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Assessing spiral grain angle by light transmission - proof of concept.

机译:通过透光评估螺旋纹角度-概念证明。

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摘要

Spiral grain measurements are subject to a high degree of variation and interpretation, depending on the assessment method used. A new measurement approach was tested whereby light was directed through disc samples on a flatbed scanner and the deviation along the grain assessed by means of a template to allow the mapping of grain angle variation radially and tangentially within discs. Initial results showed that the approach was valid for green discs up to 35 mm thick and small enough to fit on an A4 scanner. Comparisons with traditional scribing and cleaving methods were favourable, indicating that the light transmission approach could allow much faster and more accurate data acquisition. The possibility of using larger discs would enhance the ability to assess spatial variation in grain angle and minimise the effects of sample reference geometry with respect to the tree axis (disc tilt and parallax). Further work may also be required to ensure that reliable spiral grain values are obtained from both sap wood and heartwood. The ultimate goal is to develop an automated system for reconstructing stem characteristics from measurements on large fresh green discs to enable the 3-dimensional mapping of individual stem variations in key wood properties and modelling the impacts of silviculture and genetics on wood products.
机译:螺旋晶粒度的测量值会根据所使用的评估方法而发生高度变化和解释。测试了一种新的测量方法,使光线通过平板扫描仪上的圆盘样品,并通过模板评估沿晶粒的偏差,以允许在圆盘内径向和切向地绘制晶粒角度变化。初步结果表明,该方法适用于厚度最大为35 mm且足够小以适合A4扫描仪安装的绿色光盘。与传统划线和切割方法的比较是有利的,这表明光传输方法可以允许更快,更准确的数据采集。使用更大的光盘的可能性将增强评估晶粒角度空间变化的能力,并使样品参考几何形状相对于树轴(光盘倾斜和视差)的影响最小化。还可能需要做进一步的工作,以确保从边材和心材中都获得可靠的螺旋纹值。最终目标是开发一种自动化系统,用于从大型新鲜绿色圆盘上的测量值中重建茎的特性,从而能够对关键木材特性中的单个茎变化进行3维映射,并模拟造林和遗传学对木制品的影响。

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