• Title/Summary/Keyword: 건자재

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Assessment of Defect Risks in Apartment Projects based on the Defect Classification Framework (효율적인 품질관리를 위한 공동주택 하자위험 분석)

  • Jang, Ho-Myun
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.20 no.11
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    • pp.510-519
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    • 2019
  • The aim of this study was to set a defect classification framework and evaluate the defect risks in apartment buildings For this, approximately 15,056 defect items for 133 apartment buildings were examined. As a result of the analysis, the major defect of the RC work was cracks, which were found mainly in public locations. Moreover, the RC work was found to exhibit a high defect risk of water problem and surface appearance, which are highly connected with cracks. Second, the finish work has a high defect risk because it is composed of various work types, and there are many kinds of materials and construction parts involved. Third, the major defects of the waterproof work were incorrect installation and missing tasks, which have high defect risks in the garage. This is because defects that require rework occur mainly in the underground garage. Based on these results, this study proposed countermeasures for defect risk management to be considered in the construction, handover, post-handover, and occupancy phases. These have been set in detail based on the three zones: low frequency high severity (LFHS), low frequency low severity (LFLS), and high frequency low severity (HFLS).

Suggestion for Integrated Process Quality Control for Facility Management of Smart City at Construction Stage (Smart City 시공단계 시설물 통합품질관리 프로세스 제안)

  • Park, In-Woo;Kim, In-Han;Choi, Jung-Sik
    • Journal of the Korea Institute of Building Construction
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    • v.16 no.6
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    • pp.535-544
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    • 2016
  • Korean government is promoting "K-Smart City" to overseas market which is an integrated solution of construction industry with ICT(Information and Communciations Technologies) industry. Due to nature of Smart City, construction quality and the development quality of the facilities need to be established to improve the overall quality. However, guidelines and regulations to initiate quality control for Smart City are behind the actual demand. This deficiency is bringing quality control for construction and ICT to be controlled separately causing lack of synergy and resulting in overall quality degradation. This research is designed to improve the construction quality of Smart City during its establishment stage by integrating ICT system with on-site construction (Integrated control center and on-site equipment). The adoption of this research to a real Smart City case had resulted in 22% reduction of construction inspection failure (Audit), and also allowed Construction Company to pre-align quality control of all purchased items of ICT Infra that resulted in 18% reduction of nonconformity, thus contributing to an overall quality improvement. This research is expected to be used widely among all construction industry of Smart City.

Fabrication of Electrospun PAN/FA Nanocomposites and Their Adsorption Effects for Reducing Volatile Organic Compounds (전기방사에 의한 PAN/FA 나노 복합재의 제조 및 휘발성 유기 화합물에 대한 흡착효과)

  • Ge, Jun Cong;Wang, Zi Jian;Yoon, Sam Ki;Choi, Nag Jung
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.19 no.6
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    • pp.702-708
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    • 2018
  • Volatile organic compounds (VOCs), as a significant air pollutant, is generated mainly from the burning of fossil fuels, building materials using painting, etc. The inhalation of a certain amount of VOCs can be deleterious to human health, e.g., headaches, nausea and vomiting. In addition, it can also cause memory loss and even increase the rate of leukemia. Therefore, as one of the methods for reducing VOCs in air, polyacrylonitrile/fly ash (PAN/FA) composite nanofibrous membranes were fabricated by electrospinning. To observe their VOCs adsorption capacity, the morphological structure of PAN/FA nanofibrous mats was investigated by field emission scanning electron microscopy (FE-SEM), and the VOCs (chloroform, benzene, toluene, and xylene) adsorption capacity of PAN/FA membranes were tested by gas chromatography/mass spectrometry (GC/MS). The results indicated that the PAN nanofiber containing 40 wt. % FA powder had the smallest fiber diameter of 283 nm; they also showed the highest VOCs adsorption capacity compared to other composite membranes.

