• Title/Summary/Keyword: 에폭시 수지계

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Mechanical property of Diglycldyl ether of bisphenol A-Methylene dianiline System with Succinonitrile (Diglycidyl ether of bisphenol A-Methylene dianiline-Succinonitrile계의 역학적 성질)

  • Cho, Sung-Woo;Shim, Mi-Ja;Kim, Sang-Wook
    • Korean Journal of Materials Research
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    • v.2 no.3
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    • pp.191-196
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    • 1992
  • The new epoxy resin, diglycidyl ether of bisphenol A(DGEBA)/4, 4'-methylene dianiline (MDA)/succinonitrile system, containing the reactive additive succionitrile was investigated through the impact test and the stress-strain test on the basis of the behavior of cure reaction and the cure mechanism. The new epoxy resin system, having the different succinonitrile contents, were cured at $80^{\circ}C$for 1.5 hour and then in order to cure completely at $150^{\circ}C$ for 1 hour. It was shown that as the succinonitrile content increased, impact strength was gradually increased, tensile strength was decreased, almost constantly Young's modulus was sustained and elongation was increased until the succinonitrile content was increased to 10phr, and then decreased. From the experimental results, it can be concluded that the chemical bonding length between the main chains was extended by adding the reactive additive succinonitrile. It was also found that the flexibility of epoxy resin was improved by adding the succinonitrile.

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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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Curing and Rheological Behavior of Epoxy Resin Compositions for Underfill (언더필용 에폭시 수지 조성물의 경화 및 유변학적 거동)

  • Kim, Yoon-Jin;Park, Min;Kim, Jun-Kyung;Kim, Jin-Mo;Yoon, Ho-Gyu
    • Elastomers and Composites
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    • v.38 no.3
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    • pp.213-226
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    • 2003
  • The cure and rheological behavior of diglycidyl ether of bisphenol F/nadic methyl anhydride resin system with the kinds of imidazole were studied using a differential scanning calorimeter (DSC) and a rotational rheometer. The isothermal traces were employed to analyze cure reaction. The DGEBF/ anhydride conversion profiles showed autocatalyzed reaction characterized by maximum conversion rate at $20{\sim}40 %$ of the reaction. The rate constants ($k_1,\;k_2$) showed temperature dependance, but reaction order did not. The reaction order (m+n) was calculated to be close to 3. There are two reaction mechanisms with the kinds oi catalyst. The gel time was determined by using G'-G" crossover method, and the activation energy was obtained from this results. From measurement of rheological properties it was found that the logarithmic 1:elation time of fused silica filled DBEBF epoxy compounds linearly increased with the content of filler and decreased with temperature. The highly filled epoxy compounds showed typical pseudoplastic behavior, and the viscosity of those decreased with increasing maximum packing ratio.

Synthesis and characterization of PPG-based urethane-modified epoxy resin for enhancing impact resistance of epoxy composite resin (에폭시 복합수지의 내충격성을 향상을 위한 PPG 기반 우레탄 변성 에폭시 합성 및 특성 분석)

  • Hwang, Chiwon;Jeon, Jaehee;Ahn, Dowon;Yu, Youngchang;Lee, Wonjoo
    • Journal of Adhesion and Interface
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    • v.23 no.2
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    • pp.44-52
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    • 2022
  • Epoxy resin has the disadvantage of being easily destroyed by instantaneous impact due to its high crosslinking density despite its high glass transition temperature (Tg) and excellent properties. To compensate for this, in this study, polyol was synthesized by ring opening polymerization of propylene glycol (PPG) diamine, Jeffamine D 2000 and propylene carbonate, and urethane modified epoxy was synthesized using this. The properties of the synthesized urethane modified epoxy were confirmed by FT-IR, H-NMR. To confirm the degree of improvement in impact resistance as an adhesive, a urethane modified epoxy adhesive was prepared by mixing a digylcidyl ether bisphenol A (DGEBA) with curing agent and curing accelerator. Properties test of urethane modified epoxy were shear strength, tensile strength and impact strength. As a result, excellent results were obtained in all test when the ratio of DGEBA : urethane modified epoxy was 8:2.

