Books on the topic 'Metal cladding'

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1

P, Wolstenholme R., Howell D. M, W. S. Atkins and Partners., and Great Britain. Construction Sponsorship Directorate., eds. Durability of cladding. London: Thomas Telford, 1994.

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2

M, Albon J., and Garner N. K, eds. Coated metal roofing and cladding. London: Thomas Telford, 1997.

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3

Amir, Khajepour, and Corbin Stephen, eds. Laser cladding. Boca Raton, Fl: CRC Press, 2005.

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4

Ryan, P. A. Durability of cladding: A state of the art report. London: T. Telford, 1994.

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5

Engineers, Institution of Structural, and Structural Engineers Trading Organisation, eds. Aspects of cladding. London: SETO, 1995.

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6

Smith, L. M. CASTI handbook of cladding technology. 2nd ed. Edmonton: CASTI Pub., 2000.

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7

Smith, L. M. Practical handbook of cladding technology. Edited by Celant Mario. Edmonton: CASTI Pub., 1998.

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8

Sexton, Cornelius L. Rapid alloy scanning by laser cladding. Aachen: Shaker, 1995.

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9

D, Sisson R., American Society for Metals. Energy Division., and American Society for Metals. Coatings Committee., eds. Coatings and bimetallics for aggressive environments: Conference proceedings : Conference on Coatings and Bimetallics for Energy Systems and Chemical Process Environments, Hilton Head, South Carolina, 12-14 November, 1984. [Metals Park, Ohio]: ASM, 1985.

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10

Windle, Richard Michael. The prediction of industrial noise and its transmission through metal cladding systems. Salford: University of Salford, 1995.

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11

W, Selves N., ed. Profiled sheet roofing and cladding: A guide to good practice. 3rd ed. London: E & FN Spon, 1999.

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12

Samsonov, G. V., ed. Diffusion Cladding of Metals. Boston, MA: Springer US, 1995. http://dx.doi.org/10.1007/978-1-4684-1563-6.

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13

Cavaliere, Pasquale, ed. Laser Cladding of Metals. Cham: Springer International Publishing, 2021. http://dx.doi.org/10.1007/978-3-030-53195-9.

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14

Samsonov, G. V. Diffusion Cladding of Metals. Boston, MA: Springer US, 1995.

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15

Lamden, Brian. Coated profiled metal claddings: Are they really maintenance free?. London: Surveyors Publications for the Royal Institute of Chartered Surveyors, 1985.

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16

Leonovich, Sergey, Nikolay Chernoivan, Viktor Tur, and Dmitriy Litvinovskiy. Technology of reconstruction of buildings and structures. ru: INFRA-M Academic Publishing LLC., 2022. http://dx.doi.org/10.12737/1867636.

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The monograph provides the basics of technology for the production of general construction and finishing works performed during the reconstruction of existing industrial and civil facilities: strengthening and restoration of exploited structures, as well as the construction of new buildings and structures designed at the reconstructed facility. The issues of conducting field surveys of operated buildings and structures in order to prepare a conclusion on the technical condition of load-bearing and enclosing structures are considered. The main design solutions and technology of work during the reconstruction (repair, reinforcement) of load-bearing and enclosing structures of operated facilities made of the following materials are given: monolithic and precast reinforced concrete; metal structures; brickwork; elements of wooden structures. The technology of rehabilitation (repair) of finishing coatings is given: monolithic plaster, wall and floor cladding with ceramic tiles and synthetic coatings, as well as repair of surfaces lined with slabs made of natural materials (granite, marble). The effective technology of construction of building structures of shallow foundations, double-layer insulated brick walls, buildings with a monolithic reinforced concrete supporting frame; the device of a waterproof carpet made of PVC membranes, etc. are described. For civil engineers. It can be useful for students, postgraduates and teachers of technical universities.
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17

Radchenko, Tat'yana, and Yuriy Shevcov. The creation of protective and strengthening coatings by methods of electron beam processing in vacuum. ru: INFRA-M Academic Publishing LLC., 2020. http://dx.doi.org/10.12737/1000599.

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This monograph presents basic theoretical and applied issues of the process of electron beam heat treatment, cladding and welding in various industries. Reviewed hardware and technological aspects, peculiarities of formation of structure of metals and alloys, as well as the patterns of change of such physical-mechanical properties, such as hardness, wear resistance, corrosion resistance, thermal conductivity. The specific examples of the electron beam to create a strengthening and protective coatings. Can be recommended as a textbook for students of technical universities, engineers and researchers and practical workers in the field of welding production.
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18

Toyserkani, Ehsan, Stephen Corbin, and Amir Khajepour. Laser Cladding. CRC, 2004.

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19

Toyserkani, Ehsan. Laser Cladding. Taylor & Francis Group, 2005.

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20

Toyserkani, Ehsan, Amir Khajepour, and Stephen F. Corbin. Laser Cladding. Taylor & Francis Group, 2004.

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21

Toyserkani, Ehsan, Amir Khajepour, and Stephen F. Corbin. Laser Cladding. Taylor & Francis Group, 2004.

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22

Group, The Construction Research. Metal Cladding in Hong Kong: A Strategic Entry Report, 1998. Icon Group International, Inc., 2005.

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23

Selves, Nick, J. Shanahan, and Colin Sproul. Profiled Sheet Roofing and Cladding: A Guide to Good Practice. Taylor & Francis Group, 2016.

