• Title/Summary/Keyword: 연삭기술

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초정밀가공기술의 현황과 전망

  • 송지복
    • Journal of the Korean Society for Precision Engineering
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    • v.10 no.1
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    • pp.9-13
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    • 1993
  • Micro-electronics를 핵으로 하는 기술혁신의 물결이 눈부시고, 우리 주변의 일상생활이 하루가 다르게 변해 가고 있다. Leading-edge technology, high technology, advanced technology 등으로 호칭되는 일군의 새로운 기술의 절대적 level이 현재 어디에 위치해 있는지 확인 조차 하기 어렵고 첨단기술 제품의 성능에 넋을 잃을 지경이 지만 고려청자나 이조백자에 대해서는 현재의 기술을 가지고도 그 재현이 곤란하다. 이와 같이 시차의 이중성 속에서 제품의 부가가치를 높이고 생산성을 올리기 위해서는 가공기술의 고도화를 가하지 않으면 안된다. 어떤 소재를 설계된 모양대로 변화시키는 일련의 과정을 가공이라 한다면 이에는 변형가공(주조, 소성가공), 부가가공(용접), 제거가공(절삭, 연삭)등을 생각할 수 있으며 이들 사이의 가공정도의 개략치는 다음과 같다. (그림.1 가공공정에 따른 가공정도) 공작물에 요구되는 가공정도는 시대의 변천과 더불어 level up되고 이를 위한 기술 개발이 부단히 이어오고 있다. 1960-70 년대의 생산가공 기술은 .mu. m 단위인 $10^{-5}$--$10^{-6}$m의 범위의 가공정도를 생산 line으로 실현하는 것이 중점 개발 목표였다. 그러나, 현재는 $10^{-5}$--$10^{-7}$m를 목표로 한 submicron 가공정도 실용기에 들어서고 있다.

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A Study on the Monitoring Technology for the Continuous Detection of Grinding Process (연삭 공정의 연속 진단을 위한 모니터링에 관한 연구)

  • 강재훈
    • Journal of the Korean Society of Manufacturing Technology Engineers
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    • v.8 no.1
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    • pp.74-80
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    • 1999
  • Recently, manufacturing work has been transformed to small scale production form with various types to act up to user's expectation from mass production with a little items required in the past. Then FMS using NC type machinaries has been applied actively also in domestic manufacturing line to meet thus tendency, but there are many machining troubles occured during work process not be settled yet. Nowdays high efficiently has been required no less than high precision in grinding work for the improvement of productivity. In this study, to represent more advance FMS can be adapted to thus situation In-process type monitoring method using AE and Current sensors is suggested to investigate the machining condition in grinding process. As results form this experimental study, it is recognized well that grinding conditions and dressing point of in time cab be estimated effectively using monitoring method suggested. Furthermore, surface shape of grinding wheel on voluntary point of in time can be predicted indirectly through the observation and comparison of AE signal waveform obtained as performance of continuous dressing work.

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Grinding Technology for Surface Texturing (연삭기법을 이용한 패터닝 기술)

  • Ko, Tae Jo;Han, Do Sup;Qiu, Kang;Park, Jong-Kweon
    • Journal of the Korean Society for Precision Engineering
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    • v.31 no.5
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    • pp.367-373
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    • 2014
  • Surface texturing is a machining process on the surface to give engineering functions. The representative process of the surface texturing is lotus effect to give hydrophobic property by the lithography and chemical etching, which is the bio mimic from the nature. Surface texturing can be manufactured by a lot of processes, in particular using mechanical method such as a precise diamond turning, grinding, rolling, embossing, vibrorolling, and abrasive jet machining (AJM). Among them, the grinding process is notable in terms of the wide range of texturing area and fast processing time. The patterning by grinding is done by the grooved grinding wheel on the work piece. In this case, the pattern shape is determined by the grinding conditions as well as the wheel dressing conditions. In this paper, experimental study on the pattern shapes were done and provide the feasibility in use for the large area patterning.

