• Title/Summary/Keyword: 템퍼링처리

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Effects of Heat-Treatment and the Addition of Copper on the Processing Window of 3.6wt%C-2.5wt%Si Austempered Ductile Cast Iron (3.6wt%C-2.5wt%Si 오스템퍼드 구상흑연주철의 프로세싱 윈도우에 미치는 열처리 및 구리 첨가의 영향)

  • Kwon, Do-Young;Oh, Jeong-Hyeok;Kim, Gi-Yeob;Kwon, Hae-Wook
    • Journal of Korea Foundry Society
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    • v.41 no.4
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    • pp.331-341
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    • 2021
  • The effects of austempering temperature, austenitizing temperature and time, added copper content and prior heat-treatment on the processing window of 3.6wt%C-2.5wt%Si ductile cast iron during austempering. The maximum processing window was obtained at 350℃ of austempering temperature. The processing window was increased with increased austenitizing temperature from 850 to 900℃; however, it decreased at 950℃. The processing window was increased with increased austenitizing time from 0.5 to 2 hours and rather decreased for 4 hours. The optimum condition of austenitizing was obained at 900℃ for 2 hours. The processing window was increased with copper content added in the range of 0.0~0.8wt%. The processing window was increased by prior normalizing heat-treatment and decreased by prior annealing in comparison with that for the as-cast state,

A Study on the Dry Wear Characteristics of Austempered Ductile Cast Iron (오스템퍼링 處理된 球狀黑鉛鑄鐵의 乾燥磨滅 特性에 관한 硏究)

  • 강명순;전태옥;김형자;박흥식
    • Transactions of the Korean Society of Mechanical Engineers
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    • v.12 no.3
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    • pp.489-496
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    • 1988
  • This paper is studied to know wear mechanism in variation of austempering temperature and holding time of austempered ductile cast iron against mating material SM45C hardened by heat treatment. The wear tests were carried out by rubbing the annular surface of two test pieces in dry sliding friction. The wear mechanism was investigated by scanning electron microscopy and the retained austenite volume fraction was investigated by X-ray diffractometer. The experimental results show that the wear characteristics depend largely on the oxidation of the testing materials which is influenced by the sliding velocity and distance. The retained austenite has a negative effect during frictional contact because it has increased severe wear by softened surface layer. It is shown experimentally that hard metals have lower frictional resistance and hence the resistance to adhesion is increased due to stronger interatomic linking bonds and increase in the surface energy.

A Study on Solidification and Wear Character of Multi-alloyed White Cast Iron

  • Yu, Sung-Kon;Matsubara, Yasuhiro
    • Journal of Korea Foundry Society
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    • v.20 no.4
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    • pp.260-268
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    • 2000
  • 응고 및 마모거동을 연구하기 위하여 Cr, V, Mo 및 W의 조성이 다른 3종류의 백주철을 주조하였다. 고주파유도용해로에서 장입시켜 1873K까지 승온시켜 장입원료들을 모두 용해시킨 후 1823K에서 Y블럭주형에 주입하였다. 얻어진 3종류의 백주철조성은 다음과 같다: Fe-3%C-10%Cr-5%Mo-5%W(합금1), Fe-3%C-10%V-5%Mo-5%W(합금2) 및 Fe-3%C-17%Cr-3%V(합금 3)응고과정을 추적하기 위하여 각 시편으로부터 50g을 채취한 후 알루미나도가니에 넣고 실리콘카바이드로를 사용하여 1723K의 알콘분위기하에서 재용해를 시켰다. 용금을 10K/분의 속도로 냉각시키면서 열분석을 행하였으며 도중 몇 차례 소입 실험을 병행하였다.합금1의 경우 초정오스테나이트, (오스테나이트+$M_7C_3$)공정, (오스테나이트+$M_6C$)공정, 합금2의 경우 초정 MC, 초정오스테나이트, (오스테나이트+MC)공정 , (오스테나이트+$M_2C$)공정, 합금3의 경우 초정 $M7C_3$와 (오스테나이트+$M_7C_3$)공정으로 구성되어 있었다. 주방상태, 균질화열처러상태, 공냉상태, 템퍼링상태에서 내마모시험을 행하였다. 먼저 주방상태시 편을 진공분위기하에서 1223K에서 5시간동안 균질화열처리를 행한후 로냉을 시켰다. 다시 이 시편을 1323K에서 2시간 유지후 강제공냉을 시켰으며 강제공냉된 시편을 573K에서 3시간동안 템퍼링처리를 하였다. 내마모시험은 120 mesh마모지에 10N의 하중을 가하여 실시하였다. 각 사이클마다 무게감소를 측정하였으며 8번 반복실험을 하였다. 마모량은 균질화열처리시편, 주방상태시편, 템퍼링시편, 공냉시편의 순으로 감소하였다. 합금2가 마모량이 가장 적었으며 합금3이 가장 많았다. 합금2의 마모량이 가장 적은 이유는 조직이 초정 MC, 공정 MC 및 공정 M2C로 구성되어 있기 때문으로 사료된다.주방상태에서 기지조직은 퍼얼라이트이었으나 열처리를 통하여 마르텐사이트, 템퍼드마르텐사이트, 잔류오스테나이트로 변태하였다. 이상의 결과를 종합해 보면 MC가 내마모성에 가장 기여하는 조직으로 판단되어진다.

