• Title/Summary/Keyword: Aluminum Thin Sheet

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A Study on the Structure Analysis Optimization of Die Cam Drive Considering the Thin Plate Hardening (박판판재 경화를 고려한 다이 캠 드라이브의 구조해석 최적화에 대한연구)

  • Lee, Jong-Bae;Kim, Seon-Sam;Woo, Chang-Ki
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.16 no.9
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    • pp.5769-5777
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    • 2015
  • According to the forming or bending deformation in the press die, the thin plate occurs a work-hardening, the sheet hardening and cam unit's deformation causes incomplete forming during the cam molding process by the reacting spring forces. This study treated the input parameters of the stress and strain as given properties and also used Cam forming pressure considering the sheet hardening in the forming process of the aluminum sheet. The Hyperstudy are operated be linked with the Abaqus of the finite element analysis tool and the shape of Cam were carried out with non-linear shape optimization analysis. As a result removing the deformation of plate, the cam shape were optimized under conditions reduced deformation, having a minimum stress range and the minimum deformation. Therefore, a stress-strain curve and a normal distribution of stress-thickness can be obtained and optimization could be obtained for the shape of the stress and strain on the die plate hardened cam considering the thickness and reaction force of gas spring as iteration process.

A Quantitative Analysis of ΔK Conversion Method for the Retardation Behavior of Fatigue Crack Growth in Varying Thickness of Al 2024-T3 Sheet Alloy (판재 Al 2024-T3 합금재료에서 나타나는 두께별 피로균열진전지연거동에 관한 ΔK환산법의 정량적분)

  • Kim, Seung-Gwon;Lee, Ouk-Sub
    • Transactions of the Korean Society of Mechanical Engineers A
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    • v.35 no.11
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    • pp.1415-1422
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    • 2011
  • Sheet aluminum alloys used in manufacturing of machine structures for transportation show the difference of crack growth speed depending on thickness under the constant fatigue stress condition. The referred thickness effect is a major fatigue failure property of sheet aluminum alloys. In this work, we identified the thickness effect in fatigue test of thick plate and thin plate of Al 2024-T3 alloy under the constant fatigue stress condition, and presented the thickness effect to a correlative equation, $U_{i}^{equ}=f(R_t)$ which is determined by the shape factor, thickness ratio, $R_t$ and the loading factor, equivalent effective stress intensity ratio depending on thickness, $U_{i}^{equ}$. And we analyzed quantitatively the crack growth retardation behavior in thin plate compared to thick plate by the thickness effect using ${\Delta}K$ conversion method. We obtained such values as decrement of thickness(DoT), decrement of stress intensity factor range, ${\Delta}K$ (DoS) and identified the relation between them to present the nature of thickness effect in this work.

Aluminum based ZnO/Al/ZnO flexible Transparent Electrodes Fabricated by Magnetron sputtering (스퍼터링 증착법을 이용한 ZnO/Al/ZnO 구조의 유연투명전극 연구)

  • Bang, GeumHyuck;Choi, Dooho
    • Journal of the Microelectronics and Packaging Society
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    • v.25 no.2
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    • pp.31-34
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    • 2018
  • In this study, the feasibility of ZnO/Al/ZnO flexible transparent electrodes for future flexible optoelectronic devices was investigated. All depositions were performed on PET substrates. The thicknesses of the top and bottom ZnO layers were 5-70 nm and 2.5-20 nm, respectively. The highest visible light transmittance was recorded when the thicknesses of the top and bottom ZnO layers 30 nm and 2.5 nm, respectively. 62% optical transmittance (at the wavelength of 400 nm) and sheet resistance of $19{\Omega}/{\Box}$ were measured. After repetitive bending test at a curvature radius of 5 mm, the transmittance and sheet resistance did not change.

Study on Design Parameter of Aluminum Micro V-notched Component with Thin Sheet Metal (알루미늄 박판 미세 V-notching 가공부위의 성형 Parameter 관한 연구)

  • Kim, S.M.;Park, J.W.;Lee, H.M.;Ku, T.W.;Kim, J.;Kang, B.S.
    • Proceedings of the Korean Society for Technology of Plasticity Conference
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    • 2008.10a
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    • pp.249-252
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    • 2008
  • Micro V-notching process has been used to manufacturing the safety component in Li-Ion battery. These kinds of safety component in Li-Ion battery plays an important role in the explosion from excessive overheating. Therefore, it is very crucial to estimate accurately the working pressure range of the safety component with micro V-notch. In this study, the relationship with the working internal pressure in Li-Ion battery and fracture phenomenon in micro V-notch was investigated through the numerical analysis. The numerical analysis is especially adopted the finite element method with ductile fracture criteria.

