Effect of peach peel on shape memory properties of polylactic acid

IF 2.3 3区 材料科学 Q3 MATERIALS SCIENCE, COMPOSITES Journal of Composite Materials Pub Date : 2024-01-03 DOI:10.1177/00219983231226282
Murat Eroğlu
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Abstract

In this study, two different peach peel powders were produced using the sieving process: with fiber (filler-fiber powder) and without fiber (filler powder). To investigate the effects of the prepared powders on the shape memory properties of PLA, PLA/Filler (wt%90 PLA: wt%10 filler) and PLA/Fiber-Filler (wt%90 PLA: wt%10 Fiber-Filler) biocomposite films were prepared by the solvent casting technique. The shape memory properties of the films, such as shape fixity ratio and shape recovery ratio, were determined by the bending test. For the PLA film, the shape fixity ratio is 81 ± 5%. When filler powders are applied, the shape fixity ratio is unaffected. However, when fiber-filler powder is added, the shape fixity ratio drops to 75 ± 1%. The shape recovery ratio for PLA film is 50 ± 7%. The shape recovery ratio increases to 54 ± 4% when filler powder is added. However, the percentage of shape recovery ratio remains the same when filler-fiber powders are added. Shape memory performance can be enhanced by adding peach peel filler powder to the PLA. The peach peel filler can be considered as a cost-effective filler to improve the shape memory properties of PLA-based biocomposites. As a result, peach peel filler reinforced PLA based composite films may be possible low-cost and biodegreadable shape memory material candidates for a variety of industries like aerospace and soft robotics.
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桃皮对聚乳酸形状记忆特性的影响
本研究采用筛分工艺制备了两种不同的桃皮粉末:含纤维粉末(填料-纤维粉末)和不含纤维粉末(填料粉末)。为了研究制备的粉末对聚乳酸形状记忆特性的影响,采用溶剂浇铸技术制备了聚乳酸/填料(wt%90 聚乳酸:wt%10 填料)和聚乳酸/纤维-填料(wt%90 聚乳酸:wt%10 纤维-填料)生物复合薄膜。通过弯曲试验测定了薄膜的形状记忆特性,如形状固定比和形状恢复比。聚乳酸薄膜的形状固定率为 81 ± 5%。当使用填充粉末时,形状固定率不受影响。然而,当加入纤维填充粉末时,形状固定率会下降到 75 ± 1%。聚乳酸薄膜的形状复原率为 50 ± 7%。添加填料粉末后,形状恢复率增至 54 ± 4%。然而,添加填料-纤维粉末时,形状复原率的百分比保持不变。在聚乳酸中添加桃皮填料粉末可提高形状记忆性能。桃皮填料可作为一种具有成本效益的填料,用于改善聚乳酸基生物复合材料的形状记忆性能。因此,桃皮填料增强的聚乳酸基复合薄膜可能成为低成本、可生物分解的形状记忆材料,适用于航空航天和软机器人等多种行业。
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来源期刊
Journal of Composite Materials
Journal of Composite Materials 工程技术-材料科学:复合
CiteScore
5.40
自引率
6.90%
发文量
274
审稿时长
6.8 months
期刊介绍: Consistently ranked in the top 10 of the Thomson Scientific JCR, the Journal of Composite Materials publishes peer reviewed, original research papers from internationally renowned composite materials specialists from industry, universities and research organizations, featuring new advances in materials, processing, design, analysis, testing, performance and applications. This journal is a member of the Committee on Publication Ethics (COPE).
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