• 제목/요약/키워드: 엔드 밀

검색결과 330건 처리시간 0.029초

냉각공기에 의한 환경 친화적 절삭가공기술 (Environment-Friendly Metal Cutting Technology using Cooled Air)

  • 이종항;조웅식;정준기;박철우;김영중
    • 한국정밀공학회지
    • /
    • 제18권6호
    • /
    • pp.114-120
    • /
    • 2001
  • It is necessary to develop a new metal cutting technology which does not use cutting fluid, since cutting fluid can have undesirable effect on workers's health and working environment. For this to be possible, it is necessary to replace the conventional method of using cutting fluid, whose basic functions are removing chip and heat, and providing lubrication between tool and chip. In this work, cooled air is utilized in order to replace cutting fluid. Experiments were carried out while cutting workpiece with HSS flat endmill under a variety of supply conditions for cooled air. Also the performance characteristics of the air cooling system. which was built for the experiments, were carefully analyzed. For the reliable operation of air cooling system. moisture contained in the cooled air had to be removed before being supplied to the workpiece and tools. It was found that depending on the amount of its flow rate the temperature of cooled air changes at the time of injection from the nozzle. The flow rate of cooled air also plays an important role in removing the accumulated chip on the workpiece. After comparing the flank wear for the three cases of using cooled air, cutting fluid, and pure dry technique, it was demonstrated that the level of flank wear was similar for the cases of cooled air and cutting fluid. The pure dry technique, however, showed higher level of flank wear than cooled air.

  • PDF

5-축 CNC 밀링으로의 자유곡면 가공에 관한 연구 (I) 공구축 방향의 벡터와 포스트 프로세싱 (A Study on the Machining of Sculptured Surfaces by 5-Axis CNC Milling (l) Cutter Axis Direction Verctor and Post-Processing)

  • 조현덕;전용태;양민양
    • 대한기계학회논문집
    • /
    • 제17권8호
    • /
    • pp.2001-2011
    • /
    • 1993
  • This study deals with the machining of sculptured surfaces on 5-axis CNC milling machine with end mill cutter. The study (I) has the following contents. In 5-axis CNC milling, CL-data consist of CC-data and cutter axis direction vector at the CC-point. Thus, in machining of the sculptured surface on 5-axis CNC milling machine, determination of the direction vector of the milling cutter is very important. The direction vector is obtained by the fact that bottom plane of the milling cutter must not interfere with the free-form surface being machined. The interference is checked by the z-map method which can be applied in all geometric types of the sculptured surfaces. After generating NC part programs from 5-axis post-processing algorithms, sculptured surfaces were machined with 5-axis CNC milling machine (CINCINNATI MILACRON, 20V-80). From these machining tests, it was shown that the machining of the free-form surfaces on 5-axis CNC milling machine with the end mill has smaller cusp heights and shorter cutting time than on 3-axis CNC milling machine with the ball-end mill. Thus, 5-axis CNC end milling was effective machining method for sculptured surfaces. The study (II) deals with the prediction of cusp height and the determination of tool path interval for the 5-axis machining of sculptured surfaces on the basis of study(I).

평엔드밀 포켓가공시 절삭력과 공구변형에 관한 연구 (A Study on the Cutting Forces and Tool Deformation when Flat-ended Pocket Machining)

  • 최성윤;권대규;박인수;왕덕현
    • 한국기계가공학회지
    • /
    • 제16권2호
    • /
    • pp.28-33
    • /
    • 2017
  • Recently, the operation of precision pocket machining has been studied for the high speed and accuracy in industry to increase production and quality. Moreover, the demand for products with complex 3D free-curved surface shapes has increasing rapidly in the development of computer systems, CNC machining, and CAM software in various manufacturing fields, especially in automotive engineering. The type of aluminum (Al6061) that is widely used in aerospace fields was used in this study, and end-mill down cutting was conducted in fillet cutting at a corner with end-mill tools for various process conditions. The experimental results may demonstrate that the end mill cutter with four blades is more advantageous than that of the two blades on shape forming in the same condition precise machining conditions. It was also found that cutting forces and tool deformation increased as the cutting speed increased. When the tool was located at $45^{\circ}$ (four locations), the corner was found to conduct the maximum cutting force rather than the start point of the workpiece. The experimental research is expected to increase efficiency when the economical precision machining methods are required for various cutting conditions in industry.

