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1

M, Rühle, ed. Metal-ceramic interfaces. Pergamon, 1990.

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2

W, Kraft, Deutsche Gesellschaft für Metallkunde, and International Conference on Joining Ceramics, Glass and Metal (3rd : 1989 : Bad Nauheim, Germany), eds. Joining ceramics, glass, and metal. DGM Informationsgesellschaft, 1989.

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3

Y, Lin R., TMS Process Fundamentals Committee., Minerals, Metals and Materials Society. Composite Committee., Minerals, Metals and Materials Society. Meeting, and Symposium on Interfaces in Metal-Ceramics Composites (1990 : Anaheim, Calif.), eds. Interfaces in metal-ceramics composites: Proceedings of the international conference on interfaces in metal-ceramics composites. Minerals, Metals & Materials Society, 1990.

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4

Miyoshi, Kazuhisa. Adhesion, friction, and wear behavior of clean metal-ceramic couples. National Aeronautics and Space Administration, 1995.

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5

H, Krappitz, Schaeffer Helmut A, Deutsche Glastechnische Gesellschaft, and International Conference on Joining Ceramics, Glass and Metal (4th : 1993 : Königswinter, Germany), eds. Joining ceramics, glass, and metal: Proceedings of the 4th international conference : May 17-19, 1993, Königswinter (Germany). Verlag der Deutschen Glastechnische Gesellschaft, 1993.

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6

Manfred, Rühle, and Workshop on Bonding, Structure, and Mechanical Properties of Metal/Ceramic Interfaces (1989 : University of California, Santa Barbara, College of Engineering), eds. Metal-ceramic interfaces: Proceedings of an international workshop, Coronado, California, USA, 16-18 January 1989. Pergamon, 1990.

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7

Yamamoto, Makoto. Basic techniques for metal ceramics: An introduction to ceramic technique. Quintessence Pub., 1990.

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8

E, Reimanis Ivar, Henager C. H, Tomsia Antoni P, and American Ceramic Society Meeting, eds. Ceramic joining. American Ceramic Society, 1997.

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9

Seiken, International Symposium on Interface Structure Properties and Diffusion Bonding (1st 1985 Tokyo Japan). Fundamentals of diffusion bonding: Proceedings of the First Seiken International Symposium on Interface Structure, Properties, and Diffusion Bonding, Tokyo, Japan, 2-4 December 1985. Elsevier, 1987.

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10

V, Koni͡u︡shkov G., ed. Soedinenie metallov s keramicheskimi materialami. "Mashinostroenie", 1991.

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11

Strietzel, Roland. Die Werkstoffkunde der Metall-Keramik-Systeme. Verlag Neuer Merkur, 2005.

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12

Yamamoto, Makoto. Basic technique for metal ceramics: Color atlas : an introduction to ceramic technique. Quintessence Publishing Co., 1990.

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13

International Meeting on Modern Ceramics Technologies (12th 2010 Montecatini Terme, Italy). Ceramics surfaces for tribology and corrosion & ceramic joining science and technology: 12th international ceramics conference, part C. Trans Tech Pub., on behalf of Techna Group, 2011.

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14

MRS International Meeting on Advanced Materials (lst 1988 Toyko, Japan). Metal-ceramic joints: June 2-June 3, 1988, Sunshine City, Ikebukuro, Tokyo, Japan. Edited by Iwamoto Nobuya 1930-, Suga Tadatomo 1953-, and Materials Research Society. Materials Research Society, 1989.

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15

P, Kumar, Greenhut V. A, Minerals, Metals and Materials Society. Refractory Metals Committee., and Minerals, Metals and Materials Society. Meeting, eds. Metal-ceramic joining: Proceedings of a symposium held on metal-ceramic joining sponsored by the TMS Refractory Metals Committee, held during the TMS Fall Meeting, Detroit, Michigan, October 8-9, 1990. Minerals, Metals & Materials Society, 1991.

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16

American Society of Mechanical Engineers. Winter Meeting. Technology of glass, ceramic, or glass-ceramic to metal sealing: Presented at the Winter Annual Meeting of the American Society of Mechanical Engineers, Boston, Massachusetts, December 13-18, 1987. American Society of Mechanical Engineers, 1987.

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17

United States. National Aeronautics and Space Administration., ed. Characterization of defect solids: Final report on the director's discretionary fund grant. National Aeronautics and Space Administration, 1994.

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18

Bachin, V. A. Diffuzionnai͡a︡ svarka stekla i keramiki s metallami. "Mashinostroenie", 1986.

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19

Sirotkin, Rostislav. Fundamentals of modern materials science. INFRA-M Academic Publishing LLC., 2025. https://doi.org/10.12737/2111845.

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The textbook provides data on current trends in the expansion and change of the range of materials used in practice and the problems of the fundamental formation of materials science in the 21st century. The modern conceptual and theoretical fundamental principles of materials science as a unified scientific and educational discipline based on four basic scientific innovations are outlined. It is shown that the unity of the nature of metallic and non-metallic organic (carbon) and inorganic (carbon-free) polymer materials and the specifics of their differences in structure and properties are re
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20

Indianapolis, Ind ). American Ceramic Society Meeting (98th :. 1996 :. Ceramic Joining (Ceramic Transactions, Vol. 77) (Ceramic Transactions). American Ceramic Society, 1997.

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21

Joining ceramics, glass and metal: Lectures and poster show contributions of the 5th International Conference taking place in Jena on May, 12-14, 1997. DVS-Verl., 1997.

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22

Evans, A. G., and M. Ruhle. Metal-Ceramic Interfaces: Proceedings of an International Workshop Santa Barbara California, USA 16-18 January 1989 (Acta-Scripta Metallurgica Proce). Pergamon, 1990.

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23

Basic Technique for Metal Ceramics. Quintessence Publishing Co Ltd, 1991.

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24

(Editor), K. Scott Weil, Ivar E. Reimanis (Editor), and Charles A. Lewinsohn (Editor), eds. Surfaces, Interfaces, and Science of Ceramic Joining: Proceedings of the 106th Annual Meeting of the American Ceramic Society, Indianapolis, Indiana, USA, ... Transactions) (Ceramic Transactions Series). Wiley-American Ceramic Society, 2005.

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25

Metal-ceramics: Principle and methods of Makoto Yamamoto. Quintessence Pub. Co., 1985.

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26

Metal-ceramic joints: June 2-June 3, 1988, Sunshine City, Ikebukuro, Tokyo, Japan (Materials Research Society international symposium proceedings). Materials Research Society, 1989.

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27

Kireev, L. S., V. V. Peshkov, and Selivanov. Physics-Chemistry of the Process of Diffusion Bonding of Porous-Monolithic Titanium-Based Metal-Ceramic Products (Welding and Surfacing Reviews). Taylor & Francis, 1998.

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28

Herrmann, Konrad, ed. Hardness Testing. ASM International, 2011. http://dx.doi.org/10.31399/asm.tb.htpa.9781627083461.

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Hardness Testing: Principles and Applications is an in-depth study of one of the most fundamental properties of materials and the tools and techniques that have been developed to measure it. Hardness, as defined in the first chapter, is a type of resistance to deformation, the roots of which lie in the packing density of atoms and the bonding forces that keep them in place. As subsequent chapters explain, the hardness of metals, plastics, rubber, and ceramics can be measured as a response to an applied stress (whether static or dynamic), via noncontact sensing, or through an instrumented inden
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