• 제목/요약/키워드: Workpiece Materials

검색결과 284건 처리시간 0.024초

초정밀 가공 기계의 진동 특성 해석 (Analysis on the Vibration Characteristics of Ultra Precision Machine Tools)

  • 김성걸;박영일;김석현
    • 산업기술연구
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    • 제14권
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    • pp.119-125
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    • 1994
  • Ultra-precision machine tool equipped with the diamond bite tip is used to machine optical products, drums of VTR or computer hard disk. It needs nano technology in the surface roughness of workpiece. To perform the nano scale machining, ultra-precision machine tool must be designed and manufactured in consideration of the vibration characteristics. In this paper, using the finite element analysis, we investigate the modal parameters of the ultra-precision machine tool structures, which use cast iron, granite and alumina ceramic for the bed materials. To verify the numerical results, we manufacture a model of ultra-precision machine tool using granite bed and perform impulse test. Through the theoretical and experimental analyses, we could compare and estimate the vibration characteristics of the three models for the ultra-precision machine tools.

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GFRP의 2차원 절삭에서 주파수 스펙트럼과 절삭메카니즘과의 상호연관성에 관한 연구 (Frequency Spectrum and re Correlation with Cutting Mechanisms in Orthogonal Cutting of Glass Fiber Reinforced Plastics)

  • Gi-Heung Choi
    • 한국안전학회지
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    • 제16권3호
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    • pp.135-142
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    • 2001
  • 본 연구에서는 복합소재인 GFRP(Glass Fiber Reinforced Polyester)의 2차원 절삭공정에서 주파수 스팩트럼과 절삭 메커니즘과의 연관성에 관하여 논의한다. 해석방법으로는, 공정중 발생하는 절삭력 신호를 FFT에 의해 주파수 분석하고 주파수 스팩트럼과 다양한 칩형성 메커니즘과의 연관관계를 모델링한다. 특히, 섬유경사각(Fiber orientation angle), 절삭변수 그리고 공구형상이 절삭 메커니즘에 미치는 영향을 평가하였다.

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유전자 알고리즘을 이용한 엑시머 레이저가공의 최적조건 선정 (Determination of Optimal Excimer Laser Ablation Conditions Using Genetic Algorithm)

  • 배창현;최경현;이석희
    • 한국공작기계학회논문집
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    • 제11권6호
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    • pp.17-23
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    • 2002
  • A new 3D micromachining method called Hole Area Modulation(HAM), has been introduced to enhance the current micromachining technology. In this method, information on the depth of machining is converted to the sizes of small holes in the mask. The machining is carried out with a simple 2D movement of the workpiece. This method can be applied for machining various kinds of microcavities in various materials. In this paper, a machematical model for excimer laser micromachining based on HAM and also determination of optimal laser ablation conditions(width hole radius, step size, path, etc.) is performed by Genetic Algorithm(GA).

AE신호 분석을 통한 비자성체의 자기연마 모니터링에 관한 연구 (A Study on Monitoring of the MAP for Non-magnetic Material by AE Signal Analysis)

  • 이성호;김상오;곽재섭
    • 한국생산제조학회지
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    • 제20권3호
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    • pp.304-309
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    • 2011
  • A monitoring system for magnetic abrasive polishing process is necessary to ensure the polishing products the high quality and integrity. Acoustic emission (AE) signal is known to reflect the material removal phenomena in other machining processes. In a case of the magnetic abrasive polishing of non-magnetic materials, application of AE method is very difficult because of lower machining force on the surface of workpiece and the level of AE signal is extremely lower. In this study, AE sensor-based monitoring system is applied to the magnetic abrasive polishing. The relation between the level of the AE RMS and the surface roughness during the magnetic abrasive polishing of magnesium alloy steel is investigated.

초음파 초정밀 가공 및 측정시스템에 대한 연구 (A Study on the Ultrasonic Micro-machining and Measurement System)

  • 주종남;한동철;박희재;박상신;제성욱
    • 한국정밀공학회지
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    • 제19권7호
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    • pp.133-140
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    • 2002
  • Ultrasonic Machining (USM) is widely used in cutting of non-conductive, brittle workpiece materials such as engineering ceramics. However, USM has a limitation in its application to micro machining because problems are occurred in attaching micro tools to the machine and maintaining high precision. Therefore Micro Ultrasonic Machining (MUSM) with WEDM is proposed in this research. The experiments are produced as the change of shaft diameter and abrasive size.

