• 제목/요약/키워드: High Strength Steel Sheet

검색결과 233건 처리시간 0.036초

자동차용 다상복합조직강판의 성형한계 평가 (Evaluation of Forming Limits of Automotive Muti-phase Steel Sheets)

  • 이승열;정지용;박성호;김상헌;금영탁
    • 한국소성가공학회:학술대회논문집
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    • 한국소성가공학회 2009년도 춘계학술대회 논문집
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    • pp.195-198
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    • 2009
  • In this study, in order to get the forming limit of AHSS sheet in the negative minor strain region, the shapes of die corner and drawbead are redesigned by employing the Taguchi's design of experiment method and the FEM forming simulation. With the redesigned FLD tool, the forming limit tests of automotive multi-phase(Dual Phase and Complex Phase) steel sheets which induce the normal fractures on the blank are performed.

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Hole 클린칭을 이용한 고장력강판과 Al6061 이종소재의 접합 (Joining High-Strength Steel and Al6061 Sheet Using Hole Clinching Process)

  • 안남식;이찬주;이정민;고대철;이선봉;김병민
    • 대한기계학회논문집A
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    • 제36권6호
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    • pp.691-698
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    • 2012
  • 일반적인 클린칭 접합공정에서 고장력강과 알루미늄의 이종소재간의 접합시 고장력강의 낮은 연신율과 높은 강도로 인해 클린칭 접합시 파단이 발생하거나 높은 클린칭 접합하중이 요구된다. 이러한 문제점을 해결하기 위해 본 연구에서는 클린칭 접합시 고장력강의 변형없이 알루미늄의 변형만을 이용한 홀 클린칭 접합공정을 개발하였다. 고장력강에 홀가공을 적용하여 고장력강의 변형을 배제하였다. 홀 클린칭 접합의 요구접합강도를 기초로 클린칭 접합의 기하학적 구속량을 결정하였으며, 홀 클린칭 금형의 형상은 성형체적 일정조건을 이용하여 설계하였다. 설계된 클린칭 접합공정의 유효성을 평가하기 위해 유한요소해석을 수행하여, 홀 클린칭 접합이 가능함을 확인하였다. 또한 홀 클린칭 접합의 접합강도는 인장전단시험을 통하여 평가하였다. 홀 클린칭 접합강도는 2.56kN으로 요구접합강도와 비교하여 동등수준 이상의 값을 가짐을 확인하였다.

열간프레스성형에서의 기계적 물성 측정 (Measurement of Mechanical Properties for Hot Press Forming)

  • 안강환;유동훈;석동윤;김홍기;박성호;정관수
    • 한국소성가공학회:학술대회논문집
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    • 한국소성가공학회 2009년도 춘계학술대회 논문집
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    • pp.450-453
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    • 2009
  • In order to overcome drawbacks of the advanced high strength steel such as inferior formability and large springback, the hot press forming process(HPF) has been being applied for forming of automotive sheet parts. Good formability and dimensional accuracy without springback as well as good crash performance of final products are the advantages of the HPF process. In this work, a method to characterize the mechanical properties of the HPF steel was developed based on the simple tension test at high temperatures and its finite element analysis, while it was applied to obtain strain rate and temperature dependent flow curves of the HPF steel. The final flow curves were represented by utilizing the Johnson-Cook type equation both in uniform and post-uniform deformation regions.

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박판 성형 공정에서 스프링백의 강건 설계 (Robust Design of Springback in Sheet Metal Forming)

  • 김경모;인정제
    • 한국기계가공학회지
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    • 제12권2호
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    • pp.41-48
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    • 2013
  • Springback is a very typical dimensional discrepancy phenomenon, which occurs usually on the final stamping parts after the tool loading is removed. Variation of springback leads to amplified variations and problems during assembly of the stamped components, in turn, resulting in quality issues. The variations in the properties of the incoming material and process parameters are the main causes of springback variation. In this research, a robust design methodology which combines orthogonal array based experimental design and design space reduction skim to reduce the springback variation for advanced high strength steel parts in sheet metal forming is suggested. The concept of design space reduction is adapted in the experimental design setup to improve the quality of the obtained solution. The effectiveness of the proposed procedures is illustrated through a robust design of springback in metal forming process of a cross member of auto body.

TRIP1180 판재의 냉간 스탬핑공정에서 금형강의 경도 특성에 따른 내마모성 평가 (Quantitative Evaluation of Wear Resistance of Stamping Tool with Respect to Hardness of Tool Materials in Cold Stamping of TRIP1180 Steel Sheets)

  • 방준호;배기현;송정한;김홍기;이명규
    • 소성∙가공
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    • 제31권3호
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    • pp.129-135
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    • 2022
  • The purpose of this study was to quantitatively evaluate the influence of hardness of tool materials on wear resistance in the sheet metal forming process. Punches used in the wear test were made of STD-11 and K340 tool material, and the tempering temperature was set to 530℃ and 500℃, respectively, to control the hardness of the tool materials. The punches mimic the shape of stamping tool of automotive body component to reflect its plastic deformation, and are designed to concentrate wear on the curvature region of punches. Progressive die and coil sheet were used to save time, cost, and raw sheet materials. By quantitatively measuring the wear depth of the punches, the wear behavior and mechanism of the punches were investigated, and characteristics of hardness and wear resistance according to tool materials and tempering temperatures were evaluated. Testing results indicate that the punch made of K340 tool steel with higher hardness had better wear resistance than that of STD-11 tool steel, and the hardness and wear resistance of tool steel were significantly impacted by the tempering temperature.

