钢纤维加固混凝土动态测试程序示例

M. Šperl, Ľ. Gajdoš, M. Drdlová, R. R̆ídký
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引用次数: 0

摘要

这项工作的目的是介绍一些实验测试的实例,这些测试有助于鉴定特种钢纤维增强混凝土(SFRC)的抗破坏性,特别是在防弹防爆框架内的安全用途。第一类试验是基于应变仪的 SFRC 混凝土块在弹道加载下的动态响应特性分析。试验的目的是测量 500 x 500 x 105 毫米的混凝土试样在受到弹丸冲击时的变形响应。这些试验用于支持数值模拟模型的开发和验证。为进行数值模拟,开发了单个弹丸的三维模型。四个 T 型应变片按照几何方案粘贴在试样的反面,即弹丸撞击后的一面,测量弹丸撞击后钢板的挠度。应变仪获得的应变响应记录随后被用于使用 LS-DYNA 软件进行数值分析。弹丸撞击时钢板的平均最大挠度以应变 400 µm/m 为特征。第二类试验是使用夏比试验机测量特殊混凝土试样的准动态抗拉强度。结果比较了业余混凝土(HB)和带钢丝业余混凝土(HBD)试样的断裂能和达到的最大力。这些试验旨在开发最合适的测试方法。试验发现,HB 和 HBD 试样的最大力分别为 55 牛顿和 600 牛顿,断裂能分别为 0.4 焦耳和 1.3 焦耳。
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Examples of dynamic test procedures for steel fibre reinforced concrete
The aim of this work is to present some examples of experimental tests, which can be usefull for characterizing the resistance to failure of special steel fibre reinforced concrete – SFRC, intended especially for security use in the framework of ballistic and explosion protection. The first type of the tests was the strain gauge - based characterization of the dynamic response of the SFRC concrete block under ballistic loading. The tests were aimed at measuring the deformation response of a concrete specimen of 500 x 500 x 105 mm in dimensions upon the impact of a projectile. The tests were used to support the development and verification of numerical simulation models. For numerical simulations 3D models of individual projectiles were developed. Four T-type strain gauges were glued according to the geometric scheme on the opposite side of a specimen, i.e. on the side behind the impact of the projectile, and they measured the deflection of the plate after the impact of the projectile. The strain response records obtained from the strain gauges were subsequently used for numerical analyses by the use of the LS-DYNA software. The average maximum deflection of the plate at the impact of the projectile was characterized by the strain 400 µm/m. The second type of the tests was concerned with the method of measuring the quasi-dynamic tensile strength of special concrete specimens using an instrumented Charpy tester. The results compare both the breaking energy and the maximum force achieved for hobby concrete (HB) and hobby concrete with wires (HBD) specimens. These were pilot tests to develop the most suitable testing method. For the HB and HBD specimens the maximum force in the tests was found to be 55 N vs. 600 N, and the breaking energy to be 0.4 J vs. 1.3 J.
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