• Title/Summary/Keyword: 수지조성

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A Study on Ion Exchange Characteristics with Arrangement of Ion Exchange Column (이온교환 수지탑 배열에 따른 이온교환 특성 연구)

  • Jeong, Hyun-Jun;Ahn, Hyun-Kyoung;Rhee, In-Hyoung
    • Proceedings of the KAIS Fall Conference
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    • 2006.05a
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    • pp.596-598
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    • 2006
  • 본 논문에서는 수지 조성비 및 수지탑 배열이 이온교환 특성에 미치는 영향을 조사하기 위하여 전해질 농도는 $Na^+\;125ppm$, $Cl^-\;315ppm$ 유속은 500ml/min, 이온교환 수지는 ROHM&HAAS IR 120 양이온 수지와 ROHM&HAAS IRA 402 음이온 수지를 사용하였고, 수지탑 배열은 혼상-혼상-음이온, 혼상-음이온-혼상, 음이온-혼상-혼상 수지탑 순으로, 이온교환 수지탑의 양 음이온교환 수지의 조성 비율은 1:1, 1:2, 1:3 로 변화하여 실험한 결과 이온교환 수지의 조성비 변화에서는 양 음이온교환 수지 조성비 1:2의 경우 1:1, 1:3의 경우보다 파과시간이 연장되었다. 수지탑 배열이 음이온-혼상-혼상 수지탑인 경우 혼상-혼상-음이온 수지탑 배열과 파과시간을 비교해보면 약 60% 파과시간이 연장되었다. 따라서 수지탑 배열은 음이온-혼상-혼상 수지탑 순으로, 수지 조성비는 1:2일 때 가장 효율적인 것으로 나타났다.

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Study on Self-extinguishing Epoxy Resin Composition (자기소화성 에폭시 수지 조성물 연구)

  • Kim, Young Chul;Cha, Ok Ja;Kim, Kyung Man
    • Journal of Adhesion and Interface
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    • v.11 no.4
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    • pp.168-173
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    • 2010
  • Flame retardant halogen containing compounds have been replaced as environmentally safe material which does not contain hazardous materials generating toxic gas. Self-extinguishing epoxy resin compositions have been studied in order to produce eco-friendly epoxy molding compound, which is used as insulating materials in semiconductor. We developed self-extinguishing epoxy resin compositions which do not contain halogen compounds with new epoxy resin (E3). The new epoxy molding compound (EMC-1) showed high flame resistance (UL-V0) and high thermal resistance ($451.9^{\circ}C$ at 5 wt% loss) enough to use as eco-friendly material.

Effects of Resin Compositions and Additives on Gelation Properties and Bonding Characteristics of Urea-Melamine-Formaldehyde resin adhesives (요소·멜라민 수지 접착제의 겔화성 및 접착특성에 미치는 수지조성과 첨가물의 영향)

  • Roh, Jeang-Kwan
    • Journal of the Korean Wood Science and Technology
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    • v.27 no.1
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    • pp.72-78
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    • 1999
  • To accelerate the curing and to improve the bonding properties of urea-melamine-formaldehyde (UMF) resin adhesives for plywood, the effects of resin compositions and additives on gelation time and bonding strength were discussed. The gelation time of UMF resin prepared by simultaneous reaction with urea(U), melamine(M) and formaldehyde(F) at M/U molar ratio 0.2 was shortened as the molar ratio of formaldehyde to urea was increased. However, at F/U molar ratios higher than 2.5, the amounts of free fomaldehyde of resin could not satisfy with KS standard, Therefore, it was difficult to increase the amount of formaldehyde in resin composition for the purpose of fast gelation time. With increasing the molar ratio of melamine to urea(M/U) from 0.3 to 0.6 at constant F/U molar ratio 3.4, the gelation time of UMF resin was slightly decreased, while gradually increased at M/U molar ratio higher than 0.6. The gelation properties of UMF resin and bonding strength of UMF-bonded plywood could be enhanced by using ammonium chloride and p-toluene sulfonic acid as a curing-agent together with wheat flour and corngluten powder as a extender.

