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IMPROVEMENT OF FLEXURAL STRENGTH OF BIODEGRADABLE POLYMERIC INTERNAL FIXATION DEVICE

机译:可生物降解聚合物内部固定装置的抗弯强度的提高

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Vacuum compression molding and solid-state extrusion technique were employed for the enhancement of mechanical properties of PLLA. Throughout the whole processes, the decrease in molecular weight was effectively suppressed to be about 10%. Flexural modulus and strength were increased up to 8.3 GPa and 221 MPa, respectively. With increasing billet crystallinity, draw ratio, and drawing rate, both flexural modulus and flexural strength of extruded PLLA increased, which was due to the developments in orientation and crystallinity.
机译:采用真空压缩成型和固态挤出技术来增强PLLA的机械性能。在整个过程中,分子量的降低被有效地抑制为约10%。弯曲模量和强度分别增加到8.3 GPa和221 MPa。随着坯料结晶度,拉伸比和拉伸速率的增加,挤出的PLLA的弯曲模量和弯曲强度均增加,这是由于取向和结晶度的发展所致。

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