二硅酸锂
脆性
材料科学
锂(药物)
复合材料
陶瓷
医学
内分泌学
作者
Maram Bawazir,Chin Huat Lim,Paulina Arnés Urgellés,Mingyuan Lu,Han Huang,Yu Zhang
标识
DOI:10.1177/00220345241256279
摘要
Computer-aided design (CAD)/computer-aided manufacturing (CAM) milling and handpiece grinding are critical procedures in the fabrication and adjustment of ceramic dental restorations. However, due to the formation of microfractures, these procedures are detrimental to the strength of ceramics. This study analyzes the damage associated with current brittle-regime grinding and presents a potential remedy in the application of a safer yet still efficient grinding regime known as "ductile-regime grinding." Disc-shaped specimens of a lithium disilicate glass-ceramic material (IPS e.max CAD) were obtained by cutting and crystallizing the lithium metasilicate CAD/CAM blanks (the so-called blue blocks) following the manufacturer's instructions. The discs were then polished to a 1 µm diamond suspension finish. Single-particle micro-scratch tests (
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