• 제목/요약/키워드: Hard Milling

검색결과 60건 처리시간 0.026초

자성연마용 Fe-WC복합지립의 조직특성 (Characteristics of Fe-WC composite powders for Magnetic Abrasive)

  • 이영란;배승열;권대환;안인섭;김유영
    • 한국재료학회지
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    • 제11권10호
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    • pp.907-911
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    • 2001
  • In order to improve the grindability of magnetic abrasive, Fe-WC magnetic abrasives were made by a plasma melting method after ball milling at various times. This study aims to investigate homogeneously distributed hard phases in Fe matrix and strong bonding between the Fe-matrix and the hard phase. According to XRD, SEM and OM observation, Fe-WC magnetic abrasive powders exhibit the best grindability by plasma melting for 30h ball milling. As a result of magnetic abrasive polishing, the surface roughness, R_{max}$ 5.0$\mu\textrm{m}$, before magnetic abrasive polishing, was reduced to R_{max}$ 2.4$\mu\textrm{m}$. The new magnetic abrasive polishing process is thought to be the useful methods for the automation of three dimensional surface polishing.

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중첩가공에 의한 워터젯 밀링의 가공면 특성 (Characteristics of Abrasive Water Jet Milled Surface by Overlap Cutting)

  • 박승섭;김화영;안중환
    • 한국생산제조학회지
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    • 제25권2호
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    • pp.118-123
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    • 2016
  • Overlap cutting is a fundamental method of applying abrasive water jet (AWJ) machining to milling to produce a wider surface because the nozzle outlet is approximately 1.0 mm wide. In this study, the effects of overlap cutting on the depth profile and surface roughness are investigated. The overlapping area depends on the amount of step over, which is controlled in the pick-feed direction. If the step over is equal to or larger than the diameter of the nozzle, no overlap cut occurs but large cusps remain between the cut paths. A step over as small as one-thirds of the nozzle diameter may lead to triple-overlap cutting resulting in an extraordinary depth. By using pocket milling experiments with a step over of 0.46 (or 0.47), it is verified that AWJ can produce a milled surface of titanium, one of the hard-to-cut materials, with $76{\mu}m$ Ra.

밀링가공에서의 주축 변위 측정을 통한 절삭력 예측 (CUTTING FORCE PREDICTION USING SPINDLE DISPLACEMENT IN MILLING)

  • 장훈근;장동영;한동철
    • 한국공작기계학회:학술대회논문집
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    • 한국공작기계학회 2004년도 추계학술대회 논문집
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    • pp.485-489
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    • 2004
  • Cutting force is important to understand cutting process in milling. To measure cutting force, tool dynamometer is widely used but it is hard to apply in workshop condition. Cutting force measurement which doesn't affect cutting process is needed. Using relations between cutting force and spindle displacement, cutting force can be predicted. Cylindrical capacitive sensor was used to measure spindle displacement during cutting. And signals from tool dynamometer collected to compare with spindle displacement. The result shows spindle displacement has a linear relation with cutting force. Using this result, a simple method to predict cutting force could be applied at workshop condition.

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버의 최소화를 위한 실험조건 최적화 (Optimization of Experimental Parameters for Burr Minimization)

  • 이상헌;이성환
    • 한국공작기계학회:학술대회논문집
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    • 한국공작기계학회 2000년도 추계학술대회논문집 - 한국공작기계학회
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    • pp.225-229
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    • 2000
  • Burrs formed during face milling operations are very hard to characterize like other machining burrs because there are many parameters which affect the cutting process. Many researchers have tried to predict burr characteristics including burr size and shapes with various experimental conditions such as cutting speed, feed rate, in-plane exit angle, number of inserts, etc., but it still remains as a challenging problem for the complicated combination effects between the parameters. In this paper, Taguchi method, which is a systematic optimization application of design and analysis of experiments, is introduced to acquire optimum cutting parameters for burr minimization. Optimized experimental conditions are provided to show the effectiveness of this approach.

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Study for the Development of Fe-NbC Composites by Advanced PM Techniques

  • Gordo, E.;Gomez, B.;Gonzalez, R.;Ruiz-Navas, E.M.
    • 한국분말야금학회:학술대회논문집
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    • 한국분말야금학회 2006년도 Extended Abstracts of 2006 POWDER METALLURGY World Congress Part 1
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    • pp.118-119
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    • 2006
  • The development of Fe-based metal matrix composites (MMCs) with high content of hard phase has been approached by combining the use of advanced powder metallurgy techniques like high-energy milling (HEM), cold isostatic pressing (CIP) and vacuum sinterings. A 30% vol. of NbC particles was mixed with Fe powder by HEM in a planetary mill during 10h, characteristing the powder by the observation of morphology and microstructure by scanning electron microscopy (SEM). After of sintering process the variation of density, hardness,carbon content and the microstructural changes observed, permits to find the optimal conditions of processing. Afterwards, a heat treatment study was performed to study the hardenability of the composite.

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표면처리가 어려운 금속재료의 EBSD 분석을 위한 시편 준비 (Sample Preparation for EBSD Analysis: Tips for Metals with Delicate Surfaces)

  • 강주희;김수현
    • 대한금속재료학회지
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    • 제48권8호
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    • pp.730-740
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    • 2010
  • Aluminum, magnesium, titanium and high Mn steel are difficult to use in electron backscatter diffraction (EBSD) sample preparation due to the formation of an oxidation layer under conventional polishing. Alcohol-based polishing with colloidal silica suspension was introduced for these delicate samples. A hard particle-embedded sample was analyzed successfully using mechanical polishing. Ion-milling was effective in removing oxidized, deformed and transformed layers after mechanical polishing and was able to reduce artifacts significantly. The microstructure of a cross-section of a thin copper film was evaluated by attachment of a dummy to the film for mechanical polishing.

