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聚异丁烯基热塑性弹性体的大分子工程与增材制造。II. 聚(苯乙烯-嵌段-异丁烯-嵌段-苯乙烯)/聚亚苯基氧化物体系

Macromolecular Engineering and Additive Manufacturing of Polyisobutylene-Based Thermoplastic Elastomers. II. The Poly(styrene-b-isobutylene-b-styrene)/Poly(phenylene oxide) System.

作者信息

Shen Naifu, Bu Jinyu, Prévôt Marianne E, Hegmann Torsten, Kennedy Joseph P, Xu Weinan

机构信息

School of Polymer Science and Polymer Engineering, The University of Akron, Akron, OH, 44325, USA.

Advanced Materials and Liquid Crystal Institute (AMLCI), Kent State University, Kent, OH, 44242, USA.

出版信息

Macromol Rapid Commun. 2023 Jan;44(1):e2200109. doi: 10.1002/marc.202200109. Epub 2022 Apr 19.

Abstract

This series of publications describes research rendering soft polyisobutylene (PIB)-based thermoplastic elastomers 3D printable by blending with rigid chemically compatible thermoplastics. The molecular structure, morphology, physical properties, and 3D printability of such blends have been systematically investigated. The authors' first report was concerned with the rendering of soft poly(styrene-b-isobutylene-b-styrene) (SIBS) 3D printable by blending with rigid polystyrene (PS). Here they report the macromolecular engineering of SIBS/polyphenylene oxide (PPO) blends for 3D printing. PPO, a rigid high-performance thermoplastic, is compatible with the hard PS block in SIBS; however, neither PPO nor SIBS can be directly 3D printed. The microphase-separated structures and physical properties of SIBS/PPO blends are systematically tuned by controlling blending ratios and molecular weights. Suitable composition ranges and desirable properties of SIBS/PPO blends for 3D printing are optimized. The morphology and properties of SIBS/PPO blends are characterized by an ensemble of techniques, including atomic force microscopy, small-angle X-ray scattering, and thermal and mechanical properties testing. The elucidation of processing-structure-property relationship of SIBS/PPO blends is essential for 3D printing and advanced manufacturing of high-performance polymer systems.

摘要

这一系列出版物描述了通过与刚性化学相容热塑性塑料共混使基于聚异丁烯(PIB)的软质热塑性弹性体实现3D打印的研究。已对这类共混物的分子结构、形态、物理性能和3D可打印性进行了系统研究。作者的第一篇报告关注的是通过与刚性聚苯乙烯(PS)共混使软质聚(苯乙烯-嵌段-异丁烯-嵌段-苯乙烯)(SIBS)实现3D打印。在此,他们报告了用于3D打印的SIBS/聚苯醚(PPO)共混物的大分子工程。PPO是一种刚性高性能热塑性塑料,与SIBS中的硬PS嵌段相容;然而,PPO和SIBS都不能直接进行3D打印。通过控制共混比例和分子量,对SIBS/PPO共混物的微相分离结构和物理性能进行了系统调节。优化了用于3D打印的SIBS/PPO共混物的合适组成范围和理想性能。通过包括原子力显微镜、小角X射线散射以及热性能和机械性能测试在内的一系列技术对SIBS/PPO共混物的形态和性能进行了表征。阐明SIBS/PPO共混物的加工-结构-性能关系对于高性能聚合物体系的3D打印和先进制造至关重要。

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