• 제목/요약/키워드: Bricks

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Travel of the Park G$\ddot{u}$ell in Spain Barcelona which were designed and made a construction by Antoni Gaudi, as a genius artist, and review the works of residential development-Park G$\ddot{u}$ell, and also bridge made by stone bricks in the compound (기행문 - 스페인에서 본 천재 예술가(藝術家) 가우디(Antoni Gaudi)가 설계.시공한 구엘공원(Park G$\ddot{u}$ell) 주거단지와 경내(境內)에 건설한 석조교량(石造橋梁)에 대한 소고(小考))

  • Jo, Gyu-Yeong
    • Journal of the Korea Construction Safety Engineering Association
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    • 통권55호
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    • pp.37-51
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    • 2012
  • There is a shround of mystery surronnding Gaudi. In all probability, the first mist preventing us from gaining acess to his work is the intrinstic mysteriousness of all genius and, at the end of the day, of all human spirit. The situation is complicated by the well-known fact that Gaudi wished to creat an aura of silence around his persona, while, at the same time as maintaining this secretiveneness - in other words, the annihiliation of his fundamental values-gave expression and symbolisation to his moods and incerdible mental power. On a piece of land on the Muntanya Pelada, in the Barcelona district of La Salut, Eusebi G$\ddot{u}$ell Wanted to build an urbanisation inspired by the concepe of the garden city. in this he sought to return to nature, health and an escape from the insalubrous industrial city. Gaudi worked on the construction of this park between 1900 and 1914, and even moved his home there in 1906. An outstanding feature of park G$\ddot{u}$ell is the integration of architecture with nature. In other to save the natural slopes, Gaudi built viaducts from brick pillars, which he covered with stone obtained from the excavation.

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The Process of Understanding Force As Used among Two Young Children in Rough-and-Tumble Play When Using Combative Objects (싸움도구를 사용하는 거친신체놀이에서 두 명의 유아들이 물리적 힘을 이해하는 과정)

  • Baik, Eunyoung
    • Korean Journal of Child Studies
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    • 제35권5호
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    • pp.63-82
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    • 2014
  • The purpose of this study is to elucidate how two young children understand force in rough-and-tumble play. For this purpose, a form of microanalysis(Forman, 2006) was used. They regarded black as the strongest color due to their daily experiences. They assumed that a structure made of black Lego-color-bricks would be strongest and made an experiment of beating it against blocks of other colors. Such repetitive behavior ultimately led them to realize that color had no correlation with strength. They also understood mechanical energy by which a boy's pushing power moves against an object. They tried to strike a bigger or protruding structure and understood that parts might be broken more easily by striking. This experience enabled the boys to realize the principle of resistance. That is to say, in the process of rough-and-tumble play, their misconceptions were gradually removed and they obtained scientific knowledge, including understanding of mechanical energy and the principle of resistance. This study found that two young children constructed knowledge together through the process of tool making and in contending for victory in rough-and-tumble play.

Numerical Design of Auto-Catalyst Substrate for Improved Conversion Performance Using Radially Variable Cell Density (변환효율 향상을 위한 횡방향 가변 셀밀도법을 사용한 자동차용 촉매변환기의 수치적 설계)

  • Jeong, Su-Jin;Kim, U-Seung
    • Transactions of the Korean Society of Mechanical Engineers B
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    • 제24권12호
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    • pp.1596-1607
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    • 2000
  • The optimal design of auto-catalyst needs a good compromise between the pressure drop and flow uniformity in the substrate. One of the effective methods to achieve this goal is to use the concept of radially variable cell density. But this method has not been examined its usefulness in terms of chemical behavior and conversion performance. In this work, two-dimensional performance prediction of catalyst coupled with turbulent reacting flow simulation has been used to evaluated the benefits of this method n the flow uniformity and conversion efficiency. The results showed that two cell combination of 93cpsc and 62 cpsc was the most effective for improved pressure drop and conversion efficiency due to balanced space velocity and efficient usage of geometric surface area of channels. It was also found that large temperature difference between the bricks in case that the edge of the frontal face of brick has too much lower cell density(less than 67% of cell density of the center of the brick). This study has also demonstrated that the present computational results show the better prediction accuracy in terms of CO, HC and NO conversion efficiencies compared to those of conventional 1-D adiabatic model by comparison with experimental results.

