• 제목/요약/키워드: Secondary hardening

검색결과 42건 처리시간 0.026초

Sabkha층 탄산질 모래의 침하특성 및 상부기초의 거동 (Settlement Characteristics of a Large-Scale Foundation over a Sabkha Layer Consisting of Carbonate Sand)

  • 김석주;한희수
    • 지질공학
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    • 제23권3호
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    • pp.247-256
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    • 2013
  • 중동지역의 Sabkha층 탄산질 모래는 낮은 전단강도를 나타내며, 입자파쇄시 내부공극의 외부노출로 인한 즉시침하와 파쇄입자의 재배열로 인한 시간 의존적 이차침하가 발생된다. 현장 대형기초에 의한 Sabkha층의 침하특성을 분석하기 위하여 Hydrotest를 수행하였고, 실내시험 결과와 비교하였다. 삼축압축시험 결과 일차입자파쇄의 정도에 따라 Sabkha층 GL-1.5 m에서 Strain-hardening, GL-7.0 m에서 Strain-perfect, GL-7.5 m에서 Strain-softening 형태의 응력-변형 거동이 나타났다. 일반적으로 전반전단파괴는 입자가 조밀하고 지반의 강도가 큰 경우 발생하나 Sabkha층 탄산질 모래에서는 Strain-softening 거동 발생시 Strain-hardening과 Strain-perfect 거동에 비하여 오히려 입자파쇄 강도가 작아지는 현상이 발생하였다. 이러한 응력-변형 특성은 상대밀도 증가시 전단강도가 증가하는 석영질 모래의 특성과는 상이한 것이다. 현장 Hydrotest시 입자파쇄의 영향으로 간극수압 소산 후에도 지속적인 이차압축침하가 발생되었으며, 입자파쇄응력이 상대적으로 작고 Strain-softening 거동, 혹은 Strain-perfect 거동을 나타낸 하부 Sabkha층의 입자파쇄가 기초침하에 지배적인 영향을 미친 것으로 판단된다.

치과용 합착제의 선택 (Selection of Dental Cements)

  • 성무경
    • 대한심미치과학회지
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    • 제8권1호
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    • pp.76-82
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    • 1999
  • Zinc phosphate cement has long been the material of choice for permanent luting of cast restorations, and through many years of use has been considered effective to retain castings. However, cast restorations cemented with this material have been susceptible to secondary caries. Glass ionomer luting agents become available in the late 1970s. These material s, through release of fluoride, show considerable promise as a means of reducing secondary caries. Other favorable traits include significantly less disintegration in vivo than zinc phosphate cements, a film thickness comparable to that of zinc phosphate cement, and adhesion to tooth structure. Compomer materials were created in 1993 as a filling material for deciduous teeth, cervical lesions, and class III cavities. In the meantime, compomer have been developed as chemical hardening cements for cast gold restorations. The aim of this paper is to review the articles on luting cements to help the choice of dental cements.

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발전플렌트용 9Cr 페라이트 내열강의 미세조직과 강도특성 (Microstructure and Strength Characteristic of 9Cr Ferritic Heat-resistant Steel Applied to the Power Plants)

  • 강창룡;이종문;이규현;이문용;성장현
    • 열처리공학회지
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    • 제13권1호
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    • pp.27-34
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    • 2000
  • This present study were investigated effect of Ni contents on the microstructure and strength characteristic in 9Cr ferritic heat-resistant steel added 1.7%W in place of Mo in order to restrain laves phase formation. The result obtained from this study are as follow. Volume fraction, number of particles per unite area and particle size of carbide decreased with increase of Ni contents. Other side, carbides of $M_{23}C_6$ type was mainly precipitated in this steel, but laves phases could not precipitated in spite of increasing of aging time. With increase of tempering temperature, hardness was increased, and maximum value was showed around 873k by secondary hardening due to precipitation of $W_2C$ type carbide and then, was decreased. Tensile and yield strength due to decrease precipitation amount of carbide and number of particles per unite area was decreased, but elongation and impact value was increased. In case of aged specimen after tempering than tempered specimen, strength was higher and elongation was lower due to increasing of precipitated amount of carbide and number of particles per unite area.

