• 제목/요약/키워드: high tensile steel

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터널 숏크리트 성능 향상을 위한 고기능성 합성섬유 보강 콘크리트의 물성 평가 (Properties of Advanced Synthetic Fiber Reinforced Concrete for Improvement of Tunnel Shotcrete Performance)

  • 전찬기;전중규
    • 한국재난정보학회 논문집
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    • 제7권1호
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    • pp.43-50
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    • 2011
  • 숏크리트의 보강재료로 사용되고 있는 강섬유는 강성이 크고 중량이 무거워 압송호스의 마모손상 및 파열 등 안전관리의 어려움이 있으며, 강섬유의 부식으로 인한 내구성 저하 및 높은 반발률 등이 개선사항으로 요구되고 있다. 이와 같이 2009년 개정된 규정에 의해 강섬유 외의 재료보강이 가능해짐에 따라 숏크리트 보강 재료로서 강섬유 이외의 다양한 섬유의 적용성 검토가 필요한 실정이다. 강섬유는 기타섬유에 비해 강성이 크고, 섬유의 형상에 따라 부착성능이 개선되지만, 유기섬유의 경우 강섬유에 비해 일반적으로 탄성계수 및 인장강도가 낮고 섬유의 뭉침 현상이 발생하여 숏크리트에서 재료보강으로 시용하기 어렵다. 이러한 관점에서 본 연구에서는 직경 $20{\mu}m$의 미세섬유를 다발형 단일 개체로서 공기압출성형을 통해 부착 비표면적을 크게 하여 역학적 성능을 고려하고, 섬유의 표면을 계면 활성제로 개질하여 분상성을 향상시킨 폴리아미드섬유와 강섬유, PP섬유를 혼입한 콘크리트를 비교하여 현장 활용을 위한 기초 자료를 제시하고자 한다.

고열 환경에서의 구조용 강재 특성 데이터베이스 구축 (Derivation of the Mechanical Properties of Structural Steels at High Temperatures)

  • 권인규
    • 한국화재소방학회논문지
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    • 제21권3호
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    • pp.47-55
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    • 2007
  • 화재와 같은 고열환경에서 강구조 건축물의 구조적 붕괴 예측 및 화재피해 건축물의 안전진단 그리고 보수보강을 위해서는 고온에서의 항복강도와 탄성계수 등과 같은 특성치가 반드시 요구된다. 따라서 본 연구에서는 강구조 건축물의 주요 구조부에 적용되는 주요 강종인 일반 구조용 SS 400과 용접 구조용 SM 490을 대상으로 상온에서 $100^{\circ}C$ 간격으로 $900^{\circ}C$까지 고온인장시험을 통하여 0.2% 옵?V 항복강도, 1% 옵?V 항복강도, 인장강도 및 탄성계수 등을 측정하였다.

고탄소강 다단 신선 와이어의 표면 잔류응력 예측모델 (Prediction Model of Surface Residual Stress for Multi-Pass Drawn High Carbon Steel Wire)

  • 김대운;이상곤;김병민;정진영;반덕영;이선봉
    • 소성∙가공
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    • 제19권4호
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    • pp.224-229
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    • 2010
  • During the multi-pass wire drawing process, wires suffer a great amount of plastic deformation that is through the cross-section. This generates tensile residual stress at surface of drawn wires. The generated residual stress on surface is one of the problems for quality of wires so that prediction and reduction of residual stresses is important to avoid unexpected fracture. Therefore, in this study, the effect of process variables such as semi-die angle, bearing length and reduction ratio on the residual stress was evaluated through Finite Element Analysis. Based on the results of the Analysis, a prediction model was established for predicting residual stress on the surface of high carbon steel(AISI1072, AISI1082). To identify the effectiveness of the proposed model, X-ray diffraction is used to measure the residual stresses on the surface. As the result of the comparison between calculated residual stresses and measured residual stresses, the model could be used to predict residual stresses in cold drawn wire.

