• 제목/요약/키워드: Tensile elastic modulus

검색결과 371건 처리시간 0.027초

Modeling of Mechanical Properties of Concrete Mixed with Expansive Additive

  • Choi, Hyeonggil;Noguchi, Takafumi
    • International Journal of Concrete Structures and Materials
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    • 제9권4호
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    • pp.391-399
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    • 2015
  • This study modeled the compressive strength and elastic modulus of hardened cement that had been treated with an expansive additive to reduce shrinkage, in order to determine the mechanical properties of the material. In hardened cement paste with an expansive additive, hydrates are generated as a result of the hydration between the cement and expansive additive. These hydrates then fill up the pores in the hardened cement. Consequently, a dense, compact structure is formed through the contact between the particles of the expansive additive and the cement, which leads to the manifestation of the strength and elastic modulus. Hence, in this study, the compressive strength and elastic modulus were modeled based on the concept of the mutual contact area of the particles, taking into consideration the extent of the cohesion between particles and the structure formation by the particles. The compressive strength of the material was modeled by considering the relationship between the porosity and the distributional probability of the weakest points, i.e., points that could lead to fracture, in the continuum. The approach used for modeling the elastic modulus considered the pore structure between the particles, which are responsible for transmitting the tensile force, along with the state of compaction of the hydration products, as described by the coefficient of the effective radius. The results of an experimental verification of the model showed that the values predicted by the model correlated closely with the experimental values.

필라멘트 와인딩된 링시편을 이용한 인장특성 평가 (Evaluation of Tensile Properties Using Filament Wound Ring Specimens)

  • 윤성호;김천곤;조원만
    • 대한기계학회논문집
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    • 제19권6호
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    • pp.1479-1489
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    • 1995
  • In this study, tensile strength and modulus were evaluated for a filament wound ring specimen by split disk test and compared with the theoretical values obtained by the rule of mixtures. The circumferentially wound ring specimens were prepared from 4 types of material systems. The results showed that the measured strengths of the composite systems were considerably lower than the theoretical values due to the local bending stresses around the split disk edges. for the measurement of elastic moduli of the filament wound ring specimens, the effect of friction on the strain of the ring must be taken into account. But the effect of friction between the split disk fixture and the ring specimen can be eliminated by averaging the moduli for loading and unloading state with maintaining the same crosshead rates. The measured elastic moduli of ring specimens showed very good agreement with the theoretical values.

섬유/입자 혼합 금속복합재료의 제조 및 특성평가 (Fabrication of Fiber/Particle Hybrid MMCs and Analysis of the Mechanical Properties)

  • 정성욱;남현욱;정창규;한경섭
    • 한국복합재료학회:학술대회논문집
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    • 한국복합재료학회 2001년도 춘계학술발표대회 논문집
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    • pp.34-37
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    • 2001
  • This study developed Fiber/Particle Hybrid MMCs and analyzed their mechanical properties. Using $\textrm{Al}_2\textrm{O}_3f$ and $\textrm{Al}_2\textrm{O}_3p$ with the fiber to particle ratio of 1:1, 1:3, 1:5 hybrid preform and MMCs are fabricated. For the analysis of the mechanical properties, three point bending tests were preformed for the preform and tensile test for the MMCs. The experimental results show that the hybrid MMCs can be successfully fabricated using the equipment of fiber preform fabrication system and squeeze casting method. And as the amount of particle in hybrid MMCs increases, the tensile strength, elastic modulus and the volume fraction of reinforcement increases.

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미소 기전 시스템용 니켈 박막의 기계적 물성 측정 (Measurement of Mechanical Properties of Electroplated Nickel Thin Film for MEMS Application)

  • 백동천;박태상;이순복;이낙규;최태훈;나경환
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2003년도 춘계학술대회
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    • pp.1321-1325
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    • 2003
  • Nickel thin film is one of the most important materials used in micromachined structure. To measure the mechanical properties of electroplated nickel thin film, two techniques are adopted and compared quantitatively with. One is nano-indentation test to measure the elastic modulus. The other is tensile test to measure not only elastic modulus but also yield strength and plastic deformation, ultimate strength. To perform the tensile test, the test apparatus was constructed with linear guided servo motor for actuation, load cell for force measurement and dual microscope for strain measurement.

