• 제목/요약/키워드: complex Young's modulus

검색결과 31건 처리시간 0.022초

직교 직물 복합재료 물성치 예측을 위한 가상 수치 실험 (Virtual Experimental Characterization of 3D Orthogonal Woven Composite Materials)

  • 이창성;신헌;김승조
    • 한국복합재료학회:학술대회논문집
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    • 한국복합재료학회 2001년도 춘계학술발표대회 논문집
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    • pp.205-210
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    • 2001
  • In this work, virtual material characterization of 3D orthogonal woven composites is performed to predict the elastic properties by a full scale FEA. To model the complex geometry of 3D orthogonal woven composites, an accurate unit structure is first prepared. The unit structure includes warp yarns, filler yarns, stuffer yams and resin regions and reveals the geometrical characteristics. For this virtual experiments by using finite element analysis, parallel multifrontal solver is utilized and the computed elastic properties are compared to available experimental results and the other analytical results. It is founded that a good agreement between material properties obtained from virtual characterization and experimental results. Using the method of this virtual material characterization, the effects of inconsistent filler yarn distribution on the in-plane shear modulus and filler yarn waviness on the transverse Young's modulus are investigated. Especially, the stiffness knockdown of 3D woven composite structures is simulated by virtual characterization. Considering these results, the virtual material characterization of composite materials can be used for designing the 3D complex composite structures and may supplement the actual experiments.

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EPM 및 EPDM 고무의 유변학적 특성 (Rheological Properties of EPM end EPDM Rubbers)

  • 김병규;김창기;박찬영
    • Elastomers and Composites
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    • 제25권2호
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    • pp.97-102
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    • 1990
  • 국내에서 생산, 혹은 수입 시판되고 있는 11종류의 EPDM과 1종의 EPM고무에 대한 선형점탄성적 성질을 RDS로 측정하였다. 측정은 $210^{\circ}C$에서 등온적으로 행하였으며. 이들 고무의 복합점도, 저장탄성계수, 손실탄성계수, 손실 tangent 및 완화스팩트럼 data는 고무 블렌딩이나, 복합화과정에서 중요한 자료로 이용될 것으로 믿는다.

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전자선 조사로 개질된 PLA의 유변학적 물성 (Rheological Properties of Poly(lactic acid) Modified by Electron Beam Irradiation)

  • 신부영;김봉식
    • 폴리머
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    • 제34권5호
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    • pp.485-489
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    • 2010
  • 본 연구에서는 폴리락트산(PLA)의 용융강도를 높이기 위하여 PLA에 글리시딜 메타크릴레이트(GMA)를 PLA에 첨가한 후 전자선을 조사하여 PLA를 개질하였다. GMA는 5 phr(parts per hundred parts of resin)로 고정하고 전자선 조사량을 변화시키며 개질 PLA을 제조하였으며, 이후 열적, 유변학적 특성 및 젤화도를 조사하였다. 주파수 0.1 rad/s에서 조사량 300 kGy로 개질된 PLA와 순수 PLA의 유변학적 물성을 서로 비교해보면 복합점도는 약 210배, 탄성률은 약 14500배 상승하는 예외적으로 아주 큰 변화를 보였다. 젤화도의 결과로 조사량 200 kGy 이하로 조사된 시료에서 일어난 분자반응은 가교화 반응보다는 가지화 반응이 우세하다는 것을 알 수 있었다.

Linear Low Density Polyethylene (LLDPE)/Zeolite Microporous Composite Film

  • Jagannath Biswas;Kim, Hyun;Soonja Choe;Patit P. Kundu;Park, Young-Hoon;Lee, Dai-Soo
    • Macromolecular Research
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    • 제11권5호
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    • pp.357-367
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    • 2003
  • The linear low density polyethylene (LLDPE)/zeolite composite using novel inorganic filler, zeolite, is prepared by a conventional compounding procedure using a twin-screw extruder. The observed scanning electron microscopic (SEM) morphology shows a good dispersion and adhesion of zeolite in the LLDPE matrix. The mechanical properties in terms of the Young's modulus, the yield stress, the impact strength, and the elongation at break were enhanced with a successive increment of zeolite content up to 40 wt%. The X-ray diffraction measurement is of supportive for the improved mechanical properties and the complex melt viscosity is as well. Upon applying a certain level of strain on the composites, the dewetting, the air hole formation and its growth are characterized. The dewetting originates around the filler particles at low strain and induces elliptical micropores upon further stretching. The microporosity such as the aspect ratio, the number and the total area of the air holes is also characterized. Thus, the composites loaded 40 % zeolite and 300 % elongation may be applicable for breathable microporous films with improved modulus, impact and yield stress, elongation at break, microporosity and air hole properties.

