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中国农学通报 ›› 2011, Vol. 27 ›› Issue (28): 63-68.

• 林学 园艺 园林 • 上一篇    下一篇

巨尾桉干燥特性研究

刁海林 陈健波 朱定强 卢翠香 罗建举 魏国余   

  • 收稿日期:2011-04-20 修回日期:2011-06-21 出版日期:2011-11-05 发布日期:2011-11-05
  • 基金资助:

    广西林业重大招标项目“主要速生人工林树种材性改良与深加工利用”

The Study of Drying Characteristics on Eucalyptu grandis × E. urophylla

  • Received:2011-04-20 Revised:2011-06-21 Online:2011-11-05 Published:2011-11-05

摘要:

研究巨尾桉木材的干燥特性并制定干燥基准,为实际生产中制定合理的干燥工艺提供理论依据。采用百度试验法,在(100±2)℃恒温干燥条件下对巨尾桉试件进行干燥试验,根据干燥过程中巨尾桉试件的初期开裂、内裂、截面收缩等干燥缺陷制定出巨尾桉木材的干燥基准。巨尾桉试件的初期开裂、内部裂纹、截面变形、扭曲变形和干燥速度分别为1级、2级、3级、2级和2级;体积干缩率为19.04%,弦向干缩率为9.60%,径向干缩率为6.65%,纵向干缩率为0.33%。巨尾桉的干燥初期温度为60℃,干燥初期干湿球温度差为3~5℃,干燥终期温度为75℃。厚度为25 mm的巨尾桉板材在强制循环干燥窑内干燥至10%所需的时间为10(8)天(括号内为硬基准条件下的干燥时间)。巨尾桉试件主要缺陷是内裂和截面变形,在实际生产过程中要尽量使用软基准,干燥中、后期适时进行调湿处理。

关键词: 更新改造, 更新改造

Abstract:

By study the drying characteristics of Eucalyptus grandis × E. urophylla wood and make its drying schedule, provided a reasonable theoretical basis when made the drying process on the actual production. The experimental method was the 100℃ test, on the basis of drying defects of initial check, internal check, and collapse of E. grandis × E. urophylla wood were investigated based on the (100±2)℃ constant temperature, then made the drying schedule. The level of initial check, internal check, collapse , warp distortion and drying speed of Eucalyptus grandis × E. urophylla were 1,2,3,2 and 2, respectively; and its volume shrinkage degrees was 19.04%, tangential shrinkage degrees was 9.60%, radial shrinkage degrees was 6.65%, longitudinal shrinkage degrees was 0.33%. The initial and final drying temperature of E. grandis × E. urophylla lumber were 60 and 75℃, and the temperature difference of dry-wet ball in initial drying stage was 3-5℃. After the Eucalyptus grandis × E. urophylla panel with thickness of 25 mm was dried in forced circulation drying oven for 10 (8) days (in parentheses for hard benchmark conditions), its water content was decreased to 10%. The main defects of Eucalyptus grandis × E. urophylla wood were internal check and collapse, tried to use the soft drying schedule in the actual production process, timely adjusted wet process in drying metaphase and later period.