首页> 外文期刊>Acta biomaterialia >A comparative study of the thermal and dynamic mechanical behaviour of quenched and annealed bioresorbable poly-L-lactide/alpha-tricalcium phosphate nanocomposites.
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A comparative study of the thermal and dynamic mechanical behaviour of quenched and annealed bioresorbable poly-L-lactide/alpha-tricalcium phosphate nanocomposites.

机译:淬火和退火生物可吸收多L丙交酯/α-磷酸钙纳米复合材料的热和动态力学行为的对比研究。

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摘要

Despite numerous reports on the degradation properties and biological efficacy of bioresorbable polymer nanocomposites intended for use in orthopaedics, there is currently limited literature addressing their thermal and load-bearing properties, which are of central importance to the successful design of these nanocomposites. Here we demonstrate that the storage moduli at 37 degrees C and the glass transition temperatures of quenched poly-L-lactide/alpha-tricalcium phosphate nanocomposites were lower than those of annealed nanocomposites while the damping factor tandelta values of the quenched nanocomposites were higher than those of the annealed nanocomposites. This was due to the highly crystalline structure of the annealed samples, as confirmed by wide angle X-ray diffraction. The higher storage moduli and glass transition temperatures of the annealed nanocomposites implies that higher energy will be generated to resist deformation with the possibility for reduced polymer chain mobility during in vivo use. Therefore, the decision as to whether to use quenched or annealed nanocomposites depends on the load-bearing conditions prevailing at the site of implantation. The storage moduli of the nanocomposites at 37 degrees C approached the lower range of the storage modulus for cortical bone and this may prevent stress shielding during bone regeneration.
机译:尽管有许多关于用于整形外科的生物可吸收聚合物纳米复合材料的降解性能和生物学效果,但目前有限的文献解决了它们的热和承重性能,这对这些纳米复合材料的成功设计具有核心性的重要性。在这里,我们证明了37摄氏度的储存模量和淬火的聚-L-丙交酯/α-β-三核纳米核复合材料的玻璃化转变温度低于退火的纳米复合材料,而淬火纳米复合材料的阻尼因子Tandelta值高于那些退火纳米复合材料。这是由于退火样品的高度结晶结构,如广角X射线衍射所证实。退火纳米复合材料的较高的储存模和玻璃化转变温度意味着将产生更高的能量以抵抗变形,以便在体内使用期间降低聚合物链迁移率。因此,决定是否使用淬火或退火的纳米复合材料取决于植入部位的承载条件。 37摄氏度的纳米复合材料的储存模量接近皮质骨的储存模量的较低范围,这可以防止骨再生期间的应力屏蔽。

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