• Title/Summary/Keyword: polyethylene terephthalate(PET)

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Epoxy-based Interconnection Materials and Process Technology Trends for Semiconductor Packaging (반도체 패키징용 에폭시 기반 접합 소재 및 공정 기술 동향)

  • Eom, Y.S.;Choi, K.S.;Choi, G.M.;Jang, K.S.;Joo, J.H.;Lee, C.M.;Moon, S.H.;Moon, J.T.
    • Electronics and Telecommunications Trends
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    • v.35 no.4
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    • pp.1-10
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    • 2020
  • Since the 1960s, semiconductor packaging technology has developed into electrical joining techniques using lead frames or C4 bumps using tin-lead solder compositions based on traditional reflow processes. To meet the demands of a highly integrated semiconductor device, high reliability, high productivity, and an eco-friendly simplified process, packaging technology was required to use new materials and processes such as lead-free solder, epoxy-based non cleaning interconnection material, and laser based high-speed processes. For next generation semiconductor packaging, the study status of two epoxy-based interconnection materials such as fluxing and hybrid underfills along with a laser-assisted bonding process were introduced for fine pitch semiconductor applications. The fluxing underfill is a solvent-free and non-washing epoxy-based material, which combines the underfill role and fluxing function of the Surface Mounting Technology (SMT) process. The hybrid underfill is a mixture of the above fluxing underfill and lead-free solder powder. For low-heat-resistant substrate applications such as polyethylene terephthalate (PET) and high productivity, laser-assisted bonding technology is introduced with two epoxy-based underfill materials. Fluxing and hybrid underfills as next-generation semiconductor packaging materials along with laser-assisted bonding as a new process are expected to play an active role in next-generation large displays and Augmented Reality (AR) and Virtual Reality (VR) markets.

Experimental Study on Liquid Desiccant Distribution Characteristics at a Dehumidifier with Extended Surface (확장표면을 적용한 액체식 제습기에서 제습액 분배 특성에 관한 실험적 연구)

  • Lee, Min-Su;Chang, Young-Soo;Lee, Dae-Young
    • Proceedings of the SAREK Conference
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    • 2009.06a
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    • pp.645-649
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    • 2009
  • Liquid desiccant cooling technology can supply cooling by using waste heat and solar heat which are hard to use effectively. For compact and efficient design of a dehumidifier, it is important to sustain sufficient heat and mass transfer surface area for water vapor diffusion from air to liquid desiccant on heat exchanger. In this study, the plate type heat exchanger is adopted which has extended surface, and hydrophilic coating and porous layer coating are adopted to enhance surface wettedness. PP(polypropylene) plate is coated by porous layer and PET(polyethylene terephthalate) non-woven fabric is coated by hydrophilic polymer. These coated surfaces have porous structure, so that falling liquid film spreads widely on the coated surface foaming thin liquid film by capillary force. The temperature of liquid desiccant increases during dehumidification process by latent heat absorption, which leads to loss of dehumidification capacity. Liquid desiccant is cooled by cooling water flowing in plate heat exchanger. On the plate side, the liquid desiccant can be cooled by internal cooling. However the liquid desiccant on extended surface should be moved and cooled at heat exchanger surface. Optimal mixing and distribution of liquid desiccant between extended surface and plate heat exchanger surface is essential design parameter. The experiment has been conducted to verify effective surface treatment and distribution characteristics by measuring wall side flow rate and visualization test. It is observed that hydrophilic and porous layer coating have excellent wettedness, and the distribution can be regulated by adopting holes on extended surface.

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Solvent-assisted sealing of poly(methylmethacrylate) microchannel under mild conditions (용매를 이용한 Poly(methylmethacrylate)의 저온 저압 본딩 및 마이크로 채널 표면의 선택적 소수성 코팅기법 개발)

