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Construction process for ceramic sand floor

A kind of construction technology and ceramic sand technology, which is applied in the direction of floors, buildings, building structures, etc., can solve the problems of difficult quality control, complicated construction process, slow construction speed, etc., and achieve good decoration effect, shorten construction period, and ground smooth effect

Active Publication Date: 2019-06-07
HUBEI QILI NEW MATERIAL CO LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, the construction of epoxy resin mortar has higher requirements on the base layer. First, the bottom surface needs to be polished, vacuumed, and then the ground should be repaired and leveled. The preliminary process is cumbersome; and epoxy resin mortar needs to be laid in three times The mortar layer of sand, and then the putty layer of quartz sand is not only slow in construction speed, but also cannot be put into use within seven days after completion, which affects the use. The cost of using epoxy resin mortar as a non-slip floor is generally relatively high, and it is not suitable for outdoor construction. The construction process is complicated and the quality control is difficult. The lack of professional construction personnel will seriously affect the construction period

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0032] Embodiment 1 of the present invention provides a kind of construction technique of pottery sand floor, comprises the following steps:

[0033] (1) Clean and dry the road surface to ensure that the construction environment is not polluted;

[0034] (2) At room temperature, put 30 parts of 425# cement and 5 parts of anhydrous gypsum in a closed mixing tank, stir for 20 minutes, and the rotation speed is 200r / min. After stirring evenly, add 2 parts of 4115N rubber powder, 0.5 parts of polycarboxylate 2651F water reducer, 1 part of P804 defoamer and 0.05 parts of MH300P2 cellulose ether, stirred for 5 minutes at a speed of 200r / min, and finally added 45 parts of 100-120 mesh quartz sand and 15 parts of talc powder In the mixing tank, stir for 20 minutes at a speed of 200r / min to obtain self-leveling cement powder; according to the mass ratio of self-leveling cement powder and water as 4:1, add clear water to the self-leveling cement powder and mix well, Pour the obtained s...

Embodiment 2

[0038] Embodiment 2 of the present invention provides a kind of construction technique of pottery sand floor, comprises the following steps:

[0039] (1) Clean and dry the road surface to ensure that the construction environment is not polluted;

[0040] (2) At room temperature, put 15 parts of 525# cement and 1 part of anhydrous gypsum in a closed mixing tank, stir for 15 minutes at a speed of 200r / min, after stirring evenly, add 0.5 parts of 5010N rubber powder, 0.1 part of polycarboxylate 1641F water reducer, 0.2 part of P881 defoamer and 0.01 part of H300P2 cellulose ether, stir for 8 minutes at a speed of 220r / min, and finally add 25 parts of 40-80 mesh quartz sand and 5 parts of kaolin to stir In the tank, stir for 18 minutes at a speed of 220r / min to obtain self-leveling cement powder; according to the mass ratio of self-leveling cement powder and water to 4.5:1, add clear water to the self-leveling cement powder and stir to mix evenly. The obtained self-leveling cemen...

Embodiment 3

[0044] Embodiment 3 of the present invention provides a kind of construction technique of pottery sand floor, comprises the following steps:

[0045] (1) Clean and dry the road surface to ensure that the construction environment is not polluted;

[0046] (2) At room temperature, mix 45 parts of sulphoaluminate cement and 10 parts of hemihydrate gypsum in a closed mixing tank for 25 minutes at a speed of 180 r / min. After stirring evenly, add 4 parts of 4115N glue to the mixing tank in turn. Powder, 1 part of polycarboxylate-based 6681F water reducer, 2 parts of P803 defoamer and 0.1 part of MT400PFV cellulose ether, stirred for 3 minutes at a speed of 240r / min, and finally 60 parts of 70-120 mesh quartz sand and 25 parts of silicon Add ash powder into the mixing tank, stir for 22 minutes, and the speed is 180r / min to obtain self-leveling cement powder; according to the mass ratio of self-leveling cement powder and water is 5:1, add clear water to the self-leveling cement powder a...

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Abstract

The invention discloses a construction process for a ceramic sand floor. The construction process includes the following steps: (1) a road surface is cleaned and dried; (2) after clear water is addedto a self-leveling cement powder body for stirring and uniformly mixing, obtained self-leveling cement mortar is poured on the road surface; and (3) after the self-leveling cement mortar is levelled and before its surface is dried and cured, ceramic sand particles are uniformly sprayed on the surface of the self-leveling cement mortar as a surface layer, and the dosage ratio of the ceramic sand particles to the self-leveling cement mortar is 1.5-2 .5:1. The construction process for the ceramic sand floor provided by the invention enables ceramic sand to be sprayed on the surface of the self-leveling cement mortar according to a certain filling ratio, the obtained floor is good in skid resistance and wear resistance performance; and a whole construction process has only two steps, the self-leveling cement mortar does not need to be completely dried, the second step can be carried out, an operation method is simple, a construction period can be obviously shortened, and the construction efficiency is improved.

Description

technical field [0001] The invention relates to the technical field of building materials, in particular to a construction technique for a ceramic sand floor. Background technique [0002] The floor refers to the use of specific materials and techniques to carry out construction treatment on the original ground and present a certain decorative and functional ground. The floor is used in many places in life. For different places, the requirements for the floor are also different. For example, the floors of hospitals, food factory workshops, laboratory buildings, and computer rooms have higher requirements for hygienic conditions; and in order to improve safety, some parking lots, toilets The surface of steps and ramps is equipped with non-slip floors to increase the friction between the soles or tires and the ground to prevent pedestrians from slipping or vehicles from slipping. [0003] Due to the excellent performance of epoxy resin mortar floor with high strength, wear re...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): E04F15/12
Inventor 鲁小龙蒋永学李政平胡翔宇徐刚
Owner HUBEI QILI NEW MATERIAL CO LTD
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