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Testing methods for shear strength of bond line between concrete and different types of engineered wood

机译:混凝土与不同类型的工程木材粘接力剪切强度试验方法

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This paper identified a reliable testing method for determining the shear strength of bond lines between concrete and engineered wood. The identification was carried out based on analytical derivations and experimental tests on concrete (compressive strength of 24.8 MPa) and engineered wood composite connections glued by two types of epoxy. Forty specimens were tested under two commonly used test setups, i.e. 20 double-shear tests on timber concrete composite specimens with a bond length of 50 mm and another 20 compression-shear tests on specimens with a bond length of 300 mm. The result analysis showed that there was no significant statistical difference between the shear strength of the bond lines (around 2.3 MPa) as well as between the failure modes obtained (dominated by concrete failure), regardless of the considered bond lengths and adhesive types investigated. The analysis used a quasi-non-linear fracture mechanics model, considering the boundary conditions of the tests. The analytical model revealed that the ultimate shear stress is approximately uniformly distributed both in the double-shear and in the compression-shear tests, so the spatially averaged shear stress value can approximate the critical shear stress of the bond line with sufficient accuracy. However, if the failure occurred in the wood or the strength of the concrete was higher, the shear stress distribution at ultimate load in the compression-shear tests with a bond length of 300 mm would not be uniform. The maximum shear stress value, which is significantly larger than the average one, occurred at the fixed (or supporting) end of the bond line. Even so, in the shear tests with a bond length of 50 mm, the average ultimate shear stress value was still close to the shear strength with a difference smaller than 5%. Hence, a bond length of 50 mm is recommended for determining the shear strength of a bond line between normal strength concrete and engineered wood when using a push-out shear test setup.
机译:本文确定了一种可靠的测试方法,用于确定混凝土和工程木材之间的粘合线的剪切强度。基于分析衍生和24.8MPa的压缩强度的实验试验和由两种类型的环氧树脂粘合的工程木质复合连接的实验试验进行了鉴定。在两个常用的测试设置下测试四十种样本,即在木材混凝土复合样品上的双剪切试验,粘合长度为50mm,另外20个压缩剪切试验,标本的粘合长度为300mm。结果分析表明,无论考虑的粘合长度和所研究的粘合剂类型如何,粘合线(约2.3MPa)的剪切强度和粘合剂模式之间没有显着的统计差异。分析使用了准非线性断裂力学模型,考虑了测试的边界条件。分析模型显示,在双剪切和压缩剪切测试中,极限剪切应力大致均匀地分布,因此空间平均剪切应力值可以以足够的精度近似粘合线的临界剪切应力。然而,如果木材发生故障或混凝土的强度更高,则压缩剪切试验中的最终负载处的剪切应力分布不会均匀。在键合线的固定(或支撑)端,最大剪切应力值显着大于平均值。即便如此,在粘结长度为50mm的剪切测试中,平均极性剪切应力值仍然接近剪切强度,差异小于5%。因此,建议使用推出剪切测试设置时确定正常强度混凝土和工程木材之间粘合线的剪切强度的键长。

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