• 제목/요약/키워드: Work Hardening

검색결과 364건 처리시간 0.025초

탄소나노튜브 강화 SKD11 냉간금형용 하이브리드 탄소나노소결체 제조 및 특성 평가 (Fabrication and Characteristic Evaluation of Hybrid Carbon Nanotubes Reinforced SKD11 Cold Work Tool Steel)

  • 정성실;문제세;이대열;윤국태;박춘달;송재선
    • 한국분말재료학회지
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    • 제20권4호
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    • pp.291-296
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    • 2013
  • SKD11 (ASTM D2) tool steel is a versatile high-carbon, high-chromium, air-hardening tool steel that is characterized by a relatively high attainable hardness and numerous, large, chromium rich alloy carbide in the microstructure. SKD11 tool steel provides an effective combination of wear resistance and toughness, tool performance, price, and a wide variety of product forms. The CNTs was good additives to improve the mechanical properties of metal. In this study, 1, 3 vol% CNTs was dispersed in SKD11 matrix by mechanical alloying. The SKD11+ CNT hybrid nanocomposites were investigated by FE-SEM, particle size distribution, hardness and wear resistance. The CNT was well dispersed in the SKD11 matrix and the mechanical properties of the composite were improved by CNTs addition. It shows good feasibility as cold work die tool.

저온에서의 콘크리트 강도 확보를 위한 경제적 배합 방안 (An Economic Mix Design Methodology for the Development of Concrete Strength at Low Temperature)

  • 김상철;김용직;김영진
    • 한국건설순환자원학회논문집
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    • 제7권4호
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    • pp.95-103
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    • 2012
  • 프리캐스트 콘크리트 공법은 건식공법으로서 현장에서의 작업량을 최소화할 수 있으며 품질관리가 쉽고, 조립으로 공기단축이 가능하지만, 공기상 조기에 콘크리트 강도를 확보하기 위하여 콘크리트의 강도발현속도를 촉진시키는 증기양생법에 의존하여 왔다. 그러나 최근에 나타나고 있는 중동에서의 정치적 불안이나 국제 경제의 불안정으로 인해 지속적으로 유류비는 상승되고 있다. 따라서 본 연구에서는 프리스트레스트용 프리캐스트 콘크리트 제품 생산을 위해 저온의 조건에서 증기양생을 사용하지 않고 1일 압축강도 14MPa 이상, 설계기준압축강도 40MPa를 확보하는 콘크리트 개발을 목표로 하였다. 1종 포틀랜드시멘트와 3종 조강포틀랜드시멘트, 특수목적의 조강혼합시멘트 등 3종류의 시멘트에 대해 굳지 않은 콘크리트의 물성과 압축강도를 실험을 통해 평가하였다. 실험결과, 조강용 시멘트들은 슬럼프와 슬럼프경시변화, 공기량 확보 측면에서 불리하였지만 강도 측면에서는 목표값 이상을 확보하였으며 특히, 조강혼합시멘트가 가장 우수한 것으로 나타났다.

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함몰지반 긴급복구를 위한 개량준설점토의 강도 특성 (Strength Characteristics of Improved Dredged Clay for Urgent Recovery of Ground Subsidence)

  • 오세욱;백승주;방성택
    • 한국지반환경공학회 논문집
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    • 제20권5호
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    • pp.31-38
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    • 2019
  • 최근 도심지에서 지반함몰의 발생이 증가하고 있으며, 이러한 경우 신속한 복구를 통해 안전사고 및 통행에 대한 불편을 최소화하는 것이 중요하다. 현재의 지반함몰 복구 방법으로는 함몰지반을 개착한 후에 되메우기를 하거나 그라우팅 주입재를 사용하여 지반을 복구하는 방법이 주로 적용되고 있으나. 지반 함몰복구 시 사용되는 재료에 대한 연구는 미비한 실정이다. 따라서 본 연구에서는 함몰지반에 사용되는 되메움재료의 특성을 규명하기 위하여 준설점토를 친환경 고화재를 이용하여 개량한 후 고화재의 혼합비율 및 화강풍화토의 혼합비율을 변화시켜 3, 7, 14, 28일 양생시킨 후 일축압축 강도특성을 분석하였으며, 기존에 사용되던 고화재인 시멘트의 일축압축강도와 비교하였다. 되메움재료의 강도특성을 평가하기 C.B.R 시험을 수행하였고, 되메움 재료가 상하수도관 등의 부식에 영향을 주는지에 대한 검토를 위하여 토양비저항시험을 수행하였다. 시험결과 긴급을 요하는 함몰지반 복구공사의 경우 12%의 고화재를 혼합하여 3일 이상 양생하는 것이 좋다고 판단되며, 가스관이나 상하수도관의 부식에 영향을 미치지 않도록 하기 위하여 화강풍화토를 30% 이상 혼합할 것을 제안한다.

