high temperature mechanical characterisation of an alumina

high temperature mechanical characterisation of an alumina refractory concrete for blast furnace main trough: part i. general context

High temperature mechanical characterisation of an alumina refractory concrete for Blast Furnace main trough: Part I. General context

1/11/2008 · High temperature mechanical characterisation of an alumina refractory concrete for Blast Furnace main trough: It usually contains high alumina cement (so that the CaO content is between 0.2% and 1%), Al 2 O 3 granulates and fine particles,

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high-temperature mechanical characterisation of an alumina refractory concrete for blast furnace main trough: part ii. material behaviour

High-temperature mechanical characterisation of an alumina refractory concrete for Blast Furnace main trough: PART II. Material behaviour

1/11/2008 · This paper deals with the experimental mechanical characterisation of a high alumina carbon containing refractory concrete at temperatures ranging from room to high temperature (1500 °C). Uniaxial compression, indirect tensile, creep and cyclic

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high temperature mechanical characterisation of an alumina refractory concrete for blast furnace main trough: part i. general context

High temperature mechanical characterisation of an alumina refractory concrete for Blast Furnace main trough: Part I. General context

High temperature mechanical characterisation of an alumina refractory concrete for Blast Furnace main trough: Part I. General context Author links open overlay panel Nicolas Prompt a Evariste Ouedraogo b

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high temperature mechanical characterisation of an alumina refractory concrete for blast furnace main trough: part i. general context | request pdf

High temperature mechanical characterisation of an alumina refractory concrete for Blast Furnace main trough: Part I. General context | Request PDF

High temperature mechanical characterisation of an alumina refractory concrete for Blast Furnace main trough: Part I. General context November 2008 Journal of the European Ceramic Society 28(15

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high-temperature mechanical characterisation of an alumina refractory concrete for blast furnace main trough: part ii. material behaviour

High-temperature mechanical characterisation of an alumina refractory concrete for Blast Furnace main trough: PART II. Material behaviour

This paper deals with the experimental mechanical characterisation of a high alumina carbon containing refractory concrete at temperatures ranging from room to high temperature (1500 C).

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materials | free full-text | al2o3/zro2/y3al5o12 composites: a high-temperature mechanical characterization | html

Materials | Free Full-Text | Al2O3/ZrO2/Y3Al5O12 Composites: A High-Temperature Mechanical Characterization | HTML

An Al2O3/5 vol%·ZrO2/5 vol%·Y3Al5O12 (YAG) tri-phase composite was manufactured by surface modification of an alumina powder with inorganic precursors of the second phases. The bulk materials were produced by die-pressing and pressureless

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high-temperature mechanical behaviour of flaw tolerant alumina–zirconia multilayered ceramics

High-temperature mechanical behaviour of flaw tolerant alumina–zirconia multilayered ceramics

1/8/2007 · In this sense, although room temperature mechanical data in flexure have been reported for alumina–yttria tetragonal zirconia polycrystal (YTZP) laminates, claiming high strength and/or toughening and R -curve behaviour, the high-temperature

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mechanical characterization of aluminium alloys for high temperature applications part1: al-si-cu alloys

Mechanical characterization of aluminium alloys for high temperature applications Part1: Al-Si-Cu alloys

Vol. 29-1 - Ed. 2011 Metallurgical Science and Technology 5 Mechanical characterization of aluminium alloys for high temperature applications Part1: Al-Si-Cu alloys R. Molina, P. Amalberto - Teksid Aluminum M. Rosso - Politecnico di Torino

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[pdf] thermal and mechanical properties of high alumina low cement castable | semantic scholar

[PDF] THERMAL AND MECHANICAL PROPERTIES OF HIGH ALUMINA LOW CEMENT CASTABLE | Semantic Scholar

Alumina based low cement castable (LCC) was synthesized and then treated from room temperature to 1600°C. Ultrasonic measurements were applied with the aim to obtain results of longitudinal and transversal ultrasonic velocities as well as

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mechanical behavior of a sumitomo alumina fiber at room and high temperature - jakus - 1989 - ceramic engineering and science proceedings - wiley

Mechanical Behavior of a Sumitomo Alumina Fiber at Room and High Temperature - Jakus - 1989 - Ceramic Engineering and Science Proceedings - Wiley

The fiber had a nominal composition of 85% alumina and 15% silica. Batches of 25 specimens were tested in room temperature air with two different gauge lengths and three different strain rates. The median strength of 10 cm long specimens tested

