• Title/Summary/Keyword: Pore Sealing

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Porosity Control of the Sealing Glass for Joining Alumina Components in a NaS Battery Cell Packaging (NaS 배터리 셀 패키지의 알루미나 컴포넌트 접합용 Sealing Glass의 기공율 제어)

  • Kim, Chi Heon;Heo, Yu Jin;Kim, Hyo Tae
    • Journal of the Microelectronics and Packaging Society
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    • v.23 no.4
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    • pp.57-61
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    • 2016
  • Thick film sealing glass paste is required for cell packaging of NaS based battery for energy storage system, to join the beta-alumina electrolyte tube and the alpha-alumina battery cell cap components. This paper presents the effect of the particle sizes of seal glass powder and the sealing temperatures on the microstructure of the glass sealants was investigated. It was found that the larger in the particle size of seal glass powder, the smaller the pore volume and the number of pores in a unit area. Also, the number of pores decreased with increasing the sealing temperatures while the pore size was increased. This result enables the control of porosity, pore distribution and number of pores in a microstructure of glass sealing component by proper selection of glass powders particle size and sealing temperature.

Study on Improvement of Corrosion Resistance and Wear Resistance by Anodizing and Sealing Treatment with Nano-diamond Powder on aluminum (알루미늄의 아노다이징과 나노 다이아몬드 분말 봉공처리에 의한 내식성과 내마모성 향상에 관한 연구)

  • Kang, Soo Young;Lee, Dae Won
    • Journal of Surface Science and Engineering
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    • v.47 no.3
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    • pp.121-127
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    • 2014
  • In this study, in order to improve corrosion resistance and wear resistance of aluminum, surface treatment was made by anodizing with oxalic acid solution and sealing with nano-diamond powder. Average size of nano-diamond powder was 30nm. Anodizing with oxalic acid made many pores in the aluminum oxide layer. Pore size and oxide thickness were investigated by scanning electron microscope (SEM). Pore size increased as temperature increased and voltage increased. It was possible to make oxide layer with pore diameter more than 50 nm. Oxide thickness increased as temperature and voltage and treatment time increased. Oxide layer with above $10{\mu}m$ thickness was made. Aluminum oxide layer with many pores was sealed by water with nano-diamond powder. Surface morphology was investigated by SEM. After sealing treatment with nano-diamond powder, corrosion resistance, wear resistance and hardness increased.

Study on Anodizing at Constant Current for Sealing Treatment of Nano-diamond Powder (나노 다이아몬드 분말 봉공처리 적용을 위한 정전류에서의 알루미늄 양극산화 제조 연구)

  • Kang, Soo Young;Lee, Dae Won
    • Journal of Powder Materials
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    • v.21 no.2
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    • pp.114-118
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    • 2014
  • In this study, an aluminum oxide layer for sealing treatment of nano-diamond powder was synthesized by anodizing under constant current. The produced pore size and oxide thickness were investigated using scanning electron microscopy. The pore size increased as the treatment time increased, current density increased, sulfuric acid concentration decreased, which is different from the results under constant voltage, due to a dissolution of the oxide layers. The oxide layer thickness by the anodizing increased as temperature, time, and current density increased. The results of this study can be applied to optimize the sealing treatment process of nano-diamond particles of 4-10 nm to enhance the resistances of corrosion and wear of the matrix.

Effect of Sealing Process on the Tribological Behavior of the Plasma Spray Zirconia Based Coatings (지르코니아 충전이 지르코니아계 용사코팅층의 마모마찰에 미치는 영향)

  • 신종한;임대순;안효석
    • Proceedings of the Korean Society of Tribologists and Lubrication Engineers Conference
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    • 1998.10a
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    • pp.265-271
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    • 1998
  • High temperature wear behavior of plasma sprayed zirconia based coating sealing with zirconia sol were investigated for high temperature wear resistance application. The zirconia powders containing 2.5, 5.0, 7.5, 10.0 mol% of MoS$_2$, $Fe_2O_3$ for plasma spray were made by spray drying method. As-sprayed coating was sealed by zirconia-sol to fill up the pore and crack in coating. wear test were performed at temperature ranges from room temperature to 600$\circ$C. The microstructural changes of before and after sealing process were examined by SEM, XRD and EPMA. After sealing process, the porosity was decreased and micro-hardness was increased. The wear properties of coating after sealing process were improved by sealing of pores and cracks. The behavior of wear amount and coefficient of friction were same tendency to before sealing process.

