CN102173116B - With the production method of the calcium silicate board of groove and the composite plate of cement plate - Google Patents
With the production method of the calcium silicate board of groove and the composite plate of cement plate Download PDFInfo
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- CN102173116B CN102173116B CN201110030589.6A CN201110030589A CN102173116B CN 102173116 B CN102173116 B CN 102173116B CN 201110030589 A CN201110030589 A CN 201110030589A CN 102173116 B CN102173116 B CN 102173116B
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- calcium silicate
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- silicate board
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Abstract
The invention provides a kind of production method with the calcium silicate board of groove and the composite plate of cement plate, comprise: step 101, in the one side of calcium silicate board 1 or cement plate 2, or simultaneously in the one side of described calcium silicate board 1 and described cement plate 2, output the crisscross latticed groove 3 paralleled with the plate face of described calcium silicate board 1, cement plate 2; Step 102, is combined with each other described calcium silicate board 1 and described cement plate 2 by adhesive, makes the described calcium silicate board of band groove and the composite plate of cement plate.According to the composite plate that method provided by the invention manufactures, anchoring piece directly can be fixed in the described groove of this composite plate, composite plate be installed firmly, eliminates potential safety hazard; Again because groove forms mutually through aeration structure in composite plate, the steam in composite plate, moisture etc. are discharged in time, effectively prevent condensation or Frozen-thawed cycled to the destruction of composite plate, improve the endurance quality of composite plate.
Description
Technical field
The present invention relates to a kind of production method of composite plate, more specifically, relate to a kind of production method with the calcium silicate board of groove and the composite plate of cement plate.
Background technology
Along with needs that are energy-saving and cost-reducing and environmental protection, present building generally has insulation construction, existing the most frequently used insulation construction is exactly install warming plate on the top layer of building, simultaneously in order to attractive in appearance and needs that are intensity, existing warming plate is substantially all the composite plate of panel and warming plate etc., can carry out decorating and reach requirement attractive in appearance by counter plate like this, and in order to fire protection requirement, panel all adopts inorganic board again.But current this heat-insulating decorative composite board cannot be fixed its panel in an installation, cause run into fire or the special circumstances such as binding agent is entirely ineffective time, often cause coming off of inorganic panel, there is serious potential safety hazard, especially skyscraper, endanger larger.In addition, conventional heat-insulating decorative composite board is in the process contacted with body of wall, the impact of body of wall can be subject to, make to there is moisture and moisture in the panel of heat-insulating decorative composite board, along with the change of temperature, panel also can be condensed or the destruction of Frozen-thawed cycled, affects the surface smoothness of heat-insulating decorative composite board system, thus affects attractive in appearance, reduction of service life.
Therefore need to produce a kind of panel of the insulation dress composite plate that can be secured directly on body of wall, realize attractive in appearance while, solve safety problem.
Summary of the invention
In order to the panel solving heat-insulating decorative composite board in above-mentioned prior art can not directly be fixed, ventilation, water vapor discharging poor performance, the susceptible problem of flatness or one of at least, the invention provides a kind of production method with the calcium silicate board of groove and the composite plate of cement plate, produce a kind of composite plate that effectively can solve the band groove of above-mentioned prior art problem.
The production method of the calcium silicate board of band groove provided by the invention and the composite plate of cement plate, comprising:
Step 101, in the one side of calcium silicate board 1 or cement plate 2, or simultaneously in the one side of described calcium silicate board 1 and described cement plate 2, output the crisscross latticed groove paralleled with the plate face of described calcium silicate board 1, cement plate 2 or the groove 3 paralleled;
Step 102, the described cement plate 2 of one side and unslotted that described calcium silicate board 1 is had described groove 3 is combined with each other by adhesive; Or the described calcium silicate board 1 of one side and unslotted that described cement plate 2 is had described groove 3 is combined with each other by adhesive; Or described calcium silicate board 1 is had the one side that the one side of described groove 3 and described cement plate 2 have a described groove 3 to be combined with each other by adhesive, and make the described groove 3 on described calcium silicate board 1 and the described groove 3 on described cement plate 2 corresponding; Make the described calcium silicate board of band groove and the composite plate of cement plate.