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우주용 접착제의 탄성계수 측정 및 특성 규명에 관한 연구 (A Study on the Measurement of the Elastic Moduli and Characteristics for Space Adhesives)

  • 김현중;서유덕;박상훈;김지연;엄태경;이상률;이승훈;이덕규;이응식;장흥술;정대준;윤성기
    • 한국항공우주학회지
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    • 제35권2호
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    • pp.101-106
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    • 2007
  • 인공위성 카메라 주반사경의 광학적 성능은 반사경과 반사경 지지부의 접착특성에 크게 영향을 받는다. 따라서 고성능의 주반사경을 설계하기 위해서는 접착제의 기계적 특성 규명이 필수적이다. 본 연구에서는 3종의 접착제를 선별하여 이에 대한 기계적 특성을 규명한다. 접착제의 탄성계수는 인장 시험을 통해 얻을 수 있다. 비선형 거동을 보이는 접착제의 경우 지수함수 형태로 곡선맞춤을 수행하여 응력-변형률 관계를 얻고, 선형거동을 보이는 접착제의 경우 선형 맞춤을 통해 탄성계수를 얻는다. 접착제의 작동 온도 범위내 8개 온도점을 선택하여 시험을 수행한다. 시험을 통해 탄성계수를 온도에 따른 함수로 표현하고, 이를 바탕으로 접착제의 특성에 대해 논의 한다.

고온과 고온노출 후 GFRP 보강근의 잔존인장성능 비교 (A Comparison of Residual Tensile Properties of GFRP Reinforcing Bar at High Temperature and after Exposure to High Temperature)

  • 김성도;문도영
    • 대한토목학회논문집
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    • 제35권1호
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    • pp.77-84
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    • 2015
  • 고온에 노출된 GFRP 보강근의 인장실험을 수행하였다. 본 실험을 위한 고온노출조건은 $200^{\circ}C$ 이하의 온도에 3분간 노출하는 것으로 하였다. 이러한 조건은 다른 연구자들의 시험에서 적용한 고온노출조건과 비교하여 경미한 고온노출조건이다. 고온에서와 고온노출 후 GFRP 보강근의 인장강도와 탄성계수를 비교하였다. 실험결과, 고온에서 GFRP 보강근의 인장성능이 감소하는 것으로 나타났으나, 고온노출 후 보강근의 인장성능은 거의 고온노출전의 수준으로 회복되는 것으로 나타났다. 이와 같은 결과는 화재로 손상 받은 GFRP 보강 콘크리트 구조물의 평가를 위하여 중요한 자료가 된다.

복합포장용 고탄성 저수축 롤러전압콘크리트 기층 개발을 위한 기초연구 (A Preliminary Study on the Development of a High Elastic Modulus and Low-Shrinkage Roller-Compacted Concrete Base for Composite Pavement)

  • 정건우;이승우
    • 한국도로학회논문집
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    • 제19권1호
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    • pp.45-52
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    • 2017
  • PURPOSES : The main purpose of this study is to develop a high elastic modulus and low-shrinkage roller-compacted concrete base (RCCB) in order to prevent fatigue cracking and reflective cracking in the asphalt surface layer of composite pavement. Using a rigid base material with low shrinkage can be a solution to this problem. Moreover, a strong rigid base with high elastic modulus is able to shift the location of critical tensile strain from the bottom of the asphalt layer to the bottom of the rigid base layer, which can prevent fatigue cracking in the asphalt layer. METHODS : Sensitivity analysis of composite pavement via numerical methods is implemented to determine an appropriate range of elastic modulus of the rigid base that would eliminate fatigue cracking. Various asphalt thicknesses and elastic moduli of the rigid base are used in the analysis to study their respective influences on fatigue cracking. Low-shrinkage RCC mixture, as determined via laboratory testing with various amounts of a CSA expansion agent (0%, 7%, and 10%), is found to achieve an appropriate low-shrinkage level. Shrinkage of RCC is measured according to KS F 2424. RESULTS : This study shows that composite pavements comprising asphalt thicknesses of (h1) 2 in. with E2 > 19 GPa, 4 in. with E2 > 15 GPa, and 6 in. with E2 > 11 GPa are able to eliminate tensile strain in the asphalt layer, which is the cause of fatigue cracking in this layer. Shrinkage test results demonstrate that a 10% CSA RCC mixture can reduce shrinkage by 84% and 93% as compared to conventional RCC and PCC, respectively. CONCLUSIONS : According to the results of numerical analyses using various design inputs, composite pavements are shown to be able to eliminate fatigue cracking in composite pavement. Additionally, an RCC mixture with 10% CSA admixture is able to reduce or eliminate reflective cracking in asphalt surfaces as a result of the significant shrinkage reduction in the RCC base. Thus, this low-shrinkage base material can be used as an alternative solution to distresses in composite pavement.

