• 제목/요약/키워드: 복합 가공

검색결과 1,000건 처리시간 0.028초

불량도체 표면의 전도성 부여가공 (Improving Surface Conductivity of Nonconductive Materials)

  • 박병기
    • 한국염색가공학회지
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    • 제11권2호
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    • pp.75-85
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    • 1999
  • 불량도체 표면의 대전현상 즉 정전기(static electricity) 현상은 인류의 일상생활에 도움을 주기도 하고 피해를 주기도 하지만 주로 해로움이 많다. 따라서 뼈대의 물리적 기능이 탁월한 불량도체의 표면에 전도성을 부여해 주면 생활에 편리함을 줄 수 있을 뿐만 아니라 유익한 여러 가지 첨단기술 제품도 생산해 낼 수 있다. 유리, 종이, 섬유, 플라스틱과 같이 원래 전기가 잘 통하지 않는 불량도체의 표면에 전도성을 부여하려는 가공법이 다양하게 시도되고 있다. 절연체에 전도성을 부여하는 기술은 복합(composite)화에 의한 전자기능의 출현을 목표로 한 기술인데 다음 2가지 형태로 분류할 수 있다.(중략)

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유리섬유(glass fiber) 가공

  • 박병기
    • 한국염색가공학회지
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    • 제2권3호
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    • pp.65-75
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    • 1990
  • 유리를 압출하여 필라멘트형으로 제조하면 많은 소비자들의 요구를 충족시킬 수 있는 장식용 섬유로서 유용한 방적 재료가 얻어진다. 또한 유리의 고강도와 고탄성률을 고려하여 많은 산업용 직물과 복합재료의 보강재료에 이용된다. 본고에서는 유리섬유의 제조, 분류, 조성, 성질, 특성 등에 대해서 설명하고, 가공측면에서 표면처리 기술, Pre-preg의 제조와 용도, 필터백의 특징과 응용, 유리커튼의 특징과 제조, 방충망의 제조, 고무보강 기술에 대해서 언급하고저 한다.

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금형의 절삭가공을 위한 자동공구선정 및 공구경로 생성 (Automated tool selection and cutter path generation for die cavity machining)

  • 유우식;최병규
    • 한국경영과학회:학술대회논문집
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    • 대한산업공학회/한국경영과학회 1992년도 춘계공동학술대회 발표논문 및 초록집; 울산대학교, 울산; 01월 02일 May 1992
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    • pp.545-554
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    • 1992
  • 본 논문에서는 복합형상의 금형을 가공하기 위하여 필요한 공구와 가공경로를 자동으로 생성해 주는 자동공정계획(CAPP)방법을 제시한다. 금형곡면은 일반적으로 복잡한 형상의 자유곡면들의 조합으로 이루어 지는데 육면체 형상의 소재로부터 원하는 금형곡면을 가공하는데는 수십시간의 기계가공 시간이 소요되며 또한 NC Code를 준비하는데도 같은정도의 시간이 소요된다. 금형곡면의 NC가공에 있어서 또다른 어려움은 공구의 과부하와 공구간섭이 빈번하게 발생할 수 있다는 점이다. 제안하는 자동공정계획방법은 전처리, 공정계획, 공구경로 생성의 3단계로 구성된다. 자동공정계획시스템의 입력정보는 1) 생성될 곡면형상 2) 가공할 소재형상 3) 가공공구 셀(드릴, 볼 엔드밀, 플렛 엔드밀), 절삭성 데이타등이다. 전처리 단계에서는 곡면모델러로부터 생성된 입력 형상을 Z-map이라 부르는 자료구조로 변환한다. 두번째 단계에서는 절삭 가공작업의 순서가 사용되는 공구와 함께 후방순환법에 의하여 결정된다. 그리고 실제 가공될 NC공구경로가 마지막 세번째 단계에서 생성된다.

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블록직선이송 방전연삭에 의한 미세전극 가공 및 그래핀 강화 알루미나 복합소재의 마이크로 홀 가공특성 (Fabrication of Micro-electrodes using Liner Block Moving Electrical Discharge Grinding and Characteristics of Micro-hole Machining of Graphene Nanoplatelet-reinforced Al2O3Composites)

  • 정현아;이창훈;강명창
    • 한국기계가공학회지
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    • 제16권1호
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    • pp.149-156
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    • 2017
  • Graphene nanoplatelet (GNP)-reinforced alumina ($Al_2O_3$) is a promising material for micro-partapplications, particularly micro-nozzle shapes, because of its excellent wearresistance. In this study, a $Al_2O_3$/GNPcomposite with 15 vol% graphene nanoplatelets (GNP) was highly densified and fabricated via spark plasma sintering for micro-electrical discharge drilling (Micro-ED drilling) and the wear resistance property of the composite is evaluated via the ball-on-disk method. In addition, the diameter and shape of the micro-electrodes machined by wire electrical discharge grinding (WEDG), block electrical discharge grinding (BEDG), and new linear block moving electrical discharge grinding (LBMEDG) methods are systematically compared and analyzed to observe the micro-hole machining in the micro-ED drilling of the $Al_2O_3$/15vol% GNP composite.

자동차 파워 트레인 샤프트 가공용 8축 복합가공기의 고 강성 구조설계에 관한 연구 (High-Stiffness Structure Design of 8-Axis Multi-tasking Machine for Automotive Powertrain Shafts)

  • 문동주;조준현;최윤서;황인환;이종찬
    • 한국기계가공학회지
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    • 제15권2호
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    • pp.78-83
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    • 2016
  • The development of an exclusive 8-axis multi-tasking machine to finish multiple cutting processes by a single piece of power equipment for securing the high-precision machining and high productivity of the series of shafts (a core part of the automotive powertrain that delivers engine power) is needed. The rigidity of the structure must be improved and the weight of the structure must be reduced to develop a multi-tasking machine with high precision and high productivity. In this paper, we perform a static structural analysis of the initial design of the multi-tasking machines and compare the results of the multi-tasking machines improved by the reinforced design and the results of the initial one. According to the results of the structural analysis, the rigidity of the reinforced machine was increased and the overall weight was decreased. Therefore, the productivity was increased.

