单侧横裂棱柱张拉梁横向位移的经验模拟

M. Skrinar
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引用次数: 0

摘要

虽然轴压对梁的影响早已为人所知,但拉伸轴向载荷对单侧横向开裂梁的影响却鲜为人知。裂纹即使轴向法向应力合力的位置更深入地移动到截面的未开裂部分,裂纹趋于张开,引起横向位移。因此,本文重点对细长棱柱梁所考虑的现象进行经验建模,以便在详细的三维有限元网格结果的基础上建立合适的一维计算模型。这一目标可以通过已经建立的简化模型来实现,其中裂缝由一个具有旋转弹簧的内铰来表示。通过实施三维有限元网格,对不同几何形状、裂纹位置和边界条件的各种梁进行了几种分析,以建立适当的模型弯曲控制微分方程。然后,从三维有限元模型数据库中标定相应的参数定义。通过重新定义模型的输入参数,获得了一个合适的解决方案,在结果的准确性和所需的计算工作量之间提供了一个很好的平衡。通过一些比较案例研究验证了新得到的解的功能性,以补充推导结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Empirical Modeling of Transverse Displacements of Single-Sided Transversely Cracked Prismatic Tension Beams
While the effects of axial compression on beams have long been known, the effect of tensile axial loads on one-sided transversely cracked beams is less known. The crack namely shifts the position of the resultant of the axial normal stresses deeper into the uncracked part of the cross-section, and the crack tends to open, causing a transverse displacement. Therefore, this paper focuses on empirical modeling of the considered phenomenon for slender prismatic beams in order to establish a suitable 1D computational model based on detailed 3D FE mesh results. This goal can be achieved through the already established simplified model, where the crack is represented by an internal hinge endowed with a rotational spring. Several analyses of various beams differing in geometry, crack locations, and boundary conditions were executed by implementing 3D FE meshes to establish the appropriate model’s bending governing differential equation. After that, the corresponding parameter definitions were calibrated from the database of 3D FE models. By redefining the model’s input parameters, a suitable solution is achieved, offering a good balance between the results’ accuracy and the required computational effort. The functionality of the newly obtained solutions was verified through some comparative case studies that supplement the derivations.
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