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morphology

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Series: ASM Handbook
Volume: 23A
Publisher: ASM International
Published: 12 September 2022
DOI: 10.31399/asm.hb.v23A.a0006884
EISBN: 978-1-62708-392-8
... occurs by the formation of hydroxyapatite. Dicalcium phosphate consists of crystal water along with anhydrous and dihydrate salts. This article summarizes research achievements regarding dicalcium phosphate dihydrate (DCPD) production with controlled morphology and reactivity, including effects...
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Published: 01 January 1996
Fig. 14 Craze fracture surface (a) patch morphology and (b) band morphology More
Series: ASM Handbook
Volume: 12
Publisher: ASM International
Published: 01 June 2024
DOI: 10.31399/asm.hb.v12.a0006843
EISBN: 978-1-62708-387-4
... surface morphology fracture surfaces microfractography microscopic features WHEN STRUCTURES or components fail by fracture, analysis of the new surfaces resulting from fracture can be used to understand their root cause. One of the most important sources of information relating to the cause...
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Published: 01 August 2013
Fig. 13 Feedstock morphology More
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Published: 01 January 1994
Fig. 2 Surface morphology and microstructure of electrogalvanized sheet. Scanning electron microscope section. Source: Ref 11 More
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Published: 01 January 1994
Fig. 3 Surface morphology and microstructure of zinc-nickel alloy coated sheet. Scanning electron microscope section. Source: Ref 11 More
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Published: 01 January 1994
Fig. 4 Surface morphology and microstructure of zinc-iron alloy coated sheet. Scanning electron microscope section. Source: Ref 11 More
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Published: 01 January 1994
Fig. 5 Surface morphology and microstructure of tinplate. Scanning electron microscope section More
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Published: 01 January 1994
Fig. 1 Surface morphology effects on pinhole formation More
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Published: 01 January 1994
Fig. 2 Surface morphology of an as-sintered 96% alumina ceramic such as is used in hybrid circuitry. 1000× More
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Published: 01 January 1990
Fig. 4 Influence of graphite morphology on the stress-strain curve of several cast irons More
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Published: 01 August 2013
Fig. 1 Effect of steel composition on the morphology and thickness of the boride layer. Source: Ref 8 More
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Published: 01 August 2013
Fig. 6 Fracture morphology of vanadium carbide coatings on W1 formed by high-temperature borax baths with the addition of 20 wt% V pentaoxide flakes and 5 wt% boron carbide powders. Coating temperature: 1000 °C (1830 °F); time: 4 h More
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Published: 30 September 2015
Fig. 1 Powder morphology by different production methods More
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Published: 30 September 2015
Fig. 3 Different particle shape and morphology between (a) H-reduced and (b) CO-reduced iron powders. Top row: SEM images; bottom row: cross section optical microscope images More
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Published: 01 January 2006
Fig. 13 Typical morphology of the nitride layer formed on the metal surface at 650 °C (1200 °F) in ammonia for 168 h for (a) type 310 stainless steel and (b) alloy X. Source: Ref 1 More
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Published: 01 January 2006
Fig. 44 Typical carbon steel corrosion morphology due to SRB action More
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Published: 01 January 2006
Fig. 4 Scale morphology for type A and B corrosion More
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Published: 01 January 2006
Fig. 8 Surface morphology and elemental distribution in scales formed on type 304 stainless steel during exposure to single and bipolar exposure conditions. (a) Formation of uniform surface oxide layer in air. (b) Development of local iron-oxide-rich nodules during exposure to bipolar More
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Published: 01 January 2006
Fig. 5 Rust morphology under different degrees of corrosivity. Upper panels show gas blisters in the diffusion-tight rust. Lower panels show a more open rust morphology at nominally the same average corrosion depth More