• Title/Summary/Keyword: 절삭 동력

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Ball end milling of sculptured surface models by considering machinability (절삭성을 고려한 자유곡면 모형의 볼 엔드 밀링가공에 관한 연구)

  • 박천경;맹희영
    • Transactions of the Korean Society of Mechanical Engineers
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    • v.15 no.6
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    • pp.2048-2061
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    • 1991
  • As compared with other cutting types, the ball end milling process causes a complexity in cutting system and a falling-off of machinability. In order to increase the productivity and efficiency in th NC machining of sculptured surfaces, this study carried out the qualitative linearized evaluation about the ball end milling system and applied their practical expressions to the technological processor at the cutter path planning stage. The evaluated expressions were proved to be adequate for practical use from an accuracy point of view and the estimation models were applied to sculptured surface machining processes for finding variable machining conditions. Consequently, it was recognized that variable machining conditions bring about the dispersion of force system and the reduction of machining time by more than 50%.

A Study on the Prediction of the Limiting Depth of Cut in Dynamic Cuting of a Tapered Workpiece (테이퍼진 가공물의 동적 한계절삭깊이의 예측에 관한 연구)

  • Ssengonzi, J. B.
    • Transactions of the Korean Society of Mechanical Engineers
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    • v.6 no.3
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    • pp.271-281
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    • 1982
  • 이 연구는 테이퍼진 가공물이 동적 절삭상태에서 가지는 한계절삭깊이의 예측을 위한 이론 및 실험적 방법을 논하였다. 절삭 모델은 Usui-Hirota(1)가 제안한 것을, 가공물의 형상은 MTIRA (2)가 제안한 공작기계 동적성능시험용 표준시편을 다소 수정하여 사용하였다. 칩유동각은 Usui-Hirota의 에너지 방법에 의하여 구하였고, Inamura-Sata(6)의 원통형 가공물에 대한 절 삭동력학 이론을 일반화시켜 테이퍼진 가공물에 적용하여 절삭의 안정한계를 구한 후 채터시험 결과와 비교하여 이론의 타당성을 검증하였다.

A Development of Combined-Type Tool Dynamometer for Ultraprecision Lathe with Piezo-Film Accelerometer (복합 압전필름형 가속도계를 이용한 초정밀 선반 공구동력계의 개발에 관한 연구)

  • Kim, J.D.;Kim, D.S.
    • Journal of the Korean Society for Precision Engineering
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    • v.12 no.2
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    • pp.87-96
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    • 1995
  • The cutting force is the most important variable to understand the mechanics of ultra-precision machining. Most dynamometers, however, monitor the static cutting force only. But it is necessary to measure the dynamic cutting force to clarify the machinability of the material, the formation of the chip, chatter and the wear of the tool. In this research, measurement of the dynamic cutting force in order to clarify the machin-ability of the material, the formation of the chip, chatter and the wear of the tool has been conducted. A combined-type dynamometer which could measure the static cutting force and the dynamic cutting force by use of strain gauges and a piezo-film accelerometer has been developed. An analysis of the dynamometer also has been carried out.

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Adaptive Cutting Parameter Optimization Applied to Face Milling Operations (면삭 밀링공정에서의 절삭조건의 적응 최적화)

  • 고태조;조동우
    • Transactions of the Korean Society of Mechanical Engineers
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    • v.19 no.3
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    • pp.713-723
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    • 1995
  • In intelligent machine tools, a computer based control system, which can adapt the machining parameters in an optimal fashion based on sensor measurements of the machining process, should be incorporated. In this paper, the technology for adaptively optimizing the cutting conditions to maximize the material removal rate in face milling operations is proposed using the exterior penalty function method combined with multilayered neural networks. Two neural networks are introduced ; one for estimating tool were length, the other for mapping input and output relations from experimental data. Then, the optimization of cutting conditions is adaptively implemented using tool were information and predicted process output. The results are demonstrated with respect to each level of machining such as rough, fine and finish cutting.

A Study on Ultrasonic Vibration Cutting of Carbon Fiber Reinforced Plastics (탄소섬유강화 플라스틱의 초음파 진동절삭에 관한 연구)

  • 김정두;이은상;최인휴
    • Transactions of the Korean Society of Mechanical Engineers
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    • v.18 no.1
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    • pp.24-33
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    • 1994
  • The main applications of CFRP are sports, aerospace and general industrial uses including automobiles. As this application fields expands the opportunity of machining, but CFRP is difficult to cut because of delamination of the composites and the short tool life. In this paper, the machinability of multidirectional CFRP by means of ultrasonic vibration cutting, which has been verified experimentally investigated.The experimentally to be highly effective in view of cutting force and surface quality.

