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首页> 外文期刊>Results in Physics >Crystallization behavior of low-cost biphasic hydroxyapatite/β-tricalcium phosphate ceramic at high sintering temperatures derived from high potential calcium waste sources
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Crystallization behavior of low-cost biphasic hydroxyapatite/β-tricalcium phosphate ceramic at high sintering temperatures derived from high potential calcium waste sources

机译:低成本的双相羟基磷灰石/β-磷酸三钙陶瓷的高烧结温度下的高结晶性

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This paper reported the formation of biphasic hydroxyapatite, (HA) and β-tricalcium phosphate, (β-TCP) sintered at various sintering temperature from waste material. The phase stability of HA ceramic was investigated by imposing the high sintering temperature in order to study the transformation of the single phase of HA to biphasic HA/β-TCP ceramic. The evolution microstructure of HA and biphasic HA/β-TCP ceramic was studied at various sintering temperature reach up to 1400?°C. The single phase of HA was observed from 200 to 1200?°C and the secondary phase β-TCP appears due to the decomposition of partial HA at 1300–1400?°C. The optimum temperature for a single phase of HA was identified after sintering at 1200?°C to produce HA with high mechanical hardness about 5.11?GPa. This is clearly related to the phase stability and morphology of HA. The particles size of HA as-synthesized were recorded in nano range scale at ~9 to 20?nm. However, the average particle sizes become larger and compact between ~0.21 and ~3.3?μm from 600 to 1200?°C. Thus, the sintering temperature gives an impact on the phase stability, microstructure and microhardness of HA derived from high potential waste sources.
机译:本文报道了在不同的烧结温度下,由废料形成的双相羟基磷灰石(HA)和β-磷酸三钙(β-TCP)的形成。通过施加较高的烧结温度来研究HA陶瓷的相稳定性,以研究HA单相向双相HA /β-TCP陶瓷的转变。研究了在高达1400°C的各种烧结温度下HA和双相HA /β-TCP陶瓷的演化组织。在200至1200?C观察到HA的单相,而第二相β-TCP则是由于部分HA在1300–1400?C的分解而出现的。在1200?C烧结产生高机械硬度约为5.11?GPa的HA之后,确定了HA单相的最佳温度。这显然与HA的相稳定性和形态有关。所合成的HA的粒径在约9至20?nm的纳米范围内记录。但是,在600至1200?C时,平均粒径在〜0.21至〜3.3?μm之间变得更大且紧凑。因此,烧结温度对源自高潜在废物源的HA的相稳定性,显微组织和显微硬度产生影响。

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