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The enamel softening and loss during early erosion studied by AFM, SEM and nanoindentation

机译:通过原子力显微镜,扫描电镜和纳米压痕研究了早期侵蚀过程中釉质的软化和消失

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摘要

Enamel dissolution occurs when it contacts with acids produced by plaque bacteria, foods or drinks. There have been numerous and varied studies quantifying and characterizing the rate, extent and chemical aspects of enamel erosion; however, there is still hot debate about the amounts of enamel softening and loss. The objective of this study was to measure the enamel erosion process with high accuracy. Native third molars were partly eroded in citric acid ( pH = 3.8) with some domains protected by a Ti coating layer. The surface morphology and structures before and after exposure to citric acid for different time periods were studied by AFM, SEM and nanoindentation, respectively. Based on this, the functions between the amounts of enamel softening, loss and erosion time were established for the first time. It was demonstrated that AFM, SEM and nanoindentation were suitable for measuring the early stages of enamel demineralization qualitatively and quantitatively.
机译:当牙菌斑与细菌,食物或饮料产生的酸接触时,牙釉质就会溶解。已经进行了许多不同的研究来量化和表征搪瓷腐蚀的速率,程度和化学方面。然而,关于牙釉质软化和脱落的量仍存在激烈的争论。这项研究的目的是高精度地测量搪瓷腐蚀过程。天然的第三磨牙在柠檬酸(pH = 3.8)中被部分侵蚀,某些区域被钛涂层保护。通过原子力显微镜,扫描电镜和纳米压痕分别研究了柠檬酸在不同时间暴露前后的表面形态和结构。在此基础上,首次建立了搪瓷软化量,损失量和腐蚀时间之间的函数。结果表明,原子力显微镜,扫描电镜和纳米压痕技术适用于定性和定量测量釉质脱矿的早期阶段。

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