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3d characterization and modeling of low cycle fatigue damage mechanisms at high temperature in a cast aluminum alloy

3D characterization and modeling of low cycle fatigue damage mechanisms at high temperature in a cast aluminum alloy

15/1/2017 · At high temperature, the matrix mechanical behavior (Young modulus and hardness) decreases and this evolution is more pronounced than for the other components (Si and Al 2 Cu particles) . These incompatibilities are therefore more pronounced at

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electro-mechanical characterization of alumina-based porcelain insulator doped with batio3 at high temperature with frequency variation

Electro-mechanical characterization of alumina-based porcelain insulator doped with BaTiO3 at high temperature with frequency variation

1/2/2021 · This fine or micron particles dissolve into a feldspathic liquid phase at high temperature, but an excess amount of quartz content decreases the mechanical strength and young modulus [17,18]. This problem is resolved by adding zirconia in alumin

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mechanical and microstructural characterisation of nextel 650 alumina–zirconia fibres

Mechanical and microstructural characterisation of Nextel 650 alumina–zirconia fibres

1/8/2004 · The higher the temperature was, the more the presence of impurities on the fibre surface was critical in leading to spectacular platelet alumina grain growth as shown in Fig. 8. At 1200 °C, the failure surfaces, showed two different areas and

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mechanical characterisation of aluminium alloy 7449‐t7651 at high strain rates and elevated temperatures using split hopkinson bar testing

Mechanical Characterisation of Aluminium Alloy 7449‐T7651 at High Strain Rates and Elevated Temperatures Using Split Hopkinson Bar Testing

2/12/2011 · The mechanical behaviour of a 7 series high‐strength aluminium alloy that is mainly used by the aerospace industry is under investigation. Aluminium alloy AA7449‐T7651 is mechanically tested at high strain rates (SRs), from 1000 to 10,000 s −1

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mechanical characterisation of aluminium alloy 7449‐t7651 at high strain rates and elevated temperatures using split hopkinson bar testing

Mechanical Characterisation of Aluminium Alloy 7449‐T7651 at High Strain Rates and Elevated Temperatures Using Split Hopkinson Bar Testing

2/12/2011 · Aluminium alloy AA7449-T7651 is mechanically tested at high strain rates (SRs), from 1000 to 10,000 s −1 and from room temperature up to elevated temperatures (80, 140, 200, and 300 C). The mechanical characterisation is performed in compression

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high temperature mechanical behavior of alumina dispersion strengthened copper alloy with high content of alumina

High temperature mechanical behavior of alumina dispersion strengthened copper alloy with high content of alumina

High temperature mechanical behavior of alumina dispersion strengthened copper alloy with high content of alumina Zi-qi XIANG 1, Zhou LI1,2, Qian LEI , Zhu XIAO 1, Yong PANG 1. School of Materials Science and Engineering, Central South

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the effect of alumina additive and sintering temperature on the microstructural, physical, mechanical, and bioactivity properties of

The effect of alumina additive and sintering temperature on the microstructural, physical, mechanical, and bioactivity properties of

8/4/2019 · The aim of this study was to evaluate the effect of alumina (Al 2 O 3) additive and sintering temperature on the microstructural, physical, mechanical, and in vitro bioactivity properties of hydroxyapatite (HA).The composites consisting of 2.5

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(pdf) electrochemical anodizing, structural and mechanical characterization of nanoporous alumina templates

(PDF) Electrochemical Anodizing, Structural and Mechanical Characterization of Nanoporous Alumina Templates

23/10/2013 · temperature in the transformati on from crystalline alumina to amorphous alumina. Optimum pore growth was a chieved with an applied po tential of 17 V which led to a pore fraction - P(f) - of about

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mechanical and microstructural characterisation of nextel 650 alumina‐zirconia fibres - high temperature ceramic matrix composites - wiley

Mechanical and Microstructural Characterisation of Nextel 650 Alumina‐Zirconia Fibres - High Temperature Ceramic Matrix Composites - Wiley

12/10/2001 · The aim of this paper is to determine the high temperature behaviour of the alpha-alumina/zirconia fibre, the Nextel 650. The role of the microstructure and the effect of the additives on the mechanical behaviour have been investigated in a

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mechanical characterisation of carbon-bonded magnesia at temperatures up to 1400°c

Mechanical Characterisation of Carbon-Bonded Magnesia at Temperatures up to 1400°C

