;주종남
    • 한국정밀공학회지
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    • 제18권8호
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    • pp.107-115
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    • 2001
  • Drilling torque was measured indirectly using the spindle motor current and controlled in real time through feedrate manipulation in a machining center. The PID controller designed in the previous paper was applied to drilling torque control. A series of cutting experiments were performed for various cutting conditions. Experimental results showed that the drilling torque was well regulated at a given reference level by feedrate manipulation in all cutting conditions. The increase in the cutting torque and temperature according to the increase in machining depth was suppressed and the risk of the drill failure and the drill flank wear were reduced remarkably through cutting torque control. Moreover, the suggested cutting torque control system doesn\`t disturb the cutting process and is practical for industrial environment. Therefore, the proposed culling torque control system will contribute to productivity improvement in drilling process.

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PLC 기반 주축 모터의 토크에 의한 드릴링 절삭상태 감시에 관한 연구 (A Study on Monitoring Drilling using Torque from Main Spindle Based on PLC in CNC Machine Tools)

  • 윤상환;문성민;류성기
    • 한국기계가공학회지
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    • 제17권3호
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    • pp.7-15
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    • 2018
  • Drilling processes require a cutting monitoring function that can be analyzed and gives feedback about strange conditions, tool collision and tool wear in real time. In this study, we proposed a drill monitor using the torque from the main spindle in CNC machine tools and a PROFIBUS network as a PLC-based interface. This paper studied drilling torque changes depending on drill size, the repetition cutting of the drilling and the drill's wear in the same cutting conditions. The material of the drills was high speed steel (HSS) and uncoated. The drills chosen were 2.7 mm, 6.7 mm, and 10.0 mm in diameter. These drills were selected because they had basic holes for their taps.

롤생산방식 유연회로기판의 레이저 드릴링 고속화 요소기술 (Enabling Technology for High-Speed Laser Drilling of Roll Type FPCB)

  • 라웅재;최환영
    • 실천공학교육논문지
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    • 제15권1호
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    • pp.127-132
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    • 2023
  • Roll to Roll (이하 RTR)로 연결된 유연회로기판(이하 FPCB)에서 일정한 장력을 유지하여 안정적인 홀 가공이 가능하게 하는 Dancer Roll System를 경량화하고 서보모터를 활용한 토크 제어를 통해 기존 방식 FPCB RTR에서는 대응 불가능하였던 중력가속도의 2배가 되는(이하 2.0G) 가속도의 고속 가공이 가능하도록 요소기술과 성능 지표를 제시한다. 기존 마그넷 클러치 방식 RTR에서는 달성이 불가능하였던 높은 회전수와 발열 문제, 낮은 토크 문제등을 마그네슘 소재를 이용한 Roll의 경량 가공법 개발과 서보모터의 토크 제어 알고리즘 개발을 통하여 해결하여 FPCB에 균일한 장력을 제공하고 토크 안정성을 높인다. 본 연구에서 개발한 요소 기술로 인해 Dancer Roll의 반응속도가 개선되어 목표한 고속화를 달성하였다.