By the production method of the calcium silicate board of band groove provided by the invention and the composite plate of cement plate, the panel that can solve heat-insulating decorative composite board can not directly be fixed, ventilation, water vapor discharging poor performance, the susceptible problem of flatness.
In technique scheme, also comprise: step 103: between the described calcium silicate board 1 be combined with each other and described cement plate 2, be provided with back of the body bolt nut 4.Like this, when bolt being screwed into back of the body bolt nut, back of the body bolt nut is softened, tightly blocks calcium silicate board 1 and cement plate 2, makes their compact siro spinning technology, prevent composite plate from coming off in extreme circumstances, be separated.
Preferably, longitudinal groove of described crisscross latticed groove 3 is mutually vertical with horizontal groove.
Further, the groove depth of described latticed groove 3 is no more than 1/2nd of described composite plate gross thickness.
Further, the fluting gross area of described groove 3 is no more than 50% of the described composite plate gross area.
Preferably, the width of described groove 3 is 10mm ~ 100mm, and inter-alveolar distance is not less than the groove width of described groove 3.
Further, the cross sectional shape of described groove 3 is square, rectangle or trapezoidal.
Further, in described groove 3, waterproofing agent is scribbled.
The calcium silicate board of band groove produced according to production method provided by the invention and the composite plate of cement plate, when being used as the panel of heat-insulating decorative composite board, on the one hand, can installation anchoring piece be directly fixed in described groove, the object that the panel that both can realize heat-insulating decorative composite board is fixed, eliminate safe hidden trouble, does not affect the appearance yet; On the other hand, can make to form aeration structure in the middle of panel, the steam in panel, moisture be discharged in time, effectively prevents the destruction of condensation or Frozen-thawed cycled counter plate, improve endurance quality and the service life of panel; In addition, composite plate of the present utility model, because being double-decker, thickeies than the panel layer of prior art, and the anchoring that improve anchoring piece counter plate is powerful, fixing more firm.
Accompanying drawing explanation
Fig. 1 is the flow chart of the production method embodiment according to the calcium silicate board of band groove of the present invention and the composite plate of cement plate;
Fig. 2 is a kind of schematic front view with the calcium silicate board of groove and the composite plate of cement plate produced in accordance with the present production process;
Fig. 3 is the A-A sectional view of structure shown in Fig. 2;
Fig. 4 is the schematic front view of a kind of described calcium silicate board 1 with the calcium silicate board of groove and the composite plate of cement plate shown in Fig. 2;
Fig. 5 is that schematic diagram is looked on a left side for calcium silicate board 1 shown in Fig. 4;
Fig. 6 is the schematic diagram of the described latticed groove 3 on calcium silicate board 1 shown in Fig. 4;
The schematic diagram of the groove 3 paralleled described in calcium silicate board 1 shown in Fig. 7 Fig. 4;
Fig. 8 is the schematic diagram arranged after the 90-degree rotation of groove shown in Fig. 7;
Fig. 9 is the schematic front view of the calcium silicate board of another kind band groove and the composite plate of cement plate produced in accordance with the present production process;
Figure 10 is the schematic front view of another band calcium silicate board of groove and the composite plate of cement plate produced in accordance with the present production process.
Detailed description of the invention
Illustrate according to detailed description of the invention of the present invention below in conjunction with accompanying drawing.
Fig. 1 is the flow chart of production method one embodiment according to the calcium silicate board of band groove provided by the invention and the composite plate of metallic plate.
