• 제목/요약/키워드: machining process

검색결과 2,133건 처리시간 0.031초

PDP 격벽 성형용 몰드 제작과 성형에 대한 연구 (A Study on Mold Fabrication and Forming for PDP Barrier Ribs)

  • 조인호;정상철;정해도;손재혁
    • 한국정밀공학회지
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    • 제18권5호
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    • pp.171-176
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    • 2001
  • Plasma Display Panel(PDP) is a type of flat panel display utilizing the light emission produced by gas discharge. Barrier Ribs of PDP separating each sub-pixel prevents optical and electrical crosstalks from adjacent sub-pixels. Mold for forming barrier ribs has been newly researched to overcome the disadvantages of conventional manufacturing process such as screen printing, sand-blasting and photosensitive glass methods. Mold for PDP barrier ribs have stripes of micro grooves transferring glass-material wall. In this paper, Stripes of grooves of which width 48${\mu}{\textrm}{m}$ and 270${\mu}{\textrm}{m}$, depth 124${\mu}{\textrm}{m}$, pitch 274${\mu}{\textrm}{m}$ was acquired by machining hard and brittle materials of WC, Silicon, Alumina with dicing saw blade. Maximum roughness of the bottom and sidewall of the grooves was respectively 120nm, 287nm in grooving WC. Maximum tilt angle caused by difference between upper-most width and lower-most width was 2$^{\circ}$. Maximum Radius of bottom curvatures was 7.75${\mu}{\textrm}{m}$. This results satisfies the specification for barrier ribs of 50 inch XGA PDP if the groove form of mold was fully transferred to the barrier ribs. Barrier ribs were formed with Silicone rubber mold, which is transferred from grooved hard materials. Silicone rubber mold has elasticity accommodating the waveness of lower glass plate of PDP.

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연료분사펌프의 최적 간극 설계 (Optimal Design of Clearance in Fuel Injection Pump)

  • 홍성호;이보라;조용주;박종국
    • Tribology and Lubricants
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    • 제31권4호
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    • pp.148-156
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    • 2015
  • In the study, a design process for ensuring optimal clearance in a fuel injection pump(FIP) is suggested. Structure analysis and hydrodynamic lubrication analysis are performed to determine the optimal clearance. The FIP is simulated using Hypermesh, Abaqus 6.12 to evaluate the reduction of clearance when the maximum supply pressure is applied. The reduction in clearance is caused by the difference in the deformations between the barrel and plunger. When the deformation of the plunger is larger than that of the barrel, a reduction in clearance at the head part occurs. On the other hand, the maximum clearance reduction equals the maximum deformation in the stem part, because the deformation of barrel does not occur in this region. The clearance of FIP should be designed to be larger than maximum reduction of clearance in order to avoid contact between the plunger and barrel. In addition, the two-dimensional Reynolds equation is used to evaluate lubrication characteristics with variations of viscosity, clearance and nozzle for a laminar, incompressible, unsteady state flow. The equation is discretized using the finite difference method. The lubrication characteristics of FIP are investigated by comparing film parameter, which is the ratio of the minimum film thickness and surface roughness. The optimal clearance of FIP is to be designed by considering the maximum reduction in clearance, lubrication characteristics, machining limits and tolerance of clearance.

동축 가공기용 드레싱 장치 개발 (Development of Dressing System for Co-axial Grinding Machine of Ferrule)

  • 이석우;최헌종;안건준;최동열
    • 한국정밀공학회:학술대회논문집
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    • 한국정밀공학회 2002년도 추계학술대회 논문집
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    • pp.70-73
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    • 2002
  • Using zirconium ceramics makes the ferrule, which is the part of optical communications. The quality of optical communications is directly affected by the concentricity of the optic ferrule. The products of optic ferrule should be meet the following general conditions which are the outer diameter of 2.5mm and the inner diameter of 0.125mm, and high quality conditions which are the concentricity of 0.1~$0.3\mu\textrm{m}$, the form accuracy of $0.2\mu\textrm{m}$, the roundness and the cylindricity of $0.1\mu\textrm{m}$ and the surface roughness of 10nm. Generally, the diamond wheel is used for the high efficiency and precision grinding of the materials. It is good for keeping the shape as it has little wear. Because of the loading phenomena, however, it is difficult to keep the fresh surface of the wheel. In grinding process, grinding fragments resemble fine powders rather than chips. It can easily get attached to the wheel surface and thus cause a loading. The loading takes place, in which the impurities stick to the wheel surface, and the grinding characteristics of wheel is deteriorated. To prevent all of these, a suitable dressing method should be used for the wheel. In this research, the dressing system fur co-axial grinding machine was designed and produced for the machining of ferrule, which is a high performance part. The performance of the developed dressing system was evaluated by measuring the form accuracy of ferrule, which is machined by the dressed wheel in developed dressing system.

