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Mo-Mn Metallizing on Sintered Alumina and It합s Bond Strength
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J. Korean Ceram. Soc.. 1985;22(6):58

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Effect of atmosphere composition on metallizing Al2O3 substrates with Mo-Mn paste
Microelectronics Reliability. 1986;26(3):587   Crossref logo
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Interaction between a Mg17Al12 precipitate and {10 1 ¯ 2}<10 1 ¯ 2> $$\{ 10\bar 12\} < 10\bar 12 >$$ twin boundary in magnesium alloys
Magnesium Technology 2013. 2013;89-94   Crossref logo
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Metallizing high-alumina ceramics and soldering of metals onto them
Vacuum. 1973;23(1):38   Crossref logo
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362. Metallizing alumina ceramics and sealing them to metals
Vacuum. 1971;21(5):198   Crossref logo
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Comparison of Mechanical Properties of Mn-Cr-Mo Steels Sintered in Different Conditions
Solid State Phenomena. 2013;197:33-40   Crossref logo
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ChemInform Abstract: DETERMINATION OF BIAXIAL COMPRESSIVE STRENGTH OF A SINTERED ALUMINA CERAMIC
Chemischer Informationsdienst. 1977;8(1):no-no   Crossref logo
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Fracture Origin and Strength in Advanced Pressureless-Sintered Alumina
Journal of the American Ceramic Society. 2005;81(7):1900-1906   Crossref logo
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w= 1 2 ( z+ 1 z ) $$ w = \frac{1}{2}\left( {z + \frac{1}{z}} \right) $$
Funktionentheorie. 1922;21-23   Crossref logo
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High-Temperature Metallizing of Alumina
Surfaces and Interfaces in Ceramic and Ceramic — Metal Systems. 1981;535-545   Crossref logo
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Gigacycle Fatigue Endurance Strength of High Density Mo and Cr-Mo Prealloyed Sintered Steel
Materials Science Forum. 2007;534-536:689-692   Crossref logo
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