首页> 外文会议>International Symposium on Nitrides; 20060403-05; Eskisehir(TK) >An Introduction to the Glass Formation and Properties of Ca-Si-Al-O-N-F Glasses
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An Introduction to the Glass Formation and Properties of Ca-Si-Al-O-N-F Glasses

机译:Ca-Si-Al-O-N-F玻璃的玻璃形成及其性能简介

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Ca-Sialon glasses have been known for some time [1] and they are effectively calcium-alumino-silicate glasses containing nitrogen which improves their mechanical properties. Calcium-alumino-silicate glasses containing fluorine are known to have useful characteristics as potential bioactive materials [2]. Therefore, the combination of both nitrogen and fluorine additions to these glasses may give useful bioglasses with enhanced mechanical stability.Addition of fluorine to oxynitride glasses was not reported previously and this paper gives the first report of the glass forming regions (and evaluation of some properties) in the Ca-Si-Al-O-N-F system. Within the previously defined [1] glass forming region in the Ca-Si-Al-O-N system, homogeneous, dense glasses are formed. Addition of fluorine extends the glass forming region but also increases the reactivity of the glass melts. One major problem is fluorine loss as SiF_4, but also loss of nitrogen, which affects the final composition and results in porous samples. To suppress the fluorine loss and CaF_2 precipitation, consideration of the ratio of cations to fluorine and the coordination number of Al atoms is important. Discussion of the role of cations in these oxyfluoro-nitride glasses is presented.
机译:Ca-Sialon玻璃已经有一段时间了[1],并且它们实际上是含有氮的钙铝硅酸盐玻璃,可改善其机械性能。已知含氟的钙铝硅酸盐玻璃具有有用的特性作为潜在的生物活性材料[2]。因此,向这些玻璃中同时添加氮和氟可以提供有用的生物玻璃,并具有增强的机械稳定性。以前没有报道过将氟添加到氮氧化物玻璃中,并且本文首次报道了玻璃形成区域(以及一些性能的评估)。 )在Ca-Si-Al-ONF系统中。在Ca-Si-Al-O-N系统中先前定义的[1]玻璃形成区域内,形成均匀,致密的玻璃。氟的添加扩展了玻璃形成区域,但也增加了玻璃熔体的反应性。一个主要问题是作为SiF_4的氟损失,但还有氮的损失,这会影响最终的组成并导致形成多孔样品。为了抑制氟的损失和CaF_2的析出,重要的是考虑阳离子与氟的比例和Al原子的配位数。讨论了阳离子在这些氧氟氮化物玻璃中的作用。

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