Heat-treated blue agave fiber composites

被引:25
作者
Langhorst, Amy [1 ]
Paxton, William [1 ]
Bollin, Shannon [1 ]
Frantz, Daniel [1 ]
Burkholder, James [1 ]
Kiziltas, Alper [1 ]
Mielewski, Deborah [1 ]
机构
[1] Ford Motor Co, Mat Res & Adv Engn, 2101 Village Rd, Dearborn, MI 48124 USA
关键词
Fibres; Thermal properties; Heat treatment; Thermoplastic resin; MECHANICAL-PROPERTIES; RHEOLOGICAL PROPERTIES; THERMAL-TREATMENT; CELLULOSE FIBERS; COUPLING AGENT; POLYPROPYLENE; WOOD; CRYSTALLIZATION; POLYETHYLENE; BAMBOO;
D O I
10.1016/j.compositesb.2019.02.035
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
To meet consumer demand for low carbon-footprint transportation, automakers have been replacing high-density fillers with low-density natural fibers in polymeric composites. Torrefaction can improve natural fiber composite thermal performance, but leads to significant fiber mass loss. This study sought to balance the benefits and limitations of torrefaction by investigating the effects of low-temperature fiber heat treatment on the performance of 20 wt % agave-polypropylene composites. Heat treatment increased the thermal stability of agave fibers, but resulted in no observable change to composite thermal properties or crystallization kinetics. Additionally, treatment resulted in a reduction in rheological properties, but less than a 10% change in mechanical performance of agave composites.
引用
收藏
页码:712 / 724
页数:13
相关论文
共 57 条
[11]  
Ayrilmis N, 2011, J TROP FOR SCI, V23, P10
[12]   EFFECTS OF CELLULOSE FIBERS IN POLYPROPYLENE COMPOSITES [J].
BATAILLE, P ;
RICARD, L ;
SAPIEHA, S .
POLYMER COMPOSITES, 1989, 10 (02) :103-108
[13]   MECHANICAL-PROPERTIES OF PARTICULATE FILLED POLYMERS [J].
BIGG, DM .
POLYMER COMPOSITES, 1987, 8 (02) :115-122
[14]  
Blaine RL, POLYM HEATS FUSION, P1
[15]   Contributions of feather fibers and various cellulose fibers to the mechanical properties of polypropylene matrix composites [J].
Bullions, TA ;
Hoffman, D ;
Gillespie, RA ;
Price-O'Brien, J ;
Loos, AC .
COMPOSITES SCIENCE AND TECHNOLOGY, 2006, 66 (01) :102-114
[16]  
Cisneros-L?pez EO., 2016, SPE ANTEC INDIANAP 2, P1729
[17]   Effect of Agave Fiber Surface Treatment on the Properties of Polyethylene Composites Produced by Dry-Blending and Compression Molding [J].
Cisneros-Lopez, E. O. ;
Anzaldo, J. ;
Fuentes-Talavera, F. J. ;
Gonzalez-Nunez, R. ;
Robledo-Ortiz, J. R. ;
Rodrigue, D. .
POLYMER COMPOSITES, 2017, 38 (01) :96-104
[18]  
Consejo Regulador del Tequila (CRT), 2017, EST PROD TOT
[19]   Enzymatic Surface Modification of Sisal Fibers (Agave Sisalana) by Penicillium echinulatum Cellulases [J].
Corredor Gonzalez, Jeaneth T. ;
Pinheiro Dillon, Aldo J. ;
Perez-Perez, Aly R. ;
Fontana, R. ;
Bergmann, Carlos Perez .
FIBERS AND POLYMERS, 2015, 16 (10) :2112-2120
[20]   Effects of thermal treatment on durability of short bamboo-fibers and its reinforced composites [J].
Fang, Hongxia ;
Wu, Qianglin ;
Hu, Yongchen ;
Wang, Yonglei ;
Yan, Xiunan .
FIBERS AND POLYMERS, 2013, 14 (03) :436-440