급속 보수용 마그네슘 인산염 모르타르의 경화 및 강도특성 (A Hardening and Strength Properties of Magnesium Phosphate Mortars for Rapid Repair Materials)

  • 오홍섭;이인희
    • 한국구조물진단유지관리공학회 논문집
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    • 제23권3호
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    • pp.103-110
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    • 2019
  • 다양한 원인에 의한 포장체에 손상이 발생하면 신속한 통행재개를 위한 급속보수가 필요하게 된다. 산화마그네슘인산염복합체의는 경화시간이 짧고, 조기 강도발현이 가능하여 급속보수재료로 적합한 특성을 갖고 있다. 연구에서는 경소마그네시아와 제1인산칼륨을 결합하여 보수재료로 개발하기 위하여 물-결합재(W/B)비, 마그네슘-인산염(M/P)비 등의 배합비를 조정하면서 경화와 강도특성을 평가하고자 하였다. 그리고 현장 적용시의 작업성을 확보하기 위하여 표준사와 일반모래에 따른 거동차이와 지연제별 특성을 평가하였다. 실험결과 물-결합재비는 35%내외와 마그네슘-인산염비는 1.0~1.2 내외가 강도측면에서 가장 적합한 것으로 분석되었다. W/B비 0.35, M/P비 1.2 변수에서 1일 강도 25.0MPa 이상 발현되어 조기 보수재료로서 활용가능성이 충분한 것으로 분석되었다. 작업시간 확보를 위해서는 붕산을 지연제로 사용하는 것이 적합한 것으로 나타났으며, 산화마그네슘의 순도는 90~95%내외가 경화시간 확보를 위해 효과적인 것으로 나타났다.

Zn-15%Al 합금의 가공연화 거동 (Work Softening Behavior of Zn-15%Al alloy)

  • 전중환;성기덕;김정민;김기태;정운재
    • 열처리공학회지
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    • 제18권1호
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    • pp.18-23
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    • 2005
  • Effect of cold rolling on microstructural changes has been investigated for a Zn-15%Al alloy to elucidate the reason for its work softening behavior. Fully annealed microstructure of the Zn-15%Al alloy is characterized by ${\eta}$ grains and (${\eta}+{\alpha}$) lamellar colonies, where ${\eta}$ and ${\alpha}$ are Zn-rich HCP and Al-rich FCC phases, respectively. The hardness decreases continuously with increasing cold rolling degree, exhibiting work softening behavior. It is revealed that during the cold rolling, (${\eta}+{\alpha}$) lamellar colonies gradually change into equiaxed ${\eta}$ and ${\alpha}$ grains due to dynamic recrystallization at room temperature, while pre-existing ${\eta}$ grains are only deformed without recrystallization. Furthermore, cold rolling causes the precipitation of dissolved Al solutes in ${\eta}$ grains. In view of these results, change of (${\eta}+{\alpha}$) phases from lamellar to equiaxed morphology, which results in structural softness and increase in equiaxed ${\eta}/{\alpha}$ grain boundaries with higher mobility, and deterioration of solution hardening by precipitation of Al solutes from ${\eta}$ grains, are thought to contribute to the work softening of Zn-15%Al alloy.

Effect of C/Ti Atom Ratio on the Deformation Behavior of TiCχ Grown by FZ Method at High Temperature

  • Shin, Soon-Gi
    • 한국재료학회지
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    • 제23권7호
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    • pp.373-378
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    • 2013
  • In order to clarify the effect of C/Ti atom ratios(${\chi}$) on the deformation behavior of $TiC_{\chi}$ at high temperature, single crystals having a wide range of ${\chi}$, from 0.56 to 0.96, were deformed by compression test in a temperature range of 1183~2273 K and in a strain rate range of $1.9{\times}10^{-4}{\sim}5.9{\times}10^{-3}s^{-1}$. Before testing, $TiC_{\chi}$ single crystals were grown by the FZ method in a He atmosphere of 0.3MPa. The concentrations of combined carbon were determined by chemical analysis and the lattice parameters by the X-ray powder diffraction technique. It was found that the high temperature deformation behavior observed is the ${\chi}$-less dependent type, including the work softening phenomenon, the critical resolved shear stress, the transition temperature where the deformation mechanism changes, the stress exponent of strain rate and activation energy for deformation. The shape of stress-strain curves of $TiC_{0.96}$, $TiC_{0.85}$ and $TiC_{0.56}$ is seen to be less dependent on ${\chi}$, the work hardening rate after the softening is slightly higher in $TiC_{0.96}$ than in $TiC_{0.85}$ and $TiC_{0.56}$. As ${\chi}$ decreases the work softening becomes less evident and the transition temperature where the work softening disappears, shifts to a lower temperature. The ${\tau}_c$ decreases monotonously with decreasing ${\chi}$ in a range of ${\chi}$ from 0.86 to 0.96. The transition temperature where the deformation mechanism changes shifts to a lower temperature as ${\chi}$ decreases. The activation energy for deformation in the low temperature region also decreased monotonously as ${\chi}$ decreased. The deformation in this temperature region is thought to be governed by the Peierls mechanism.

