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首页> 外文期刊>International wood products journal >Glassy state of wood polymers in native and thermally modified wood: effects on long-term material performance in service
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Glassy state of wood polymers in native and thermally modified wood: effects on long-term material performance in service

机译:天然和热改性木材中木材聚合物的玻璃态:对使用中长期材料性能的影响

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摘要

This research analyses the effect of a glassy state of wood polymers, as found in some dense naturally durable wood species and in thermally modified wood (TMW), on their equilibrium moisture content, mechanical and fungal resistance (durability) performance. In the EN350-class I durability range, moisture and fungal durability are argued to become controlled by the physical state of wood polymers rather than their chemical composition. Glassy polymers may assist the dimensional stability and fungalresistance of wood, as characterised by standardised accelerated laboratory tests. However, for long-term mechanical performance and fungal resistance in service, strong cross-links must prevent the natural (aging) relaxation of the glassy state. Physical aging is expected to occur in TMW, as opposed to naturally durable wood species. The current test methodology for dimensional and fungal stability does not take physical aging effects in wood polymers into account.
机译:这项研究分析了某些稠密的自然耐用的木材物种和热改性木材(TMW)中发现的玻璃态木质聚合物对其平衡水分含量,机械和真菌抗性(耐久性)性能的影响。在EN350 I类耐久性范围内,据称水分和真菌的耐久性受木材聚合物的物理状态而不是其化学组成的控制。以标准化的加速实验室测试为特征,玻璃态聚合物可以帮助木材保持尺寸稳定性和抗真菌性。但是,为了获得长期的机械性能和使用中的抗真菌性,牢固的交联必须防止玻璃态的自然(老化)松弛。与天然耐用的木材物种相反,TMW中预计会发生物理老化。当前用于尺寸和真菌稳定性的测试方法并未考虑木质聚合物中的物理老化效应。

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