CN213509388U - Be applied to archaize building's porous type archaize brick that excels in - Google Patents
Be applied to archaize building's porous type archaize brick that excels in Download PDFInfo
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- CN213509388U CN213509388U CN202021996517.8U CN202021996517U CN213509388U CN 213509388 U CN213509388 U CN 213509388U CN 202021996517 U CN202021996517 U CN 202021996517U CN 213509388 U CN213509388 U CN 213509388U
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Abstract
The utility model discloses a be applied to archaize building's porous type archaize brick that excels in relates to building material technical field. The utility model discloses a brick layer, honeycomb layer and last brick layer down, the upper portion on brick layer is provided with the honeycomb layer down, the upper portion on honeycomb layer is provided with the brick layer, the lower part on brick layer is provided with a plurality of back of the body grooves down, be provided with first long fixture block on the side at brick layer top down, the lower brick layer upper end on the adjacent side of first long fixture block is provided with first short fixture block, be provided with the long fixture block of second on the side of going up brick layer bottom, the last brick layer bottom on the adjacent side of the long fixture block of second is provided with the short fixture block of second. The utility model discloses a setting brick layer and last brick layer down for connect for the lock between the fragment of brick, saving the caulking operation flow, make overall structure firmer, sparingly mend the required cost of fragment of brick, and the honeycomb hole on the honeycomb layer has reduced the raw materials that the production fragment of brick used, the required cost of fragment of brick production that has significantly reduced, the fragment of brick quality is lighter, can firmly paste the wall.
Description
Technical Field
The utility model belongs to the technical field of building material, especially, relate to a be applied to archaize building's porous type archaize brick that excels in.
Background
The archaizing brick is a ceramic product introduced from abroad, the archaizing brick is a glazed ceramic tile, the embryo body is stoneware or stoneware and is mainly used for the wall surface or the ground of an archaizing building, the archaizing brick for the wall surface has more design and color, complete variety and good antifouling performance, but the current archaizing brick still has the following limitations:
1. the existing archaized bricks are solid, so that the overall material consumption of the bricks is more, the overall weight of the bricks is heavier due to more material consumption, the production cost of the bricks is higher, the heavy bricks consume the strength of constructors when being paved, and the paving of the bricks is not firm due to the heavy bricks when being paved;
2. present archaize brick still need carry out the pointing operation when pasting the completion on the wall upper berth, it is full to fill the mortar for the gap between two adjacent fragment of brick, make the connection between the adjacent fragment of brick more firm, make the wall cleaner simultaneously, neat pleasing to the eye, but the pointing operation has increaseed the flow of construction, it is longer to make the construction consuming time, moreover pointing appears the pointing depth very easily and differs, the cross joint overlap joint is uneven, the mortar seriously pollutes the scheduling problem, and the time can lead to the mortar inefficacy for a long time and make the fragment of brick drop.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a be applied to porous type archaize brick that excels in of archaize building, through setting up brick layer down, honeycomb layer and last brick layer, it is solid to have solved current present archaize brick for the cost of fragment of brick production is great, the fragment of brick can lead to the fragment of brick to spread to paste insecurely heavier, and present archaize brick still need carry out the pointing operation when pasting the completion on the wall upper berth, make the construction longer consuming time, the time still can lead to the mortar inefficacy for a long time and make the fragment of brick drop the scheduling problem.
In order to solve the technical problem, the utility model discloses a realize through following technical scheme:
the utility model relates to a porous high-strength archaized brick applied to archaized buildings, which comprises a lower brick layer, a honeycomb layer and an upper brick layer, wherein the upper part of the lower brick layer is provided with the honeycomb layer, the upper part of the honeycomb layer is provided with the upper brick layer, the lower part of the lower brick layer is provided with a plurality of back grooves, one side edge of the top part of the lower brick layer is provided with a first long fixture block, the upper end of the lower brick layer at one side edge adjacent to the first long fixture block is provided with a first short fixture block, one side edge of the bottom part of the upper brick layer is provided with a second long fixture block, the bottom part of the upper brick layer at one side edge adjacent to the second long fixture block is provided with a second short fixture block, the utility model reduces the material consumption by using the honeycomb structure, simultaneously enables the structure to have excellent geometric performance, saves the cost and enables the structure to have high-strength and stability, the fixture blocks and the clamping grooves are buckled when, the bricks are connected with the bricks through buckling, so that the strength of the overall structure of the bricks after paving is finished is enhanced, a pointing construction process is omitted, construction time consumption is reduced, and development cost of developers is saved.