고체윤활용 $MoS$_{2}$ Bonded Film의 마찰마모 특성에 관한 실험적 고찰

  • 공호성;윤의성;한홍구;권오관
    • Proceedings of the Korean Society of Tribologists and Lubrication Engineers Conference
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    • 1995.06b
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    • pp.38-46
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    • 1995
  • Bonded film을 형성시키기 위한 대표적인 고체윤활제들로는 이황화-몰리브데늄, 이황화-텅스텐(WS$_{2}$), 보론-나이트라이드(BN), 흑연(Graphite) 등을 들 수 있으며, 이들 고체윤활제를 표면에 효과적으로 부착시키기 위하여 사용되는 수지류는 페놀 및 에폭시계수지 등이 사용되고 있아. Bonded film의 마찰마모특성은 이와 간이 피막 내에 첨가된 고체윤활제 및 수지의 종류, 고체윤활 입자들의 크기 및 순도,그리고 이들 상호간의 배합비율 등에 의하여 크게 좌우되며, 아울러 피막 내에 소량으로 첨가될 수 있는 여러 가지 보조첨가제들에 의해서도 크게 영향을 받는 것으로 알려져 있다. 고체윤활제 성분들의 조성과 더불어, 재료표면의 물리화학적인 전처리 조건도 매우 중요한 요인이 될 수 있다. 따라서 본 논문에서는 이와 같은 윤활피막내 고체윤활제들의 배합, 고체윤활피막의 표면전처리 방법들을 변화하고 이들에 따른 상기 고체윤활피막들의 마찰 및 마모 특성에 관하여 시험을 행하였다.

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방진용 Ferrite-Resin 복합재료의 개발

  • 박영일;맹희영;김종호;원시태
    • Proceedings of the Korean Society of Precision Engineering Conference
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    • 2001.10a
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    • pp.269-275
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    • 2001
  • 정밀가공기계 및 소음발생원의 방진재료로서 사용될 수 있는 재료는 우선 내부 및 외부진동의 흡수성과 감쇠성이 뛰어나야 하고, 시간 및 온도변화에 따라 형상 및 치수 정밀도가 안정되어야 하며, 불규칙한 외력과 운동전달기구의 변동 하중 하에서도 높은 정적, 동적 강성을 유지해야 한다. 본 연구에서 개발한 재료인 Ferrite-Resin 복합재료는 Resin-Concrete에 미세한 산화철을 filler 재료로 사용함으로써 주철 및 강의 구조재료가 갖는 강성과 비중의 값에 접근시킬 수이었다. 일반적으로 불포화 폴리에스테르 수지나 에폭시계 수지는 glass 전위점의 근처에서 진동에너지의 흡수가 큰 영역이 존재하며 이는 10 .mu.m 이내의 미세한 filler재료가 포함되었을 경우에도 그 종류에 관계없이 큰 변화가 없는 성질이다. 시험편을 통한 재료실험을 통하여 개발된 복합재료를 모델 구조물에 적용시킴으로서 그 적용성을 검토하였다. 앞으로의 수지와 Ferrite 함유량 및 제조 공정이 적절히 모색되면, 이 방진재료가 정밀기계의 구조재료로서 뿐만 아니라 냉동기, 소형선박의 기관실, 가전제품 및 기어박스 등의 케이싱 재료로 사용되는 방진재료로서 그 응용이 확대될 수 있을 것으로 본다.

Effects of Equivalent Weight of Epoxy Resins and Content of Catalyst on the Curing Reaction in Cationic Catalyst/Epoxy Cure System (양이온 촉매/에폭시 경화계에서 에폭시 수지의 당량 및 촉매 함량이 경화반응에 미치는 영향)

