A kind of high toughness ceramsite concrete and preparation method thereof
A technology of ceramsite concrete and high toughness, which is applied in the field of building materials, can solve the problems of few researches on seismic and impact resistance tests, and few studies on ceramsite concrete. It is easy to meet the preparation conditions, increase the compactness, and is easy to obtain. Effect
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Embodiment 1
[0047] 1. Preparation of modified composite carbon nanomaterials:
[0048] 1) Put 62 stainless steel balls with a diameter of 5 mm and 46 stainless steel balls with a diameter of 10 mm in two identical 6 L nylon ball mill jars, and then add 1.4 kg of natural single crystal graphite powder and multi-wall The composite carbon material composed of carbon nanotubes at a mass ratio of 1.5:1 was added dropwise with 120 mL of absolute ethanol, sealed with a nylon cover, and two ball mill jars were symmetrically placed in the ball mill. 60 hours of ball milling under the condition of automatically changing the direction of rotation;
[0049] 2) The composite carbon material treated in step 1) was added to the Tween 40 aqueous solution with a pH value of 8 and a mass concentration of 16%, ultrasonicated for 15 h, filtered, and the resulting filter residue was washed with water and then vacuum-dried at 62 °C for 20 h ;
[0050] 3) The composite carbon material treated in step 2) was a...
Embodiment 2
[0063] 1. Preparation of modified composite carbon nanomaterials:
[0064] 1) Put 62 stainless steel balls with a diameter of 5 mm and 46 stainless steel balls with a diameter of 10 mm in two identical 6 L nylon ball mill jars, and then add 1.4 kg of high-purity ultrafine graphite powder and multi-walled nano Carbon tubes are composed of composite carbon materials with a mass ratio of 1.5:1, and then 120 mL of absolute ethanol is added dropwise, sealed with a nylon cover, and two ball mill jars are symmetrically placed in the ball mill. Ball milling treatment for 60h under the condition of automatic conversion of rotation direction;
[0065] 2) The composite carbon material treated in step 1) was added to the Tween 40 aqueous solution with a pH value of 8 and a mass concentration of 16%, ultrasonicated for 15 h, filtered, and the resulting filter residue was washed with water and then vacuum-dried at 62 °C for 20 h ;
[0066] 3) The composite carbon material treated in step ...
Embodiment 3
[0079] 1. Preparation of modified composite carbon nanomaterials:
[0080] 1) Put 62 stainless steel balls with a diameter of 5 mm and 46 stainless steel balls with a diameter of 10 mm in two identical 6 L nylon ball mill jars, and then add 1.4 kg of high-purity ultrafine graphite powder and multi-walled nano Carbon tubes are composed of composite carbon materials with a mass ratio of 1.5:1, and then 120 mL of absolute ethanol is added dropwise, sealed with a nylon cover, and two ball mill jars are symmetrically placed in the ball mill. Ball milling treatment for 60h under the condition of automatic conversion of rotation direction;
[0081] 2) The composite carbon material treated in step 1) was added to the Tween 40 aqueous solution with a pH value of 8 and a mass concentration of 16%, ultrasonicated for 15 h, filtered, and the resulting filter residue was washed with water and dried in vacuum at 60 °C for 20 h ;
[0082] 3) The composite carbon material treated in step 2)...
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