• 제목/요약/키워드: polyurethane (PU)

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2차원 나노소재를 활용한 고분자 건축자재의 난연코팅기술 개발 (Fire-Protective Coating for Polymer Construction Materials using Two-dimensional Nanomaterials)

  • 김한임
    • 대한토목학회논문집
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    • 제44권2호
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    • pp.183-190
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    • 2024
  • 폴리우레탄(PU) 폼과 같은 가연성 고분자 건축자재의 화재 안전성을 개선하기 위한 새로운 접근의 나노코팅 기술이 개발되었다. 산화 그래핀 (Graphene oxide, GO)과 같은 2차원 소재는 용액상에서 자기 정렬 및 점탄성적 특성을 보이는 액정성(Liquid Crystalline properties, LC)을 나타내며, 이를 이용하면 특정 농도 범위에서 3차원의 다공성 폼을 포함한 다양한 표면에 균일한 코팅이 가능하다. 또한, GO의 액정성을 이용하여 기능성 복합소재의 나노코팅을 위한 골격 구조체(Scaffold)를 형성할 수 있으며, 여기에 도파민(Dopamine)과 같은 무독성의 항산화성 저분자를 도입 후 폴리도파민(polydopamine, PDA)로의 중합을 유도하여 고난연성의 폴리도파민/산화그래핀 (PDA/GO) 나노복합체 코팅층을 형성할 수 있다. 또한 최종적으로 형성된 PDA/GO 코팅은 GO의 2차원 판상구조로 인하여 균일하게 적층된 나노시트 구조로 안정화되며, 이러한 구조적 특성으로 인하여 가스상의 유해 연소생성물의 발생과 확산을 효과적으로 저감할 수 있는 가스 차폐 효과도 유도할 수 있다. 이러한 2차원 소재의 액정성을 활용한 난연성 나노복합소재 코팅 기술은 다양한 유형의 고분자 건축 자재의 화재 안전성을 효과적으로 개선할 수 있는 친환경적이고 새로운 기술적 접근방식이 될 수 있다.

신소재를 사용한 인체조직모사물질의 합성과 초음파 물리적 특성에 관한 연구 (The Study on Ultrasound Physical Characteristic and Synthesis of Tissue Mimicking Materials Used New Materials)

  • 마상철;김화선;안영만
    • 대한방사선기술학회지:방사선기술과학
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    • 제33권3호
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    • pp.245-252
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    • 2010
  • 본 연구는 주제인 폴리우레탄(polyurethane, PU)과 새로운 형태의 n-type 산란재를 사용하여 합성한 조직모사물질(tissue mimicking materials : TMM)에 대해 국제표준규격 IEC 60601-2-37(2007)의 Annex D.D가 권고한 인체 연조직(soft tissue)의 음향학적 특성 기준에 준해, 전파속도, 임피던스, 감쇠계수 특성 등을 분석하였으며, 영상특성은 SONOACE 9900C PRIME(MEDESON Co.), 3.5 MHz 컨벡스 프로브(2.5-5.0 MHz)로 초음파 휘도와 최대투과심도를 분석 평가하여 다음과 같은 결론을 얻었다. 주제인 prepolymer와 polyol mixture를 혼합하고 n-type 산란재를 0~8%로 점차 증가하여 합성하였을 때, 1. 조직모사물질의 전파속도는 산란재가 증가할수록 연조직에 더 가깝게 수렴(convergence)하였다. 2. 음향임피던스는 산란재가 감소할수록 연조직에 더 가깝게 수렴하였다. 3. 감쇠계수는 산란재가 증가할수록 증가하였다. 4. 영상 평균휘도는 산란재가 증가할수록 증가하였으나 역치가 있었다. 5. 최대투과심도는 산란재 6% 조직모사물질에서 연조직에 가깝게 수렴하였다.

Fatigue characteristics of distributed sensing cables under low cycle elongation

  • Zhang, Dan;Wang, Jiacheng;li, Bo;Shi, Bin
    • Smart Structures and Systems
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    • 제18권6호
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    • pp.1203-1215
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    • 2016
  • When strain sensing cables are under long-term stress and cyclic loading, creep may occur in the jacket material and each layer of the cable structure may slide relative to other layers, causing fatigue in the cables. This study proposes a device for testing the fatigue characteristics of three types of cables operating under different conditions to establish a decay model for observing the patterns of strain decay. The fatigue characteristics of cables encased in polyurethane (PU), GFRP-reinforced, and wire rope-reinforced jackets were compared. The findings are outlined as follows. The cable strain decayed exponentially, and the decay process involved quick decay, slow decay, and stabilization stages. Moreover, the strain decay increased with the initial strain and tensile frequency. The shorter the unstrained period was, the more similar the initial strain levels of the strain decay curves were to the stabilized strain levels of the first cyclic elongation. As the unstrained period increased, the initial strain levels of the strain decay curves approached those of the first cyclic elongation. The tested sensing cables differed in the amount and rate of strain decay. The wire rope-reinforced cable exhibited the smallest amount and rate of decay, whereas the GFRP-reinforced cable demonstrated the largest.