As shown in Figure 1, the method for producing the band calcium silicate board of groove and the composite plate of metallic plate comprises:
Step 101, in the one side of calcium silicate board 1 or cement plate 2, or simultaneously in the one side of described calcium silicate board 1 and described cement plate 2, output the crisscross latticed groove paralleled with the plate face of described calcium silicate board 1, cement plate 2 or the groove 3 paralleled;
Step 102, the described cement plate 2 of one side and unslotted that described calcium silicate board 1 is had described groove 3 is combined with each other by adhesive; Or the described calcium silicate board 1 of one side and unslotted that described cement plate 2 is had described groove 3 is combined with each other by adhesive; Or described calcium silicate board 1 is had the one side that the one side of described groove 3 and described cement plate 2 have a described groove 3 to be combined with each other by adhesive, and make the described groove 3 on described calcium silicate board 1 and the described groove 3 on described cement plate 2 corresponding; Make the described calcium silicate board of band groove and the composite plate of cement plate.
By the production method of the calcium silicate board of band groove provided by the invention and the composite plate of cement plate, the panel that can solve heat-insulating decorative composite board can not directly be fixed, ventilation, water vapor discharging poor performance, the susceptible problem of flatness.
In technique scheme, also comprise: step 103: between the described calcium silicate board 1 be combined with each other and described cement plate 2, be provided with back of the body bolt nut 4.Like this, when bolt being screwed into back of the body bolt nut, back of the body bolt nut is softened, tightly blocks calcium silicate board 1 and cement plate 2, makes their compact siro spinning technology, prevent composite plate from coming off in extreme circumstances, be separated.
Preferably, longitudinal groove of described crisscross latticed groove 3 is mutually vertical with horizontal groove.
Further, the groove depth of described latticed groove 3 is no more than 1/2nd of described composite plate gross thickness.
Further, the fluting gross area of described groove 3 is no more than 50% of the described composite plate gross area.
Preferably, the width of described groove 3 is 10mm ~ 100mm, and inter-alveolar distance is not less than the groove width of described groove 3.
Further, the cross sectional shape of described groove 3 is square, rectangle or trapezoidal.
Further, in described groove 3, waterproofing agent is scribbled.
Fig. 2 is a kind of schematic front view with the calcium silicate board of groove and the composite plate of cement plate produced in accordance with the present production process.
As shown in Figure 2, calcium silicate board 1 is outputed latticed groove 3, then the one side adhesive of the one side with cement plate 2 unslotted of calcium silicate board 1 being opened groove 3 is carried out composite joint or/and carry on the back bolt nut, make the band calcium silicate board of groove and the composite plate of cement plate.
Fig. 3 is the A-A direction view of structure shown in Fig. 2.
As shown in Figure 3, calcium silicate board 1 and cement plate 2 compound make the composite plate of band groove 3, and wherein, calcium silicate board 1 and cement plate 2 are fastenedly connected by back of the body bolt nut 4, prevent composite plate from coming off in particular circumstances, be separated.
Fig. 4, Fig. 5, Fig. 6 are in the utility model above-described embodiment, the structural representation of described calcium silicate board 1.Wherein, Fig. 4 is the schematic front view of the calcium silicate board 1 of a kind of described fluting with the calcium silicate board of groove and the composite plate of cement plate shown in Fig. 2, Fig. 5 is that schematic diagram is looked on a left side for calcium silicate board 1 shown in Fig. 4, and Fig. 6 is the schematic diagram of the described latticed groove 3 on calcium silicate board 1 shown in Fig. 4.
As shown in Figure 4, Figure 5 and Figure 6, fluting apparatus is adopted to output crisscross latticed groove 3 on a face of calcium silicate board 1, the thickness of calcium silicate board 1 is 4mm ~ 10mm, the thickness of cement plate 2 is 4mm ~ 10mm, size is identical with calcium silicate board 1, the degree of depth of fluting is 4mm ~ 6mm, and the degree of depth meeting groove 3 is no more than 1/2 of described composite plate gross thickness; Groove width is 10mm ~ 50mm, and the distance between groove and groove is 100mm ~ 600mm, and the gross area meeting the groove 3 in described calcium silicate board 1 one side is no more than 50% of the described composite plate gross area; The cross sectional shape of described groove 3 is rectangle.One side calcium silicate board 1 being opened groove 3 carries out compound with cement plate 2, namely after the one side of cement plate 2 adopts mechanical or manual method to coat adhesive with calcium silicate board 1 on have a described groove 3 one side carry out compound, compound can adopt cold press to carry out, obtain the calcium silicate board of band groove described in the utility model and the composite plate of cement plate, and then carry out application on the surface of described composite plate, namely can be used for the panel of heat-insulating decorative composite board.
