CN108558305A - The inorganic tile gap filler and preparation method thereof of squeezing and coating construction - Google Patents

The inorganic tile gap filler and preparation method thereof of squeezing and coating construction Download PDF

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Publication number
CN108558305A
CN108558305A CN201810091443.4A CN201810091443A CN108558305A CN 108558305 A CN108558305 A CN 108558305A CN 201810091443 A CN201810091443 A CN 201810091443A CN 108558305 A CN108558305 A CN 108558305A
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China
Prior art keywords
agent
gap filler
inorganic
aggregate
water
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Inventor
刘淑静
谢永超
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First New Material Science & Technology Development Co Ltd
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First New Material Science & Technology Development Co Ltd
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Priority to CN201810091443.4A priority Critical patent/CN108558305A/en
Publication of CN108558305A publication Critical patent/CN108558305A/en
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    • CCHEMISTRY; METALLURGY
    • C04CEMENTS; CONCRETE; ARTIFICIAL STONE; CERAMICS; REFRACTORIES
    • C04BLIME, MAGNESIA; SLAG; CEMENTS; COMPOSITIONS THEREOF, e.g. MORTARS, CONCRETE OR LIKE BUILDING MATERIALS; ARTIFICIAL STONE; CERAMICS; REFRACTORIES; TREATMENT OF NATURAL STONE
    • C04B28/00Compositions of mortars, concrete or artificial stone, containing inorganic binders or the reaction product of an inorganic and an organic binder, e.g. polycarboxylate cements
    • C04B28/02Compositions of mortars, concrete or artificial stone, containing inorganic binders or the reaction product of an inorganic and an organic binder, e.g. polycarboxylate cements containing hydraulic cements other than calcium sulfates
    • C04B28/04Portland cements
    • CCHEMISTRY; METALLURGY
    • C04CEMENTS; CONCRETE; ARTIFICIAL STONE; CERAMICS; REFRACTORIES
    • C04BLIME, MAGNESIA; SLAG; CEMENTS; COMPOSITIONS THEREOF, e.g. MORTARS, CONCRETE OR LIKE BUILDING MATERIALS; ARTIFICIAL STONE; CERAMICS; REFRACTORIES; TREATMENT OF NATURAL STONE
    • C04B2111/00Mortars, concrete or artificial stone or mixtures to prepare them, characterised by specific function, property or use
    • C04B2111/00474Uses not provided for elsewhere in C04B2111/00
    • C04B2111/00663Uses not provided for elsewhere in C04B2111/00 as filling material for cavities or the like
    • C04B2111/00672Pointing or jointing materials

Abstract

The invention discloses a kind of inorganic tile gap fillers and preparation method thereof of squeezing and coating construction, are one pack system gap filler or bi-component gap filler, and one pack system gap filler includes:Inorganic particle cementitious material, aggregate, redispersable latex powder, thickener, water-retaining agent, antimitotic agent and hydrophober;Bi-component gap filler is made of powder body material and glue material, wherein the powder body material includes:Inorganic particle cementitious material, aggregate, thickener, water-retaining agent, antimitotic agent and hydrophober;Glue material includes:Water, polymer emulsion, preservative, antifoaming agent, wetting agent and thixotropic agent.The gap filler is coordinated from other materials, it can be achieved that different setting times, excellent to the decoration and protective value of ceramic tile by the way that inorganic particle cementitious material is added; it is convenient to clean; price maintains an equal level with color dinging agent, but is easy for constructing, and the gap filler is cost-effective, extensive market, is convenient for construction and cleaning.

