• Title/Summary/Keyword: Architectural Materials

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A Study on the Design Expression of Architectural Material Matter as Epidermal Concept (표피로서 건축 재료의 디자인 표현에 관한 연구)

  • Kim, So-Hee
    • Korean Institute of Interior Design Journal
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    • no.34
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    • pp.29-36
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    • 2002
  • Skin Architecture', which has been an important topic of architectural discourse in the recent past, is playing an even greater role in the design expression of architectural materials nowadays. The purpose of this study is to define the epidermal conception about material matter and to discover the various modes of visual effect in the use of architectural materials.Epidermal thought is expressed in different forms, ranging from a simple covering made up of materials of all kinds , removable or technological wrappings. Analyzing the recent experiments from the works of Bernard chumi, Herzog & de Meuron, Peter Zumthor, Gigon & Guyer , it can be argued that the skin is a good emotional approach in the design expression of architectural material matter as epidermal concept since the 1980's.

Prediction of VOCs Emissions from Multi-layers Materials (복합자재에서의 VOCs 방출량 예측에 관한 연구)

  • Yoon, Chang-Hyun;Kwon, Kyung-Woo;Park, Jun-Seok
    • Proceedings of the SAREK Conference
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    • 2005.11a
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    • pp.9-14
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    • 2005
  • The purpose of this study is to predict VOCs emission rates from multi-layers materials, which are composed of single-layer materials having various VOCs emission rates, by using effective diffusion coefficients of the single-layer materials. The study was consisted of two parts; the one is the prediction of VOCs emission rates from multi-layer materials through numerical methods. The other is the measurement of VOCs emissions rates of wall composite and floor composite in Mock-up rooms for comparing the prediction and the experiments' values. The results of the study show that the short-term VOCs emission rates of multi-layers materials can be predicted from the effective diffusion coefficients of single materials in odor accuracy.

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Regional characteristic and changes in time of repair of the materials of San-Ja used in the roof of wooden architectural cultural heritage since the 1980 (1980년 이후 목조 건축문화재 지붕부에 사용된 산자 재료의 지역별 특성 및 수리 시기별 변화)

  • Park, Sae-mi;Chang, Hun-Duck;Kwon, Yang-hee
    • Journal of architectural history
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    • v.30 no.3
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    • pp.33-44
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    • 2021
  • San-ja is one of the main members consisting of the roof of traditional wooden buildings in Korea. In this study, the regional characteristics of the materials used in San-ja and changes of the materials over time were examined. To this end, 123 documents on the repair of wooden architectural heritage recorded since the 1950s were reviewed. It was found that there was a difference in the San-ja material by region because of the diversity in the conditions of material supply. For instance, bamboo was the most frequently used material in Jeollanam-do province because it was readily available. However, with the development of transportation and vehicle, the regional characteristics have disappeared. As a result, the material has been unified with bamboo now. This is because bamboo is specified as a representative material in the specification or the convenience of construction is prioritized. In addition, the social and economic conditions at the time of repair had an influence on the selection of the San-ja materials.

In-situ Application of Glossy Architectural Concrete (광택노출콘크리트의 현장 기술)

  • 정태웅;이현희;하재담;강창운
    • Proceedings of the Korea Concrete Institute Conference
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    • 1999.04a
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    • pp.836-839
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    • 1999
  • Glossy architectural concrete means high qulity concrete which develops marble-like gloss on the surface of concrete. In spite of many benefits of architectural concrete to R.C. structure such as appearance of natural stone, saving of envelope materials and reduction of building weight, the failure of in-situ application of architectural concrete by the absence of knowledge on the physical properties and form work for it can often be found in Korea. This study is to offer the basic materials on the mix proportion, vibrating, curing and treatment of concrete result from the mock up test and in-situ application of architectural concrete to embody high quality architectural concrete in Korea.

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A Study on Interior & Exterior Finishing Materials by Architectural Usage of the Building (건축물 용도에 따른 내 외부 마감 재료의 사용에 관한 연구)

  • Kim So-Hee
    • Korean Institute of Interior Design Journal
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    • v.14 no.2 s.49
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    • pp.55-62
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    • 2005
  • In modern days when architectural materials have grave impacts on overall design expression, materials for architecture, modern architecture into the service facility for business, education, religion, cultural assembly and residence, and evaluates each finishing material mainly used in exterior, lobbies and entrances of the building since the 1970's. When being applied social images into firstly selected materials, the scopes for material selection will be more narrowed down in more practical way. High tensity materials are suitable for public and active space and low tensity are for private and static area. This principle enables us to use architectural materials as one of the important elements which express the whole characteristics of the area.

Fire Resistant Performance after Application of Repaired Materials for Fire-Damaged Reinforced Concrete Column (화재피해를 입은 철근콘크리트 단주시험체의 보수재료 적용 후 내화성능 평가)

  • Sim, Sang-Rak;Ryu, Dong-Woo
    • Journal of the Architectural Institute of Korea Structure & Construction
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    • v.36 no.5
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    • pp.147-154
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    • 2020
  • Currently, there are no specific repair methods for RC structures damaged by fire, and repair methods are applied when durability deteriorates due to aging. In addition, a number of recent studies have been reported that have conducted fire resistance assessment of the repair materials themselves, assuming exposure to high-temperature environments such as fires. However, researches that evaluate the fire resistance performance of the repair materials by applying existing repair materials to the actual fire damaged reinforced concrete structures are very rare. Therefore, in this study, a number of existing repair materials were applied to fire-damaged concrete column to compare and evaluate the fire resistance performance with the original cover concrete.

