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Synthesis and application of a modifier to enhance general properties of the polar wood

机译:增强极性木材一般性能的改性剂的合成与应用

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A preparation method of modifier with low molecular weight and high reactivity is presented. This modifier ( called KFK in lab) can impregnate into polar wood along trachea from the ends with pressurized impregnation method. In the following heating and pressing processes of the polar wood, the KFK polymerizes, and it enhances stability and strength of the wood. It showed that the favorable conditions for synthetic reaction of the KFK are: molar ratio of U and F, 1:1; reaction temperature, 20°C; reaction time, 3 hours; dosage of ignition primer A: 5%. Results from test showed the degree of crystallinity tested by XRD were 30%, 32% in different dosage of the modifier. Utilizing a combination of low molecular weight resin impregnation and pressing resulted in a density increase of KFK resin-treated wood from 0.214 to 0.268g/cm~3. At the same time, the Young's modulus and bending strength increased from 1.407GPa to 1.759GPa and 64MPa to 74.5MPa, respectively. It can be concluded that the effective utilization of KFK resin impregnated in polar wood is a promising technique for the production of high-strength in the drying and pressing processing.
机译:提出了一种低分子量高反应性改性剂的制备方法。这种改性剂(在实验室中称为KFK)可以通过加压浸渍法从两端沿气管浸渍到极性木材中。在随后的极性木材的加热和压制过程中,KFK发生聚合,从而增强了木材的稳定性和强度。结果表明,KFK合成反应的适宜条件为:U与F的摩尔比为1:1; KFK与KFK的摩尔比为1:1。反应温度20℃;反应时间3小时;引火底漆A的用量:5%。测试结果表明,在不同剂量的改性剂中,通过XRD测试的结晶度分别为30%和32%。将低分子量树脂浸渍和压制相结合,可将KFK树脂处理过的木材的密度从0.214增加到0.268g / cm〜3。同时,杨氏模量和弯曲强度分别从1.407GPa增加到1.759GPa,从64MPa增加到74.5MPa。可以得出结论,有效利用浸渍在极性木材中的KFK树脂是在干燥和压制过程中生产高强度纤维的有前途的技术。

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