Effects of the SDS Dosage on the Paraffin Wax Micro-Capsulation by the Interfacial Polymerization (계면중합법에 의한 파라핀왁스의 마이크로캡슐화에 있어서 SDS 첨가량이 미치는 영향)

  • Shin, Se-Soon;Jung, Jae-Yoon;Kim, Young-Ho;Lim, Myung-Kwan;Choi, Dong-Uk;Lee, Chin-Yong
    • Journal of the Korean Recycled Construction Resources Institute
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    • v.7 no.1
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    • pp.60-68
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    • 2012
  • In this study, the manufacturing process of micro capsulized PCM (phase changing material) for thermal storage performance of latent heat was investigated to save energy during the use of buildings: i.e. use of melamine-type resin as the micro-capsule material and paraffin wax as the inner material that are together used in concrete walls. For the manufacturing process of the micro-capsulized PCM, the amount of SDS addition as surfactant was the key variable and the resulting thermal storage performance depended on the SDS amount. With increasing amount of SDS, the micro capsulation became much easier while the capsule surface became harder. The micro capsules became uniform at an optimum SDS addition. The addition of SDS also affected the thermal capacity: with increasing SDS amount, the heat storage and release tendency at melting point was more clearly manifested. The current investigation is part of a study under progress to explore the use of PCM in concrete walls to save building maintenance cost and energy.

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Research on Fire Safety of Mortar-Containing Waste Tire Powders and Flame Retardant (폐타이어 분말과 난연제가 혼입된 모르타르의 화재안전에 관한 연구)

  • Park, Jeong-Jin;Son, Ki-Sang
    • Fire Science and Engineering
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    • v.24 no.4
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    • pp.12-17
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    • 2010
  • The purpose of this study is to determine how effectively waste tire recycled material mixed with flame retardant work in combating fire. As discovered in the previous study, waste tire mixed with cement mortar has more insulation capacity. However, this mortar is weak against fire. Therefore flame retardant, with a specific proportional mix, will be added to increase its fire prevention capacity. Tests will be made in accordance with ISO 5657 procedures for measuring fire ignition time, flame and shape variation of test pieces at the Building Material Test Institute. The test piece will be set up with horizontal levels having a constant radiation heat of $1{\sim}5W/cm^2$. Temperature transfers and increases from the surface into the interior. Combustible gases result due to pyrolysis, and regular contact is maintained between the fire source and the center of the test piece for assessment purposes. Ignition has not been occurred without adding retardant meaning that there is almost no possibility of ignition of waste tire particle. This fact can be considered as fire load to appreciate a volume of combustion materials. Flame is not occurred due to heat-absorbing effect by adding non-organic series retardant into waste tire particle. Conclusions have been summarized as follows; 1) Combustion of building material can be decreased by adding retardant to waste tire-mixing mortar. But compressive strength and insulation capacity of the material should be measured later. 2) Firing prevention and ignition are main points of building fire. Reasonable fire engineering assessment of interior material should be made for establishing effective disaster prevention system.

