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The Motion Analysis of the Sub-nanometer Wood Flour in the Processing

机译:亚纳米木面粉在加工中的运动分析

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In this paper the concept of particle size of sub-nanometer wood flour is proposed. The preparation process of sub-nanometer wood flour is analyzed; the equipment structure and principle are discussed in view of a larger practical significance of the sub-nanometer. The theory of grinding sub-nanometer wood flour adopting the methods of circular cutting, grinding and air separation is put forward, in view of the grinding limit, energy consumption laws and physical properties of particle size of wood flour. In the grinding process of sub-nanometer wood flour, the grading equipment and the grinding equipment will be combined into one system, which will filter out the sub-nanometer wood flour constantly which have reached the requirements of mesh number, while the wood flour not meeting the requirements will be put back into the grinding room and processed circularly. In this Process, not only the situation of reunion of fine particles have been reduced and the energy utilization have been improved, but also mesh number of product, uniformity of particle size distribution and consistency for the quality of sub-nanometer wood flour have been ensured, while machining efficiency have been improved. Putting forward Nano-technology represents a new level of people's awareness, if the nanoscience is compared with a wood cell in the wood science, the equivalent diameter of a wood cell is about 3×10~(-6)meter, corresponding to 30000nm and 30μm or so[1]. From the macro-geometry of the timber into the cells of wood, the specific micro-scale research of the sub-nanometer wood flour is the first step for wood science matching towards the nano-technology. The form of nano-ultrafine particles of the timber is wood shape, wood nano-solid materials is the wood polymer nanoultrafine particles made of solid wood-based materials.
机译:本文提出了亚纳米木面粉粒径的概念。分析了亚纳米木面粉的制备过程;考虑到亚纳米的实际显着性讨论了设备结构和原理。考虑到磨削极限,木粉粒度的能量消耗法和物理性质,提出了采用圆形切割,研磨和空气分离方法的研磨亚纳米木面粉的理论。在亚纳米木面粉的研磨过程中,分级设备和磨削设备将组合成一个系统,这将不断过滤出亚纳米木面粉,这已达到网格数量的要求,而木面粉则不断满足要求将放回磨削室并循环处理。在该过程中,不仅已经降低了细颗粒的重聚,并且已经提高了能量利用,而且还确保了粒度分布的网状次数,粒度分布的均匀性,并确保了子纳米木面粉的质量的一致性,加工效率得到改善。提出纳米技术代表了一种新的人们意识,如果纳米科学与木材科学中的木质细胞进行比较,木细胞的等同直径约为3×10〜(-6)米,相当于30000nm和30μm左右[1]。从木材的宏观几何形状到木材的细胞中,亚纳米木面粉的特定微级研究是木材科学与纳米技术匹配的第一步。木材的纳米超细颗粒的形式是木材形状,木纳米固体材料是由实木基材料制成的木质聚合物纳米颗粒。

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