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1

Hocking, M. G. Metallic and ceramic coatings: Production, high temperature properties, and applications. Longman Scientific & Technical, 1989.

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2

Hocking, M. G. Metallic and ceramic coatings: Production, high temperature properties and applications. Longman Scientific & Technical, 1989.

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3

I, Tushinskiĭ L., ed. Coated metal: Structure and properties of metal-coating compositions. Springer, 2002.

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4

Kololuoma, Terho. Preparation of multifunctional coating materials and their applications. VTT Technical Research Centre of Finland, 2003.

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5

F, Bunshah R., ed. Handbook of hard coatings: Deposition technologies, properties and applications. Noyes Publications, 2001.

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6

Tushinsky, Leonid I. Coated Metal: Structure and Properties of Metal-Coating Compositions. Springer Berlin Heidelberg, 2002.

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7

K, Sahoo N., and Bhabha Atomic Research Centre, eds. ION assisted deposition of refractory oxide thin film coatings for improved optical and structural properties. Bhabha Atomic Research Centre, 1999.

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8

Center, Lewis Research, ed. The Structure of ion plated films in relation to coating properties. National Aeronautics and Space Administration, Lewis Research Center, 1985.

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9

D, Sheffler K., Ortiz Milton, and Lewis Research Center, eds. Thermal barrier coating life prediction model development: Phase 1, final report. NASA Lewis Research Center, 1989.

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10

Corrosion, European Federation of, and Institute of Materials, Minerals, and Mining, eds. Self-healing properties of new surface treatments. Published for the European Federation of Corrosion by Maney Pub. on behalf of the Institute of Materials, Minerals & Mining, 2011.

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11

A, Adams A., and Technical Association of the Pulp and Paper Industry. Coating Additives Committee., eds. Paper coating additives: Description of functional properties and list of available products : a project of the Coating Additives Committee of the Coating and Graphic Arts Division. 5th ed. TAPPI Press, 1990.

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12

John, Churas, Pothier Paul, and Technical Association of the Pulp and Paper Industry. Coating Additives Committee., eds. Additives for paper coating: Description of functional properties and list of available products ; a project of the Coating Additives Committee of the TAPPI Coating and Graphic Arts Division. 6th ed. TAPPI Press, 1998.

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13

Schaefer, R. J. Interaction of zinc vapor with Zircaloy and the effect of zinc vapor on the mechanical properties of zircaloy. U.S. Nuclear Regulatory Commission, 2000.

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14

P, Shapiro A., and United States. National Aeronautics and Space Administration., eds. Magnesium-aluminum-zirconium oxide amorphous ternary composite: A dense and stable optical coating. National Aeronautics and Space Administration, 1998.

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15

P, Shapiro A., and United States. National Aeronautics and Space Administration., eds. Magnesium-aluminum-zirconium oxide amorphous ternary composite: A dense and stable optical coating. National Aeronautics and Space Administration, 1998.

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16

P, Shapiro A., and United States. National Aeronautics and Space Administration., eds. Magnesium-aluminum-zirconium oxide amorphous ternary composite: A dense and stable optical coating. National Aeronautics and Space Administration, 1998.

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17

P, Shapiro A., and United States. National Aeronautics and Space Administration., eds. Magnesium-aluminum-zirconium oxide amorphous ternary composite: A dense and stable optical coating. National Aeronautics and Space Administration, 1998.

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18

Society, American Ceramic, ed. Progress in thermal barrier coatings. Wiley, 2009.

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19

Society, American Ceramic, ed. Progress in nanotechnology. John Wiley & Son, 2010.

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20

Society, American Ceramic. Progress in nanotechnology: Applications. Wiley, 2010.

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21

DellaCorte, Christopher. Effects of atmosphere on the tribological properties of a chromium carbide based coating for use to 760 C̊. National Aeronautics and Space Administration, 1987.

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22

A, Fellenstein J., and United States. National Aeronautics and Space Administration., eds. The effect of compositional tailoring on the thermal expansion and tribological properties of PS300: A solid lubricant composite coating. National Aeronautics and Space Administration, 1996.

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23

A, Cruse Thomas, and United States. National Aeronautics and Space Administration., eds. Mechanical testing program for thermal barrier coating development: NASA Lewis Research Center, cooperative agreement NCC3-187, final report. National Aeronautics and Space Administration, 1996.

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24

J, Van Oss Carel, ed. Colloid and surface properties of clays and related minerals. Marcel Dekker, 2002.

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25

Meelu, Mehar Chand. Improvement in Mechanical Properties of Silicon Modified Aluminide Diffusion Coating (Sermlaloy J) used for Hot Corrosion Protection of Hot End Gas Turbine Components. University of Birmingham, 1996.

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26

Hill, Loren W. Mechanical properties of coatings. Federation of Societies for Coatings Technology, 1987.

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27

1934-, Hummel Rolf E., Guenther Karl H, and Wissmann P. 1936-, eds. Handbook of optical properties. CRC Press, 1995.

