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All results showed that, the best fiber rate was 0.25% and determined optimum bitumen content remain constant with the fiber additive for the reference samples.
Besides, some sample groups which prepared using different PTF rates proved the specification limits and it was said that; PTF can be used in asphalt concrete as a fiber additive.
The concrete testing results showed that, when the hybrid fiber additive is used, the synergetic effect, that appeared in this case, is higher than effect, observed in fiber individual application.
In particular, in the case of using the hybrid fiber additive in refractory concrete, a risk of explosive spalling of concrete is eliminated and the drop of its compressive strength is prevented, when refractory concrete is fired approaching the limiting temperature.
Then, the mechanical properties of the optimized HSC were investigated for various aspect ratios and volume fractions of hooked steel fiber additive.
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The influence of fiber additives on porosity, mechanical characteristics and resistance to explosive spalling of the refractory concrete with fiber additives was tested.
In the non freeze thaw subjected samples, the optimum percentages for lime, rice husk ash and fiber additives were calculated as 7.39%, 5.78 5.91% and 0.8%, respectively.
Fiber additives are mainly used as reinforcement materials in asphalt pavements to improve the tensile properties and increase the strength against low-temperature cracking and potholes.
The possibility to increase the stability of the heating unites combustion zone refractory structures, made of the aluminate cement composite concrete, using for this aim polypropylene and carbon fiber additives, was investigated in this work.
The peculiarities of microstructure evolutions in the fiber and binder contact zone, the channels formation, the changes of porosity and compressive strength of fiber additives having refractory binder under temperature treatment was investigated; the investigation results allowed to predict the hybrid fiber more effective action than using them individually.
Initial research has been performed targeting the integration of fibers into additive manufactured plastic composites.
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CEO of Professional Science Editing for Scientists @ prosciediting.com