• 제목/요약/키워드: deformation rigidity

검색결과 139건 처리시간 0.029초

전면벽체의 강성이 Soil Nailing 시스템의 전체안정성에 미치는 영향 (Influence of Facing Stiffness on Global Stability of Soil Nailing Systems)

  • 김홍택;강인규;권영호
    • 한국지반환경공학회 논문집
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    • 제5권3호
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    • pp.51-60
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    • 2004
  • Soil Nailing 공법은 국내의 경우 1993년 처음으로 적용된 이후 최근에는 가시설용에서 영구용으로 확대되어 적용되고 있다. Soil Nailing 공법에 있어서 강성 전면벽체는 지반의 변형을 억제하는 역할을 하며, 인접한 건물 또는 지하구조물 등의 손상을 최소화 하기 위한 목적으로 사용되고 있다. 국내의 경우 도심지에 적용되고 있는 Soil Nailing 벽체는 지반의 이완을 최소화하기 위해 H-Pile+토류판, 쉬트파일, SCW 및 JSP 등의 흙막이 벽체와 함께 종종 사용되고 있다. 그러나 전면벽체의 강성을 고려하기 위한 적당한 설계방법에 대한 제시가 없는 실정이어서 안전측에서 벽체의 강성에 의한 구속효과를 무시하여 왔다. 본 연구에서는 Soil Nailing 벽체의 전체 안정성에 벽체의 강성이 미치는 영향을 알아보기 위해 다양한 실내모형실험이 수행되었으며, 전단강도감소기법과 같은 수치해석기법을 이용한 매개변수변화연구도 시도되었다. 매개변수변화연구에서는 전면벽체의 강성의 영향을 알아보기 위해 콘크리트 전면벽체의 두께를 변화시켰다.

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A Study on the Properties of Silk and Nylon 6 Fabrics by Tannic Acid Treatment

  • Yoa, Soojin;Kim, Jongjun
    • 패션비즈니스
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    • 제20권3호
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    • pp.119-132
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    • 2016
  • Weighting of silk fabrics have long been practiced in silk fabric trading based on the primary consideration of price-weight, and secondary one of quality improvement in handle, luster, and drape properties. Recent trend of practicing weighting of silk fabrics is, however, focused on the improvement of the handle, luster, drape, and other properties. During the finishing processes of synthetic fiber, nylon, comprising amide structure, include the use of tannic acid, especially in the dyeing. A multitude of studies are being implemented in terms of improving fastness to washing, fastness to light of dyed nylon product, or the light fastness of nylon 6 itself. In this study, the effects of various tannic acid treatments on the physical properties related to the handle of nylon 6 and silk fabrics are examined and reviewed. The effects of treatment condition of the tannic acid, e.g., the concentration of the aqueous tannic acid solution, treatment time, and temperature were investigated. As the concentration of the aqueous solution of tannic acid increased, the bending rigidity values of the silk and nylon 6 fabrics increased. The treated fabrics felt stiff to the touch. Within the mild conditions of bending employed in the bending measurement of KES, nylon 6 treated fabric specimen exhibited a trend of improvement of bending resiliency within the range of small bending deformation. The weight of treated fabrics have all increased. The air-permeability values decreased as the treatment concentration increased. However, the decrease tendency of air permeability values may be alleviated by adjusting the fabric count during the tentering or expanding processes, either by tension adjustment or heat treatment. Optimum conditions of the treatment for nylon 6 are 1.25% tannic acid concentration, bath temperature of $85^{\circ}C$, pH 3.1, and those for silk fabric treatment are 1.25% tannic acid concentration, bath temperature of $85^{\circ}C$, pH 3.1. The treatment conditions will lead to the improvement in the properties of fabrics for summer.

