首页> 外文期刊>International Journal of Adhesion & Adhesives >Characterization of acetylated eucalyptus wood fibers and its effect on the interface of eucalyptus wood/polypropylene composites
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Characterization of acetylated eucalyptus wood fibers and its effect on the interface of eucalyptus wood/polypropylene composites

机译:乙酰化桉木纤维的表征及其对桉木/聚丙烯复合材料界面的影响

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摘要

The acetylation of eucalyptus wood fibers (WFs) was conducted in 50%/50% (v/v) of acetic acid and acetic anhydride catalyzed by sulfuric acid at 60 C for 2 h. Twenty one percent weight percent gain (WPG) level was achieved. Then the contact angles of three probe liquids on the surface of unacetylated and acetylated eucalyptus WFs were tested by the capillary rise method, and the surface free energies of unacetylated and acetylated eucalyptus WFs and their dispersion and polar components were calculated according to the method suggested by Owens-Wendt-Kaelble. The results show that the surface free energy of unacetylated eucalyptus WFs is 24.7 mJ/m~2, and its corresponding dispersion and polar components are 14.8 mJ/m~2 and 9.9 mJ/m~2, respectively. However, the surface free energy of acetylated eucalyptus WFs is 38.3 mJ/m~2 which is higher than the surface free energy of PP (29.4 mJ/m~2), and its corresponding dispersion and polar components are 35.6 mJ/m~2 and 2.7 mJ/m~2, respectively. So it is possible for the spreading of PP on the surface of acetylated eucalyptus WFs and forming a good interfacial adhesion between acetylated eucalyptus WFs and PP. The better interfacial compatibility between acetylated eucalyptus WFs and PP was corroborated by the scanning electron microscopy (SEM) micrographs.
机译:桉木纤维(WFs)的乙酰化反应在50%/ 50%(v / v)的乙酸和乙酸酐中经硫酸在60°C催化2h。达到了21%的增重百分比(WPG)水平。然后通过毛细管上升法测试三种探针液体在未乙酰化和乙酰化的桉树WF的表面上的接触角,并根据建议的方法计算未乙酰化和乙酰化的桉树WF的表面自由能及其分散度和极性成分。 Owens-Wendt-Kaelble。结果表明,未乙酰化桉树WFs的表面自由能为24.7 mJ / m〜2,其相应的分散度和极性成分分别为14.8 mJ / m〜2和9.9 mJ / m〜2。然而,乙酰化桉树WFs的表面自由能为38.3 mJ / m〜2,高于PP的表面自由能(29.4 mJ / m〜2),其对应的分散度和极性成分为35.6 mJ / m〜2和2.7 mJ / m〜2。因此,有可能使PP散布在乙酰化桉树WFs的表面上,并在乙酰化桉树WFs与PP之间形成良好的界面粘合。扫描电子显微镜(SEM)证实了乙酰化桉树WF和PP之间的更好的界面相容性。

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