• 제목/요약/키워드: Sintering Stress

검색결과 146건 처리시간 0.029초

Improved Physical Properties of Ni-doped $BiFeO_3$ Ceramic

  • Yoo, Y.J.;Park, J.S.;Kang, J.H.;Kim, J.;Lee, B.W.;Kim, K.W.;Lee, Y.P.
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2012년도 제42회 동계 정기 학술대회 초록집
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    • pp.250-250
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    • 2012
  • Recently, multiferroic materials have attracted much attention due to their fascinating fundamental physical properties and potential technological applications in magnetic/ferroelectric data storage systems, quantum electromagnets, spintronics, and sensor devices. Among single-phase multiferroic materials, $BiFeO_3$, in particular, has received considerable attention because of its very interesting magnetoelectric properties for application to spintronics. Enhanced ferromagnetism was found by Fe-site ion substitution with magnetic ions. In this study, $BiFe_{1-x}Ni_xO_3$ (x=0 and 0.05) bulk ceramic compounds were prepared by solid-state reaction and rapid sintering. High-purity $Bi_2O_3$, $Fe_3O_4$ and NiO powders were mixed with the stoichiometric proportions, and calcined at $450^{\circ}C$ for 24 h to produce $BiFe_{1-x}Ni_xO_3$. Then, the samples were directly put into the oven, which was heated up to $800^{\circ}C$ and sintered in air for 20 min. The crystalline structure of samples was investigated at room temperature by using a Rigaku Miniflex powder diffractometer. The Raman measurements were carried out with a Raman spectrometer with 514.5-nm-excitation Ar+-laser source under air ambient condition on a focused area of $1-{\mu}m$ diameter. The field-dependent magnetization and the temperature-dependent magnetization measurements were performed with a vibrating-sample magnetometer. The x-ray diffraction study demonstrates the compressive stress due to Ni substitution at the Fe site. $BiFe_{0.95}Ni_{0.05}O_3$ exhibits the rhombohedral perovskite structure R3c, similar to $BiFeO_3$. The lattice constant of $BiFe_{0.95}Ni_{0.05}O_3$ is smaller than of $BiFeO_3$ because of the smaller ionic radius of Ni3+ than that of Fe3+. The field-dependent magnetization of $BiFe_{0.95}Ni_{0.05}O_3$ exhibits a clear hysteresis loop at 300 K. The magnetic properties of $BiFe_{0.95}Ni_{0.05}O_3$ were improved at room temperature because of the existence of structurally compressive stress.

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Stellite bearings for liquid Zn-/Al-Systems with advanced chemical and physical properties by Mechanical Alloying and Standard-PM-Route

  • Zoz, H.;Benz, H.U.;Huettebraeucker, K.;Furken, L.;Ren, H.;Reichardt, R.
    • 한국분말야금학회:학술대회논문집
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    • 한국분말야금학회 2000년도 춘계학술강연 및 발표대회 강연 및 발표논문 초록집
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    • pp.9-10
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    • 2000
  • An important business-field of world-wide steel-industry is the coating of thin metal-sheets with zinc, zinc-aluminum and aluminum based materials. These products mostly go into automotive industry. in particular for the car-body. into building and construction industry as well as household appliances. Due to mass-production, the processing is done in large continuously operating plants where the mostly cold-rolled metal-strip as the substrate is handled in coils up to 40 tons unwind before and rolled up again after passing the processing plant which includes cleaning, annealing, hot-dip galvanizing / aluminizing and chemical treatment. In the liquid Zn, Zn-AI, AI-Zn and AI-Si bathes a combined action of corrosion and wear under high temperature and high stress onto the transfer components (rolls) accounts for major economic losses. Most critical here are the bearing systems of these rolls operating in the liquid system. Rolls in liquid system can not be avoided as they are needed to transfer the steel-strip into and out of the crucible. Since several years, ceramic roller bearings are tested here [1.2], however, in particular due to uncontrollable Slag-impurities within the hot bath [3], slide bearings are still expected to be of a higher potential [4]. The today's state of the art is the application of slide bearings based on Stellite\ulcorneragainst Stellite which is in general a 50-60 wt% Co-matrix with incorporated Cr- and W-carbides and other composites. Indeed Stellite is used as the bearing-material as of it's chemical properties (does not go into solution), the physical properties in particular with poor lubricating properties are not satisfying at all. To increase the Sliding behavior in the bearing system, about 0.15-0.2 wt% of lead has been added into the hot-bath in the past. Due to environmental regulations. this had to be reduced dramatically_ This together with the heavily increasing production rates expressed by increased velocity of the substrate-steel-band up to 200 m/min and increased tractate power up to 10 tons in modern plants. leads to life times of the bearings of a few up to several days only. To improve this situation. the Mechanical Alloying (MA) TeChnique [5.6.7.8] is used to prOduce advanced Stellite-based bearing materials. A lubricating phase is introduced into Stellite-powder-material by MA, the composite-powder-particles are coated by High Energy Milling (HEM) in order to produce bearing-bushes of approximately 12 kg by Sintering, Liquid Phase Sintering (LPS) and Hot Isostatic Pressing (HIP). The chemical and physical behavior of samples as well as the bearing systems in the hot galvanizing / aluminizing plant are discussed. DependenCies like lubricant material and composite, LPS-binder and composite, particle shape and PM-route with respect to achievable density. (temperature--) shock-reSistibility and corrosive-wear behavior will be described. The materials are characterized by particle size analysis (laser diffraction), scanning electron microscopy and X-ray diffraction. corrosive-wear behavior is determined using a special cylinder-in-bush apparatus (CIBA) as well as field-test in real production condition. Part I of this work describes the initial testing phase where different sample materials are produced, characterized, consolidated and tested in the CIBA under a common AI-Zn-system. The results are discussed and the material-system for the large components to be produced for the field test in real production condition is decided. Outlook: Part II of this work will describe the field test in a hot-dip-galvanizing/aluminizing plant of the mechanically alloyed bearing bushes under aluminum-rich liquid metal. Alter testing, the bushes will be characterized and obtained results with respect to wear. expected lifetime, surface roughness and infiltration will be discussed. Part III of this project will describe a second initial testing phase where the won results of part 1+11 will be transferred to the AI-Si system. Part IV of this project will describe the field test in a hot-dip-aluminizing plant of the mechanically alloyed bearing bushes under aluminum liquid metal. After testing. the bushes will be characterized and obtained results with respect to wear. expected lifetime, surface roughness and infiltration will be discussed.