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Ultra-low cycle fatigue tests of Class 1 H-shaped steel beams under cyclic pure bending

  • Zhao, Xianzhong;Tian, Yafeng;Jia, Liang-Jiu;Zhang, Tao
    • Steel and Composite Structures
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    • 제26권4호
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    • pp.439-452
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    • 2018
  • This paper presents experimental and numerical study on buckling behaviors and hysteretic performance of Class 1 H-shaped steel beam subjected to cyclic pure bending within the scope of ultra-low cycle fatigue (ULCF). A loading device was designed to achieve the pure bending loading condition and 4 H-shaped specimens with a small width-to-thickness ratio were tested under 4 different loading histories. The emphasis of this work is on the impacts induced by local buckling and subsequent ductile fracture. The experimental and numerical results indicate that the specimen failure is mainly induced by elasto-plastic local buckling, and is closely correlated with the plastic straining history. Compared with monotonic loading, the elasto-plastic local buckling can occur at a much smaller displacement amplitude due to a number of preceding plastic reversals with relative small strain amplitudes, which is mainly correlated with decreasing tangent modulus of the material under cyclic straining. Ductile fracture is found to be a secondary factor leading to deterioration of the load-carrying capacity. In addition, a new ULCF life evaluation method is proposed for the specimens using the concept of energy decomposition, where the cumulative plastic energy is classified into two categories as isotropic hardening and kinematic hardening correlated. A linear correlation between the two energies is found and formulated, which compares well with the experimental results.

Fe-Co기 고인성 고강도강의 반복 열처리 거동 - Part 1. 조직제어 (The Repeat Heat Treatment Behavior of Double Remelted Fe-Co Ultra-high Strength Steel. - Part. 1 Microstructure Control)

  • 윤보희;박경태;이태혁;김재훈;김홍규;이성;이종현
    • 한국주조공학회지
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    • 제32권1호
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    • pp.32-37
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    • 2012
  • In this study, microstructural evaluation was carried out on secondary hardening type ultrahigh strength steel, Fe-Co-Ni composition. This paper as a first part of whole research presented the microstructural behavior by cyclic heat treatment. The cyclic heat treatment method includes normalizing, stress relieving, solution treatment and aging. Especially, solution treatments performed triple times to get maximized solution hardening. Phase transformation and microstructure were observed by using optical microscope (OM), Electron back-scattered diffraction (EBSD) and X-ray stress analyzer. During the triple solution treatment, size of grain boundary was dramatically decreased by generating a packet from the martensite transformation of residual austenite in the inner part of grain, whereas the hardness increase was not significant.

응력과 온도에 따른 ABS의 크리프특성에 관한 연구 (A Study of Creep Characteristics of ABS (Acrylonitrile Butadiene Styrene) for Different Stress Levels and Temperatures)

  • 강석춘
    • 한국정밀공학회지
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    • 제29권10호
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    • pp.1137-1143
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    • 2012
  • Creep characteristic is an important failure mechanism when evaluating engineering materials that are soft material as polymers or used as mechanical elements at high temperatures. One of the popular thermo-plastic polymers, Acrylonitrile Butadiene Styrene (ABS) which is used broadly for machine elements material, as it has excellent mechanical properties such as impact resistance, toughness and stiffness compared to other polymers, was studied for creep characteristic at different levels of stress and temperatures. From the experimental results, the creep limit of ABS at room temperature is 80 % of tensile strength which is higher than PE and lower than PC or PMMA. Also the creep limits decreased to linearly as the temperatures increased, up to $80^{\circ}C$ which is the softening temperature of Butadiene ($82^{\circ}C$). Also the secondary stage of creep among the three creep stages for different levels of stress and temperature was non-existent which occurred for many metals by strain hardening effect.

