• 제목/요약/키워드: Casting Mold

검색결과 468건 처리시간 0.023초

연속주조기에서 스트랜드 구동롤의 인발력 분배 제어 (Load Sharing Control of Driven Roll in Continuous Caster)

  • 천창근;김철우
    • 전력전자학회논문지
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    • 제8권4호
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    • pp.321-327
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    • 2003
  • 연속주조 프로세스는 고온의 액체 용강을 고체 금속으로 만드는 프로세스로서, 스트랜드 구동롤의 역할은 운전자가 설정한 주조 속도 제어 패턴에 따라 정확하게 주편을 인발하는 것이다. 기존의 스트랜드 구동롤의 제어는 주조 속도만을 제어하였으나 전동기 드라이버 세팅의 부정확성 및 변동, 연속적인 주조에 의한 구동롤의 마모 및 변형에 의한 롤 직경의 변경, 주조 중 주편 벌징량의 변동 등의 요인에 의해 주조 중 주편을 인발하는 데 소요되는 전체 인발력이 각 구동롤에 적절하게 분배되지 않아 주편 코너부에 수평 크랙을 발생시켜 주조 속도를 증가하는데 있어서 결정적인 장애요인이었다. 본 논문에서는 스트랜드 구동롤에 인가되는 인발력 분포와 주편 품질과의 상관 관계를 도출하고 주조 중에 연속적으로 인발력을 분배할 수 있는 알고리즘을 제안하였다. 제안한 인발력 분배 알고리즘은 각 구동롤 전동기의 절대적인 토크를 제어하는 것이 아니라, 상위제어기에서 결정한 인발력 분배 비율에 따라 각 구동롤 전동기의 토크분 전류를 상호 비교하여 속도 설정치를 조정함으로써 이루어진다. 그리고 인발력 분배 알고리즘의 동작 확인을 위해 광양제척소 1연주공장 4연주기에 적용하여 양호한 결과를 확인하였다.

겔-케스팅한 알루미나 성형체에서 출발입도가 공정변수 및 성형 미세구조에 미치는 영향 (Effects of particle size on processing variables and green microstructure in gelcast alumina green bodies)

  • 하창기;김재원;조창용;백운규;정연길
    • 한국재료학회지
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    • 제11권10호
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    • pp.869-878
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    • 2001
  • Alumina $(Al_2O_3)$ green bodies were fabricated by gel-casting using three kinds of alumina with different particle size (mean particle size: 4.6 $\mu\textrm{m}$, 0.32 $\mu\textrm{m}$, 10nm). The effects of particle size on gel-casting process and green microstructure were investigated. The optimum dispersion conditions using ammonium salt (D-3019) as dispersant were 0.2 wt% (4.63 $\mu\textrm{m}$), 0.5 wt% (0.32 $\mu\textrm{m}$), and 5.0 wt% (10 nm), in high solid loading. The optimum solid loading of each starting material for gel-casting was obtained as 59 vol% (4.63 $\mu\textrm{m}$), 57 vol% (0.32 $\mu\textrm{m}$), 15 vol% (10 nm), depending on particle size, indicating that nano-size particle (10 nm) represent lower solid loading as high specific surface area than those of other two starting materials. The drying at ambient conditions (humidity; $\thickapprox$90%) was performed more than 48hrs to enable ejection of the part from the mold and then at $120^{\circ}C$ for 2hrs in an air oven, showing no crack and flaw in the dried green bodies. The pore size and distribution of the gelcast green bodies showed the significant decrease with decreasing particle size. Green microstructure was dependent on the pore size and distribution due to the particle size, and on the deairing step. The green density maximum obtained was 58.9% (4.63 $\mu\textrm{m}$), 60% (0.32 $\mu\textrm{m}$), 47% (10 nm) theoretical density (TD), and the deairing step applied before gel-casting did not affect green density.

