• Title/Summary/Keyword: PTMG

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A Physical Characteristics and Synthesis of Top Coat Polymeric Dispersion Film by Complex Polyol (복합폴리올 이용한 Top coat용 수분산 고분자 필름의 합성 및 물리적 특성)

  • Lee, Joo-Youb
    • Journal of the Korean Applied Science and Technology
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    • v.33 no.1
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    • pp.92-99
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    • 2016
  • Polyurethane resin used to leather coat was synthesized by the addition reaction of PPG and PTMG with different mole ratios. Physical characteristics of the synthesized polyurethane resin were measured by the SEM, FT-IR and the UTM. Increasing mole ratio of PTMG having four methylene groups caused the increase of abrasion resistance and tensile strength. The elongation was decreased. As we measured the solvent(toluene) resistance of poly urethane resin, it was found the there were no effect of PTMG mole ratios on the phyhsical properties of the resin. The viscosity was increased by ratio of PTMG mole ratio.

Phase Behaviors of the GAP/PTMG Polyurethanes Chain Extended with 3-Azidopropane-1,2-Diol (3-Azidopropane-1,2-diol로 쇄연장된 GAP/PTMG 폴리우레탄의 상거동)

  • Kim, Hyoung-Sug;You, Jong-Sung;Kweon, Jung-Ohk;Kim, Jung-Su;Lee, Tong-Sun;Noh, Si-Tae;Jang, Young-Ok;Kim, Dong-Kuk;Kwon, Sun-Kil
    • Applied Chemistry for Engineering
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    • v.21 no.4
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    • pp.377-384
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    • 2010
  • We perform a comparative study to investigate the properties of the new energetic chain extender (AzPD). A series of poly(glycidyl azide)/poly(tetramethylene oxide)-based energetic segmented polyurethane (GAP/PTMG ESPU) with different chain extender, which is 3-azidopropane-1,2-diol (AzPD), 1,4-butane diol (1,4-BD), or 1,5 pentane diol (1,5-PD), was synthesized by solution polymerization in dimethyl formamide (DMF) and their phase behaviors were investigated. The ESPUs were characterized with Fourier transform infrared-attenuated total reflection spectroscopy (ATR FT-IR), differential scanning calorimetry (DSC), and dynamic mechanical analysis (DMA). The results of the ATR FT-IR analysis of the urethane carbonyl group region showed that the 'free' C=O fraction was higher in GAP/PTMG AzESPU (0.5) than GAP/PTMG BDESPU (0.44) and GAP/PTMG PDESPU (0.41) for 7 days samples after preparation and that it was similar in the range of 0.26~0.29 for three 60 days ESPU samples. DMA curves of the GAP/PTMG AzESPU for 7 days samples showed amorphous polymers, but GAP/PTMG BDESPU and GAP/PTMG PDESPU showed viscoelastic behaviors with rubbery plateau and the flow region. However, DMA curves of the GAP/PTMG AzESPU for 60 days samples showed viscoelastic behaviors with rubbery plateau and the flow region like GAP/PTMG PDESPU, but GAP/PTMG BDESPU did not show the flow region. From phase behaviors with ATR FT-IR, DSC and DMA analysis, GAP/PTMG AzESPU showed good phase-mixing between components. However, it represented viscoelastic behavior of TPE similar to GAP/PTMG PDESPM according to phase equilibrium progress with aging time.

Degradable Oligolactide Terminated PTMG Based Polyurethanes

  • Furukawa, Mutsuhisa;Wakiyama, Kiyotaka;Shiiba, Tetsuro
    • Elastomers and Composites
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    • v.34 no.4
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    • pp.292-298
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    • 1999
  • Lactide oligomer with number averagae molecular weight of 460 was synthesized and reacted with poly(oxyteramethylene)glycol(PTMG, Mn = 650) to obtain oligolactide oligomer-terminated PTMG. Polyurethanes were synthesized from the oligolactide-terminated PTMG, 4,4'-diphenylmethane diisocyanate, and 1,4-butanediol. The mechanical and thermal properties of the polyurethanes and PTMG based polyurethane as control were measured by means of DSC and tensile tester. Degradation behavior of these polyurethanes put into a compost was evaluated by variation of mechanical properties, surface state, and weight loss. Modulus and weight significantly decreased with increasing time. The surface of the oligolactide polyurethane put into the compost during 6 weeks had a number of voids. On the other hand, These properties of the PTMG based polyurethane as control did not change. These results suggest that the novel polyurethanes incorporated oligolactide easily degrade under biodegradable condition.

