• 제목/요약/키워드: Frictional reinforcement

검색결과 32건 처리시간 0.021초

신장성 지오그리드 보강재의 포설길이에 따른 인발정수 (Pullout Parameter According to the Length of Spreading of Extensible Geogrid Reinforcement)

  • 박종범;주재우;나현호
    • 한국지반신소재학회논문집
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    • 제16권4호
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    • pp.241-249
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    • 2017
  • 보강토 구조물에서 흙과 보강재 상호작용은 접촉면 마찰저항 또는 보강재 인발저항에 의해 발생되며, 신장성 지오그리드 보강재의 인발정수를 측정하기 위하여 일반적으로 인발시험을 실시한다. 인발시험시 인발정수에 영향을 미치는 요소는 뒷채움재의 밀도, 보강재의 형상, 토피하중, 보강재의 포설길이 등이 있다. 본 연구에서는 인발시험시 합리적인 인발정수 산정을 위한 신장성 보강재의 포설길이를 제안하고자 인발시험을 실시하였으며, 보강재 포설길이는 각각 32cm, 52cm, 72cm, 100cm로 선정하였다. 인발시험결과 보강재 포설길이에 따른 인발정수의 영향을 분석하였으며, 인발시험에서 흙과 보강재사이의 마찰저항은 보강재 포설길이가 증가할수록 증가함을 확인하였다.

Strength Demand of Hysteretic Energy Dissipating Devices Alternative to Coupling Beams in High-Rise Buildings

  • Choi, Kyung-Suk;Kim, Hyung-Joon
    • 국제초고층학회논문집
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    • 제3권2호
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    • pp.107-120
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    • 2014
  • A Reinforced concrete (RC) shear wall system with coupling beams has been known as one of the most promising structural systems for high-rise buildings. However, significantly large flexural and/or shear stress demands induced in the coupling beams require special reinforcement details to avoid their undesirable brittle failure. In order to solve this problem, one of promising candidates is frictional hysteretic energy dissipating devices (HEDDs) as an alternative to the coupling beams. The introduction of frictional HEDDs into a RC shear wall system increases energy dissipation capacity and maintains the frame action after their yielding. This paper investigates the strength demands (specifically yield strength levels) with a maximum allowable ductility of frictional HEDDs based on comparative non-linear time-history analyses of a prototype RC shear wall system with traditional RC coupling beams and frictional HEDDs. Analysis results show that the RC shear wall systems coupled by frictional HEDDs with more than 50% yield strength of the RC coupling beams present better seismic performance compared to the RC shear wall systems with traditional RC coupling beams. This is due to the increased seismic energy dissipation capacity of the frictional HEDD. Also, it is found from the analysis results that the maximum allowable ductility demand of a frictional HEDD should increase as its yield strength decreases.

지지부재로 이형철근을 설치하는 띠형 강보강재의 인발성능 평가 (The Evaluation for Pullout Performance of Steel Strip Reinforcements with Deformed-Bars as Transverse Members)

  • 정성규;김주형;조삼덕;이광우
    • 한국지반신소재학회논문집
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    • 제12권4호
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    • pp.77-86
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    • 2013
  • 본 연구에서는 지지부재가 설치된 띠형 강보강재에 대한 실내인발시험을 수행하였다. 주문진 표준사를 사용하여 상대밀도 80%인 모형지반을 조성하였고, 지지부재의 개수를 0~2개로 구분하여 실내인발시험을 수행하였다. 상재압은 $50kN/m^2{\sim}200kN/m^2$까지 4단계로 구분하여 적용하였고, 1mm/min 속도로 강보강재를 인발하였다. 표면이 매끄러운 띠형 강보강재의 인발저항력은 보강재 표면과 지반 사이에서 마찰저항만 발현되기 때문에 인발 초기에 급격히 증가하다가 지속적으로 감소하는 경향을 나타낸다. 반면, 지지부재를 설치한 강보강재의 인발저항력은 마찰저항뿐만 아니라 수동저항도 함께 발현되므로 계속적으로 증가하는 것으로 나타났다. 보강재의 형태에 관계없이 최대인발저항은 상재압이 증가함에 따라 선형적으로 증가하는 것으로 나타났다. 지지부재를 1개 설치한 경우에 비해 지지부재를 2개 설치했을 때의 최대수동저항은 작게 나타났다. 이는 지지부재의 설치 간격 및 위치에 따라 지지부재에서 발현되는 수동저항의 크기가 다르기 때문에 나타나는 현상으로 판단되며, 지지부재 설치 위치 및 간격에 따른 추가 인발시험을 통해 확인할 필요가 있다.