Selection of polymer material in the design optimization of a new dynamic spinal implant

  • Monede-Hocquard, Lucie;Mesnard, Michel;Ramos, Antonio;Gille, Olivier
    • Biomaterials and Biomechanics in Bioengineering
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    • 제2권4호
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    • pp.237-248
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    • 2015
  • "Dynamic stabilization" systems have been developed in recent years to treat degenerative disorders of the spinal column. In contrast to arthrodesis (fusion), the aim here is to conserve intervertebral mobility to maximize comfort. When developing innovative concepts, many mechanical tests need to be carried out in order to validate the different technological solutions. The present study focuses on the B Dyn$^{(R)}$ "dynamic stabilization" device (S14$^{(R)}$ Implants, Pessac, France), the aim being to optimize the choice of polymer material used for one of the implant's components. The device allows mobility but also limit the range of movement. The stiffness of the ring remains a key design factor, which has to be optimized. Phase one consisted of static tests on the implant, as a result of which a polyurethane (PU) was selected, material no.2 of the five elastomers tested. In phase two, dynamic tests were carried out. The fatigue resistance of the B Dyn$^{(R)}$ system was tested over five million cycles with the properties of the polymer elements being measured using dynamic mechanical analysis (DMA) after every million cycles. This analysis demonstrated changes in stiffness and in the damping factor which guided the choice of elastomer for the B Dyn$^{(R)}$ implant.

Strength Analysis of Mark III Cargo Containment System using Anisotropic Failure Criteria

  • Jeong, Han Koo;Yang, Young Soon
    • Journal of Advanced Research in Ocean Engineering
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    • 제1권4호
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    • pp.211-226
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    • 2015
  • Membrane type Mark III cargo containment system (CCS) is considered in this study to investigate its strength capability under applied loads due to liquefied natural gas (LNG) cargo. A rectangular plated structure supported by inner hull structure is exemplified from Mark III CCS according to classification society's guidance and it is assumed as multi-layered structure by stacking plywood, triplex, reinforced polyurethane (PU) foam and series of mastic upon inner hull structure. Commercially available general purpose finite element analysis package is used to have reliable FE models of Mark III CCS plate. The FE models and anisotropic failure criteria such as maximum stress, Hoffman, Hill, Tsai-Wu and Hashin taking into account the direction dependent material properties of Mark III CCS plate components and their material properties considering a wide variation of temperature due to the nature of LNG together form the strength analysis procedure of Mark III CCS plate. Strength capability of Mark III CCS plate is understood by its initial failure and post-initial failure states. Results are represented in terms of failure loads and locations when initial failure and post-initial failures are occurred respectively. From the results the basic design information of Mark III CCS plate is given.

척추경 나사못의 디자인이 고정력 및 구동 토크에 미치는 영향 분석: 이중 나사 및 이중 피치 나사 (Mechanical Performance Comparison of Pedicle Screw Based on Design Parameters: Dual Lead and Dual Pitch)

  • 최선각;차은종;김경아;안윤호
    • 대한의용생체공학회:의공학회지
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    • 제39권3호
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    • pp.134-139
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    • 2018
  • One of the most common problems with pedicle screw system is pullout of the screw. This study was performed to evaluate the pullout strength and driving torque of newly designed pedicle screws. The design of three type screws were standard pedicle screw, which had single lead threaded and single pitched design (Type A), single pitched and dual lead threaded pedicle screw (Type B), dual pitched and dual lead threaded pedicle screw (Type C), respectively. The tests were performed in accordance with the ASTM standards using polyurethane (PU) foam blocks. There was no significant difference in pullout strength among three types of screw. Type B and Type C exhibited higher insertion torque and removal torque than Type A, respectively (p<0.05). Pedicle screws newly developed with dual pitched and dual lead threaded design showed higher driving torque without decrease in pullout strength compared to the standard pedicle screw and could be inserted more rapidly with the same number of revolutions.

