• Title/Summary/Keyword: 에폭시수지 경화도

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Cure Behavior and Thermal Stability of Difunctional/Trifunctional Epoxy Blend System Initiated by Thermal Latent Catalyst (열잠재성 촉매 개시제를 이용한 2관능성/3관능성 에폭시 블렌드계의 경화거동 및 열안정성)

  • Park, Soo-Jin;Kim, Taek-Jin;Lee, Jae-Rock
    • Applied Chemistry for Engineering
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    • v.10 no.7
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    • pp.1046-1051
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    • 1999
  • Cure behavior and thermal stability of the different ratio of diglycidylether of bisphenol A(DGEBA)/trimethylolpropane triglycidylether(TMP) epoxy blends initiated by 1 wt % N-benzylpyrazinium hexafluoroantimonate (BPH) as a cationic latent catalyst were studied using DSC and TGA, respectively. Latent properties were performed by measurement of the conversion as a function of temperature using dynamic DSC. Dynamic DSC thermograms of DGEBA/TMP blends revealed that the weak peak was formed by complex formation between the hydroxyl groups in DGEBA and BPH, and between epoxides and BPH in low temperature ranges. The strong peak was considered as an exothermic reaction by the formation of three-dimensional network in high temperature ranges. Isothermal DSC revealed that the reaction rate of the blends was found to be higher than that of the neat TMP. The thermal stabilities in the cured resins were increased with increasing the DGEBA content. These results could be interpreted in terms of the stable aromatic structure, existence of hydroxyl group and high molecular weight of DGEBA.

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Investigation of Physical Properties and Self Healing of Hardener-Free Epoxy-Modified Mortars with GGBFS (고로슬래그미분말을 혼입한 경화제 무첨가 에폭시수지 모르타르의 물리적 성질 및 자기치유 검토)

  • Jo, Young-Kug;Kim, Wan-Ki
    • Journal of the Korea institute for structural maintenance and inspection
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    • v.24 no.1
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    • pp.80-87
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    • 2020
  • The purpose of this study is to investigate the physical properties and self-healing effects of hardener-free epoxy-modified mortars(EMMs) using ground granulated blast furnace slag(GGBFS). The EMMs with GGBFS were prepared with various polymer-binder ratios and GGBFS contents, and tested for strengths, adhesion in tension, water permeation and self-healing effects. The conclusions obtained from the test results are summarized as follows. The compressive strength of the EMMs with GGBFS is reduced with increasing polymer-binder ratios because of reduction of the degree of hardening in the EMMs, and is somewhat inferior to that of unmodified mortars. In the flexural and tensile strengths, the flexural strength of the EMMs is almost constant with increasing polymer-binder ratios. However, the tensile strength of the EMMs is gradually increased with increasing polymer-binder ratios. Regardless of the GGBFS contents, the adhesion in tension of the EMMs increases sharply with increasing polymer-binder ratios. The water permeation of the EMMs is remarkably reduced with increasing polymer-binder ratios and GGBFS contents. The self-healing effect of the hardener-free EMMs with GGBFS is improved with increasing water immersion period at a GGBFS content of 20%.

Tuning Thermal Expansion Coefficient of Composites Containing Epoxy Resin/Inorganic Additives for Stone Conservation (에폭시 수지/무기물 첨가제 복합체의 열팽창계수 조절 및 석조문화재의 응용)

  • Choi, Yong-Seok;Chae, Il-Seok;Kang, Yong-Soo;Won, Jong-Ok;Kim, Jeong-Jin;Kim, Sa-Dug
    • Journal of Conservation Science
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    • v.27 no.4
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    • pp.431-440
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    • 2011
  • The thermal expansion coefficient of epoxy/inorganic additives composites was controlled by changing the amount of the inorganic additives such as talc and fused silica. The epoxy resin comprises hydrogenated bisphenol A (HBA)-based epoxide, difunctional polyglycidyl epoxide (DPE) as a diluent and isophorone-diamine (IPDA) as a crosslinking agent, which was subsequently mixed with inorganic additives (talc and fused silica). The thermal expansion coefficient was decreased by increasing amount of inorganic additives, nearly to fresh granite. Fused silica was more effective than talc in lowering the thermal expansion coefficient. Additionally, lexural and tensile strengths of the composites were getting lower and higher with the amount of the inorganic fillers, respectively. It was thus concluded that an epoxy composite containing inorganic fillers was developed to show much lower thermal expansion coefficient, similar to fresh granite, than the neat epoxy resin, and also proper mechanical strengths for applications.