다단 이송 성형 공정 해석을 통한 자동차 센터 힌지 성형용 SPFH 590 고강도 강판 블랭크 설계 (Blank Design of SPFH 590 Steel Sheet for Stamping of Center Hinge of Automotive via Analysis of Transfer Forming Process with Multi-Stages)

  • 안동규;송동한;손상식;한길영
    • 한국정밀공학회지
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    • 제27권5호
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    • pp.75-84
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    • 2010
  • The aim of this paper is to design the blank shape of SPFH 590 high strength steel for stamping of the center hinge of automotive via numerical analyses and experiments for multi-stages transfer forming process. Three-dimensional elasto-plastic finite element analyses for the transfer forming process with six stages were performed using a commercial code AUTOFORM V4.2. The influence of the blank shape on the formability and the shape conformity were quantitatively examined through the FE analyses. From the results of the FE analysis, a feasible shape of the blank and the forming load were estimated. Stamping experiments were carried out using the proposed blank shape. The results of experiments were shown that the center hinge parts with the desired shapes can be manufactured successfully as the proposed blank shape is used. Through the comparison of the results of the experiments with those of the analyses, it was shown that the estimation of blank shape using the FE analysis is a proper methodology to create a feasible shape of the blank for the center hinge of automotive.

고순도강의 기계적 성질에 미치는 탄소 및 황 함량의 영향 (Effects of Carbon and Sulfur Content on Mechanical Properties of High Purity Steel)

  • 윤정봉;김성일;김인배
    • 대한금속재료학회지
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    • 제47권6호
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    • pp.331-337
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    • 2009
  • To lower the annealing temperature and the deviation of the mechanical properties of bake hardening steels, high purity steels were investigated. The steels were characterized by treating at low recrystallization temperature. It was confirmed that the strengthening originated from the solid solution of carbon and the ferrite grain refinement by fine MnS precipitates as carbon and sulfur contents increased in high purity steels. However, it was observed that there was no more increase of strength in steels containing over 40 ppm of carbon. It was considered that the excess carbon formed either the carbon cluster or the low temperature unstable carbides which had the negligible effect on the strengthening because they were reported to be highly coherent with the matrix. The carbon cluster and unstable carbides could be transformed to the stable cementite during bake hardening treatment. MnS was not observed in the high purity steel containing 5 ppm S, resulting in very coarse recrystallized grains and good ductility. As sulfur content increased, the recrystallized grain size decreased due to the formation of the fine MnS precipitates.

CAE 프로그램을 이용한 브래킷 경량화에 관한 연구 (A study on weight reduction of bracket using CAE program)

  • 강형석;한봉석;한유진;최두선;김태민;신봉철;송기혁
    • Design & Manufacturing
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    • 제12권3호
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    • pp.25-30
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    • 2018
  • Recently The automotive industry is trying to increase the energy efficiency by reducing the weight of the car body and engine components as a way to achieve high energy efficiency. In particular, the reduction of the weight of the vehicle through the weight reduction of the vehicle body has the advantage that the fuel consumption and the output can be improved. But at the same time, there is the disadvantage that the strength becomes weak due to the reduction of the material thickness. Therefore, in order to overcome these disadvantages, materials with high strength according to the unit thickness have been actively developed, and researches for applying them have also been increasing. In this study, we will investigate the application of cold rolled steel sheet, which is a lightweight material, to a horn bracket that secures a installed in an automobile engine room. The horn bracket secures the horn on the car engine and is bolted to the outer wall of the engine. The momentum is acted on the bracket due to the distance between the bolt fastening part and the car horn installed on the bracket end side. Therefore, the body part of the bracket is more likely to be destroyed by the influence of the continuous stress. In this paper, design optimization for weight reduction and strength enhancement was performed to solve this problem, and possibility of applying the rolled steel sheet material as lightweight material by tensile test and fabrication was confirmed.

고강도 용융아연 도금강판의 파우더링 특성에 미치는 실리콘 및 합금화 열처리의 영향 (Effect of Silicon in Steels and Galvannealing Heat Cycles on Powdering Behavior of High Strength Galvannealed Steels)

  • 이호종;오용택;김종상
    • 한국표면공학회지
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    • 제33권2호
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    • pp.135-144
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    • 2000
  • Hot-dip galvannealed sheet (GA) with high strength of $45kg/mm^2$ in tensile strength, has developed for automotive applications. However, for a successful application, the powdering behaviour of GA must be minimized. The powdering of galvannealed coatings was reduced as the silicon content in the steel increased. Rapid heating and rapid cooling rate during the galvannealing process improved the powdering resistance due to the suppression of not only the ξ phase, but also the $ \Gamma _1$, phase. An analysis of the Fe-Zn alloy phases and its relation to the powdering behaviour are discussed with SEM micrographs.

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축하중을 받는 콘크리트 충전 탄소섬유튜브 기둥의 소성 이론을 적용한 비선형 유한요소해석 (Nonlinear finite element analysis of Concrete Filled Carbon Tube Columns Using Plasticity Theory)

  • 김희철;서상훈;이영학
    • KIEAE Journal
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    • 제7권6호
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    • pp.119-126
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    • 2007
  • In the field of composite structures, the use of carbon tube for the confinement of concrete has been arisen since 1990's. However, experimental and analytical studies were limited to those of reinforced concrete and concrete filled steel tube. The carbon tube provides excellent confinement capabilities for concrete cores, enhancing compressive strength and ductility of concrete significantly. The carbon tube has high tensile strength, light weight, corrosion immunity and high fatigue strength properties. Since carbon fiber is an anisotropic material, carbon tube could be optimized by adjusting the fiber orientation, thickness and the number of different layers. In this study, both experimental and analytical studies of axial and lateral behavior of full-scale CFCT (Concrete Filled Carbon Tube) columns subjected to monotonic axial load were carried out using Drucker-Prager theory. And, based on comparison results between experiment results and analytical results, k factor estimation was proposed for effective analysis.