수종의 실란처리 유리섬유를 첨가한 의치상용 레진의 강도변화 및 마모전.후 표면성상분석 (EFFECTS Of VARIOUS SILANE COUPLING AGENTS ON THE STRENGTH AND THE SURFACE ROUGHNESS OF GLASS FIBER-ADDED PMMA RESIN)

  • 이상일;김창회;임영준;김명주;윤석대
    • 대한치과보철학회지
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    • 제45권4호
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    • pp.457-468
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    • 2007
  • Statements of problem: The fracture of acrylic resin dentures remains an unsolved problem. Therefore, many investigations have been performed and various approaches to strengthening acrylic resin, for example, the reinforcement of heat-cured acrylic resin using glass fibers, have been suggested over the years. Silane is important for bonding between glass fiber and resin. Purpose: The aim of the present study was to investigate the effect of various silane on the strength of PMMA resin and roughness of resin-glass fiber complex after abrasion test. Material and methods: 3mm glass fiber (Chopped strand, Hankuk fiber Co., Milyang, Korea) was treated with 3 kinds of silane (MPS, EPS, APS) (Sila-ace, Chisso chemical, Tokyo, Japan) and mixed with PMMA resin(Vertex RS, Vertex Dental B.V., Zeist, Netherlands). Transverse strength and Young's modulus was measured using Instron (Instron model 4466, Instron, Massachusetts, USA). After abrasion test (The 858 Mini Bionix II Test System, MTS System Co., Minnesota, USA) surface roughness was evaluated using tester (Form Talysurf plus, Taylor Hopson Ltd., Leicester England). Examination of scanning electron microscope was also performed. Results: Within this study, the following conclusions were drawn. 1. Surface treatment of glass fiber with MPS and APS increased transverse strength of PMMA resin complex, but surface treatment with EPS decreased transverse strength of PMMA resin complex (p<0.05). 2. Silane treated glass fiber increased Young's modulus of PMMA resin complex compared to desized glass fiber (p<0.05). 3. Roughness increased after abrasion test in case of PMMA resin reinforced with desized glass fiber (p<0.05). 4. Roughness change was not observed after abrasion test in case of PMMA resin reinforced with silane treated glass fiber (p>0.05).

기능성 단량체를 함유한 PLA의 전자선 조사에 의한 개질: 유변학적 성질 및 열적 특성 (Modification of PLA by Irradiation of Electron Beam in the Presence of Functional Monomer: Rheological and Thermal Properties)

  • 강경수;신부영
    • Korean Chemical Engineering Research
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    • 제46권1호
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    • pp.124-130
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    • 2008
  • 높은 용융강도가 요구되는 용도로 사용하기 위하여, 기능성 단량체인 glycidyl methacrylate(GMA)가 첨가된 poly(lactic acid)(PLA)를 전자선 조사로 개질하였다. GMA의 양과 전자선량을 조절하여 다양하게 개질된 PLA를 제조한 후 열적 특성, 용융 점탄성 성질 및 겔화도를 조사하였다. GMA를 첨가하지 않고 전자선 조사로만 개질한 PLA의 복합점도와 저장 탄성률은 원래의 PLA의 값보다 더 낮았고 조사량이 증가하면 더욱 낮아졌다. GMA을 0.1 phr 또는 0.3 phr로 첨가하여 개질한 PLA의 물성의 조사량에 따른 변화 경향은 GMA를 첨가하지 않고 개질한 PLA와 비슷하지만, 0.5 phr GMA를 함유하며 전자선 조사량 5 kGy로 개질된 PLA는 원래의 PLA보다 낮은 주파수 영역에서 3배나 큰 복합점도와 10배나 큰 저장탄성률을 보였다.

Comparisons of Physical Properties of Bacterial Celluloses Produced in Different Culture Conditions Using Saccharified Food Wastes

  • Moon Seung-Hyeon;Park Ji-Min;Chun Hwa-Youn;Kim Seong-Jun
    • Biotechnology and Bioprocess Engineering:BBE
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    • 제11권1호
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    • pp.26-31
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    • 2006
  • The saccharogenic liquid (SFW) obtained by the enzymatic saccharification of food wastes was used as a medium for production of bacterial cellulose (BC). The enzymatic saccharification of food wastes was carried out by the cultivation supernatant of Trichoderma harziaum FJ1 culture. Acetobacter xylinum KJ1 was employed for the BC production culture. The physical properties, such as polymerization, crystallinity, Young's modulus, and tensile strength, of BCs produced by three culture methods: the static cultures using HS (Hestrin-Schramm) as a reference medium (A) or the SFW medium (B), the shaking culture (C) or the air circulation culture (D) using the SFW medium, were investigated. The degrees of polymerization of BCs produced under the different culture conditions (A-D) showed 11000, 9500, 8500, and 9200, respectively. Young's modulus was 4.15, 5.0, 4.0, and 4.6 GPa, respectively. Tensile strength was 124, 200, 80, and 184 MPa, respectively. All of the BC had a form of cellulose I representing pure cellulose. In the case of the shaking culture, the degree of crystallinity was 51.2%, the lowest degree. Under the other culturing conditions, the trend should remain in the range of 89.7-84%. Overall, the physical properties of BC produced from SFW were similar to those of BC from HS medium, a commercial complex medium, and BC production by the air circulation culture mode brought more favorable results in terms of the physical properties and its ease of scale-up. Therefore, it is expected that a new BC production method, like air circulation culture using SFW, would contribute greatly to BC-related manufacturing.

