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Microcrystalline cellulose filled composites for wooden artwork consolidation: Application and physic-mechanical characterization

机译:用于木质艺术品固结的微晶纤维素填充复合材料:应用和物理力学表征

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摘要

Two types of historical wood (18th century) (Juglans regia and Abies alba) presenting different degradation conditions were consolidated through acetone solutions of microcomposites consisting of a commercial polymer (Paraloid~® B72) often used for wood consolidation and two different amounts (5 and 30 wt%) of microcrystalline cellulose (MCC). As a comparison, the same tests were also performed on modern samples of the same types of wood in a well preserved state. Rheological and mass variation measurements evidenced that the introduction of microfiller did not affect the viscosity and the water sorption of the neat resin to a significant extent. Moreover, mercury intrusion porosimetry highlighted how MCC filled composites were able to decrease the pore radius of treated wood samples, reaching values close to those of modern intact wood. Remarkably, the presence of MCC within Paraloid led to a positive enhancement of the stiffness and the flexural strength of treated damaged wood in both quasi-static and impact conditions, with the increase of the flexural modulus, the maximum stress and the rise of both initial and total impact absorbed energies. Additionally, an increase of the radial and tangential surface hardness due to the treatment with MCC filled composites was observed.
机译:两种表现出不同降解条件的历史木材(18世纪)(Juglans regia和Abies alba)通过微复合物的丙酮溶液进行固结,该溶液由通常用于木材固结的商业聚合物(Paraloid®B72)和两种不同的用量(5和30wt%的微晶纤维素(MCC)。作为比较,还对保存完好的状态的相同类型的现代木材样品进行了相同的测试。流变学和质量变化测量结果表明,微填料的引入不会在很大程度上影响纯树脂的粘度和吸水率。此外,压汞孔隙率法强调了MCC填充的复合材料如何能够减小处理过的木材样品的孔半径,使其值接近现代完整木材的孔半径。值得注意的是,在准静态和冲击条件下,抛物面内MCC的存在导致处理过的受损木材的刚度和抗弯强度的正向增加,同时挠曲模量,最大应力和初始强度的增加和总冲击吸收的能量。另外,观察到由于用MCC填充的复合材料处理而引起的径向和切向表面硬度的增加。

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