Light-weight and energy-saving plastering mortar and construction method thereof

A plastering mortar, lightweight technology, applied in sustainable waste treatment, solid waste management, climate sustainability, etc., can solve the problem of strong technical dependence of construction personnel, heavy vertical transportation burden, pump blockage of mortar machine, blockage of pipes , blocking guns and other problems, to achieve the effect of facilitating mechanized construction, good particle grading effect, and reducing thermal bridge effect

Active Publication Date: 2010-11-24
SHENZHEN GRANDLAND DECORATION GROUP
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

During the drying process, care must be taken not to introduce harmful substances, so you have to choose to use clean fuel for drying, and the treatment cost is relatively high
On the other hand, artificial crushing of sand needs to consume energy, and will produce a large number of by-products, polluting the environment
[0004] In the process of mechanized construction, due to the large proportion of existing ordinary plastering mortar, many consumables, heavy vertical transportation burden, and no energy saving, it is easy to cause the mortar machine to block the pump, pipe, and gun, which hinders the smooth progress of mechanized construction. Low construction efficiency
It often requires a large amount of base surface watering and interface treatment, and is highly dependent on the construction personnel's technology. Due to the weight and insufficient bonding strength, it will cause falling deformation. It needs to be constructed in multiple layers, and the construction efficiency is low.

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0041] According to the weight shown in Example 1 in Table 1, each component is taken, and the production method is as follows: ordinary Portland cement, slaked lime, light aggregate, heavy aggregate (wind-blown sand) and C-type composite additive are mixed, and mechanically Stir evenly to obtain the lightweight energy-saving plastering mortar of Example 1, which can be packed in paper bags or packed in bulk.

[0042] Construction method: Take 100 kg of the light energy-saving plastering mortar obtained above in Example 1, add 30 kg of water to dilute, stir mechanically or manually until the mixture is uniform, and reach a viscosity suitable for mechanical spraying or manual construction. Mechanized spraying or manual Operation.

[0043] Perform performance testing according to national standards or industry standards, and the results are shown in the corresponding data of Example 1 in Table 2. Among them, the detection basis of dry surface density, thermal conductivity and c...

Embodiment 2

[0045] Obtain the lightweight energy-saving plastering mortar of embodiment 2 with the weight of each component of embodiment 2 specified in table 1, repeat the production process described in embodiment 1 (only the weight of each component changes); repeat the construction in embodiment 1 The method is to take 100 kg of mortar and add 35 kg of water to dilute it, stir it mechanically or manually until it is evenly mixed, and then carry out mechanized spraying or manual operation. Perform performance testing with each standard described in Example 1, and the results are as shown in the corresponding data of Example 2 in Table 2.

Embodiment 3

[0047] With each component weight of embodiment 3 specified in table 1, repeat the production technology described in embodiment 1 (only each component weight changes) obtain the light weight energy-saving plastering mortar of embodiment 3; Repeat the construction in embodiment 1 The method is to take 100 kg of mortar and add 40 kg of water to dilute it, stir it mechanically or manually until it is evenly mixed, and then carry out mechanized spraying or manual operation. Perform performance testing with each standard described in Example 1, and the results are as shown in the corresponding data of Example 3 in Table 2.

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PUM

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Abstract

The invention relates to light-weight and energy-saving plastering mortar, which is prepared by mixing the following components in part by weight: 30 to 40 parts of ordinary Portland cement, 2 to 4 parts of hydrated lime, 10 to 20 parts of light aggregate, 40 to 50 parts of heavy aggregate and 1.0 part of compound aid, wherein the light aggregate is an inorganic vitrified hollow microporous material of which the fineness is below 100 meshes; and the heavy aggregate is aeolian sand. During construction, the light-weight and energy-saving plastering mortar is diluted by water added in an amountwhich is 30 to 50 percent based on the weight of the light-weight and energy-saving plastering mortar, and is stirred and mixed mechanically or manually and uniformly until the plastering mortar has the suitable viscosity, and then mechanical spraying or manual construction Is performed. According to the concept of light weight and eco-environmental protection, the light-weight and energy-saving plastering mortar is made light by adopting the inorganic vitrified hollow microporous material, and is matched with the primary elastic modulus of a light-weight wall body to reduce coefficients of heat conductivity and reduce the thermal bridge effect, so the light-weight and energy-saving plastering mortar prevents hollowing, cracking and shedding, insulates heat and reduces noise, and is favorable for mechanized construction. The aeolian sand is used as aggregates, so the plastering mortar has excellent grading distribution and has the prominent three-dimensional texture; and the special compound aid is adopted to improve the peaceability of the mortar to achieve the excellent construction effect.

Description

technical field [0001] The invention relates to a construction mortar, in particular to a formula of a lightweight energy-saving plastering mortar and a construction method thereof. Background technique [0002] In current construction projects, lightweight walls such as aerated concrete blocks are often used, and the specific gravity of aerated concrete blocks is about 600-800Kg / m 3 , the thermal conductivity is 0.14-0.20W / (m K 25°C); the existing common plastering mortar is still used, and the composition and weight ratio of this common plastering mortar are generally: Ordinary Portland cement 20- 30, slaked lime 0-5, limestone sand 60-75, the specific gravity of this mortar is 1700-1800Kg / m 3 , is not lightweight mortar, and does not match with lightweight walls; and the elastic modulus of this ordinary plastering mortar is significantly greater than that of aerated concrete blocks, and the elastic modulus does not match, resulting in large deformation stress at the plas...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C04B28/04E04F21/06
CPCC04B2111/00508C04B2111/00017C04B2111/40C04B28/04Y02W30/91C04B14/06C04B20/0036C04B22/064C04B24/383C04B2103/0051C04B2103/0057C04B2103/304C04B14/068C04B18/24C04B20/004C04B20/0076C04B24/26C04B2103/46
Inventor 李少强张绮珊郭晓燕
Owner SHENZHEN GRANDLAND DECORATION GROUP
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