SUS hexagonal bar have been widely used to manufacture the hexagonal bolt/nut, adapter and fittings. Raw SUS circular bar is used to make SUS hexagonal bar using drawing system. The purpose of this study is to investigate the characteristics, for instance, such as stress, strain and reduction ratio of area for bar. As the results, it was confirmed that the maximum stresses were occurred at edge of hexagonal bar, thus it could be worked as residual stress of hexagonal bar. The phenomenon of spring back was almost no found in all parts of hexagonal bar. Furthermore it showed that the reduction ratios of area were about mean 26% when SUS circular bar was changed to SUS hexagonal bar in this study.
In order to remove rust and impurities from surface of raw SUS circular bar, peeling machine is used to make lustrous and clean surface of SUS circular bar. Drawing process system is used to manufacture SUS hexagonal bar. SUS hexagonal bar have been widely used to make hexagonal bolt/nut, adapter and fittings and so on. The purpose of this study is to investigate the stabilities for guide bar of clamp in drawing process system. As the results, the guide bar showed structural stability in cases of below load of 50 Ton and over hook radius of 3.0mm. Further as the thickness of guide bar hooking with jaw was increased, minimum safety factor was decreased.
SUS hexagonal bar has been widely used to make many kinds of hexagonal bolt/nuts and fittings. Peeling machine is used to make lustrous and clean surface of SUS circular bar in order to remove rust and impurities from surface of raw SUS circular bar. Similarly, roll unit system is used to make SUS hexagonal bar from SUS circular bar with lustrous and clean surface. Roll unit system is mainly divided into two parts ; one is roll unit and the other is mold frame. The purpose of this study was to evaluate the structural stability of mold frame supporting roll unit with numerical analysis. As the numerical analysis result, higher structural stability was gradually shown in order of models 4, 2, 3 and 1. It was considered that the structural stability of this study was influenced by the decrease of mold frame size, especially height decrease.
In this study, an Al-0.7wt%Fe-0.2wt%Mg-0.2wt%Cu-0.02wt%B alloy was designed to fabricate an aluminum alloy for electrical wire having both high strength and high conductivity. The designed Al alloy was processed by casting, extrusion and drawing processes. Especially, the drawing process was done by severe deformation of a rod with an initial diameter of 12 mm into a wire of 2 mm diameter; process was equivalent to an effective strain of 3.58, and the total reduction in area was 97 %. The drawn Al alloy wire was then annealed at various temperatures of 200 to 400 °C for 30 minutes. The mechanical properties, microstructural changes and electrical properties of the annealed specimens were investigated. As the annealing temperature increased, the tensile strength decreased and the elongation increased. Recovery or/and recrystallization occurred as annealing temperature increased, and complete recrystallization occurred at annealing temperatures over 300 °C. Electric conductivity increased with increasing temperature up to 250 °C, but no significant change was observed above 300 °C. It is concluded that, from the viewpoint of the mechanical and electrical properties, the specimen annealed at 350 oC is the most suitable for the wire drawn Al alloy electrical wire.
철근 공사에는 원청 건설사, 골조 전문건설사, 배근시공도 작성자, 철근 가공장, 감독/감리사, 구조설계자 등 다수의 업무 주체가 참여하고 있으나 이들간의 합리적인 협업이 이루어질 수 있는 업무 프로세스가 구축되어 있지 않아 비효율을 초래할 가능성이 높다. 특히 철근공사는 RC골조 품질에 결정적 영향을 주는 업무이지만 참여 주체간 원활한 협업 부재로 인하여 골조의 품질 저하, 생산성 감소, 공기 지연 등 많은 문제를 야기하고 있다. 그러므로 RC골조공사는 혁신이 매우 시급한 분야라 하겠다. 최근 BIM은 건설산업의 기술 환경 패러다임을 전환시키는 기술로 인식되고 확산되고 있다. 그런데 3차원 모델 상에서 방대한 양의 철근상세정보를 모델링하기 위해서는 많은 시간과 노력이 소요되고, 모델링 후에도 데이터량의 방대함으로 인하여 프로그램 성능이 원활하게 발현되지 않기에 BIM 기술의 확산에도 불구하고 배근 설계와 시공과 관련하여 BIM 기술이 활용되고 있지 않은 상황이다. 본 기술은 3차원 BIM 환경 하에서 골조상세정보 모델링과 배근상세설계, 정밀물량산출 및 공사관리까지를 지원하는 Rebar HUB를 개발하여 RC 골조 설계 및 공사 프로세스를 합리화할 수 있는 실용적 기술 개발을 목표로 하였다.