Fig. 7, Fig. 8 are in the utility model above-described embodiment, another structural representation of described calcium silicate board 1.Wherein, Fig. 7 is the structural representation of parallel longitudinal groove, and Fig. 7 is the structural representation of horizontal parallel slot, and namely shown in the direction of groove 3 shown in Fig. 7 and Fig. 8, the direction of groove 3 is perpendicular, and this can select according to the installation direction of heat-insulating decorative composite board.
Fig. 9 is the schematic front view of the calcium silicate board of another kind band groove and the composite plate of cement plate produced in accordance with the present production process.
As shown in Figure 9, described cement plate 2 outputs groove 3, then by adhesive and back of the body bolt nut 4, cement plate 2 and calcium silicate board 1 are combined with each other, make it firmly connect, be different from and above-mentionedly on calcium silicate board 1, output groove 3.
Figure 10 is the schematic front view of another band calcium silicate board of groove and the composite plate of cement plate produced in accordance with the present production process.
As shown in Figure 10, described cement plate 2 and calcium silicate board 1 all output groove, the face that calcium silicate board 1 and cement plate 2 open groove is combined with each other, the described groove 3 of common composition, the degree of depth of slotting so on each plate just can reduce, and enhances the intensity of heat-insulating decorative composite board.
The calcium silicate board of band groove produced by the above embodiment of the present invention and the composite plate of cement plate, because of the groove having latticed groove or parallel in composite plate, thus an aeration structure can be formed, steam in the middle of panel, moisture etc. are discharged in time, effectively prevent the destruction of condensation or Frozen-thawed cycled counter plate, improve endurance quality and the service life of composite plate; When panel of the present utility model is used as the panel of heat-insulating decorative composite board, the fastener of anchoring piece directly can be fixed in the groove of composite plate described in the utility model, realizes fixing the panel of heat-insulating decorative composite board, eliminate safe hidden trouble.
The foregoing is only the preferred embodiments of the present invention, be not limited to the present invention, for a person skilled in the art, the present invention can have various modifications and variations.Within the spirit and principles in the present invention all, any amendment done, equivalent replacement, improvement etc., all should be included within protection scope of the present invention.
Claims (7)
1. the production method with the calcium silicate board of groove and the composite plate of cement plate, is characterized in that, comprising:
Step 101, in the one side of calcium silicate board (1) or cement plate (2), or simultaneously in the one side of described calcium silicate board (1) and described cement plate (2), output the crisscross latticed groove paralleled with the plate face of described calcium silicate board (1), cement plate (2) or the groove (3) paralleled;
Step 102, the described cement plate (2) of the one side and unslotted that described calcium silicate board (1) are had described groove (3) is combined with each other by adhesive; Or the described calcium silicate board (1) of the one side and unslotted that described cement plate (2) are had described groove (3) is combined with each other by adhesive; Or described calcium silicate board (1) is had the one side that the one side of described groove (3) and described cement plate (2) have a described groove (3) to be combined with each other by adhesive, and make the described groove (3) on described calcium silicate board (1) and the described groove (3) on described cement plate (2) corresponding; Make the described calcium silicate board of band groove and the composite plate of cement plate;
Step 103, is provided with back of the body bolt nut (4) between the described calcium silicate board (1) be combined with each other and described cement plate (2).
2. the production method according to claim 1 with the calcium silicate board of groove and the composite plate of cement plate, it is characterized in that, longitudinal groove of described crisscross latticed groove (3) is mutually vertical with horizontal groove.
3. the production method with the calcium silicate board of groove and the composite plate of cement plate according to claim 1 or 2, it is characterized in that, the groove depth of described latticed groove (3) is no more than 1/2nd of described composite plate gross thickness.
