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Series: ASM Technical Books
Publisher: ASM International
Published: 01 June 2022
DOI: 10.31399/asm.tb.tstap.t56040030
EISBN: 978-1-62708-428-4
... Abstract This article presents best practices for the metallographic preparation of specimens produced via thermal spray coating methods. It outlines typical metallographic preparation process flow, highlighting important considerations for obtaining a clear and representative specimen suitable...
Series: ASM Technical Books
Publisher: ASM International
Published: 01 June 2022
DOI: 10.31399/asm.tb.tstap.t56040055
EISBN: 978-1-62708-428-4
... Abstract Thermal barrier coatings (TBCs) are applied using thermal spray coating (TSC) processes to components that are internally cooled and operated in a heated environment. The TSC microstructures are prone to interactions with common metallographic procedures that may result in artifacts...
Series: ASM Technical Books
Publisher: ASM International
Published: 01 June 2016
DOI: 10.31399/asm.tb.hpcspa.t54460185
EISBN: 978-1-62708-285-3
... Abstract Cold spray coatings technology has the potential to provide surface enhancement for applications in sectors such as defense and aerospace, oil and gas, power generation, medical, automotive, electronics, and railways. The ability to deposit clean metallic coatings is used...
Book Chapter

Series: ASM Technical Books
Publisher: ASM International
Published: 01 November 2013
DOI: 10.31399/asm.tb.mfub.t53740325
EISBN: 978-1-62708-308-9
... Abstract This chapter covers a wide range of finishing and coating operations, including cleaning, honing, polishing and buffing, and lapping. It discusses the use of rust-preventative compounds, conversion coatings, and plating metals as well as weld overlay, thermal spray, and ceramic...
Series: ASM Technical Books
Publisher: ASM International
Published: 01 July 2009
DOI: 10.31399/asm.tb.bcp.t52230361
EISBN: 978-1-62708-298-3
... Abstract This chapter discusses coating technologies that are applicable to beryllium, including physical and chemical vapor deposition, thermal evaporation, electroplating, sputtering, ion plating, and plasma arc spraying. It describes the advantages and disadvantages of each method...
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Published: 01 November 2019
Figure 29 Backside NIR images without ARC coating (left) and with ARC coating (right.) (100X NIR objective) More
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Published: 01 March 2001
Fig. 5 Typical coating thickness/depth of penetration for various coating and surface-hardening processes. Source: Ref 3 More
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Published: 01 August 2012
Fig. 16.14 Typical coating thicknesses and process temperature for common coating methods. CVD, chemical vapor deposition; TD, thermal diffusion; PVD, physical vapor deposition. Source: Ref 16.54 More
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Published: 01 June 2016
Fig. 2.24 Correlation between coating strength and coating hardness for different process conditions in cold spraying commercially pure nickel with nitrogen as process gas. The data range for differently work-hardened bulk material is shown for comparison. By using higher spray parameter sets More
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Published: 01 June 2016
Fig. 10.2 Coating setups for (a and b) general coating development, (c and d) used-fuel container coating optimization, and (e–h) prototyping More
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Published: 01 August 2018
Fig. 13.35 Tin coating. (a) Tinfoil surface after electrolytical coating with FeSn 2 before the melting of the coating. (b) Finished coating, where the fusion treatment and rapid cooling have already been performed. More
Series: ASM Technical Books
Publisher: ASM International
Published: 01 March 2001
DOI: 10.31399/asm.tb.secwr.t68350125
EISBN: 978-1-62708-315-7
... Abstract This chapter discusses the use of coating methods and materials and their impact on corrosion and wear behaviors. It provides detailed engineering information on a wide range of processes, including organic, ceramic, and hot dip coating, metal plating and cladding, and the use of weld...
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Published: 01 June 1988
Fig. 11.5 Setup for epoxy coating of tool handles in a fluidized bed using induction heating Source: Lepel Corp. More
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Published: 01 June 1988
Fig. 11.18 Induction systems for epitaxial deposition and CVD coating of semiconductors. From S. Berkman, V. S. Ban, and N. Goldsmith, Heteroepitaxial Semiconductors for Electronic Devices , G. W. Cullen and C. C. Wang, eds., Springer-Verlag, New York, 1978, p 264 ( Ref 2 ) More
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Published: 01 March 2006
Fig. 10.3 Photoelastic-coating method to determine strain distribution at notch tip. Source: Ref 10.8 More
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Published: 30 April 2021
Fig. 12.4 Titanium nitride physical vapor deposition coating spall on a cemented carbide tool bit. Original magnification: 1000× More
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Published: 30 April 2021
Fig. 12.5 Comparison of coating and treatment thicknesses and depths. PVD, physical vapor deposition More
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Published: 30 April 2021
Fig. 13.10 Schematic of the abrasion of an eyeglass lens coating by a grain of sand More
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Published: 01 November 2010
Fig. 21.5 Interfacial coating More
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Published: 01 November 2010
Fig. 21.13 Coating sequence for space shuttle carbon-carbon parts. Carbon-carbon (C-C), silicon carbide (SiC), tetraethylortho-silicate (TEOS) More