Fabrication of Lightweight Aggregates Using Fly Ash from Coal Burning Heat Power Plant (화력발전소 발생 플라이애쉬를 이용한 인공골재 제조)

  • Yoon Su-Jong
    • Journal of Powder Materials
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    • 제13권2호
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    • pp.102-107
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    • 2006
  • Recycling industrial wastes such as fly ash from a coal burning heat power plant and shell from an oyster farming were investigated to prevent environment contamination as well as to enhance the value of recycling materials. In this study, the lightweight aggregates and the red bricks were fabricated from fly ashes with other inorganic materials and wastes. The starting materials of the lightweight aggregate were fly ash powder and water glass, and the compacts of these materials were heat treated at $1100^{\circ}C$. The fabricated lightweight aggregates had low bulk density, $0.9-1.2\;g/cm^3$, hence floated on the water and had the strength of 7.0-11.0 MPa and the modulus of 2900-3300 MPa which indicates it has enough strength as the aggregate. Another type of the light weight aggregate was prepared from fly ashes, shell powders and clays. The bulk density, porosity, and compressive strength of these aggregates were $1.19-1.34\;g/cm^3,\;18.3{\sim}56.1%$ and 5-12 MPa, respectively. The addition of a small amount of fly ash powder prevented hydration of the light weight aggregates. The red brick was also fabricated from the fly ash containing materials. It is suitable for the brick facing of a building as it has moderate strength and low water absorption rate.

The analytical application for cement using X-Ray diffraction and X-Ray fluorescence spectrometer (X-Ray Diffraction과 X-Ray Fluorescence를 이용한 시멘트 비교 분석)

  • Jung, Ji Eun;Jang, Yu Rim;Kim, Ki-Wook;Heo, Sangcheol;Min, Ji-Sook
    • Analytical Science and Technology
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    • 제26권5호
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    • pp.340-351
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    • 2013
  • The chemical element and structural characterization of different types of cements and its brick stones are been investigated under forensic aspects using X-ray florescence (XRF) and X-ray diffraction (XRD) spectrometer. The XRF provides rapid compositional data for controlling almost all stages of raw materials, clinker and cement. The decisive advantage of XRD methods is based on the unique character of the diffraction patterns of crystalline substances, the ability to distinguish between elements and their oxides, and the possibility to identify chemical compounds, polymeric forms, and mixed crystals by non-destructive examination. Therefore, combination of these examinations is useful and able to apply for the forensic analysis in comparison of cements and brick stones. There are more study remained to determine the viability of method for forensic analysis of brick stones and the limits of the discrimination that can be achieved.

Earthquake behavior of M1 minaret of historical Sultan Ahmed Mosque (Blue Mosque)

  • Kocaturk, Turgut;Erdogan, Yildirim Serhat
    • Structural Engineering and Mechanics
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    • 제59권3호
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    • pp.539-558
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    • 2016
  • Minarets are almost the inevitable part of Mosques in Islam and according to some, from a philosophical point of view, today they symbolize the spiritual elevation of man towards God. Due to slenderness, minarets are susceptible to earthquakes and wind loads. They are mostly built in a masonry style by using cut limestone blocks or occasionally by using bricks. In this study, one minaret (M1 Minaret) of one of the charmest mosques of Turkey, Sultan Ahmed Mosque, popularly known as Blue Mosque, built between 1609 and 1616 on the order of Sultan Ahmed by the architect Mehmet Agha is investigated under some registered earthquake loads. According to historical records, a great earthquake hit Istanbul and/or its close proximity approximately every 250 years. Ottomans tackled with the problem of building earthquake resistant, slender minarets by starting to use forged iron connectors with lead as a filler to fix them to the upper and lower and to adjacent stones instead of using traditional mortar only. Thus, the discrete stones are able to transfer tensile forces in some sense. This study investigates the contribution of lead to the energy absorption capacity of the minaret under extensive earthquakes occurred in the region. By using the software ANSYS/LS-DYNA in modelling and investigating the minaret nonlinearly, it is found out that under very big recorded earthquakes, the connectors of vertical cast iron-lead mechanism play very important role and help to keep the structure safe.