최근 우리나라 조선산업의 모습과 장래 전망

  • 김영훈
    • Bulletin of the Society of Naval Architects of Korea
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    • v.32 no.4
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    • pp.64-67
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    • 1995
  • 우리나라 조선산업이 21세기에 명실상부한 선진 조선국으로 발돋움하기 위해서는 단기적으로는 가격경쟁력의 강화가 요구되나 장기적으로는 기술자립화를 통해 과거 가격위주의 경쟁체제에서 기술위주의 경쟁체제로 전환함으로써 질적인 성장을 추구해야 할 것이다. 또한 우리나라의 조 선산업은 세계조선시장을 리드하는 선도국으로서 세계선박수급구조의 안정화에 노력하고 지구 해양환경보호를 위한 국제적인 프로그램에 적극 참여하는 한편, 후발조선국에 대한 기술협력, 기술지도 등 국제협력도 강화하여 명실상부한 선진조선국의 면모를 갖추어야 할 것이다. 이를 효과적으로 추진하기 위해서는 다음과 같은 과제를 해결해야 할 것이다. 첫째, 효율적 기술개발을 통한 건조기술의 재고가 그 무엇보다도 중요하다. 즉 단기적으로는 주요 대체수요 선박이면서 국내 주력건조선박인 탱커, 벌크케리어 등 재래단순형 선박에 대해 성에 너지화, 성인력화 및 표준선형화하고, 선박 생산공정의 개선, 생산성 향상을 통해 가격경쟁력을 지속적으로 확보해야할 것이다. 그러나 중장기적으로는 가스운반선,카페리선, 초고속선 등의 부가가치선박에 대한 건 조기술의 자립화로 이들 선종을 주력선종화하여 해외 수주 경쟁력을 재고시켜야 한다. 이와함께 심해탐사장비, 해양구조부유물 등의 해양개발장비의 개발로 사업영역을 확대해야할 것이다. 상 기의 각종 기술재발을 효율적으로 추진하기 위해서는 범국가적인 연구체제의 구성을 통한 산학연 공동연구형태로 추진하는 것이 바람직하다. 둘째, 핵심 조선기자재의 국산화와 품질 향상이 필 요하다. 향후 조선기자재의 국산화추진은 과거 개발 품목의 확대에서 벗어나 핵심적이고 부가 가치가 높은 품목 위주의 질적 국산화로 전환되어야 할 것이며, 이때 국산화이후 조선소의 적 극적인 구매가 전제되어야 할 것이다. 또한 기자재의 품질, 성능검사기능의 강화와 다수요 품목을 중심으로한 표준화, 규격화의 확대 추진으로 지속적인 품질향상과 원가절감을 도모해야한다. 특히 조선기자재업체의 영세상을 감안하여 조선소 인근지역에 단지화함으로써 생산설비의 현 대화, 자재의 공동구매, 물류비용의 절감 등을 기해 가격경쟁력을 강화해야 할 것이다. 또한 업계 공동의 해외판매망, A/S망의 직수출을 늘려야 할 것이다. 셋째, 국제협력 강화로 통상환경에 적극 대응해야 한다. 다자간조선협정 발효에 따른 제소 가능성에 대비하여 관민차원의 국제협 력을 강화하는 한편, 회계 기준의 통일, 제소사례의 연구 등을 업계 공동으로 추진하는 것이 바 람직하다. 또한 향후 2010년이후에 중국을 비롯한 후발조선국에 대해 조선협정에의 참여를 유도, 세계조선시장의 수급안정화에 노력해야할 것이다. 그외에 국제적으로 추진되는 지구그린화에 주도적 역할을 수행해야 할 것이다. 넷째, 선박금융제도의 개선과 신금융상품의 개발이 요구된다. 내수 수요인 계획조선의 지원조건을 개선하고 연불수출자금을 BBC자금으로 활용토록하여 국내 선주들의 신조를 유도해야 할 것이다. 그 외에 향후 금융개방화에 맞추어 해외자금을 활용한 리스금융, 상사금융 등의 민간신용제도를 더욱 활성화하고 선진국의 선박금융기법에 대한 연구 및 도입 등 선주들에게 다양한 선박건조자금을 제공하여 내수기반 확충에도 노력해야 할 것 이다.

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Characteristics Analysis of Seasonal Construction Site Fall Accident using Text Mining (텍스트 마이닝을 활용한 계절별 건설현장 추락사고 특징 분석)

  • Kim, Joon-Soo;Kim, Byung-Soo
    • Korean Journal of Construction Engineering and Management
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    • v.20 no.3
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    • pp.113-121
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    • 2019
  • The death rate of industrial accidents per 10,000 people in Korea is two to three times higher than that of major countries. Falling accidents at the construction site happened to have caused the most deaths. Analysis of existing research and measures by national institutions showed that the industrial accident management concentrated on falling accidents was insufficient and the seasonal safety management measures were not enough. There is thus the need for research that provides detailed and enough information on falling accidents. This study, therefore, aims to overcome the limitations of existing research and safety management accident response using a methodology that provides the necessary information for the prevention of fall accidents by deriving seasonal crash characteristics of the construction site. In order to provide enough information, 387 cases of seasonal construction site falling were collected, which describes the causal relationship of accidents. Text mining using principal component analysis and cluster analysis was carried out. The analysis showed that: In the spring, snowfall and unreasonable operation of equipment including lifts were the major cause. In summer, most accidents were caused by form, insufficient safety inspection, and installation work. In autumn, weather factors such as wind and typhoon were the cause. In winter, material transportation, exterior wall work, and ignore safety precautions were the cause of the crash.

