Ultra-high performance concrete for large-span beam construction and preparation method thereof
An ultra-high-performance, long-span technology, applied in the field of building construction, can solve the problems that it is difficult to guarantee the application effect of long-span beams, and achieve excellent mechanical properties, ensure construction safety, and low shrinkage
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Embodiment 1
[0030] Ultra high performance concrete prepared for large-span girder construction, the following steps:
[0031] (1) First 0.1kg N- (β- aminoethyl) aminopropyl trimethoxysilane, [gamma] 0.4kg of anhydrous ethanol was added, stirred and dispersed uniformly, followed by addition of 0.3kg of carbon black, 300W ultrasonic oscillation 30 minutes , filtered to give a modified carbon black; carbon black and the modified polyamide resin uniformly mixed with 4kg, melt spinning, a length of 55mm to obtain modified polyamide filaments;
[0032] (2) a length of 10mm and then short fibers of stainless steel surfaces by electrolytic etching, etched stainless steel to obtain short fibers, then a length of 10mm chopped carbon fiber surface loading water absorbing resin to obtain a modified chopped carbon fiber;
[0033] (3) Then the sand 28kg PO 42.5 Portland cement, 10kg of fly ash, 14kg slag powder, 65kg diameter 10mm gravel, 40kg fineness modulus of 2.5, 0.3kg modified polyamide filaments, 0....
Embodiment 2
[0039] Ultra high performance concrete prepared for large-span girder construction, the following steps:
[0040] (1) First 0.1kg N- (β- aminoethyl) aminopropyl trimethoxysilane, [gamma] 0.5kg of anhydrous ethanol was added, stirred and dispersed uniformly, followed by addition of 0.2kg of carbon black, 400W ultrasonic oscillation 20 minutes , filtered to give a modified carbon black; carbon black and the modified polyamide resin uniformly mixed with 4.5kg, melt spinning, a length of 50mm to obtain modified polyamide filaments;
[0041] (2) a length of 15mm and then short fibers of stainless steel surfaces by electrolytic etching, etched stainless steel to give short fibers having a length of 8mm and then chopped carbon fiber surface loading water absorbing resin to obtain a modified chopped carbon fiber;
[0042] (3) Then 30kg PO 42.5 portland cement, 9kg fly ash, 15kg slag powder, 60kg diameter 15mm gravel, 38kg 3.0 fineness modulus of sand, 0.2kg modified polyamide filaments, 0...
Embodiment 3
[0048] Ultra high performance concrete prepared for large-span girder construction, the following steps:
[0049] (1) First 0.1kg N- (β- aminoethyl) aminopropyl trimethoxysilane, [gamma] 0.45kg of absolute ethanol was added and stirred uniformly dispersed, followed by addition of 0.25kg of carbon black, 400W ultrasonic oscillation 25 minutes , filtered to give a modified carbon black; carbon black and the modified polyamide resin uniformly mixed with 4.2kg, melt spinning, a length of 52mm to obtain modified polyamide filaments;
[0050] (2) Then length of 12mm stainless steel short fibers surface-electrolytic etching, etched stainless steel to give short fibers having a length of 9mm and then the chopped carbon fiber surface loading water absorbing resin to obtain a modified chopped carbon fiber;
[0051] (3) Then 29kg PO 42.5 portland cement, fly ash 9.5kg, 14.5kg slag powder, 62kg diameter 12mm gravel, sand 39kg number fineness modulus of 3.0, 0.25kg modified polyamide filaments...
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