Static impedance functions for monopiles supporting offshore wind turbines in nonhomogeneous soils-emphasis on soil/monopile interface characteristics

  • Abed, Younes;Bouzid, Djillali Amar;Bhattacharya, Subhamoy;Aissa, Mohammed H.
    • Earthquakes and Structures
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    • 제10권5호
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    • pp.1143-1179
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    • 2016
  • Offshore wind turbines are considered as a fundamental part to develop substantial, alternative energy sources. In this highly flexible structures, monopiles are usually used as support foundations. Since the monopiles are large diameter (3.5 to 7 m) deep foundations, they result in extremely stiff short monopiles where the slenderness (length to diameter) may range between 5 and 10. Consequently, their elastic deformation patterns under lateral loading differ from those of small diameter monopiles usually employed for supporting structures in offshore oil and gas industry. For this reason, design recommendations (API and DNV) are not appropriate for designing foundations for offshore wind turbine structures as they have been established on the basis of full-scale load tests on long, slender and flexible piles. Furthermore, as these facilities are very sensitive to rotations and dynamic changes in the soil-pile system, the accurate prediction of monopile head displacement and rotation constitutes a design criterion of paramount importance. In this paper, the Fourier Series Aided Finite Element Method (FSAFEM) is employed for the determination of static impedance functions of monopiles for OWT subjected to horizontal force and/or to an overturning moment, where a non-homogeneous soil profile has been considered. On the basis of an extensive parametric study, and in order to address the problem of head stiffness of short monopiles, approximate analytical formulae are obtained for lateral stiffness $K_L$, rotational stiffness $K_R$ and cross coupling stiffness $K_{LR}$ for both rough and smooth interfaces. Theses expressions which depend only on the values of the monopile slenderness $L/D_p$ rather than the relative soil/monopile rigidity $E_p/E_s$ usually found in the offshore platforms designing codes (DNV code for example) have been incorporated in the expressions of the OWT natural frequency of four wind farm sites. Excellent agreement has been found between the computed and the measured natural frequencies.

Performance of innovative composite buckling-restrained fuse for concentrically braced frames under cyclic loading

  • Mohammadi, Masoud;Kafi, Mohammad A.;Kheyroddin, Ali;Ronagh, Hamid R.
    • Steel and Composite Structures
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    • 제36권2호
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    • pp.163-177
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    • 2020
  • Concentrically Braced Frames (CBFs) are commonly used in the construction of steel structures because of their ease of implementation, rigidity, low lateral displacement, and cost-effectiveness. However, the principal disadvantage of this kind of braced frame is the inability to provide deformation capacity (ductility) and buckling of bracing elements before yielding. This paper aims to present a novel Composite Buckling Restrained Fuse (CBRF) to be utilized as a bracing segment in concentrically braced frames that allows higher ductility and removes premature buckling. The proposed CBRF with relatively small dimensions is an enhancement on the Reduced Length Buckling Restrained Braces (RL-BRBs), consists of steel core and additional tensile elements embedded in a concrete encasement. Employing tensile elements in this composite fuse with a new configuration enhances the energy dissipation efficiency and removes the tensile strength limitations that exist in bracing elements that contain RL-BRBs. Here, the optimal length of the CBRF is computed by considering the anticipated strain demand and the low-cyclic fatigue life of the core under standard loading protocol. An experimental program is conducted to explore the seismic behavior of the suggested CBRF compare with an RL-BRB specimen under gradually increased cyclic loading. Moreover, Hysteretic responses of the specimens are evaluated to calculate the design parameters such as energy dissipation potential, strength adjustment factors, and equivalent viscous damping. The findings show that the suggested fuse possess a ductile behavior with high energy absorption and sufficient resistance and a reasonably stable hysteresis response under compression and tension.

피라미드형 내부구조재를 가지는 중공형 접합판재의 성형특성에 관한 연구 (A Study on the Forming Characteristic of Inner Pyramid Structure Bonded Sheet Metal)

  • 김지용;길해영;조기철;김종호;정완진
    • 한국소성가공학회:학술대회논문집
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    • 한국소성가공학회 2006년도 춘계학술대회 논문집
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    • pp.295-299
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    • 2006
  • The inner-structure bonded(ISB) sheet metal is defined as a composite sheet metal which has middle layer of truss-structure between two skin sheets. The characteristics such as ultra-light weight, high rigidity, high strength, etc are required especially for automobile parts. The characteristic of ISB sheet metal depends on inner-structure pattern or method of bonding. Pyramid type of crimped expanded metal is used for inner-structure and both of resistance welding and adhesive bonding are applied to make a specimen. As a result of compression test, it is appeared that forming limit is 10% reduction in thickness under a load of 8kgf per unit element(one inner-structure). In case of uniaxial tensile test the non-uniform surface integrity rather than the buckling of inner-structure happened at a load of 450kgf, which indicates elongation of 7.2% and thickness reduction of 13%. The eye-inspection method was applied to examine the defects occurring on the specimen during stretch forming. In case of biaxial stretch forming only the non-uniform deformation on the surface of a skin sheet could be observed. The forming limit in stretching of ISB sheet metal with the hemi-spherical punch of 150mm in diameter was 3mm in forming depth and 5% reduction in thickness.