  • Lee, Jae-Seon;Lee, Nae-Yun
    • Proceedings of the Korean Institute of Surface Engineering Conference
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    • 2017.05a
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    • pp.110-110
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    • 2017
  • 마이크로 플루이딕 디바이스는 화학, 생물학 실험 및 생체 의학 진단을 위한 플랫폼으로 지난 20년간 그 사용 및 연구가 증가되어 왔다. 마이크로 플루이딕 디바이스를 제작하는 데 있어 가장 일반적으로 사용되는 재료는 실리콘이지만 비용이 많이 들고 불투명하므로 광학 검출이 필요한 곳에 적용이 제한된다. 이러한 측면에서 열가소성 플라스틱은 상업화의 중요한 요소인 대량 생산에 있어 큰 잠재력을 가지고 있으며 저렴하고, 가공이 쉽고, 유연하고, 광학적으로 투명하고, 화학적으로 불활성이며, 생체적합성을 가진다. 본 연구에서는 열가소성 플라스틱의 일종인 PMMA Poly(methylmethacrylate)를 효율적으로 접합하기 위해 비교적 낮은 온도와 낮은 압력에서 에탄올을 활용한 접착방식을 개발하였다. 먼저, PMMA 기판의 전체 표면을 $80^{\circ}C$에서 20 분 동안 에탄올로 처리한 후, $60^{\circ}C$에서 20 분간 열 압착하는 방식으로 영구적인 결합이 이루어졌다. 결합 강도 및 채널의 sealing 정도를 확인하기 위해, 인장 강도, 누수 및 파열 테스트를 수행하였다. 결합강도는 약 12.4 MPa로 타 연구와 비교할 때 매우 높았으며 마이크로 채널의 전체 내부 체적보다 거의 450 배 높은 강한 액체 흐름을 견딜 정도로 견고한 결합이 유지되었다. 열가소성 플라스틱의 본딩에 사용되는 유기 용매는 광학 특성을 희생시키지 않으면서 결합 속도를 높일 수 있지만, 결합 공정 중에 용매로 인해 마이크로 채널이 막히는 현상이 발생될 수 있다. 따라서, 견고한 본딩을 유지하면서 채널 막힘을 방지하기 위해 마이크로 채널을 소수성으로 선택적으로 처리하여 내벽의 표면 특성을 튜닝해 주는 기법을 추가로 적용하였다. 본 연구에서 사용한 방법은 아민-PDMS (polydimethylsiloxane) 링커를 적용하여 기판 표면의 극성을 변경시켜 주었다. 아민-PDMS 링커는 PC (polycarbonate), PET (polyethylene terephthalate), PVC (polyvinyl chloride) 및 PI (polyimide)와 같은 다양한 열가소성 플라스틱의 표면 소수성을 현저히 증가시키며 화학적, 열적 안정성이 뛰어나다. 아민-PDMS 링커는 PMMA의 카보닐 그룹과 반응할 수 있는 아민 사이드 그룹을 포함하는 PDMS 백본으로 구성되며 처리된 대상표면을 소수성으로 만든다. 아민-PDMS 링커 처리 이후 채널은 소수성으로 변화되었으며 이는 접촉각(contact angle)의 증가로 확인되었다. 코팅된 채널을 에탄올로 30분간 80도에서 처리하여도 소수성은 그대로 유지되어 마이크로 채널의 선택적인 소수성 코팅이 성공적으로 수행되었다.

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Physical and Electrical Properties of Carbon Black/PVDF Composite Electrode as Ohmic Joule Heater (면상발열체용 Carbon Black/PVDF 복합전극의 물리 및 전기적 특성)

  • Doh, Chil-hoon;Jin, Bong-soo;Moon, Seong-in;Chung, Young-Dong;Jeong, Dong-yong;Bang, Young-dal
    • Applied Chemistry for Engineering
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    • v.20 no.6
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    • pp.692-695
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    • 2009
  • Ohmic joule heating electrodes were developed for the electrical heater of the floor of a room. A composite slurry of super pure black and polyvinylidene fluoride with/without the additives of multi-walled carbon nanotube or kindney stone powder was coated as a thin film on the polyethylene terephthalate film. The performances of heating electrodes were evaluated checking specific conductivity, adhesion strength and hardness. The addition of kindney stone powder increases specific resistance and hardness in a small extent. However, the addition of carbon nanotube increases specific conductivity and hardness. The properties of various compositions of ohmic joule heating electrodes were evaluated.

