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Geopolymers as potential new binder class for the wood based composite industry

机译:地聚合物是木材复合材料行业潜在的新型粘合剂类别

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摘要

Geopolymer binders are an emerging class of mineral polymer that can be manufactured from natural raw materials and industrial byproducts containing high amounts of silica (Si) and alumina (Al) in mineral compositions. Various ratios of materials used for manufacturing geopolymer binder have been tested to evaluate the bonding performance of geopolymers with wood by means of tests performed on an automated bonding evaluation system (ABES). Tests with a binder based on sodium silicate water glass (Na 50T) are partly promising, which resulted only 10% lower shear strength than that based on urea formaldehyde. The binder characteristics were significantly influenced by changing the ratio of SiO2:M2O (M = Na or K) and the ratio solid content to chemical base in the water glass. Expectedly, increasing press temperatures and pressing times showed a positive correlation with the curing performance of geopolymer binder. It was also demonstrated that the binder properties can be changed in wide ranges to obtain binders which fulfill the minimum requirements set by industrial users.
机译:地聚合物粘合剂是一类新兴的矿物聚合物,可以由天然原料和在矿物成分中包含大量二氧化硅(Si)和氧化铝(Al)的工业副产品制成。通过在自动粘合评估系统(ABES)上进行的测试,已经测试了各种比例的用于制造地质聚合物粘合剂的材料,以评估地质聚合物与木材的粘合性能。使用基于硅酸钠水玻璃(Na 50T)的粘合剂进行的测试部分前景良好,与基于脲甲醛的粘合剂相比,其剪切强度仅降低了10%。改变水玻璃中SiO2:M2O的比例(M = Na或K)和固体含量与化学碱的比例会显着影响粘合剂的性能。可以预期,增加的压制温度和压制时间与地质聚合物粘合剂的固化性能呈正相关。还证明了可以在宽范围内改变粘合剂性能以获得满足工业用户设定的最低要求的粘合剂。

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