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首页> 外文期刊>Journal of the Indian Academy of Wood Science >Surface characteristics and physical properties of wheat straw particleboard with UF resin
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Surface characteristics and physical properties of wheat straw particleboard with UF resin

机译:UF树脂制麦草刨花板的表面特性和物理性能

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Agricultural fibers, such as straw and plant stalks, have been considered as renewable alternatives for making particleboard, which would ease the huge demand for wood. The objective of this study was to investigate surface characteristic (surface roughness and wettability) and physical properties (thickness swelling and water absorption) of wheat straw (Triticum aestivum L.)/poplar wood particleboard with UF resin and silane coupling agent. The effects of the silane coupling agent content and straw/poplar wood particles ratio on the surface characteristic and physical properties were examined. The ratios of the mixture of straw and poplar wood particles were 100:0, 85:15, 70:30 and 55:45. Silane coupling agent content was chosen at three levels of0, 5 and 10 %. The experimental panels were tested for their physical properties according to the procedure in DIN 68763 (Determination of values of surface roughness parameters Ra, Rz, R max using electrical contact(stylus) instruments, concepts and measuring conditions, Berlin, Deutsches institut fiir Norming, 1982) roughness measurements, average roughness (R_a), mean peak-to-valley height (R_z), root mean square roughness (R_q), were taken from the unsanded samples using a fine stylus tracing technique. Contact angle measurements were obtained by using a goniometer connected with a digital camera and computer system. Results indicated that physical properties (thickness swelling and water absorption (were improved by the addition of silane coupling agent, but use of poplar wood particles has a negative effect on physical properties (thickness swellingand water absorption). Statistical analysis showed that boards consisting of a greater amount of poplar particles exhibited lower wettability. Furthermore, panels made with higher amount of silane level, showed lower Rq values.
机译:农业纤维,例如稻草和植物秸秆,已被视为制造刨花板的可再生替代品,这将缓解对木材的巨大需求。这项研究的目的是研究使用UF树脂和硅烷偶联剂的小麦秸秆(Triticum aestivum L。)/杨木刨花板的表面特性(表面粗糙度和润湿性)和物理特性(厚度膨胀和吸水率)。研究了硅烷偶联剂含量和稻草/杨木颗粒比对表面特性和物理性能的影响。稻草和杨木颗粒的混合物的比例为100:0、85:15、70:30和55:45。选择硅烷偶联剂的含量为0、5%和10%这三个水平。根据DIN 68763中的程序测试了实验面板的物理性能(使用电接触(手写笔)仪器测定表面粗糙度参数Ra,Rz,Rmax的值,概念和测量条件,柏林,德意志联邦理工学院, 1982年)使用精细的测针技术从无砂样品中获取粗糙度测量值,平均粗糙度(R_a),平均峰谷高度(R_z),均方根粗糙度(R_q)。接触角的测量是通过使用与数码相机和计算机系统连接的测角仪获得的。结果表明,物理性能(厚度膨胀和吸水率(通过添加硅烷偶联剂得到改善),但使用杨木颗粒对物理性能(厚度膨胀和吸水率)有负面影响。杨木颗粒数量越多,润湿性越低;硅烷含量越高,人造板的Rq值越低。

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