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주입선 설계가 티타늄 주조체의 내부기포 발생에 미치는 영향 (THE EFFECT OF SPRUE DESIGN ON THE INTERNAL POROSITY OF TITANIUM CASTINGS)

  • 허숙명;전영찬;정창모;임장섭;정희찬
    • 대한치과보철학회지
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    • 제44권2호
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    • pp.147-156
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    • 2006
  • Statement of problem: The high melting temperature and chemical reactivity of titanium necessitates casting machines different from those used in conventional casting. Despite the new developments in Ti casting systems , inadequate mold filling and internal porosity are frequently observed casting defects. Therefore, the study on the fabrication technique including sprue design to solve these casting defects is still necessary. Purpose: The purpose of this study was to evaluate the effect of sprue design and cross sectional area of sprue on the internal porosity. Materials and methods: 30 simulated cast three units titanium crowns were prepared. 5 cast crowns for each with different sprue design(sinlge sprue, double sprue and plate sprue) of two cross sectional areas (small and large cross sectional areas) were fabricated. The sections of titanium castings were photographed in a microscope at ${\times}100$ magnification to record internal porosities. Results and Conclusion: Within the limits of this study, the following conclusions were drawn: 1. There was a significantly lower in internal porosity of titanium castings for large cross sectional area of sprue group than the small group (P<.05) 2. There was no significant difference in internal porosity among sprue designs in similar cross sectional area of sprue (P>.05).

반고상 성형법에 의한 Mg 합금 박판재의 제조에 관한 연구 (Study on the Fabrication of Mg Alloy Sheet by a Semi-Solid Forming Process)

  • 김정민;박봉구;김기태;정운재
    • 한국주조공학회지
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    • 제22권5호
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    • pp.245-251
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    • 2002
  • Cast AZ91 and extruded AM50 alloys were isothermally heated as solid/liquid coexistent temperatures, and semi-solid formed into sheets. Mold filling ability of semi-solid slurry with different liquid fractions was investigated in relation to process variables such as injection speed and mold temperature. Relatively uniform distribution of solid particle size and liquid fraction were observed throughout the semi-solid formed sheet. AZ91 alloy sheets were also manufactured by conventional die casting and compared with the semi-solid formed. It was found that the surface was more smooth and the dimensional accuracy was higher in case of the semi-solid formed.

Cu/Ag 복합판재의 전기/기계적 성질 및 프레스 성형성에 관한 연구 (A study on electrical and mechanical properties and press formability of a Cu/Ag composite sheet)

  • 신제식
    • Design & Manufacturing
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    • 제6권1호
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    • pp.95-100
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    • 2012
  • In this study, a novel Cu composite sheet with embedded high electric conduction path was developed as another alternative for the interconnect materials possessing high electrical conductivity as well as high strength. The Cu composite sheet was fabricated by forming Ag conduction paths not within the interior but on the surface of a high strength Cu substrate by damascene electroplating process. As a result, the electrical conductivity increased by 40% thanks to mesh type Ag conduction paths, while the ultimate tensile strength decreased by 20%. The interfacial fracture resistance of Cu composite sheet prepared by damascene electroplating increased by above 50 times compared to Cu composite sheet by conventional electroplating. For feasibility test for practical application, a leadframe for LED module was manufactured by a progressive blanking and piercing processes, and the blanked surface profile was evaluated as a function of the volume fraction of Ag conduction paths. As Ag conduction path became finer, pressing formability improved.

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T5 열처리한 Al합금 금형주조품에서 경도의 역분포현상 ("An Inverse Distribution of Hardness in T5-Heat Treated Al-Alloy Permanent Mold Castings")

  • 이진형
    • 한국주조공학회지
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    • 제8권3호
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    • pp.282-286
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    • 1988
  • Aluminum alloy permanent mold castings often exhibit in as-cast or T5-heat treated state an inverse distribution of hardness, i.e. thinner sections have lower hardness than thicker sections. This phenomina is explained by measuring the cooling curves in a test casting in an Aluminum piston alloy (AC8A or A332). Thinner sections solidify faster but later cooles down more slowly than thicker sections in temperature range where coarse precipitation of supersaturated elements can take place. The precipitation rate of $Mg_2Si$ phase in A332 alloy seems to be maximum at around $490^{\circ}C$.