Evaluation of the Grinding Performance of an Engine Block Honing Stone through Monitoring of Workload and Heat Generation (작업부하 및 발열 모니터링에 의한 엔진블록 호닝스톤 연삭성 평가)

  • Yun, Jang-Woo;Kim, Sang-Beom
    • Journal of the Korean Society of Manufacturing Process Engineers
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    • v.18 no.4
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    • pp.69-75
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    • 2019
  • Since gasoline engines are based on a combination of a cast iron liner and an aluminum block, which have different thermal properties and stiffnesses, bore shape distortion is likely to occur during honing due to uneven thermal deformation. To solve this problem, many tests and evaluations are needed to support the development of a high-performance honing stone with low heat generation. Moreover, performance evaluation, which depends on inspection and observation after work, often requires much trial and error to optimize tool design, due to challenges in the accurate interpretation of results. This study confirmed that the assessment of grinding capability was clarified by evaluating performance under severe work conditions and by in-situ measurement and recording of current consumption (workload) and heat generation during operation. As a result of using a honing stone with excellent grinding performance in engine block manufacture-in which cylinder bore distortion caused by thermal deformation during manufacture is a problem-a noticeable improvement in the degree of cylindricity was observed.

Surface grinding of WC-Co with high quality (WC-Co의 고품위 평면 연삭가공)

  • Heo, S.J.;Kang, J.H.;Kim, W.I.
    • Journal of the Korean Society for Precision Engineering
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    • v.11 no.5
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    • pp.42-55
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    • 1994
  • Presently, abrasive processing is on eof several methods for cutting and grinding brittle materials, and high quality in dimensional accuracy and surface roughness are often required as a structural components, therefore most of them has to be ground. In manufacturing of tungsten-carbide components, grinding by diamond wheel is usually adopted in order to provide configurational and dimensional accuracy to the components. The present study proposes the experi- mental research of optimum condition to the high quality surface grinding of the WC-Co material using diamond abrasive wheel in order to minimize the damage on the ground surface and to pursue the precise dimension by conventional grinding machine. Brief investigation is carried out to decrease the dressing is constant, theoretical grinding effect such as machining precision is changed according to the speed of workpiece. Accordingly, normal and tangential grinding forces, which are Fn, Ft were analyzed for the machining processes of WC-Co material to obtain optimum grinding conditions, 3-point bending test is carried out to check machining damage on the ground surface layer, which is one of sintered brittle materials.

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Ultra-Precision Machining of Off-Axis Asymmetric Large-area Reflecting Mirror Using ELID Grinding Process (ELID 연삭을 이용한 비축 비구면 렌즈의 초정밀 가공)

  • Jung, Myung-Won;Shin, Gun-hwi;Kim, Geon-Hee;Ohmori, Hitoshi;Kwak, Tae-Soo
    • Journal of the Korean Society of Manufacturing Process Engineers
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    • v.18 no.1
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    • pp.9-15
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    • 2019
  • This study focused on the application of ELID mirror-surface grinding technology to the manufacture of off-axis asymmetric large-area reflecting mirrors made of BK7 glass. The size of the parts, such as asymmetric large-area mirrors or lens, made form-accuracy or roughness especially hard to measure after machining because of the measuring range limit of measurement devices. In this study, the ELID grinding system has been set up for mirror-surface machining experiments manufacturing off-axis asymmetric lenses. A measuring method using a reference workpiece has been suggested to measure the form-accuracy and roughness. According to the experimental results, even when using only a reference workpiece, it is confirmed that the surface roughness was 8 nmRa and form-accuracy was 80 nmRMS, with a best fit asymmetric radius when using a grinding wheel of #8,000. It is found that the accuracy of large-area parts could be estimated by the proposed process.

Mirror grinding with Electrolytic In-process Dressing Method (전해인프로세스드레싱에 의한 경면연삭기술개발)

  • 이응숙;제태진;강재훈
    • Proceedings of the Korean Society of Precision Engineering Conference
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    • 1995.10a
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    • pp.57-60
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    • 1995
  • Recently, ELID (electrolytic in-process dressing) grinding technique is developed. It is possible to make a efficient precision machining of hard materials such as ceramic hard metals, and quenched steels. This paper deals with some typical applications of ELID-grinding for cylindrcal machining. The significant advantages, performance and characteristics on mirror surface grinding for external surface are described.