초고강도강판 프레스성형용 금형의 CrN 코팅층 마모수명 예측 (Wear Life Prediction of CrN Coating Layer on the Press Tool for Stamping the Ultra High Strength Steel Sheet)

  • 이정흠;배상범;윤국태;허재영;김세호;박춘달
    • 소성∙가공
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    • 제26권3호
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    • pp.137-143
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    • 2017
  • In this study, a wear test method was proposed to predict the wear life of the CrN layer coated on the surface of the press tools for manufacturing the auto-parts with ultra high strength steel (UHSS) with a tensile strength of 1.5 GPa. The pin-on-disc type wear test was carried out to confirm the feasibility and the reproducibility of the wear amount according to the test conditions such as the normal force, the sliding velocity, and the sliding speed. The test conditions were obtained from the finite element stamping analysis and the wear simulation. With the wear amount from the wear test, a prediction model of the wear depth in the CrN coating layer was proposed according to the test conditions with the design of experiments such as Taguchi method and the response surface method. The derived prediction model was then compared to the result of the Archard wear model, fully describing that the proposed model can effectively predict the wear life of the press tools for the auto-parts with UHSS.

자동차 강재의 수소취성 연구에 대한 고찰 (A Study on Hydrogen Embrittlement Research on Automotive Steel Sheets)

  • 양원석;서지원;안승호
    • Corrosion Science and Technology
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    • 제17권4호
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    • pp.193-201
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    • 2018
  • In order to suppress $CO_2$ emission and protect passengers in case of vehicle collision, continuous efforts are being made to increase the application ratio and tensile strength of advanced high strength steels used in the manufacturing of automotive body. Simultaneously, hydrogen embrittlement which was not a concern in the past has currently become a major issue due to microstructure that is sensitive to hydrogen uptake. The sensitivity increases with residual stress and hydrogen uptake content. Many automotive OEM companies and mill makers are setting specifications to control hydrogen embrittlement. The factors which lead to hydrogen embrittlement are material sensitivity, residual stress, and hydrogen concentration; researches are in progress to develop countermeasures. To reduce material sensitivity, mill makers add high energy trap elements or microstructure refinement elements. Automotive OEM companies design the car parts not to concentrate local stress. And they manage the levels to not to exceed critical hydrogen concentration. In this article, we have reviewed hydrogen embrittlement evaluation methods and corresponding solutions that are being studied in automobile manufacturing industries and mill makers.

특수구조 대상으로 고강도 강재(HSA800)의 현장 적용성 연구 (Application Study of High-Strength Steel(HSA800) for the Special Structure)

  • 김인호;이희수;박성용;김종수
    • 한국공간구조학회논문집
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    • 제14권2호
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    • pp.69-78
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    • 2014
  • The purpose of this study is to increase applicability of high strength steel, HSA800 to the structure. Selected study of structure is to consider high strength steel, and following parts, 1) Tensile member with no consider of buckling, 2) Truss existing both tension and compression members with small slenderness ratio. This studied structure is included tension column hang on to the upper bridge truss. The structure element quantity with apply HSA800 instead of SM570 is reduced about 38.9% of tension column and 29.7% of bridge truss. In addition, the number of element's division is reduced about two sections due to reduction of self weight that the crane is able to lift up. This improves to reduce erection sequence and construction period which can save about a month. All connections are reviewed as welding and bolt. Also, the cost of welding is reduced about 41.3% due to apply HSA800. In conclusion, applying HSA800 to the hanging structure aggressively can secure economic and constructability.

Three-dimensional finite element simulation and application of high-strength bolts

  • Long, Liji;Yan, Yongsong;Gao, Xinlin;Kang, Haigui
    • Steel and Composite Structures
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    • 제20권3호
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    • pp.501-512
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    • 2016
  • High-strength structural bolts have been utilized for beam-to-column connections in steel-framed structural buildings. Failure of these components may be caused by the bolt shank fracture or threads stripping-off, documented in the literature. Furthermore, these structural bolts are galvanized for corrosion resistance or quenched-and-tempered in the manufacturing process. This paper adopted the finite element simulation to demonstrate discrete mechanical performance for these bolts under tensile loading conditions, the coated and uncoated numerical model has been built up for two numerical integration methods: explicit and implicit. Experimental testing and numerical methods can fully approach the failure mechanism of these bolts and their ultimate load capacities. Comparison has also been conducted for two numerical integration methods, demonstrating that the explicit integration procedure is also suitable for solving quasi-static problems. Furthermore, by using precise bolt models in T-Stub, more accurately simulate the mechanical behavior of T-Stub, which will lay the foundation of the mechanical properties of steel bolted joints.

