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ON THE TOUGHNESS OF HIGH STRENGTH CONCRETE WITH STEEL FIBRES OF DIFFERENT LENGTHS

机译:不同长度钢纤维的高强度混凝土的韧性

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The test series reported is part of a research program aimed at defining tools for static design of structural elements made of High Strength Steel Fibre Reinforced Concrete (HSFRC). One of the parameters that had to be decided upon for the design of static structural tests was the fibre type. On the one hand, longer, 60-mm fibres can bridge wider cracks and provide increased toughness, and on the other hand, mixes with shorter, 30-mm fibres can be consolidated more readily. In order to clarify this issue and to evaluate whether structural test results with one type of fibre (short) are indicative of static behaviour of HSFRC elements with another type of fibres (long), we performed toughness tests of specimens with both fibre types. The four-point bending tests were carried out on 115-N/mm2 150xl50x600-mm beam specimens with "short" (30-mm) and "long" (60-mm) hooked-end steel fibres that had similar aspect ratios of 60~65. The test results showed a pronounced difference between the responses of the two specimen types at relatively large displacements. However, a closer examination of the results showed that within a certain deflection range the responses of the two mixes were similar. It was evaluated that the (calculated) crack opening that corresponds to this deflection is beyond the criterion usually specified in design codes for serviceability limit state and within the range of RC members ultimate limit state.
机译:检验系列报告是研究计划的一部分,旨在定义由高强度钢纤维混凝土(HSFRC)制成的结构元件静态设计的工具。必须决定静态结构测试设计的参数之一是光纤类型。一方面,较长,60毫米的纤维可以桥梁桥梁裂缝并提供更高的韧性,另一方面,可以更容易地巩固30毫米纤维的混合。为了澄清这个问题并评估用一种类型的纤维(短)是否指示HSFRC元件的静态行为,具有另一种类型的纤维(长),我们对两种纤维类型进行了标本的韧性试验。在115-n / mm2 150xl50x600mm横梁标本上进行四点弯曲试验,具有“短”(30毫米)和“长”(60毫米)钩端钢纤维,其具有相似的纵横比为60 〜65。测试结果表明,在相对大的位移中的两个样品类型的响应之间显示出明显的差异。然而,对结果的仔细检查表明,在一定偏转范围内,两个混合物的反应相似。评估对应于该偏转的(计算的)裂缝开口超出了用于可维护性限制状态的设计代码中的标准,以及在RC成员终极极限状态范围内。

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