Description

The inorganic tile gap filler and preparation method thereof of squeezing and coating construction
Technical field
The inorganic tile gap filler and its system constructed the present invention relates to the gap filler field of building materials more particularly to a kind of squeezing and coating Preparation Method.
Background technology
Due to the characteristic of ceramic tile expanded with heat and contract with cold, ceramic tile dimension and worker construct there are error etc., so in paving There are gaps for the needs of ceramic tile.But the gap between ceramic tile directly affects decorative effect if being not processed, while extraneous Water can enter ceramic tile and ceramic tile layer along ceramic tile gap and cause porcelain with inner (ceramic tile bond, thermal-insulating and anti-cracking layer or base course wall etc.) The service life that is mouldy and influencing building material product of brick itself.So modern finishing has to play decoration by ceramic tile joint filling The effect of effect, protection ceramic tile and its internal material, pointing also just become current metope floor ceramic tile and install naturally Essential part.
Metope pointing currently on the market is mainly following two:(1) one is the ceramic tiles constructed mainly by trowelling Color dinging agent:Inorganic material, mainly trowelling are constructed, and construction technology is more complicated.(2) another kind is the polymerization of squeezing and coating construction Object colour joint trimming agent:It is made of high-tech new polymers and high-grade pigment, construction technology is simple, but expensive, seldom energy It buys.Wherein, the adhesion strength of ceramic tile color dinging agent is high, not easily to fall off, mould proof, color is various, due to being inorganic material structure At so material is cost-effective.Form of construction work is mainly trowelling, is cleaned out the gap filler configured behind ceramic tile gap along porcelain The diagonal of brick is uniformly expressed in reserving gaps, carefully scrapes off extra slurry, is used after slurry primary solidification Jointing agent extra on ceramic tile is further pressed joint filling by micro- wet sponge, so that joint filling is closely knit, surface is smooth.After jointing agent is dry again Thorough cleaning is carried out with micro- wet sponge.It is the adhesion strength higher of polymer colour joint trimming agent, mould proof.Form of construction work is applied for squeezing and coating Work sticks U.S. line paper on the ceramic tile gap both sides of not dirt, and joint trimming agent squeezing and coating behind ceramic tile gap are used scraper plate with glue gun Deng being struck off, U.S. line paper is torn after extra joint trimming agent is cleaned up with sponge, operating process is easy, and material consumption is small.
But above-mentioned ceramic tile color dinging agent trowelling construction needs the bad seam hollow joint of repairing in time and cleaning after the completion of joint filling Remaining gap filler on ceramic tile, technique is relatively complicated and be easy to cause material waste, and operation is slightly improper may shadow Ring joint filling effect;Although polymer colour joint trimming agent construction process is simple, since it is mainly high-tech new polymers It is constituted with high-grade pigment, so material cost is very high and resistance to acid and alkali is relatively poor, fire protecting performance is poor, and when construction is stained with ceramic tile On clear up not in time if perhaps can be permanently adhered on ceramic tile and influence decorative appearance, present occupation rate of market also very little now, The drawbacks of these are all them.
Invention content
Based on the problems of prior art, the object of the present invention is to provide a kind of inorganic tile joint fillings of squeezing and coating construction Agent and preparation method thereof, squeezing and coating formula use, and convenient for construction, and can be protected to ceramic tile.
The purpose of the present invention is what is be achieved through the following technical solutions:
Embodiment of the present invention provides a kind of inorganic tile gap filler of squeezing and coating construction, which is one pack system joint filling Agent, including:Inorganic particle cementitious material, aggregate, redispersable latex powder, thickener, water-retaining agent, antimitotic agent and hydrophober;Its In,
The inorganic particle cementitious material and the total weight of aggregate are 100%, the dosage of the inorganic particle cementitious material For:20%~50%, the aggregate dosage is:50%~80%;