Further, a first long clamping groove is formed between the first long clamping block and the honeycomb layer, the width of the first long clamping groove is the same as that of the second long clamping block, a first water through hole is formed in the first long clamping block, the height of the first long clamping block is the same as that of the honeycomb layer, the first long clamping groove is matched with the width of the second long clamping block to be convenient to lock and connect, a construction flow of pointing is omitted in the lock connection, construction time is saved, the first water through hole enables the hydrophobic holes to be communicated with each other, and rainwater dredging is promoted.
Further, a first short clamping groove is formed between the first short clamping block and the honeycomb layer, the width of the first short clamping groove is the same as that of the second short clamping block, the height of the first short clamping block is the same as that of the honeycomb layer, the width of the first short clamping groove is matched with that of the second short clamping block to facilitate buckling connection, and the buckling connection saves the construction process of jointing and saves the construction time.
Further, run through perpendicularly on the honeycomb layer and seted up a plurality of honeycomb holes, the honeycomb hole is regular hexagonal prism structure, the vertical level in side on honeycomb layer runs through and has seted up hydrophobic pore, and hydrophobic pore is circular, hydrophobic pore runs through the opposite side on honeycomb layer and link up with honeycomb hole from one side on honeycomb layer, and hydrophobic pore communicates with each other with first limbers on the brick layer down, the second limbers on the last brick layer, and the design of honeycomb hole makes the structure more firm when reducing the materials, has practiced thrift the manufacturing cost of fragment of brick, and makes the utility model discloses sturdy and durable.
Further, a second long clamping groove is formed between the second long clamping block and the honeycomb layer, the width of the second long clamping groove is the same as that of the first long clamping block, a second water through hole is formed in the second long clamping block, the second water through hole is circular, the height of the second long clamping block is the same as that of the honeycomb layer, the second long clamping groove is matched with the width of the first long clamping block to facilitate buckling connection, a pointing construction process is omitted in buckling connection, construction time is saved, the second water through hole enables the drainage holes to be communicated with each other, and accordingly dredging of rainwater is promoted.
Further, a second short clamping groove is formed between the second short clamping block and the honeycomb layer, the width of the second short clamping groove is the same as that of the first short clamping block, the height of the second short clamping groove is the same as that of the honeycomb layer, the width of the second short clamping groove is matched with that of the first short clamping block to facilitate buckling connection, and the buckling connection saves the construction process of jointing and saves the construction time.
The utility model discloses following beneficial effect has:
1. the utility model discloses a set up brick layer and last brick layer down, when paving the fragment of brick in the vertical direction, with the long fixture block of second and the long draw-in groove of second of fragment of brick respectively with the first long draw-in groove and the first long fixture block looks lock of previous fragment of brick, when paving the fragment of brick in the horizontal direction, with the short fixture block of second and the short draw-in groove of second of fragment of brick respectively with the first short draw-in groove and the first short clamp block looks lock of previous fragment of brick for be the lock between the fragment of brick and be connected the utility model discloses the operation flow of jointing has been saved when the laying finishes, has prevented the quality problems that the jointing appears, and mutual lock between the fragment of brick, overall structure is more firm, even single fragment of brick is because the time leads to the mortar of laying inefficacy for a long time, the first long fixture block and the first short fixture block of fragment of brick are by adjacent lock and can's dropping, have saved and have repaired.
2. The utility model discloses a set up the honeycomb layer, utilized honeycomb structure's outstanding geometric mechanics performance, set up a plurality of honeycomb holes on the honeycomb layer, the honeycomb hole has reduced the raw materials that the production fragment of brick used, the required cost of fragment of brick production that has significantly reduced to make the honeycomb layer still possess the structural performance of excellence under the condition that reduces the raw materials and use, make the utility model discloses sturdy and durable, the reduction of raw materials use makes the quality of fragment of brick lighter, can firmly paste the wall.
Of course, it is not necessary for any particular product to achieve all of the above-described advantages at the same time.
Drawings
In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings used in the description of the embodiments will be briefly introduced below, and it is obvious that the drawings in the following description are only some embodiments of the present invention, and it is obvious for those skilled in the art that other drawings can be obtained according to these drawings without creative efforts.
FIG. 1 is a schematic sectional view of the present invention;
FIG. 2 is a schematic top view of the present invention;
fig. 3 is a schematic view of the bottom view structure of the present invention;
fig. 4 is a schematic view of the honeycomb layer structure of fig. 1 according to the present invention.
In the drawings, the components represented by the respective reference numerals are listed below:
1. a brick layer is arranged; 11. a first long fixture block; 12. a first water passage hole; 13. a first long card slot; 14. a first short fixture block; 15. a first short card slot; 16. a back groove; 2. a honeycomb layer; 21. honeycomb holes; 22. a hydrophobic pore; 3. putting a brick layer; 31. a second long fixture block; 32. a second water through hole; 33. a second long slot; 34. a second short fixture block; 35. the second short card slot.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by a person of ordinary skill in the art without creative efforts belong to the protection scope of the present invention.