Intelligent Diagnosis of Grinding State Using AE and Power Signals (음향방출과 동력 신호에 의한 인공지능형 연삭상태 진단)

  • Kwak, J.S.;Ha, M.K.
    • Journal of Power System Engineering
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    • v.6 no.2
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    • pp.60-67
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    • 2002
  • 연삭가공은 나노스케일(Nano-scale)의 미소한 입자 절삭날을 이용한 가공으로, 공작물의 표면을 경면(Mirror surface)으로 가공할 수 있어 제품의 최종 마무리공정으로 사용되어 왔다. 그러나 연삭공정에 있어서는 공구(연삭숫돌)의 수명이 다하거나 가공계(Machining system)가 불안정해지면 채터진동과 연삭버닝 등의 현상이 발생하여 가공물의 표면품위를 저하시키는 요인으로 작용하고 있다. 따라서 본 연구는 원통플른지 연삭공정을 대상으로 공작물에서 발생하는 음향방출 신호와 연삭기 주축 모터의 동력 신호를 연삭가공 중에 검출하고, 이를 신경회로망에 적용하여 연삭가공 상태를 진단하는 시스템을 구축하고, 그 성능을 평가하였다.

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Machine Tool Technology;The Present And The Future(1) (공작기계기술의 현재와 미래(1))

  • 강철희
    • Journal of the Korean Society for Precision Engineering
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    • v.12 no.4
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    • pp.5-18
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    • 1995
  • 공작기계는 금속가공 공업에 있어서 가장 중요한 생산수단의 요소이며, 공작기계의 발달없이 인류의 생활수준을 향상시킨다는 것은 생각도 할 수 없는 일이다. 선진국에서는 제조된 기계의 약 10%가 공작기계이며, 기계공업 노동력의 악 10%가 공작기계 산업에 종사하고 있다. 공작기계는 금속재료를 절삭(Cutting) 또는 연삭(Grinding)하여 원하는 모양, 치수 표면정도의 제품을 얻는 것이고 기계본체와 공구의 두부분으로 되어있어 동력에 의해 기계를 운전하고 절삭공구로써 가공을 한다. 국제 규격의 ISO에서는 '한 운동원에 의해서 작동하고 물리적, 화학적 또는 기타의 방법으로 성형해서 공작물을 생산하는, 수작업은 하지 않는 기계'라고 정의 하고 있으며 미국에서는 금속가공기계를 두가지로 나누어 정형형을 Forming machine이라 하고 절삭형을 Cutting machine 이라 분류하며 이 둘을 합하여 공작기계(Machine Tool)라고 부르고 있다.

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A study on the chatter vibration characteristics simulation for cutting tooling of turning machine tool (터닝센터에서의 툴링과 채터 특성 시뮬레이션 연구)

  • Hwang, Joon
    • Journal of the Korean Crystal Growth and Crystal Technology
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    • v.24 no.6
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    • pp.274-278
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    • 2014
  • Machining performance is often limited by chatter vibration at the tool-workpiece interface. Chatter vibration is a type of machining self-excited vibration which originated from the variation in cutting forces and the flexibility of the machine tool structure. Cutting tooling method is one of major factor to chatter vibration in turning process. Even though lots of cutting tooling methods are developed and used in machining process, precise analysis of cutting tooling effect in view of chatter vibration behavior. This study presents numerical and experimental approaches to verify and effects of various cutting tooling geometry and clamping method on the onset of chatter vibration. Acquired knowledge from this study will apply the optimal geometry design of cutting tooling and adjusting of machining process.

A study on the characteristics of intelligent sawing system for band saw (띠톱기계의 스마트 톱 절삭 시스템의 특성에 관한연구)

  • LUO, luPing;DING, zelin;DING, shengxia;JIANG, Ping;FAN, li;XIAO, leihua;PAN, bosong;An, Boyoung;Eum, Younseal;Han, Changsoo
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.21 no.2
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    • pp.195-204
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    • 2020
  • To help solve the problems of how to set the optimal sawing force and the optimal controller parameters for different sawing conditions, a mathematical model of a proposed sawing system was established according to the principle of sawing force control. The conventional PID control method was then used for further research of the closed-loop control of the sawing force. Finally, through simulation and experimental research, the influence rule of the controller parameters and sawing load on the control performance and the relationships between the sawing width and controller parameters (proportion coefficient) and the sawing force setting value were obtained, from which a system scheme for intelligent sawing control of a band sawing machine was proposed. The research shows that the sawing efficiency of the intelligent sawing system was 18.1 (48%) higher than that of the original sawing system when sawing a grooved section sawing material, which verifies the good control effect of the proposed scheme.