The dosage of other components is calculated as by the total weight percent for accounting for the inorganic particle cementitious material and the aggregate:
Embodiment of the present invention also provides a kind of preparation method of the inorganic tile gap filler of squeezing and coating construction, is used to prepare this The invention one pack system gap filler, includes the following steps:
Each component is taken using the formula of one pack system gap filler of the present invention;
It is firstly added inorganic particle cementitious material in mixing plant, adds redispersable latex powder, thickener, water conservation Agent, antimitotic agent and hydrophober;Be eventually adding aggregate, all raw materials continue to be mixed after adding be made after twenty minutes one pack system without Machine tile grout.
Embodiment of the present invention provides a kind of inorganic tile gap filler of squeezing and coating construction, the gap filler be by powder body material and The bi-component gap filler of glue material composition, wherein the powder body material includes:Inorganic particle cementitious material, aggregate, thickening Agent, water-retaining agent, antimitotic agent and hydrophober;Wherein,
The inorganic particle cementitious material and the total weight of aggregate are 100%, the dosage of the inorganic particle cementitious material For:20%~50%, the aggregate dosage is:50%~80%;
The dosage of other components is calculated as by the total weight percent for accounting for the inorganic particle cementitious material and the aggregate:
The glue material includes:Water, polymer emulsion, preservative, antifoaming agent, wetting agent and thixotropic agent;Wherein, described The total weight of water and polymer emulsion is 100%, and the dosage of the water is:60%~90%, the polymer emulsion dosage is: 10%~40%;
The dosage of other components is calculated as by the total weight percent for accounting for the water and polymer emulsion:
Embodiment of the present invention also provides a kind of preparation method of the inorganic tile gap filler of squeezing and coating construction, is used to prepare this The invention bi-component gap filler, includes the following steps:
Take each component of powder body material and glue material respectively using the formula of bi-component gap filler of the present invention;
Prepare powder body material:
Inorganic particle cementitious material is first added in mixing plant, adds thickener, water-retaining agent, antimitotic agent and hydrophobic Agent is eventually adding aggregate, and all raw materials continue to be mixed after adding obtains powder body material after twenty minutes;
Prepare glue material:
Water is first added in mixing plant, with 500~600 revs/min of moderate-speed mixer, polymer is added under stirring Lotion, antifoaming agent, wetting agent and thixotropic agent, be mixed 15 minutes after add preservative, by rotating speed be transferred to 700~800 turns/ The fast state divided continues stirring and obtains glue material to after being uniformly dispersed in 15 minutes.
As seen from the above technical solution provided by the invention, the inorganic ceramic of squeezing and coating construction provided in an embodiment of the present invention Brick gap filler and preparation method thereof, advantage are:
By the way that the other components cooperation of inorganic particle cementitious material and special ratios is added, it can be achieved that when different condensation Between, user can select the material of different setting times according to speed of application, excellent to the decoration and protective value of ceramic tile, be convenient for Cleaning, price and color dinging agent are in same level, but are easy for constructing, and the desired raw material of gap filler are commonly easy to get, at This is low.The gap filler is cost-effective, extensive market, is convenient for construction and cleaning.
Description of the drawings
In order to illustrate the technical solution of the embodiments of the present invention more clearly, required use in being described below to embodiment Attached drawing be briefly described, it should be apparent that, drawings in the following description are only some embodiments of the invention, for this For the those of ordinary skill in field, without creative efforts, other are can also be obtained according to these attached drawings Attached drawing.
Fig. 1 is the preparation flow figure of one pack system gap filler provided in an embodiment of the present invention;
Fig. 2 is the preparation flow figure of the powder body material of bi-component gap filler provided in an embodiment of the present invention;
Fig. 3 is the preparation flow figure of the glue material of bi-component gap filler provided in an embodiment of the present invention;