Coupled testing-modeling approach to ultimate state computation of steel structure with connections for statics and dynamics

  • Imamovic, Ismar;Ibrahimbegovic, Adnan;Mesic, Esad
    • Coupled systems mechanics
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    • 제7권5호
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    • pp.555-581
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    • 2018
  • The moment-resistant steel frames are frequently used as a load-bearing structure of buildings. Global response of a moment-resistant frame structure strongly depends on connections behavior, which can significantly influence the response and load-bearing capacity of a steel frame structure. The analysis of a steel frame with included joints behavior is the main focus of this work. In particular, we analyze the behavior of two connection types through experimental tests, and we propose numerical beam model capable of representing connection behavior. The six experimental tests, under monotonic and cyclic loading, are performed for two different types of structural connections: end plate connection with an extended plate and end plate connection. The proposed damage-plasticity model of Reissner beam is able to capture both hardening and softening response under monotonic and cyclic loading. This model has 18 constitutive parameters, whose identification requires an elaborate procedure, which we illustrate in this work. We also present appropriate loading program and arrangement of measuring equipment, which is crucial for successful identification of constitutive parameters. Finally, throughout several practical examples, we illustrate that the steel structure connections are very important for correct prediction of the global steel frame structure response.

Development of Efficient Curing Sheet for Thermal Insulation Curing of Concrete in Cold Weather

  • Han, Cheon-Goo;Son, Myung-Sik;Choi, Hyun-Kyu
    • 한국건축시공학회지
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    • 제12권3호
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    • pp.291-298
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    • 2012
  • For cold weather concreting, frost damage at early age is generated in the concrete, and problems such as delaying of setting and hardening and lowering of strength manifestation emerge due to the low outside air temperature at the early stage of pouring, making the selection of an effective curing method critically important. Unfortunately, the tent sheet currently used as the curing film for heating insulation at work sites, not only has the problems of inferior permeability and extremely deteriorated airtightness, but a phenomenon of continuous fracturing is also generated along the direction of fabric of the material itself, presenting difficult circumstances for maintaining adequate curing temperature. The aim of this study was to develop an improved bubble sheet type curing film for heating insulation of cold weather concrete by combining mesh-tarpaulin, which has excellent tension properties, with bubble sheet, which offers superior insulation performance. The analysis showed that the improved curing film in which BBS1 is stacked to MT was a suitable replacement for curing films currently in use, as it has better permeability, tension property, and insulation performance than the T type film used at work sites today.

Multiscale modeling of elasto-viscoplastic polycrystals subjected to finite deformations

  • Matous, Karel;Maniatty, Antoinette M.
    • Interaction and multiscale mechanics
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    • 제2권4호
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    • pp.375-396
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    • 2009
  • In the present work, the elasto-viscoplastic behavior, interactions between grains, and the texture evolution in polycrystalline materials subjected to finite deformations are modeled using a multiscale analysis procedure within a finite element framework. Computational homogenization is used to relate the grain (meso) scale to the macroscale. Specifically, a polycrystal is modeled by a material representative volume element (RVE) consisting of an aggregate of grains, and a periodic distribution of such unit cells is considered to describe material behavior locally on the macroscale. The elastic behavior is defined by a hyperelastic potential, and the viscoplastic response is modeled by a simple power law complemented by a work hardening equation. The finite element framework is based on a Lagrangian formulation, where a kinematic split of the deformation gradient into volume preserving and volumetric parts together with a three-field form of the Hu-Washizu variational principle is adopted to create a stable finite element method. Examples involving simple deformations of an aluminum alloy are modeled to predict inhomogeneous fields on the grain scale, and the macroscopic effective stress-strain curve and texture evolution are compared to those obtained using both upper and lower bound models.

박강판의 온도변화에 따른 인장특성 (The Tensile Characteristics of Steel Sheets at Various Temperature Conditions)

  • 이항수;오영근
    • 소성∙가공
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    • 제10권2호
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    • pp.101-110
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    • 2001
  • The thermal problem of press work is classified into two cases. First, the temperature of forming die passively rises due to the heating effect of plastic deformation. The warm forming is the second case in which the external heating is applied to the die and blank holder. So, the purpose of this study is to provide database for the forming characteristics at various temperature conditions. In this study, the tensile test was carried out for the commercial steel sheets such as SCPI and SCP3C with the thickness of 0.7mm and 1.4mm respectively. The tensile strength, total elongation, Lankford value and the flow curve have been obtained at the temperature of $25^{\circ}C$, $50^{\circ}C$, $100^{\circ}C$, $150^{\circ}C$, $200^{\circ}C$, $250^{\circ}C$ and $300^{\circ}C$, respectively. From the results, we can see that both the tensile strength and total elongation decrease as the temperature increases. In the light of anisotropy, the effect of thickness is dominant than the material specs. For the temperature dependency of flow curves, there are only small differences for the work-hardening exponent, and the strength intensity decreases monotonically as temperature increases. The present results we useful as input data for the analysis of sheet metal forming processes with the various temperature conditions.

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