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A study on the effect of plasma treatment for waste wood biocomposites

机译:等离子体处理废木生物复合材料的效果研究

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摘要

The surface modification of wood powder by atmospheric pressure plasma treatment was investigated. The composites were manufactured using wood powder and polypropylene (wood powder: polypropylene = 55 wt%: 45 wt%). Atmospheric pressure plasma treatment was applied under the condition of 3 KV, 17 ± 1 KHz, 2 g/min. Helium was used as the carrier gas and hexamethyl-disiloxane (HMDSO) as the monomer to modify the surface property of the waste wood biocomposites by plasma polymerization. The tensile strengths of untreated waste wood powder (W3) and single species wood powder (S3) were about 18.5 MPa and 21.5 MPa while those of plasma treated waste wood powder (PW3) and plasma treated single species wood powder (PS3) were about 21.2 MPa and 23.4 MPa, respectively. Tensile strengths of W3 and S3 were improved by 14.6% and 8.8%, respectively. From the analyses of mechanical properties and morphology, we conclude that the interfacial bonding of polypropylene and wood powder can be improved by atmospheric pressure plasma treatment.
机译:研究了常压等离子体处理对木粉的表面改性作用。使用木粉和聚丙烯(木粉:聚丙烯= 55 wt%:45 wt%)制造复合材料。在3KV,17±1KHz,2g / min的条件下进行大气压等离子体处理。氦气用作载气,六甲基二硅氧烷(HMDSO)作为单体,可通过等离子体聚合作用改变废木生物复合材料的表面性能。未经处理的废木粉(W3)和单一物种的木粉(S3)的抗拉强度分别约为18.5 MPa和21.5 MPa,而经过等离子体处理的废木粉(PW3)和经过等离子体处理的单一物种的木粉(PS3)的抗拉强度约为21.2。 MPa和23.4 MPa。 W3和S3的拉伸强度分别提高了14.6%和8.8%。通过对机械性能和形态的分析,我们得出结论,大气压等离子体处理可以改善聚丙烯和木粉的界面结合。

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