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Responses of pre-crystallized and crystallized zirconia-containing lithium silicate glass ceramics to diamond machining

机译:含前结晶和结晶氧化锆硅酸锂玻璃陶瓷的反应钻石加工

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摘要

This paper reports on the responses of pre-crystallized and crystallized zirconia-containing lithium silicate glass ceramics (ZLS) to diamond machining in simulated dental milling and adjusting processes. Machining mechanics, tool wear and tribological characteristics, and surface and subsurface damage were investigated. Machining forces and coefficients of friction were measured using a force sensor and high-speed data acquisition system. Diamond tool wear and debris adhesion, and machining-induced surface and subsurface damage were examined using field emission scanning electron microscopy. The results show that both tangential and normal forces of crystallized ZLS were significantly higher than those of pre-crystallized ZLS (p < 0.05) while these forces for both materials significantly increased with the material removal rate (p < 0.05). Coefficients of friction in machining of crystallized ZLS were significantly higher than those in machining of pre-crystallized ZLS. In spite of the minimum wear of applied diamond tools in machining both materials, more crystallized ZLS debris adhesion on tool surfaces was observed. The principal removal mechanisms in machining of both materials were primary fracture and minor plastic deformation of pre-crystallized and crystallized ZLS. However, there was more severe fracture in machining of pre-crystallized ZLS than in machining of crystallized ZLS. Although machining-induced subsurface edge chipping damage in both materials remarkably increased with the feed rate (p < 0.05), such damage was significantly severer in pre-crystallized ZLS than in crystallized ZLS (p < 0.05). These microstructure-property-processing relations provide practical guidance of process selection for high-quality fabrication of ZLS materials.
机译:本文报道了在模拟牙科铣削和调整过程中对含前结晶和结晶的含有结晶氧化锆锂硅酸锂玻璃陶瓷(ZLS)的反应。研究了加工力学,工具磨损和摩擦学特性,以及表面和地下损伤。使用力传感器和高速数据采集系统测量加工力和摩擦系数。使用现场发射扫描电子显微镜检查金刚石工具磨损和碎屑粘附和机加工诱导的表面和地下损坏。结果表明,结晶ZLS的切向和正常力显着高于预结晶的ZLS(P <0.05),而这两种材料的这些力显着增加了材料去除率(P <0.05)。结晶ZL加工加工的摩擦系数显着高于预结晶ZL的加工。尽管在加工两种材料时施加的金刚石工具的最小磨损,但观察到在工具表面上的更结晶的ZLS碎片。两种材料加工的主要去除机制是预结晶和结晶ZL的初级骨折和次要塑性变形。然而,在加工预结晶的ZL时比在加工结晶ZL时,更严重的骨折。虽然在两种材料中加工诱导的地下边缘碎裂损坏随着进料速率显着增加(P <0.05),但在预结晶的ZL中,这种损伤显着比结晶ZLS更严重(P <0.05)。这些微观结构 - 性能处理关系提供了用于高质量制造ZLS材料的过程选择的实际指导。

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