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INVESTIGATIONS REGARDING THE PUMPING PROCESS OF WET-MIX SHOTCRETE

机译:关于湿混泥浆泵抽水过程的调查

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Workability is a physical property of fresh concrete, which can't be described with only one single parameter or measured with one single test method. Pumpability and sprayability plays an important role for wet-mix sprayed concrete. The material must be conveyed through the pipe without changing its properties and mix proportion. The mix should leave the nozzle in a uniform stream intermixed homogeneously with the accelerator. When concrete is pumped through a pipe, a thin layer of paste is lubricating the wall of the pipe. The interaction of the lubricating layer and the pipe wall is of great importance for pumpability. The shear of the layer allows the slipping of the concrete and leads to a reduction of the required pumping pressure. In this presentation a sliding pipe rheometer "Sliper" is used to determine the pumping capacity of concrete. The Sliper consists of a pipe and a guided piston which is standing on the ground. A pressure sensor is integrated onto the piston. When the pipe is sliding downwards, the pressure in the pipe as well as the speed of the pipe are recorded. Rheological parameters as well as the supposed pumping pressure may be estimated. The cohesiveness of concrete is important to avoid blockages in the conveying pipe. Blockages can occur, when the paste separates from the aggregate skeleton because of a high pressure in the pipe. The stability of the wet-mix was determined by a filter pressing test.Mixes tested by the Sliper and the filter press were then sprayed with a wet-mix shotcrete machine Sika PM 500. This machine was equipped with seven pressure sensors, which could monitor the pressure over time. The sensors measured the pressure of the hydraulic system, the mix at the beginning and end of the pumping line, the pressure of the accelerator shortly after the pump and at the end of the hose, the pressure of the air and finally the pressure in the aerosol converter. Simultaneously, the spraying was filmed by a high-speed camera. This slow-motion recording shows the homogeneity and pulsation of the spray jet. At its best, shotcrete should emerge from the nozzle in a steady, uninterrupted flow. Different durable and sustainable mixes, developed under the Austrian research project ASSpC, were sprayed at different output of the shotcrete machine. The results and lessons learned from the results will be final part of the presentation.
机译:可加工性是新鲜混凝土的物理性能,不能仅用一个参数来描述,也不能用一种测试方法来测量。泵送性和喷涂性对于湿拌喷涂混凝土起着重要作用。必须在不改变其性能和混合比例的情况下将物料通过管道输送。混合物应以均匀流的形式离开喷嘴,并与促进剂均匀混合。当混凝土通过管道泵送时,一层薄薄的糊剂正在润滑管道壁。润滑层和管壁的相互作用对于泵送性非常重要。层的剪切允许混凝土打滑并导致所需的泵送压力的降低。在本演示中,使用滑管流变仪“ Sliper”来确定混凝土的泵送能力。滑块由一根管子和一个站立在地面上的导向活塞组成。压力传感器集成在活塞上。当管道向下滑动时,会记录管道中的压力以及管道的速度。可以估计流变参数以及假定的泵送压力。混凝土的内聚性对于避免输送管堵塞很重要。当糊剂由于管道中的高压而与骨料骨架分离时,可能会发生堵塞。湿混合物的稳定性通过压滤试验确定。然后,将由Sliper和压滤机测试的混合物用湿喷射混凝土喷射机Sika PM 500喷涂。该机器配备了七个压力传感器,可以监控随着时间的推移压力。传感器测量液压系统的压力,泵送管线开始和末端的混合气,泵之后不久和软管末端的加速器压力,空气压力以及最终压力。气溶胶转换器。同时,用高速照相机对喷雾进行了拍摄。慢动作记录显示了喷射流的均匀性和脉动。在最佳状态下,喷射混凝土应以稳定,不间断的流动方式从喷嘴中喷出。在奥地利的ASSpC研究项目下开发的不同的持久性和可持续性混合物被喷洒到喷射混凝土机器的不同产量上。结果和从结果中汲取的教训将是演示的最后部分。

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