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首页> 外文期刊>American Chemical Science Journal >The Effects of Boric Acid on Fiberboard Made from Wood/Secondary Fiber Mixtures: Part 3. Utilization of Recycled Waste Office Paper Fibers
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The Effects of Boric Acid on Fiberboard Made from Wood/Secondary Fiber Mixtures: Part 3. Utilization of Recycled Waste Office Paper Fibers

机译:硼酸对木/二次纤维混合物制成的纤维板的影响:第3部分。回收办公废纸纤维的利用

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It was discovered that an increase in the proportion of secondary fibers has a negative impact on strength and thickness swelling (TS) properties of experimental boards. However, the highest MOR value of 20.0 MPa was found for type 1 board (C1) produced with a 90/10 Wood/Seconder fiber (W/S) ratio. Likewise, the highest MOE value of 2119 MPa was obtained with the C4 (type1) board. A statistical analysis (ANOVA) clearly indicates that the variables, such as boric acid content and W/S proportions, significantly affect the mechanical properties and that it is indeed possible to produce boards with higher mechanical properties than standard values with an optimum proportion of wood/secondary fiber ratio and a particular boric acid content.It was found that increasing the secondary fiber proportion at some levels improved sound absorption properties of the boards somewhat. The highest mean value of 0.82 at 2500 Hz was achieved by using the C6 boards, while 0.78 at 2500Hz was obtained for C6a boards, where both types of boards were produced with a ratio (W/S) of 40/60. The lowest thermal conductivity (better insulation) was found to be 0.1729 W/mK in type1 boards that were made with 10/90 (W/S) fiber mixture (C9). It was learnt that boric acid supports heat resistance properties of those experimental boards manufactured from various proportions of W/S mixtures. Indeed, increasing boric acid content has a negative impact on thermal degradation, so that decomposition temperature had to be increased for type 2 boards. FTIR spectra for the two types of boards are not particularly different. Multi-modal absorption in the 1300-1350 cm-1 region was achieved by using boron containing groups.
机译:已经发现,次级纤维比例的增加对实验板的强度和厚度膨胀(TS)性能具有负面影响。但是,对于以90/10 Wood / Seconder纤维(W / S)比生产的1型板(C1),发现最高MOR值为20.0 MPa。同样,使用C4(type1)板获得的最高MOE值为2119 MPa。统计分析(ANOVA)清楚地表明,诸如硼酸含量和W / S比例之类的变量会显着影响机械性能,并且确实可能​​以最佳木材比例生产出比标准值更高机械性能的木板/次级纤维比例和特定的硼酸含量。发现在某些水平上增加次级纤维比例在一定程度上改善了板的吸声性能。使用C6板可获得2500 Hz时0.82的最高平均值,而C6a板可获得2500Hz时0.78的最高平均值,其中两种类型的板均以40/60的比率(W / S)生产。发现使用10/90(W / S)纤维混合物(C9)制成的Type1板的最低导热率(更好的绝缘性)为0.1729 W / mK。据了解,硼酸支持由不同比例的W / S混合物制成的那些实验板的耐热性能。实际上,增加硼酸含量会对热降解产生负面影响,因此对于2型板,必须提高分解温度。两种类型的板的FTIR光谱没有特别的不同。通过使用含硼基团,在1300-1350 cm-1区域实现了多峰吸收。

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