• 제목/요약/키워드: Al5083

검색결과 123건 처리시간 0.019초

알루미늄 합금의 양극산화 조건에 따른 내구성 평가 (Evaluation of Durability for Al Alloy with Anodizing Condition)

  • 이승준;한민수;김성종
    • 한국표면공학회:학술대회논문집
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    • 한국표면공학회 2016년도 추계학술대회 논문집
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    • pp.152-152
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    • 2016
  • Anodizing is a technology to generate thicker and high-quality films than natural oxide films by treating metals via electrochemical methods. It is a technique to develop metals for various uses, and extensive research on the commercial use has been performed for a long time. Aluminum anodic oxide (AAO) is generate oxide films, whose sizes and characteristics depending on the types of electrolytes, voltages, temperatures and time. Electrochemical manufacturing method of nano structure is an efficient technology in terms of cost reduction, high productivity and complicated shapes, which receives the spotlight in diverse areas. The sulfuric acid was used as an anodizing electrolyte, controlling its temperature to $10^{\circ}C$. The anode was 5083 Al alloy with dimension of $5(t){\times}20{\times}20mm$ while the cathode was the platinum. The distance between the anode and the cathode was maintained at 3 cm. Agitation was introduced by magnetic stirrer at 300 rpm to prevent localized temperature rise that hinders stable growth of oxide layer. In order to observe surface characteristics with applied current density, the electrolyte temperature, concentration was maintained at constant condition for $10^{\circ}C$, 10 vol.%, respectively. To prevent hindrance of stable growth of oxide layer due to local temperature increase during the experiment, stirring was maintained at constant rate. In addition, using galvanostatic method, it was maintained at current density of $10{\sim}30mA/cm^2$ for 40 minutes. The cavitation experiment was carried out with an ultrasonic vibratory apparatus using piezo-electric effect with modified ASTM-G32. The peak-to-peak amplitude was $30{\mu}m$ and the distance between the horn tip and specimen was 1 mm. The specimen after the experiment was cleaned in an ultrasonic, dried in a vacuum oven for more than 24 hours, and weighed with an electric balance. The surface damage morphology was observed with 3D analysis microscope. As a result of the investigation, differences were observed surface hardness and anti-cavitation characteristics depending on the development of oxide film with applied current density.

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LNG 저장탱크용 재료의 극저온 충격특성과 파면해석 (Impact Properties and Fractography of Structural Materials for LNG Tank at Cryogenic Temperatures)

  • 신형섭;이해무;신주영;박종서
    • 한국가스학회지
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    • 제2권1호
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    • pp.99-106
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    • 1998
  • 최근 환경오염 문제와 관련하여 청정연료로 수요가 증가하고 있는 액화천연가스(LNG)의 저장탱크 및 운반선 등 연료 저장 설비, 초전도이용 관련 기기와 같은 저온용 설비 및 기기가 증가하고 있고 대형화의 추세를 보이고 있다. 특히 액화천연가스(LNG)의 수요급증에 따라 이의 운송 및 저장에 필요한 재료의 수요가 증가하면서 극저온재료에 대한 관심이 높아지고 있다. LNG저장조의 대형화에 따라, 설계강도상의 검토는 물론, 사용재료의 특성, 가공성 및 용접 둥의 시공법을 비롯하여 품질관리 면까지 충분한 검토가 필요하다. 특히 LNG를 저장하는 내조재료에 대하여는 모재 및 용접부의 제반 특성을 파악하여 저온에서 취성파괴에 대한 안전성을 확인해 둘 필요가 있다. 본 연구는, LNG 저장 탱크의 안전성 평가시 필요한 재료물성 데이터 중 파괴인성의 측정 기반 기술을 확보하고, 현재 국내에서 사용되고 있는 LNG 저장탱크용 재질(SUS304L강, Al합금 및 $9\%$ Ni강)에 대하여 77 K 및 173 K에서 계장화 샬피충격시험을 실시하여 온도에 따른 충격파괴특성 및 파면해석을 실시하여, 안전성 평가에 필요한 기초 자료를 확보하는 것을 주목적으로 한다. 계장화샬피충격파괴시험결과, $9\%$니켈강의 경우 온도저하에 따라 77K까지는 인성의 저하정도가 적어 우수한 파괴저항을 나타내었다. 계장화 장치에 의해 얻어진 하중-처짐 곡선으로부터, 온도가 173 K에서 77 K로 저하함에 따라 최대하중은 증가하였으나 에너지는 오히려 감소하였다. 또한 균열개시에 쓰여진 에너지보다 균열진전에 쓰여진 에너지가 높게 나타났다. A5083의 경우 합금강재에 비해 충격흡수에너지값이 낮고 저온 특유의 갈라짐 현상을 볼 수 있었다. SUS304L재의 경우 균열개시에 쓰여지는 에너지가 높게 나타났고, 균열진전에 따른 에너지는 거의 나타나지 않아 균열개시 후 비교적 평탄한 파단면을 나타내는 파면관찰 결과와 일치하는 거동을 나타내었다.

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주조/단조 기술을 이용한 대형 알루미늄 플랜지 개발에 관한 연구 (A Study on the Development of Large Aluminum Flange Using Casting/Forging Process)

  • 배원병;왕신일;서명규;조종래
    • 대한기계학회논문집A
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    • 제25권9호
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    • pp.1438-1443
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    • 2001
  • The significance of the casting/forging process for reducing the production cost of large components is being noted in these days. This casting/forging process is a method of forging a workpiece preformed by casting into the final shape. In this study, the casting/forging process has been applied in manufacturing a large aluminum flange in order to reduce press capacity and material cost. Firstly, a hot compression test was performed with cast cylindrical billets in order to determine the optimum forging condition of the aluminum flange. The optimum range of forging temperature of Al 5083 was from 420$\^{C}$ to 450$\^{C}$. The suitable strain rate was 1.5 sec(sup)-1. The deformation amount of a preform of a preform in a forging process is a key role in the mechanical properties of casting/forging products. In order to find the change of mechanical properties according to effective stain of cast aluminum billets, a hot upsetting test were performed with rectangular blocks and then a uniaxial tensile test was performed with specimens cut from the upsetted billets. The tensile strength and the elongation of cast/upsetted aluminum billets were increased largely until the effective strain was 0.7. FE analysis was performed to determine the configurations of case preform and die for an aluminum flange. In the FE analysis, the forging load-limit was fixed 1500ton for low equipment cost. The cast preform was designed so that the effective stain around the neck of a flange exceeded 0.7. From the result of FE analysis, optimal configurations of the cast preform and the die were designed for a large flange. The filling and solidification analysis for a sound cast-preform was carried out with MAGMA soft. In the forging experiment for an aluminum flange, it was confirmed that the optimal configuration of the cast preform predicted by FE analysis was very useful. The cast/forged products using designed preform were made perfectly without any defects.