• 제목/요약/키워드: Compressive test

검색결과 3,628건 처리시간 0.028초

페로니켈 슬래그를 사용한 비소성 시멘트 모르타르의 특성 (Properties of Non Sintered Cement Mortar using Ferro Nickel Slag)

  • 윤민식;나형원;형원길
    • 한국건축시공학회지
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    • 제22권6호
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    • pp.641-649
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    • 2022
  • 본 연구는 우리가 사용하고 있는 포틀랜드 시멘트와 골재로 사용되는 천연모래를 산업부산물로 전량 대체하여 비소성 시멘트 모르타르를 개발하고자 하였다. 포틀랜드 시멘트를 대체하기 위해 고로슬래그, 순환유동층 플라이애시, 미분탄 플라이애시를 사용하였으며 천연골재를 페로니켈 슬래그로 대체하였다. 페로니켈슬래그를 적용한 비소성 시멘트 모르타르의 특성을 파악하기 위해 입도 크기를 분류하여 실험을 실시하였다. 플로우 테스트를 통해 유동성 및 작업성을 확인하였으며, 휨 및 압축강도 시험은 재령 3, 7, 28일 실시하였다. 또한 염소이온 침투 시험을 통해 내구성을 파악하였다. 연구 결과, 시멘트와 골재를 산업부산물로 전량 대체한 결합재는 건설재료로 활용 가능성이 높은 것으로 판단된다. 특히 장기강도발현과 내구성확보에 유리한 것으로 확인하였다.

Efficient influence of cross section shape on the mechanical and economic properties of concrete canvas and CFRP reinforced columns management using metaheuristic optimization algorithms

  • Ge, Genwang;Liu, Yingzi;Al-Tamimi, Haneen M.;Pourrostam, Towhid;Zhang, Xian;Ali, H. Elhosiny;Jan, Amin;Salameh, Anas A.
    • Computers and Concrete
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    • 제29권 6호
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    • pp.375-391
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    • 2022
  • This paper examined the impact of the cross-sectional structure on the structural results under different loading conditions of reinforced concrete (RC) members' management limited in Carbon Fiber Reinforced Polymers (CFRP). The mechanical properties of CFRC was investigated, then, totally 32 samples were examined. Test parameters included the cross-sectional shape as square, rectangular and circular with two various aspect rates and loading statues. The loading involved concentrated loading, eccentric loading with a ratio of 0.46 to 0.6 and pure bending. The results of the test revealed that the CFRP increased ductility and load during concentrated processing. A cross sectional shape from 23 to 44 percent was increased in load capacity and from 250 to 350 percent increase in axial deformation in rectangular and circular sections respectively, affecting greatly the accomplishment of load capacity and ductility of the concentrated members. Two Artificial Intelligence Models as Extreme Learning Machine (ELM) and Particle Swarm Optimization (PSO) were used to estimating the tensile and flexural strength of specimen. On the basis of the performance from RMSE and RSQR, C-Shape CFRC was greater tensile and flexural strength than any other FRP composite design. Because of the mechanical anchorage into the matrix, C-shaped CFRCC was noted to have greater fiber-matrix interfacial adhesive strength. However, with the increase of the aspect ratio and fiber volume fraction, the compressive strength of CFRCC was reduced. This possibly was due to the fact that during the blending of each fiber, the volume of air input was increased. In addition, by adding silica fumed to composites, the tensile and flexural strength of CFRCC is greatly improved.