3D 프린팅 복합소재의 가공에서 가공 조건 선정을 위한 머신러닝 개발에 관한 연구 (Development of Machine Learning Method for Selection of Machining Conditions in Machining of 3D Printed Composite Material)

  • 김민재;김동현;이춘만
    • 한국기계가공학회지
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    • 제21권2호
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    • pp.137-143
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    • 2022
  • Composite materials, being light-weight and of high mechanical strength, are increasingly used in various industries such as the aerospace, automobile, sporting-goods manufacturing, and ship-building industries. Recently, manufacturing of composite materials using 3D printers has increased. 3D-printed composite materials are made in free-form and adapted for end-use by adjusting the fiber content and orientation. However, research on the machining of 3D printed composite materials is limited. The aim of this study is to develop a machine learning method to select machining conditions for machining of 3D-printed composite materials. The composite material was composed of Onyx and carbon fibers and stacked sequentially. The experiments were performed using the following machining conditions: spindle speed, feed rate, depth of cut, and machining direction. Cutting forces of the different machining conditions were measured by milling the composite materials. PCA, a method of machine learning, was developed to select the machining conditions and will be used in subsequent experiments under various machining conditions.

원형 톱과 엔드밀의 복합재료 절단 음향과 버 비교연구 (Acoustic Emission and Burr Comparison of Circular Sawing and Milling in Fiber Reinforced Plastic Cutting)

  • 주창민;백종현;김수진;이건명
    • 한국기계가공학회지
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    • 제21권7호
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    • pp.98-104
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    • 2022
  • Circular sawing and milling are general machining processes used for routing fiber-reinforced plastics (FRP). In this study, the productivity and cutting quality of a circular saw and flat endmill were compared. As a result, the productivity of the circular saw was approximately ten times higher than that of the endmill for the same tool life, and the burr size of the circular saw was 14 times smaller than that of the flat-end mill. The spectrogram analysis of the cutting sound also showed that the acoustic emission of the circular saw was more uniform than that of the flat end mill. Circular sawing is thus a more suitable process for the straight cutting of pultrusion FRP than a flat endmill.

전해복합에 의한 미세절삭가공 특성연구 (A Study on the Characteristics of Compounding Electrolytic Machining in micro-cutting)

  • 손민기;손성민;안중환
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2001년도 춘계학술대회논문집C
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    • pp.502-506
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    • 2001
  • This paper presents a new method for cutting steel with a diamond tool using electrolysis. The electrolysis is adopted in the diamond cutting to prevent the high chemical activity between a diamond tool and an iron-based workpiece. The basic principle of the method is to oxdize a thin substrate of the workpiece by electrolysis ahead of the diamond tool which cuts the oxidized layer. A desired shape can be obtained by repeating this process. The cutting force is reduced because the diamond tool removes only the weakened material by electroysis. The reduction of the cutting force suppresses the excessive wear of the diamond tool. The oxidization penetrates several micrometers in depth along the previously formed shape. The corrosion rates depend on current density and make suggestions on the optimum cutting conditions.

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AlCrN, DLC 및 다이아몬드 코팅 엔드밀을 이용한 탄소섬유복합소재의 측면 밀링에 관한 비교 연구 (Comparison Study on Side Milling of CFRP with AlCrN-based, Diamond-Like-Carbon(DLC), and Diamond-Coated End Mill)

  • 사민우
    • 한국기계가공학회지
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    • 제19권4호
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    • pp.9-15
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    • 2020
  • Carbon fiber reinforced plastic (CFRP) is a composite material useful in the aerospace and automotive industries because of its light weight and high strength. In this study, side milling tests were carried out using AlCrN, diamond-like carbon (DLC), and diamond-coated end mills. Additionally, a comparison study according to the cobalt content was conducted. Thus, tool wear and surface quality were examined and the influences of using coating and a certain material type were analyzed. The surface roughness of the machined surface was measured. Microscope observations revealed that the CFRP fiber at the machined surface was not damaged even at a cutting distance of 3,000 mm. Therefore, this study showed that the diamond-coated end mill containing 6% cobalt is appropriate for milling CFRP.

탄소섬유 에폭시 복합재료의 정밀드릴가공 특성에 관한 연구 (A Study on Precise Drilling Characteristics of Carbon Fiber Epoxy Composite Materials)

  • 김홍배
    • 한국정밀공학회지
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    • 제15권10호
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    • pp.203-208
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    • 1998
  • Carbon fiber epoxy composite materials are widely used in the structures of aircrafts, robots and other machines because of their high specific strength, high specific stiffness and high damping. In order for the composite materials to be used in the aircraft structures or machine elements, accurate surfaces for bearing mounting or joints must be provided, which require precise machining. In this paper, the machinability characterisitcs of the drilling operation of the carbon fiber epoxy composite materials was experimentally investigated. The experimental results are as follows 1.The entrance of hole is very good manufacturing existing, but exit come to occur sever surface exfoliation. 2. The cutting force in drilling of the carbon fiber epoxy composite materials is decreased as the drilling speed increased. 3.The hole of the carbon fiber epoxy composite materials is not good manufacturing by use of the standard twist, therefore, the new drill designed in order to accurate hole.

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