• 제목/요약/키워드: materials and workmanship

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중국(中國) 귀주성(貴州省) 묘족(苗族)의 복식에 관한 연구(I) - 검동남(黔東南)지역의 여성복식을 중심으로 - (A Study on Miao Traditional Costume of Guizhou Province in China (I) - Centering Around Women's Costume in Qiandongnan Autonomous Prefecture -)

  • 홍정민;김영신
    • 한국의류산업학회지
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    • 제3권1호
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    • pp.53-60
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    • 2001
  • The Miao nationality is one of China's major ethnic group. The Miao traditional costume, as an ideographic symbol of the Miao people, have preserved its unique characteristics up to the present time. Historically there were many old names given only for ciothings, still they have reflected the complexities of the ciothings of the Miao people. The southeast Guizhou (Qiandongnan) modal of dress and ornament are fashionable in countries in the valley of Qingshui River such as Taijiang, Kaili, Leishan, Jianhe, Huangping, Shibing, which are densely populated with the Miao nationality. Women's traditional wear for the most part consists of a short coat with straight sleeves and the left lapel of the collar overlaps the right one (In some areas, the right lapel overlaps the left one). For lower garments, they wear long or medium sized pleated skirts, broad waistbands and leggings. Their attire may be of the same style, but there exist marked regional differences and distinctive features in dress materials, workmanship, contents and variety of designs and colour matching, as evolved from tradition. Merely from the embroidering skill and the materials used, one can judge where the dress is made.

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Detection of flaw in steel anchor-concrete composite using high-frequency wave characteristics

  • Rao, Rajanikant;Sasmal, Saptarshi
    • Steel and Composite Structures
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    • 제31권4호
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    • pp.341-359
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    • 2019
  • Non-monolithic concrete structural connections are commonly used both in new constructions and retrofitted structures where anchors are used for connections. Often, flaws are present in anchor system due to poor workmanship and deterioration; and methods available to check the quality of the composite system afterward are very limited. In case of presence of flaw, load transfer mechanism inside the anchor system is severely disturbed, and the load carrying capacity drops drastically. This raises the question of safety of the entire structural system. The present study proposes a wave propagation technique to assess the integrity of the anchor system. A chemical anchor (embedded in concrete) composite system comprising of three materials viz., steel (anchor), polymer (adhesive) and concrete (base) is considered for carrying out the wave propagation studies. Piezoelectric transducers (PZTs) affixed to the anchor head is used for actuation and the PZTs affixed to the surrounding concrete surface of the concrete-anchor system are used for sensing the propagated wave through the anchor interface to concrete. Experimentally validated finite element model is used to investigate three types of composite chemical anchor systems. Studies on the influence of geometry, material properties of the medium and their distribution, and the flaw types on the wave signals are carried out. Temporal energy of through time domain differentiation is found as a promising technique for identifying the flaws in the multi-layered composite system. The present study shows a unique procedure for monitoring of inaccessible but crucial locations of structures by using wave signals without baseline information.

Lessons learned from recent destructive Van, Turkey earthquakes

  • Yon, Burak;Sayin, Erkut;Calayir, Yusuf;Ulucan, Zulfu Cinar;Karatas, Mehmet;Sahin, Humeyra;Alyamac, Kursat Esat;Bildik, Abdullah Tevfik
    • Earthquakes and Structures
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    • 제9권2호
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    • pp.431-453
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    • 2015
  • A destructive earthquake, the magnitude of this earthquake was 7.2, hit Van, Turkey on October 23, 2011. After this devastating earthquake, a moderate earthquake which had 5.7 magnitude on November 9, 2011 occurred in Edremit, Van. These earthquakes caused heavy damages and collapses in many reinforced concrete buildings with loss of lives. In this paper, characteristics of ground motions of these earthquakes were studied and, deficiencies in structural elements and engineering faults such as poor workmanship and quality of construction, soft and weak stories, strong beam-weak column, short column, large overhang, hammering and unconfined gable wall were investigated. According to the observations, it was seen that, low quality of structural materials, lack of engineering services, inappropriate design and construction with insufficient detailing of the structural elements were the main reasons of heavy damages.

FRP versus traditional strengthening on a typical mid-rise Turkish RC building

  • Smyrou, Eleni
    • Earthquakes and Structures
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    • 제9권5호
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    • pp.1069-1089
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    • 2015
  • This paper investigates the limits and efficacies of the Fiber Reinforced Polymer (FRP) material for strengthening mid-rise RC buildings against seismic actions. Turkey, the region of the highest seismic risk in Europe, is chosen as the case-study country, the building stock of which consists in its vast majority of mid-rise RC residential and/or commercial buildings. Strengthening with traditional methods is usually applied in most projects, as ordinary construction materials and no specialized workmanship are required. However, in cases of tight time constraints, architectural limitations, durability issues or higher demand for ductile performance, FRP material is often opted for since the most recent Turkish Earthquake Code allows engineers to employ this advanced-technology product to overcome issues of inadequate ductility or shear capacity of existing RC buildings. The paper compares strengthening of a characteristically typical mid-rise Turkish RC building by two methods, i.e., traditional column jacketing and FRP strengthening, evaluating their effectiveness with respect to the requirements of the Turkish Earthquake Code. The effect of FRP confinement is explicitly taken into account in the numerical model, unlike the common procedure followed according to which the demand on un-strengthened members is established and then mere section analyses are employed to meet the additional demands.

