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Properties of hot-pressed lithium silicate glass-ceramics

机译:热压硅酸锂玻璃陶瓷的性能

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Objectives. New lithium silicate/disilicate hot-pressed glass-ceramics are introduced into the dental market. It is known that the mechanical properties of this material depend on the microstructure, chemical composition, glass matrix, morphology of crystals, volume ratio crystal/glass, additive, and treatments. This contribution investigates how these factors affect the properties of the new generation of lithium silicate/disilicate hot-pressed glass-ceramics.Methods. Three lithium silicate/disilicate hot-pressed glass-ceramics were investigated; IPS e.max Press (control group), Initial LiSi Press and Celtra Press. The specimens were prepared according to the manufacturers' instructions. Different methods; DTA, XRD, Raman, optical spectroscopy, SEM were used to characterize the properties of these materials before, after heat and etching treatments. The heat treatments (four firings) were performed according to the manufacturer's instructions (GC company) for veneering (initial LiSi) of LS2 glass-ceramics. The etching was performed according to the manufacturer's instruction. Vita ceramics etch gel (HF 5%) was used as an etching agent. The mechanical properties were investigated according to DIN EN ISO 6872:2015 and ASTM C 1327-08 instructions.Results. DTA and XRD analysis revealed that the transformation of the lithium silicate (LS) phase to the LS2 phase was completed for IPS e.max and Initial LiSi Press ingots while for Celtra Press ingots it was not. After pressing, the rod-shaped crystals were aligned parallel to the extrusion direction, while the platelet-shaped crystals having an interlocking microstructure were not. The mechanical properties depend on the microstructure, the chemical composition, the crystals morphology, the volume crystal/glass ratio, and the treatments (heat and etching). ZrO2 did not improved the mechanical properties. Etching with HF gel decreased the flexural strength. After four heat treatments, the biaxial flexural strength, the K-IC , the roughness and the optical properties were affected. According to the HT-XRD, IPS e.max Press ingots can be hot pressed up to 900 degrees C, the initial LiSi Press ingots up to 940 degrees C and Celtra Press ingots up to 880 degrees C.Significance. The properties of LS2 glass-ceramics depend on the chemical composition, the microstructure, the morphology of the crystals, the properties of the residual glass matrix, the volume ratio of crystal/glass, and the treatments (heat and etching). (C) 2019 Published by Elsevier Inc. on behalf of The Academy of Dental Materials.
机译:目标。新型硅酸锂/二硅酸锂热压玻璃陶瓷被引入牙科市场。众所周知,这种材料的机械性能取决于微观结构,化学成分,玻璃基质,晶体的形态,晶体/玻璃的体积比,添加剂和处理方法。本贡献调查了这些因素如何影响新一代硅酸锂/二硅酸锂热压玻璃陶瓷的性能。研究了三种硅酸锂/二硅酸锂热压玻璃陶瓷。 IPS e.max印刷机(控制组),LiSi初始印刷机和Celtra印刷机。根据制造商的说明制备样品。不同的方法;使用DTA,XRD,拉曼光谱,光谱学,SEM表征了这些材料在热处理和蚀刻处理之前,之后的特性。根据制造商的说明(GC公司)对LS2微晶玻璃进行饰面(初始LiSi)进行热处理(四次烧成)。根据制造商的说明进行蚀刻。使用Vita陶瓷蚀刻凝胶(HF 5%)作为蚀刻剂。根据DIN EN ISO 6872:2015和ASTM C 1327-08指令研究了机械性能。 DTA和XRD分析表明,对于IPS e.max和初始LiSi Press铸锭,硅酸锂(LS)相向LS2相的转化已完成,而对于Celtra Press铸锭则未完成。压制后,棒状晶体平行于挤出方向取向,而具有互锁微结构的片状晶体则没有。机械性能取决于微观结构,化学组成,晶体形态,晶体/玻璃的体积比以及处理(加热和蚀刻)。 ZrO2没有改善机械性能。用HF凝胶蚀刻降低了弯曲强度。经过四个热处理后,双轴弯曲强度,K-IC,粗糙度和光学性能均受到影响。根据HT-XRD,IPS e.max Press锭可以热压到900摄氏度,最初的LiSi Press锭可以高达940摄氏度,Celtra Press锭可以高达880摄氏度。 LS2玻璃陶瓷的性能取决于化学成分,微观结构,晶体的形态,残余玻璃基质的性能,晶体/玻璃的体积比以及处理(加热和蚀刻)。 (C)2019由Elsevier Inc.代表牙科材料学院出版。

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