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정밀제조를 위한 기하공차에서의 윤곽공차 사용 (A Profile Tolerance Usage in GD&T for Precision Manufacturing)

  • 김경욱;장성호
    • 산업경영시스템학회지
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    • 제40권2호
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    • pp.145-149
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    • 2017
  • One of the challenges facing precision manufacturers is the increasing feature complexity of tight tolerance parts. All engineering drawings must account for the size, form, orientation, and location of all features to ensure manufacturability, measurability, and design intent. Geometric controls per ASME Y14.5 are typically applied to specify dimensional tolerances on engineering drawings and define size, form, orientation, and location of features. Many engineering drawings lack the necessary geometric dimensioning and tolerancing to allow for timely and accurate inspection and verification. Plus-minus tolerancing is typically ambiguous and requires extra time by engineering, programming, machining, and inspection functions to debate and agree on a single conclusion. Complex geometry can result in long inspection and verification times and put even the most sophisticated measurement equipment and processes to the test. In addition, design, manufacturing and quality engineers are often frustrated by communication errors over these features. However, an approach called profile tolerancing offers optimal definition of design intent by explicitly defining uniform boundaries around the physical geometry. It is an efficient and effective method for measurement and quality control. There are several advantages for product designers who use position and profile tolerancing instead of linear dimensioning. When design intent is conveyed unambiguously, manufacturers don't have to field multiple question from suppliers as they design and build a process for manufacturing and inspection. Profile tolerancing, when it is applied correctly, provides manufacturing and inspection functions with unambiguously defined tolerancing. Those data are manufacturable and measurable. Customers can see cost and lead time reductions with parts that consistently meet the design intent. Components can function properly-eliminating costly rework, redesign, and missed market opportunities. However a supplier that is poised to embrace profile tolerancing will no doubt run into resistance from those who would prefer the way things have always been done. It is not just internal naysayers, but also suppliers that might fight the change. In addition, the investment for suppliers can be steep in terms of training, equipment, and software.

Whirling machine의 성능 개선을 위한 연구 (A Study on Performance Improvement of Whirling Machines)

  • 이정기;양우석;손재석;한희덕;김한수
    • 대한기계학회논문집A
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    • 제29권10호
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    • pp.1416-1429
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    • 2005
  • In order to meet the increasing competitive pressures coupled with higher demands for component quality, whirling machines have been at the cutting edge of the automobile industry for more than 25 years. The hard whirling process can save on machining time and operation elimination. Hard whirling is done dry, without coolant. The chips carry away nearly all of the heat during cutting, leaving the workpiece cool and minimizing any thermal geometry variations. The surface finish and profile accuracy are close to grinding quality. Whirling machines usually consist of four major parts; 1) loading system that requires the necessary axial speeds, 2) head stock that needs high precision clamping and positioning system at the chuck and tailstock, 3) whirling unit that demands the high cutting speeds and cutting power fer cutting deep thread profiles and 4) unloading system that requires an easy workpiece unloading. Also, capabilities of the whirling machine can be improved by attaching a vision system to the machine. Most of whirling machines in Korean automobile industry are imported from the Leistritz company, Germany and the Hasegawa company, Japan. Tn this paper, a basic research will be performed to improve and enhance the existing whirling machines. Finally, a new Korean whirling machine will be proposed and developed.

금속 3D 프린터 제작조건 변화에 의한 금속소재 물성변화연구 (Study of Mechanical Property of Metal by Changing the Conditions of Metal 3D Printing Parameter)

  • 노용오;이병호;박순홍;한영민;배병현;김영준;조황래;현성윤;방정석
    • 한국추진공학회:학술대회논문집
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    • 한국추진공학회 2017년도 제48회 춘계학술대회논문집
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    • pp.849-855
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    • 2017
  • 우주 발사체의 운반능력을 향상시키기 위하여 고성능 다단연소사이클 엔진의 개발은 필수적이다. 그 중 연소기 헤드는 기체산화제의 유입을 위해 콘 형상으로 되어 있으며, 매니폴드는 매우 복잡한 구조를 가지고 있다. 이러한 헤드는 주조 방식이나 기계가공으로 제작되어 왔다. 기계가공의 한계나 주조재질의 특성과 재료의 한계성을 탈피하여 복잡하고 가공이 어려운 연소기 헤드의 제작 공정을 3D 금속 프린팅 공정을 이용하여 개선하는 기술을 확보하고자 한다. 현재 3D 금속 프린팅을 이용하여 주연소기에 사용할 수 있는 소재의 물성을 파악하고 프린팅 제작조건의 변화를 주는 공정개발을 통하여 더욱 낳은 물성을 확보하고, 이를 바탕으로 연소기 헤드를 제작하고, 접합공정을 개발하여 연소시험을 통해 그 성능을 입증하고 제작공정을 확립하고자 한다.