상부 슬래브와 합성된 원심성형으로 제작된 초고강도 각형보의 실험연구 (The Experimental Study of Full-scale Centrifugal Formed High Strength Concrete Prismatic Beam(CFPB) Composited with Deck Slab )

  • 이두성;김성진;김정회
    • 한국구조물진단유지관리공학회 논문집
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    • 제27권1호
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    • pp.19-29
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    • 2023
  • 실리카 흄과 같은 고가의 혼화재 투입 없이 원심성형 공정 활용으로 콘크리트의 수밀성 증대 통한 콘크리트 압축강도 100 MPa급 초고강도 프리스트레스 각형보를 개발하였다. 벽체에 가설된 초고강도 원심성형 각형보는 상부슬래브 콘크리트와 합성된 후에 공용하중을 받게 되는데, 원심성형 보와 바닥판 사이에는 휨에 의해 수평전단응력이 발생되고 이는 스터드나 철근 등의 전단연결재를 통해서 보와 바닥판이 합성거동을 하게 된다. 본 연구에서는 공장에서 생산된 100 MPa급 원심성형 각형보 상부에 RC슬래브를 제작하여 합성시킨 실물모형 시험체에 대한 휨재하시험을 수행하였으며, 합성단면은 설계 공칭휨강도를 넘어 안정적인 합성거동을 하면서 파괴되어 구조적인 신뢰성을 입증하였다.

Predicting rock brittleness indices from simple laboratory test results using some machine learning methods

  • Davood Fereidooni;Zohre Karimi
    • Geomechanics and Engineering
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    • 제34권6호
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    • pp.697-726
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    • 2023
  • Brittleness as an important property of rock plays a crucial role both in the failure process of intact rock and rock mass response to excavation in engineering geological and geotechnical projects. Generally, rock brittleness indices are calculated from the mechanical properties of rocks such as uniaxial compressive strength, tensile strength and modulus of elasticity. These properties are generally determined from complicated, expensive and time-consuming tests in laboratory. For this reason, in the present research, an attempt has been made to predict the rock brittleness indices from simple, inexpensive, and quick laboratory test results namely dry unit weight, porosity, slake-durability index, P-wave velocity, Schmidt rebound hardness, and point load strength index using multiple linear regression, exponential regression, support vector machine (SVM) with various kernels, generating fuzzy inference system, and regression tree ensemble (RTE) with boosting framework. So, this could be considered as an innovation for the present research. For this purpose, the number of 39 rock samples including five igneous, twenty-six sedimentary, and eight metamorphic were collected from different regions of Iran. Mineralogical, physical and mechanical properties as well as five well known rock brittleness indices (i.e., B1, B2, B3, B4, and B5) were measured for the selected rock samples before application of the above-mentioned machine learning techniques. The performance of the developed models was evaluated based on several statistical metrics such as mean square error, relative absolute error, root relative absolute error, determination coefficients, variance account for, mean absolute percentage error and standard deviation of the error. The comparison of the obtained results revealed that among the studied methods, SVM is the most suitable one for predicting B1, B2 and B5, while RTE predicts B3 and B4 better than other methods.

Effect of ages and season temperatures on bi-surface shear behavior of HESUHPC-NSC composite

  • Yang Zhang;Yanping Zhu;Pengfei Ma;Shuilong He;Xudong Shao
    • Advances in concrete construction
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    • 제15권6호
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    • pp.359-376
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    • 2023
  • Ultra-high-performance concrete (UHPC) has become an attractive cast-in-place repairing material for existing engineering structures. The present study aims to investigate age-dependent high-early-strength UHPC (HESUHPC) material properties (i.e., compressive strength, elastic modulus, flexural strength, and tensile strength) as well as interfacial shear properties of HESUHPC-normal strength concrete (NSC) composites cured at different season temperatures (i.e., summer, autumn, and winter). The typical temperatures were kept for at least seven days in different seasons from weather forecasting to guarantee an approximately consistent curing and testing condition (i.e., temperature and relative humidity) for specimens at different ages. The HESUHPC material properties are tested through standardized testing methods, and the interfacial bond performance is tested through a bi-surface shear testing method. The test results quantify the positive development of HESUHPC material properties at the early age, and the increasing amplitude decreases from summer to winter. Three-day mechanical properties in winter (with the lowest curing temperature) still gain more than 60% of the 28-day mechanical properties, and the impact of season temperatures becomes small at the later age. The HESUHPC shrinkage mainly occurs at the early age, and the final shrinkage value is not significant. The HESUHPC-NSC interface exhibits sound shear performance, the interface in most specimens does not fail, and most interfacial shear strengths are higher than the NSC-NSC composite. The HESUHPC-NSC composites at the shear failure do not exhibit a large relative slip and present a significant brittleness at the failure. The typical failures are characterized by thin-layer NSC debonding near the interface, and NSC pure shear failure. Two load-slip development patterns, and two types of main crack location are identified for the HESUHPC-NSC composites tested in different ages and seasons. In addition, shear capacity of the HESUHPC-NSC composite develops rapidly at the early age, and the increasing amplitude decreases as the season temperature decreases. This study will promote the HESUHPC application in practical engineering as a cast-in-place repairing material subjected to different natural environments.

