• 제목/요약/키워드: finishing material

검색결과 665건 처리시간 0.027초

외벽 마감재료의 수직화재 확산 연구를 위한 실물화재 실험 (The Real Scale Fire Tests for Vertical Fire Spread Study of External Finishing Material)

  • 권오상;유용호;김흥열;김정현;민세홍
    • 한국화재소방학회논문지
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    • 제26권6호
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    • pp.85-91
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    • 2012
  • 건축물에서 화재 시 인명과 재산의 피해를 줄이기 위해서는 초기의 화염의 확산을 억제하는 것이 우선되어야 한다. 화염의 확산을 방지하기 위한 화재확산방지 대책은 일반적으로 방화구획에서의 구조부재의 내화 성능 확보, 마감재료의 연소 성능에 따른 사용 제한 등이 있다. 마감재료의 연소 성능 판단은 화염의 확산을 판단하기 위해 가장 기초적인 화재 안전 설계이지만 국내의 연소 시험은 시편 크기의 화재 시험 방법으로 연소 성능을 판단하고 있어 샌드위치패널 등과 같은 복합재료의 연소 성능을 판단하기에는 많은 제약을 가지고 있다. 특히 외벽 마감재료의 경우 내부 마감재료에 비해 드라이비트, 알루미늄복합패널, 메탈패널 등과 같은 다양한 복합재료 등이 사용되고 있기 때문에 본 연구에서는 외벽 마감재료의 국제시험규격인 ISO 13785-2 시험방법을 통해 외벽 마감재료의 실물 화재 실험을 통해 외벽 마감재료의 수직화재 확산 특성을 판단하고자 하였다.

대구광역시 아파트 저층부 석재 사용 실태 분석 (Analysis on Material Color and Use of Stone for the Lower-Parts of Apartment in Daegu)

  • 이예지;김소희
    • 한국실내디자인학회논문집
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    • 제27권1호
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    • pp.132-139
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    • 2018
  • The high-rise and high-density apartment complexes are built on a large scale and occupy a large portion of the city. The facade of the apartment has a great influence on the cityscape. In particular, the lower part of apartment design gives people to important impressions. For the harmonious landscape of the city, the color plan emphasizes its importance as an influential visual design element that forms the urban landscape. In specialized apartment design, especially finishing material on lower-parts of apartment which is recognized by pedestrian is more important planning factor. Also, finishing material which is one of the primary design elements is important for making the entire image about the building with color. Nowadays stone is mostly used for specialized design on lower-level in apartments. Stone makes luxurious image and harmonious landscape as a nature material. But when planning for design, only general stone graphic or pictures is used without specific plan, after construction, there is a big difference between a plan and the actual color and image. Thus based on exact understanding of stone, I analyzed current state of expression for stone which is used for lower-parts of apartments in Daegu. By this, the purpose of this study is to present detailed data to offer the basis for planning specialized design of lower-parts of apartment.

고속 가공을 이용한 금형의 효율적 생산 제 2 부: 사상 공정 및 가공 조건의 선정 (High Speed Machining Considering Efficient Manual Finishing Part II: Optimal Manual Finishing Process and Machining Condition)

  • 김민태;제성욱;이해성;주종남
    • 한국정밀공학회지
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    • 제23권12호
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    • pp.38-45
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    • 2006
  • In this work, optimal finish machining condition considering total time for mold or electrode manufacturing was investigated. First, manual finishing time according to the machining condition was analyzed for the work material. The effect of runout and phase shift of tool path on surface finish was also considered in those analyses. Secondly, optimal manual finishing processes were determined for various machining conditions. Finally, finish machining time and corresponding manual finishing time were taken into account for the estimation of the total time of manufacturing mold. Though small feed per tooth and pick feed reduced the manual finishing time, the finish machining time increased in such conditions. With a machining condition of feed per tooth of 0.2 mm and pick feed of 0.3 mm, the minimum total time of manufacturing mold was achieved in our machining condition.