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Seismic response of 3D steel buildings with hybrid connections: PRC and FRC

  • Reyes-Salazar, Alfredo;Cervantes-Lugo, Jesus Alberto;Barraza, Arturo Lopez;Bojorquez, Eden;Bojorquez, Juan
    • Steel and Composite Structures
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    • 제22권1호
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    • pp.113-139
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    • 2016
  • The nonlinear seismic responses of steel buildings with perimeter moment resisting frames (PMRF) and interior gravity frames (IGF) are estimated, modeling the interior connections first as perfectly pinned (PPC), and then as partially restrained (PRC). Two 3D steel building models, twenty strong motions and three levels of the PRC rigidity, which are represented by the Richard Model and the Beam Line Theory, are considered. The RUAUMOKO Computer Program is used for the required time history nonlinear dynamic analysis. The responses can be significantly reduced when interior connections are considered as PRC, confirming what observed in experimental investigations. The reduction significantly varies with the strong motion, story, model, structural deformation, response parameter, and location of the structural element. The reduction is larger for global than for local response parameters; average reductions larger than 30% are observed for shears and displacements while they are about 20% for bending moments. The reduction is much larger for medium- than for low-rise buildings indicating a considerable influence of the structural complexity. It can be concluded that, the effect of the dissipated energy at PRC should not be neglected. Even for connections with relative small stiffness, which are usually idealized as PPC, the reduction can be significant. Thus, PRC can be used at IGF of steel buildings with PMRF to get more economical construction, to reduce the seismic response and to make steel building more seismic load tolerant. Much more research is needed to consider other aspects of the problem to reach more general conclusions.

제한성 피부병증(Restrictive Dermopathy) 1례 (A case of restrictive dermopathy)

  • 이승익;홍창희;정윤하;강미선;신종범
    • Clinical and Experimental Pediatrics
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    • 제50권3호
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    • pp.306-310
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    • 2007
  • 제한성 피부병증(Restrictive dermopathy)은 상염색체 열성으로 유전되는, 매우 드문 유전성 피부질환으로, 1986년 처음 기술되었다. 임상증상으로는 피부가 강직성, 긴장성병변을 보이며, 이로인해 운동의 제한, 관절의 구축 등이 생긴다. 매우 작고 둥근 입 모양, 양안격리, 소하악증 등을 동반한 특징적인 얼굴기형과 폐저형성증, 커다란 대천문, 쇄골의 이형성 등을 동반하기도 한다. 정확한 병인은 알려져 있지 않으며, 지금까지 50례 정도 보고되고 있으나, 국내에는 아직 보고가 없다. 저자들은 이 환아와 똑같은 외형의 사산아를 출산한 경력이 있는 산모에서, 제태연령 31주에, 출생체중 1.1 kg로 태아곤란증 때문에 제왕절개로 출생한 미숙아가 출생 직후부터 호흡곤란과 청색증을 보였고, 작은 입 모양에 소하악증과 얇고 경직된 피부와 사지 관절의 구축성 변형 등을 보였으며, 체간과 사지의 일부에 피부가 벗겨져 나간 소견을 나타내어, 피부조직검사 결과 상피조직의 비후성 미란, 얇은 진피층, 피부부속기관의 미발달소견, 탄성섬유의 현저한 감소가 관찰되는 전형적인 제한성 피부병증 1례를 경험하였기에 보고하는 바이다.