Biomimetic Preparation of Boron Nitride /PMMA Composite (생체모방기술을 이용한 Boron Nitride /PMMA 복합체 제조)

  • Nam, Kyung Mok;Lee, Yoon Joo;Kim, Bo Yeon;Kwon, Woo Teck;Kim, Soo Ryong;Shin, Dong Geun;Kim, Young Hee
    • Journal of the Korean Ceramic Society
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    • 제51권2호
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    • pp.103-106
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    • 2014
  • Nacre is an organic-inorganic composite material; it is composed of $CaCO_3$ platelet and protein. The microstructure of nacre is a matrix that is similar to bricks and mortar. Technology inspired by nature is called biomimetic technology. In this study, to make high thermal conducting ceramic composite materials using biomimetic technology, a porous green body was prepared with BN platelets. PMMA was infiltrated into the porous green body to make a composite. The microstructure of the composite was observed with FESEM, and the thermal properties were measured. The thermal conductivity of the prepared organic-inorganic composite was 4.19 $W/m{\cdot}K$.

A Study on the Effect of Initial Strength of Cement Paste Containing Fly Ash or Blast Furnace Slag on CO2 Curing Period (플라이 애쉬 및 고로슬래그 혼입 시멘트 페이스트의 CO2 양생 기간에 따른 초기강도의 영향에 대한 연구)

  • Han, Jae-Do;Lee, Han-Seung
    • Proceedings of the Korean Institute of Building Construction Conference
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    • 한국건축시공학회 2018년도 추계 학술논문 발표대회
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    • pp.83-84
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    • 2018
  • As the concentration of greenhouse gases in the atmosphere increases, the reduction of CO2 is gaining worldwide attention. In the construction industry, cement replacement materials such as fly ash and blast furnace slag were investigated to reduce CO2 emissions in cement production process. Precast concrete is used in the field after manufacturing in the factory in the form of pipes and bricks because of shortening construction period and cutting construction cost. According to the results of previous research, it is known that early CO2 curing in concrete using OPC or fly ash has an initial strength enhancement effect and can be used for precast concrete production. Therefore, the purpose of this study is to evaluate the strength improvement effect by confirming the initial strength improvement effect when blast furnace slag is mixed.

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Assessment of recycled concrete aggregates as a pavement material

  • Jayakody, Shiran;Gallage, Chaminda;Kumar, Arun
    • Geomechanics and Engineering
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    • 제6권3호
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    • pp.235-248
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    • 2014
  • Population increase and economic developments can lead to construction as well as demolition of infrastructures such as buildings, bridges, roads, etc resulting in used concrete as a primary waste product. Recycling of waste concrete to obtain the recycled concrete aggregates (RCA) for base and/or sub-base materials in road construction is a foremost application to be promoted to gain economical and sustainability benefits. As the mortar, bricks, glass and reclaimed asphalt pavement (RAP) present as constituents in RCA, it exhibits inconsistent properties and performance. In this study, six different types of RCA samples were subjected classification tests such as particle size distribution, plasticity, compaction test, unconfined compressive strength (UCS) and California bearing ratio (CBR) tests. Results were compared with those of the standard road materials used in Queensland, Australia. It was found that material type 'RM1-100/RM3-0' and 'RM1-80/RM3-20' samples are in the margin of the minimum required specifications of base materials used for high volume unbound granular roads while others are lower than that the minimum requirement.

The Physical Properties of the Block Using Flame Resistant EPS Wastes (폐 난연성 EPS의 혼합조건에 따른 재생골재 블록의 물성에 관한 실험적 연구)

  • Cho, Kwang-Hyun;Kim, Ji-Hyun;Chung, Chul-Woo;Lee, Jae-Yong;Lee, Soo-Yong
    • Proceedings of the Korean Institute of Building Construction Conference
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    • 한국건축시공학회 2013년도 추계 학술논문 발표대회
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    • pp.152-153
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    • 2013
  • Based on the Fire Service Act of mandatory provision, new buildings are strictly forced to use fire protection materials. Flame resistant EPS is one of those materials. Unlike conventional EPS that can be fused to make EPS ingot and be recycled for various purposes, flame resistant EPS waste cannot be recycled due to the presence of protective coating that is applied to increase the fire protection properties of EPS. A suitable alternative that can process large amount of flame resistant EPS wastes needs to be developed, and one of the possible alternative is to use them as construction materials. In this research, experiments were designed to observe whether the flame resistant EPS wastes can be utilized as partial replacements of fine aggregates in cement mortar. The replacement ratio of waste EPS was varied, and its effect on compressive strength and absorption capacity was investigated. According to the experimental results, both compressive strength and absorption capacity met the Korean Standard specification for cement bricks and blocks, indicating that flame resistant EPS wastes can be used for construction purposes.

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