June 2016 Mechanical Characterisation of Carbon-Bonded Magnesia at Temperatures up to 1400 C 195 Testsinfour-pointbending(seeFig.2a)andcompression (see Fig.2b) were performed using a 20 kN electro-me-chanical testing machine (Z020, Zwick, Ulm

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microstructural characterisation of an alumina/mullite composite tested in creep | request pdf

Microstructural characterisation of an alumina/mullite composite tested in creep | Request PDF

The high-temperature mechanical behaviour of alumina-based ceramic fibres has been investigated by the comparison of a dense pure alumina fibre, a porous pure alumina fibre and a zirconia

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overview of aluminum alloy mechanical properties during and after fires | fire science reviews | full text

Overview of aluminum alloy mechanical properties during and after fires | Fire Science Reviews | Full Text

28/4/2015 · The high temperature mechanical behavior data is presented to provide a comprehensive description of the high temperature response of the 5083-H116 and 6061-T651. It is hoped that such a dataset, and its associated understanding, aids design

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mechanical and microstructural characterisation of nextel 650 alumina–zirconia fibres | request pdf

Mechanical and microstructural characterisation of Nextel 650 alumina–zirconia fibres | Request PDF

One such addition is alumina (Al2O3), which increases mechanical properties and also resistance to high temperature. Al2O3 occurs in many transitional forms, all of which are converted to α-Al2O3

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(pdf) microstructural and mechanical characterisation of mullite-zirconia composites containing yttria

(PDF) MICROSTRUCTURAL AND MECHANICAL CHARACTERISATION OF MULLITE-ZIRCONIA COMPOSITES CONTAINING YTTRIA

A sintering temperature of 1550 C with two hours soaking yielded the best results in terms of fired density, flexural strength, fracture toughness, microhardness and tetragonal (t-) ZrO2, content

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electrical and mechanical characterization of low temperature co-fired ceramics for high temperature sensor applications

Electrical and mechanical characterization of low temperature co-fired ceramics for high temperature sensor applications

C. Bienert, A. Roosen, M. Grosser, M. Ziegler, and U. Schmid "Electrical and mechanical characterization of low temperature co-fired ceramics for high temperature sensor applications", Proc. SPIE 7362, Smart Sensors, Actuators, and

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recent advances in silica-alumina refractory: a review

Recent advances in silica-alumina refractory: A review

1/6/2014 · Two refractory (REFO and CONC) characterized by different silica/alumina ratios, were studied. The CONC contains a larger amount of residual glassy phase than REFO, which should lead to better high-temperature mechanical properties and higher th

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optimal design on the high-temperature mechanical properties of porous alumina ceramics based on fractal dimension analysis

Optimal design on the high-temperature mechanical properties of porous alumina ceramics based on fractal dimension analysis

Optimal design on the high-temperature mechanical properties of porous alumina ceramics based on fractal dimension analysis Jingjing LIUa,b, Wenlong HUOa, Xiaoyan ZHANGa, Bo RENa,*, Yuanbing LIb, Zaijuan ZHANGa, Jinlong YANGa,* a State Key, ,

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nextel™ 650 ceramic oxide fiber: new alumina‐based fiber for high temperature composite reinforcement | request pdf

Nextel™ 650 Ceramic Oxide Fiber: New Alumina‐Based Fiber for High Temperature Composite Reinforcement | Request PDF

The high-temperature mechanical behaviour of alumina-based ceramic fibres has been investigated by the comparison of a dense pure alumina fibre, a porous pure alumina fibre and a zirconia

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microstructural and mechanical characterization of high temperature and creep resistant steel weldments

Microstructural and Mechanical Characterization of High Temperature and Creep Resistant Steel Weldments

63rd Annual Assembly & International Conference of the International Institute of Welding 11-17 July 2010, Istanbul, Turkey AWST-10/130 835 Microstructural and Mechanical Characterization of High Temperature and Creep Resistant Steel

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unshaped refractories

Unshaped Refractories

21/2/2019 · High-Temperature Mechanical Characterisation of In-Situ Forming Spinel-Alumina Castables Using Magnesia or Magnesite as Raw Material Thursday, February 21, 2019 The effect of several parameters: composition, addition of magnesia or magnesite

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high‐temperature ultrasonic characterization of the mechanical and microstructural behavior of a fibrous composite with a magnesium lithium

High‐Temperature Ultrasonic Characterization of the Mechanical and Microstructural Behavior of a Fibrous Composite with a Magnesium Lithium