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Tensile Properties of CERP Composite with Different Resin Composition under Cryogenic Temperature (극저온 환경에서 탄소섬유강화 복합재료의 수지조성변화에 따른 인장 물성 측정)

  • Kim, Myung-Gon;Kang, Sang-Guk;Kong, Cheol-Won;Kim, Chun-Gon
    • Composites Research
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    • v.20 no.4
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    • pp.1-8
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    • 2007
  • In this study, carbon fiber reinforced polymeric (CFRP) composites with different resin composition were manufactured and resin formulation in composite materials were presented through tensile tests for cryogenic use. Thermo-mechanical cyclic loading (up to 6 cycles) was applied to CFRP unidirectional laminate specimens from room temperature to $-150^{\circ}C$. Tensile tests were then performed at $-150^{\circ}C$ using an environmental test chamber. In addition, matrix-dominant properties such as the transverse and in-plane shear characteristics of each composite model were measured at $-150^{\circ}C$ to examine the effects of resin formulation on their interfacial properties. The tensile tests showed that the composite models with large amounts of bisphenol-A epoxy and CTBN modified rubber in their resin composition had good mechanical performance at cryogenic temperature (CT).

A Study on Ion Exchange Characteristics with Composition and Concentration of Electrolyte, Ratio of Ion Exchange Resin (전해질 성분 및 농도, 이온교환 수지 비율에 따른 이온교환 특성 연구)

  • Ahn Hyun-Kyoung;Rhee In-Hyoung;Yoon Hyoung-Jun;Jeong Hyun-Jun
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.7 no.4
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    • pp.727-732
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    • 2006
  • The object of this study was to investigate the influence of composition and concentration of electrolyte, ratio of cation to anion exchange resin of mixed ion exchange column in the performance of ion exchange. Also this work examined the removal capability of suspended solids by ion exchange resin and the effect of particule on the characteristics of ion exchange. Breakthrough time was extended as the amount of ions and particles present in liquid was decreased. The case of anion, the breakthrough sequence is $Cl^{-}, but the case of cation, the breakthrough sequence is $Na^{+}. As for the ratio of cation to anion exchange resin of 1:2, the breakthrough time was prolonged compared with that of 1:1 and 1:3. For the electrolyte of equal concentration containing suspended solid, breakthrough time was contracted less than 20%. It results in the increase in the removal capacity of cation exchange resin. For the higher ratio of cation exchange resin, suspended solids are shorten the cation's breakthrough time so that the runtime of ion exchange resin tower is increased.

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Structural Characteristics of Graphene Prepared in Supercritical Fluids and Thermal Conductivity of Graphene/Epoxy Composites (초임계유체 조건에서 제조된 그래핀의 구조분석과 그래핀/에폭시 수지조성물의 열전도 특성)

  • Oh, Weontae;Choi, Gyuyeon
    • Composites Research
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    • v.34 no.5
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    • pp.277-282
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    • 2021
  • Graphene oxide can be reduced to graphene under supercritical fluid condition even without using a specific reducing agent or applying a high thermal process. In this study, a process for converting graphene oxide into graphene was studied under supercritical fluid conditions in methanol and ethanol solvents. When the structure of asprepared graphene was analyzed by using FE-SEM and XRD, the reduction of graphene oxide in supercritical fluid condition was more affected by the change of solvent than other variables such as concentration of graphene oxide and reaction time. The use of ethanol showed better results for the reduction than the use of methanol. The graphene prepared in this study was mixed with epoxy resin up to 20 wt.% to make composites, and the thermal conductivity of the composites were analyzed. Thermal conductivity of the composite increased proportionally with graphene loadings. The graphene prepared in supercritical ethanol condition was more effective on the thermal conductivity of the composite.

Impedance Change of Aluminum Pad Coated with Epoxy Molding Compound for Semiconductor Encapsulant (반도체 패키지 봉지재용 에폭시 수지 조성물이 코팅된 알루미늄 패드의 임피던스 변화)

  • 이상훈;서광석;윤호규
    • Journal of the Microelectronics and Packaging Society
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    • v.7 no.3
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    • pp.37-44
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    • 2000
  • The corrosion behavior of aluminum pad coated with epoxy molding compound (EMC) was investigated using electrochemical impedance spectroscopy (EIS). The impedance change was evaluated by the absorption of deionized water (DI water) to EMC coating and the interface between EMC and aluminum. During the absorption a decrease in resistance and thus an increase in capacitance of EMC as well as the interface of EMC/Al could be observed. Up to about 170 hours of absorption the EMC was saturated with the water molecules and ions generated from EMC. Subsequently the ionic water was penetrated to the interface and finally the corrosion of aluminum was occurred by the Dl water and ions. From measuring the adhesion strength with the Dl water absorption it was expected that the saturation of water and ions in the interface decreased the adhesion strength. The higher filler content of EMC should be necessary to inhibit the corrosion of aluminum electrode in microelectronic packages.