흙의 다짐도에 따른 인발저항특성 연구 (Pullout Resistance of Geogrid Reinforced Soil according to Compaction Degree)

  • 주재우;김병욱;박종범
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 1999년도 토목섬유 학술발표회 논문집
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    • pp.11-20
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    • 1999
  • The method which makes the soft ground reinforced by using the geogrid, a kind of geosynthetics has been getting popular and its usefulness also has been increased due to reduction in costs, ease of construction and great exterior view, But the study on the frictional characteristics, which is the important factor in design, between reinforcement and soil is insufficient. In this study, compaction degrees were considered through large-scale pullout tests. As a part of studying on estimation of pullout frictional characteristics between soil and geosynthetics, pullout tests were peformed and from the result of pullout tests, pullout frictional parameters between soil and geosynthetics were obtained and pullout behaviors were learned.

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마찰용접을 이용한 고강도 쇼크업소버 베이스 어셈블리의 제조 기술 개발 (Development of a High Strength Manufacturing Technology for the Shock Absorber Base Assembly Using Friction Welding)

  • 정호연
    • 산업경영시스템학회지
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    • 제34권1호
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    • pp.90-96
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    • 2011
  • The shock absorber base assembly is one of the parts in the shock absorber equipment that controls the vehicle movement. It absorbs the shock and vibration to guarantee riding stability and comfort. It demands strength, reliability and strict airtightness of the welded section because the shock absorber base assembly is a container which resists pressure and needs durability by being filled with gas and oil. However, the current engineering needs a lot of production time, has a high cost and shows a low production rate. These problem due to the eight production processes, four of which are spot welding, reinforcement welding like metal active welding (MAG), prior process of the base assembly cap and tube for precision and pressing. We will analyze the manufacturing processes of the base assembly and suggest an improved manufacturing method that uses frictional welding. The results will show that the new method of the frictional welding is better than the previous welding technique. Through the use of this concept of frictional welding, the welding conjunction will be strengthened, measurements will be more precise, and the cost and the number of processes will be reduced.

마이크로파일의 하중전이특성 및 지지성능 분석 (Load transfer characteristics and bearing capacity of micropiles)

  • 구정민;최창호;조삼덕;이기환
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2009년도 세계 도시지반공학 심포지엄
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    • pp.899-904
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    • 2009
  • This paper presents the analysis result of load-transfer mechanism and pile movements associated with the development of frictional resistance to understand the engineering characteristics of micropile behavior. An field load tests were performed for two different types of micropiles and they are (i) thread bar reinforcement with D=50mm and (ii) hollow steel pipe reinforcement with $D_{out}$=82.5mm and $D_{in}$=60.5mm and wrapped with woven geotextile for post-grouting. The load test results indicated that micropiling with pressured grouting provided better load-transfer characteristics than micropiling with gravity grouting under both compressive and tensile loading conditions in that unit skin frictional resistance is well distributed along installation depth. The unit weight and unconfined compressive strength of cured grout were obtained for each piling method. The strength and unit weight of micropile with pressured grouting was higher than those with gravity grouting. The fact that load bearing quality with pressured grouting is better than that of gravity grouting could be attributed to the dense mutual adhesion between surrounding ground and pile due to pressurized grouting method and better grout quality.