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원추형상을 이용한 비구면 형상가공기술

  • 이상민;박철우
    • Proceedings of the Korean Society of Precision Engineering Conference
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    • 2004.05a
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    • pp.246-246
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    • 2004
  • 현재 비구면렌즈를 만들기 위해서는 다양한 방법이 있다. Glass종류의 가공시 초정밀 절삭가공기(DTM)에서 가공하거나 정밀 연삭기를 가지고 가공하게 된다. 이 과정에서 렌즈 표면에 공구 흔적이나 표면거칠기 개선을 위해 연마작업을 하게 되는데, 사용하는 장비가 폴리싱 머신이다. 축대칭인 폴리싱머신의 경우 X, Z, $\theta$로 동시 3축제어가 가능하다. 하지만 이 장비의 경우 연마에서 원하는 형상정밀도와 표면거칠기를 얻기 위해 각축들의 위치정밀도와 분해능이 높은 부품을 사용하여 기계자체가 고가라는 점이 단점으로 작용한다.(중략)

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초정밀 가공 시스템

  • 이후상
    • Journal of the Korean Society for Precision Engineering
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    • v.10 no.1
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    • pp.14-21
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    • 1993
  • 비규면의 경면 가공으로 대표되는 초정밀 가공 기술은 '90년대에 와서는 이미 일반화되어가고 있으며, 양산화 시대를 맞이하고 있다고 보아야 할 것이다. 최근의 초정밀 가공 기술은 레이저 가공기를 비롯하여 일상용품으로 많이 사용되는 카메라, 컴팩트 디스크, 콘택트렌즈, 컴퓨터 디스크 등에 활용됨은 물론 대구경천채망원경, 우주 및 군사용의 레이저, X-선을 중심으로한 광기술에 점점 그 용도가 확대되어 가고 있다. 현재 초정밀 가공기가 응용되고 있는 부품의 예를 들어보면 표1과 같다. 우리나라의 초정밀 가공 시스템 기술은 선진국에 비하여 아직은 한단계 낮은 수준으로 평가되나, 최근 전자, 컴퓨터 산업의 발전과 더불어, 그 수요가 증가되고 있어 최근에는 그 응용기술, 가공시스템에 관한 연구개발이 산,학,연 여러 곳에서 활발해 지고 있다. 본 고에선 초정밀 절삭,연삭 가공시스템을 중심으로 가공기와 요소기술의 개발동향에 관하여 살펴 보고자 한다.

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A Study for the Improvement of the Life Cycle of Press Die using Wire Cut Discharge Machining (와이어 컷 방전가공 시 프레스금형 수명 향상에 대한 고찰)

  • Yun, Jae-Woong
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.18 no.9
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    • pp.61-67
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    • 2017
  • Research into the selection of suitable materials and the development of fast processing methods for press die manufacturing is absolutely necessary to reduce the production time and cost. In particular, knowledge of its heat properties must be considered whendeveloping a long press die. Generally, as the main component materials of press dies, Cr, W low alloy tool steel, high carbon-high chrome steel, high speed steel, etc., are used as thetooling steel for the cold die. Machine tools and wire-cut electric discharge machining are mainly used for processing the press die parts. There are many differences in the machining time and life cycle of die parts depending on the machining process. The parts produced by milling and grinding have a high manufacturing time and cost with a long life cycle, while thosemade by milling and wire-cut discharge machining have areduced manufacturing time and cost,whereastheir die life cycle is reduced. Therefore, in this study, we will discuss amethod of improving the life cycle of the die parts by using heat treatment as a processing method that reduces the manufacturing time and cost. SEM, EDS analysis and the surface roughness analysis of the surface and center of the workpiece are used for analyzing the specimens produced by three machining methods, viz. milling - grinding, milling - wire cut discharge, and milling - wire cut discharge - heat treatment. A method of making die parts having the same life cycle as those produced by milling - grinding is developed with the milling - wire cut discharge - high temperature tempering method.