Ecological garden environment-friendly brick prepared from all waste and preparing method thereof
An environmental protection brick and ecological technology, which is applied in the field of ecological garden environmental protection bricks and their preparation, can solve the problems of occupying large land and pile up at fixed points, and achieve the effects of short production cycle, high strength, and improved strength and density.
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Embodiment 1
[0021] Embodiment 1: The present invention provides a technical solution: an ecological garden environmental protection brick prepared by using all waste materials. The ecological garden environmental protection brick contains the following components: 60-80 parts of construction waste sand, 10-25 parts of waste porcelain material 5-15 parts of waste glass powder, 5-10 parts of coal ash powder, 3-8 parts of cement dust, 2-5 parts of waste glass fiber, 2-4 parts of paint slag, and 5-19 parts of sludge.
[0022] The above-mentioned eco-garden environment-friendly brick and a preparation method thereof comprise the following steps:
[0023] S1: Weigh the following components according to the following mass percentages: 60 parts of construction waste sand, 15 parts of waste porcelain granules, 5 parts of waste glass powder, 10 parts of coal ash powder, 5 parts of cement dust, and 2 parts of waste glass fiber , 2 parts of paint slag, 10 parts of sludge;
[0024] S2: Take the coal ...
Embodiment 2
[0034] S1: Weigh the following components according to the following mass percentages: 60 parts of construction waste sand, 25 parts of waste porcelain granules, 15 parts of waste glass powder, 5 parts of coal ash powder, 5 parts of cement dust, and 5 parts of waste glass fiber , 4 parts of paint slag, 10 parts of sludge;
[0035] S2: Take the coal ash powder, sludge, and paint slag in S1 and grind them into fine grains, and transport them to the batching machine, and mix them with the batching mixer to obtain waste mixture 1;
[0036] S3: Add construction waste sand, waste porcelain granules, waste glass powder, and cement dust to waste mixture 1 and mix them with a batching mixer to obtain waste mixture 2. Waste mixture 2 is transported to the mixer by a conveyor for secondary processing. Stir to mix;
[0037] S4: Transport the waste mixture 2 in S3 that has been stirred and mixed for the second time to the wheel mill for rolling and aging after rolling;
[0038] S5: Trans...
Embodiment 3
[0042] S1: Weigh the following components according to the following mass percentages: 80 parts of construction waste sand, 25 parts of waste porcelain granules, 5 parts of waste glass powder, 10 parts of coal ash powder, 8 parts of cement dust, and 2 parts of waste glass fiber , 4 parts of paint slag, 5 parts of sludge;
[0043] S2: Take the coal ash powder, sludge, and paint slag in S1 and grind them into fine grains, and transport them to the batching machine, and mix them with the batching mixer to obtain waste mixture 1;
[0044] S3: Add construction waste slag sand, waste porcelain granules, waste glass powder, and cement dust to waste mixture 1 and mix them with a batching mixer to obtain waste mixture 2. Waste mixture 2 is transported to the mixer by a conveyor for secondary processing. Stir to mix;
[0045]S4: Transport the waste mixture 2 in S3 that has been stirred and mixed for the second time to the wheel mill for rolling and aging after rolling;
[0046] S5: Tr...
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