Feasibility of UHPC shields in spent fuel vertical concrete cask to resist accidental drop impact

  • P.C. Jia;H. Wu;L.L. Ma;Q. Peng
    • Nuclear Engineering and Technology
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    • 제54권11호
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    • pp.4146-4158
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    • 2022
  • Ultra-high performance concrete (UHPC) has been widely utilized in military and civil protective structures to resist intensive loadings attributed to its excellent properties, e.g., high tensile/compressive strength, high dynamic toughness and impact resistance. At present, aiming to improve the defects of the traditional vertical concrete cask (VCC), i.e., the external storage facility of spent fuel, with normal strength concrete (NSC) shield, e.g., heavy weight and difficult to fabricate/transform, the feasibility of UHPC applied in the shield of VCC is numerically examined considering its high radiation and corrosion resistance. Firstly, the finite element (FE) analyses approach and material model parameters of NSC and UHPC are verified based on the 1/3 scaled VCC tip-over test and drop hammer test on UHPC members, respectively. Then, the refined FE model of prototypical VCC is established and utilized to examine its dynamic behaviors and damage distribution in accidental tip-over and end-drop events, in which the various influential factors, e.g., UHPC shield thickness, concrete ground thickness, and sealing methods of steel container are considered. In conclusion, by quantitatively evaluating the safety of VCC in terms of the shield damage and vibrations, it is found that adopting the 300 mm-thick UHPC shield instead of the conventional 650 mm-thick NSC shield can reduce about 1/3 of the total weight of VCC, i.e., about 50 t, and 37% floor space, as well as guarantee the structural integrity of VCC during the accidental drop simultaneously. Besides, based on the parametric analyses, the thickness of concrete ground in the VCC storage site is recommended as less than 500 mm, and the welded connection is recommended for the sealing method of steel containers.

굴착면 거칠기를 고려한 암반 근입 현장타설말뚝의 주면 하중전이함수 제안 (Shear Load-Transfer Function of Rock-Socketed Drilled Shafts Considering Borehole Roughness)

  • 설훈일;우상윤;한근택;정상섬
    • 한국지반공학회논문집
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    • 제22권7호
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    • pp.23-35
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    • 2006
  • 본 연구에서는 암반에 근입된 현장타설말뚝의 주면하중전이특성을 분석하기 위하여, 주요 영향요소(일축압축강도, 거칠기, 수직강성, 초기구속응력, 재료성질)에 따라 일정수직강성(Constant Normal Stiffness, CNS)조건의 직접전단시험을 수행하였다. 그 결과 암반에 근입된 현장타설말뚝의 주변하중전이특성을 3구간으로 이상화할 수 있었으며, 각 구간에서의 거동을 지배하는 주요 요소의 영향 및 그에 따른 거동을 파악할 수 있었다. 이를 토대로 암반의 절리 및 풍화상태를 나타내는 GSI(Geological Strength Index)를 이용한 Hoek-Brown 파괴기준(1997)을 적용하여, 암반에 근입된 현장타설말뚝의 굴착면 거칠기를 고려한 새로운 주면 하중전이함수를 제안하였다. 제안된 하중전이함수는 기존 7본의 말뚝 재하시험 결과와 비교분석을 수행하였으며, 그 결과 본 제안식이 암반 굴착면의 거칠기 및 암반특성을 적절히 반영함을 알 수 있었다.