  • Kim, Youn Cheol;Park, Soo-Jin;Lee, Jae-Rock
    • Applied Chemistry for Engineering
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    • v.8 no.6
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    • pp.960-966
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    • 1997
  • The effects of epoxy resins and content of catalyst on the cure characteristics were studied by FT-IR, DSC and dynamic viscometer for the thermal properties and rheological properties of the catalytic (N-Benzylpyrazinium hexafluoroantimonate, BPH) epoxy thermosetting system. Compared with DSC results of DEGBF containing 0.5wt% BPH, the DSC thermograms of DGEBA containing 0.5wt% BPH indicated that the reaction was faster than that of DGEBF/BPH and the conversion rate of DGEBA/BPH was high in the initial stage of the reaction. As the concentration of BPH increases, the reaction and conversion rates show similar value in both the cases. The influence of hydroxyl group of epoxy resin on gel point defined from the crossover point of storage modulus (G') and loss modulus (G") could be explained by the formation of 3-dimensional network in the initial stage owing to the curing reaction between epoxides and hydroxyl groups of epoxy resin. This was consistent with the gel point obtained from DSC, FT-IR and moduli crossover. The activation energy (Et) obtained from the crossover point (G'/G"=1) are $31-39kJ.mol^{-1}$ for various BPH compositions in case of two epoxy systems.

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Effect of Silane Coupling Agent on Thermal Stability and Adhesion Properties of DGEBF Epoxy Resin (실란 커플링제에 따른 DGEBF 계열 에폭시의 열안정성 및 접착특성 평가)

  • Lee, Dong Su;Lee, Seul-Yi;Min, Byung-Gak;Seo, Young Soo;Lee, Bong Han;Park, Soo-Jin
    • Polymer(Korea)
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    • v.38 no.6
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    • pp.787-790
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    • 2014
  • In this work, the epoxy specimens were prepared from diglycidyl ether of bisphenol F (DGEBF) with silane coupling agents (3-glycidoxypropyl trimethoxysilane (GPTMS)) in different ratios. Thermal stability was studied in terms of polymer decomposition temperature (PDT), temperature of maximum rate of weight loss ($T_{max}$), integral procedural decomposition temperature (IPDT), and decomposition activation energy ($E_a$) using TGA analysis. Adhesion properties of epoxy composite specimens were measured by UTM (universal testing machine) at atmosphere temperature. In this result, the adhesion properties of DGEBF were improved by addition of silane coupling agents compared to non-treated epoxy resin. However, when the content of GPTMS agent is more than 10 phr, adhesion properties decreased with increasing GPTMS agent.

Influence of Rheological Properties of Adhesive Polymer on Strain Energy Release Rate of Mode I and Adhesive Tensile Strength (모드I의 변형 에너지 해방율과 인장 접착강도에 미치는 접착제 고분자의 유변특성의 영향)

  • H. Mizumachi
    • The Korean Journal of Rheology
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    • v.8 no.2
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    • pp.129-138
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    • 1996
  • 접착강도는 접착제의 점탄성을 반영한 온도·속도 의존성을 나타낸다는 것이 잘 알 려져있다. 특히 유리전이온도(Tg)에서의 역학적 완화기구가 접착층의 변형을 수반하는 접착 층의 변형을 수반하는 접착강도에 크게 영향을 미치고 있다. 또한 접착계의 모드I의 변형에 너지 해방율(GIC)를 측정할때에도 접착제의 변형과 파괴가 발생하기 접착제의 점탄성이 그 값에 어떠한 영향을 미치는 지에 흥미가 깊다. 본 연구에서는 2종류의 에폭시 수지를 블랜 드한 접착제를 이용하여 일정한 측정조건에서 인장 접착강도와 GIC의 상관관계에 대하여서 도 토론하였다.

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홍합 Mytilus galloprovincialis에서 클로닝한 접착단백질 Mgfp-5의 유전학적 생산연구

  • 차형준;황동수
    • Proceedings of the Korean Society of Fisheries Technology Conference
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    • 2003.05a
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    • pp.27-29
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    • 2003
  • 해양생명체인 홍합(mussel)은 접착단백질(adhesive protein)을 생산, 분비함으로써 홍합 자신을 바다 속의 바위와 같은 젖은 고체표면에 단단히 부착할 수 있도록 하여 강한 파도의 충격이나 바닷속의 부력 효과에 대하여도 저항할 수 있다. 홍합접착단백질은 현재 알려진 어떠한 화학합성 접착제보다도 강력한 자연적인 접착제로 알려져 있으며 대부분의 에폭시 수지보다 두 배 정도의 커다란 인장강도를 지니고 있으면서도 휘어질 수 있는 유연성을 가지고 있는 혁신적인 물질이므로 접착제 산업계에서 매우 커다란 관심을 끌고 있다. (중략)

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