장기 무경운 벼 생산체계에서 토양의 이화학성, 쌀 수량 및 도정형질의 변화 (Changes in Physicaochemical Properties of Soil, Yield, and Milling Quality of Rice Grown under the Long-term No-till Rice System)

  • 홍광표;김영광;정완규;손길만;송근우;최용조;최진용
    • 한국작물학회지
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    • 제48권3호
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    • pp.196-199
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    • 2003
  • 이 시험은 논을 무경운으로 15년간 관리한 상태에서 토양의 변화, 벼 수량구성요소와 수량 및 미질을 경운답에서의 그 것과 비교한 결과를 요약하면 다음과 같다. 1. 토층의 형성정도를 보면 11년간 무경운상태로 관리한 논은 토양 상층에 5cm정도의 유기물층이 형성되었으며, 이 층에 유기물을 비롯한 양이온과 인산이 집적되었다. 2. 무경운답의 작토층은 경운답의 작토층에 비하여 유기물함량은 높으나, pH와 양이온, 인산의 함량이 낮았으며, 가비중과 고상의 비율이 높은 반면 액상과 기상의 비율은 낮았다. 3. 경운답은 표토는 매우 부드러우나 토심 5cm정도부터 급격히 단단해 지는 것에 비해 무경운 1년답에서는 표토가 매우 단단하였으나, 무경운으로 관리하는 기간이 길어짐에 따라 표토는 물론이고 경반층 이하에서도 부드러워졌다. 4. 수량구성요소와 수량을 보면 입수, 등숙률, 천립중 다같이 경운방법간에 비슷하였으며, 수량은 유의적인 차이가 인정되지 않았다. 또한 무경운 연속재배에 따른 수량의 변화패턴은 일정한 경향을 볼 수 없었다. 5.쌀의 도정 및 품위특성을 보면 무경운답과 경운답에서 생산된 쌀간에 차이가 없었다.

펄스전류 가열에 의한 나노구조의 (Ti,Mo)C 합성과 동시 급속소결 및 기계적 성질 (Simultaneous Synthesis and Rapid Consolidation of Nanostructured (Ti,Mo)C and Its Mechanical Properties)

  • 조형곤;권한중;손인진
    • 한국재료학회지
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    • 제23권11호
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    • pp.620-624
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    • 2013
  • Nanocrystalline materials have recently received significant attention in the area of advanced materials engineering due to their improved physical and mechanical properties. A solid-solution nanocrystalline powder, (Ti,Mo)C, was prepared via high-energy milling of Ti-Mo alloys with graphite. Using XRD data, the synthesis process was investigated in terms of the phase evolution. Rapid sintering of nanostuctured (Ti,Mo)C hard materials was performed using a pulsed current activated sintering process (PCAS). This process allows quick densification to near theoretical density and inhibits grain growth. A dense, nanostructured (Ti,Mo)C hard material with a relative density of up to 96 % was produced by simultaneous application of 80 MPa and a pulsed current for 2 min. The average grain size of the (Ti,Mo)C was lower than 150 nm. The hardness and fracture toughness of the dense (Ti,Mo)C produced by PCAS were also evaluated. The fracture toughness of the (Ti,Mo)C was higher than that of TiC.

엔드밀 가공의 정밀도 향상을 위한 최적정삭여유에 관한 연구 (A Study on the Optimum Finish Allowance for Machining Accuracy Improvement in the End Milling Processes)

  • 최종근;김형선;김성초
    • 한국공작기계학회논문집
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    • 제13권3호
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    • pp.8-15
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    • 2004
  • A significant error in the end milling processes is generated due to using slender tools of which the strengths are not sufficient. In order to obtain the desired machining accuracy, therefore, it is general that at first the rough cut is implemented, then the finish cut is followed. The rough cut eliminates large volume and the finish cut does the remained part. This remaining portion after the rough cut is called as the finish allowance. Larger finish allowances make it hard to get precise dimensions at a following finish cut. Smaller finish allowances are helpful for good dimension, but it sometimes is responsible for inferior surface qualities and over cuts. This study suggests a guidance for the optimum finish allowance for machining accuracy improvement, in which the rough cuts are regulated to remain the desired margins without any over cuts. Some experiments were carried out with various cutting conditions including the change of tool strengths and depth of cuts, and also extended to up millings as well as down millings.

방전플라즈마 소결법을 이용한 ZnS-SiO2 복합재료의 제조와 기계적 특성 (Fabrication of ZnS-SiO2 Composite and its Mechanical Properties)

  • 신대훈;김길수;이영중;조훈;김영도
    • 한국분말재료학회지
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    • 제15권1호
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    • pp.1-5
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    • 2008
  • ZnS-$SiO_2$ composite is normally used for sputtering target. In recent years, high sputtering power for higher deposition rate often causes crack formation of the target. Therefore the target material is required that the sintered target material should have high crack resistance, excellent strength and a homogeneous microstructure with high sintered density. In this study, raw ZnS and ZnS-$SiO_2$ powders prepared by a 3-D mixer or high energy ball-milling were successfully densified by spark plasma sintering, the effective densification method of hard-to-sinter materials in a short time. After sintering, the fracture toughness was measured by the indentation fracture (IF) method. Due to the effect of crack deflection by the residual stress occurred by the second phase of fine $SiO_2$, the hardness and fracture toughness reached to 3.031 GPa and $1.014MPa{\cdot}m^{1/2}$, respectively.