• Title/Summary/Keyword: 알루미늄 양극산화

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ED COB Package Using Aluminum Anodization (알루미늄 양극산화를 사용한 LED COB 패키지)

  • Kim, Moonjung
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.13 no.10
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    • pp.4757-4761
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    • 2012
  • LED chip on board(COB) package has been fabricated using aluminum substrate and aluminum anodization process. An alumina layer, used as a dielectric in COB substrate, is produced on aluminum substrate by selective anodization process. Also, selective anodization process makes it possible to construct a thermal via with a fully-filled via hole. Two types of the COB package are fabricated in order to analyze the effects of their substrate types on thermal resistivity and luminous efficiency. The aluminum substrate with the thermal via shows more improved measurement results compared with the alumina substrate. These results demonstrate that selective anodization process and thermal via can increase heat dissipation of COB package in this work. In addition, it is proved experimentally that these parameters also can be enhanced using efficient layout of multiple chip in the COB package.

Effect of processing time on durability for anodized 5000 series Al alloy (양극산화된 5000계열 알루미늄 합금의 내구성에 미치는 공정시간의 영향)

  • Lee, Seung-Jun;Han, Min-Su;Kim, Seong-Jong
    • Proceedings of the Korean Institute of Surface Engineering Conference
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    • 2015.11a
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    • pp.320-320
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    • 2015
  • 표면개질이란 재료 본연의 특성만으로 원하는 성능과 기능을 발휘할 수 없을 때 기재 표면에 열에너지, 응력 등을 부가하여 새로운 표면층을 형성하는 방법이다. 특히 양극산화 기술을 이용해 형성된 피막은 경도 및 내마모성 등 기계적 성질이 우수하고, 공정조건 등을 변화시켜 피막 두께와 형상 조절이 용이하여 센서, 필터, 광학용 박막 그리고 전해콘덴서 등에도 주로 사용되고 있다. 본 연구에서는 5083 알루미늄 합금을 이용해 해양환경에서 우수한 내구성을 보유할 수 있는 최적의 양극산화 공정시간을 선정하고자 캐비테이션 실험을 실시하였다. 실험 결과, 공정시간 40분에서 안정적인 산화피막 생성과 함께 탁월한 내캐비테이션 특성을 나타냈다.

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Observation of Diverse Aluminum Oxide Structures in a Phosphoric Acid Solution according to the Applied Anodization Voltage (인산용액에서 양극산화 인가전압에 따른 알루미늄 산화피막 성장 관찰)

  • Jeong, Chanyoung
    • Journal of the Microelectronics and Packaging Society
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    • v.26 no.1
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    • pp.35-39
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    • 2019
  • To date, porous alumina structures have been implemented by electrochemical anodization technique. The anodizing methods can easy to make a porous aluminum oxide film with a regular arrangement, but oxide film with complex structure type such as pillar-on-pore is relatively difficult to implement. Therefore, this study aims to observe the change of anodized oxide pore size, thickness, and structure in a phosphoric acid solution according to applied anodization voltage conditions. For the implementation of hybrid composite oxide structures, it is possible to create by modulating anodization voltage. The experimental conditions were performed at the applied anodization voltage of 100 V and 120 V in 10% phosphoric acid solution, respectively. The experimental results were able to observe the structure of oxides in the form of porous and composite structures (pillar-on-pore), depending on each condition.

Convergent Study of Aluminum Anodizing Method on the Thermal Fatigue (열 피로에 미치는 알루미늄 양극산화 제조방법의 융합연구)

  • Kang, Soo Young
    • Journal of the Korea Convergence Society
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    • v.7 no.5
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    • pp.169-173
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    • 2016
  • Anodic oxidation of aluminum has a sulfuric acid method and a oxalic acid method. Sulfuric acid concentration of the sulfuric acid method is 15~20 wt%. In the case of soft anodizing used in the $20{\sim}30^{\circ}C$ range, and voltage is the most used within a DC voltage 13~15V. In the case of hard anodizing used in the $0{\sim}-5^{\circ}C$ range. An aluminum oxide layer is made using sulfuric acid and oxalic acid. In this study, thermal fatigue of aluminum oxide layer which is made using sulfuric acid and oxalic acid is compared. Crack generating temperature of a sulfuric acid method and a oxalic acid method is $500^{\circ}C$ and $600^{\circ}C$. Thermal fatigue of aluminum oxide layer which is made using oxalic acid is better than thermal fatigue of aluminum oxide layer which is made using sulfuric acid. The characteristic of thermal fatigue can be explained by using thermal expansion coefficient of Al and Al2O3 and manufacturing temperature on Al anodizing. It was made possible through the convergent study to propose the manufacturing method of the anodic oxidation product used at a high temperature.

