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1-20 of 1921
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Schematic of the structure of anodic aluminum oxide (AAO). The anodic oxide...
Available to PurchasePublished: 30 November 2018
Fig. 1 Schematic of the structure of anodic aluminum oxide (AAO). The anodic oxide is a self-assembled network of individual columnar cells that have rounded bottoms. Each column of the AAO structure circumscribes its critical feature, the central pore, which is the conduit for ion exchange
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Reflectivity of 1100 aluminum as a function of aluminum oxide coating thick...
Available to Purchase
in Properties of Wrought Aluminum and Aluminum Alloys
> Properties and Selection: Nonferrous Alloys and Special-Purpose Materials
Published: 01 January 1990
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Aluminum-aluminum oxide specimen, cold rolled and annealed. Shown is the pi...
Available to PurchasePublished: 01 January 2005
Fig. 21 Aluminum-aluminum oxide specimen, cold rolled and annealed. Shown is the pinning of a mobile low-angle boundary by a small Al 2 O 3 particle during a recovery anneal. Thin-foil TEM specimen. Original magnification 47,000×. Source: Ref 12
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Aluminum-aluminum oxide specimen, cold rolled and annealed. Shown is the pi...
Available to PurchasePublished: 01 December 2004
Fig. 19 Aluminum-aluminum oxide specimen, cold rolled and annealed. Shown is the pinning of a mobile low-angle boundary by a small Al 2 O 3 particle during a recovery anneal. Thin-foil TEM specimen. 47,000×. Source: Ref 8
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Image
Aluminum-aluminum oxide specimen, cold rolled and annealed. Shown is the pi...
Available to PurchasePublished: 01 June 2016
Fig. 11 Aluminum-aluminum oxide specimen, cold rolled and annealed. Shown is the pinning of a mobile low-angle boundary by a small Al 2 O 3 particle during a recovery anneal. Thin-foil transmission electron microscopy specimen. Original magnification: 47,000×. Source: Ref 6
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Reflectivity of 1100 aluminum as a function of aluminum oxide coating thick...
Available to PurchasePublished: 15 June 2019
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Suspended ∼0.2-μm AlNi particles on the aluminum oxide surface layer (light...
Available to PurchasePublished: 01 January 1986
Fig. 103 Suspended ∼0.2-μm AlNi particles on the aluminum oxide surface layer (light area) and with amorphous Al(Ni) in the thicker sample regions (dark area). Bright-field micrograph obtained by 120 kV. Inset: Electron-diffraction pattern from the thicker area showing the amorphous phase
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Published: 01 January 1989
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Standard marking system for conventional aluminum oxide and silicon carbide...
Available to PurchasePublished: 01 January 1989
Fig. 1 Standard marking system for conventional aluminum oxide and silicon carbide abrasive grinding wheels
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Selection of superabrasive grit size. 60-grit aluminum oxide (a) yields a b...
Available to PurchasePublished: 01 January 1989
Fig. 27 Selection of superabrasive grit size. 60-grit aluminum oxide (a) yields a bond system comparable to 100-grit CBN having wear flats (b) or 150-grit CBN without wear flats (c).
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Aluminum oxide dewpoint sensor. (a) Layered construction. (b) Circuit equiv...
Available to PurchasePublished: 30 September 2014
Fig. 19 Aluminum oxide dewpoint sensor. (a) Layered construction. (b) Circuit equivalent. C 0 , capacitance of aluminum oxide layer; C 2 , pore-base capacitance; R 0 , resistance of aluminum oxide; R 1 , pore-side resistance; and R 2 , pore-base resistance
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Standard furnace gas sample system incorporating an aluminum oxide dewpoint...
Available to PurchasePublished: 30 September 2014
Fig. 20 Standard furnace gas sample system incorporating an aluminum oxide dewpoint sensor in the sample cell
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Effect of temperature on the strength properties of aluminum oxide-chromium...
Available to PurchasePublished: 01 January 1990
Fig. 19 Effect of temperature on the strength properties of aluminum oxide-chromium cermets. (a) Transverse rupture strength. (b) Tensile strength. (c) Stress-rupture strength. Source: Ref 35 , 36
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Typical surface finish obtained using aluminum oxide abrasive. Curves illus...
Available to PurchasePublished: 01 August 2013
Fig. 5 Typical surface finish obtained using aluminum oxide abrasive. Curves illustrate the range of results obtainable by pressure and abrasive size variations. The exact results will be influenced by material differences, nozzle selection, and other variables. RMS, root mean square
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Aluminum oxide (Al 2 O 3 ) particles. Original magnification: 130×. (a) 240...
Available to PurchasePublished: 01 August 2013
Fig. 7 Aluminum oxide (Al 2 O 3 ) particles. Original magnification: 130×. (a) 240 mesh. (b) 150 mesh
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Typical surface finish obtained using aluminum oxide abrasive. Curves illus...
Available to PurchasePublished: 01 August 2013
Fig. 4 Typical surface finish obtained using aluminum oxide abrasive. Curves illustrate the range of results obtainable by pressure and abrasive size variations. The exact results will be influenced by material differences, nozzle selection, and other variables. RMS, root mean square
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Image
Aluminum oxide (Al 2 O 3 ) particles. Original magnification: 130×. (a) 240...
Available to PurchasePublished: 01 August 2013
Fig. 5 Aluminum oxide (Al 2 O 3 ) particles. Original magnification: 130×. (a) 240 mesh. (b) 150 mesh
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Aluminum oxide inclusions in steel. Note how the particles break up during ...
Available to Purchase
in Metallography and Microstructures of Carbon and Low-Alloy Steels[1]
> Metallography and Microstructures
Published: 01 December 2004
Fig. 37 Aluminum oxide inclusions in steel. Note how the particles break up during rolling. Unetched (as-polished). Original magnification 1000×
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Aluminum oxide panel having laser-machined holes and slots with fine cracks...
Available to PurchasePublished: 01 August 2018
Fig. 15 Aluminum oxide panel having laser-machined holes and slots with fine cracks around the perimeter and the circumference of the openings
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Standard marking system for conventional aluminum oxide and silicon carbide...
Available to PurchasePublished: 01 December 1998
Fig. 1 Standard marking system for conventional aluminum oxide and silicon carbide abrasive grinding wheels
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