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Thermal behaviour of unstressed and stressed high strength concrete containing polypropylene fibers at elevated temperature

机译:高温下含聚丙烯纤维的无应力高应力混凝土的热性能

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Purpose - The purpose of this paper is to evaluate high strength concrete (HSC) containing polypropylene fibers (PP-fibers) at high temperature under a compressive load. Design/methodology/approach - The use of PP fibers in HSC is known to reduce and at times eliminate the risk of spalling. HSC containing 0, 1 and 2 kg/m3 of PP-fibers were subjected to various temperatures from 20°C to 150°C, 300°C and 450°C and evaluated in a "hot condition". One group of specimens was in a non-stressed condition during heating (unstressed hot), while a second group was subjected to an initial preload of 40 per cent of the room temperature compressive strength during the heating (stressed hot). Findings - Results showed that stressed concrete containing PP-fibers had lower thermal gradients (the temperature difference between the surface and center temperatures as a function of radial distance) and a decrease in relative porosity. However, the compressive strength of stressed specimens was improved with or without fibers as compared to that of the unstressed HSC. The increased stress levels due to concrete expansion at elevated temperature were also reported. The PP-fibers did not have a significant effect on the compressive strength of stressed concrete as compared to the unstressed state. Originality/value - This paper reports the compressive strength of PP-fibers in HSC at elevated temperature with and without a pre-load.
机译:目的-本文的目的是评估高温下在压缩载荷下含有聚丙烯纤维(PP纤维)的高强度混凝土(HSC)。设计/方法/方法-众所周知,在HSC中使用PP纤维可以减少并有时消除剥落的风险。将包含0、1、2 kg / m3 PP纤维的HSC置于20°C至150°C,300°C和450°C的各种温度下,并在“高温条件”下进行评估。一组试样在加热过程中处于无应力状态(无应力热),而另一组试样则在加热过程中承受了室温抗压强度的40%(应力热)的初始预紧力。研究结果-结果表明,含有PP纤维的受应力混凝土具有较低的热梯度(表面温度和中心温度之间的温差随径向距离的变化),并且相对孔隙率降低。但是,与未加应力的HSC相比,加或不加纤维时,加应力试样的抗压强度都有所提高。还报告了由于高温下混凝土膨胀而引起的应力增加。与无应力状态相比,PP纤维对受应力混凝土的抗压强度没有显着影响。原创性/价值-本文报道了在有和没有预载的情况下,高温下HSC中PP纤维的抗压强度。

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