FTS (Facing Target Sputtering)장비를 이용한 알루미늄 무기산화막 박막에 관한 연구

  • Bang, Seung-Gyu;Lee, Dong-Uk;Bae, Gang;Kim, Hwa-Min;Son, Seon-Yeong;Jeong, Sang-Gwon
    • Proceedings of the Korean Vacuum Society Conference
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    • 2012.02a
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    • pp.169-169
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    • 2012
  • 현재 디스플레이 시장은 LCD (Liquid Crystal Display), PDP (Plasma Display Panel) 등과 같이 평판 디스플레이가 주류를 이루고 있으며 현재에는 기존의 디스플레이와는 달리 잘 휘어지고 높은 투과성을 가지는 플렉시블 디스플레이에 대한 연구가 활발히 진행 중이다. 하지만 이러한 플렉시블 디스플레이에 사용되는 플라스틱 기판의 경우 용제에 대한 화학적 저항성 및 기계적인 안정성이 취약한 점과 대기중의 수분이나 산소가 플라스틱 기판을 통하여 소자내로 침투하게 되어 금속전극을 산화시키거나 기포 또는 흑점 등과 같은 비 발광 영역이 확산되어 소자의 수명을 단축시키는 치명적인 단점을 가진다. 이에 본 실험에서는 고밀도 플라즈마 형성이 가능하고 저온공정이 가능한 FTS (Facing Target Sputtering) 장비를 이용하여 Polyethylene terephthalate (PET) 기판위에 낮은 수분 투과율 또는 산소 투과율을 갖는 양질의 무기 산화막을 적층하기 위해 저 투습도 및 기계적인 경도 향상을 위한 비 반응성 박막으로 $Al_20_3$층을 Ar분위기에서 증착하였고 그 위에 박막의 stress 감소, 유연성 향상을 위한 반응성 박막으로 Al을 Ar과 $O_2$를 비율별로 증착하여 비교 실험하였다. 이와 같이 제작된 무기산화막들을 Uv- spectrophotometer를 이용하여 광학적 특성을 조사한 결과 가시광 영역에서 모두 80% 이상의 높은 투과율을 나타내었으며, 그 외 XRD (X-ray Diffraction)를 사용하여 결정성을 확인, SEM (Scanning Electron Microscope), AFM (Atomic Force Microscope)을 이용하여 박막의 구조와 표면향상 및 표면조도를 측정한 결과 모든 박막에서 밀집도가 좋으며 거칠기가 작은 것으로 확인되었다. 마지막으로 수분 투과율(WVTR)을 알아보기 위해 Mocon (Permatran W3/31)장비를 이용하여 측정한 결과 $1.0{\sim}3.0{\times}10^{-3}g/m{\cdot}day$의 낮은 수분 투과율을 볼 수 있었다. 이러한 측정 결과로 볼 때 향후 FTS 장비를 이용하여 양질의 플라즈마를 형성하여 알루미늄 무기산화막을 이용한 고밀도 다층막을 형성하면 더욱 낮은 수분투과율을 갖는 가스차단막을 제작할 수 있을 것으로 보여지며 반도체 소자 및 디바이스의 Pachaging으로도 사용가능 할 것이라 사료된다. 본 연구는 한국산업기술진흥원에서 지원하는 2011년도 지역산업기술개발사업의 연구수행으로 인한 결과물임을 밝힙니다.

