2 style='font-family:Verdana;'> injection on initial strength increase and hardening of cement-fibre mix in a cement bonded particle board (CB'/> Cement Bonded Particle Boards with Different Types of Natural Fibres—Using Carbon Dioxide Injection for Increased Initial Bonding
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Cement Bonded Particle Boards with Different Types of Natural Fibres—Using Carbon Dioxide Injection for Increased Initial Bonding

机译:具有不同天然纤维类型的水泥粘结刨花板-使用二氧化碳注入增加初始粘结

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The effect of CO style="font-family:Verdana;">2 style="font-family:Verdana;"> injection on initial strength increase and hardening of cement-fibre mix in a cement bonded particle board (CBPB) production was evaluated. Different cement contents, formation pressure and types of fibres were considered. The initial strength increase with CO style="font-family:Verdana;">2 style="font-family:Verdana;"> injection is so much faster than this caused by conventional hydration that the produced samples do not need additional curing before they can be stored. Similar strength and stiffness values as in conventional products on the market are gained with lower cement content for similar types of fibres. Visual inspection of board surfaces aged for 13 years in a harsh exterior environment as well as comparison of strength and stiffness values for these boards when new and after ageing, give style="font-family:Verdana;">s style="font-family:Verdana;"> a very satisfying result. The combined effect of the above discussed gains results in markedly increased productivity at lower cost and lower environmental impacts than is possible in traditional CBPB production.
机译:CO style =“ font-family:Verdana;”> 2 style =“ font-family:Verdana;”>注射对初始强度增加和硬化的影响对水泥粘合刨花板(CBPB)生产中的水泥纤维混合物进行了评估。考虑了不同的水泥含量,地层压力和纤维类型。初始强度随CO style =“ font-family:Verdana;”> 2 style =“ font-family:Verdana;”>注射而增加比常规水合作用所导致的速度快得多,因此所产生的样品在储存之前不需要额外的固化。对于类似类型的纤维,通过降低水泥含量即可获得与市场上常规产品类似的强度和刚度值。目视检查在恶劣的外部环境中老化了13年的木板表面,以及比较新木板和老化后这些木板的强度和刚度值,得出 style =“ font-family:Verdana;”> s style =“ font-family:Verdana;”>令人非常满意的结果。与传统的CBPB生产相比,上述收益的综合效果可显着提高生产率,同时降低成本并降低对环境的影响。

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