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Effects of Physical Properties on Waterborne Polyurethane with Poly(tetramethylene glycol) (PTMG) and Polycaprolactone (PCL) Contents (폴리(테트라메틸렌 글리콜)(PTMG)/폴리카프로락톤)(PCL) 폴리올의 혼합비가 수분산계 폴리우레탄의 물성에 미치는 영향)

  • Yang, Yun-Kyu;Kwak, Noh-Seok;Hwang, Taek-Sung
    • Polymer(Korea)
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    • v.29 no.1
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    • pp.81-86
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    • 2005
  • In this study, waterborne polyurethanes were synthesized with poly(tetramethylene glycol) (PTMG), polycarprolactone PCL), dimethylol propionic acid (DMPA) and different molar ratio of chain extender. Particle size, polydispersity, thermal and mechanical properties of waterborne polyurethane were investigated. The particle size of waterborne polyurethane was in the range of 5∼200 nm and decreased with increasing the amounts of PCL and chain extender. Glass transition temperatures ($T_g$) were in the range of -70∼-45 ${\circ}C$ and increased with as PCL and chian extender (ED) contents increased. The $T_g$ of polyurethane prepared from the mixture showed similar trends as compared with those of in the same values of synthetic polyurethane using PTMG or PCL, respectively. Also, mechanical properties of mixed polyols (PTMG and PCL) were lower than those of PTMG and PCL, respectively.

Evaluation of Physical Properties of Polyurethane Resin for Wound Covering according to PTMG, DMBA Application (PTMG, DMBA 적용에 따른 창상피복 폴리우레탄 수지의 물리적 특성 평가)

  • Lee, Joo-Youb
    • Journal of the Korean Applied Science and Technology
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    • v.37 no.5
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    • pp.1248-1256
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    • 2020
  • In this study, the polyurethane resin was synthesized by applying PTMG and DMBA of different composition ratios for the synthesis of water-dispersible polyurethane used in wound coating resin. The varying properties of the synthesized water-dispersible polyurethane were measured through tensile strength, elongation, and abrasion resistance analysis. As for the tensile strength measurement result according to the PTMG content, the sample with the highest reaction molar ratio was measured as 1.08 kgf/mm2 and the elongation was measured as 520%. As for the tensile strength result according to the DMBA content, the sample with the highest reaction molar ratio was measured as 0.51 kgf/mm2, and the elongation was measured as 435%. The degree of surface destruction by the abrasion resistance measurement was visually confirmed through SEM.

Synthesis and Characteristics of PU Oil-Gelling Agents According to the Soft Segment Content (Soft Segment 조성에 따른 PU 유겔화제의 합성 및 특성)

  • Lee, Yong-Hun;Kim, Wook;Kim, Won-Ho
    • Polymer(Korea)
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    • v.24 no.6
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    • pp.744-750
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    • 2000
  • Oil gelling agent was synthesized with PPG, PTMG and TDI at 7$0^{\circ}C$ for 4hours. PPGs and PTMGs having various average molecular weights (M$_{n}$: 1000, 2000, 3000) were employed to investigate the ratio of oil gelation and water gelation. As M$_{n}$ of PPG, in result, was decreased from 3000 to 1000, the ratio of oil gelation was increased from 130% to 290% for PPG and from 250% to 310% for PTMG. Ratio of oil gelation was increased approximately two times when EG was added. As the amount of hydrophilic compound in the prepolymer was increased, ratio of oil gelation was increased from 290% to 1120% for PPG and increased from 310% to 1310% for PTMG, due to the increased dispersion of prepolymer in the water/oil mixture.ure.