Fig. 4 is the construction process figure of gap filler provided in an embodiment of the present invention.
Specific implementation mode
With reference to the particular content of the present invention, technical solution in the embodiment of the present invention is clearly and completely retouched It states, it is clear that described embodiments are only a part of the embodiments of the present invention, instead of all the embodiments.Based on the present invention Embodiment, every other embodiment obtained by those of ordinary skill in the art without making creative efforts, Belong to protection scope of the present invention.The content not being described in detail in the embodiment of the present invention belongs to professional and technical personnel in the field The well known prior art.
The embodiment of the present invention provides a kind of inorganic tile gap filler of squeezing and coating construction, which is one pack system gap filler, Including:Inorganic particle cementitious material, aggregate, redispersable latex powder, thickener, water-retaining agent, antimitotic agent and hydrophober;Wherein,
Inorganic particle cementitious material and the total weight of aggregate are 100%, and the dosage of inorganic particle cementitious material is:20%~ 50%, aggregate dosage is:50%~80%;
The dosage of other components is calculated as by the total weight percent for accounting for inorganic particle cementitious material and aggregate:
Above-mentioned inorganic tile gap filler further includes:
Based on the total weight percent for accounting for inorganic particle cementitious material and aggregate:Inorganic pigment 0.1%~2% and slow setting Agent 0.1%~0.3%.
In above-mentioned one pack system gap filler, inorganic particle cementitious material uses Portland cement;
Aggregate selects washed-out sand;
Water-retaining agent selects cellulose;
Antimitotic agent selects lignin.
As shown in Figure 1, the embodiment of the present invention also provides a kind of preparation method of the inorganic tile gap filler of squeezing and coating construction, use In preparing above-mentioned one pack system gap filler, include the following steps:
Each component is taken using the formula of above-mentioned one pack system gap filler;
It is firstly added inorganic particle cementitious material in mixing plant, adds redispersable latex powder, thickener, water conservation Agent, antimitotic agent and hydrophober;Be eventually adding aggregate, all raw materials continue to be mixed after adding be made after twenty minutes one pack system without Machine tile grout.
The above method the step of adding redispersable latex powder, thickener, water-retaining agent, antimitotic agent and hydrophober in, Further include:
Inorganic pigment and retarder is added simultaneously.
The embodiment of the present invention further provides for a kind of inorganic tile gap filler of squeezing and coating construction, which is by powder material The bi-component gap filler of material and glue material composition, wherein powder body material includes:Inorganic particle cementitious material, aggregate, thickening Agent, water-retaining agent, antimitotic agent and hydrophober;Wherein,
Inorganic particle cementitious material and the total weight of aggregate are 100%, and the dosage of inorganic particle cementitious material is:20%~ 50%, aggregate dosage is:50%~80%;
The dosage of other components is calculated as by the total weight percent for accounting for inorganic particle cementitious material and aggregate:
Glue material includes:Water, polymer emulsion, preservative, antifoaming agent, wetting agent and thixotropic agent;Wherein, water and polymerization The total weight of object lotion is 100%, and the dosage of water is:60%~90%, polymer emulsion dosage is:10%~40%;
The dosage of other components is calculated as by the total weight percent for accounting for water and polymer emulsion:
In above-mentioned bi-component gap filler, powder body material further includes:By the gross weight for accounting for inorganic particle cementitious material and aggregate Measure the retarder 0.1%~0.3% of percentages;
Glue material further includes:By the mill base 0.1%~5% accounted for based on water and polymer emulsion total weight percent.
In above-mentioned powder body material,
Inorganic particle cementitious material uses Portland cement;
Aggregate selects washed-out sand;
Water-retaining agent selects cellulose;
Antimitotic agent selects lignin;
Polymer emulsion in glue material uses:Acrylic emulsion.
The embodiment of the present invention further also provides a kind of preparation method of the inorganic tile gap filler of squeezing and coating construction, for making Standby above-mentioned bi-component gap filler, includes the following steps:
