(첨부)_한국건설기술연구원_사칭_피해_예방_안내문

한국건설기술연구원 직원 사칭 사기 주의

최근 연구원 직원을 사칭하여 개인 계좌로 대금 이체 요구, 물품 대리 구매요청, 금융상품 가입유도 등의 다양한 사칭 범죄 사례가 확인되고 있습니다. 연구원은 어떠한 경우에도 개인 계좌로의 이체를 요구하지 않습니다. 피해가 발생하지 않도록 각별히 유의해주시기 바랍니다.

주요 사칭 사기 수법

  • 한국건설기술연구원 직원(허위 또는 수집된 실명)의 이름을 사용
  • 허위 공문을 작성하여 물품 납품 유도
  • 한국건설기술연구원 직원을 사칭하면서 계약체결 절차 없이 물품 선납유도
  • 이메일/유선 등을 통한 특정업체를 소개하며 물품 구매 및 계약유도
  • 연구원 직원을 사칭하여 해킹메일, 피싱사이트 접속 및 개인정보 입력 유도

대응방법

  1. 전화번호 및 이메일 도메인 확인

    연구원 명의로 의심스러운 연락을 받으신 경우 연구원 홈페이지 정보를 통해 발신처 사실여부를 반드시 확인 (홈페이지 경로: kict.re.kr > KICT 소개 > 조직 > 직원찾기)

  2. 발신처/공문 진위확인

    의심스러운 경우 계약부서/연구부서에 직접 문의

  3. 선입금 및 선납 금지

    연구원은 대리구매를 통한 선입금 및 선납을 요청하지 않음

  4. 사기의심 즉시 신고

    사기의심 사례가 발생하는 경우 경찰(112)에 신고하시고, 추가 피해를 예방하기 위해 사기 시도 연락처를 전기통신금융사기 통합대응단에 등록 및 신고하여 주시기 바랍니다.

    [링크 이동: 전기통신금융사기 통합대응단 - https://www.counterscam112.go.kr/]

KICT 한국건설기술연구원 (KOREA INSTITUTE OF CIVIL ENGINEERING AND BUILDING TECHNOLOGY)

오늘하루 보지않기 닫기

Research Information

Development of new construction technology; quick and easy to build like Lego
  • NameKICT
  • Date2023/12/21 23:16
  • Hit9782
Development of new construction technology; quick and easy to build like Lego
- No on-site operations required, leading to reduced construction periods and costs cut by 30% - 

Dormitory(a part of military facility) built by modular technology
The Korea Institute of Civil Engineering and Building Technology (KICT, led by President Kim Byung-suk) announced the development of a new modular construction method capable of building structures by assembling modular components within a short time, particularly in cases of emergencies or disasters. 
The modular construction method involves fabricating about 70 to 80% of the major members and components of the target structure in factories in advance and then transporting them to the construction site to complete the construction with simple assembly and installation processes. This method is differentiated from conventional field operation-oriented construction methods. This novel method is increasingly recognized as a key construction solution for the future across the globe thanks to its significant contribution to addressing the risk of safety accidents while reducing construction periods. Compared to conventional construction methods, this approach generates less noise, dust, and waste, and modular components used in this method can be recycled or repurposed later, contributing to the promotion of environmental, social, and governance (ESG) management.
The new modular construction method developed by a research team of KICT (Dr. Lim, Seok-Ho and Dr. Chung, Joon-Soo) is suitable for use in structures in which a box-type infill module whose floor, inner walls, and roof are prefabricated in a factory is plugged in a U-shaped PC module with a wall-type load-bearing structure. The U-shaped PC module includes a floor and two side walls, and the infill module is inserted through its upper opening. Modules are prefabricated in a factory and simply assembled at the construction site, leading to a faster and more straightforward construction process. 
The method developed by Dr. Lim, Seok-Ho's research team allows for the straightforward assembly of infill modules by lifting them up and placing them down into the target U-shaped PC module using a crane, thereby eliminating the need to use separate vehicles to move them. Moreover, its plug-in assembly method, in which modules are lifted up and placed down into the target modules, contributes to enhanced constructability. 
The detailed procedure of the developed modular construction method is as follows. ① Install PC modules, ② Insert box-type infill modules and lift up and stack the integrated sets of PC modules and infill modules, ③ Install roofing, and ④ Install stairs and corridors
The developed technology not only reduces construction periods but also enables easy installation and disassembly through plug-in assembly, in contrast to conventional construction methods that rely on on-site operations using cast-in-place concrete and steel modular frames. Moreover, this approach results in reduced self-load and work volume because modules are stacked in a single slab mode. Additionally, the use of a fire-resistant concrete structure eliminates the necessity for external finishing operations. More importantly, optioning for PC modules prefabricated in a factory as an alternative to steel frames, along with infill modules that require no on-site operations, including interior finishing, enhances both cost-effectiveness and constructability simultaneously.
In 2023, the Korean Ministry of Land, Infrastructure and Transport announced a blueprint for promoting the use of the modular construction method not only in new rental houses within the Seoul Metropolitan area but also in third-generation new towns, with the aim of accelerating housing supply. In line with this development, new orders in Korea's modular construction market are expected to increase from 800 billion won in 2019 to 2.4 trillion won by 2024. 
The new modular construction technology developed by KICT is considered to meet the needs of the Korean government for expanding the housing supply while effectively accommodating the expected increase in new orders in the market. Not only that, structures built by this method can be easily disassembled later, when necessary, in the reverse order of the assembly procedure. The disassembled modules can be recycled or repurposed, constituting a genuine resource circulation system for production. This technology is expected to find applications in various fields, with potential uses ranging from negative pressure hospital rooms for infectious disease prevention and military bases or barracks to houses for less privileged people, as well as for export purposes.
Dr. Lim, Seok-Ho remarked, "The developed modular construction method will offer effective solutions for addressing environmental issues in the construction industry and housing shortages. Conventional methods using steel modules are deemed less cost-effective compared to concrete construction methods. In contrast, this technology significantly reduces construction costs and diminishes the need for a large portion of on-site operations, resulting in shorter construction periods compared to conventional concrete construction methods, all thanks to the mass production of repeated sets of necessary modules." 
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The Korea Institute of Civil Engineering and Building Technology, a government-funded research institute with 40 years of extensive research experience, is at the forefront of solving national issues that are directly related to the quality of the people’s life. 
Research for this paper was carried out under the KICT Research Program (project no. 20230064-001, Development of Modular System and Establishment of Supply&Operational System that can respond immediately to disasters) funded by the Ministry of Science and ICT.

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