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터보차저 노즐 슬라이드 조인트의 정형공정에 관한 연구 (Study on the shaping process of turbocharger nozzle slide joint)

  • 김봉주;이선봉
    • 한국산학기술학회논문지
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    • 제18권1호
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    • pp.107-114
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    • 2017
  • 터보차저는 배기가스로 구동되는 엔진 과급기를 말하며, 배기에너지를 이용하여 배기통로에 연결된 터빈의 회전력을 변화시켜, 혼합 가스의 충전효율을 높여 출력과 연비를 향상 시키는 부품이다. 이러한 목적에 따라 과급을 조절해주는 것이 중요하며, 핵심 부품 중 노즐 슬라이드 조인트가 있다. 소재는 현재 오스테나이트 계 스테인리스강으로 높은 내열성과 내식성 등의 우수한 기계적 성질을 이용하고 있다. 그러나 절삭성이 나쁘기 때문에 절삭가공에 의해 복잡한 형상의 제품을 만드는데 어려운 점이 많다. 현재 노즐 슬라이드 조인트의 가공방법은 금속분말 사출성형후 치수정밀도를 위해 절삭가공을 행하고 있다. 따라서 본 연구에서는 Nitronic 60을 이용하여 터보차저 과급유량을 조절해주는 노즐 슬라이드 조인트의 제작 공정에서 절삭가공이 필요 없는 정형가공 공정을 제안하기 위하여, 기계적 특징에 영향과 연관이 있는 소결온도, 제품의 응력 및 변형률, 형상과 관련이 있는 모따기 펀치각도 및 펀치의 곡률반경을 설계변수로 선정하였다. 그에 따라 유한요소해석과 실험계획법인 다구찌법 및 SN비를 이용하여 가장 좋은 공정 조건을 제안하였다. 최종제품과 유한요소해석 결과의 상대밀도 및 정수압을 비교하여 경향이 일치함을 알 수 있었다. 따라서 다구찌법을 이용한 금속분말의 성형공정 설계에 유용하게 적용할 수 있을 것으로 판단된다.

