J Korean Acad Prosthodont.  2002 Dec;40(6):572-576.

Mechanical Properties Of Reused Lithium Disilicate Glass-Ceramic Of Ips Empress 2 System

Affiliations
  • 1Department of Prosthodontics, School of Dentistry, Wonkwang University, Korea.

Abstract

This investigation was designed to estimate the biaxial flexure strength and fracture toughness of lithium disilicate glass-ceramics of IPS Empress 2 system pressed with as-received ingots and their sprue buttons. Two groups of the lithium disilicate glass-ceramics were prepared as follows: group 1 is ingot-pressed group; group 2 is sprue button-pressed group. A ball-on-three-ball test was used to determine biaxial flexure strength (BFS) of disks in wet environment. Scanning electron microscopy(SEM) analysis was conducted to observe the microstructure of the ceramics. Unpaired t-test showed that there were no differences in the mean biaxial flexure strength (BFS) and KIC values between group 1 and 2 (p>0.05). Two groups showed similar values in the KIC and the strength at 5% failure probability. The SEM micrographs of the IPS Empress 2 glass-ceramic showed a closely packed, multi-directionally interlocking pattern of numerous lithium disilicate crystals protruding from the glass matrix. The lithium orthophosphate crystals could not be observed on the fracture surface etched. There was no a marked difference of the microstructure between group 1 and 2. Although there were no tests including color stability, casting accuracy, etc., the results of this study implied that we could reuse the sprue button of the pressed lithium disilicate glass-ceramic of IPS Empress 2 system.

Keyword

Biaxial flexure strength; Fracture toughness; Ceramic microstructure; Lithium disilicate glass-ceramics; IPS Empress 2 system

MeSH Terms

Celiac Disease
Ceramics
Glass
Lithium*
Phosphates
Ceramics
Lithium
Phosphates
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