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首页> 外文期刊>Journal of Structural Biology >3D micro-scale deformations of wood in bending: Synchrotron radiation muCT data analyzed with digital volume correlation
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3D micro-scale deformations of wood in bending: Synchrotron radiation muCT data analyzed with digital volume correlation

机译:弯曲中木材的3D微观形变:通过数字体积相关性分析同步辐射muCT数据

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摘要

A micro-scale three-point-bending experiment with a wood specimen was carried out and monitored by synchrotron radiation micro-computed tomography. The full three-dimensional wood structure of the 1.57x3.42x0.75mm(3) specimen was reconstructed at cellular level in different loading states. Furthermore, the full three-dimensional deformation field of the loaded wood specimen was determined by digital volume correlation, applied to the reconstructed data at successive loading states. Results from two selected regions within the wood specimen are presented as continuous displacement and strain fields in both 2D and 3D. The applied combination of synchrotron radiation micro-computed tomography and digital volume correlation for the deformation analysis of wood under bending stress is a novel application in wood material science. The method offers the potential for the simultaneous observation of structural changes and quantified deformations during in situ micro-mechanical experiments. Moreover, the high spatial resolution allows studying the influence of anatomical features on the fracture behaviour of wood. Possible applications of this method range from bio-mechanical observations in fresh plant tissue to fracture mechanics aspects in structural timber.
机译:进行了一个木材标本的微型三点弯曲实验,并通过同步辐射微计算机断层摄影术进行了监测。 1.57x3.42x0.75mm(3)标本的完整三维木结构是在细胞水平上在不同的加载状态下重建的。此外,通过数字体积相关性确定了加载木材样本的完整三维变形场,并将其应用于连续加载状态下的重建数据。木材样本中两个选定区域的结果显示为2D和3D中的连续位移和应变场。同步辐射微计算机断层扫描技术与数字体积相关技术的结合在弯曲应力作用下对木材的变形分析是一种在木材科学中的新应用。该方法为在原位微机械实验中同时观察结构变化和定量变形提供了可能。此外,高空间分辨率允许研究解剖特征对木材断裂行为的影响。这种方法的可能应用范围包括从新鲜植物组织中的生物力学观察到结构木材的断裂力学方面。

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