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Solid Particle Erosion Behavior of Inconel 625 Thermal Spray Coating Layers (Inconel 625 열용사 코팅 층의 고상입자 침식 거동)

  • Park, Il-Cho;Han, Min-Su
    • Journal of the Korean Society of Marine Environment & Safety
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    • v.27 no.4
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    • pp.521-528
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    • 2021
  • In this study, to repair damaged economizer fin tubes on ships, sealing treatment was performed after applying arc thermal spray coating technology using Inconel 625. A solid particle erosion (SPE) experiment was conducted according to ASTM G76-05 to evaluate the durability of the substrate, thermal spray coating (TSC), and thermal spray coating+sealing treatment (TSC+Sealing) specimens. The surface damage shape was observed using a scanning electron microscope and 3D laser microscope, and the durability was evaluated through the weight loss and surface roughness analysis. Consequently, the durability of the substrate was superior to that of TSC and TSC+Sealing, which was believed to be owing to numerous pore defects in the TSC layer. In addition, the mechanism of solid particle erosion damage was accompanied by plastic deformation and fatigue, which were the characteristics of ductile materials in the case of the substrate, and the tendency of brittle fracture in the case of TSC and TSC+Sealing was confirmed.

Effect of Silane Coupling Treatment on the Joining and Sealing Performance between Polymer and Anodized Aluminum Alloy

  • Lee, Sung-Hyung;Yashiro, Hitoshi;Kure-Chu, Song-Zhu
    • Korean Journal of Materials Research
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    • v.31 no.3
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    • pp.122-131
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    • 2021
  • In the fabrication of joined materials between anodized aluminum alloy and polymer, the performance of the metal-polymer joining is greatly influenced by the chemical properties of the oxide film. In a previous study, the dependence of physical joining strength on the thickness, structure, pore formation, and surface roughness of films formed on aluminum alloys is investigated. In this study, we investigated the effect of silane coupling treatment on the joining strength and sealing performance between aluminum alloy and polymer. After a two-step anodization process with additional treatment by silane, the oxide film with chemically modified nanostructure is strongly bonded to the polymer through physical and chemical reactions. More specifically, after the two-step anodization with silane treatment, the oxide film has a three-dimensional (3D) nanostructure and the silane components are present in combination with hydroxyl groups up to a depth of 150 nm. Accordingly, the joining strength between the polymer and aluminum alloy increases from 29 to 35 MPa, and the helium leak performance increases from 10-2-10-4 to 10-8-10-9 Pa ㎥ s-1.

Cost-effective method for reducing local failure of floodwalls verified by centrifuge tests

  • Chung R. Song;Binyam Bekele;Brian D. Sawyer;Ahmed Al-Ostaz;Alexander Cheng;Vanadit-Ellis Wipawi
    • Geomechanics and Engineering
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    • v.33 no.2
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    • pp.155-165
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    • 2023
  • Hurricane Katrina swept New Orleans, Louisiana, USA, in 2005, causing more than 1,000 fatalities and severe damage to the flood protection system. Recovery activities are complete, however, clarifying failure mechanisms and devising resilient and cost-effective retrofitting techniques for the flood protection system are still of utmost importance to enhance the general structural integrity of water retaining structures. This study presents extensive centrifuge test results to find various failure mechanisms and effective retrofitting techniques for a levee system. The result confirmed the rotational failure and translational failure mechanisms for the London Ave. Canal levee and 17th St. Canal levee, respectively. In addition, it found that the floodwalls with fresh waterstop in their joints perform better than those with old/weathered waterstop by decreasing pore water pressure build-up in the levee. Structural caps placed on the top of the joints between I-walls could also prevent local failure by spreading the load to surrounding walls. At the same time, the self-sealing bentonite-sand mixture installed along the riverside of floodwalls could mitigate the failure of floodwalls by blocking the infiltration of seepage water into the gap formed between levee soils and floodwalls.

A Case Study on the Suction Drain Method for Soft Ground Improvement (연약지반 개량을 위한 석션드레인공법의 적용 사례)

  • Kim, Do-Hyung;Kim, Byung-Il;Han, Sang-Jae;Lee, Jae-Ju
    • Proceedings of the Korean Geotechical Society Conference
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    • 2009.03a
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    • pp.743-749
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    • 2009
  • In this study, the field test for suction drain method which does not require a surcharge load and a sealing sheet was performed at west seashore's site constructed by the dredged and reclaimed clay. The improvements of soft ground by suction drain method was analyzed by the results of real-time field measurement, SPT(Standard Penetration Test) and laboratory tests. The results indicated that the soft ground improvement is effective the vertical drain method used with vacuum pressure rather than surcharge load with considering settlements, dissipation of pore water pressure and shear strength.