용탕단조 Mg-Zn-Zr 합금의 미세조직 및 강화기구 (Microstructure and Strengthening Behavior in Squeeze Cast Mg-Zn by Addition of Zr)

  • 오상섭;황영하;김도향;홍준표;박익민
    • 한국주조공학회지
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    • 제19권1호
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    • pp.38-46
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    • 1999
  • Microstructural characteristics and strengthening behavior in Mg-5wt%Zn-0.6wtZr alloys have been investigated by a combination of optical, secondary electron and transmission electron microscopy, differential thermal analysis, and hardness and tensile, creep property measurements. The result have been compared with those of Mg-5wt%Zn alloys. The as-squeeze cast microstructure consisted of dendrite ${\alpha}-Mg$, interdendrite or intergranular $Mg_7Zn_3$ and fine dispersoids of $ZnZr_2$. The size of secondary solidification phases in Mg-5wt%Zn-0.6wtZr alloys was significantly smaller than that of the Mg-5wt%Zn alloys due to the existence of fine dispersoid of $ZnZr_2$ which also effected the refinement of grain size. TEM study showed that the main cause of age hardening is formation of fine rodlike ${\beta}_1\;'$ precipitates as well as fine $ZnZr_2$ dispersoids. Due to the observed microstructural characteristics mechanical propeties of Mg-5wt%Zn-0.6wtZr alloys was found to be superior to those of Mg-5wt%Zn alloys.

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열하중 및 기계하중이 작용하는 원주 방향 균열 배관에 대한 V-계수 평가 (V-Factor Estimation Under Thermal and Mechanical Stress for Circumferentially Cracked Cylinder)

  • 송태광;오창균;김윤재
    • 대한기계학회논문집A
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    • 제32권12호
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    • pp.1123-1131
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    • 2008
  • This paper provides V-factor estimation under combined mechanical and thermal load for circumferential cracks. Results are based on finite element analyses and effect of types and magnitudes of the thermal stress, crack geometry, the loading mode and plastic strain hardening on variations of the V-factor are investigated. The results of finite element analyses are compared with R6 values. As a result, it is shown that R6 gives generally conservative results. The conservatism is especially increased for the combination of large mechanical and thermal load. As a result, new estimation method which uses failure assessment line in R6 is proposed for V-factor and gives less conservative results.

분말 고속도로공구강의 기계적 특성에 미치는 열처리 영향 (Effect of Heat Treatment on the Mechanical Properties of P/M High Speed Steel)

  • 김용진
    • 한국분말재료학회지
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    • 제4권3호
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    • pp.222-229
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    • 1997
  • A P/M high speed steel of ASP 30 grade was austenitized, gas quenched and tempered at various conditional. The mechanical properties such as hardness, bend strength and fracture toughness were evaluated after heat treatment. The microstructure and the type and volume fraction of carbides were analyzed by an optical microscope, image analyzer and XRD. The primary carbides after the heat treatment were MC and $M_6C$ type. The volume of the total carbide varied from 10 to 15% depending on the austenitizing and tempering temperature. The tempering temperature for maximum hardness was at around 52$0^{\circ}C$. But the maximum bend strength was obtained at about 55$0^{\circ}C$. The fracture toughness was largely affected by the presence of retained austenite after gas quenching and secondary hardening during tempering.

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Effect of Carbon Addition and Sintering Temperature on Densification and Microstructural Evolution of Sinter-Hardening Alloys Steels

  • Verma, N.;Anand, S.;Upadhyaya, A.
    • 한국분말야금학회:학술대회논문집
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    • 한국분말야금학회 2006년도 Extended Abstracts of 2006 POWDER METALLURGY World Congress Part 1
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    • pp.557-558
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    • 2006
  • In all conventional sintered PM products, the pores present are of two types, primary and secondary. Primary pores forming during compaction and latter during sintering, due to penetration of formed liquid through the matrix grain boundary. Effect of carbon addition on diffusion of Cu in SH737-2Cu system was investigated. After compaction and transient liquid phase sintering at $1120^{\circ}C$ and $1180^{\circ}C$, samples were characterized for densification, showing rise in sintering density and reduction in swelling on carbon addition. Quantitative microstructural characterization (shape factor and pore size) revealed bimodal distribution for 0% carbon, more rounded pores for 0.9% carbon and higher sintering temperature, and pore coarsening at higher sintering temperature.

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