Take each component of powder body material and glue material respectively using the formula of above-mentioned bi-component gap filler;
Prepare powder body material:
Inorganic particle cementitious material is first added in mixing plant, adds thickener, water-retaining agent, antimitotic agent and hydrophobic Agent is eventually adding aggregate, and all raw materials continue to be mixed after adding obtains powder body material after twenty minutes;
Prepare glue material:
Water is first added in mixing plant, with 500~600 revs/min of moderate-speed mixer, polymer is added under stirring Lotion, antifoaming agent, wetting agent and thixotropic agent, be mixed 15 minutes after add preservative, by rotating speed be transferred to 700~800 turns/ The fast state divided continues stirring and obtains glue material to after being uniformly dispersed in 15 minutes.
In above-mentioned preparation method, adding in thickener, water-retaining agent, antimitotic agent and hydrophober for powder body material is prepared, also Including:Retarder is added simultaneously;
Prepare glue material is added under stirring in polymer emulsion, antifoaming agent, wetting agent and thixotropic agent step, Further include:Mill base is added simultaneously.
The embodiment of the present invention is specifically described in further detail below.
Embodiment one
The present embodiment provides a kind of inorganic tile gap filler of squeezing and coating construction, which is one pack system gap filler, including Following components, wherein inorganic particle cementitious material and aggregate are 100% by weight percentage, the use of inorganic particle cementitious material Amount is 70% for the dosage of 30% and aggregate;
The dosage of other components is by the percentages for the total weight for accounting for inorganic particle cementitious material and aggregate:
In said components, inorganic particle cementitious material selects 42.5 cement of normal silicate;
Aggregate selects washed-out sand;
Water-retaining agent selects cellulose;
Antimitotic agent selects lignin.
The preparation method of above-mentioned one pack system gap filler includes:Inorganic particle cementitious material is firstly added in mixing plant, Redispersable latex powder, inorganic pigment, thickener, water-retaining agent, antimitotic agent, hydrophober, retarder etc. are added, bone is eventually adding Material, all raw materials continue to be mixed after adding is made single-component inorganic tile grout after twenty minutes.
Embodiment two
The present embodiment provides a kind of inorganic tile gap filler of squeezing and coating construction, which is by powder body material and glue material Expect the bi-component gap filler of composition, wherein in the powder body material, the total weight of inorganic particle cementitious material and aggregate is 100%, the dosage of inorganic particle cementitious material is:30%, aggregate dosage is:70%;
The dosage of other components is calculated as by the total weight percent for accounting for inorganic particle cementitious material and aggregate:
In above-mentioned powder body material, inorganic particle cementitious material selects 42.5 cement of normal silicate;
Aggregate selects washed-out sand;
Water-retaining agent selects cellulose;
Antimitotic agent selects lignin.
In the glue material, the total weight of water and polymer emulsion is 100%, and the dosage of water is:70%, polymer breast Liquid dosage is:30%;
The dosage of other components is calculated as by the total weight percent for accounting for water and polymer emulsion:
The preparation method of the bi-component gap filler includes:
Prepare powder body material:
Each component is taken by the formula of above-mentioned powder body material, inorganic particle cementitious material is firstly added in mixing plant, then Thickener, water-retaining agent, antimitotic agent, hydrophober and retarder is added, is eventually adding aggregate, all raw materials continue mixing and stir after adding It mixes and powder body material is made after twenty minutes;
Prepare glue material:
Each component is taken by the formula of above-mentioned glue material, is firstly added water in mixing plant, middling speed (500~600 turns/ Point) stirring, mill base, polymer emulsion, antifoaming agent, wetting agent, thixotropic agent etc. are added under stirring, is mixed 15 minutes After add preservative, rotating speed be transferred to high speed (700~800 revs/min) continue stirring and be made to after being uniformly dispersed for 15 minutes Glue material.
Embodiment three
The present embodiment provides a kind of inorganic tile gap filler of squeezing and coating construction, which is one pack system gap filler, including Following components, wherein inorganic particle cementitious material and aggregate are 100% by weight percentage, the use of inorganic particle cementitious material Amount is 60% for the dosage of 40% and aggregate;
