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首页> 外文期刊>Journal of Materials Science >Viscoelastic properties of wood across the grain measured under water-saturated conditions up to 135 °C: evidence of thermal degradation
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Viscoelastic properties of wood across the grain measured under water-saturated conditions up to 135 °C: evidence of thermal degradation

机译:在高达135°C的水饱和条件下测得的木材在整个谷物上的粘弹性:热降解的证据

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摘要

In this paper, the viscoelastic properties of wood under water-saturated conditions are investigated from 10 to 135 °C using the WAVET apparatus. Experiments were performed via harmonic tests at two frequencies (0.1 and 1 Hz) for several hours. Four species of wood were tested in the radial and tangential material directions: oak (Quercus sessiliflora), beech (Fagus sylvatica), spruce (Picea abies) and fir (Abies pectinata). When the treatment is applied for several hours, a reduction of the wood rigidity is significant from temperature values as low as 80–90 °C and increases rapidly with the temperature level. The storage modulus of oak wood is divided by a factor two after 3 h of exposure at 135 °C. This marked reduction in rigidity is attributed to the hydrolysis of hemicelluloses. The softening temperature of wood is also noticeably affected by hygro-thermal treatment. After three short successive treatments up to 135 °C, the softening temperature of oak shifted from 79 °C to 103 °C, at a frequency of 1 Hz. This reduction in mobility of wood polymers is consistent with the condensation of lignins observed by many authors at this temperature level. In the same conditions, fir exhibited a softening temperature decrease of about 4 °C. In any case, the internal friction clearly rises.
机译:本文使用WAVE T 装置研究了木材在10至135°C的水饱和条件下的粘弹性。通过谐波测试在两个频率(0.1和1 Hz)下进行了几个小时的实验。在径向和切向材料方向上测试了四种木材:橡木(Quercus sessiliflora),山毛榉(Fagus sylvatica),云杉(Picea abies)和冷杉(Abies pectinata)。进行数小时的处理后,从80-90°C的温度值来看,木材的刚度降低明显,并且随着温度的升高而迅速增加。在135°C暴露3 h后,橡木的储能模量除以2。刚性的显着降低归因于半纤维素的水解。木材的软化温度还受到湿热处理的显着影响。经过连续短短的三个处理(最高温度为135°C),橡木的软化温度以1 Hz的频率从79°C变为103°C。木材聚合物迁移率的这种降低与许多作者在该温度水平下观察到的木质素缩合相一致。在相同条件下,fir的软化温度下降约4°C。无论如何,内部摩擦明显增加。

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