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Tensile Resistance and Field Application of Hang-type PC Beam

걸이형 PC보의 인장저항성 및 현장적용

  • Ha, Sang-Su (Department of Architectural Engineering, Kangnam University)
  • Received : 2020.08.29
  • Accepted : 2020.10.13
  • Published : 2020.10.20

Abstract

Due to the improvement of living standards and avoidance of the 3D industry, it is difficult to find young and competent domestic workers at construction sites, and most foreign workers are contributing to the replacement, but the quality is still deteriorating due to lack of skilled workers and aging. Precast method is a method that make members in factory and assembles them on site, which can be expected to improve labor force and quality. This study is intended to provide basic data for the development of hang-type PC beams that can be applied to the determination of the field application of developed PC beams. The U-type connecting material is installed on both ends of the hang-up PC beam, and the role of the U-type connecting material is very important because it is a simple construction method through the U-type connecting material. In addition, the performance of the U-type connecting material will determine the performance of the hang-type PC beam as the final destruction occurs in the hang-type PC beam. The material properties of U-type connecting material were identified through structural experiments, and the end test corresponding to the partial experiment was conducted based on the material test results identified. Finally, the final design value of PC beams was proposed through structural experiments for application to the site.

생활수준의 향상과 3D 업종 기피 현상으로 국내 건설현장에는 젊고 유능한 국내 노동자를 찾아보기 힘들고, 대부분 외국인 노동자가 그 대체인력으로 기여하고 있으나 여전히 기능공 부족 및 고령화로 인해 품질이 저하되고 있는 실정이다. PC화 공법은 공장에서 제작되고 현장에서 조립하는 공법으로 노동력 및 품질향상을 기대할 수 있다. 본 연구는 PC 공법에 적용할 수 있는 걸이형 PC보의 개발 및 개발된 PC보의 현장적용성 여부를 판단하기 위한 기초자료를 제공하는 위한 것이다. 걸이형 PC보 양 단부에는 U형 연결재가 설치되어 있으며, U형 연결재를 통해 간단히 시공되는 공법이기 때문에 U형 연결재의 역할은 매우 중요하다. 또한, U형 연결재는 걸이형 PC보에서 최종파괴가 발생되는 부분이므로 U형 연결재의 성능이 곧 걸이형 PC 보의 성능을 좌우하게 된다. 구조실험을 통해 U형 연결재의 재료물성을 파악하였으며, 파악된 재료시험 결과를 토대로 부분실험에 해당되는 단부실험 및 구조실험을 실시하여 현장 적용성 여부를 확인하였다.

Keywords

References

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