• 제목/요약/키워드: splitting tensile strength

검색결과 248건 처리시간 0.024초

굵은 골재를 이용한 3D 콘크리트 프린팅 기술개발에 대한 연구 (Investigation on the Development of 3D Concrete Printing(3DPC) Technology Using Coarse Aggregation)

  • 황준필;권홍규
    • 산업경영시스템학회지
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    • 제45권3호
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    • pp.66-77
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    • 2022
  • Digitization and automation technologies have rapidly maximized productivity and efficiency in all industries over the past few decades. Construction automation technology has either stagnated over the same period or has not kept pace with overall economic productivity. According to the research studies up to now, the output of concrete structures using coarse aggregates (8mm or more) is very limited due to the limitations of equipment and materials. In this study, information on the development process of 3DCP equipment that can print concrete structures with the printing width (100 mm or more) and printing thickness (30 mm or more) using a 3DCP material mixed with coarse aggregate (8 mm or more) is provided. To verify the performance of the developed 3DCP equipment, experimental data are provided on output variables, the number of layers, and the inter-layer printing time interval. The evaluation and verification data of various mechanical properties (compressive and splitting tensile strength) of printed materials using coarse aggregates are provided.

Optimum LWA content in concrete based on k-value and physical-mechanical properties

  • Muda, Zakaria Che;Shafigh, Payam;Yousuf, Sumra;Mahyuddin, Norhayati Binti;Asadi, Iman
    • Advances in concrete construction
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    • 제14권3호
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    • pp.215-225
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    • 2022
  • Thermal comfort and energy conservation are critical issues in the building sector. Energy consumption in the building sector should be reduced whilst enhancing the thermal comfort of occupants. Concrete is the most widely used construction material in buildings. Its thermal conductivity (k-value) has a direct effect on thermal comfort perception. This study aims to find the optimum value of replacing the normal aggregate with lightweight expanded clay aggregate (LECA) under high strengths and low thermal conductivity, density and water absorption. The k-value of the LECA concrete and its physical and mechanical properties have varying correlations. Results indicate that the oven-dry density, compressive strength, splitting tensile strength and k-value of concrete decrease when normal coarse aggregates are replaced with LECA. However, water absorption (initial and final) increases. Thermal conductivity and the physical and mechanical properties have a strong correlation. The statistical optimisation of the experimental data shows that the 39% replacement of normal coarse aggregate by LECA is the optimum value for maximising the compressive and splitting tensile strengths whilst maintaining the k-value, density and water absorption at a minimum.

Influence of loading condition and reinforcement size on the concrete/reinforcement bond strength

  • Turk, Kazim;Caliskan, Sinan;Sukru Yildirim, M.
    • Structural Engineering and Mechanics
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    • 제19권3호
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    • pp.337-346
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    • 2005
  • The paper reports on a study of bond strength between reduced-water-content concrete and tensile reinforcement in spliced mode. Three different diameters (12, 16 and 22 mm) of tensile steel were spliced in the constant moment zone, where there were two bars of same size in tension. For each diameter of reinforcement, a total of nine beams ($1900{\times}270{\times}180mm$) were tested, of which three beams were with no axial force (positive bending) and the other six beams were with axial force (combined bending). The splice length was selected so that bars would fail in bond, splitting the concrete cover in the splice region, before reaching the yield point. It was found that there was a considerable size effect in the experimental results, i.e., as the diameter of the reinforcement reduced the bond strength and the deflection recorded at the midspan increased significantly, whilst the stiffness of the beams reduced. It was also found for all reinforcement sizes that higher bond strength and stiffness were obtained for beams tested in combined bending than that of the beams tested in positive bending only.