Poly(carbonate-g-styrene)공중합체의 유리정이 영역에서의 동적 점탄성과 광학특성 (Dynamic Viscoelasticity and Optical Properties of Poly(carbonate-g-styrene) Copolymers in the Glass Transition Zone)

  • 황의정
    • 유변학
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    • 제9권4호
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    • pp.163-173
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    • 1997
  • Polystyrene/polycarbonate 조성이 약 50/50인 3종류의 Poly(carbonate-g-styrene) 공중합체의 동적 탄성율, E*($\omega$)와 동적 스트레인-광학계수 O*($\omega$)을 유리전이 영역부근의 여러온도에서 동시에 측정하여 연구하였다. 두 개의 공중합체는 각각의 스티렌 그라프트쇄 에 5, 10 wt%의 MAH를 함유하고 있다. 이들 공중합체의 E*($\omega$)와 O*($\omega$)완화거동과 그라 프트 공중합체의 상용성과 연관하여 비교 고찰하였다. 공중합체들의 E*($\omega$)는 전형적인 무 정형 고분자의 유리전이 완하거동을 보였으며 정성적인 차이를 발견할수 없었다. 그러나 고 강도의 단일 tan$\delta$분산의 저주파수 영역에 미세분산을 나타내, 공중합체는 2상으로 분리되 어 있음이 추정되엇다. 폴리스티렌 그라프트체에 무수 말레인산 함유량이 증가함에 따라, 저 주파수 영역의 미세피크가 $\alpha$주분산에 병합되어 성분 고분자간의 상호 형동성이 증가함을 알수 있었다. 3공중합체의 유사한 기계적 특성과는 달리, 광학적 완화 스펙트럼 O*($\omega$)는 정 성적으로 명확한 차이를 보여 공중합체들의 광학완화 거동이 명확히 다름을 나타냈다. 기계 적 특성보다는 광학적 특성이 공중합체내의 성분 고분자의 미세한 완하 거동에 훨씬 민감한 응답을나타냈다. 이러한 특성적인 공중합체의 O*($\omega$)차이를 공중합체의 조성단일 고분자 PS, PC의 O*($\omega$)의 가성성을 가정하여 모사하였다 모사에서 구한 광학적 부분 기여 파라메 터를 사용하여 공중합체의 상용성을 고찰하였다.

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적층제조 연속섬유강화 고분자 복합재료의 물성 예측 (Prediction of the Mechanical Properties of Additively Manufactured Continuous Fiber-Reinforced Composites )

  • ;;김형태;김지훈
    • 소성∙가공
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    • 제32권1호
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    • pp.28-34
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    • 2023
  • In this research, a representative volume element (RVE)-based FE Model is presented to estimate the mechanical properties of additively manufactured continuous fiber-reinforced composites with different fiber orientations. To construct the model, an ABAQUS Python script has been implemented to produce matrix and fiber in the desired orientations at the RVE. A script has also been developed to apply the periodic boundary conditions to the RVE. Experimental tests were conducted to validate the numerical models. Tensile specimens with the fiber directions aligned in the 0, 45, and 90 degrees to the loading direction were manufactured using a continuous fiber 3D printer and tensile tests were performed in the three directions. Tensile tests were also simulated using the RVE models. The predicted Young's moduli compared well with the measurements: the Young's modulus prediction accuracy values were 83.73, 97.70, and 92.92 percent for the specimens in the 0, 45, and 90 degrees, respectively. The proposed method with periodic boundary conditions precisely evaluated the elastic properties of additively manufactured continuous fiber-reinforced composites with complex microstructures.

Implementation of an Ultrasound Elasticity Imaging System

  • Cho Gae-Young;Yoon Ra-Young;Park Jeong-Man;Kwon Sung-Jae;Ahn Young-Bok;Bae Moo-Ho;Jeong Mok-Kun
    • 대한의용생체공학회:의공학회지
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    • 제27권3호
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    • pp.117-124
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    • 2006
  • Recently, active research has been going on to measure the elastic modulus of human soft tissue with medical ultrasound imaging systems for the purpose of diagnosing cancers or tumors which have been difficult to detect with conventional B-mode imaging techniques. In this paper, a real-time ultrasonic elasticity imaging system is implemented in software on a Pentium processor-based ultrasonic diagnostic imaging system. Soft tissue is subjected to external vibration, and the resulting tissue displacements change the phase of received echoes, which is in turn used to estimate tissue elasticity. It was confirmed from experiment with a phantom that the implemented elasticity imaging system could differentiate between soft and hard regions, where the latter is twice harder than the former, while operating at an adequate frame rate of 20 frames/s.