4. the production method according to claim 3 with the calcium silicate board of groove and the composite plate of cement plate, it is characterized in that, the fluting gross area of described groove (3) is no more than 50% of the described composite plate gross area.
5. the production method according to claim 4 with the calcium silicate board of groove and the composite plate of cement plate, it is characterized in that, the width of described groove (3) is 10mm ~ 100mm, and inter-alveolar distance is not less than the groove width of described groove (3).
6. the production method according to claim 5 with the calcium silicate board of groove and the composite plate of cement plate, is characterized in that, the cross sectional shape of described groove (3) is square, rectangle or trapezoidal.
7. the production method according to claim 6 with the calcium silicate board of groove and the composite plate of cement plate, is characterized in that, in described groove (3), scribble waterproofing agent.
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CN201110030589.6A CN102173116B (en) | 2011-01-28 | 2011-01-28 | With the production method of the calcium silicate board of groove and the composite plate of cement plate |
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CN201110030589.6A CN102173116B (en) | 2011-01-28 | 2011-01-28 | With the production method of the calcium silicate board of groove and the composite plate of cement plate |
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CN102173116A CN102173116A (en) | 2011-09-07 |
CN102173116B true CN102173116B (en) | 2016-04-27 |
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Families Citing this family (2)
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CN201943299U (en) * | 2011-01-28 | 2011-08-24 | 上海亚士创能投资有限公司 | Heat insulation decoration composite plate with through groove on panel |
CN112455057A (en) * | 2020-11-17 | 2021-03-09 | 罗仲齐 | Composite board production device with two boards slotted simultaneously |
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CN1253206A (en) * | 1998-11-05 | 2000-05-17 | 许镇辉 | Secondary enclosing structure for light wall slab able to lay pipeline in it |
CN2437782Y (en) * | 2000-06-20 | 2001-07-04 | 吴元新 | Combined wood floor |
CN2563232Y (en) * | 2002-06-27 | 2003-07-30 | 张杰强 | Water-proof fire-proof high density reinforced substrate composite layered floor |
CN2889714Y (en) * | 2005-12-27 | 2007-04-18 | 林清田 | Calcium silicate board stone material structure improvement |
CN200989048Y (en) * | 2006-12-27 | 2007-12-12 | 李忠林 | A heat insulation curtain wall board structure |
Family Cites Families (2)
Publication number | Priority date | Publication date | Assignee | Title |
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JP2000034809A (en) * | 1998-07-17 | 2000-02-02 | Shinsei Shoji Kk | Fire resistant roof substrate material |
JP2008069574A (en) * | 2006-09-14 | 2008-03-27 | Tesuku:Kk | Ventilating heat insulation composite panel for covering outer wall of building |
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- 2011-01-28 CN CN201110030589.6A patent/CN102173116B/en active Active
Patent Citations (5)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN1253206A (en) * | 1998-11-05 | 2000-05-17 | 许镇辉 | Secondary enclosing structure for light wall slab able to lay pipeline in it |
CN2437782Y (en) * | 2000-06-20 | 2001-07-04 | 吴元新 | Combined wood floor |
CN2563232Y (en) * | 2002-06-27 | 2003-07-30 | 张杰强 | Water-proof fire-proof high density reinforced substrate composite layered floor |
CN2889714Y (en) * | 2005-12-27 | 2007-04-18 | 林清田 | Calcium silicate board stone material structure improvement |
CN200989048Y (en) * | 2006-12-27 | 2007-12-12 | 李忠林 | A heat insulation curtain wall board structure |
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Address after: 201707. 3,4,7 building, No. 5098, Pine Road, Qingpu District, Shanghai Applicant after: Cuanon Technology (Shanghai) Co., Ltd. Address before: 201707. 3,4,7 building, No. 5098, Pine Road, Qingpu District, Shanghai Applicant before: Shanghai Yashi Chuangneng Investment Co., Ltd. |
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Free format text: CORRECT: APPLICANT; FROM: SHANGHAI YASHI CUANON INVESTMENT CO., LTD. TO: SHANGHAI CUANON TECHNOLOGYCO., LTD. |
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