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Oil Gelling Agents made from Polyurethane by One-Shot Method (One-Shot법을 이용한 폴리우레탄계 유겔화제의 특성)

  • Kim, Dongsung;Kim, Wonho
    • Journal of Adhesion and Interface
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    • v.3 no.2
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    • pp.1-8
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    • 2002
  • Polyurethane NCO prepolymers were synthesized with the polyols such as PTMG, GP and the isocyanate such as TDI at $40^{\circ}C$ for 8.5 minutes. As average molecular weights (${\bar{M_n}}$: 1000, 2000, 3000, 4000) of PTMG, and GP were decreased from 4000 to 1000, ratio of oil gelation increased from 298%, to 440%, for Bunker B. When oil and water were emulsified, the ratio of gelation was increased approximately two times. Ratio of gelation for emulsive Bunker B was increased from 402% to 910%, for PTMG1000 and increased from 440%, W 958% for GPI1000. Ratio of oil gelation for emulsive Bunk C which has higher viscosity than Bunker B was measured w 923% for PTMG1000 made with chain extender, i.e. EG, and measured to 1098% for GP1000. The gel made from GP which has three functional group showed soft and strong characteristic, as a result, it can be removed easily from oil spilled ocean.

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Synthesis and Characteristics of Photo-crosslinkable Hydrogel for Microbial Immobilization (미생물 고정화를 위한 광경화성 하이드로겔의 합성과 특성)

  • Kim, Cho Woong;Lee, Jung Bock;Kim, Du Hyun;Hwang, Jung Min;Cho, Chong Su;Choi, Young Hoon;Chung, Dae-Won
    • Applied Chemistry for Engineering
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    • v.10 no.6
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    • pp.852-856
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    • 1999
  • The objective of this study was to prepare hydrogel beads which were useful microbial immobilization to remove nitrogen and phosphorous in the industrial wastewater. Two different polyols(PEG, PTMG) terminated with photo-crosslinkable methacrylate groups were synthesized. Structures of the prepolymers and the UV cured hydrogels were characterized by using $^1H$-NMR and FT-IR spectroscopy. Water content, mechanical strength and pore sizes of the hydrogels having different MW of polyols and different ratios of PEG/PTMG were investigated. Hydrogels prepared from PEG(MW1000) only or the mixture of PEG(MW1000) and PTMG(MW2900) with 7:3 by weight were considered as potential candidates for the matrix for the immobilization of microorganism.

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Synthesis and Physical Properties of Waterborne Polyurethane Microgels (수분산성 폴리우레탄 마이크로겔의 합성과 물성)

  • Kim, Kong-Soo;Kim, Tae-Kyung;Oh, Geul-Jung;Kim, Sang-Ki
    • Elastomers and Composites
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    • v.35 no.4
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    • pp.281-287
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    • 2000
  • Waterborne polyurethane(PU) microgel dispersions were synthesized with different mole ratio of polytetramethylene glycol(PTMG) to dimethylol propionic acid(DMPA). Particle size distribution, thermal and mechanical properties of the PU microgels were investigated. Particle size of the microgels was distributed in the range of $98{\sim}$680{\mu}m$ and decreased with increasing the mole ratio of DMPA and 1,2,6-hexanetriol. Glass transition temperature and melting temperature of the microgels were in the range of $-79.7 {\sim}-78.1^{\circ}C$, $22{\sim}24^{\circ}C$ respectively. Tensile strength and elongation of the PU microgel films were maximum in the case of 60/40 mole ratio of PTMG/DMPA.

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Preparation of Anionomeric Polyurethane Dispersions and Effects of Mixed Polyol on the Properties of Polyurethane (음이온성 폴리우렌탄 분산체의 제조와 우레탄 물성에 대한 폴리올의 혼합 효과)

  • Ahn, Jae-Beom;Cho, Hang-Kyu;Jeong, Chang-Nam;Noh, Si-Tae
    • Applied Chemistry for Engineering
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    • v.8 no.2
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    • pp.230-236
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    • 1997
  • Polyurethane dispersions(PUD) were prepared from IPDI, PBEAG and PTMG as respectively ester type and ether type polyols and DMPA as anionic site. The effect of composition and type of polyols on the particle size of PUD and mechanical, thermal properties of PUD cast film were investigated. As the PTMG contents in mixed polyols increased, the particle size asymptotically increased and tensile strength showed a mild drop followed by a mild increase. This results from the incompatibility of two polyols, which was possibly identified by DSC analysis.

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