콘크리트의 역학적 특성에 대한 바텀애시 골재 양의 영향 (Effect of Bottom Ash Aggregate Contents on Mechanical Properties of Concrete)

  • 안태호;양근혁;하정수
    • 한국건설순환자원학회논문집
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    • 제8권4호
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    • pp.379-386
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    • 2020
  • 본 연구에서는 바텀애시 골재 양이 콘크리트의 압축강도 발현 및 역학적 특성(탄성계수, 쪼갬 인장강도, 파괴계수)에 미치는 영향을 평가하였다. 실험변수는 천연모래에 대한 바텀애시 잔골재 치환율과 물-시멘트 비이다. 실험결과 바텀애시 골재 콘크리트의 재령 28일 압축강도와 재령 28일 압축강도 루트승으로 무차원한 바텀애시 골재 콘크리트의 역학적 특성들의 값들은 바텀애시 잔골재 양의 증가와 함께 감소하는 경향을 보였다. fib 2010의 모델식과 비교하면, 바텀애시 골재 콘크리트의 압축강도에 대한 초기 발현율은 낮은 반면 장기 발현율은 높았으며, 탄성계수와 파괴계수는 안전측에서 평가될 수 있지만, 쪼갬 인장강도는 불안전측이었다.

인장 겹침이음에서 프라이 거동의 영향 (Prying Action of Spliced Reinforcements in Tension)

  • 천성철;최동욱;하상수;오보환
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2008년도 춘계 학술발표회 제20권1호
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    • pp.1085-1088
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    • 2008
  • 철근공사에서 이음은 필연적으로 발생되며, 일반적으로 겹침이음을 통해 이음강도를 확보한다. 인장 이음길이는 인장 정착길이를 기준으로 산정되며, 정착길이는 실험적으로 도출된 부착강도 모델을 기반으로 결정된다. 인장이음은 휨을 받는 경우에 발생되므로 부재의 휨변형이 반드시 발생된다. 휨변형에의해 프라이(Prying) 거동이 발생되어, 철근이 피복콘크리트를 밀어내는 힘이 발생된다. 이러한 힘은 부착응력에 의해 발생되는 인장응력과 동일한 역할을 한다. 프라이 거동에 의해 발생된 인장응력과 부착응력에 의해 발생된 인장응력의 합이 콘크리트 인장강도에 도달하면 이음부가 파괴되므로, 프라이거동의 존재는 부착강도를 저하시키게 된다. 역학적 모델을 구성하여 휨부재의 인장이음에서 프라이거동이 이음강도에 미치는 영향을 분석하였다. 프라이 거동에 의한 인장응력은 보강근의 인장강도와 탄성계수에 비례하며, 휨부재의 휨강성에도 영향을 받는 것으로 나타났다. 또한 이음되는 보강근의 간격에 반비례하여 인장응력이 유발된다. 따라서 슬래브와 같이 휨강성이 작은 부재에 촘촘하게 이음된 경우에는 현행 설계기준보다 긴 이음길이를 확보할 필요가 있다.

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경량골재 콘크리트의 역학적 특성 (The Properties of Lightweight Concrete Using the Expanded Clay)

  • 김태형;하상진;최영화;김동인
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 1999년도 학회창립 10주년 기념 1999년도 가을 학술발표회 논문집
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    • pp.249-252
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    • 1999
  • Recently, the use of lightweight concrete in architectural structures are increasing. It is considered important to control the quality of lightweight concrete. The purpose of this study is to find mechanical properties of lightweight concrete using the expanded clay. Thus, slump, air content, compressive strength, splitting tensile strength, length change ratio, unitweight change ratio and absorption of lightweight concrete have been investigated. As a result, it was shown that proper expanded clay replaced by coarse aggregate in concrete was considered as a good replacement of lightweight concrete.

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전기슬래그 굵은골재 사용 콘크리트의 제물성 (A Fundamental Study on the Properties of Concrete Using Electric Arc Furnace Slag)

  • 문한영;유정훈;문재흠;천승환
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 1998년도 가을 학술발표회 논문집(I)
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    • pp.72-75
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    • 1998
  • In this study, we investigate the difference of concrete between natural aggregate and electric are furnace(EAF) slag one in oder to use EAF slag aggregate as coarse aggregate in concrete. We find the physical and chemical properties of EAF slag aggregate for the aging process. We consider the properties od the concrete made with EAF slag aggregate which are compressive strength, splitting tensile strength and modulus of elasticity.

