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首页> 外文期刊>Journal of Adhesion Science and Technology: The International Journal of Theoredtical and Basic Aspects of Adhesion Science and Its Applications in All Areas of Technology >Correlation between physical bonding and mechanical properties of wood-plastic composites: part 2: effect of thermodynamic factors on interfacial bonding at wood-polymer interface
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Correlation between physical bonding and mechanical properties of wood-plastic composites: part 2: effect of thermodynamic factors on interfacial bonding at wood-polymer interface

机译:木塑复合材料物理粘合与力学性能的相关性:第2部分:热力学因子对木聚合物界面界面粘合的影响

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The main objective of this study was to find out if there is any significant correlation between physical properties and interfacial bonding of interphases in wood-plastic composites. To this end, high-density polyethylene (HDPE), mixture of 3% maleic anhydride grafted polyethylene (MAPE) and HDPE (coded as MHDPE) and polylactic acid (PLA) were separately interacted with veneers to identify factors underlying interfaces. Plastics were first melted at 180 degrees C and dispensed on wood surfaces so that the contact angle (CA) could be directly measured. Wood sanding moderately decreased the CAs of plastics in order of PLA, MHDPE, and HDPE. The treatment of veneers with MAPE comprehensively improved wetting, as the CA of HDPE was significantly reduced on the wood surface after the treatment. Thereafter, the interfacial shear strengths (IFSS) of the wood-polymer interface were determined using the automated bonding evaluation system. PLA had the highest IFSS both for unsanded and sanded veneers. Comparing both parts of this research finally revealed that applying sanding or/and MAPE treatments resulted in lower surface free energy and higher IFSS at the wood-polymer interface. However, our observations support the idea that, at higher temperatures, wetting of composites is mainly influenced by polymer properties rather than interfacial tension at the wood-polymer interface.
机译:本研究的主要目的是找出实际物理性质与木塑复合材料中的界面之间存在显着相关性。为此,高密度聚乙烯(HDPE),3%马来酸酐接枝的聚乙烯(MAPE)和HDPE(编码为MHDPE)和聚乳酸(PLA)的混合物与胶合剂分别与胶合剂相互作用,以识别界面界面的因素。首先在180℃下熔化塑料,并分配在木表面上,使得可以直接测量接触角(CA)。木材打磨适度地降低了PLA,MHDPE和HDPE的塑料CAS。用木材的胶合剂的处理综合改善润湿,因为在治疗后木质表面显着降低了HDPE的CA显着降低。此后,使用自动粘合评估系统确定木聚合物界面的界面剪切强度(IFS)。 PLA拥有undeded和砂印的最高IFSS。比较本研究的两种部分最终揭示了应用砂光或/和弹簧治疗导致木聚合物界面的下表面自由能和更高的IFSS。然而,我们的观察结果支持的想法,在更高的温度下,复合材料的润湿主要受聚合物性质的影响而不是木聚合物界面处的界面张力。

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