Camiré C L, Gbureck U, Hirsiger W, Bohner M
Department of Orthopaedics, Lund University Hospital, 221-85 Lund, Sweden.
Biomaterials. 2005 Jun;26(16):2787-94. doi: 10.1016/j.biomaterials.2004.08.001.
In this study, the effect of how variant milling time affects material characteristics of alpha phase tricalcium phosphate powder (alpha-TCP) was studied. Two alpha-TCP batches were separated in small lots and milled for various times for up to 4 h. The resulting milled lots were characterized by measuring their crystallinity, particle size, specific surface area, thermal stability, and heat released during hydration. Mechanical treatment was seen to greatly increase the alpha-TCP X-ray amorphous fraction and heat release during hydration, almost independently of alpha-TCP particle size and specific surface area. Therefore, the results suggest that the formation and presence of an X-ray amorphous phase in the alpha-TCP powder greatly contribute to its reactivity. The exotherm of the powders increases from 103 to 238 kJ/mol after milling.
在本研究中,研究了不同球磨时间对α相磷酸三钙粉末(α-TCP)材料特性的影响。将两批α-TCP分成小批次,并在长达4小时的不同时间进行球磨。通过测量所得球磨批次的结晶度、粒度、比表面积、热稳定性和水化过程中释放的热量来对其进行表征。可以看出,机械处理极大地增加了α-TCP的X射线非晶部分和水化过程中的热释放,几乎与α-TCP的粒度和比表面积无关。因此,结果表明α-TCP粉末中X射线非晶相的形成和存在极大地促进了其反应活性。球磨后粉末的放热从103 kJ/mol增加到238 kJ/mol。