The dosage of other components is calculated as by the total weight percent for accounting for inorganic particle cementitious material and aggregate:
It is described in above-mentioned one pack system gap filler
Inorganic particle cementitious material selects 42.5 cement of normal silicate;
Aggregate selects washed-out sand;
Water-retaining agent selects cellulose
Antimitotic agent selects lignin.
The preparation method of above-mentioned one pack system gap filler is:Inorganic particle cementitious material is firstly added in mixing plant, then Redispersable latex powder, inorganic pigment, thickener, water-retaining agent, antimitotic agent, hydrophober and retarder is added, is eventually adding aggregate, All raw materials continue to be mixed after adding is made one pack system gap filler after twenty minutes.
Example IV
The present embodiment provides a kind of inorganic tile gap filler of squeezing and coating construction, which is by powder body material and glue material Expect the bi-component gap filler of composition, wherein in the powder body material, the total weight of inorganic particle cementitious material and aggregate is 100%, the dosage of inorganic particle cementitious material is:40%, aggregate dosage is:60%;
The dosage of other components is calculated as by the total weight percent for accounting for inorganic particle cementitious material and aggregate:
In above-mentioned powder body material, inorganic particle cementitious material selects 42.5 cement of normal silicate;
Aggregate selects washed-out sand;
Water-retaining agent selects cellulose
Antimitotic agent selects lignin.
In the glue material, the total weight of water and polymer emulsion is 100%, and the dosage of water is:65%, polymer breast Liquid dosage is:35%;
The dosage of other components is calculated as by the total weight percent for accounting for water and polymer emulsion:
The preparation method of above-mentioned bi-component gap filler is:
Prepare powder body material:
Each component is taken by powder body material formula, inorganic particle cementitious material is firstly added in mixing plant, adds increasing Thick dose, water-retaining agent, antimitotic agent, hydrophober, retarder etc., be eventually adding aggregate, all raw materials continue mixing 20 after adding Bi-component inorganic tile grout powder body material is made after minute.
Prepare glue material:
Each component is taken by glue material prescription, water is firstly added in mixing plant, middling speed (500~600 revs/min) is stirred It mixes, mill base, polymer emulsion, antifoaming agent, wetting agent, thixotropic agent etc. is added under stirring, after being mixed 15 minutes again Preservative is added, rotating speed is transferred to high speed (700~800 revs/min) continues stirring and to after being uniformly dispersed bi-component is made in 15 minutes Inorganic tile gap filler glue material.
The construction process of gap filler prepared by the various embodiments described above is as shown in figure 4, specific as follows:
The sundries such as dust, the dirt between ceramic tile face layer and gap are removed, then by the inorganic tile gap filler of the present invention With after the water of proper proportion or functional glue can mixing at the paste of squeezing and coating, be encased in squeezing and coating tool and (be adjusted out The size for expecting mouth selects different discharging gates, such as similar piping bag, glue gun tool according to ceramic tile gap width and depth) In, gap filler is squeezed into ceramic tile gap by discharging gate with basal plane in 45 °, is beaten as possible.It is (flush joint, recessed according to different jointing effect Seam, joint etc.) material of different amounts is squeezed into, gap depth is more than 3mm or width is more than the appropriate to the occasion squeezing and coating at twice of 3mm.Finally use Spatula or scraper plate compacting, accomplish that joint filling is closely knit.Primary construction spice amount and area are suitable, avoid causing to waste.Squeezing and coating are completed, After equal gap fillers drying the cleaning of brick face is carried out with micro- wet sponge and scraper.
The foregoing is only a preferred embodiment of the present invention, but scope of protection of the present invention is not limited thereto, Any one skilled in the art is in the technical scope of present disclosure, the change or replacement that can be readily occurred in, It should be covered by the protection scope of the present invention.Therefore, protection scope of the present invention should be with the protection model of claims Subject to enclosing.