엔드밀 가공시 진동, 표면거칠기, 절삭온도에 미치는 최적가공조건에 관한 연구 (The Study on the Optimal Working Condition for Vibration, Surface Roughness and Cutting Temperature in End-milling)

  • 홍도관;김동영;안찬우
    • 한국소음진동공학회논문집
    • /
    • 제14권12호
    • /
    • pp.1322-1329
    • /
    • 2004
  • End-milling has been used widely in industrial system because it is effective to a material manufacturing with various shapes. Recently the end-milling processing is needed the high-precise technique with good surface roughness and rapid time in precision machine part and electronic part. The optimum mechanical vibration of main spindle, surface roughness and cutting temperature have an effect on end-milling condition such as, cutting direction, revolution of spindle, feed rate and depth of cut, etc. Therefore, this study carried to decide the working condition for optimum mechanical vibration of main spindle, surface roughness and cutting temperature using design of experiments, ANOVA and characteristic function. From the results of experimentation, mechanical vibration has an effect on revolution of spindle, radial depth of cut, and axial depth of cut. The surface roughness has an effect on cutting direction, revolution of spindle and depth of cut. And then the optimum condition used design of experiments is upward cutting In cutting direction, 600 rpm in revolution of spindle, 240 mm/min in feed rate, 2 mm in axial depth of cut and 0.25 mm in radial depth of cut. By design of experiments and characteristic function, it is effectively represented shape characteristics of mechanical vibration, surface roughness and cutting temperature in end-milling.

기계식 마이크로 가공을 이용한 마이크로 로켓의 개발 (Development of Micro Rocket Using Mechanical Micro Machining)

  • 백창일;추원식;안성훈
    • 한국항공우주학회지
    • /
    • 제31권9호
    • /
    • pp.32-37
    • /
    • 2003
  • 소형화의 추세는 마이크로 로켓의 연구에도 적용되어 MEMS 공정으로 제작된 마이크로 로켓들이 시도되었다. 본 논문에서는 마이크로 밀링을 사용한 3차원 마이크로 로켓의 제작과 연소 및 발사시험의 결과를 다루고자 한다. 로켓의 동체는 알루미늄 6061 합금을 사용하였다. 3차원 마이크로 노즐은 황동을 직경 127${\mu}m$의 마이크로 엔드밀로 절삭하여 가공되었다. 두 가지 크기의 노즐이 제작되었는데 하나는 노즐목의 직경이 1mm이고 다른 하나는 0.5mm이다. 로켓의 질량은 7.32g이고 추진제의 질량은 0.65g이었다. 추력 대 무게비는 1.58에서 1.74로 계산되며 지면에서 45도 각도로 발사된 비행시험결과 약 46m~53m의 수평거리를 비행하였다.

평엔드밀링 공정에서 절삭속도 및 이송속도가 측벽의 축방향 형상에 미치는 영향 (Effects of Cutting Speed and Feed Rate on Axial Shape in Side Walls Generated by Flat End-milling Process)

  • 김강
    • 대한기계학회논문집A
    • /
    • 제41권5호
    • /
    • pp.391-399
    • /
    • 2017
  • 절삭속도 및 이송속도가 평엔드밀로 하향절삭 가공된 측벽 형상에 미치는 영향을 실험을 통하여 알아보고자 한다. 실험은 절삭속도 및 공구 직경, 절삭날 당 이송거리를 변수로 하여 수행하며, 실험 결과로서 배분력과 축방향 형상을 측정한다. 연구 결과, 이송속도를 절삭속도로 나눈 값에 비례하는 날 당 이송거리가 작을수록 축방향 형상정밀도가 높아지는 것이 확인되었다. 아울러, 축방향 형상은 서로 다른 기울기를 갖는 두 직선이 특이점에서 만나는 형태로 단순화 할 수 있다. 그러므로 운전 중 작업자에 의한 형상정밀도의 추정 및 날 당 이송거리 조정에 의한 개선이 용이할 것으로 판단된다.

환경영향을 고려한 고속절삭가공의 경제성 평가 (Evaluation of the Economics of High Speed Machining Considering Environmental Effects)

  • 장윤상;김선태
    • 청정기술
    • /
    • 제12권3호
    • /
    • pp.182-189
    • /
    • 2006
  • 본 연구에서는 생산성 향상을 위하여 적용 분야가 점차로 확대되고 있는 고속 절삭가공의 경제성 및 환경비용을 평가하였다. 가공시간 및 가공비용이라는 절삭공정의 경제성 평가 모델과 더불어 수학적으로 모델링 된 절삭유제의 손실량 및 폐 유제 처리비용을 이용하여 환경비용을 고려한 절삭공정의 생산비용을 분석하였다. 분석에는 CBN 볼 엔드밀을 사용한 고속가공과 여러가지 냉각방식을 적용한 고속 선삭가공 공종에 대한 공수수명 및 공구마모 실험 데이터를 이용하였다. 고속 밀링가공에서 절삭속도가 높을수록 생산비용은 작아져서 고속가공의 장점을 그래도 보여주었다. 압축공기, 냉풍, 수용성 절삭유제, 건식 절삭의 네 가지 냉각방법을 사용한 선삭가공의 분석에서는 절삭유제를 이용한 냉각방식이 절삭유제를 사용하지 않은 방식에 비하여 공수수명의 향상으로 생산비용이 작았으나 환경비용을 고려하면 냉풍을 이용한 냉각방식이 생산성과 환경영향의 모든 면에서 가장 우수하였다.

