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Femtosecond Laser Welding of Glass and Sitall with Substantially Different Values of the LTEC

The possibility of creating a stable joint of materials with different values of the linear thermal expansion coefficient (LTEC) was demonstrated by means of femtosecond laser beam welding: phosphate glass and zinc-magnesium-aluminum-silicate sitall (their values of the LTEC lie in the range 20 – 30...

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Published in:Glass and ceramics 2023-05, Vol.80 (1-2), p.41-44
Main Authors: Fedotov, S. S., Lipat’eva, T. O., Lipat’ev, A. S., Shakhgil’dyan, G. Yu, Lotarev, S. V., Savinkov, V. I., Sigaev, V. N.
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container_title Glass and ceramics
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creator Fedotov, S. S.
Lipat’eva, T. O.
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Sigaev, V. N.
description The possibility of creating a stable joint of materials with different values of the linear thermal expansion coefficient (LTEC) was demonstrated by means of femtosecond laser beam welding: phosphate glass and zinc-magnesium-aluminum-silicate sitall (their values of the LTEC lie in the range 20 – 300°C: 120 × 10 –7 K –1 and 62 × 10 –7 K –1 respectively. Optical microscopy and Raman spectroscopy were used to investigate the structural features of welds obtained by different laser welding regimes and to optimize the laser welding regimes.
doi_str_mv 10.1007/s10717-023-00554-0
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source EBSCOhost Art & Architecture Source; Springer Nature
subjects Aluminum
Ceramics
Characterization and Evaluation of Materials
Chemistry and Materials Science
Composites
Glass
Laser beam welding
Magnesium
Magnesium aluminum silicates
Materials Science
Microfluidics
Natural Materials
Optical microscopy
Phosphate glass
Phosphates
Raman spectroscopy
Thermal expansion
Thermal properties
Welded joints
Welding
title Femtosecond Laser Welding of Glass and Sitall with Substantially Different Values of the LTEC
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