Claims (10)

1. a kind of inorganic tile gap filler of squeezing and coating construction, which is characterized in that the gap filler is one pack system gap filler, including:Nothing Machine powder binding material, aggregate, redispersable latex powder, thickener, water-retaining agent, antimitotic agent and hydrophober;Wherein,
The inorganic particle cementitious material and the total weight of aggregate are 100%, and the dosage of the inorganic particle cementitious material is: 20%~50%, the aggregate dosage is:50%~80%;
The dosage of other components is calculated as by the total weight percent for accounting for the inorganic particle cementitious material and the aggregate:
2. the inorganic tile gap filler of squeezing and coating construction according to claim 1, which is characterized in that the one pack system gap filler Further include:
Based on the total weight percent for accounting for the inorganic particle cementitious material and aggregate:Inorganic pigment 0.1%~2% and slow setting Agent 0.1%~0.3%.
3. the inorganic tile gap filler of squeezing and coating construction according to claim 1 or 2, which is characterized in that the one pack system is filled out It stitches in agent, the inorganic particle cementitious material uses Portland cement;
The aggregate selects washed-out sand;
The water-retaining agent selects cellulose;
The antimitotic agent selects lignin.
4. a kind of preparation method of the inorganic tile gap filler of squeezing and coating construction, which is characterized in that be used to prepare claims 1 to 3 Any one of them one pack system gap filler, includes the following steps:
Each component is taken using the formula of any one of claims 1 to 3 one pack system gap filler;
Inorganic particle cementitious material is firstly added in mixing plant, add redispersable latex powder, thickener, water-retaining agent, Antimitotic agent and hydrophober;It is eventually adding aggregate, all raw materials continue to be mixed after adding is made single-component inorganic after twenty minutes Tile grout.
5. the preparation method of the inorganic tile gap filler of squeezing and coating construction according to claim 4, which is characterized in that the side Method the step of adding redispersable latex powder, thickener, water-retaining agent, antimitotic agent and hydrophober in, further include:
Inorganic pigment and retarder is added simultaneously.
6. a kind of inorganic tile gap filler of squeezing and coating construction, which is characterized in that the gap filler is by powder body material and glue material The bi-component gap filler of composition, wherein the powder body material includes:Inorganic particle cementitious material, aggregate, thickener, water-retaining agent, Antimitotic agent and hydrophober;Wherein,
The inorganic particle cementitious material and the total weight of aggregate are 100%, and the dosage of the inorganic particle cementitious material is: 20%~50%, the aggregate dosage is:50%~80%;
The dosage of other components is calculated as by the total weight percent for accounting for the inorganic particle cementitious material and the aggregate:
The glue material includes:Water, polymer emulsion, preservative, antifoaming agent, wetting agent and thixotropic agent;Wherein, the water and The total weight of polymer emulsion is 100%, and the dosage of the water is:60%~90%, the polymer emulsion dosage is:10% ~40%;
The dosage of other components is calculated as by the total weight percent for accounting for the water and polymer emulsion:
7. the inorganic tile gap filler of squeezing and coating construction according to claim 6, which is characterized in that the powder body material also wraps It includes:Retarder 0.1%~0.3% based on the total weight percent for accounting for the inorganic particle cementitious material and the aggregate;
The glue material further includes:By the mill base 0.1%~5% accounted for based on the water and polymer emulsion total weight percent.
8. the inorganic tile gap filler of the squeezing and coating construction described according to claim 6 or 7, which is characterized in that the bi-component is filled out In the powder body material for stitching agent,
The inorganic particle cementitious material uses Portland cement;
The aggregate selects washed-out sand;
The water-retaining agent selects cellulose;
The antimitotic agent selects lignin;
Polymer emulsion in the glue material uses:Acrylic emulsion.
9. a kind of preparation method of the inorganic tile gap filler of squeezing and coating construction, which is characterized in that be used to prepare claim 6 to 8 Any one of them bi-component gap filler, includes the following steps:
The each of powder body material and glue material is taken using the formula of any one of claim 6 to the 8 bi-component gap filler respectively Component;
Prepare powder body material:
Inorganic particle cementitious material is first added in mixing plant, adds thickener, water-retaining agent, antimitotic agent and hydrophober, most After be added aggregate, all raw materials continue to be mixed after adding obtains powder body material after twenty minutes;
Prepare glue material:
Water is first added in mixing plant, with 500~600 revs/min of moderate-speed mixer, polymer breast is added under stirring Liquid, antifoaming agent, wetting agent and thixotropic agent add preservative after being mixed 15 minutes, rotating speed are transferred to 700~800 revs/min Fast state, continue stirring and obtain glue material to after being uniformly dispersed in 15 minutes.
10. the preparation method of the inorganic tile gap filler of squeezing and coating construction according to claim 9, which is characterized in that described Adding in thickener, water-retaining agent, antimitotic agent and hydrophober for powder body material is prepared, further includes:Retarder is added simultaneously;
Being added in polymer emulsion, antifoaming agent, wetting agent and thixotropic agent step under stirring for prepare glue material, is also wrapped It includes:Mill base is added simultaneously.
CN201810091443.4A 2018-01-30 2018-01-30 The inorganic tile gap filler and preparation method thereof of squeezing and coating construction Pending CN108558305A (en)

