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The aim of this laboratory study was to evaluate the properties of high performance porous concrete.
This paper deals with the effect of fine aggregate particles on the rheological properties of high performance cement-based materials.
An experimental investigation was carried out to evaluate the mechanical and durability properties of high performance concretes containing supplementary cementitious materials in both binary and ternary systems.
The aim of the present study is to investigate the flexural behavior and durability properties of high performance hybrid-fiber-reinforced concrete.
This paper presents the effects of some admixtures including silica nanoparticles, silica fume and Class F fly ash on different properties of high performance self compacting concrete (HPSCC).
In this chapter, the characteristic physical properties of high performance textile materials are reviewed, and examples of their applications in the engineering design of protective clothing are given, together with a brief introduction to the legal requirements for protective clothing.
Similar(45)
The main purpose of this study was to investigate the flexural property of high performance polypropylene fiber reinforced lightweight aggregate concrete (HPPLWC) and steel fiber reinforced lightweight aggregate concrete (SFLWC).
Particular attention is given to the structural mechanical property relationships of high performance TMCs.
Detailed review on the fresh properties, mechanical properties and durability of high performance concrete containing NS particles are presented.
The results, in general, showed that mineral admixtures improved the properties of high-performance concretes, but at different rates depending on the binder type.
However, there is little knowledge the effect of nano-MgO on the mechanical, durability and microstructure properties of high-performance cement-based materials.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com