Cure Kinetics for the Acid Anhydride-cured Epoxy System Using a Near-infrared Reflection Spectroscopy (근적외선 분광분석을 통한 산무수물경화 에폭시 시스템의 경화 동력학)

  • 곽근호;박수진;이재락
    • Polymer(Korea)
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    • v.24 no.1
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    • pp.65-71
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    • 2000
  • The latent properties and cure kinetics of an acid anhydride-cured epoxy resin have been investigated by a near-infrared (NIR) reflection spectroscopy. The assignments of the latent properties and cure behaviors were performed by the measurements of the NIR reflectance for epoxide and hydroxyl groups at different temperatures. A comprehensive analysis of the origin, location, and shifts during reaction of all major NIR absorption peaks in the spectral range from 4000 to 7100 $cm^{-1}$ / was provided. The extent of reaction was determined from NIR absorption band at the 4530 $cm^{-1}$ / depending on epoxide concentration and cure temperature.

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Thermal Properties and fracture Toughness of Difunctional Epoxy Resins Cured by Catalytic Initiators (촉매형 개시제로 경화된 이관능성 에폭시 수지의 열적 특성 및 파괴인성)

  • 박수진;허건영;이재락
    • Polymer(Korea)
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    • v.26 no.3
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    • pp.344-352
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    • 2002
  • In this work, two thermal cationic latent catalysts, i.e., triphenyl benzyl phosphonium hexafluoroantimonate (TBPH) and benzyl 2-methylpyrazinium hexafluoroantimonate (BMPH) were newly synthesized. And the thermal and mechanical properties of difunctional epoxy (diglycidylether of bisphenol h, DGEBA) resins initiated by 1 phr of either TBPH or BMPH catalyst were investigated. As experimental results, the epoxy/TBPH system showed higher curing temperature and critical stress intensity factor ($K_{IC}$) than those of epoxy/BMPH. This could be interpreted in terms of slow thermal diffusion rate and bulk structure of four phenyl groups in TBPH. However, the decomposed activation energy determined from Coats-Redfern method was lower in the case of epoxy/TBPH. This result was probably due to the fact that broken short chain structure was developed by steric hindrance of TBPH.

Preparation and Properties of Silicone-Modified Epoxy Coating Materials (실리콘 변성 에폭시 코팅 액의 제조와 물성)

  • Kim, Jin Kyung;Bak, Seung Woo;Hwang, Hee Nam;Kang, Doo Whan;Kang, Ho Jong
    • Applied Chemistry for Engineering
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    • v.25 no.4
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    • pp.352-356
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    • 2014
  • PDMS modified epoxy resin with epoxy group (EMPDMS) was prepared from the reaction of ${\alpha},{\omega}$-aminopropylpolydimethylsiloxane and diglycidyl ether of bisphenol-A (DGEBA) based epoxy resin, and PDMS modified epoxy hybrid compound (EMPDMSH) was prepared by introducing alkylesteraminopropyl alkoxy silane to EMPDMS. Their structures were characterized using FT-IR, $^1H$-NMR and $^{29}Si$-NMR. Coating materials were prepared by mixing EMPDMSH base and solvent. Physical properties of the coating materials coated on epoxy/glass fiber composite film were measured according to the content of PDMS in EMPDMSH. Contact angle of coating film was increased 30 to 71 degree. Adhesive property of coating film was 5B degree better then epoxy or acrylate coating materials, and surface roughness was decreased as increasing in EMPDMSH.

Time-Temperature-Transition Diagrams with Liquid Crystalline Phase Changes of Liquid Crystalline Epoxy (열경화성 액정 에폭시 수지의 액정상 변화를 포함한 시간-온도-전이 다이어그램)

  • Seung Hyun Cho
    • Composites Research
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    • v.37 no.3
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    • pp.215-218
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    • 2024
  • Liquid crystalline thermosetting epoxy oligomer DD-A was synthesized with Diglycidyl ether of 4,4'-dihydroxy-α-methylstilbene (DGE-DHMS) and aniline in a ratio of 2:1 and cured with a catalytic curing agent, 1-Methyl Imidazole. The gelation times and vitrification times were measured to create Time-Temperature-Transition Diagrams with liquid crystalline phase changes. It was found that the gelation and vitrification times were decreased as the concentration of curing agent increased, and the vitrification curve showing a typical S-shape was confirmed.

