• Title/Summary/Keyword: Jeffamine

Search Result 5, Processing Time 0.021 seconds

Swelling Properties and Releasing Characteristics of Chitosan Beads Containing Bisamino-PEG (Bisamino-PEG가 함유된 키토산 비드의 팽윤성 및 방출 특성)

  • Ha, Byung-Jo;Lee, Ok-Sub;Lee, Yoon-Sik
    • Applied Chemistry for Engineering
    • /
    • v.7 no.1
    • /
    • pp.59-66
    • /
    • 1996
  • Novel chitosan beads containing a series of bisamino-terminated polyethylene glycol (Bisamino-PEG, $Jeffamine^{(R)}ED$ series) have been prepared via capillary extrusion method using an alkaline solution. The results of swelling kinetics of chitosan beads showed that as the chain length of PEG in chitosan beads increased, the swelling process of the beads proceeded slowly. In order to study the releasing kinetics quantitatively, fluorescamine was coupled to the pendant amino groups and the releasing processes were followed by UV spectra. The results revealed that the releasing process was retarded in the order of $Jeffamine^{(R)}ED$-600 < $Jeffamine^{(R)}ED$-900 < $Jeffamine^{(R)}ED$-2001 as the chain length of PEG was increased. The slow release of PEG from the beads is considered to be governed by the chain length of PEG and interpolymeric hydrogen bonding between PEG and the chitosan molecule.

  • PDF

Synthesis and Characterization of Propylene Glycol based Polyol and Urethane modified Epoxy Monomer for Flexibility (Flexibility 도입을 위한 Propylene glycol 기반 폴리올, 우레탄 변성 에폭시 합성 및 특성 분석)

  • Jeon, Jaehee;Hwang, Chiwon;back, Jong-ho;Lim, Choongsun;Seo, Bongkuk;Yu, Youngchang;Lee, Wonjoo
    • Journal of Adhesion and Interface
    • /
    • v.22 no.1
    • /
    • pp.8-15
    • /
    • 2021
  • In this study, a polyol was prepared using Jeffamine D-400 as a propylene glycol-based diamine to impart flexibility to the urethane-modified epoxy, and a urethane-modified epoxy was synthesized using the polyol. Urethane-modified epoxy synthesized with existing Bisphenol A diglycidyl ether (BADGE) epoxy, a curing agent, and a curing accelerator are mixed to prepare an epoxy adhesive, and shear strength is measured by measuring adhesion strength. As a result, shear strength and shear elongation tended to increase. These results are due to the high crosslinking density. It is believed that it can be applied to structural adhesives that are restricted in use.

Activation Energy Measurement of the $^{60}Co$ $\gamma$-ray Irradiated Epoxy Resin ($^{60}Co$ $\gamma$-ray 조사에 따른 에폭시 수지의 활성화 에너지 측정)

  • Lee, Kyoung-Yong;Kim, Ki-Yup;Hwang, In-Ra;Choi, Yong-Sung
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
    • /
    • 2008.04c
    • /
    • pp.75-79
    • /
    • 2008
  • In this paper, we measured the activation energy of the Bisphenol A type Epoxy resin (DGEBA)-Jeffamine system according to an irradiation. We put the mixed solutions to the silicon mold after mixing both DGEBA(216g) and Jeffamine(93.9g), curing agent of amine system. The mixed solutions were cured in the atmosphere during 24hours after finishing the first curing during 4hours in the vacuum oven under $80^{\circ}C$. The mixed solutions were cured in the atmosphere during 24hours after finishing the second curing during 12hours in the vacuum oven under $60^{\circ}C$ again. Prepared samples were irradiated to the dose rate of 8kGy/hr with 500kGy, 700kGy, 1000kGy, 1500kGy, 2000kGy, 2500kGy. Experimental results indicated activation energy of the samples reduced as the irradiation dose increased because of the peroxides of the Epoxy created by the oxidation and the radiation.

  • PDF

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
    • /
    • v.23 no.2
    • /
    • pp.44-52
    • /
    • 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.

A Study on Exothermic Properties of TiO2/Epoxy Nanocomposites (TiO2/Epoxy 나노복합재의 발열 특성에 관한 연구)

  • Ahn, Seok-Hwan;Ha, Yoo-Sung;Moon, Chang-Kwon
    • Journal of Ocean Engineering and Technology
    • /
    • v.27 no.5
    • /
    • pp.99-104
    • /
    • 2013
  • Recently, various nanoparticles have been used for filler in polymer matrices. The particles of nano size are whether high or not cross-link density in polymer affects the thermal and mechanical properties of one. The properties change as a result of chemical reactions between the nanoparticles and the surface of the polymer. There are two models for nanocomposites: "repulsive interaction" and "attractive interaction" between the nanoparticles and matrix. In this study, the variation in the curing mechanism was examined when nano-size $TiO_2$ was dispersed into an epoxy (Bisphenol A, YD-128) with different curing agents. The results of this study showed that the exothermic temperature and Tg in the case of the nanoparticles used (Jeffamine) (D-180) at room temperature were reduced by an increase in the $TiO_2$ contents because of the "repulsive interaction" between the nanoparticles and the matrix. The tensile strengths were increased by increasing amounts of $TiO_2$ until 3 wt% because of a dispersion strengthening effect caused by the nanoparticles, because of the repulsive interaction. However, such tensile properties decreased at 5 wt% of $TiO_2$, because the $TiO_2$ was agglomerated in the epoxy. In contrast, in the case of the nanoparticles that used NMA and BDMA, the exothermic temperature and Tg tended to rise with increasing amounts of $TiO_2$ as a result of the "attractive interaction." This was because the same amounts of $TiO_2$ were well dispersed in the epoxy. The tensile strength decreased with an increase in the $TiO_2$ contents. In the general attractive interaction model, however, the cross-link density was higher, and tensile strength tended to increase. Therefore, for the nanoparticles that used NMA, it was difficult to conclude that the result was caused by the "attractive model."