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Modeling of Superplastic Forming Process for Aluminum Alloys with Strain Hardening Effect (가공경화를 고려한 알루미늄 함금의 초소성성형공정해석)

  • 권용남;장영원
    • Proceedings of the Korean Society for Technology of Plasticity Conference
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    • 1996.03a
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    • pp.172-184
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    • 1996
  • Superplastic forming of thin sheet into complex shape is an important manufacturing process especially in aerospace industry. The main interest in modeling the superplastic forming process is to predict the forming pressure cycle to maintain optimum strain rate and the resulting thickness distribution. Many researchers have attemped to model superplastic forming using the various techniques including finite element method. But in most of their researches have disregarded the strain hardening effect which which occurs in several superplastic materials. In this study ABAQUS finite element code was used for prediction of process variables for axisymmetric cup forming of Supral 100 and 7075Al alloys considereing strain hardening. The performance of numerical results were compared with the experimental results.

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Effect of Welding Current Type on Weldability in Spot Welding of Aluminum Alloy (알루미늄 합금의 점용접에서 용접전류 형태가 용접성에 미치는 영향)

  • 한용섭
    • Journal of Welding and Joining
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    • v.15 no.2
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    • pp.89-99
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    • 1997
  • Spot welding is one of the important welding processes for the construction of thin metal sheet. Because of low investment cost, alternating welding current is widely applied for power source. Direct current type could be, however, recommened for high quality weldment. In this study, the effect of welding current type on the weldability and the electrode life in spot welding of aluminium alloy were investigated. Various welding tests were done by using three phase direct and alternating welding current, respectively. In spite of high variation of welding force, weld quality and electrode life with alternating welding current were shown better results than those with direct current for 2mm thick alumininum alloy sheets. This was due to excessive erosion of the positive electrode in direct welding current compared with the negative one. On the contrary to 2mm sheets, the welding parameters of alternating current for 1mm sheets must be carefully selected.

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Investigation of Transparent Conductive Oxide Films Deposited by Co-sputtering of ITO and AZO (ITO와 AZO 동시 증착법으로 제조된 투명전도막의 특성 연구)

  • Kim, Dong-Ho;Kim, Hye-Ri;Lee, Sung-Hun;Byon, Eung-Sun;Lee, Gun-Hwan
    • Journal of the Korean institute of surface engineering
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    • v.42 no.3
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    • pp.128-132
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    • 2009
  • Transparent conducting thin films of indium tin oxide(ITO) co-sputtered with aluminum-doped zinc oxide(AZO) were deposited on glass substrate by dual magnetron sputtering. It was found that the electrical properties and structural characteristics of the films are significantly changed according to the sputtering power of the AZO target. The IAZTO film prepared with D.C power of ITO at 100 W and R.F power of AZO at 50 W shows an electrical resistivity of $4.6{\times}10^{-4}{\Omega}{\cdot}cm$ and a sheet resistance of $30{\Omega}/{\square}$ (for 150 nm thick). Besides of the improvement of the electrical properties, compared to the ITO films deposited at the same process conditions, the IAZTO films have very smooth surface, which is due to the amorphous nature of the films. However, the electrical conductivity of the IAZTO films was found to be deteriorated along with the crystallization in case of the high temperature deposition (above $310^{\circ}C$). In this work, high quality amorphous transparent conductive oxide layers could be obtained by mixing AZO with ITO, indicating possible use of IAZTO films as the transparent electrodes in OLED and flexible display devices.

Effect of rubber forming process parameters on channel depth of metallic bipolar plates

  • Jin, Chul-Kyu
    • Journal of the Korean Society of Industry Convergence
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    • v.20 no.3
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    • pp.221-232
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    • 2017
  • In this study, bipolar plates in fuel cells are formed using rubber forming process. The effects of important parameters in rubber forming such as hardness and thickness of rubber pad, speed and pressure of punch that compress blank, and physical property of materials on the channel depth were analyzed. In the soft material sheet Al1050, deeper channels are formed than in materials STS304 and Ti-G5. Formed channel depth was increased when hardness of rubber pad was lower, thickness of rubber pad was high, and speed and pressure of punch were high. It was found the deepest channel was achieved when forming process condition was set with punch speed and pressure at 30 mm/s and 55 MPa, respectively using rubber pad having hardness Shore A 20 and thickness 60 mm. The channel depths of bipolar plates formed with Al1050, STS304 and Ti-G5 under the above process condition were 0.453, 0.307, and 0.270 mm, respectively. There were no defects such as wrinkle, distortion, and crack found from formed bipolar plates.

