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The pull-out test on knit bamboo reinforcement embedded into concrete beam

机译:编织竹筋嵌入混凝土梁的拉力试验。

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The pull-out test is generally conducted to obtain accurately the carrying capacity of the flexural strength of the knit bamboo reinforced concrete beam, which is more determined by the bonding strength than the tensile strength of reinforcement in concrete. Bamboo bar with braid knit which was coated with sikadur as bonding agent based on selected epoxy resin was expected to improve a good friction with concrete. In the pull-out test method, a hydraulic jack was applied to encourage bamboo embedded into a pair of concrete blocks, whose size was 15cm x 30cm x 40cm. The experimental variable of specimens were types of knitted bamboo, and type of coating. Based on the test results, either the bond strength or the tensile strength, which was calculated based on the failure mechanism, increased with respect to the concrete quality. The compressive strength of concrete was averaged as much as 25,97 MPa. The usage of outer skin surface on the cutting braid knit bamboo (type 1), which was coated with sikadur experimentally could increase the pull-out load. In the pull-out test, bond failure occurred with using of the plain bamboo bar with the bond stress of 1.18 MPa, while tensile failure occurred with using of knit bar type 1 with peak tensile strength of 85.84 Mpa.
机译:通常进行拉出试验是为了准确地获得编织的竹增强混凝土梁的抗弯强度的承载能力,该抗弯强度更多地是由粘结强度决定的,而不是混凝土中增强的抗拉强度。预期在选定的环氧树脂的基础上涂以西卡杜尔作为粘合剂的编织编织竹条有望改善与混凝土的良好摩擦。在拉出试验方法中,使用液压千斤顶将竹子鼓励嵌入一对尺寸为15cm x 30cm x 40cm的混凝土块中。标本的实验变量是针织竹的类型和涂层的类型。根据试验结果,根据破坏机理计算出的粘结强度或抗拉强度相对于混凝土质量而言均增加了。混凝土的抗压强度平均为25.97 MPa。在实验性地用sikadur涂层的编织编织竹子(类型1)上使用皮肤外表面可能会增加拉出负荷。在拉拔试验中,使用普通竹编棒的粘结应力为1.18 MPa时发生粘结破坏,而使用1型编织棒的峰值拉伸强度为85.84 Mpa时发生拉伸破坏。

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