대형직접전단시험을 이용한 조립재료의 전단거동 특성 (III) - 최종 종합 분석 - (Characteristics of Shear Behavior for Coarse Grained Materials Based on Large Scale Direct Shear Test (III) - Final Comprehensive Analysis -)

  • 이대수;김경열;홍성연;오기대;정상섬
    • 한국지반공학회논문집
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    • 제25권4호
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    • pp.39-54
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    • 2009
  • 대형직접전단시험기를 이용하여, 국내의 석산에서 생산된 쇄석재료들에 대한 전단거동을 분석하였다. 시료별로 전단강도를 산출하였으며, 최대입경, 수침조건, 밀도, 균등계수, 파쇄율 등의 변화에 따른 전단거동의 영향을 평가하여, 선행연구결과와 정성적으로 비교하였다. 아울러, 일의 원리를 응용하여, 쇄석재료의 응력-다일러턴시 관계를 규명하였으며, 한계상태의 마찰계수와 첨두마찰각 및 팽창각을 산출하였다. 실험결과 일축압축강도와 파쇄율이 쇄석의 내부마찰각에 가장 결정적인 영향을 미치며, 파괴시 다일러턴시도 연관성이 높은 것으로 밝혀졌다.

다양한 석션 레벨에서의 불포화실트의 삼축압축거동에 관한 실험적 연구 (Experimental Study on the Triaxial Compressive Behaviour of Unsaturated Compacted Silt under Various Suction Levels)

  • 김영석;오카 후사오
    • 한국지반공학회논문집
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    • 제24권1호
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    • pp.25-35
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    • 2008
  • 본 연구에서는 불포화토의 역학특성을 해명하기 위하여 4개의 횡변위 계측시스템(proximeter)을 이용하는 방법으로 포화 삼축시험기를 개량하여 불포화 삼축압축시험을 수행하였다. 등방응력조건하에서 다양한 석션을 작용시켜 압축 특성을 검토한 결과, 공시체의 초기 석션 보다 작은 석션을 작용시켰을 경우 흡수에 의한 체적압축(wetting collapse)이 발생함을 알았다. 또한 다양한 석션 레벨 및 구속압에서 삼축압축시험을 수행하여, 불포화토에 미치는 영향을 검토하였다. 그 결과, 초기 석션이 클수록 동일 축변형률에 대한 전단강도가 커지고 체적변형률이 작게 나타났다. 그러나, 구속압에 의한 체적변형률 및 배수량의 변화는 작게 나타났으며, 구속압 보다는 초기 석션에 더 의존하고 있다는 사실을 알았다.

레디믹스트 숏크리트의 적정 골재최대치수 제안을 위한 기초적 연구 (A Fundamental Study for Proper Maximum Size of Coarse Aggregate of Ready-mixed Shotcrete)

  • 마상준;최희섭;김동민
    • 한국지반공학회논문집
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    • 제24권4호
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    • pp.47-55
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    • 2008
  • 골계최대치수 및 골재의 품질상태 등이 숏크리트에 미치는 역학적 영향성을 실내실험과 현장실험을 통해 평가하였다. 실험결과 골계최대치수가 13mm에서 8mm로 작아질수록 유동 특성은 감소되었으나, 경화 콘크리트의 강도 및 동탄성계수는 크게 증가하였으며, 이러한 결과를 토대로 골재최대치수 8mm인 경우가 10, 13mm인 경우보다 유동성, 시공성 및 내구성이 더욱 우수할 것으로 판단된다. 따라서 숏크리트 품질개선과 재료분리 최소화를 위해 본 연구에서 개발하고자 하는 레디믹스트 숏크리트의 적정 골재최대치수는 공장생산방식을 통해 정제된 8mm 골계를 적용하는 것이 바람직하다고 판단된다.