PTT[Poly(trimethylene terephthalate)] 직물(織物)의 물리적(物理的) 특성(特性)및 주관적(主觀的) 평가(評價)에 관(關)한 연구(硏究) (A Study on the Physical Properties and Subjective Evaluation of the PTT[Poly(trimethylene terephthalate)] Fabric)

  • 서효정;김종준;전동원
    • 패션비즈니스
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    • 제7권4호
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    • pp.121-128
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    • 2003
  • A new textile material, poly(trimethylene terephthalate) polymer, has been introduced to the textile industry. The structure of PTT is similar to the PET, while the tensile deformation and subsequent recovery property is better than that of PET. In this study, the physical and mechanical properties of textile woven fabrics made of PTT, PET, and nylon 6 yarns as the filling yarn were determined using the Kawabata Evaluation System (KES), including tensile, bending, shearing, compression, and surface related parameters. On top of these measurements, the subjective ratings by evaluators were performed on the fabric samples. From the examination of the stress-strain behavior of the yarn specimens focused on the recovery mode, it was evident that the PTT specimen developed lower stress at 3% elongation. The subsequent recovery curve showed that the PTT has less stress-decay rate than the other specimens, implying that the recovery behavior of the PTT is recommendable for the end-uses including stretchable textile materials, sports wears, etc. The KES bending rigidity(B) value of the PTT sample fabric was lower than that of the PET sample fabric. Subjective evaluation of the fabric samples by the evaluators on the descriptive word pair "soft - not soft" showed similar tendency with the KES B determination of the fabric samples.

패션소재의 입체적 표현에 대한 3D Scanning 및 소재특성 분석 연구 -Iris van Herpen의 작품을 중심으로- (A Study on the Three-dimensional Expression of Fashionable Textiles based on Analyses of 3D Scanning and Textile Properties -Focus on the Work of Iris van Herpen-)

  • 이레아;김종준
    • 패션비즈니스
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    • 제20권2호
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    • pp.124-133
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    • 2016
  • Currently the fashion industry is developing to create a novel culture due to the very sensitive and knowledge-oriented advancement of the IT industry. With fast turnover of information, consumers have come to have a more diverse desire for purchasing. Cubical expression techniques, which empathizes formativeness, can be a creative expression method adjusting into the trend of this era. Along with functional aspects of consumers, even in a textile manufacturing sector, new materials are required to meet sensitive and emotional aspects. Consumers' desire for new and creative designs and the development and adoption of new materials are essential to meet their emotions. The IT industry and fashion industry are forced to combine and a 3D apparel CAD system has been developed, enabling virtual clothing to be represented within a computer virtual space. All processes such as design, pattern creation, sewing and simulation are possible in 3D level. Digital clothing can shorten the production process time and is very effective in that it can reduce clothing waste generated during the sample production. This paper reviewed the works of Dutch designer, Iris van Herpen, who has developed formative designs. She tries to build, construct, and sculpt employing diversified materials other than soft textile materials, as shown in her series of fashion shows. The materials include films, 3D printed polymers, stiff and sheer organza, and artificial leather textiles. A few characteristics of her works have been selected in order to prepare patterns exhibiting the traits. The paper further focused on the physical features of the textile materials used to express similar techniques and its various forms were reviewed.

현장평판재하시험에 의한 현장타설형 팽이말뚝기초의 지지력산정 (Estimation of Bearing Capacity for In-Situ Top-Base Method by Field Experimental Plate Load Test)

  • 신은철;안민희
    • 한국지반신소재학회논문집
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    • 제10권1호
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    • pp.1-8
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    • 2011
  • 연약지반상에 구조물을 축조하게 되면 지반의 지지력 부족, 과대침하량 및 측방변형과 같은 문제점이 발생한다. 팽이말뚝기초공법은 지지력이 다소 부족한 지반에 팽이형 콘크리트 파일을 연약지반기초에 사용하여 지지력 증가와 침하억제, 부등침하방지 등의 효과를 도모하는 연약지반 표면 처리용 강성매트공법이며, 공사비 절감 등의 경제적인 효과와 공사기간 단축, 공사 중 소음 등으로 인한 민원 차단 등의 시공에 따른 편의성을 확보할 수 있다. 따라서 본 연구에서는 현장평판재하시험을 통하여 연약지반상의 현장타설형 팽이말뚝기초의 지지력을 산출하였다. 평판재하시험 분석결과를 통해 기존 연구 및 설계에서 적용하고 있는 제안식과 비교분석하여 현장타설형 팽이말뚝기초를 기초지반에 적용할 시 기초의 합리적인 범위를 산정하여 향후의 설계에 그 결과를 활용하고자 한다.