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Effect of High Filler Loading on the Reliability of Epoxy Holding Compound for Microelectronic Packaging (반도체 패키지 봉지재용 에폭시 수지 조성물의 신뢰특성에 미치는 실리카 고충전 영향)

  • 정호용;문경식;최경세
    • Journal of the Microelectronics and Packaging Society
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    • v.6 no.3
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    • pp.51-63
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    • 1999
  • The effects of high filler loading technique on the reliability of epoxy molding compound (EMC) as a microelectronic encapsulant was investigated. The method of high filler loading was established by the improvement of maximum packing fraction using the simplified packing model proposed by Ouchiyama, et al. With the maximum packing fraction of filler, the viscosity of EMC wart lowered and the flowability was improved. As the amount of filler in EMC increased, several properties such as internal stress and moisture absorption were improved. However, the adhesive strength with the alloy 42 leadframe decreased when the filler content was beyond the critical value. It was found that the appropriate content of filler was important to improve the reilability of EMC, and the optimum filler combination should be selected to obtain high reliable EMC filled with high volume fraction of filler.

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Chemorheological Behavior of Cyanate Ester Resin and Properties of Carbon Fiber Reinforced Polymer Composites (시아네이트 에스터 수지의 화학유변학적 거동 및 탄소섬유강화 고분자 복합재료의 물성)

  • Na, Hyo Yeol;Yoon, Byung Chul;Kim, Seung Hwan;Lee, Seong Jae
    • Elastomers and Composites
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    • v.48 no.2
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    • pp.133-140
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    • 2013
  • Carbon fiber reinforced polymer (CFRP) composites consist of carbon fibers in a polymer matrix. Recently, CFRP composites having high thermal stability and low outgassing are finding their use in high performance materials for aerospace and electronics applications under high temperature and high vacuum conditions. Cyanate ester resin is one of the most suitable matrix resins for this purpose. In this study, proper combination of cyanate ester and catalyst, curing behavior, and cure cycle were determined by chemorheology. Optimum condition was found to be catalyst content of 100 ppm and curing temperature of $150^{\circ}C$. Thermal stability and outgassing of cured resin composition were analyzed and the results showed thermal decomposition temperature of $385^{\circ}C$ and total mass loss of 0.29%. The CFRP prepregs and subsequent composites were fabricated by predetermined resin composition and the cure condition. Tensile moduli of the composites were compared with theoretical models and the results were very consistent.

Characteristic of Resistance to Tracking and Mechanical Strength by Silica type of Cycloaliphatic-Bisphenol Blending Epoxy (싸이클로알리파틱과 비스페놀 계열 혼합 에폭시 수지의 실리카 종류에 따른 내트래킹 특성 및 기계적 강도)

  • Jung, Hae-Eun;Kang, Han-Young;Park, Seok-Weon;Lee, Jhong-Ho
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 2010.06a
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    • pp.90-90
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    • 2010
  • Cycloaliphatic Epoxy와 Bisphenol Epoxy를 각각 mol-wt%비 (80:20, 50:50, 20:80)로 혼합하고 Epoxy Silaned Silica, 바ed Silica, Spherical Silica, ATH(Aluminum Trihydrate)를 충진하여 내트래킹 특성 및 인장강도, 충격강도 등의 기계적 강도를 비교하였다. Cycloaliphatic 수지는 Huntsman사(社)의 CY5622, Bisphenol 수지는 Hexion사(社)E의 Epikote2200을 사용하였으며, Silaned Silica 및 Fused Silica는 Quatzwerke사(社)의 W12, FW12를 사용하였다. 전체 혼합물 중, 에폭시는 약 36%, 실리카는 약 34~540%, ATH는 약 10~30% 이다. 실험결과, ATH 함량이 높은 조성 및 Epoxy Silaned Silica를 사용한 조성과 Cycloaliphatic 혼합비율이 높은 조성이 우수한 내트래킹 특성을 보였다. 또한, Silica의 함량이 증가할수록 기계적 강도가 증가하였으며, Silaned Silica를 사용하였을 때 가장 우수한 특성을 나타내었다. 본 실험의 결과를 통해 옥외용 내트래킹 특성 규격인 IEC60587 4.5kV/6h를 만족하는 조성에 대해 가늠이 가능하였고, 각 조성에 따른 기계적 강도의 확인이 가능하였다.

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