A kind of anti-crack toughening steel fiber and preparation method thereof
A steel fiber and toughening technology, which is applied in the field of crack-resistant and toughened steel fiber and its preparation, can solve the problem of crack resistance, compressive strength, large fiber content, reduction of concrete crack resistance and reinforcement effect, and reduction of concrete toughening function, etc. problems, to achieve the effects of strengthening and toughening, reducing the risk of material damage, and reducing the risk of concrete damage
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Embodiment 1
[0031] Lead 120 steel wires with a diameter of 0.55mm from the I-shaped wheel, and straighten the steel wires through the straightening equipment. After the steel wires pass through a bath filled with 20% mass concentration of adhesive, they will be evenly surrounded by a steel circle with a diameter of 20mm. The outside of the cylinder is bonded into a cylindrical shape (the outer ring is fixed by a steel wire ring with a diameter of 22mm), and the steel wire bonded into a cylindrical shape and the cylinder are heated and dried in an oven at the same time (drying temperature 250±10°C, drying time 30 ~40s), and then cooled and dried by the bellows, and then the cylindrical steel fibers are pressed and cut according to the requirements to obtain steel fibers, and 6g of concrete expansion agent is filled in each cylinder formed by the bonding of steel fibers (the mass of each component is equal to Ratio: light-burned magnesium oxide: calcium oxide: gypsum = 70: 20: 10), both ends...
Embodiment 2
[0033] Lead 100 steel wires with a diameter of 0.60mm from the I-shaped wheel, straighten the steel wires through the straightening equipment, and evenly surround the steel wires with a diameter of 18mm after passing through a bath filled with 20% mass concentration of adhesive The outside of the cylinder is bonded into a cylindrical shape (the outer ring is fixed by a steel wire ring with a diameter of 20mm), and the steel wire bonded into a cylindrical shape and the cylinder are heated and dried in an oven at the same time (drying temperature 250±10°C, drying time 30 ~40s), and then cooled and dried by bellows, and then the cylindrical steel fibers were pressed and cut according to the requirements to obtain steel fibers, and 4g of concrete expansion agent was filled in each cylinder formed by bonding steel fibers (the mass of each component was equal to Ratio: light-burned magnesium oxide: calcium oxide: gypsum = 65: 25: 10), both ends are encapsulated with water-soluble sea...
Embodiment 3
[0035] Lead 80 steel wires with a diameter of 0.75mm from the I-shaped wheel, and straighten the steel wires through the straightening equipment. After the steel wires pass through a bath filled with 20% mass concentration of adhesive, they will be evenly surrounded by a steel circle with a diameter of 18mm. The outside of the cylinder is bonded into a cylindrical shape (the outer ring is fixed by a steel wire ring with a diameter of 20mm), and the steel wire bonded into a cylindrical shape and the cylinder are heated and dried in an oven at the same time (drying temperature 250±10°C, drying time 30 ~40s), and then cooled and dried by the bellows, and then the cylindrical steel fibers are pressed and cut according to the requirements to obtain steel fibers, and 10g of concrete expansion agent is filled in each cylinder formed by the bonding of steel fibers (the mass of each component is equal to Ratio: light-burned magnesium oxide: calcium oxide: gypsum = 80: 10: 10), both ends...
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