Bamboo fiber reinforced poly (acrylonitrile-styrene-acrylic)/chlorinated polyethylene via compabilization

被引:7
作者
Zhang, Zhen [1 ,2 ]
Zhang, Jun [3 ,4 ]
Lucia, Lucian A. [1 ]
Abidi, Noureddine [2 ]
机构
[1] NC State Univ, Dept Forest Biomat, Raleigh, NC USA
[2] Fiber & Biopolymer Res Inst, Dept Plant & Soil Sci, Lubbock, TX 79403 USA
[3] Nanjing Univ Technol, Coll Mat Sci & Engn, Nanjing, Jiangsu, Peoples R China
[4] Nanjing Tech Univ, Coll Mat Sci & Engn, Dept Polymer Sci & Engn, Nanjing, Peoples R China
关键词
Fiber reinforced plastics; Natural polymers; Elastomer; CHLORINATED POLYETHYLENE; IMPROVED TOUGHNESS; TOUGHEN POLYMER; COMPOSITES; BLENDS; PARTICLES; PHASE;
D O I
10.1016/j.ijbiomac.2024.131287
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
In the quest to enhance the performance of natural fiber-reinforced polymer composites, achieving optimal dispersion of fiber materials within a polymeric matrix has been identified as a key strategy. Traditional approaches, such as the surface modification of natural fibers, often necessitate the use of additional synthetic chemical processes, presenting a significant challenge. In this work, taking poly (acrylonitrile-styrene-acrylic) (ASA) and bamboo fiber (BF) as a model system, we attempt to use the elastomer-chlorinated polyethylene (CPE) as a compatibilizer to tailor the mechanical properties of ASA/CPE/BF ternary composites. It was found that increasing CPE content contributed to more remarkable reinforcing efficiency, where composite with 15 phr CPE exhibited a nearly four-fold increase in reinforcing efficiency of tensile strength (20 %) compared with that of composite system without CPE (4.1 %). Such improvement was ascribed to the compatibilizing effect exerted by CPE, which prevented the aggregation of BF within polymeric matrix. Surface properties suggested the stronger interface between CPE and BF compared to that between ASA and BF and thereby contributed to the compabilizing effect. Since no chemical process was involved, it is suggested that the introduction of elastomer to be a universal, green and sustainable approach to achieve the reinforcement.
引用
收藏
页数:9
相关论文
共 47 条
[1]  
Abdellaoui H., 2024, Biocomposites-Bio-based Fibers and Polymers from Renewable Resources, P95
[2]   A Comparative Study on the Mechanical Properties between Acrylic and Chlorinated Polyethylene Impact Modified Poly(vinyl chloride)/Oil Palm Empty Fruit Bunch Composites: Effect of Accelerated Weathering [J].
Abu Bakar, Aznizam ;
Hassan, Azman ;
Yusof, Ahmad Fuad Mohd .
POLYMER-PLASTICS TECHNOLOGY AND ENGINEERING, 2010, 49 (04) :359-366
[3]   Wetting mechanism and interfacial bonding performance of bamboo fiber reinforced epoxy resin composites [J].
Bai, Tian ;
Wang, Dong ;
Yan, Jie ;
Cheng, Wanli ;
Cheng, Haitao ;
Shi, Sheldon Q. ;
Wang, Ge ;
Han, Guangping .
COMPOSITES SCIENCE AND TECHNOLOGY, 2021, 213
[4]   A Semiempirical Model for Post-Yield Stress Instability in the Stress-Strain Response of 3D Lattice Structures under Compressive Loads [J].
Brenneman, Jacob ;
Lovalekar, Mihir ;
Panat, Rahul .
ADVANCED ENGINEERING MATERIALS, 2023, 25 (12)
[5]  
BREUER H, 1977, J MACROMOL SCI PHYS, VB14, P387, DOI 10.1080/00222347708212908
[6]   Quantifying morphological and mechanical properties of thermoplastics elastomers by selective localization of nanofillers with different geometries [J].
Chandran, Nithin ;
Sarathchandran, C. ;
Sivadas, Anjaly ;
Saiter-Fourcin, Allisson ;
Thomas, Sabu .
COLLOIDS AND SURFACES A-PHYSICOCHEMICAL AND ENGINEERING ASPECTS, 2021, 629
[7]   Influence of fiber properties on abrasion resistance of recycled aggregate concrete: Length, volume fraction, and types of fibers [J].
Deng, Qi ;
Zhang, Rongli ;
Liu, Chun ;
Duan, Zhenhua ;
Xiao, Jianzhuang .
CONSTRUCTION AND BUILDING MATERIALS, 2023, 362
[8]   Simultaneously optimized healing efficiency and mechanical strength in polymer composites reinforced by ultrahigh loading fillers based on interfacial energy and dynamic disulfide bonds [J].
Ding, Shanjun ;
Zhu, Guocui ;
Zhao, Shuai ;
Wu, Wei ;
Jin, Peng ;
Jiao, Yuke ;
Zhai, Wenrui ;
Zhou, Lin ;
Luo, Yunjun .
POLYMER, 2022, 251
[9]   Short carbon fiber reinforced epoxy-ionic liquid electrolyte enabled structural battery via vacuum bagging process [J].
Dong, Guang-He ;
Guo, Fang-Liang ;
Sun, Zheng ;
Li, Yuan-Qing ;
Song, Shu-Feng ;
Xu, Chao-He ;
Huang, Pei ;
Yan, Cheng ;
Hu, Ning ;
Fu, Shao-Yun .
ADVANCED COMPOSITES AND HYBRID MATERIALS, 2022, 5 (03) :1799-1811
[10]   Coupling between acid precipitation and resin adsorption for purifying alkaline extracted hemicellulose from sugarcane bagasse [J].
Du, Juan .
JOURNAL OF CLEANER PRODUCTION, 2022, 358