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首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Effect of particle size of metastable calcium phosphates on mechanical strength of a novel self-setting bioactive calcium phosphate cement.
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Effect of particle size of metastable calcium phosphates on mechanical strength of a novel self-setting bioactive calcium phosphate cement.

机译:亚稳磷酸钙的粒径对新型自固化生物活性磷酸钙水泥力学强度的影响。

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摘要

Resistance to compressive strength after setting of the calcium phosphate cement consisting of tetracalcium phosphate (TECP), dicalcium phosphate dihydrate (DCPD), and 40 wt/wt% of a synthetic hydroxyapatite (HAP) was tested. An equimolar mixture of the calcium phosphate powder containing DCPD (particle diameter [D] 0.52-3.33 microns) and TECP (D, 1.1-13.1 microns) transformed into HAP at 37 degrees C, 100% RH after being mixed with 25 mM phosphoric acid. X-ray diffraction suggested that the cement containing fine particles of DCPD and TECP completely transformed to HAP, but that mixtures containing larger particles did not. Because particle size of both DCPD and TECP affected the compressive strength of the cement, the crystal growth of HAP during cement formation depended on the specific surface area (Sw) of the raw materials. The crystallite size of transformed HAP was estimated based on X-ray diffraction peaks at 25.8 and 32.8 degrees attributable to the 002 and 300 planes. The crystalline size attributable to the 300 plane decreased with increasing Sw, but that attributable to the 002 plane showed no significant relationship. The compressive strength of the cement after hardening increased with an increase of its Sw. This suggested that the harder calcium phosphate cement was (derived) from the smaller particle size of the raw materials.
机译:测试了由磷酸四钙(TECP),磷酸二钙二水合物(DCPD)和40 wt / wt%的合成羟基磷灰石(HAP)组成的磷酸钙水泥固化后的抗压强度。将含有DCPD(粒径[D] 0.52-3.33微米)和TECP(D,1.1-13.1微米)的磷酸钙粉末等摩尔混合物与25 mM磷酸混合后,在37摄氏度,100%相对湿度下转变成HAP 。 X射线衍射表明,包含DCPD和TECP细颗粒的水泥完全转变为HAP,但是包含较大颗粒的混合物却没有。由于DCPD和TECP的粒径都会影响水泥的抗压强度,因此在水泥形成过程中HAP的晶体生长取决于原料的比表面积(Sw)。基于归因于002和300平面的25.8和32.8度的X射线衍射峰,估计了转化的HAP的微晶尺寸。归因于300平面的晶体尺寸随Sw的增加而减小,但归因于002平面的晶体尺寸却没有显着关系。水泥硬化后的抗压强度随其Sw的增加而增加。这表明较硬的磷酸钙水泥是(源自)较小的原料粒度。

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