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24

Shanahan, J., and Colin Sproul. Profiled Sheet Roofing and Cladding: A Guid to Good Practice. Taylor & Francis Group, 1999.

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25

Selves, Nick, J. Shanahan, and Colin Sproul. Profiled Sheet Roofing and Cladding: A Guide to Good Practice. CRC Press LLC, 2003.

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26

Selves, Nick, J. Shanahan, and Colin Sproul. Profiled Sheet Roofing and Cladding: A Guide to Good Practice. CRC Press LLC, 2003.

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27

Selves, Nick, J. Shanahan, and Colin Sproul. Profiled Sheet Roofing and Cladding: A Guide to Good Practice. CRC Press LLC, 2003.

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28

Selves, Nick, J. Shanahan, and Colin Sproul. Profiled Sheet Roofing and Cladding: A Guide to Good Practice. CRC Press LLC, 2003.

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29

Selves, Nick, J. Shanahan, and Colin Sproul. Profiled Sheet Roofing and Cladding: A Guide to Good Practice. Taylor & Francis Group, 2003.

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30

Assessment of the fracture behavior of weld material in full-thickness clad beams. Washington, D.C: The Division, 1999.

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31

Daniels, A., J. Broothaerts, F. Casteels, and P. De Regge. Conditioning of Cladding Waste by Press Compaction and Encapsulation in Low-Melting Metal Alloys (Nuclear Science and Technology, 5). European Communities, 1985.

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32

Toni, Grobstein, Ellis David L, and Lewis Research Center, eds. Advanced materials for space nuclear power stations. [Cleveland, Ohio: National Aeronautics and Space Administration, Lewis Research Center], 1991.

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33

Diffusion Cladding of Metals. Springer, 2012.

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34

Samsonov, G. V. Diffusion Cladding of Metals. Springer, 2012.

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35

Cavaliere, Pasquale. Laser Cladding of Metals. Springer International Publishing AG, 2020.

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36

Cavaliere, Pasquale. Laser Cladding of Metals. Springer International Publishing AG, 2021.

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37

G, Schumacher, Henkel P. R, U.S. Nuclear Regulatory Commission. Office of Nuclear Regulatory Research. Division of Systems Research., and Sandia National Laboratories, eds. In-pile observation of fuel and clad relocation during LMFBR core-disruptive accidents. Washington, DC: Division of Systems Research, Office of Nuclear Regulatory Research, U.S. Nuclear Regulatory Commission, 1989.

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38

G, Schumacher, Henkel P. R, U.S. Nuclear Regulatory Commission. Office of Nuclear Regulatory Research. Division of Systems Research., and Sandia National Laboratories, eds. In-pile observation of fuel and clad relocation during LMFBR core-disruptive accidents. Washington, DC: Division of Systems Research, Office of Nuclear Regulatory Research, U.S. Nuclear Regulatory Commission, 1989.

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39

G, Schumacher, Henkel P. R, U.S. Nuclear Regulatory Commission. Office of Nuclear Regulatory Research. Division of Systems Research., and Sandia National Laboratories, eds. In-pile observation of fuel and clad relocation during LMFBR core-disruptive accidents. Washington, DC: Division of Systems Research, Office of Nuclear Regulatory Research, U.S. Nuclear Regulatory Commission, 1989.

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40

A, Yegorova L., U.S. Nuclear Regulatory Commission., U.S. Nuclear Regulatory Commission. Office of Nuclear Regulatory Research., Joint Stock Company "TVEL", Institut problem bezopasnogo ispolʹzovanii︠a︡ i︠a︡dernoĭ ėnergii (Rossiĭskiĭ nauchnyĭ t︠s︡entr "Kurchatovskiĭ institut"), Institut de radioprotection et de sûreté nucléaire., and Gosudarstvennyĭ nauchnyĭ t︠s︡entr Rossiĭskoĭ Federat︠s︡ii "Nauchno-issledovatelʹskiĭ institut atomnykh reaktorov", eds. Experimental study of embrittlement of Zr-1%Nb VVER cladding under LOCA-relevant conditions. Washington, D.C: U.S. Nuclear Regulatory Commission, 2005.

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41

The 2006-2011 World Outlook for Silver Jewelry and Jewelry Made by Cladding Platinum Metals and Karat Gold to Silver. Icon Group International, Inc., 2005.

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42

Parker, Philip M. The 2007-2012 World Outlook for Silver Jewelry and Jewelry Made by Cladding Platinum Metals and Karat Gold to Silver. ICON Group International, Inc., 2006.

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43

Parker, Philip M. The 2007-2012 Outlook for Silver Jewelry and Jewelry Made by Cladding Platinum Metals and Karat Gold to Silver in India. ICON Group International, Inc., 2006.

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44

Parker, Philip M. The 2007-2012 Outlook for Silver Jewelry and Jewelry Made by Cladding Platinum Metals and Karat Gold to Silver in Japan. ICON Group International, Inc., 2006.

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45

Parker, Philip M. The 2007-2012 Outlook for Silver Jewelry and Jewelry Made by Cladding Platinum Metals and Karat Gold to Silver in Greater China. ICON Group International, Inc., 2006.

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46

Parker, Philip M. The 2007-2012 Outlook for Silver Jewelry and Jewelry Made by Cladding Platinum Metals and Karat Gold to Silver in the United States. ICON Group International, Inc., 2006.

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