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28

Bryant, Richard W. Inorganic coatings for enchanced metal surface properties. Business Communications Co., 1986.

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29

Dieter, Stoye, Freitag Werner 1951-, and Beuschel Günter, eds. Resins for coatings: Chemistry, properties, and applications. Hanser Publishers, 1996.

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30

Holmberg, K. Coatings tribology: Properties, techniques and applications in surface engineering. Elsevier, 1994.

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31

Romano, Stefan A., and George P. Somners. Polymer films: Properties, performance, and applications. Nova Science Publishers, 2010.

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32

Laidani, Nadhira, Mircea Chipara, Mahmood Aliofkhazraei, Jeff Th. M. De Hosson, and Ali Nasar. Handbook of Modern Coating Technologies: Coating Properties. Elsevier, 2021.

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33

Gündüz, Güngör. Chemistry, Materials, and Properties of Surface Coatings: Traditional and Evolving Technologies. DEStech Publications, Inc, 2015.

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34

Cheng, Y. Frank, and Richard Norsworthy. Pipeline Coatings. NACE International, The Worldwide Corrosion Authority15835 Park Ten Place, Houston, TX 77084, 2017. https://doi.org/10.5006/37616.

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Pipeline Coatings begins with a review of coating fundamentals, including the evolution of coating technology and the principles for coating formulation. Guidelines for coating design, selection, and application are presented. The structure of a coating system and the high-performance coating’s essential properties and characteristics are covered in detail. Some standard testing methods for determining and evaluating coating properties are included. Coatings used in the oil/gas pipeline industry are then covered. Generally, pipeline coatings are divided into two categories (plant-applied and f
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35

Cuenca-Alvarez, Ricardo. The Influence of Dry Particle Coating Parameters on Thermal Coatings Properties. INTECH Open Access Publisher, 2012.

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36

Jeraratanasopa, Witson. Effects of coating solids on coated paper properties. 1985.

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37

Test Methods to Evaluate Thermal Properties and Performance of Insulative Coatings. AMPP, 2023. https://doi.org/10.5006/nace_tm21431-2023.

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Scope The purpose of this standard test method is to specify test methods and test conditions used to evaluate thermal properties, insulation values, and performance, before and after thermal aging, for insulative coatings. This test method is intended for use by facility owners, engineers, health and safety specialists, coatings manufacturers, and other interested parties. Rationale Numerous test methods have been used to characterize the performance of insulative coatings in the past. Some of these test methods are from test methods used for traditional bulk insulation products and from othe
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38

Evaluation of colorless polyimide film for thermal control coating applications. National Aeronautics and Space Administration, Langley Research Center, 1985.

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39

Ambethkar, D. Agglomerated versus dispersed coating systems: Wet and dry properties. 1988.

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40

The Infrared spectra atlas of coating chemicals. Sadtler Research Laboratories, 1989.

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41

Jeff Th. M. De Hosson, Ali Nasar, and Nadhira Bensaada Laidani. Handbook of Modern Coating Technologies: Fabrication Methods and Functional Properties. Elsevier, 2021.

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42

Handbook of Modern Coating Technologies: Fabrication Methods and Functional Properties. Elsevier, 2021.

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43

Pakseresht, Amir Hossein. Production, Properties, and Applications of High Temperature Coatings. IGI Global, 2018.

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44

Thermal certification tests of Orbiter Thermal Protection System tiles coated with KSC coating slurries. National Aeronautics and Space Administration, Lyndon B. Johnson Space Center, 1993.

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45

Two-Component Weatherable Aliphatic Polyurethane Topcoat, Performance-Based. AMPP, 2013. https://doi.org/10.5006/sspc-paint_36-2013.

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Scope This standard covers the requirements for a high-performance two-component UV-stable polyurethane topcoat (ASTM D16, Type V polyurethane). This coating will provide color and gloss retention properties when used as a topcoat over compatible coatings on a steel substrate. Coatings meeting the requirements of this standard are generally suitable for exposures in environmental zones 1A (interior, normally dry), 1B (exterior, normally dry), 2A (frequently wet by fresh water, excluding immersion), 2B (frequently wet by salt water, excluding immersion), 3B (chemical exposure, neutral), and 3C
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46

Optical fiber, fiber coating, and connector ferrule geometry: Results of interlaboratory measurement comparisons. U.S. Dept. of Commerce, Technology Administration, National Institute of Standards and Technology, 1995.

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47

Petiraksakul, Pinsupha. Effect of stearate/stearic acid coating on filled high density polyethylene properties. 2000.

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48

Pothier, Paul. Additives for Paper-Coating Description of Functional Properties and List of Available Products. Tappi Pr, 1998.

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49

Panger, George L. An investigation of inhomogeneous plastic deformations using the technique of photoelastic coatings. 1991.

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50

Palaniappan, Sathish Kumar, Rajeshkumar Lakshminarasimhan, and Ramesh Manickam. Surface Modification and Coating of Fibers, Polymers, and Composites: Techniques, Properties, and Applications. Elsevier, 2024.

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