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원통형 공작물에서 미세패턴의 디버링 및 버의 생성 메커니즘 (Study on Deburring and Burr Mechanism of Fabricated Micro-Pattern on Cylindrical Workpiece)

  • 진동현;이성호;곽재섭
    • 대한기계학회논문집A
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    • 제41권4호
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    • pp.251-255
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    • 2017
  • 미세 패턴의 기계적 가공에서는 버의 발생이 불가피하고, 패턴과 버의 크기가 매우 작아 이를 구분하기 어렵다. 본 연구에서는 turning machine을 이용하여, 원통형 공작물의 옆면에 패턴의 피치와 높이가 각각 60, $1{\mu}m$인 마이크로 패턴을 제작하고, 패턴의 형상을 이용하여 버의 형상과 생성 메커니즘을 정의하였다. 또한, 자기연마 디버링을 이용하여 마이크로 패턴의 정밀도를 높이고자 하였다. 그 결과, 미세패턴의 제작 시, 공구의 이송방향에 따라 버의 생성방향이 결정됨을 확인할 수 있었다. 또한, 자기연마디버링 공정에서 자속밀도와 공구의 회전속도가 각각 40mT, 1600rpm일 때, 패턴의 높이는 $1.018{\mu}m$로 측정되었으며, 자기연마 디버링에 가장 적합한 조건임을 알 수 있었다.

ECO Vacuum Filter System 용 흡입 챔버의 구조해석 및 형상 최적화에 관한 연구 (A Study on the Shape Optimization and Structural Analysis of the Suction Chamber for an ECO Vacuum Filter System)

  • 이춘만;하재현;우완식;김은중
    • 한국정밀공학회지
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    • 제33권12호
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    • pp.971-977
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    • 2016
  • Recently, the problem of the accumulation of fine sludge from the cutting oil generated during machining processes has become a major threat to the environment. The fine sludge has adverse affects on the human body and the environment, and significantly contributes to marine pollution. However, a microfiltration technique that can process the sludge still needs to be studied and developed on a global scale. Therefore, it is necessary to develop eco-friendly equipment such as an ECO vacuum filter system and eco-friendly technologies for processing cutting oil. In this study, a structural analysis was carried out using a finite element method (FEM). Improved models of the suction chamber for the ECO vacuum filter system were proposed based on the analysis of the displacement and stress of the system. The model with the best result was then optimized using the commercial software, ANSYS. It was confirmed that, in the optimized model, displacement and stress were reduced in comparison with the initial model. Finally, the structural stability of the optimized model was verified through analysis.

Local compression에 의한 CTOD 시편내의 용접잔류응력 재분포 (Redistributions of Welding Residual Stress for CTOD Specimen by Local Compression)

  • 주성민;윤병현;장웅성;방한서;방희선;노찬승
    • Journal of Welding and Joining
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    • 제27권6호
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    • pp.31-35
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    • 2009
  • When conducting CTOD test, especially in thick welded steel plate, fatigue pre-cracking occasionally failed to satisfy the requirements of standards thus making the test result invalid. Internally accumulated residual stress of test piece has been thought as one of the main reasons. The propagation of fatigue crack, started from the tip of machined notch, which might have propagated irregularly due to residual stress field. To overcome this kind of difficulty three methods to modify the residual stress are suggested in standard i.e. local compression, reverse bending and stepwise high-R ratio method. In this paper not only multi pass welding but also local pre-compressing process of thick steel plate has been simulated using finite element method for clarifying variation of internal welding residual stress. The simulated results show that welding residual stress is compressive in the middle section of the model and it is predominantly increased after machining the specimen. Comparing as-welded state all component of the welding residual stress changing to compressive in the tip of machine notch whereas residual stress of the outer area remain as tensile condition relatively. Analysis results also show that this irregular residual stress distribution is improved to be more uniformly by applying local compression.

Ti-TiH2 혼합 분말의 레이저 직접 용융 공정을 이용한 다공성 티타 늄 부품 제조 연구 (Fabrication of Porous Titanium Parts by Direct Laser Melting of Ti-TiH2 Mixing Powder)

  • 윤혜정;서동명;우영윤;문영훈
    • 소성∙가공
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    • 제28권1호
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    • pp.21-26
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    • 2019
  • Direct Laser Melting (DLM) of $Ti-xTiH_2$ (mixing ratio x = 2, 5, 10 wt.%) blended powder is characterized by producing porous titanium parts. When a high energy laser is irradiated on a $Ti-TiH_2$ blended powder, hydrogen gas ($H_2$) is produced by the accompanying decomposition of the $TiH_2$ powder, and acts as a pore-forming and activator. The hydrogen gas trapped in a rapidly solidified molten pool, which generates porosity in the deposited layer. In this study, the effects of a $TiH_2$ mixing ratio and the associated processing parameters on the development of a porous titanium were investigated. It was determined that as the content of $TiH_2$ increases, the resulting porosity density also increases, due to the increase of $H_2$ produced by $TiH_2$. Also, porosity increases as the scan speed increases. As fast solidified melting pools do not provide enough time for $H_2$ to escape, the faster the scan speed, the more the resulting $H_2$ is captured by the process. The results of this study show that the mixing ratio (x) and laser machining parameters can be adjusted to actively generate and control the porosity of the DLM parts.