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使用改性无水磷酸二钙粉末制备的磷酸钙骨水泥的凝固时间和可成型性。

Setting time and formability of calcium phosphate cements prepared using modified dicalcium phosphate anhydrous powders.

作者信息

Sawamura Takenori, Mizutani Yoichiro, Okuyama Masahiko, Kasuga Toshihiro

机构信息

R & D Center, NGK Spark Plug Co. Ltd., 2808 Iwasaki, Komaki, Aichi, 485-8510, Japan,

出版信息

J Mater Sci Mater Med. 2014 Jul;25(7):1631-6. doi: 10.1007/s10856-014-5209-1. Epub 2014 Apr 9.

Abstract

Calcium phosphate cements (CPCs) were prepared using Ca4(PO4)2O (TeCP) and modified CaHPO4 (DCPA) to evaluate the effects of the powder properties for DCPA particles on the setting time and formability of the resulting CPCs. Two types of modified DCPA were prepared by milling commercially available DCPA with ethanol (to produce E-DCPA) or distilled water (to produce W-DCPA). The E-DCPA samples consisted of well-dispersed, fine primary particles, while the W-DCPA samples contained agglomerated particles, and had a smaller specific surface area. The mean particle size decreased with increased milling time in both cases. The raw CPC powders prepared using W-DCPA had a higher packing density than those prepared using E-DCPA, regardless of the mean particle size. The setting time of the CPC paste after mixing with distilled water decreased with decreases in the mean particle size and specific surface area, for both types of DCPA. The CPCs prepared using W-DCPA showed larger plasticity values compared with those prepared using E-DCPA, which contributed to the superior formability of the W-DCPA samples. The CPCs prepared using W-DCPA showed a short setting time and large plasticity values, despite the fact that only a small amount of liquid was used for the mixing of the raw CPC powders (a liquid-to-powder ratio of 0.25 g g(-1) was used). It is likely that the higher packing density of the raw CPC powders prepared using W-DCPA was responsible for the higher performance of the resulting CPCs.

摘要

使用Ca4(PO4)2O(TeCP)和改性CaHPO4(DCPA)制备磷酸钙骨水泥(CPC),以评估DCPA颗粒的粉末特性对所得CPC凝固时间和可成型性的影响。通过将市售DCPA与乙醇研磨(以生产E-DCPA)或蒸馏水研磨(以生产W-DCPA)制备两种类型的改性DCPA。E-DCPA样品由分散良好的细初级颗粒组成,而W-DCPA样品包含团聚颗粒,且比表面积较小。两种情况下,平均粒径均随研磨时间的增加而减小。无论平均粒径如何,使用W-DCPA制备的原始CPC粉末的堆积密度均高于使用E-DCPA制备的粉末。对于两种类型的DCPA,与蒸馏水混合后CPC糊剂的凝固时间随平均粒径和比表面积的减小而缩短。与使用E-DCPA制备的样品相比,使用W-DCPA制备的CPC显示出更大的可塑性值,这有助于W-DCPA样品具有优异的可成型性。尽管在混合原始CPC粉末时仅使用了少量液体(液粉比为0.25 gg(-1)),但使用W-DCPA制备的CPC仍显示出较短的凝固时间和较大的可塑性值。使用W-DCPA制备的原始CPC粉末的较高堆积密度可能是所得CPC具有更高性能的原因。

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