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다상유체해석을 통한 기포결함 예측과 금형설계기술 (Study for Permanent Mold Design Technology and Porosity Defect Prediction Method by Multi-Phase Flow Numerical Simulations)

  • 최영심;조인성;황호영;최정길;홍준호
    • 소성∙가공
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    • 제14권3호
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    • pp.224-232
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    • 2005
  • The high-pressure die-casting is one of the most effective methods to produce a large amount of products in short cycle time. This process, however, has a problem that the gas porosity defect appears easily. The generation of gas porosity is known mainly due to the air entrapment during the injection stage. Most of numerical simulations for the molten metal flow pattern observations have done in the treating of one phase fluid flow but the gas-liquid interface is essentially multi- phase phenomenon. In this paper, the two-phase fluid flow numerical simulation methods have been adapted to predict the gas porosity generations in the molten metal. The accuracy and the usefulness of the new simulation module have been emphasized and verified through some comparison experiments.

Al-Si합금(合金)의 CFR 과 MDE 에 미치는 냉각속도(冷却速度)의 영향(影響) (The Influence of Cooling Rates on the CFR and the MDE of Al-Si Alloys.)

  • 권혁무;김수영
    • 한국주조공학회지
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    • 제4권4호
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    • pp.14-19
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    • 1984
  • In order to clarify the solidification mechanism of Al-Si alloy, Mushy Degree of Eutectic Solidification (MDE) and Centerline Feeding Resistance (CFR) were systematically studied by casting with various compositions of $Al-(6{\sim}18%)$ Si alloys into several kinds of molds having different cooling rates. The results are as follows: 1. CFR% increases slightly as solute concentration increases, but decreases remarkably as the cooling rate of the mold increases, that is, the composition dependence of the alloys has more effect on the change of CFR% than that of the mold cooling rate. 2. The composition dependence of MDE value has the same tendency as that of Degree of Eutectic Solidification (DES). MDE value within the range of hypereutectic composition is larger than that of hypoeutectic and it represents the maximum value at eutectic composition. The higher the cooling rate is, the less the MDE value is.

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옥외 주상용 몰드 변압기인 적용 기술 (The Applied Technology of Mold Transformer for Outdoor Use)

  • 한세원;조한구
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 2000년도 춘계학술대회 논문집 유기절연재료 방전 플라즈마
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    • pp.23-28
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    • 2000
  • Insulator systems using resin casting apparatus are useful to realize the high capacity, small size, and combined electric power equipments, and are expected to bring various advantages. In Korea, epoxy resin molded apparatus have been restricted to indoor uses till now. On the other hand, in Europe, molded insulators and transformers and so forth have been practically used since the former half of 1960's. Recently, investigation on epoxy resin materials and molded apparatus for outdoor use have ben intensively carried out. Probably, this is because electric power outdoor apparatus such as distribution transformer can be given multi-functions by using outdoor epoxy resin compound This study describes the trend on the development of epoxy mold transformers, and important technologies applied for outdoor use.

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알루미늄 주조용 SKD61 금형강의 표면처리 방법에 따른 특성 평가 (Characteristic Evaluation According to the Surface Treatment Method of SKD61 Mold Steel for Aluminum Casting)

  • 최세원;김철우;김용호;유효상
    • 열처리공학회지
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    • 제34권6호
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    • pp.281-286
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    • 2021
  • Arc ion plating (AIP), laser cladding, and nitriding are methods that can prevent mold damage or repair and create cracks and breakages on the die surface. The dissolution and soldering behavior of coated SKD61 by using arc ion plating, laser cladding, and nitriding was investigated. The structure of the coating was investigated as a function of deposition conditions by X-ray diffraction and the crystallographic orientation was determined using the texture factor. The TiAlN film deposited with AIP showed excellent corrosion resistance in the molten aluminum alloy at 680℃. In this paper, we have detailed the corrosion and mass loss phenomena associated with these steel-cast metal interactions.