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High-Temperature Hot Air/Silane Coupling Modification of Wood Fiber and Its Effect on Properties of Wood Fiber/HDPE Composites

机译:木纤维的高温热风/硅烷偶联改性及其对木纤维/ HDPE复合材料性能的影响

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The surfaces of poplar wood fibers were modified using high-temperature hot air (HTHA) treatment and silane coupling agent. The single factor test was then used to investigate the performances (e.g., the change of functional groups, polarity, cellulose crystallinity, and thermal stability) of modified poplar wood fibers (mPWF) through Fourier transform infrared spectrometry, X-ray diffraction and thermo-gravimetric analysis for the subsequent preparation of wood-plastic composites (WPCs). The effect of HTHA treatment conditions—such as temperature, inlet air velocity, and feed rate—on the performances of WPCs was also investigated by scanning electron microscopy and dynamic mechanical analysis. The main findings indicated that HTHA treatment could promote the hydration of mPWF and improve the mechanical properties of WPCs. Treatment temperature strongly affected the mechanical properties and moisture adsorption characteristics of the prepared composites. With the increase of treated temperature and feed rate, the number of hydroxyl groups, holocellulose content, and the pH of mPWF decreased. The degree of crystallinity and thermal stability and the storage modulus of the prepared composites of mPWF increased. However, dimensional stability and water absorption of WPCs significantly reduced. The best mechanical properties enhancement was observed with treatment temperature at 220 °C. This study demonstrated the feasibility for the application of an HTHA treatment in the WPC production industry.
机译:杨木纤维表面使用高温热风(HTHA)处理和硅烷偶联剂改性。然后,通过傅立叶变换红外光谱法,X射线衍射和热力学分析,单因素测试用于研究改性杨木纤维(mPWF)的性能(例如,官能团,极性,纤维素结晶度和热稳定性的变化)。重量分析法用于随后的木塑复合材料(WPC)的制备。还通过扫描电子显微镜和动态力学分析研究了HTHA处理条件(例如温度,进气速度和进料速度)对WPC性能的影响。主要发现表明,HTHA处理可以促进mPWF的水合作用并改善WPC的机械性能。处理温度强烈影响所制备复合材料的机械性能和水分吸收特性。随着处理温度和进料速度的增加,mPWF的羟基数目,全纤维素含量和pH值降低。制备的mPWF复合材料的结晶度和热稳定性以及储能模量增加。但是,WPC的尺寸稳定性和吸水率大大降低。在220°C的处理温度下观察到最佳的机械性能增强。这项研究证明了将HTHA处理应用于WPC生产行业的可​​行性。

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