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Performance Comparison of Four-year-old Trees of Two Short-rotation Species Modified by High Temperature Thermal Process For Producing Furniture Artifacts

机译:高温热过程生产家具伪影术改善两年短旋气种类的四年龄树木的性能比较

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摘要

Four-year-old trees of two fast growing species, namely Corymbia citriodora (V1) and Eucalyptus hybrid (E. camaldulensis* E. urophylla) (V2) were subjected to high temperature thermal processing technique for improving certain wood quality parameters.Although, these species are generally grown for pulpwood production, value-added solid wood applications in furniture and other lifestyle artifacts can be produced after modifying the wood by eco-friendly thermal treatments. Small billets from bottom portion (2 meters) of the trees were converted into wooden planks which were subjected to heat treatment at 175±5°C for a fixed duration of 4 hours underpartial vacuum condition. Effect of he at treatment on physical and mechanical properties such as equilibrium moisture content (EMC), density, water absorption (WA), shrinkage, flexural strength (modulus of rupture-MOR) andstiffness (modulus ofelasticity-MOE), compressive strength parallel and perpendicular to grain and surface hardness was evaluated inboth species and compared with respective controls. The moisture related wood properties such as EMC, WA and shrinkage were observed to be reduced significantly after thermal modification. Antishrinkage efficiency (ASE) increased by 43% in V1 compared to 31% in V2. MOE and maximum compressive strength values improved significantly in heat treated wood compared to respective controls. Reduction in MOR due to thermal processing was lower in V1 compared to V2.V1 samples showed greater enhancement in several desirable wood properties than V2. Basal portion of short rotation Corymbia citriodora (V1) trees can be thermally modified to improve aesthetic and techno-mechanical parameters for making value-added artifacts such as furniture, wall paneling etc. innonstructural industry sectors, as an alternative to traditionally used species.
机译:对两年的两棵快速生长物种树木,即Corymbia Citri ordora(V1)和桉树杂交(E.Camaldulensis * E. Urophylla)(V2)进行了高温热处理技术,以改善某些木材质量参数。虽然,这些物种通常是果实果实生产的生长,在通过环保热处理改变木材后,可以生产家具和其他生活方式工件中的增值实木应用。从底部(2米)的树木的小坯料被转化为木板,在175±5℃下进行热处理,以固定持续时间为4小时的延长真空条件。 HE治疗物理和力学性能(EMC),密度,吸水(WA),收缩,弯曲强度(破裂模量)的影响,抗弯曲强度(Moe的模量),抗压强度平行,平行(模量)平行,平行抗压强度,平行强度平行评价晶粒和表面硬度的术语,并与各自的对照进行比较。在热改性后,观察到诸如EMC,WA和收缩的水分相关的木质性质。 v1中的AntishRinkage效率(ASE)在V1中增加了43%,而V2中的31%则为31%。与各自的对照相比,MOE和最大压缩强度值在热处理的木材中显着改善。与V2.V1相比,V1中由于热处理而导致的MOR减少,并且在几种理想的木质性质中显示出比V2更高的增强。短旋转的基底部分Corymbia Citriodora(V1)树木可以热改进,以提高审美和技术 - 机械参数,以制造诸如家具,墙板等的增值伪像,作为传统使用物种的替代品。

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