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Performance Assessment of a Numerical Simulation Tool for Wooden Boards with Knots by Means of Full-Field Deformation Measurements

机译:通过全场变形测量评估带结木板的数值模拟工具的性能

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摘要

In wooden boards, knots and the resulting fibre deviations in their vicinities are mainly responsible for qualitative downgrading of timber elements. Thus, the development of reliable numerical simulation tools for the determination of effective strength and stiffness properties of timber elements and, in a next step, for the development and evaluation of grading criteria is highly desirable. Due to the complexity of such tools, a comprehensive validation is required. Within this work, the suitability of full-field deformation measurements for four-point bending tests on wooden boards with knots is evaluated first. Next, the test series is used to validate a previously developed three-dimensional numerical simulation tool, which combines a geometrical model for the grain course and a micromechanical model for a density and moisture dependent characterisation of the clear-wood material. The digital image correlation technique proved to be capable to reproduce the strain fields in the vicinity of knots under bending load. Moreover, a very good correlation between numerical and experimental results was obtained.
机译:在木板中,打结及其附近的纤维偏差是造成木材元素质量下降的主要原因。因此,非常需要开发可靠的数值模拟工具,以确定木材元素的有效强度和刚度,并在下一步中开发和评估等级标准。由于此类工具的复杂性,因此需要进行全面的验证。在这项工作中,首先要评估全场变形测量在带有结的木板上进行四点弯曲测试的适用性。接下来,该测试系列用于验证先前开发的三维数值模拟工具,该工具结合了用于纹理过程的几何模型和用于确定透明木材材料的密度和湿度相关特性的微机械模型。事实证明,数字图像相关技术能够在弯曲载荷下重现结附近的应变场。此外,在数值和实验结果之间获得了很好的相关性。

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