具有形状记忆性能的杜仲胶软硬梯度复合材料

IF 4.6 3区 材料科学 Q2 MATERIALS SCIENCE, MULTIDISCIPLINARY
Furao Wang, Jinjian Lin, Tao Liao, Kexu Bao, Rongzhen Fu, Ruifeng Zhao, Jichuan Zhang
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引用次数: 0

摘要

杜仲胶(EUG)是一种天然高分子材料,具有独特的“橡塑二元性”和良好的形状记忆性能。本文通过调节交联密度和添加物理微球进行发泡,大大降低了EUG的硬度。结果表明:含硫微球和泡沫微球用量越多,EUG的硬度越低,材料变形越大,穿透力越小;通过调节发泡剂的用量,可以得到一系列轻质、高韧性的发泡EUG。将EUG、天然橡胶(NR)和发泡EUG通过共硫化工艺制备成具有形状记忆特性的硬度梯度复合材料,根据扫描电镜(SEM)观察和180°剥离试验结果,三种橡胶材料在不借助粘合剂的情况下具有良好的结合力。复合材料的每一单位厚度可减少高达11.6%的外部冲击力。此外,在加热条件下,结晶EUG只需要30 s就能恢复到原来的形状。所制备的软硬梯度运动复合材料单位厚度外冲击力降低率高,具有优异的防冲击效果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Eucommia Ulmoides Gum Soft-Hard Gradient Composite Materials with Shape Memory Property

Eucommia Ulmoides Gum Soft-Hard Gradient Composite Materials with Shape Memory Property

Eucommia Ulmoides gum (EUG) is a natural polymer material with unique “rubber-plastic duality” and good shape memory properties. In this paper, the hardness of EUG is greatly reduced by adjusting the cross-linking density and adding physical microspheres for foaming. The results show that the more sulfur and foamed microspheres are used, the lower the hardness of EUG, the greater the deformation of the material, and the smaller the penetration force. By adjusting the amount of foaming agent, a series of lightweight and high-toughness foamed EUG can be obtained. The EUG, natural rubber (NR) and foamed EUG are prepared into a hardness gradient composite material with a shape memory characteristic through a co-vulcanization process, according to scanning electron microscope (SEM) observation and 180° peel test results, the three rubber materials has good binding force without the help of adhesive. Each unit of thickness of the composite material can reduce the external impact force by up to 11.6%. In addition, under heating conditions, it only takes 30 s for the crystalline EUG to return to its original shape. The prepared soft-hard gradient sports composite material has a high reduction of external impact force per unit thickness, showing an excellent impact protection effect.

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来源期刊
Macromolecular Materials and Engineering
Macromolecular Materials and Engineering 工程技术-材料科学:综合
CiteScore
7.30
自引率
5.10%
发文量
328
审稿时长
1.6 months
期刊介绍: Macromolecular Materials and Engineering is the high-quality polymer science journal dedicated to the design, modification, characterization, processing and application of advanced polymeric materials, including membranes, sensors, sustainability, composites, fibers, foams, 3D printing, actuators as well as energy and electronic applications. Macromolecular Materials and Engineering is among the top journals publishing original research in polymer science. The journal presents strictly peer-reviewed Research Articles, Reviews, Perspectives and Comments. ISSN: 1438-7492 (print). 1439-2054 (online). Readership:Polymer scientists, chemists, physicists, materials scientists, engineers Abstracting and Indexing Information: CAS: Chemical Abstracts Service (ACS) CCR Database (Clarivate Analytics) Chemical Abstracts Service/SciFinder (ACS) Chemistry Server Reaction Center (Clarivate Analytics) ChemWeb (ChemIndustry.com) Chimica Database (Elsevier) COMPENDEX (Elsevier) Current Contents: Physical, Chemical & Earth Sciences (Clarivate Analytics) Directory of Open Access Journals (DOAJ) INSPEC (IET) Journal Citation Reports/Science Edition (Clarivate Analytics) Materials Science & Engineering Database (ProQuest) PASCAL Database (INIST/CNRS) Polymer Library (iSmithers RAPRA) Reaction Citation Index (Clarivate Analytics) Science Citation Index (Clarivate Analytics) Science Citation Index Expanded (Clarivate Analytics) SciTech Premium Collection (ProQuest) SCOPUS (Elsevier) Technology Collection (ProQuest) Web of Science (Clarivate Analytics)
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