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Field behaviour geotextile reinforced sand column

  • Tandel, Yogendra K.;Solanki, Chandresh H.;Desai, Atul K.
    • Geomechanics and Engineering
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    • 제6권2호
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    • pp.195-211
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    • 2014
  • Stone columns (or granular column) have been used to increase the load carrying capacity and accelerating consolidation of soft soil. Recently, the geosynthetic reinforced stone column technique has been developed to improve the load carrying capacity of the stone column. In addition, reinforcement prevents the lateral squeezing of stone in to surrounding soft soil, helps in easy formation of stone column, preserve frictional properties of aggregate and drainage function of the stone column. This paper investigates the improvement of load carrying capacity of isolated ordinary and geotextile reinforced sand column through field load tests. Tests were performed with different reinforcement stiffness, diameter of sand column and reinforcement length. The results of field load test indicated an improved load carrying capacity of geotextile reinforced sand column over ordinary sand column. The increase in load carrying capacity depends upon the sand column diameter, stiffness of reinforcement and reinforcement length. Also, the partial reinforcement length about two to four time's sand column diameter from the top of the column was found to significant effect on the performance of sand column.

마찰돌기를 부착한 지오그리드의 인발특성 평가 (Pullout Characteristics of Geogrid with Attached Passive Reinforcement)

  • 문홍득;유철호
    • 한국지반환경공학회 논문집
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    • 제15권11호
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    • pp.43-51
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    • 2014
  • 본 연구에서는 실트함유율과 상재하중에 따른 보강재(지오그리드)의 인발저항력의 변화를 알아보기 위하여 실트함유율이 각각 0 %, 17 %, 35 %, 수직하중이 각각 30 kPa, 60 kPa, 120 kPa인 형태로 그리드를 무보강과 마찰돌기 형태로 변화를 주어 인발시험을 시행하였다. 인발시험결과 일반 지오그리드의 경우 실트함유율이 증가하면 인발저항력이 감소되지만 마찰돌기를 부착한 그리드의 경우는 동일조건에서 약 20 %의 증가를 보이는 것으로 확인되었고, 상호작용계수는 실트함유량에 따라 0.7~1.6의 분포를 보였다. 이러한 결과를 바탕으로 낮은 수직하중상태에서 보강토옹벽의 설계 시 마찰돌기 부착형 보강재는 뒷채움재료 특성에 따라 사용 길이를 감소시킬 수 있을 것으로 평가되었다.

지오그리드 보강재의 인발거동특성 예측기법 (Prediction of Pullout Behavior Characteristics on the Geogrid)

  • 김홍택;박사원;김경모
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 1999년도 토목섬유 학술발표회 논문집
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    • pp.1-10
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    • 1999
  • In the present study, laboratory pull-out tests with various geogrid shapes are carried out to investigate behavior characteristics of the geogrid. Also, an interface pullout formula is proposed for predicting and interpreting pullout test result. The analytical model is based on the assumption that the reinforcement is linear elastic during the pullout test. And then, maximum pullout force, frictional resistance and active length for each of the grid density ratio are predicted based on the interface pullout formula. The predicted results were compared with those of pullout tests, and showed in general good agreements.

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보강토 공법 (Reinforced Earth Structures)

  • 이은수
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2001년도 가을 학술발표회 논문집
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    • pp.301-313
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    • 2001
  • Reinforced earth is a composite construction material in which the strength of engineering fill is enhanced by the addition of strong tensile reinforcement in variable types. The basic mechanism of reinforced earth involves the generation of frictional forces and bearing resistances between the soil and the reinforcement. The primitive structure of reinforced earth in Korean peninsula were found as the earth wall built around the old fort In about 3rd century Modern reinforced earth was introduced to Korea early 1980, and spreaded tremendously through the nation. Among them, not a few reinforced earth walls which were built ignored over all stabilities have been collapsed. In this paper basic concepts, economic benefits, design considerations and future applicable trends of reinforced earth are reviewed in simple manners.

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