고밀도 알루미늄 박막이 코팅된 강판의 부식 특성

  • Yang, Ji-Hun;Park, Hye-Seon;Jeong, Jae-Hun;Song, Min-A;Jeong, Jae-In
    • Proceedings of the Korean Vacuum Society Conference
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    • 2011.08a
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    • pp.123-123
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    • 2011
  • 알루미늄은 경량 금속으로 부식 저항력이 높아 철을 부식으로부터 보호하기 위한 표면처리 소재로 사용되고 있다. 철의 부식을 방지하기 위해서 알루미늄을 코팅하는 경우, 코팅 방법은 용융도금법이 주로 사용되고 있으며, 알루미늄을 빛의 반사막으로 활용하는 경우 진공 중에서 물리기상증착(physical vapor deposition; PVD)법을 사용하기도 한다. 알루미늄 박막을 물리기상 증착으로 코팅하면 박막성장 초기에 핵(nucleus)을 형성하고, 형성된 핵을 중심으로 주상정(column)으로 박막이 성장하는 것이 일반적이다. 알루미늄 박막의 주상정과 주상정 사이에 공극(pore)이 존재하기 때문에 알루미늄 박막을 부식방지 막으로 이용하기 위해서는 두께를 증가시켜야 한다. 본 연구에서는 스퍼터링(unbalanced magnetron sputtering)을 이용하여 치밀한 조직을 갖는 알루미늄 박막을 코팅할 수 있는 공정변수를 도출하고, 치밀한 알루미늄 조직이 철의 부식에 미치는 영향을 평가하였다. 기판은 냉연강판(cold rolled steel sheet)이 사용되었으며, 알루미늄 타겟의 크기는 직경 4 inch이었다. 알루미늄 박막의 미세조직과 밀도에 영향을 주는 공정변수를 확인하기 위해서 스퍼터링 파워, 공정 압력, 외부 자기장 세기 등의 조건을 변화시켜 코팅을 실시하였다. 알루미늄 박막의 밀도 변화에 가장 큰 영향을 준 공정변수는 외부 자기장의 세기와 방향이었다. 알루미늄 박막이 약 3 ${\mu}m$의 두께로 코팅된 냉연강판을 염수분무시험(salt spray test, 5% NaCl)으로 부식특성을 평가한 결과, 시험을 시작한 후 120시간 후에도 적청이 발생하지 않았다. 이러한 결과는 기존의 동일한 두께를 갖는 알루미늄이 코팅된 강판의 내부식 특성의 2배의 성능을 보여준다.

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Novel Deposition Technique of ZnO:Al Transparent Conduction Oxide Layer on Chemically Etched Glass Substrates for High-haze Textured Surface

  • Park, Hyeongsik;Pak, Jeong-Hyeok;Shin, Myunghoon;Bong, Sungjae;Yi, Junsin
    • Proceedings of the Korean Vacuum Society Conference
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    • 2014.02a
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    • pp.426.1-426.1
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    • 2014
  • For high performance thin film solar cells, texturing surface, enhancing the optical absorptionpath, is pretty important. Textured ZnO:Al transparent oxide layer of high haze is commonly used in Si thin film solar cells. In this paper, novel deposition method for aluminum doped zinc oxide (ZnO:Al) on glass substrates is presented to improve the haze property. The broccoli structure of ZnO:Al layer was formed on chemically etched glass substrates, which showed high haze value on a wide wavelength range.The etching condition of the glass substrates can change not only the haze values of the ZnO:Al of in-situ growth but alsothe electrical and optical properties of the deposited ZnO:Al films.The etching mechanism of the glass substrate affecting on the surface morphology of the glass will be discussed, which resulted in variation of texture of ZnO:Al layer. The optical properties of substrate morphology were also analyzed with EDS and FTIR results. As a result, the high haze value of 85.4% was obtained in the wavelength range of 300 nm to 1100 nm. Furthermore, low sheet resistance of about 5~18 ohm/sq was achieved for different surface morphologies of the ZnO:Al films.

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