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110449079A (en) * 2019-08-15 2019-11-15 张源 A kind of gap filler and its preparation facilities and method
CN110698135A (en) * 2019-10-23 2020-01-17 常树高 Formula and construction method of crack sealer for ceramic tiles
CN114873977A (en) * 2022-03-28 2022-08-09 科顺民用建材有限公司 Double-component ceramic tile glue and preparation method thereof

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1757688A (en) * 2005-10-25 2006-04-12 广州秀珀化工有限公司 Inorganic powder texture coating, and its applying method
CN101747689A (en) * 2010-01-08 2010-06-23 东莞市大兴化工有限公司 Iron oxide red aqueous color paste for wood coating and preparation thereof
CN102503301A (en) * 2011-10-27 2012-06-20 北京东方雨虹防水技术股份有限公司 Safe environment-friendly colored anti-efflorescence ceramic tile gap filler
CN105503072A (en) * 2015-12-10 2016-04-20 华砂砂浆有限责任公司 Tile grout composition and preparation method and application thereof
CN106380125A (en) * 2015-07-30 2017-02-08 蒋其同 Two-component ceramic tile adhesive

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1757688A (en) * 2005-10-25 2006-04-12 广州秀珀化工有限公司 Inorganic powder texture coating, and its applying method
CN101747689A (en) * 2010-01-08 2010-06-23 东莞市大兴化工有限公司 Iron oxide red aqueous color paste for wood coating and preparation thereof
CN102503301A (en) * 2011-10-27 2012-06-20 北京东方雨虹防水技术股份有限公司 Safe environment-friendly colored anti-efflorescence ceramic tile gap filler
CN106380125A (en) * 2015-07-30 2017-02-08 蒋其同 Two-component ceramic tile adhesive
CN105503072A (en) * 2015-12-10 2016-04-20 华砂砂浆有限责任公司 Tile grout composition and preparation method and application thereof

Non-Patent Citations (1)

* Cited by examiner, † Cited by third party
Title
张秀芳,赵立群,王甲春编著: "《建筑砂浆技术解读470问》", 31 August 2009, 中国建筑工业出版社 *

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110449079A (en) * 2019-08-15 2019-11-15 张源 A kind of gap filler and its preparation facilities and method
CN110449079B (en) * 2019-08-15 2022-01-18 深圳市南粤建工有限公司 Gap filler and preparation device and method thereof
CN110698135A (en) * 2019-10-23 2020-01-17 常树高 Formula and construction method of crack sealer for ceramic tiles
CN114873977A (en) * 2022-03-28 2022-08-09 科顺民用建材有限公司 Double-component ceramic tile glue and preparation method thereof
CN114873977B (en) * 2022-03-28 2022-10-28 科顺民用建材有限公司 Double-component tile glue and preparation method thereof

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Application publication date: 20180921