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Fabrication of Wood-Rubber Composites Using Rubber Compound as a Bonding Agent Instead of Adhesives

机译:使用橡胶化合物作为粘合剂而不是粘合剂的木材-橡胶复合材料的制造

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摘要

Differing from the hot-pressing method in the manufacturing of traditional wood-rubber composites (WRCs), this study was aimed at fabricating WRCs using rubber processing to improve water resistance and mechanical properties. Three steps were used to make WRCs, namely, fiber-rubber mixing, tabletting, and the vulcanization molding process. Ninety-six WRC panels were made with wood fiber contents of 0%–50% at rotor rotational speeds of 15–45 rpm and filled coefficients of 0.55–0.75. Four regression equations, i.e., the tensile strength (Ts), elongation at break (Eb), hardness (Ha) and rebound resilience (Rr) as functions of fiber contents, rotational speed and filled coefficient, were derived and a nonlinear programming model were developed to obtain the optimum composite properties. Although the Ts, Eb and Rr of the panels were reduced, Ha was considerably increased by 17%–58% because of the wood fiber addition. Scanning electron microscope images indicated that fibers were well embedded in rubber matrix. The 24 h water absorption was only 1%–3%, which was much lower than commercial wood-based composites.
机译:与传统的木材-橡胶复合材料(WRC)的热压方法不同,本研究旨在通过橡胶加工来制造WRC,以提高耐水性和机械性能。使用三个步骤来制造WRC,即纤维-橡胶混合,压片和硫化成型过程。九十六种WRC面板的木质纤维含量为0%–50%,转子转速为15–45 rpm,填充系数为0.55–0.75。得出了四个回归方程,即抗拉强度(Ts),断裂伸长率(Eb),硬度(Ha)和回弹弹性(Rr)作为纤维含量,转速和填充系数的函数,并建立了非线性规划模型开发以获得最佳的复合材料性能。尽管面板的Ts,Eb和Rr降低了,但由于添加了木纤维,Ha却显着增加了17%至58%。扫描电子显微镜图像表明纤维很好地包埋在橡胶基质中。 24小时的吸水率仅为1%–3%,远低于商品化的木质复合材料。

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