Referring to fig. 1-4, the utility model relates to a porous high-strength archaizing brick for archaizing buildings, which comprises a lower brick layer 1, a honeycomb layer 2 and an upper brick layer 3, wherein the upper part of the lower brick layer 1 is provided with the honeycomb layer 2, the upper part of the honeycomb layer 2 is provided with the upper brick layer 3, the honeycomb layer 2 is vertically provided with a plurality of honeycomb holes 21, the honeycomb holes 21 are regular hexagonal prism structures, the lateral surface of the honeycomb layer 2 is vertically provided with drain holes 22 in a horizontal penetrating manner, the drain holes 22 are circular, the drain holes 22 penetrate from one side of the honeycomb layer 2 to the other side of the honeycomb layer 2 and are communicated with the honeycomb holes 21, the drain holes 22 are communicated with a first water through hole 12 on the lower brick layer 1 and a second water through hole 32 on the upper brick layer 3, the lower part of the lower brick layer 1 is provided with a plurality of back grooves 16, a first long fixture block 11 is arranged on one side of the top of the lower brick layer 1, a first short fixture block 14 is arranged at the upper end of the lower, go up and be provided with the long fixture block 31 of second on the side of brick layer 3 bottom, the 3 bottoms on the last brick layer of the adjacent side of the long fixture block 31 of second are provided with the short fixture block 34 of second, honeycomb layer 2 has utilized honeycomb structure's outstanding geometric mechanics performance, make honeycomb layer 2 possess the structural performance of excellence, honeycomb holes 21 that set up on honeycomb layer 2 make the raw materials for production that use less, the hydrophobic hole 22 that sets up on honeycomb layer 2 makes rainwater can flow down from the inside of fragment of brick, the hydrophobicity of fragment of brick has been strengthened, the effect of back of the body groove 16 is the area of contact that increases fragment of brick and the cement mortar of paining at the fragment of brick back, thereby fastness when increasing fragment of brick shop.
As shown in fig. 2-3, a first long clamping groove 13 is disposed between the first long clamping block 11 and the honeycomb layer 2, the width of the first long clamping groove 13 is the same as the width of the second long clamping block 31, a first water through hole 12 is disposed on the first long clamping block 11, the height of the first long clamping block 11 is the same as the height of the honeycomb layer 2, a first short clamping groove 15 is disposed between the first short clamping block 14 and the honeycomb layer 2, the width of the first short clamping groove 15 is the same as the width of the second short clamping block 34, the height of the first short clamping block 14 is the same as the height of the honeycomb layer 2, a second long clamping groove 33 is disposed between the second long clamping block 31 and the honeycomb layer 2, the width of the second long clamping groove 33 is the same as the width of the first long clamping block 11, a second water through hole 32 is disposed on the second long clamping block 31, the second water through hole 32 is circular, the height of the second long clamping block 31 is the same as the height of the honeycomb layer 2, a second short clamping groove 35 is disposed between the, the width of the second short clamping groove 35 is the same as the width of the first short clamping block 14, the height of the second short clamping groove 35 is the same as the height of the honeycomb layer 2, when paving and pasting the bricks, the second long clamping block 31 of the brick is buckled with the first long clamping groove 13 of the previous brick, at the same time, the first long clamping block 11 of the previous brick is buckled with the second long clamping groove 33 of the next brick, when buckling, the first water through hole 12 of the previous brick is communicated with the second water through hole 32 of the next brick, so that the water drainage hole 22 of the previous brick is communicated with the water drainage hole 22 of the second brick, the steps can be repeatedly operated in the vertical direction, the paving and pasting of the bricks in the vertical direction are finished, when paving and pasting the bricks horizontally, the second short clamping block 34 of the brick is buckled with the first short clamping groove 15 of the previous brick, at the moment, the first short clamping block 14 of the previous brick is buckled with the second short clamping groove 35 of the next brick at the same time, the above operation steps can be repeated in the horizontal direction, so that the bricks are paved in the horizontal direction.
The working principle is as follows: the utility model discloses a honeycomb layer 2 has utilized honeycomb structure's outstanding geometric mechanics performance, has set up a plurality of honeycomb holes 21 on honeycomb layer 2, honeycomb holes 21 have reduced the raw materials that production fragment of brick used, and make honeycomb layer 2 still possess the structural properties of excellence under the condition that reduces raw materials and use, make the utility model discloses sturdy and durable, the circulation of rainwater can be dredged to the hydrophobic hole 22 that sets up on honeycomb layer 2, and all communicate with each other between hydrophobic hole 22 when the fragment of brick is laid and is finished, the emergence of wall body ponding condition has been prevented, when laying the tiling piece on the vertical direction, with the long fixture block of second 31 of fragment of brick and the long draw-in groove of second 33 respectively with the first long draw-in groove 13 and the 11 looks locks of first long fixture block of preceding fragment of brick, first limbers 12 and second limbers 32 communicate with each other simultaneously for communicate with each other between the hydrophobic hole 22, when laying and laying the horizontal direction, with the short fixture block of brick 34 of second and the short draw-in groove 35 of second respectively with the first short First short fixture block 14 looks lock follows from down up when paving the fragment of brick, follows the rule from right to left, can accomplish the fragment of brick of whole wall and pave and paste.