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스퍼터링을 이용한 ITO 박막의 저온 증착

  • Jang, Seung-Hyeon;Lee, Yeong-Min;Yang, Ji-Hun;Jeong, Jae-In
    • Proceedings of the Korean Vacuum Society Conference
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    • 2010.02a
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    • pp.263-263
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    • 2010
  • 투명도전막(indium tin oxide; ITO)은 투명하면서도 전기 전도도가 높기 때문에, 액정표시소자(LCD; Liquid Crystal Display), 전자발광소자(ELD; Electroluminescent Display) 및 전자 크로믹 소자(Electrochromic Display)를 포함하는 평판형 표시 소자(FPD; Flat Panel Display)와 태양전지 등에 이용되고 있다. 낮은 비저항과 높은 투과율의 ITO 박막은 $300^{\circ}C$ 이상의 고온에서 코팅해야 하는 것으로 알려져 있다. 그러나 최근 플라스틱과 같은 연성 소자가 전자부품에 널리 이용되면서 ITO를 저온에서 증착해야할 필요성이 대두되고 있다. 본 연구에서는 ITO를 플라스틱에 적용하기 위한 저온 코팅 공정 및 시편의 전 후처리공정을 개발하여 박막의 특성을 알아보고자 한다. 실험에 사용된 기판은 고투과율의 고분자(polyethylene terephthalate; PET) 필름이며 $5\;{\times}\;10\;cm^2$의 크기로 절단하여 알코올로 초음파 세척을 실시하였고, 진공 용기에 장입한 후 펄스전원을 이용하여 3분간 in-situ 청정을 실시하였다. ITO 코팅은 마그네트론 스퍼터링을 이용하였으며, 코팅시간, 전처리, 후처리, 기판온도, 산소유량 등 코팅 조건에 따른 박막의 특성을 조사하였다. ITO 박막의 코팅 조건에 따른 박막의 결정구조 분석은 x-선 회절(x-ray diffraction; XRD)을 이용하였고, 박막의 표면형상과 두께 보정 및 단면의 미세조직과 결정 성장 여부 등은 투과전자 현미경(transmission electron microscope; TEM)을 이용하여 분석하였다. 또한 ITO 박막의 면저항과 분광특성은 four-point Probe (CMP-100MP, Advanced Instrument Technology), spectrophotometer (UV-1601, SHIMADZU)를 이용하여 측정하였다. ITO 박막의 광학특성 분석 결과 전광선 투과율은 두께에 따라 변화 하였지만, 색차와 Haze 값은 증착 조건에 따라 큰 차이는 보이지 않았다. 그리고 박막의 결정화에 영향을 주는 가장 중요한 인자는 기판온도이지만, 기판온도를 높이지 못할 경우 비평형 마그네트론(unbalanced-magnetron; UBM)에 의해서 플라즈마 밀도를 높이는 방법으로 유사한 효과를 얻을 수 있음을 확인하였다.

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Continuous Coating Process Development for PEFC Membrane Electrode Assembly (고분자 연료전지용 MEA 연속 코팅공정 개발)

  • Park, Seok-Hee;Yoon, Young-Gi;Kim, Chang-Soo;Lee, Won-Yong
    • 한국신재생에너지학회:학술대회논문집
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    • 2006.06a
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    • pp.110-112
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    • 2006
  • Membrane electrode assembly (MEA) for polymer electrolyte fuel cell (PEFC) are commonly prepared in the research laboratory by spraying, screen-printing and brushing catalyst slurry onto membrane or other support material like carbon paper or polyimide film in a batch style. These hand applications of the catalyst slurry are painstaking process with respect to precision of catalyst loading and reproducibility. It has been generally mentioned that the adoption of continuous process is very helpful to develop the reliable product. In the present work, we report the results of using continuous type coater with doctor-blade to coat catalyst slurry for preparing the MEA catalyst layers In a faster and highly reproducible fashion. We show that while expectedly faster than batch style, the machine coater requires the use of slurry of appropriate composition and a properly selected transfer decal material in order to achieve superior MEA plat lnw loading reproducibility. To make highly viscous catalyst slurry that is imperative for using coater, we use 40wt.% Nafion solution and minimize the content of organic solvent. And the choice of proper high surface area catalyst is important in the viewpoint of making well-dispersed slurry. After catalyst coating onto the support material, we transferred the catalyst layer to both sides of Nafion membrane by hot-pressing In this case, the degree of transfer was Influenced by hot-pressing condition including temperature, pressure, and time. To compare the transferring ability, we compared so many films and detaching papers. And among the support, polyethylene terephthalate(PET) film shows the prominent result.

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Study on the Effect of the Electrode Structure of an ITO Nanoparticle Film Sensor On Operating Performance (ITO Nanoparticle Film을 이용한 센서의 전극 구조가 동작 성능에 미치는 영향에 대한 연구)

  • An, Sangsu;Noh, Jaeha;Lee, Changhan;Lee, Sangtae;Seo, Dongmin;Lee, Moonjin;Chang, Jiho
    • Journal of Sensor Science and Technology
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    • v.31 no.2
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    • pp.90-95
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    • 2022
  • The effect of the structure of an ITO nanoparticle film sensor on its performance was studied. A printed ITO film (P-ITO film) was fabricated on a flexible polyethylene terephthalate (PET) substrate, and the contact resistance of the electrode and sensor response change were clarified according to the detection position. The contact resistance between Ag and P-ITO was observed to be -204.4 Ω using the transmission line method (TLM), confirming that a very good ohmic contact is possible. In addition, we confirmed that the contact position of the analyte had a significant influence on the response of the sensor. Based on these results, the performance of the four types of sensors was compared. Consequently, we observed that 1) optimizing the resistance of the printed film, 2) optimizing the electrode structure and analyte input position, and 3) optimizing the electrode area are very important for fabricating a metal oxide nanoparticle (MONP) sensor with optimal performance.