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Flow and Engineering Properties of Fiber Reinforced Hwangtoh Mortars

  • Mun, Ju-Hyun;Yang, Keun-Hyeok;Hwang, Hye-Zoo
    • 한국건축시공학회지
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    • 제12권3호
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    • pp.332-339
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    • 2012
  • In this study, six mortar mixes were tested in order to examine the significance and limitations of hydrophilic fiber in terms of its capacity to enhance the tensile resistance of Hwangtoh mortar. Lyocell, polyamide and polyvinyl alcohol (PVA) fibers were selected for the main test parameters. The tensile capacity of mortars tested was evaluated based on the splitting tensile strength and the modulus of fracture, while their ductility was examined using the toughness indices specified in ASTM. Test results showed that the addition of lyocell and PVA fibers had little influence on the flow of the Hwangtoh mortars. To enhance the tensile capacity and toughness index of Hwangtoh mortar, it is proposed that fiber spacing above 0.0003 is required, regardless of the type of fiber.

Strengthening of concrete damaged by mechanical loading and elevated temperature

  • Ahmad, Hammad;Hameed, Rashid;Riaz, Muhammad Rizwan;Gillani, Asad Ali
    • Advances in concrete construction
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    • 제6권6호
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    • pp.645-658
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    • 2018
  • Despite being one of the most abundantly used construction materials because of its exceptional properties, concrete is susceptible to deterioration and damage due to various factors particularly corrosion, improper loading, poor workmanship and design discrepancies, and as a result concrete structures require retrofitting and strengthening. In recent times, Fiber Reinforced Polymer (FRP) composites have substituted the conventional techniques of retrofitting and strengthening of damaged concrete. Most of the research studies related to concrete strengthening using FRP have been performed on undamaged test specimens. This contribution presents the results of an experimental study in which concrete specimens were damaged by mechanical loading and elevated temperature in laboratory prior to application of Carbon Fiber Reinforced Polymer (CFRP) sheets for strengthening. The test specimens prepared using concrete of target compressive strength of 28 MPa at 28 days were subjected to compressive and splitting tensile testing up to failure and the intact pieces of the failed specimens were collected for the purpose of repair. In order to induce damage as a result of elevated temperature, the concrete cylinders were subjected to $400^{\circ}C$ and $800^{\circ}C$ temperature for two hours duration. Concrete cylinders damaged under compressive and split tensile loads were re-cast using concrete and rich cement-sand mortar, respectively and then strengthened using CFRP wrap. Concrete cylinders damaged due to elevated temperature were also strengthened using CFRP wrap. Re-cast and strengthened concrete cylinders were tested in compression and splitting tension. The obtained results revealed that re-casting of specimens damaged by mechanical loadings using concrete & mortar, and then strengthened by single layer CFRP wrap exhibited strength even higher than their original values. In case of specimens damaged by elevated temperature, the results indicated that concrete strength is significantly dropped and strengthening using CFRP wrap made it possible to not only recover the lost strength but also resulted in concrete strength greater than the original value.

제강슬래그 골재의 소파블록 적용성 평가 (Applicability of Steel Slag Aggregate for Artificial Armor Unit)

  • 양은익;이광교;한상훈
    • 콘크리트학회논문집
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    • 제16권5호
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    • pp.591-596
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    • 2004
  • 제강슬래그 골재의 소파블록 적용성을 평가하기 위하여, 구조적 재료로서의 콘크리트 물성을 연구하였다. 또한, 제강슬래그 골재를 사용한 해양 콘크리트의 생물학적 연구를 수행하였다. 수행된 콘크리트의 물성 실험은 슬럼프, 공기량, 압축강도, 쪼갬인장강도, 탄성계수, 탄산화 저항성, 수화열, 동결융해, 황산염 침지, 건조수축 실험 등이다. 또한, 해양 저서생물과 해조류의 번식 및 증식에 대한 조사를 위해 생물학적 실험이 수행되었다. 본 연구결과에 따르면, 제강슬래그 골재의 함유는 압축강도, 쪼갬인장강도, 그리고 탄성계수에 대하여 나쁜 영향을 미치지 않으며, 콘크리트의 내구성 측면에서도 제강슬래그 골재의 함유에 의한 악영향을 받지 않았다. 생물학적 연구에 따르면, 제강슬래그 골재는 해양 저서생물과 해조류의 증식과 번식에 이상적인 재료로서 평가되었다.