• 제목/요약/키워드: properties of modulus

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목재 섬유 복합재(複合材)에 혼합이론(混合理論)의 적용에 관(關)한 연구(硏究) (1) - 유황(硫黃) 화합물(化合物)을 사용한 목재(木材) 섬유(纖維) 복합재(複合材)의 기계적 성질(性質) - (The Application of Rule of Mixtures to Fiber-Reinforced Composites(1) - Mechanical Properties of Fiber-Reinforced, Sulfur-Based Composites -)

  • 이병근
    • Journal of the Korean Wood Science and Technology
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    • 제11권3호
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    • pp.3-13
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    • 1983
  • 크라프트 펄프의 screening rejects, 볏짚 그리고 이들의 1 : 1 비율의 혼합 물질을 사용하여, 5가지의 다른 섬유판(纖維板) 밀도(密度)를 가지는 섬유판을 만들었다. 이들을 유황(硫黃) 화합물(化合物)에 침적(沈積)시켰다. 제조(製造)한 복합재(複合材) 속의 유황(硫黃) 화합물(化合物)의 노화효과(老化效果)를 관찰하기 위해 1년동안 일정한 시간(時間) 간격(間隔)으로, 이 복합재의 기계적 강도(强度)를 Young 계수(係數)로 나타내었다. 최적(最適)의 섬유판과 유황 화합물의 제조 조건하(下)에서, 이 목재(木材) 섬유(纖維) 복합재(複合材)의 Young 계수(係數)는 기존의 합성수지로 만든 복합재나 목재 선유로 만든 집성재(集成材)나 복합재보다 훨씬 큰 결과를 보여 주었다. 예를 들어, 목재 섬유판 밀도가 0.35gm/$cm^3$인 이 복합재의 modulus of elasticity와 modulus of rupture는 각각 1,000,000psi와 7000psi인데 반해, 섬유판 밀도가 1.28gm/$cm^3$인 hardboard의 그것들은 각각 800,000psi와 6000psi를 나나내었다.

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랜덤상태의 E-유리 단섬유 강화 불포화 폴리에스터 기반 수지 복합재료의 물성 - E-유리 단섬유의 길이와 함량 및 적층수의 영향 - (Properties of Randomly Oriented Chopped E-glass Reinforced Unsaturated Polyester Based Resin Composite -Effect of Length/Content of E-Glass Fiber and Number of Stacking-)

  • 박진명;박영광;이영희;서대경;이장훈;김한도
    • 한국염색가공학회지
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    • 제27권3호
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    • pp.165-174
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    • 2015
  • To develop automobile parts, the unsaturated polyester based matrix resin(PR)/reinforcement(randomly oriented chopped E-glass fiber, GF) composites were prepared using sheet molding compound(SMC) compression molding. The effects of GF length(0.5, 1.0 1.5 and 2.0inch)/content (15, 20, 25, 30wt%) and number of ply(3, 4 and 5) on the specific gravity and mechanical properties of PR/GF composites were investigated in this study. The optimum length of GF was found to be about 1.0inch for achieving improved mechanical properties(tensile strength and initial modulus). The tensile strength and initial modulus of composites increased with increasing GF content up to 30wt%, which is favorable content range for SMC. The specific gravity, tensile strength/initial modulus, compressive strength/modulus, flexural strength/modulus and shear strength increased with increasing the number of ply up to 5, which is the maximum number of ply range for SMC. The effectiveness of ply number increased in the flexural strength > shear strength > compressive strength > tensile strength.

새로운 겉보기 활성에너지 함수에 의한 콘크리트의 재료역학적 성질의 예측 (Prediction of Mechanical Properties of Concrete by a New Apparent Activation Energy Function)

  • 한상훈;김진근
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2000년도 가을 학술발표회논문집(I)
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    • pp.173-178
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    • 2000
  • New prediction model is investigated estimating splitting tensile strength and modulus of elasticity with curing temperature and aging. New prediction model is based on the model which was proposed to predict compressive strength, and splitting tensile strength and modulus of elasticity calculated by this model are compared with experimental values. New prediction model well estimated splittinge tensile strength and elastic modulus as well as compressive strength.

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역학적 실내외 시험에 의한 철도궤도 상부노반용 흙재료의 기본물성과 변형계수 상관성 평가 (Construction of Correlation between Basic Soil Properties and Deformation Modulus of Trackbed Soils Based on Laboratory and Field Mechanical Tests)

  • 박재범;최찬용;지상현;임상진;임유진
    • 한국철도학회논문집
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    • 제19권2호
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    • pp.204-212
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    • 2016
  • 국내 궤도 흙노반재료의 선정기준은 기초물성 값(입경, 200번체 통과량($P_{200}$), 4번체 통과량($P_4$), 균등계수($C_u$), 곡률계수($C_c$)등)을 이용하는 통일분류법에 의존하고 있으며, 선정된 궤도노반의 현장 다짐도는 들밀도 시험 및 반복평판재하시험 결과 $E_{v2}$에 의해 파악한다. 그러나 궤도노반의 변형 및 안정성에 미치는 가장 큰 영향요소는 강성(Stiffness)이므로, 노반재료의 분류특성은 기초물성 값 자체 보다는 다짐 후 변형계수를 활용하는 것이 보다 정확하다고 할 수 있다. 본 연구에서는 궤도노반에 사용되는 국내 대표적인 흙 재료의 기초물성과 현장시험에 의한 변형계수($E_{v2}$, $E_{vd}$)와의 상관식을 도출하였다. 이와 같은 상관특성은 성능설계를 위한 국내 고유의 철도궤도용 전용흙분류기준수립을 위한 근거로 사용될 수 있다.