고강력 직물의 열융착 라미네이팅을 통한 충격 완화용 에어쿠션 소재로의 적용 가능성 검토 연구 (Study on the Applicability of the Air Cushion Material for Impact Relief through Thermal Bonding of High Strength Fabrics)

  • 김지연;김훈민;민문홍
    • 한국염색가공학회지
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    • 제32권3호
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    • pp.176-183
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    • 2020
  • In order to study wearable air cushion materials capable of responding to massive impact in high-altitude fall situation, high tenacity woven fabrics were bonded by heat only depending on various type of thermoplastic films and then mechanical properties were measured. Tensile strength, elongation, and 100% modulus measurement results for 4 types of films show that TPU-2 has higher impact resistance and easier expansion than PET-1. After thermal bonding, the combination with the highest tensile strength was a material with a TPU-2 film for nylon and a PET-2 film for PET, so there was a difference by type of fabric. The tear strength of the bonded materials were increased compared to the fabric alone, which shows that durability against damage such as tearing can be obtained through film adhesion. All of the peel strengths exceeded the values required by automobile airbags by about 5 times, and the TPU-2 bonded fabric showed the highest value. The air permeability was 0 L/dm2 /min. For both the film and the bonded material, which means tightness between the fabric and the film through thermal bonding. It is expected to be applied as a wearable air cushion material by achieving a level of mechanical properties similar to or superior to that of automobile airbags through the method of bonding film and fabric by thermal bonding.

교회공간 예배실의 위치적 기능에 따른 마감재 적용 연구 (A Study on the Application of Finishing Materials According to the Locational Function of the Chapel in Church Space)

  • 여미;이창노
    • 한국실내디자인학회논문집
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    • 제24권1호
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    • pp.178-188
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    • 2015
  • This study has the main objective of being of help as a reference data for the application of the finishing materials when designing the interior of the chapel of the church space through analysis of the finishing materials against the chapels of church space which has complex function. As precedent studies for this, the composition of the function and concept of the church space was surveyed and the complex function of the church space was surveyed. The theoretical surveyed was performed according to the casual composition, behavior of the community and role and location of the duties of the church members. The case objects were 10 chapels constructed by 5 professional interior design companies. The content of the analysis was the finishing materials in the chapels and their application characteristics. The detailed considerations to be referred to when designing the interior of the chapels of church space in the future were proposed. The analysis result of the application of the finishing materials according to the locational function of the chapels of church space can be explained as follows. First, the platform area was the characteristic of applying finishing materials which induce visual immersion. As for the floor materials in the platform, in order to minimize the floor sound and vibration phenomenon occurring during movements, noise insulation and dust protection rubber sheet was place and on top of it the floor or the carpet was placed. Second, the Choir area had the difficult problem of having to consider the appropriate sound absorption occurring due to the proliferation of sound and performance of classical instruments at the same time. However, in the case, this problem was solved through the sculptures of convex shape. Third, since the scheelite is a space where many people move around, the finishing material which absorbs sound was mainly used. Fourth, the entrance area was composed of thick wall materials compared to other walls, and the sound absorption character was most significantly considered when applying the finishing material. Fifth, the broadcasting room was composed either in independent type or an open type and performed its function and the main finishing materials was transparent glass which was highest use frequency.

철도역사 승강장 연단부 마감 탈락에 대한 원인 분석 및 개선 방안 (Analysis of the Finishing Failure in the Railway Station Platform and Deduction of Improvement Plans)

  • 고세원;유영수;구본상;김지환
    • 한국건설관리학회논문집
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    • 제23권1호
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    • pp.46-53
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    • 2022
  • 철도 승강장은 승객, 열차 운행의 안전 및 철도 시설에 대한 이미지와 밀접한 관련이 있는 중요 시설물로 철저한 시설관리가 필요하다. 그러나 승강장 연단부에서 이질재료의 줄눈 마감을 위한 마감재가 선로방향으로 탈락하는 현상이 전국에서 다발적으로 발생하고 있어 열차 운행 안정성 및 이용객의 안전 확보를 위해 즉각적이고 지속적인 관리가 필요한 상황이다. 본 연구는 승강장 연단부에서 발생하는 마감재의 탈락 현상에 대한 분석을 통해 개선방안을 도출하고자 하였다. 이를 위해 200여 곳의 철도 역사 승강장 연단부에 대한 마감재 탈락 현황과 이와 관련된 국가철도공단의 설계·시공 기준이 조사되었다. 이후 해당 내용을 기반으로 마감재 탈락 원인이 분석되었으며 그 결과 주된 원인은 시공 중 발생하는 노반-건축 공정 간 경계인 것으로 도출되었다. 이후 도출된 원인과 설계 및 시공기준을 연계하여 (1)마감재료 또는 시공방법 개선, (2)높이 조절 용이한 마감재료, (3)별도 마감방법 고안, (4)마감재의 공정방법 및 내구성과 관련된 개선방안을 제시하였다.

