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CHEMOMECHANICAL PROPERTIES OF FRC BASED ON NON-TRADITIONAL FIBERS

机译:基于非传统纤维的FRC的化学力学性质

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The fibers play very important role particularly during curing process of concrete, as they suppress local cracking and warping in the composite. Very important fact follows from plenty of experimental studies: since fibers have different stiffness from concrete itself, interfacial mechanical properties have to be solved when requiring knowledge about the bearing capacity of the structure. From this it follows that the values of parameters for contact conditions are very important. Simultaneously, the chemical, numerical, and mechanical results have to be compared at different stages of curing process of concrete. This will be carried out for one of non-traditional materials of fibers, which appears to be very cheap and need recycling. We are going to treat modified waste PET bottle (polyethylene terepthalate) fibers in this paper, which should substitute local reinforcement in plasters of old buildings. Mechanical properties are calculated from convergence procedure involving numerical and chemical (mechanical) tests. Chemical properties of interfacial zones of concrete and fibers are studied by the Raman spectroscopy. Couple of exam- pies will demonstrate the ability of the approach above mentioned.
机译:纤维在混凝土固化过程中起着非常重要的作用,因为它们抑制了复合材料中的局部裂缝和翘曲。非常重要的事实从大量的实验研究中遵循:由于纤维从混凝土本身具有不同的刚度,因此必须在需要了解结构的承载力的知识时解决界面机械性能。从这一点遵循的是,接触条件的参数值非常重要。同时,在混凝土固化过程的不同阶段,必须比较化学,数值和机械效果。这将是为非传统纤维材料进行的,这似乎非常便宜,需要回收。我们将在本文中处理改性的废物宠物瓶(聚乙二丁二醇酯)纤维,这应该替代旧建筑膏药中的局部加强。从涉及数值和化学(机械)测试的收敛过程计算机械性能。拉曼光谱研究了混凝土和纤维界面区域的化学性质。几个考试将展示上面提到的方法的能力。

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