HSS-Co와 SM55C 이종 마찰용접재의 피로강도에 관한 연구(1) (A Study on fatigue Strength in the Friction Welded Joints of HSS-Co to SM55C Carbon Steel(I))

  • 서창민;서덕영;이동재
    • 대한기계학회논문집
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    • 제19권4호
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    • pp.918-928
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    • 1995
  • This paper deals with the various mechanical properties and fatigue strength in the FRW1 (friction welded interface) of high speed steel (HSS-Co) to SM55C through the tensile test, hardness test and fatigue test. The data of FRW specimens are also compared with those of the base materials (HSS-Co and SM55C steel). Three kinds of specimens used in this study are the friction welded joints, HSS-Co and SM55C carbon steel with circumferential notch, saw notch and smooth, respectively. It is confirmed that the applied welding conditions are optimum methods in order to minimize the heat affected zone (HAZ) and hardness distribution at the HAZ. The fatigue strengths at N = 10$^{6}$ cycles of smooth, circumferential notch and saw notch specimens in the FRW joints are about 299.2 MPa, 123.8 MPa and 247.5 MPA, respectively. The fatigue strength of the friction welded joints is almost equal to that of the SM55C carbon steel in the optimum welding conditions. The fatigue cracks initiated at the welded zone are propagated along the side of SM55C steel.

18% Ni 마레이징강의 용접 잔류 응력에 미치는 열처리의 영향 (Effect of Heat Treatments on Welding Residual Stresses of 18% Ni Maraging Steel)

  • 배강열;나석주;김원훈
    • Journal of Welding and Joining
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    • 제11권2호
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    • pp.53-61
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    • 1993
  • One of the most interesting and promising steel groups considered for the rocket motor case, aircraft and aerospace component is the maraging(martensitic plus aging) nickel steel, developed by International Nickel Company in 1960. This material attains a very high strength with good fracture toughness by simple heat treatments which do not involve a quenching. Full strength can be obtained by "maraging" at 480.deg. for 3 hours for the 18% Ni maraging steel. The effect of heat treatments was considered on the residual stress field of 18% Ni maraging steel weldments. In experiments, various heat treatments such as stress relieve heat treatment, aging and solution heat treatment were carried out of the GTA weldments and the residual stresses were measured by using the hole drilling method. Whereas the conventional pattern of residual stress shows the stresses to be maximum along the weld centerline with tensile stress extending into the heat affected zone, the pattern in maraging steels shows the centerline stress to be compressive. After welding, a series of aging, solution heat treatment and solution heat treatment plus aging treatment were carried out and the residual stresses were measured to reveal that these heat treatments almost completely remove the welding residual stresses.

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로브곡선을 이용한 자동차용 신강재의 저항 점 용접성 평가 기술 개발 (Development of Resistance Spot Weldability Estimation Using Lobe Diagram for Steel Plate of Automobiles)

  • 김태형;이동옥;이세헌
    • Journal of Welding and Joining
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    • 제23권4호
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    • pp.59-65
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    • 2005
  • The resistance spot welding is one of the most commonly used welding process for joining the sheet metal in automotive manufacturing process due to higher deposition rates and higher economy achieved. Control variables in the resistance spot welding for achieving high quality are welding current, welding force and welding time. Generally at the manufacturing scene, welding current Vs welding time lobe diagram is used to estimate weldability because controlling welding force is not practical due to economical reasons. However new automotive steel plates have been developed to make lightweight automobiles and to improve resistance against rusting. Also the weldability of these steel plates are worst than the existing steel plates because of changing bare metal and surface plating effect. In consequence of above mentioned reasons, it is necessary to use welding force to present the lobe diagram. In this study, we obtained the welding force Vs welding current lobe diagram for commonly used GA steel plate and found that the second order repression model of tensile shear strength was useful in reducing the number of experiments, and the indentation, and thickness change during welding were used as a response to estimate quantitatively expulsion.