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Controlled shape memory effects of magnetic polymer nanocomposites by induction heating

机译:感应加热控制磁性聚合物纳米复合材料的形状记忆效应

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摘要

Interest in stimuli-responsive materials has increased rapidly, leading to a multitude of innovative applications in biomedical design. This study seeks to induce controlled shape memory effects through induction heating of magnetic polymer nanocomposites while retaining thermal consistency within attached hydrogel composites for various biomedical applications. Three commonly used polymer matrices were embedded with varying concentrations of magnetite nanoparticles to determine minimum and maximum loading effects on induction heating response and optimal shape memory effects. Thermal and morphological characterizations were performed to determine transition temperatures, followed by induction heating tests by way of an induction coil at different magnetic field strengths to determine heating rates, activation times and activation rates of shape memory effects for each polymer nanocomposite composition. Simultaneously, mechanically tunable sodium alginate and cellulose nanocrystal hydrogel composites were fabricated and characterized to determine hydrational, mechanical and thermal buffering properties. Induction heating tests revealed that all substrates exhibited a heating response; however, shape memory effects were observed only in poly(vinyl acetate) and Nylon 11. Moreover, all hydrogels displayed promising thermal dissipation, 1 degrees C per 20s of heating, preventing any potential thermal shock to biological components. These unique properties will allow for successful employment of these multi-composite scaffolds in a multitude of biological applications.
机译:对刺激反应材料的兴趣迅速增加,导致生物医​​学设计中的多种创新应用。该研究旨在通过磁性聚合物纳米复合材料的感应加热来诱导受控形状记忆效应,同时在附着的水凝胶复合材料内保持热稠度进行各种生物医学应用。嵌入具有不同浓度的磁铁矿纳米颗粒的三种常用的聚合物基质,以确定对感应加热响应和最佳形状记忆效应的最小和最大负载效应。进行热量和形态表征以确定过渡温度,然后通过在不同磁场强度下通过感应线圈进行感应加热试验,以确定每种聚合物纳米复合材料组合物的加热速率,活化时间和形状记忆效应的活化速率。同时,制造机械可调谐藻酸钠和纤维素纳米晶水凝胶复合材料,并表征确定水,机械和热缓冲性能。感应加热试验显示所有基材所有底物都表现出加热响应;然而,仅在聚(醋酸乙烯酯)和尼龙11中观察到形状记忆效应。此外,所有水凝胶显示出有希望的热耗散,每20多次加热,防止对生物成分的任何潜在的热冲击。这些独特的性质将允许在多种生物应用中成功地就业这些多复合支架。

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