Environmental enhancing adhesion properties of Wood-Plastic Composites by plasma at atmospheric pressure

T. Dam
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引用次数: 1

Abstract

Chemical enhancing adhesion properties of Wood-Plastic Composite (WPC) has been strongly negative affected to human life. The disadvantages of the currently treatment system are low treatment efficiency, costly and unstable due to using combining physics and chemistry methods. In this study, the adhesion wood-plastic composite in line production system using plasma at atmospheric pressure was designed and developed to solve the above disadvantages. The before and after treating, the percentage of area removed of samples were measured by Elcometer 107 Cross Hatch Cutter and ImageJ software for adhesion evolution. Applied power, carrier speed and treatment cycle times were used for analyzing the adhesion efficiency. The results showed that applied power and treatment cycle time are strongly effect to adhesion efficiency. Moreover, carrier speed is also effective. The treatment efficiency leads to higher than 3B standard at applied power 156W, 750mm/min and three treatment times.
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常压等离子体增强木塑复合材料的环境粘附性能
木塑复合材料的化学增粘性能对人类的生活产生了强烈的负面影响。目前的处理系统由于采用物理与化学相结合的方法,存在处理效率低、成本高、不稳定等缺点。本文针对上述缺点,设计开发了常压等离子体粘接木塑复合材料在线生产系统。采用Elcometer 107 Cross Hatch Cutter和ImageJ软件对处理前后样品的面积去除率进行测定。采用施加功率、载流子速度和处理循环次数来分析粘附效率。结果表明,施加功率和处理周期对粘附效率有较大影响。此外,载波速度也是有效的。在应用功率156W、功率750mm/min、处理次数3次时,处理效率高于3B标准。
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