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.

Analysis of the Traditional Setting-up as an Application for Spatial Composition

  • NamGoong, Sun;Lee, Yu-Ri
    • 한국가구학회지
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    • 제21권3호
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    • pp.216-228
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    • 2010
  • Recently, there is a new issue, among the contemporary people, for new life style, such as green design and well being. This trend brought up the necessity that there should be alternatives for interior spatial design. In order to catch up with these new issues, the new convenient and environment friendly methods are in need. Space composition using setting-up is skill that can express both the structural aspect and esthetic because it represents traditional beauty into the contemporary age through the structural rigidity and formal beauty. Also the lumber, as main materials for setting up, is in line with well being life style and environment friendliness. The construction of structure by setting-up has advantages in terms of the reuse and the convenience in that the construction of structure is adjustable according to environment. And setting-up has enough plasticity not only because of its own role as linking the objects but also because of being framed by itself. Therefore setting-up will be a design element, if it is expressed outward. Thus, this study aims to give a guide line about how to apply the result from the evaluating that "what is the most suitable setting-up" and "what is the most suitable detail setting-up", based on that structural rigidity, decorativeness and the ease of works. As a result of evaluation, the most excellent types of setting-up in terms of structural rigidity are "Jangbu" and "Panjae" and "Yeongui". The most excellent types of setting-up in terms of decorativeness are "Panjae" and "Yeongui", and the most excellent type of the ease of work is "Mat". And also the most applicable detail setting-up for the utilization of spatial composition is proposed.

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공동주택 바닥미장 균열차단막의 메커니즘 분석 (An Analysis of the Mechanism of Crack Stop-bar for Floor Plastering of Apartment Buildings)

  • 송용식;이동훈;이성호;김선국
    • 한국건축시공학회지
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    • 제11권4호
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    • pp.333-344
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    • 2011
  • 최근 주택 건설은 양적으로 팽창하면서 신공법, 신소재의 개발로 품질에 많은 발전을 하고 있으나 공동주택 공사 중 방바닥 미장은 인력난과 공기단축을 해결하기 위해 기계화 시공을 함으로서 방바닥 미장의 크랙발생 및 들뜸 현상으로 인한 하자 발생으로 경제적, 시간적 낭비가 많다. 공동주택 바닥미장의 균열은 재료적인 측면에서 볼 때 사용재료의 구성과 시공정도, 양생, 보양방법에 따른 각 요인이 복합적으로 작용하여 발생된다. 그러나 재료적인 측면에서 위 요인들을 제어하여 균열을 부분적으로 억제할 수 있으나 근본적인 균열방지는 불가능하다. 균열의 발생을 억제하기 위해서는 바닥미장 균열의 발생원인과 균열 저감기술에 대한 논리적인 분석이 필요하다. 따라서 본 연구에서는 바닥미장 균열의 원인과 근본적인 억제를 위한 균열차단막의 메커니즘을 분석하고자 한다.

개성공단 근로자 기숙사 건립 계획 연구 (A Study of Establishing the Plan of Lodging for the Workers of Gaesung Industrial Complex)

  • 최상희;김두환;김상연;최은희
    • 토지주택연구
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    • 제6권2호
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    • pp.67-77
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    • 2015
  • 개성공단 2단계 사업착공 및 안정적 발전을 위해서 원활한 근로자 수급이 필요적인 상황으로, 본 연구에서는 2007년 남북 합의문을 바탕으로 개성공단내 근로자 숙소 건립을 위한 계획기준과 모델을 제안하고자 한다. 계획안은 근로자 복지, 경제적 효율성, 기술적 타당성, 합의가능성, 장기적인 발전성을 고려하여 계획기준 수립과 대안별 검토가 이루어졌다. 1인당 점유면적 산정을 위해 한국 근로기준법과 중국과 북한 접경지역에 공급되고 있는 근로자 숙소 현황 조사를 통해 1인당 전용면적을 산출하였으며, 6인 1실 공동화장실을 기본으로 하는 경제적 대안과 4인1실에 실안에 실내화장실을 설치하는 발전형의 두가지 대안을 비교 검토하였다. 후보지와 관련하여 기 합의되었던 동창리 일원중 경사도, 접근성, 개발용이성을 고려하여 최적입지의 구역을 설정하였으며, 기존 대지형상을 유지하면서 공급할 수 있는 후보지의 우선순위도 제안하였다. 건설공법은 북측 인력 숙련도, 자재 수급 여건을 고려하여 RC라멘조 공법이 최적화된 대안으로 설정하였으며, 15,000명 동시 수용에 따른 부대복리 및 편의시설 공급의 효율성을 고려하여 4~6개 단위를 기준으로 한 클러스터형 단지배치안을 제시하였다. 사업방식은 남북협력기금을 대출받아 개발사업자가 개발하고 수익자부담 원칙에 따라 임대료를 회수하는 유상임대 방식으로 총 사업비는 대안별로 차이가 있지만 약 800억~1,000억원 내외이며, 건설기간은 약 36개월 정도 소요될 것으로 예상된다. 근로자 숙소 입주 이후 운영관리를 위해 건설사업자가 운영관리 총괄, 요금징수, 기반시설 관리를 담당하고, 인적관리는 북측에 위임하는 이원화된 거버넌스인 가칭 개성공단 근로자숙소 운영위원회 설립을 제안하였다.