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使用基于CT的纤维取向数据模拟纤维增强混凝土的力学性能

Simulating Fiber-Reinforced Concrete Mechanical Performance Using CT-Based Fiber Orientation Data.

作者信息

Buljak Vladimir, Oesch Tyler, Bruno Giovanni

机构信息

Faculty of Mechanical Engineering, University of Belgrade, Kraljice Marije 16, 11120 Belgrade 35, Serbia.

Bundesanstalt für Materialforschung und⁻prüfung, BAM (Federal Institute for Materials Research and Testing), 12205 Berlin, Germany.

出版信息

Materials (Basel). 2019 Mar 1;12(5):717. doi: 10.3390/ma12050717.

Abstract

The main hindrance to realistic models of fiber-reinforced concrete (FRC) is the local materials property variation, which does not yet reliably allow simulations at the structural level. The idea presented in this paper makes use of an existing constitutive model, but resolves the problem of localized material variation through X-ray computed tomography (CT)-based pre-processing. First, a three-point bending test of a notched beam is considered, where pre-test fiber orientations are measured using CT. A numerical model is then built with the zone subjected to progressive damage, modeled using an orthotropic damage model. To each of the finite elements within this zone, a local coordinate system is assigned, with its longitudinal direction defined by local fiber orientations. Second, the parameters of the constitutive damage model are determined through inverse analysis using load-displacement data obtained from the test. These parameters are considered to clearly explain the material behavior for any arbitrary external action and fiber orientation, for the same geometrical properties and volumetric ratio of fibers. Third, the effectiveness of the resulting model is demonstrated using a second, "control" experiment. The results of the "control" experiment analyzed in this research compare well with the model results. The ultimate strength was predicted with an error of about 6%, while the work-of-load was predicted within 4%. It demonstrates the potential of this method for accurately predicting the mechanical performance of FRC components.

摘要

纤维增强混凝土(FRC)实际模型的主要障碍是局部材料性能的变化,这使得在结构层面进行可靠的模拟仍无法实现。本文提出的思路利用了现有的本构模型,但通过基于X射线计算机断层扫描(CT)的预处理解决了局部材料变化的问题。首先,考虑对带缺口梁进行三点弯曲试验,试验前使用CT测量纤维取向。然后建立一个数值模型,对承受渐进性损伤的区域采用正交各向异性损伤模型进行建模。在该区域内的每个有限元上,都指定一个局部坐标系,其纵向方向由局部纤维取向定义。其次,使用从试验中获得的荷载-位移数据,通过反分析确定本构损伤模型的参数。对于相同的几何特性和纤维体积比,这些参数被认为能够清晰地解释材料在任何任意外部作用和纤维取向下的行为。第三,通过第二个“对照”试验证明了所得模型的有效性。本研究中分析的“对照”试验结果与模型结果吻合良好。预测的极限强度误差约为6%,而荷载功的预测误差在4%以内。这证明了该方法在准确预测FRC构件力学性能方面的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/83b5/6427341/16501942b2cb/materials-12-00717-g001.jpg

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