Effects of Fiber Aspect Ratio, Fiber Content, and Bonding Agent on Tensile and Tear Properties of Short-Fiber Reinforced Rubber

  • Lee, Dong-Joo;Ryu, Sang-Ryeoul
    • Journal of Mechanical Science and Technology
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    • 제15권1호
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    • pp.35-43
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    • 2001
  • Both tensile and tear properties of short-fiber reinforced Chloroprene rubber have been studied as functions of the fiber aspect ratio and fiber content. Both properties increased when both the fiber aspect ratio and fiber content were increased. The fiber reinforced rubbers exhibited maximum values of these properties at a fiber aspect ratio of about 300. When the fiber aspect ratio exceeds 400, the mechanical properties decreased with the fiber content because of the non-uniform dispersion of fibers. The tensile modulus was compared with the prediction by the Halpin-Tsai equations for randomly oriented cases. A bonding agent was used in the fiber treating process. It was found that the ultimate tensile strength, torque, tearing energy and tensile modulus of the rubbers with treated fibers were much higher than those with untreated ones.

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Electron Beam Modification of Dual Phase Filler: Surface Characteristics and its Influence on the Properties of Styrene-Butadiene Rubber Vulcanizates

  • Shanmugharaj A. M.
    • 고무기술
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    • 제5권2호
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    • pp.94-103
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    • 2004
  • The present work describes modification of dual phase filler by electron beam irradiation in presence of multifunctional acrylates like trimethylol propane triacrylate (TMPTA) or silane coupling agent like bis (3-triethoxysilylpropyltetrasulphide) and in-fluence of the modified fillers on the physical properties of styrene-butadiene rubber (SBR) vulcanizates. Modulus at 300 % elongation increases whereas the tensile strength decreases with increase in radiation dose for the dual phase filler loaded styrene-butadiene rubber vulcanizates (SBR). However, modulus and tensile strength significantly increase, which is more, pronounced at higher filler loadings for TMPTA modified dual phase filler loaded SBR. These changes in properties are explained by the equilibrium swelling data and Kraus plot interpreting the polymer-filler interaction. Electron beam modification of the filler results in a reduction of tan ${\delta}$ at $70^{\circ}C$, a parameter for rolling resistance and increase in tan ${\delta}$ at $0^{\circ}C$, a parameter for wet skid resistance of the SBR vulcanizates. Finally, the influence of modified fillers on the properties like abrasion resistance, tear strength and fatigue failure and the improvement in the properties have been explained in terms of polymer-filler interaction.

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Recycled Concrete Aggregates: A Review

  • McNeil, Katrina;Kang, Thomas H.K.
    • International Journal of Concrete Structures and Materials
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    • 제7권1호
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    • pp.61-69
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    • 2013
  • This paper discusses the properties of RCA, the effects of RCA use on concrete material properties, and the large scale impact of RCA on structural members. The review study yielded the following findings in regards to concrete material properties: (1) replacing NA in concrete with RCA decreases the compressive strength, but yields comparable splitting tensile strength; (2) the modulus of rupture for RCA concrete was slightly less than that of conventional concrete, likely due to the weakened the interfacial transition zone from residual mortar; and (3) the modulus of elasticity is also lower than expected, caused by the more ductile aggregate. As far as the structural performance is concerned, beams with RCA did experience greater midspan deflections under a service load and smaller cracking moments. However, structural beams did not seem to be as affected by RCA content as materials tests. Most of all, the ultimate moment was moderately affected by RCA content. All in all, it is confirmed that the use of RCA is likely a viable option for structural use.

Mechanical Properties of Polypropylene Filaments Drawn on Varying Post Spinning Temperature Gradients

  • Mukhopadhyay, S.;Deopura, B.L.;Alagirusamy, R.
    • Fibers and Polymers
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    • 제7권4호
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    • pp.432-435
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    • 2006
  • High Modulus and high tenacity polypropylene fibers have been prepared by drawing on a gradient heater. Results show that fiber properties are significantly affected by temperature profiles of final stage drawing on a gradient heater. The gradient drawn filaments showed superior mechanical properties when compared to filaments drawn over a constant temperature heater. Fibers with initial modulus of 16.4 GPa and tenacity of 670 MPa have been manufactured in the process. The nature of the gradient drawing had a significant effect on end properties. The superior mechanical properties are attributed to the high crystal perfection and crystallinity and low void fractions obtained at high draw ratios when drawn over a gradient heater.

계면파괴인성과 콘크리트 역학적 성질의 상관관계 (Corelationship between Interfacial Fracture Toughness and Mechanical Properties of Concrete)

  • 이광명;안기석;이회근;김태근
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 1998년도 봄 학술발표회 논문집(I)
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    • pp.359-364
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    • 1998
  • The interfacial zone in concrete materials is extensive, geometrically complex, and constitutes inherently weak zones that limit the concrete performance. Motar-aggregate interfaces play a major role in the fracture processing in concrete composites. Also, the interfacial bond considerably influence mechanical properties of concrete such as modulus of elasticity, strength, and fracture energy, Characterization of the interfacial properties is, therefore, essential to overcome the limitations associated with the interfaces. an objective of this paper is to investigate the corelationship between the fracture toughness of mortar-aggregate interface and the concrete properties such as strengths and elastic moduli. It is observed from the test results that interface fracture toughness is closely related with the compressive strength rather than other properties. At early ages, the development of both tensile strength and elastic modulus are much greater thatn that of both interface fracture toughness and compressive strength.

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