Radiation-treated fibers, methods of treating and applications for use
The invention relates to radiation-treated reinforcement fibers, reinforced asphalt and portland cement concrete, and grout, methods for producing the same and application for their use. The radiation treatment includes exposing reinforcement fibers to electromagnetic energy, e.g., gamma rays, and/or electron-beam (E-beam) radiation. As a result of the treatment, the radiation-treated reinforcement fibers have a modified or deformed surface, e.g., an abraded and/or porous surface, as compared to reinforcement fibers without a radiation treatment.
1. A reinforced grout composition, comprising:
a plurality of radiation-treated grout reinforcement fibers selected from the group consisting of polymer fibers, aramid fibers, and blends or mixtures thereof, comprising:
a surface; and
a modification to the surface formed by exposure to electromagnetic energy and/or electron-beam radiation to form a radiation-modified grout reinforcement fiber, the modification selected from the group consisting of deformation, abrasion, roughness, asperity, porosity, and combinations thereof; and
dry grout material or blend,
wherein the plurality of radiation-treated, grout reinforcement fibers have one or more of a higher modulus, higher tensile strength and greater surface area than the modulus, tensile strength and surface area of grout reinforcement fibers without the modification, and
wherein, following addition of liquid to form a liquid grout slurry, the radiation-treated grout reinforcement fibers remain suspended in the liquid grout slurry without floating on or sinking in the liquid medium.
2. The grout composition of claim 1 , wherein the dry grout material or blend is selected from the group consisting of cement, bentonite clay and mixtures thereof.
3. The grout composition of claim 1 , wherein the electromagnetic energy comprises gamma rays.
4. The grout composition of claim 1 , wherein the plurality of radiation-treated grout reinforcement fibers is monofilament fiber.
5. The grout composition of claim 1 , wherein the electromagnetic energy and/or electron-beam radiation constitutes a dose of 5 kGy to less than 35 kGy of radiation.