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Single-stage sealing of ceramic tiles by means of high-power diode laser radiation
Author(s) -
J. Lawrence,
L. Li,
R. E. Edwards,
Andrew W Gale
Publication year - 2001
Publication title -
journal of laser applications
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.549
H-Index - 52
eISSN - 1938-1387
pISSN - 1042-346X
DOI - 10.2351/1.1418709
Subject(s) - tile , materials science , glaze , ceramic , enamel paint , composite material , porosity , metallurgy
An investigation has been carried out using a 60 W high-power diode laser (HPDL) to determine the feasibility of sealing the void between adjoining ceramic tiles with a specially developed grout material. A single-stage process has subsequently been devised using a new grout material which consists of two distinct components: a crushed ceramic tile mix substrate and a glazed enamel surface; the crushed ceramic tile mix provides a tough, inexpensive bulk substrate, while the enamel provides an impervious surface glaze. HPDL processing has resulted in crack- and porosity-free seals produced in normal atmospheric conditions. The single-stage grout is simple to formulate and easy to apply. Tiles were successfully sealed with power densities as low as 750 W/cm2 and at rates of up to 420 mm/min. Bonding of the enamel to the crushed ceramic tile mix was identified as being primarily due to van der Waals forces and, on a very small scale, some of the crushed ceramic tile mix material dissolving into the glaze.

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