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Research on the Physico-Mechanical Properties of Moso Bamboo with Thermal Treatment in Tung Oil and Its Influencing Factors

机译:桐油热处理中毛竹的物理力学性能及其影响因素研究

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摘要

In this study, the effects of tung oil heat treatment on the physico-mechanical properties of moso bamboo were investigated. Here, heat treatment in tung oil at 100–200 °C was used to modify natural bamboo materials. The changes in the nanostructures of cell walls in bamboo caused by oil heat treatment, like density, chemical compositions, and cellulose crystalline, were evaluated to study their correlation with mechanical properties. Results showed that the mechanical performance of bamboo, such as ultimate stress, modulus of elasticity (MOE), and modulus of rupture (MOR), didn’t reduce after heat treatment below 200 °C, compared with the untreated bamboo, which was mainly due to the tung oil uptake, stable cellulose content, and the increment of cellulose crystalline. No remarkable change in the ultimate strain occurred for bamboo materials thermally treated below 140 °C, but it decreased obviously at the heating temperature over 180 °C, mainly due to the degradation of hemicellulose resulting in a decrease in the viscoelasticity of cell wall.
机译:在这项研究中,研究了桐油热处理对毛竹物理力学性能的影响。在这里,在100–200°C的桐油中进行热处理,以改性天然竹材。评估了油热处理引起的竹细胞壁纳米结构的变化,例如密度,化学成分和纤维素晶体,以研究它们与机械性能的关系。结果表明,与未处理的竹子相比,在低于200°C的温度下热处理后,竹子的机械性能(如极限应力,弹性模量(MOE)和断裂模量(MOR))没有降低。由于桐油的吸收,稳定的纤维素含量和纤维素结晶的增加。在低于140°C的温度下进行热处理的竹材,最终应变没有发生显着变化,但在超过180°C的加热温度下,其明显降低,这主要是由于半纤维素的降解导致了细胞壁的粘弹性降低。

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