Mechanical and thermal properties of glass bead-filled nylon-6
Li H ; Qiang Y ; Wei J ; An LJ ; Jiang SX ; Li RKY
刊名journal of applied polymer science
2004
卷号94期号:5页码:1885-1890
关键词DENSITY POLYETHYLENE COMPOSITES BRITTLE-DUCTILE TRANSITION STRESS-STRAIN BEHAVIOR RHEOLOGICAL PROPERTIES SYNDIOTACTIC POLYPROPENE INTERFACIAL ADHESION TEMPERATURE MORPHOLOGY POLYMER MELTS
ISSN号0021-8995
通讯作者wei j
中文摘要the mechanical and thermal properties of glass bead-filled nylon-6 were studied by dynamic mechanical analysis (dma), tensile testing, izod impact, thermogravimetric analysis (tga), and differential scanning calorimetry (dsc) tests. dma results showed that the incorporation of glass beads could lead to a substantial increase of the glass-transition temperature (t-g) of the blend, indicating that there existed strong interaction between glass beads and the nylon-6 matrix. results of further calculation revealed that the average interaction between glass beads and the nylon-6 matrix deceased with increasing glass bead content as a result of the coalescence of glass beads. this conclusion was supported by sem observations. impact testing revealed that the notch izod impact strength of nylon-6/glass bead blends substantially decreased with increasing glass bead content. moreover, static tensile measurements implied that the young's modulus of the nylon-6/glass bead blends increased considerably, whereas the tensile strength clearly decreased with increasing glass bead content.
收录类别SCI
语种英语
WOS记录号WOS:000224759700005
公开日期2010-08-17
内容类型期刊论文
源URL[http://ir.ciac.jl.cn/handle/322003/14945]  
专题长春应用化学研究所_长春应用化学研究所知识产出_期刊论文
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Li H,Qiang Y,Wei J,et al. Mechanical and thermal properties of glass bead-filled nylon-6[J]. journal of applied polymer science,2004,94(5):1885-1890.
APA Li H,Qiang Y,Wei J,An LJ,Jiang SX,&Li RKY.(2004).Mechanical and thermal properties of glass bead-filled nylon-6.journal of applied polymer science,94(5),1885-1890.
MLA Li H,et al."Mechanical and thermal properties of glass bead-filled nylon-6".journal of applied polymer science 94.5(2004):1885-1890.
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