Influence of high temperature on mechanical properties of concrete containing recycled fine aggregate

  • Liang, Jiong-Feng;Wang, En;Zhou, Xu;Le, Qiao-Li
    • Computers and Concrete
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    • 제21권1호
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    • pp.87-94
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    • 2018
  • This paper presents the results of an experimental study to investigate the influences of high temperatures on the mechanical properties of concrete containing recycled fine aggregate. A total of 150 concrete prisms ($100{\times}100{\times}300mm$) and 150 concrete cubes ($100{\times}100{\times}100mm$) are cast and heated under five different temperatures ($20^{\circ}C$, $200^{\circ}C$, $400^{\circ}C$, $600^{\circ}C$, $800^{\circ}C$) for test. The results show that the mass loss, compressive strength, elastic modulus, splitting tensile strength of concrete specimens containing recycled fine aggregate decline significantly as the temperature rise. At the same temperature, the compressive strength, splitting tensile strength, elastic modulus of concrete specimens containing recycled coarse aggregate and recycled fine aggregate (RHC) is lower than that of concrete specimens containing natural coarse aggregate and recycled fine aggregate (RFC). The shape of stress-strain curves of concrete specimens at different temperatures is different, and the shape of that become flatter as the temperature rises. Normal concrete has better energy absorption capacity than concrete containing recycled fine aggregate.

친환경 저비중 자기보강 복합소재 개발을 위한 공정 변수별 영향도 평가 (Study of Mechanism for Improving Tensile Elastic Modulus of Self-reinforced Composite)

  • 윤덕우;강현민
    • Composites Research
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    • 제28권4호
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    • pp.197-203
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    • 2015
  • 폴리프로필렌 기반 자기보강 복합재는 기지재와 보강재가 동일한 소재로 구성되어 기존 섬유강화 복합재와 달리 섬유와 기지재의 분리없이 바로 재활용이 가능할 뿐 아니라 폴리프로필렌 수준까지 저 비중화가 가능한 고분자 복합재이다. 본 연구에서는 더블벨트 라미네이터 공정기술을 이용하여 압력, 온도, 냉각조건과 같은 공정 변수가 폴리프로필렌으로 제조된 자기보강 복합재의 인장 물성에 미치는 영향을 연구하였다. XRD, DSC를 이용하여 결정구조의 변화에 따라 인장 탄성계수는 0.2~1.2 GPa로 약 6배까지 향상되는 것을 확인하였다. SEM 분석을 통해 함침 정도를 확인함으로써 자기보강 복합재의 함침 후 형상 변화 또한 고찰하였다.

나노탄소물질을 함유하는 알루미늄기지 복합소재 개발 (Development of Aluminum Matrix Composites Containing Nano-carbon Materials)

  • 김정준;김대영;최현주
    • 한국분말재료학회지
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    • 제28권3호
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    • pp.253-258
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    • 2021
  • There is increasing demand for the development of a new material with high strength, high stiffness, and good electrical conductivity that can be used for high-voltage direct current cables. In this study, we develop aluminum-based composites containing C60 fullerenes, carbon nanotubes, or graphene using a powder metallurgical route and evaluate their strength, stiffness, coefficient of thermal expansion, and electrical conductivity. By optimizing the process conditions, a material with a tensile strength of 800 MPa, an elastic modulus of 90 GPa, and an electrical conductivity of 40% IACS is obtained, which may replace iron-core cables. Furthermore, by designing the type and volume fraction of the reinforcement, a material with a tensile strength of 380 MPa, elastic modulus of 80 GPa, and electrical conductivity of 54% IACS is obtained, which may compete with AA 6201 aluminum alloys for use in all-aluminum conductor cables.