Assessment of Fire Risk Rating for Wood Species in Fire Event (화재 발생 시 목재 수종의 화재위험성 등급 평가)

  • Jin, Eui;Chung, Yeong-Jin
    • Applied Chemistry for Engineering
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    • v.32 no.4
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    • pp.423-430
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    • 2021
  • In order to evaluate the fire risk and fire risk rating of wood for construction materials, this study focused on fire performance index-III (FPI-III), fire growth index-III (FGI-III), and fire risk index-IV (FRI-IV) according to Chung's equations-III and -IV. Western red cedar, needle fir, ash, and maple were used as the specimens. The fire characteristics were investigated using a cone calorimeter (ISO 5660-1) equipment on the specimen. The FPI-III measured after the combustion reaction was 0.86 to 12.77 based on polymethylmethacrylate (PMMA). The FGI-III was found to be 0.63 to 5.26 based on PMMA. The fire rating according to the FRI-IV, which is the fire rating index, was 0.05 to 6.12, and the western red cedar was 122.4 times higher than that of the maple. The fire risk rating according to the FRI-IV increased in the order of maple, ash, needle fir, PMMA and western red cedar. The CO peak concentration of all specimens was measured as 103 to 162 ppm, and it was 2.1 to 3.2 times higher than 50 ppm, the permissible exposure limits of the US occupational safety and health administration. Materials such as western red cedar, which have a low bulk density and contain a large amount of volatile organic substances, have a low FPI-III and a high FGI-III, so they have a high fire risk rating.

The Mechanical Properties of SMA Concrete Mixture Using Steel Slag Aggregate (제철 슬래그 골재를 이용한 SMA 혼합물의 역학적 특성)

  • Kim, Hyeok-Jung;Na, Il-Ho
    • Journal of the Korean Recycled Construction Resources Institute
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    • v.9 no.1
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    • pp.109-116
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    • 2021
  • In order to replace mineral aggregate used as road pavement materials with steel slag aggregate, this present study evaluated mechanical properties of SMA Concrete mixtures using steel slag aggregate as oxidized slag from electric furnace in iron works. The variables of this experiment are the aggregate type of mineral and steel slag and the sieve sized of 10mm and 13mm. The physical properties inclu ding the specific gravity and absorption rate etc. of the slag aggregate mixtu res satisfied the KS standard as asphalt mixtu re. As a resu lt of evalu ating the mechanical properties of the asphalt mixtures, the optimum asphalt content of the slag aggregate mixtures were lower than that of the mineral aggregate mixtures, but other quality standards were all satisfied. In the deformation strength evaluation, the slag aggregate mixtures were measu red slightly higher than that of the mineral aggregate mixtu res, and the dynamic stability test satisfied the 2,000pass/mm standard value in all specimens. And, the moduli of resilient of the slag aggregate mixtures showed an improved value compared with the mineral aggregate mixtures. Therefore, as the resilient rate of the slag aggregate mixtures improved, it is speculated that there will be an effect of improving public performance according to the repeated traffic load of the vehicle.

Rating Evaluation of Fire Risk for Combustible Materials in Case of Fire (화재 시 연소성 물질에 대한 화재 위험성 등급 평가)

  • Chung, Yeong-Jin;Jin, Eui
    • Applied Chemistry for Engineering
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    • v.32 no.1
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    • pp.75-82
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    • 2021
  • This study investigated the fire risk assessment of woods and plastics for construction materials, focusing on the fire performance index-III (FPI-III), fire growth index-III (FGI-III), and fire risk index-IV (FRI-IV) by a newly designed method. Japanese cedar, red pine, polymethylmethacrylate (PMMA), and polyvinyl chloride (PVC) were used as test pieces. Fire characteristics of the materials were investigated using a cone calorimeter (ISO 5660-1) equipment. The fire performance index-III measured after the combustion reaction was found to be 1.0 to 15.0 with respect to PMMA. Fire risk by fire performance index-III increased in the order of PVC, red pine, Japanese cedar, and PMMA. The fire growth index-III was found to be 0.5 to 3.3 based on PMMA. Fire risk by fire growth index-III increased in the order of PVC, PMMA, red pine, and Japanese cedar. COpeak concentrations of all specimens were measured between 106 and 570 ppm. In conclusion, it is understood that Japanese cedar with a low bulk density and PMMA containing a large amount of volatile organic substances have a low fire performance index-III and high fire growth index-III, and thus have high fire risk due to fire. This was consistent with the fire risk index-IV.