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The Effect of Alumina Addition on Microstructure and Mechanical Properties of Plasma-Sparayed Ceria Based Electrolyte Coatings (알루미나 첨가가 플라즈마 용사된 세리아계 전해질체 코팅츠의 미세구조 및 기계적 특성에 미치는 영향)

  • 김장엽;유석원;임대순
    • Journal of the Korean Ceramic Society
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    • v.35 no.6
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    • pp.610-618
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    • 1998
  • Alumina were added to ceria based ceramic powders upto 9.7 vol% and composite powders were sprayed by plasma spraying process in order to improve the mechanical properties such as hardness fracture tough-ness and thermal shock resistance. The ceria based coating sprayed without alumina has the typical colum-nar and lamellar structure. Alumina addition has lowered the amount of columnar and lamellar sturcture Added alumina was segreagated in the grain boundary and grain of ceria based crystal accompanied with pore. The maximum value of density and the minimum value of porosity were observed at the sprayed coating with 4.8 vol% alumina. The hardness fracture toughness and thermal shock resistance were increased with alumina addition. The improvement of mechanical properties of plasma sparyed ceria based coatings result-ed from the disapperance of the columnar and lamellar sturcture by addition of alumina.

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알루미늄 양극산화 피막의 색조에 미치는 전해 인자의 영향

  • Choe, In-Cheol;Jo, Hyo-Jae;Son, In-Jun
    • Proceedings of the Korean Institute of Surface Engineering Conference
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    • 2017.05a
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    • pp.131-131
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    • 2017
  • 알루미늄은 내식성, 내마모성과 같은 물리적, 화학적 성질이 우수하지 못하여 이를 향상시키기 위해서 양극산화법이 산업적으로 널리 사용되고 있다. 알루미늄 양극산화법을 적용하면 강도, 내마모성 및 내식성이 향상될 뿐만 아니라 알루미늄 표면에 규칙적으로 배열된 30nm~100nm 크기의 pore에 염료를 흡착시켜 다양한 색상의 외관을 가지는 양극산화피막을 형성시킬 수 있다. Pore간의 간격은 수십nm~수백nm 정도이며, pore의 크기와 간격 및 깊이는 양극산화조건(양극산화 전압, 전해액의 종류와 농도 및 온도)에 의해 크게 변화된다. 또한 염료의 농도와 착색 시간에 따라서 양극산화 피막의 색조가 변화되는 것으로 알려져 있다. 따라서 본 연구에서는 양극산화피막의 색조에 미치는 전해조건의 영향을 조사하고, 분광측색계를 사용하여 산화피막의 색조를 정량적으로 분석하고 또한 산화피막의 pore에 흡착된 염료를 정량분석하기 위해서 UV-visible을 사용하여 분석하였다. Al5052 합금을 이용하여 에칭, 양극산화, 착색처리, 봉공(sealing)처리를 실시하였다. $55^{\circ}C$ 100g/L NaOH 용액에서 에칭을, $25^{\circ}C$ 10 vol.% $HNO_3$ 용액에서 디스머트를 실시한 다음, $25^{\circ}C$ 10 vol.% $H_2(SO_4)$ 용액에서 15V의 정전압으로 양극산화를 실시하였다. 이후, $55^{\circ}C$ 5~8g/L의 오렌지, 블랙 착색염료(일본 OKUNO 사(社)의 TAC-LH(301), TAC-BLH(411))를 사용하여 착색처리를, $85^{\circ}C$ 초산니켈 수용액에서 봉공처리를 실시하였다. 착색조건으로는 양극산화 시간(5분, 10분, 15분, 20분), 착색 시간(15초, 1분, 2분, 5분) 및 착색 농도(오렌지 -2.5g/L, 5g/L, 7.5g/L, 블랙 - 4g/L, 8g/L, 12g/L)를 변화시켰으며, 산화피막의 색조를 정량 분석하기 위해 분광측색계를 사용하였고 흡착된 염료의 농도를 정량 분석하기 위해서 $55^{\circ}C$, 1M NaOH에 재용해하여 UV-visible로 흡광도를 측정하였다. 양극산화피막의 색조는 양극산화 시간이 길어질수록, 착색시간이 길어질수록, 착색농도가 진할수록 산화피막에 흡착되는 염료의 양이 증가하며 색조가 더 선명해지고 진해지는 것을 확인하였다. 이를 분광측색계로 분석하였을 때 각 전해조건하에서 경향성을 나타내었다. 또한 흡광도 측정을 통해 계산한 염료의 양과 전해조건의 상관관계를 조사하였다. 양극산화 시간이 길어지면 산화피막의 두께가 증가하여 염료가 흡착될 수 있는 표면적이 넓어지고, 착색 시간이 길어지면 동일한 산화피막에 더 많은 염료가 흡착이 된다. 그리고 착색 농도가 진할수록 동일면적, 동일시간 하에서 더 많은 염료가 흡착되어 결과적으로 전해조건이 강해질수록 산화피막의 색조가 진해지는 것으로 판단된다.

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