首页> 外文期刊>The Journal of Supercritical Fluids >Solid-state supercritical CO2 foaming of PCL and PCL-HA nano-composite: Effect of composition, thermal history and foaming process on foam pore structure
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Solid-state supercritical CO2 foaming of PCL and PCL-HA nano-composite: Effect of composition, thermal history and foaming process on foam pore structure

机译:PCL和PCL-HA纳米复合材料的固态超临界CO2发泡:组成,热历史和发泡过程对泡沫孔结构的影响

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In this work we investigated the solid-state supercritical CO2 (scCO2) foaming of poly(ε-caprolactone) (PCL), a semi-crystalline, biodegradable polyester, and PCL loaded with 5wt% of hydroxyapatite (HA) nano-particles. In order to investigate the effect of the thermal history and eventual residue of the crystalline phase on the pore structure of the foams, samples were subjected to three different cooling protocols from the melt, and subsequently foamed by using scCO2 as blowing agent. The foaming process was performed in the 37-40 °C temperature range, melting point of PCL being 60 °C. The saturation pressure, in the range from 10 to 20MPa, and the foaming time, from 2 to 900 s, were modulated in order to control the final morphology, porosity and pore structure of the foams and, possibly, to amplify the original differences among the different samples. The results of this study demonstrated that by the scCO2 foaming it was possible to produce PCL and PCL-HA foams with homogeneous morphologies at relatively low temperatures. Furthermore, by the appropriate combination of materials properties and foaming parameters, we prepared foams with porosities in the 55-85% range, mean pore size from 40 to 250 μm and pore density from 10~5 to 10~8 pore/cm~3. Finally, we also proposed a two-step depressurization foaming process for the design of bi-modal and highly interconnected foams suitable as scaffolds for tissue engineering.
机译:在这项工作中,我们研究了聚(ε-己内酯)(PCL),一种半晶体,可生物降解的聚酯以及负载有5wt%羟基磷灰石(HA)纳米颗粒的PCL的固态超临界CO2(scCO2)发泡。为了研究热历史和结晶相的最终残留物对泡沫的孔结构的影响,对样品从熔体中进行了三种不同的冷却方案,然后使用scCO2作为发泡剂进行了发泡。在37-40℃的温度范围内进行发泡过程,PCL的熔点为60℃。为了控制泡沫的最终形态,孔隙率和孔隙结构,并可能扩大两者之间的原始差异,调节了10至20 MPa的饱和压力和2至900 s的起泡时间。不同的样本。这项研究的结果表明,通过scCO2发泡,可以在相对较低的温度下生产出具有均匀形态的PCL和PCL-HA泡沫。此外,通过适当组合材料性能和发泡参数,我们制备了孔隙率在55-85%范围内,平均孔径为40至250μm,孔密度为10〜5至10〜8孔/ cm〜3的泡沫。 。最后,我们还提出了一种两步减压发泡工艺,用于设计适合用作组织工程支架的双峰和高度互连的泡沫。

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