감성기능 섬유신소재의 개발(II) -수용성 기능성물질 함유 폴리스티렌 마이크로캡슐의 제조와 섬유에의 응용- (Development of New Fibers Related Sensitivity and Comfortability -Preparation of Polystyrene microcapsules containing Aqueous material and their Application-)

  • Hong, Ki Jeong;Park, Soo Min
    • 한국염색가공학회지
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    • 제9권3호
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    • pp.33-41
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    • 1997
  • Polystyrene microcapsules were prepared by microencapsulation technique of solvent-evaporation. These microcapsules were characterized by Infrared spectroscopy, thermal analysis, scanning electron microscopy, and shape analysis. Fragrant water was used as a core material. Thermal and pH stabilities of polystyrene microcapsules were relatively excellent. And functional finishing on cotton fabric with microcapsules was applied.

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세리신 가공제에 의한 폴리에스터 직물의 친수화 가공 (Hydrophilic Finish of Polyester Fabrics using Sericin Finishing Agents)

  • 박인우;황계순;홍영기;배한수;배기서
    • 한국염색가공학회지
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    • 제21권1호
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    • pp.38-45
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    • 2009
  • First of all, the properties imparted to PET fabrics are resistance to and recovery from creasing or wrinkling when wet or dry; high resistance to stretch in the filament yarns but not in the staple; high abrasion resistance; good texture and appearance; resistance to heat ageing; good chemical resistance and good resistance, behind glass, to sunlight. But, the low moisture regain of PET fabric conduces to static troubles in textile processing. Furthermore, garments made from PET may, during wear, develop electric charges which attract to the fabric particles of soil(dirt, swarf, dust) flying in the air, so that the cuffs of shirts, for example, become soiled quickly and are not easily laundered clean. The sericin constitutes 25$\sim$30% of silk protein and surrounds the fibroin fiber with sticky layer that supports the formation of a cocoon. The useful biochemical properties of sericin protein are oxidation resistant, antibacterial, UV resistant, hydrophilic property, and good affinity with hydrophobic material. These properties can be used as an improving reagent or a coating agent for natural and synthetic fibers, fabrics, and other intermediate products. The sericin is also applied to cross-link, and can be blended with other materials. In this study, we modified the surface of PET fabric by mixture of sericin finishing agent; sericin, polyuretane binder and 1,2,3,4-butanetetracarboxylic acid (BTCA) cross-link agent. Also, we investigated the finshing effect; moisture regain, stiffness, handle, drape and electrostatic. The moisture regain of PET fabric treated with sericin finishing agent was higher than that of untreated PET fabric. As a result of evaluating influence about handle of PET fabrics treated with sericin finishing agent, it was confirmed that the sericin finishing agent could be use as a linen like finishing agent.

내화 마감재 종류에 따른 고성능 RC기둥의 폭열방지 및 온도이력 특성 (Properties of Temperature History and Spatting Resistance of High Performance RC Column with Finishing Material)

  • 허영선;김기훈;이진우;이보형;이재삼;한천구
    • 한국건축시공학회:학술대회논문집
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    • 한국건축시공학회 2005년도 춘계 학술기술논문발표대회 논문집
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    • pp.37-40
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    • 2005
  • High Performance Concrete(HPC) has been widely used in high-rise building. The HPC has several benefits including high strength, high fluidity and high durability. However. spatting is susceptible to occur in HPC and HPC also tends to be deteriorated in the side of fire resistance performance at fire. This paper focuses on the analysis of the temperature history and residual compressive strength with finishing material, in order to protect HPC from sudden-high-temperature, which is one of the main reason spatting occurs. Test results show that spalling occurs in all specimens. The most serious spalling took placed in HPC covering fire enduring spray-on material, whose covering thickness is 20mm but temperature history indicates that fire enduring spray effectively protected HPC from fire for more than 2hours. In addition, residual compressive strength ratio of HPC using fire enduring paint was more than $90\%$ of original strength, thus minimizing spatting and indicating significant fire resistance performance.

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