다중열원 보조가공을 위한 평판 시편의 예열 효과에 관한 해석적 연구 (An Analytical Study on the Preheating Effect of Flat Workpiece in Thermally Assisted Machining by Multi Heat Sources)

  • 문성호;이춘만
    • 한국정밀공학회지
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    • 제33권8호
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    • pp.629-634
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    • 2016
  • Laser-assisted machining (LAM) is one of the most effective methods of processing difficult-to-cut materials, such as titanium alloys and various ceramics. However, it is associated with problems such as the inability of the laser heat source to generate an appropriate preheating temperature. To solve the problem, thermally assisted machining with multiple heat sources is proposed. In this study, thermal analysis of multiple heat sources by laser and arc is performed according to power, heat source size, and leading heat source position. Then, the results are analyzed according to each condition. The results of this analysis can be used as a reference to predict preheating temperature in thermally assisted machining with multiple heat sources.

용융아연도금에서 비스머스 첨가에 의한 아연 수율향상에 관한 연구 (Effect of Bismuth Addition on the Zinc Consumption in Hot-Dip Galvanizing)

  • Kim, S.K.;Yoo, J.S.
    • 한국표면공학회지
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    • 제36권1호
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    • pp.42-47
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    • 2003
  • Hot-dip galvanizing process is used widely in industry to achieve corrosion resistant coatings. Poor drainage during this process often leads to problems such as icicle formation and bridging In this work, mild steel specimens were hot-dip galvanized. Influence of the addition of bismuth, aluminum and both (bismuth and aluminum) to the zinc bath on the zinc drainage were determined. Bismuth additions improved the drainage significantly. Zinc bath containing 0.1 wt.% Bi and 0.025∼0.05 wt.% Al showed uniformity of coatings. Industrial trials with this bath composition showed reduction in zinc consumption, reduction of ash and dross, and good luster of workpiece.

티타늄-6242 디스크의 열간단조를 위한 공정설계 (A Process Design for Hot-Forging of a Titanium-6242 Disk)

  • 박종진
    • 소성∙가공
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    • 제3권3호
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    • pp.271-281
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    • 1994
  • Titanium-6242 $({\alpha}+{\beta})$ alloy has been used for aircraft engine components such as disks and blades, because it has an excellent strength/weight ratio at high temperatures. When this material is forged to manufacture disks, process parameters should be carefully designed to control strain and temperature distributions within the process windows by which desirable mechanical properties can be produced. In the present investigation, it was intended to design the process parameters for a conventional hot forging of this material by using a rigid-thermoviscoplastic finite element analysis technique. It was assumed that the process was performed by a screw press which is capable of maintaining a constant ram speed during loading. From the analysis results, it was found out that the initial temperature of the workpiece and the die shape were important parameters to control the forging process. In result, these parameters were properly designed for hot forging of a disk with specific dimensions.

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고속 볼앤드밀링에서 공구마모를 고려한 공구의 가공경사각 선정 (Selection of Machining Inclination Angle of Tool Considering Tool Wear in High Speed Ball End Milling)

  • 고태조;정훈;김희술
    • 한국정밀공학회지
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    • 제15권9호
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    • pp.135-144
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    • 1998
  • High speed machining is a key issue in die and mold manufacturing recently. Even though this technology has great potential of high productivity. tool wear accelerated by high cutting speed to the hardened materials is other barrier. In this research, we attempted to reduce tool wear by considering tool inclination angle between tool and workpiece. The boundary lines describing machined sculptured surfaces were represented by both of cutting envelop condition and the geometric relationship of successive tool paths. Chip cross section, and cutting length could be obtained from the calculated cutting edge and the rotational engagement angle. From the simulation results, machining inclination angle of tool of $15^\circ$ was good enough from the point of tool wear and cutting force, and this value was verified through the cutting experiment of high speed ball end milling.

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액중 방전 성형과 인공신경망 기법을 활용한 Cowper-Symonds 구성 방정식의 변형률 속도 파라메터 역추정 (Estimating Strain Rate Dependent Parameters of Cowper-Symonds Model Using Electrohydraulic Forming and Artificial Neural Network)

  • 변한비;김정
    • 소성∙가공
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    • 제31권2호
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    • pp.81-88
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    • 2022
  • Numerical analysis and dynamic material properties are required to analyze the behavior of workpiece during an electrohydraulic forming (EHF) process. In this study, EHF experiments were conducted under three conditions (6, 7, 8 kV). Dynamic material properties of Al 5052-H34 were inversely estimated through an ANN (Artificial Neural Network) model constructed based on LS-Dyna analysis results. Parameters of Cowper-Symonds constitutive equation, C and p, were used to implement dynamic material properties. By comparing experimental results of three conditions with ANN model results, optimized parameters were obtained. To determine the reliability of the derived parameters, experimental results, LS-Dyna analysis results, and ANN results of three conditions were compared using MSE and SMAPE. Valid parameters were obtained because values of indicators were within confidence intervals.