  • PDF

Cutting simulation을 이용한 End-milling cutter의 모델링 및 제작에 관한 연구 (End-mill Modeling and Manufacturing Methodology via Cutting simulation)

  • 김재현;박수정;김종한;박정환;고태조;김희술
    • 한국정밀공학회:학술대회논문집
    • /
    • 한국정밀공학회 2005년도 추계학술대회 논문집
    • /
    • pp.456-463
    • /
    • 2005
  • This paper describes a design process of end-milling cutters: solid model of the designed cutter is constructed along with computation of cutter geometry, and the wheel geometry as well as wheel positioning data fur fabricating end-mills with required cutter geometry is calculated. In the process, the main idea is to use the cutting simulation method by which the machined shape of an end-milling cutter is obtained via Boolean operation between a given grinding wheel and a cylindrical workpiece (raw stock). Major design parameters of a cutter such as rake angle, inner radius can be verified by interrogating the section profile of its solid model. We studied relations between various dimensional parameters and proposed an iterative approach to obtain the required geometry of a grinding wheel and the CL data fer machining an end-milling cutter satisfying the design parameters. This research has been implemented on a commercial CAD system by use of the API function programming, and is currently used by a tool maker in Korea. It can eliminate producing a physical prototype during the design stage, and it can be used fur virtual cutting test and analysis as well.

  • PDF

낮은 복잡도의 Deeply Embedded 중앙처리장치 및 시스템온칩 구현 (Low-Complexity Deeply Embedded CPU and SoC Implementation)

  • 박성정;박성경
    • 한국산학기술학회논문지
    • /
    • 제17권3호
    • /
    • pp.699-707
    • /
    • 2016
  • 중앙처리장치를 중심으로 하는 각종 내장형 시스템은 현재 각종 산업에 매우 광범위하게 쓰이고 있다. 특히 사물인터넷 등의 deeply embedded (심층 내장형) 시스템은 저비용, 소면적, 저전력, 빠른 시장 출시, 높은 코드 밀도 등을 요구한다. 본 논문에서는 이러한 요구 조건을 만족시키는 중앙처리장치를 제안하고, 이를 중심으로 한 시스템온칩 플랫폼을 소개한다. 제안하는 중앙처리장치는 16 비트라는 짧은 명령어로만 이루어진 확장형 명령어 집합 구조를 갖고 있어 코드 밀도를 높일 수 있다. 그리고, 다중사이클 아키텍처, 카운터 기반 제어 장치, 가산기 공유 등을 통하여 로직 게이트가 차지하는 면적을 줄였다. 이 코어를 중심으로, 코프로세서, 명령어 캐시, 버스, 내부 메모리, 외장 메모리, 온칩디버거 및 주변 입출력 장치들로 이루어진 시스템온칩 플랫폼을 개발하였다. 개발된 시스템온칩 플랫폼은 변형된 하버드 구조를 갖고 있어, 메모리 접근 시 필요한 클락 사이클 수를 감소시킬 수 있었다. 코어를 포함한 시스템온칩 플랫폼은 상위 언어 수준과 어셈블리어 수준에서 모의실험 및 검증하였고, FPGA 프로토타이핑과 통합형 로직 분석 및 보드 수준 검증을 완료하였다. $0.18{\mu}m$ 디지털 CMOS 공정과 1.8V 공급 전압 하에서 ASIC 프론트-엔드 게이트 수준 로직 합성 결과, 50MHz 동작 주파수에서 중앙처리장치 코어의 논리 게이트 개수는 7700 수준이었다. 개발된 시스템온칩 플랫폼은 초소형 보드의 FPGA에 내장되어 사물인터넷 분야에 응용된다.

티타늄 황삭가공에 있어서 절삭공구의 마모 특성에 관한 연구 (A Study on Wear Characteristics of Cutting Tools in a Titanium Roughing Cut Machining)

  • 배명환;정화;박형렬
    • 한국자동차공학회논문집
    • /
    • 제24권1호
    • /
    • pp.67-73
    • /
    • 2016
  • The application of titanium has been gradually rising because the utilizing ranges for low weight and high strength are rapidly increased by the need for improving the fuel economy in production industries such as the aviation and automotive in recent. The purpose in this study is to investigate the appropriate cutting conditions on the life of flat and round end mills by measuring the maximum cutting temperature relative to the machining time, and calculating the wear rates of cutting tool with the spindle speed and feed rate of vertical machining center as a parameter in the titanium roughing cut machining which is widely used in critical parts of aircraft, cars, etc. When the wetted roughing cut machining of titanium with a soluble cutting oil is conducted by the flat and round end mills, the maximum cutting temperatures for a variety of spindle speed and feed rate are measured at ten-minute intervals during 60 minutes by an infrared thermometer, and the wear rates of cutting tool are calculated by the weight ratios based on tool wear before and after the experiment. It is found that the maximum cutting temperature and the wear rates of cutting tool are raised as the cutting amount per tool edge is increased with the rise of feed rate, in this experimental range, and as the frictional area due to the rise of contacting friction numbers between tool and specimen is increased with the rises of cutting time and spindle speed. In addition, the increasing rate of maximum cutting temperature in the flat and round end mills are the highest for the cutting time from 50 to 60 minutes, and the wear rate of cutting tool in the flat end mill is 1.14 to 1.55 times higher than that in the round end mill for all experimental conditions.