An Experimental Study on Spontaneous Combustion Risk of M.E.K (M.E.K(경화제)의 자연발화 위험성에 관한 실험적 연구)

  • Kim, Jung-Hyun;Yoo, Yong-Ho;Kweon, Oh-Sang;Yoo, Myong-Youl
    • Proceedings of the Korea Institute of Fire Science and Engineering Conference
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    • 2011.11a
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    • pp.470-473
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    • 2011
  • 본 연구에서는 산업현장에서 에폭시 강화촉진제, 도로용 첨가제 등으로 많이 사용되고 있는 경화제(M.E.K)의 혼합비에 따른 자연발화 위험성을 알아보고 산업 현장의 화재 예방을 위한 기초자료로 제공하고자 하였다. M.E.K와 에포비아 수지를 각기 다른 비율로 혼합한 상태에서 시간경과에 따른 시료의 온도변화 와 유증기 발생 및 자연발화 여부를 관찰한 결과 합성수지와 경화제의 혼합시 경화제가 5% 이상으로 혼합될 경우 혼합 수지의 내부온도가 약 $40^{\circ}C$ 이상으로 상승하면서 발포 현상과 함께 다량의 유증기가 발생하였고, 유증기가 발생된 모든 조건에 대하여 자연발화 여부는 확인할 수 없었다.

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Physical Properties of Epoxy Resin Filled with Surface-treated Silica : II. Properties of Cured Epoxy Resin (표면처리 실리카를 충전한 에폭시 수지계의 물성에 관한 연구 : II. 에폭시 수지 경화물의 물성)

  • Hong, Suk-Pyo;Choi, Sang-Goo
    • Applied Chemistry for Engineering
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    • v.1 no.2
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    • pp.232-239
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    • 1990
  • ${\gamma}$-Glycidoxy propyl trimethoxy slilane, CTBN rubber(carboxyl terminated butadiene acrylonitrile rubber) and GMA(glycidyl methacrylate) were reacted with the surface of silica one by one in existence of TEA(triethylamine) or BPO(benzoyl peroxide). The amount of reactant was 2.5~5.8% of treated silica weight. The treated silica was mixed with epoxy resin and MTHPA(methyltetrahydrophthalic anhydride) in the range of 0~60% (wt. %) of total component. The flexural and thermal properties were tested for cured products. In filler content 35~55%, the using of silica treated with silane/rubber or silane/rubber/vinyl represented 25% higher flexural strength, 5% lower flexural modulus and 13% higher than mixing liquid rubber 3% with epoxy resin containing untreated silica.

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Toughening of Epoxy Resin with PES-CTBN-PES Triblock Copolymers (PES-CTBN-PES 공중합체를 이용한 에폭시 수지의 강인성 향상 연구)

  • 김형륜;명범영;송경헌;육종일;윤태호
    • Polymer(Korea)
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    • v.25 no.2
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    • pp.246-253
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    • 2001
  • Amino terminated PES-CTBN-PES triblock copolymer was synthesized from PES oligomer and commercial CTBN rubber (CTBN1300$\times$13), and molecular weight of the copolymer was controlled to be 15000 g/mole. The copolymer was utilized to toughen diglycidyl ether of bisphenol-A (DGEBA) epoxy resin which was cured with 4,4'-diaminodi-phenylsulfone (DDS) and subjected to the measurement of thermal properties, fracture toughness ( $K_{IC}$), flexural properties and solvent resistance. The properties were compared with those from the samples modified by CTBN/PES blends. The maximum loading of copolymer into the epoxy resin was 40 wt% without utilizing solvent, at which $K_{IC}$ fracture toughness of 2.21 MPa${\cdot}m^{0.5}$ was obtained without sacrificing flexural properties and chemical resistance. However, the epoxy resin modified with PES/CTBN blend exhibited much lower $K_{IC}$ and flexural properties compared to the epoxy resins toughened by PES-CTBN-PES copolymers.

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