In the description herein, references to the description of "one embodiment," "an example," "a specific example," etc., mean that a particular feature, structure, material, or characteristic described in connection with the embodiment or example is included in at least one embodiment or example of the invention. In this specification, the schematic representations of the terms used above do not necessarily refer to the same embodiment or example. Furthermore, the particular features, structures, materials, or characteristics described may be combined in any suitable manner in any one or more embodiments or examples.
The preferred embodiments of the present invention disclosed above are intended only to help illustrate the present invention. The preferred embodiments are not intended to be exhaustive or to limit the invention to the precise embodiments disclosed. Obviously, many modifications and variations are possible in light of the above teaching. The embodiments were chosen and described in order to best explain the principles of the invention and its practical applications, to thereby enable others skilled in the art to best understand the invention for and utilize the invention. The present invention is limited only by the claims and their full scope and equivalents.
Claims (6)
1. The utility model provides a be applied to archaize building's porous type archaize brick that excels in, includes brick layer (1), honeycomb layer (2) and last brick layer (3) down, its characterized in that: the upper portion on brick layer (1) is provided with honeycomb layer (2) down, the upper portion on honeycomb layer (2) is provided with brick layer (3), the lower part on brick layer (1) is provided with a plurality of back of the body grooves (16) down, be provided with first long fixture block (11) down on one side at brick layer (1) top, the lower brick layer (1) upper end of the adjacent side of first long fixture block (11) is provided with first short fixture block (14), be provided with long fixture block of second (31) on one side of going up brick layer (3) bottom, last brick layer (3) bottom of the adjacent side of long fixture block of second (31) is provided with short fixture block of second (34).
2. The porous high-strength archaized brick applied to the archaized building is characterized in that a first long clamping groove (13) is arranged between the first long clamping block (11) and the honeycomb layer (2), the width of the first long clamping groove (13) is the same as that of the second long clamping block (31), a first water through hole (12) is formed in the first long clamping block (11), and the height of the first long clamping block (11) is the same as that of the honeycomb layer (2).
3. The porous high-strength archaized brick applied to the archaized building is characterized in that a first short clamping groove (15) is formed between the first short clamping block (14) and the honeycomb layer (2), the width of the first short clamping groove (15) is the same as that of the second short clamping block (34), and the height of the first short clamping block (14) is the same as that of the honeycomb layer (2).
4. The porous high-strength archaized brick applied to the archaized building is characterized in that a plurality of honeycomb holes (21) vertically penetrate through the honeycomb layer (2), the honeycomb holes (21) are of a regular hexagonal prism-shaped structure, the lateral surfaces of the honeycomb layer (2) are longitudinally and horizontally penetrated with hydrophobic holes (22), the hydrophobic holes (22) are circular, the hydrophobic holes (22) penetrate through the honeycomb layer (2) from one side of the honeycomb layer (2) to the other side of the honeycomb layer (2) and are communicated with the honeycomb holes (21), and the hydrophobic holes (22) are communicated with the first water through holes (12) on the lower brick layer (1) and the second water through holes (32) on the upper brick layer (3).
5. The porous high-strength archaized brick applied to the archaized building is characterized in that a second long clamping groove (33) is arranged between the second long clamping block (31) and the honeycomb layer (2), the width of the second long clamping groove (33) is the same as that of the first long clamping block (11), a second water through hole (32) is arranged on the second long clamping block (31), the second water through hole (32) is circular, and the height of the second long clamping block (31) is the same as that of the honeycomb layer (2).
6. The porous high-strength archaized brick applied to the archaized building is characterized in that a second short clamping groove (35) is arranged between the second short clamping block (34) and the honeycomb layer (2), the width of the second short clamping groove (35) is the same as that of the first short clamping block (14), and the height of the second short clamping groove (35) is the same as that of the honeycomb layer (2).
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CN202021996517.8U CN213509388U (en) | 2020-09-11 | 2020-09-11 | Be applied to archaize building's porous type archaize brick that excels in |
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CN202021996517.8U CN213509388U (en) | 2020-09-11 | 2020-09-11 | Be applied to archaize building's porous type archaize brick that excels in |
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