Effect of Cementitious Materials on Compressive Strength and Self-healing Properties of Cement Mortars Containing Chitosan-Based Polymer

  • Jae-In Lee;Chae-Young Kim;Joo-Ho Yoon;Se-Jin Choi
    • Architectural research
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    • v.25 no.3
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    • pp.53-59
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    • 2023
  • Concrete is widely used in the construction industry; however, it has the disadvantage of deteriorating durability due to cracks occurring because of climate change and shrinkage. In addition, when cement is used as a binder, CO2 emitted during the manu-facturing process accounts for ~8% of global CO2 emissions. In this study, ecofriendly cementitious materials such as blast furnace slag powder and fly ash (FA) were used as cement substitutes in the production of mortar containing a chitosan-based polymer (CP), and their fluidity, compressive strength, and self-healing performance were examined. The 28-day compressive strength of the control sample was ~32.4 MPa (the lowest for all tested samples), while that of the sample containing 5% CP and 20% FA was ~49.6 MPa (the highest for all tested samples) and ~53.1% higher than that of the control sample. Even at a healing age of 56 days, the control sample exhibited the lowest healing performance, whereas the samples containing CP (5%, 10%) and 20% FA demonstrated excellent healing performance. After 28 days, the decrease in crack size for the control sample was minimal; however, for the sample containing only cement and CP, a significant decrease in crack size was observed even after 28 days. This study confirmed that the appropriate use of CP and cementitious materials improves not only compressive strength but also the selfhealing performance of mortar.

A Study on the Charactertics of Ecological Architectural Space of Frei Otto (프라이 오토(Frei Otto)의 건축에 나타난 생태학적 공간특성에 관한 연구)

  • 최경실
    • Korean Institute of Interior Design Journal
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    • no.11
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    • pp.45-56
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    • 1997
  • In the process of modermization the problem of environment destruction has become a worldwide issue. And now this problem is a concern for all branches of science, including that of architectural desigv. This thesis tries to find the meaning of ecological architectural space, one that encreases the organic relationship, and communication, between architectrual space and urban environmental space, between human beings and architecture, and between human beings and their environment. As an example, we will take a look at the architectural space-design of Frei Otto, who offers diverse creative ecological architectural forms. His concept of architecture has the critical character when compared with the traditionan conventional concept of architecture. The ecological characteristics of his architectural spacedesign can be summarized as follows: The first characteristic is his ample use of natural objects in the architectural structure. An ample use of living things like trees and plants as well as of inanimate thing like water, wind as architectural elements enhances the functional efficiency of architecture. The second characteristic is its ecological architectural system, which saves energy faciliates ventilation by changing the position and direction of the building, by systematically applying the materials, and by efficiently arranging the inner space. The third characteristic is the dematerialization of architecture and the use of materials that are economical and appropriate for the circulation system of nature. The use of natural elements and recycling natural objects, makes it possible to reuse materials of the destroyed building. In short, the ecological architecture of Frei Otto, which shows the relation between human beings and architecture, presents diverse possibilities of the archtectural space as a complex natural system, which is more than a simple combination of separatge elements.

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Transparency Effects and Visual Lightness of Architectural Space Environment (건축 환경의 투명성 효과와 경량적 표현)

  • 김선영
    • Korean Institute of Interior Design Journal
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    • v.13 no.2
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    • pp.46-55
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    • 2004
  • While transparency in general refers to the structure that is optically luminant or pleasant in its lightness, it is often synonymous with the concept of "modernistic." The advancement in construction and design technologies and the development of new materials with versatility adds even further diversity to transparency in architectural expression. The purpose of this study is to analyze various conceptions about transparency effects by comparing diverse expressions of visual lightness effects in space design. For this, I categorize and exemplify visual lightness effects of space applied to transparent materials. I argue that by utilizing transparent materials, the perception of space as well as boundaries between exterior and interior can be profoundly transformed. Space that overlaps through transparent boundaries creates atmosphere which deepens the architectural space environments.ironments.

Effect of fiber geometry on the electromagnetic shielding performance of mortar

  • Kim, Young Jun;Yemam, Dinberu M.;Kim, Baek-Joong;Yi, Chongku
    • Computers and Concrete
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    • v.17 no.2
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    • pp.281-294
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    • 2016
  • The increased awareness of electromagnetic wave hazards has prompted studies on electromagnetic shielding using conductive materials in the construction industry. Previous studies have explored the effects of the types of conductive materials and their mix proportions on the electromagnetic shielding performance; however, there has been insufficient research on the effect of the geometry of the conductive materials on the electromagnetic shielding performance. Therefore, in this study, the dependence of the electromagnetic shielding performance on the cross-sectional geometry, diameter and length of fibers was investigated. The results showed that the electromagnetic shielding performance improved when the fiber length increased or the diameter decreased, but the effect of the cross-sectional geometry of the fibers was smaller than the effect of the fiber spacing factor.