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Effect of tempering treatment on the mechanical properties in 12Cr heat resistant steel with ferrite phase (페라이트상을 갖는 12Cr 내열강의 기계적성질에 미치는 템퍼링 처리의 영향)

  • Kang, C.Y.;Lee, S.M.;Cho, Y.K.;Byun, S.S.;Jung, B.H.
    • Journal of Power System Engineering
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    • v.15 no.2
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    • pp.49-54
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    • 2011
  • Effect of tempering treatment on the mechanical properties of 12Cr heat resistant steel with ferrite phase was investigate in this study. As time and temperature of tempering treatment were increase, C and Cr contents in matrix structure were decreased. Due to increase of the amount of Cr26C6 type carbides. It was confirmed in mechanical properties experimental that tensile strength and hardness were decreased, while elongation and impact value were, increased with increasing the time and temperature.

The Properties of STS 630 Alloy by Plasma nitriding Treatment (플라즈마질화 처리에 따른 STS630합금의 특성)

  • Jeong, Yong-Ho;Song, Ho-Cheol;Jeong, Yeon-Ok
    • Proceedings of the Korean Institute of Surface Engineering Conference
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    • 2016.11a
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    • pp.138-138
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    • 2016
  • 의료용 공구로 사용되는 합금은 마르텐사이트계 스테인리스강의 대표 강종인 420스테인리스강이 사용되며, 이 합금은 고온의 오스테나이트 상태에서 ?칭하면 마르텐사이트 조직으로 변태하여 현저하게 경화하는 특징을 가지고 있으며, 오스테나이트화 후 템퍼링시 우수한 기계적 성질이 얻어진다. 그러나 템퍼링 온도의 영향으로 석출탄화물이 형성되어 기계적 성질이나 내식성이 저하되는 단점이 있다. 본 연구에서는 STS 420스테인리스강의 템퍼링 온도에 의한 내식성 문제점을 개선시키기 위해 STS630 합금을 사용하여 다양한 석출 열처리 조건 및 플라즈마 질화공정을 연구하였다. 구입한 소재의 균일한 성분 조정을 통한 미세 편석 및 물성부여를 위한 균질화 조건 도출 열처리를 실시하였으며, STS630의 고용화열처리는 오스테나이트 균일조직이 되는 온도영역으로 가열하여 급냉하는 것으로 마르텐사이트 변태시키는 열처리를 진행하였으며, 열처리온도는 $1020{\sim}1060^{\circ}C$로 설정하였다. 석출경화 열처리는 $460{\sim}480^{\circ}C$$500{\sim}520^{\circ}C$의 온도에서 실시, 제품에 따른 인성을 부여하였으며, 질화공정은 플라즈마 장비를 이용하여 플라즈마 가열 ${\rightarrow}$플라즈마 이온질화를 통하여 가장 최적의 공정을 도출하였다.- 질화가 마무리 된 시료는 내식성 및 물성 평가를 통해 제품으로서의 특성을 평가하였다. 석출경화 열처리에 의해 STS420합금에 버금가는 인장강도 및 경도값이 나타났으며, 플라즈마 질화에 따라 물성 값의 향상이 나타났다. 용출실험결과 STS420합금의 경우 Fe, Cr원소의 용출이 나타나며 변색이 형성되었으나 STS630합금의 경우 그 현상이 미미하였다.

