Structure and properties of long chain branching polypropylene/organomontmorillonite nanocomposites
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摘要: 采用熔融共混法用雙螺桿擠出機制備了長支鏈聚丙烯(LCB-PP)/有機蒙脫土(OMMT)納米復合材料,并對其結構、流變和力學性能進行了研究.透射電鏡(TEM)測試結果表明,大部分OMMT在LCB-PP中發生剝離.流變行為研究發現,當OMMT的填充量達到一定臨界值后,制備的納米復合材料呈現出在低頻處儲能模量增加、剪切變稀行為明顯等線性黏彈性行為,表明LCB-PP/OMMT內部形成了緊密和穩定的網絡結構,從而抑制了大分子鏈的松弛和運動.力學測試結果表明,OM-MT顯著提高了LCB-PP的拉伸強度、缺口沖擊強度和彎曲模量,但降低了其彎曲強度.Abstract: Long chain branching polypropylene (LCB-PP)/organomontmorillonite (OMMT) nanocomposites were prepared in a twin-screw extruder via a melt-blending method, and their microstructures, rheology and mechanical properties were investigated. The results of transmission electron microscopy (TEM) showed that the clay layers were mostly exfoliated in the LCB-PP matrix. Rheology test results showed that when the clay loading reached a threshold value, the nanocomposite exhibited an increased storage modulus at low frequency and more obvious shear-shinning behavior, indicating that a compact and stable network structure formed and hindered macromolecular chain relaxation and mobility. The results of mechanical property test showed that the addition of OMMT improved the tensile strength, notched impact strength, and flexural modulus of LCB-PP, but reduced its flexural strength.
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Key words:
- polypropylene /
- organomontmorillonite /
- nanocomposites /
- microstructure /
- properties
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