Collys K, Slop D, Cleymaet R, Coomans D, Michotte Y
Faculteit Geneeskunde en Farmacie, Eenheid Prothetische Tandheelkunde, Vrije Universiteit Brussel, Belgium.
Dent Mater. 1992 Sep;8(5):332-5. doi: 10.1016/0109-5641(92)90110-x.
The load dependency of hardness measurements was investigated on sound and demineralized enamel samples. For all samples investigated, the Knoop hardness number (KHN) varied as a function of the applied load. Higher loads enhanced indenter penetration into the test surface. The variation in KHN values observed in demineralized enamel, both surface-softened and surface-etched, was explained by a decrease in porosity as a function of depth. The reading error for indentations made on surface enamel etched with 37% phosphoric acid gel for 30 s was found to be slightly elevated compared to indentations made on a polished sound enamel surface. It was concluded that the surface microhardness technique can be used for the longitudinal investigation of etched surface enamel.
在完好无损和脱矿质的牙釉质样本上研究了硬度测量的负荷依赖性。对于所有研究的样本,努氏硬度值(KHN)随施加负荷的变化而变化。较高的负荷会增加压头对测试表面的压入深度。表面软化和表面蚀刻的脱矿质牙釉质中观察到的KHN值变化,可通过孔隙率随深度的降低来解释。结果发现,与在抛光的完好牙釉质表面进行的压痕相比,用37%磷酸凝胶蚀刻30秒的表面牙釉质上的压痕读数误差略有升高。得出的结论是,表面显微硬度技术可用于蚀刻表面牙釉质的纵向研究。