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首页> 外文期刊>Biomedical materials >The effect of powder properties on sintering, microstructure, mechanical strength and degradability of beta-tricalcium phosphate/calcium silicate composite bioceramics
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The effect of powder properties on sintering, microstructure, mechanical strength and degradability of beta-tricalcium phosphate/calcium silicate composite bioceramics

机译:粉末性质对β-磷酸三钙/硅酸钙复合生物陶瓷的烧结,微观结构,机械强度和降解性的影响

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摘要

The effect of powder properties on sintering, microstructure, mechanical strength and degradability of beta-tricalcium phosphate/Calcium silicate (beta-Ca-3(PO4)(2)/CaSiO3, beta-TCP/CS) composite bioceramics was investigated. beta-TCP/CS composite powders with a weight ratio of 50: 50 were prepared by three different methods: mechanical milling method (TW-A), two-step chemical precipitation method (TW-B) and in situ chemical co-precipitation method (TW-C), and then the three composite powders were uniaxially compacted at 30 MPa, followed by cold isostatic pressing into rectangular-prism-shaped specimens under a pressure of 200 MPa for 15 min, and then sintered at 1150 degrees C for 5 h. The TW-B powders with less agglomerative morphologies and uniform nano-size particles attained 96.14% relative density (RD). A uniform microstructure with about 120 nm grains was observed. Whereas, the samples obtained from TW-A and TW-C powders only reached a RD of 63.08% and 78.86%, respectively. The bending strength of the samples fabricated from TW-B reached 125 MPa, which was more than 3.7 and 1.5 times higher as compared with that of samples obtained from TW-A and TW-C powders, respectively. Furthermore, the degradability of the samples fabricated from TW-B powders was obviously lower than that of the samples fabricated from TW-A and TW-C powders.
机译:研究了粉末性质对β-磷酸三钙/硅酸钙(β-Ca-3(PO4)(2)/ CaSiO3,β-TCP/ CS)复合生物陶瓷的烧结,微观结构,机械强度和降解性的影响。通过三种不同的方法制备了重量比为50:50的β-TCP/ CS复合粉末:机械研磨法(TW-A),两步化学沉淀法(TW-B)和原位化学共沉淀法(TW-C),然后将三种复合粉末在30 MPa下单轴压实,然后在200 MPa的压力下冷等静压成矩形棱柱形试样15分钟,然后在1150摄氏度下烧结5 H。 TW-B粉末具有较小的团聚形态和均匀的纳米级颗粒,相对密度(RD)为96.14%。观察到具有约120nm晶粒的均匀微观结构。而从TW-A和TW-C粉末获得的样品的RD分别仅为63.08%和78.86%。由TW-B制成的样品的弯曲强度达到125 MPa,分别比从TW-A和TW-C粉末获得的样品的弯曲强度高3.7和1.5倍。此外,由TW-B粉末制成的样品的可降解性明显低于由TW-A和TW-C粉末制成的样品的可降解性。

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