Polypeptide계 인공 피부의 합성과 특성 (Synthesis and Characterization of Artificial Skin based on Polypeptides)

  • 김선정;민동선;김계용
    • 대한의용생체공학회:의공학회지
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    • 제8권1호
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    • pp.87-92
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    • 1987
  • In order to evaluate the artificial skin for burn would covering materials, copoly(N. carbobenzoxy-L-Iysine-L-leucine)s were prepared by Ipolymerization of N - carbobenzoxy-L- I sine anhydride and L-leucine anhydride in homogeneous solvents using triethylamine as an initiator. The synthetic polypeptides and the oxter type polyurethane(PV)of medical grade were used as the sheet type membranes were prepared ; monolayer membrances were composed of only the polypeptides, bilayer membranes and blend membranes were controlled by composition of the polypeptides and PU. Test of the swelling degree, mechanical tensile strength, elongation, oxygen permeability, water-vapor loss and In vitro degradation treated by pretense TV of samples of artificial skin were measured by adequate methods so as to mechanical, physincal characterization and biodegradation. As a result, all the values of samples were found to be similar to desired value of skin which was nature. The Artificial skin based on polypeptides can be considered as ideal burn wound covering materials.

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폴리에틸렌옥사이드 및 설폰산이 결합되어 혈액적합성이 개선된 개질 폴리우레탄 (Enhanced Blood Compatibility of PEO-Grafted and Sulfonated Polyurethanes)

  • 한동근;정서영;안광덕;김영하;김은영;조한익;민병구;최진욱
    • 대한의용생체공학회:학술대회논문집
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    • 대한의용생체공학회 1989년도 춘계학술대회
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    • pp.5-6
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    • 1989
  • Polyurethane surface was chemically modified to have different hydrophilic polyethyleneoxide(PEO)/hydrophobic dodecanediol(DDO) groups and negatively charged sulfonate group to investigate the effect to the antithrombogenicity. The hydrophilicity of the surface was significantly increased after PEO grafting or sulfonation. Lowering in-vitro platelet adhesion led to a prologation in the ex-vivo occlusion time. Especially, the sulfonated PU-PEO surface showed most enhanced blood compatibility due to the synergistic effects of PEO and $SO_3$ groups.

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Energy absorption of foam-filled lattice composite cylinders under lateral compressive loading

  • Chen, Jiye;Zhuang, Yong;Fang, Hai;Liu, Weiqing;Zhu, Lu;Fan, Ziyan
    • Steel and Composite Structures
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    • 제31권2호
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    • pp.133-148
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    • 2019
  • This paper reports on the energy absorption characteristics of a lattice-web reinforced composite sandwich cylinder (LRCSC) which is composed of glass fiber reinforced polymer (GFRP) face sheets, GFRP lattice webs, polyurethane (PU) foam and ceramsite filler. Quasi-static compression experiments on the LRCSC manufactured by a vacuum assisted resin infusion process (VARIP) were performed to demonstrate the feasibility of the proposed cylinders. Compared with the cylinders without lattice webs, a maximum increase in the ultimate elastic load of the lattice-web reinforced cylinders of approximately 928% can be obtained. Moreover, due to the use of ceramsite filler, the energy absorption was increased by 662%. Several numerical simulations using ANSYS/LS-DYNA were conducted to parametrically investigate the effects of the number of longitudinal lattice webs, the number of transverse lattice webs, and the thickness of the transverse lattice web and GFRP face sheet. The effectiveness and feasibility of the numerical model were verified by a series of experimental results. The numerical results demonstrated that a larger number of thicker transverse lattice webs can significantly enhance the ultimate elastic load and initial stiffness. Moreover, the ultimate elastic load and initial stiffness were hardly affected by the number of longitudinal lattice webs.

척추의 해부학적 요소를 고려한 척추경 나사못 디자인의 Pullout 특성 연구 (A Study on Pullout Characteristics of Pedicle Screw Design Considering Anatomical Structure of the Lumbar Spine)

  • 유경주;박광민;안경기;안윤호
    • 대한의용생체공학회:의공학회지
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    • 제42권1호
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    • pp.1-6
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    • 2021
  • Recently, various types of pedicle screws have been developed considering the anatomical structure of the spine. The purpose of this study was to evaluate the pullout stiffness and strength of two types of commercial pedicle screws. The design of two type screws were single pitched thread (ST) pedicle screw and dual pitched thread (DT) pedicle screw, respectively. The tests were conducted in accordance with the ASTM standards using polyurethane (PU) test blocks which has anatomical structure of the spine. There was no significant difference in pullout stiffness between two types of screw. However, DT exhibited higher pullout strength than ST (p<0.05). Pedicle screw with dual pitched thread showed higher pullout strength without decrease in pullout stiffness compared to the standard pedicle screw. In conclusion, dual pitched thread design of the pedicle screw is considered to be more suitable than the single pitched thread for the anatomical structure of the spine.