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Effect of Cu on the mechanical Properties and damping capacity of austempered ductile cast iron (오스템퍼링 처리한 구상흑연주철의 기계적 성질 및 감쇠능에 미치는 Cu의 영향)

  • Lee, K.H.;Kang, C.Y.
    • Journal of Power System Engineering
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    • v.12 no.3
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    • pp.72-77
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    • 2008
  • This study was investigated to know the effect of Cu addition on austempered ductile cast iron at various temperatures and times. Test results showed that the volume fraction of retained austenite and the carbon contents of retained austenite showed the greatest value at $400^{\circ}C$. Also, in case of specimens having more Cu contents, the volume fraction of retained austenite and the carbon contents of retained austenite showed the lower value. After austempering treatment, tensile strength and Impact value increased, but elongation decreased. With increasing austempering treatment temperature, tensile strength, elongation, and impact value decreased. In case of specimen having more Cu contents, tensile strength showed the higher value, but elongation showed the lower value. Damping capacity was decreased by austempering treatment and was not affected on austempering temperature and time. In case of specimen having more Cu contents, damping capacity showed the higher value.

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Effect of Microstructure on the Damping Capacity of 12Cr Martensitic Heat-resisting Steel (12Cr 마르텐사이트계 내열강의 감쇠능에 미치는 미세조직의 영향)

  • Lee, S.M.;Kang, C.Y.
    • Journal of Power System Engineering
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    • v.14 no.2
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    • pp.78-83
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    • 2010
  • This study was carried out to investigate the effect of microstructure on the damping capacity of 12Cr martensite heat-resisting steels, in case of the specimen with martensite phase contained the volume faction of ferrite phases, under 5%. The damping capacity was decreased with the increase of solution treatment temperature and time. While it was increased with the increase of tempering temperature and time. The damping capacity was higher in case of specimen with martensite single phase structure than the specimen with martensite phase contained of ferrite phases.

Effect of Heat Treatments on the Microstructures and Mechanical Properties of OCTG (유정용 강관의 미세조직 및 기계적 성질에 미치는 열처리의 영향)

  • Choi, Jong-Min;Noh, Sang-Woo;Yi, Won-Jae
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.18 no.5
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    • pp.252-261
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    • 2017
  • This study examined the effect of heat treatment on the microstructure and mechanical properties of J55 line pipe steel. The experiments were carried out at under the following various conditions: austenization temperature($880^{\circ}C$, $910^{\circ}C$, $940^{\circ}C$), cooling methods(water quenching, oil quenching) and tempering temperature(none, $550^{\circ}C$, $650^{\circ}C$). The phase diagram and CCT curve were simulated based on the chemical composition of J55 steel to predict the microstructures. In the results, A1, A3 temperature decreased. As the austenization temperature increased, existing austenite grains grew exponentially which seriously degraded their mechanical properties. Various microstructures, including martensite, bainite, ferrite, and pearlite, developed in accordance with the heat treatments and were closely correlated with hardness, tensile strength and toughness. Martensite was formed after water quenching, but bainite and ferrite appeared after oil quenching. FeC precipitation formed and coarsened during tempering, which improved their toughness.

Effect of Fully and Semi Austempering Treament on the Fatigue Properties of Ductile Cast Iron (완전 및 부분 오스템퍼링 처리가 구상흑연주철의 피로특성에 미치는 영향)

  • Lim Bok-kyu;Hwang Jung-gak;Kim Dong-Youl;Kim Min-gun
    • Transactions of the Korean Society of Mechanical Engineers A
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    • v.29 no.3 s.234
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    • pp.462-469
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    • 2005
  • Single phase bainite structure which is obtained by the conventional austempering treatment reduces the ductility of ductile cast iron. Because of the reduction of ductility it is possible to worsen the fatigue properties. Therefore, semi austempered ductile iron which is treated from ${\alpha}+{\gamma}$ is prepared to investigate the static strength and fatigue properties in comparison with fully austempered ductile iron (is treated from ${\gamma}$). In spite of semi austempered ductile iron shows the $86{\%}$ increase of ductility. Also, semi austempered ductile iron shows the higher fatigue limit and lower fatigue crack growth rate as compared with fully austempered ductile iron. By the fractographical analysis, it is revealed that the ferrite obtained by semi austempering process brings about the plastic deformation(ductile striation) of crack tip and gives the prior path of crack propagation. The relatively low crack growth rate in semi austempered specimen is caused by above fractographical reasons.