Research on Radiation Shielding Film for Replacement of Lead(Pb) through Roll-to-Roll Sputtering Deposition (롤투롤 스퍼터링 증착을 통한 납(Pb) 대체용 방사선 차폐필름 개발)

  • Sung-Hun Kim;Jung-Sup Byun;Young-Bin Ji
    • Journal of the Korean Society of Radiology
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    • v.17 no.3
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    • pp.441-447
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    • 2023
  • Lead(Pb), which is currently mainly used for shielding purposes in the medical radiation, has excellent radiation shielding functions, but is continuously exposed to radiation directly or indirectly due to the harmfulness of lead itself to the human body and the inconvenience caused by its heavy weight. Research on shielding materials that are human-friendly, lightweight, and convenient to use that can block risks and replace lead is continuously being conducted. In this study, based on the commonly used polyethylene terephthalate (PET) film and the fabric material used in actual radiation protective clothing, a multi-layer thin film was realized through sputtering and vacuum deposition of bismuth, tungsten, and tin, which are metal materials that can shield radiation. Thus, a shielding film was produced and its applicability as a radiation shielding material was evaluated. The radiation shielding film was manufactured by establishing the optimized conditions for each shielding material while controlling the applied voltage, roll driving speed, and gas supply amount to manufacture the shielding film. The adhesion between the parent material and the shielding metal thin film was confirmed by Cross-cut 100/100, and the stability of the thin film was confirmed through a hot water test for 1 hour to measure the change of the thin film over time. The shielding performance of the finally realized shielding film was measured by the Korea association for radiation application (KARA), and the test conditions (inverse wide beam, tube voltage 50 kV, half layer 1.828 mmAl) were set to obtain an attenuation ratio of 16.4 (initial value 0.300 mGy/s, measured value 0.018 mGy/s) and damping ratio 4.31 (initial value 0.300 mGy/s, measured value 0.069 mGy/s) were obtained. by securing process efficiency for future commercialization, light and shielding films and fabrics were used to lay the foundation for the application of films to radiation protective clothing or construction materials with shielding functions.

Effects of Grape Fruit Stem Extracts Treatment on the Storage Property of Fresh Jujube (Zizyphus jujuba) (생대추의 저장성에 미치는 포도송이줄기 추출물 처리의 효과)

  • Woo, Koan Sik;Son, Sang Ik;Jeong, Heon-Sang;Lee, Junsoo;Lee, Hee-Bong
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.35 no.2
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    • pp.192-198
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    • 2006
  • Treatment effects of grape fruit stem extracts (GFSE) containing trans-resveratrol on the storage property of fresh jujube (Zizyphus jujube) were investigated. Fresh jujubes were packed in different storage containers [polyethylene terephthalate (PET) and polyethylene (PE)], and treated with GFSE containing trans-resveratrol of 10, 30 and 50 ppm, respectively. The storage vessels filled with $N_2$ gas, and stored in refrigerator $(0{\pm}1^{\circ}C)$ during 18 weeks, and then quality characteristics during storage period were analysed. Ethylene gas increased until 8 weeks and decreased afterward. Decaying of jujube started at $6\~8$ weeks in control, but it did at 14 week storage for the fruits at $50\%$ maturity treated with 10 ppm of GFSE and packed in PE vessel. Soluble solid (Brix degree) and total acidity of fresh jujube slightly increased in all the treatments during storage period. Hardness slightly increased until 4 weeks and decreased afterward. Vitamin C content was at the highest content of $86.8\~273.4$ mg/100g for most of treatments at 2 weeks and decreased afterward. Storage stability was higher for $50\%$ maturity fruits than for the $70\%$ maturity, and higher for PE vessels than PET containers. Storage period of fresh jujube in this experiment ranges in $10\~12$ weeks for $50\%$ maturity fruits treated with 10 ppm of GFSE and packed in PE vessel.