Annealing of Co-Cr dental alloy: effects on nanostructure and Rockwell hardness

  • Ayyildiz, Simel;Soylu, Elif Hilal;ide, Semra;Kilic, Selim;Sipahi, Cumhur;Piskin, Bulent;Gokce, Hasan Suat
    • The Journal of Advanced Prosthodontics
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    • 제5권4호
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    • pp.471-478
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    • 2013
  • PURPOSE. The aim of the study was to evaluate the effect of annealing on the nanostructure and hardness of Co-Cr metal ceramic samples that were fabricated with a direct metal laser sintering (DMLS) technique. MATERIALS AND METHODS. Five groups of Co-Cr dental alloy samples were manufactured in a rectangular form measuring $4{\times}2{\times}2$ mm. Samples fabricated by a conventional casting technique (Group I) and prefabricated milling blanks (Group II) were examined as conventional technique groups. The DMLS samples were randomly divided into three groups as not annealed (Group III), annealed in argon atmosphere (Group IV), or annealed in oxygen atmosphere (Group V). The nanostructure was examined with the small-angle X-ray scattering method. The Rockwell hardness test was used to measure the hardness changes in each group, and the means and standard deviations were statistically analyzed by one-way ANOVA for comparison of continuous variables and Tukey's HSD test was used for post hoc analysis. P values of <.05 were accepted as statistically significant. RESULTS. The general nanostructures of the samples were composed of small spherical entities stacked atop one another in dendritic form. All groups also displayed different hardness values depending on the manufacturing technique. The annealing procedure and environment directly affected both the nanostructure and hardness of the Co-Cr alloy. Group III exhibited a non-homogeneous structure and increased hardness ($48.16{\pm}3.02$ HRC) because the annealing process was incomplete and the inner stress was not relieved. Annealing in argon atmosphere of Group IV not only relieved the inner stresses but also decreased the hardness ($27.40{\pm}3.98$ HRC). The results of fitting function presented that Group IV was the most homogeneous product as the minimum bilayer thickness was measured (7.11 ${\AA}$). CONCLUSION. After the manufacturing with DMLS technique, annealing in argon atmosphere is an essential process for Co-Cr metal ceramic substructures. The dentists should be familiar with the materials that are used in clinic for prosthodontics treatments.

알루미나(Al2O3)를 활용한 3D 노즐 프린팅 기술 연구 (Investigation of alumina(Al2O3) 3D nozzle printing process)

  • 안태규;한규성;김지훈
    • 한국산학기술학회논문지
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    • 제20권12호
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    • pp.247-253
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    • 2019
  • 최근 3D 프린팅 산업은 다양한 형상의 세라믹 부품을 간소화된 공정으로 제조 가능하여 많은 기대를 받고 있다. 본 연구에서는 세라믹 3D 프린팅을 통하여 알루미나(Alumina) 제품을 구현하기 위하여 3D 프린팅용 점탄성 페이스트(Paste)를 제조하였다. 점탄성 특성은 세라믹 3D 프린팅 공정에서 아주 중요한 역할을 한다. 노즐을 통한 세라믹 페이스트의 압출 시에는 흐름 특성을 가져야 하며, 인쇄되어 정확한 자리에 인쇄되어 안착한 후에는 고체처럼 작동하여 형상을 유지하여야 한다. 이러한 점탄성 특성을 부여하기 위하여 페이스트를 제조할 때 엘라스토머(Elastomer) 등의 첨가물을 첨가하였고, 이렇게 제조된 페이스트의 유변학적 특성을 분석한 결과 점탄성 특성을 보이는 것을 확인하였다. 하지만, 엘라스토머의 함량에 따라 점탄성 특성이 다름을 확인하여, 점탄성 특성의 각 지표가 실질적인 인쇄성에 어떠한 영향을 미치는지 확인하기 위하여 다양한 형태로 인쇄성 평가를 진행하였다. 인쇄성 평가 결과 높은 항복 응력을 가지는 페이스트가 인쇄성이 우수함을 확인하였다. 이렇게 개발된 알루미나 인쇄물의 심미성을 증가시키기 위하여 고온에서 소결시에도 안정적으로 발색효과가 있는 세라믹 안료를 제조된 페이스트에 혼합하여 1300 ℃에서 고온 소결을 진행하고, 소결 후 발색 효과를 확인하였다.

치과용 재료의 적층가공에 대한 문헌고찰 (Review on additive manufacturing of dental materials)

  • 원선;강현구;고경호;허윤혁;박찬진;조리라
    • 구강회복응용과학지
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    • 제37권1호
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    • pp.1-15
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    • 2021
  • 치과용 재료의 적층가공제작은 기존 제작방식에 비해 복잡한 형태까지 제작할 수 있으며 절삭가공에 비해서도 기구나 재료의 소모가 적어 지속가능성이 장점으로 대두되고 있다. 적층가공 제작은 7가지 방식으로 분류할 수 있는데, 폴리머는 적층가공에 가장 적합한 재료로 용기중합방식으로 제작하며 기존 자가중합방식에 비해 높은 물성과 적합도를 가져 상용화에 더 적합하지만 상대적으로 낮은 강도로 인해 임시수복물로 주로 이용된다. 금속은 PBF (powder bed fusion) 방식을 주로 이용하며 주조방식에 비해 파괴인성과 밀도가 높지만 잔류응력이 높아 이를 제거하기 위한 후처리방식에 대한 연구가 필요하다. 세라믹은 분말과 레진폴리머를 혼합한 재료를 용기중합하는 방식이 일반적이다. 제작 후 폴리머제거나 소결과 같은 후처리 과정이 복잡하다. 상용화되려면 세라믹 적층가공에 의한 결과물의 낮은 강도와 체적정확성이 개선되어야 한다. 적층가공은 어떤 재료이건 공정조건에 따라 물성과 표면환경이 달라지므로 가장 적합한 공정조건을 찾기 위한 연구가 더 많이 필요하다고 사료된다.