Preparation of Porous Nano Template of Parabola Shape by Anodic Aluminum Oxide (알루미늄 양극산화에 의한 포물선 형태의 다공성 나노 템플릿 제조)

  • Kim, An-Na;Kim, Hyeon-Jong;Im, Ha-Na;Jeong, Ji-Hye;Sin, Chi-Ho;Park, Chun-Man;Yu, Bong-Yeong
    • Proceedings of the Korean Institute of Surface Engineering Conference
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    • 2015.11a
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    • pp.274-274
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    • 2015
  • 양극산화를 통해 생기는 다공성 알루미나 산화막의 기공은 전해질과 적절한 온도 등 제작 조건에서 자기 조립하여 고도로 정렬된 (Highly ordered) 나노기공을 가지는 AAO (AnodicAluminum Oxide)를 제조하는데 주로 쓰이고 있다. 본 연구에서는 다단계 산화방법으로 빛의 파장에 무관하게 빛의 반사를 매우 효과적으로 줄이는 포물선 형태의 Moth-eye 구조를 가지는 템플릿을 제조하였다. SEM 측정을 통해 구조체 다공성 알루미늄 산화막의 표면적 변화를 알 수 있었고, 일정한 크기와 모양의 pore가 규칙적으로 형성된 것을 확인하였다. 그리고 제조된 템플릿 내부에 고분자를 채워 포물선 형태의 나노핀을 갖는 필름을 제조할 수 있었다.

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The Texture effect for the AAO nano pores (집합조직이 AAO 미세공에 미치는 영향)

  • Park, B.H.;Kim, I.
    • Proceedings of the Korean Society for Technology of Plasticity Conference
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    • 2007.10a
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    • pp.166-167
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    • 2007
  • 본 연구에서는 Anodic Aluminum Oxide(AAO)-Nano Template 제조 시 알루미늄의 결정방위가 AAO 미세공 형성에 미치는 영향을 연구하였다. 시료는 직경 20mm 두께 2mm의 (200), (220), (111) 세가지 알루미늄 단결정 시편을 사용 하였으며 이는 XRD 장비로 단결정임을 확인 하였다. 양극산화에 앞서 평활한 면을 얻기 위해 다이아몬드 콤파운드($1{\mu}m$)로 미세연마 하였으며 양극산화는 세가지 시편에 대해 모두 동일한 조건에서 2단계 양극산화까지 하였다. 결과는 주사전자현미경(FE-SEM)으로 제조된 AAO 표면의 세공형태와 단면을 모두 관찰 하였으며 그 결과 (200) 결정방위가 (220), (111) 결정 방위보다 세공 형태 균일도 및 단면 정열도와 직진성이 우수함을 관찰 할 수 있었다.

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DRAM Package Substrate Using Aluminum Anodization (알루미늄 양극산화를 사용한 DRAM 패키지 기판)

  • Kim, Moon-Jung
    • Journal of the Institute of Electronics Engineers of Korea SD
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    • v.47 no.4
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    • pp.69-74
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    • 2010
  • A new package substrate for dynamic random access memory(DRAM) devices has been developed using selective aluminum anodization. Unlike the conventional substrate structure commonly made by laminating epoxy-based core and copper clad, this substrate consists of bottom aluminum, middle anodic aluminum oxide and top copper. Anodization process on the aluminum substrate provides thick aluminum oxide used as a dielectric layer in the package substrate. Placing copper traces on the anodic aluminum oxide layer, the resulting two-layer metal structure is completed in the package substrate. Selective anodization process makes it possible to construct a fully filled via structure. Also, putting vias directly in the bonding pads and the ball pads in the substrate design, via in pad structure is applied in this work. These arrangement of via in pad and two-layer metal structure make routing easier and thus provide more design flexibility. In a substrate design, all signal lines are routed based on the transmission line scheme of finite-width coplanar waveguide or microstrip with a characteristic impedance of about $50{\Omega}$ for better signal transmission. The property and performance of anodic alumina based package substrate such as layer structure, design method, fabrication process and measurement characteristics are investigated in detail.

Study on the Synthesis of Alumina Membrane by Anodization in Sulfuric Acid (황산전해액에서 양극산화에 의한 알루미나 막 제조에 관한 연구)

  • Kim, Hyun;Chang, Yoon Ho;Hahm, Yeong Min
    • Applied Chemistry for Engineering
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    • v.8 no.5
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    • pp.756-762
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    • 1997
  • The experiment was carried out to fabricate alumina membrane which has a cylindrical pore structure by anodizing aluminium plate in sulfuric acid solution with the electrochemical technique. The aluminium plate for anodizing was prepared by the pretreatment process such as chemical, electro-polishing and thermal treatment. The pore size distribution and the film thickness of alumina membrane were investigated by the implementation of scanning electron microscope(SEM) and BET method. The results show that the oxide film has a geometrical structures like a Keller model and that the membrane has a uniform pore distribution. The pore size and the oxide film thickness are dependent on the anodizing process variables such as the electrolyte concentration, the reation temperature and the anodizing current density.

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Anodic Film Formation on Aluminum(I) (양극산화 피막형성에 관한 연구(I))

  • 한성호
    • Journal of Surface Science and Engineering
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    • v.21 no.3
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    • pp.130-141
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    • 1988
  • 최근에 와서 알루미늄소재의 양극산화피막 형성Mechanism에 관한 연구는 응용분야의 폭넓어지면서 많은 연구가 진행되고 있다. 최신분석 장비의 응용의 폭이 넓어짐으로 해서 연구의 깊이도 점차 증가되고 있는 실정이다. 따라서, 선진국 양극산화피막에 관한 연구는 어디까지 왔는가를 조명하므로 해서 그 응용의 기반을 확고히 하기 위해 본 Review를 연재하고자 한다. 본고에서는 가장 기본적인 연구과제와 양극화산화피막의 Morphology에 관한 내용이다.

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