High‐Temperature Ultrasonic Characterization of the Mechanical and Microstructural Behavior of a Fibrous Composite with a Magnesium Lithium Aluminum Silicate Glass‐Ceramic Matrix September 2005

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high temperature thermal and mechanical load characterisation of a steel fibre reinforced aluminium metal matrix composite (almmc) for automotive

HIGH TEMPERATURE THERMAL AND MECHANICAL LOAD CHARACTERISATION OF A STEEL FIBRE REINFORCED ALUMINIUM METAL MATRIX COMPOSITE (ALMMC) FOR AUTOMOTIVE

1/8/2014 · HIGH TEMPERATURE THERMAL AND MECHANICAL LOAD CHARACTERISATION OF A STEEL FIBRE REINFORCED ALUMINIUM METAL MATRIX COMPOSITE (ALMMC) FOR AUTOMOTIVE DIESEL PISTONS. UoM administered thesis : Phd Authors:

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synthesis, processing, sintering and characterisation of special ceramic materials

SYNTHESIS, PROCESSING, SINTERING AND CHARACTERISATION OF SPECIAL CERAMIC MATERIALS

a high carbon activity (in a graphite furnace), under an inert (argon) gas or reactive (nitrogen) gas pressure or under hot pressing in _graphite dies at high temperature has been investigated. Mechanical characterisation of the products has

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mechanical behavior of a sumitomo alumina fiber at room and high temperature (conference) | osti.gov

Mechanical behavior of a Sumitomo alumina fiber at room and high temperature (Conference) | OSTI.GOV

@article{osti_6926070, title = {Mechanical behavior of a Sumitomo alumina fiber at room and high temperature}, author = {Jakus, K and Tulluri, V}, abstractNote = {The strength, fatigue, and creep characteristics of an organometallic polymer

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(pdf) mechanical and physical properties of engineering alumina ceramics | christian h e r n a n d e z christian hernandez - academia.edu

(PDF) Mechanical and physical properties of engineering alumina ceramics | Christian H E R N A N D E Z Christian Hernandez - Academia.edu

Mechanical and physical properties of engineering alumina ceramics . × Close Log In Log In with Facebook Log In with Google Sign Up with Apple or Email: Password: Remember me on this computer or reset password Enter the email address you signed

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fire resistance of high alumina cement and slag based ultra high performance fibre-reinforced cementitious composites - publications

Fire Resistance of High Alumina Cement and Slag Based Ultra High Performance Fibre-Reinforced Cementitious Composites - Publications

[23] J. Komonen and V. Penttala, “Effects of high temperature on the pore structure and strength of plain and polypropylene fiber reinforced cement pastes,” Fire Technol., vol. 39, pp. 23–34, 2003. [24] W. Khaliq and V. Kodur, “High Temperature

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preparation and high-temperature characterisation of nanostructured alumina ceramic membranes for gas purification - nasa/ads

Preparation and high-temperature characterisation of nanostructured alumina ceramic membranes for gas purification - NASA/ADS

adshelp[at]cfa.harvard.edu The ADS is operated by the Smithsonian Astrophysical Observatory under NASA Cooperative Agreement NNX16AC86A

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synthesis and mechanical characterisation of aluminium-copper-alumina nano composites powder embedded in glass/epoxy laminates

Synthesis and Mechanical Characterisation of Aluminium-Copper-Alumina Nano Composites Powder Embedded in Glass/Epoxy Laminates

Synthesis and Mechanical Characterisation of Aluminium-Copper-Alumina Nano Composites Powder Embedded in Glass/Epoxy Laminates P K Dash1,*, Prof. B. S. Murty2, R B Karthik Aamanchi3 1Department of Aeronautical Engineering, IARE, Hyderabad 2

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high temperature mechanical spectroscopy of fine-grained zirconia and alumina containing nano-sized reinforcements

High temperature mechanical spectroscopy of fine-grained zirconia and alumina containing nano-sized reinforcements

High-temperature plastic deformation of pure zirconia and alumina is interpreted in terms of a theoretical model of GB sliding. When GB sliding is not limited by obstacles like multiple junctions, GB asperities or other defects, creep occur and

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compounding, micro injection moulding and characterisation of polycarbonate-nanosized alumina-composites for application in microoptics

Compounding, micro injection moulding and characterisation of polycarbonate-nanosized alumina-composites for application in microoptics

9/7/2008 · In the following the preparation, characterisation and moulding of new developed high temperature polycarbonate-nanosized alumina-composites suitable for microoptical devices will be described. A prism-type demonstrator made from the new

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