CN211827858U - Model is assembled to special-shaped wall that can site operation - Google Patents
Model is assembled to special-shaped wall that can site operation Download PDFInfo
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- CN211827858U CN211827858U CN202020799796.2U CN202020799796U CN211827858U CN 211827858 U CN211827858 U CN 211827858U CN 202020799796 U CN202020799796 U CN 202020799796U CN 211827858 U CN211827858 U CN 211827858U
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Abstract
The utility model provides a special-shaped wall assembling model capable of being constructed on site, which comprises a plurality of assembling model plates and a mold closing member; the assembled model plate consists of a model plate body and an end closing part; the two end parts of the model plate body are respectively a model A end and a model B end; the end of the A die is provided with a concave part; the end of the B die is provided with a convex part; the concave part is matched with the convex part in structure, shape and size; the A-mold end is also provided with an A-mold auxiliary sheet protruding out of the surface of the model plate body; the end of the B mould is also provided with a B mould auxiliary sheet protruding out of the surface of the model plate body; the A die auxiliary sheet is provided with a convex positioning strip A; the auxiliary sheet of the B die is provided with a convex positioning strip B; the end closing piece is in a U shape; the inner surfaces of the two side parts of the U-shaped structure are oppositely provided with a pair of grooves; the groove is matched with the positioning strip A and the positioning strip B in structure, shape and size; the end closure member clamps the auxiliary die A and the auxiliary die B in the concave space of the U-shaped mold. The model can be used for manufacturing the special-shaped wall with simple operation.
Description
Technical Field
The utility model relates to a model is assembled to special-shaped wall or figurative field, especially, relates to a but site operation's special-shaped wall.
Background
Based on the aesthetic requirement on the appearance, a plurality of flower beds along the street, outer wall models and the like are often designed into the shapes with waves or curved surfaces, and in the existing projects, custom-made special-shaped bricks are often adopted for construction, or the concrete surfacing needs to be carried out by the manual work with too hard technology.
According to the scheme of the special-shaped bricks, a specific mould needs to be customized to manufacture the bricks with the specified patterns, and then construction adjustment is carried out on site after the bricks are allowed to arrive at the site, so that the following two problems exist:
1. the manufacturing cost is high and the time is long;
2. the transportation cost is high, and the loss is easy to occur;
3. if the customized condition of larger length or width is met, the damage rate of the whole manufacturing and transporting process is very high and the cost is very high, for example, the assembly error problem in the manufacturing process can be caused by the transportation of parts, and the consumed manual assembly time is very long;
4. the actual site and the design site are different, so that according to the customized product made at the design site, problems often occur to the site installation, such as: the situation of re-opening the mold or sanding in the field leads to increased material and labor costs and also to unnecessary delays in construction.
In view of the problems of on-site manufacture of technicians, on one hand, talent gaps are large and are not always attended to by such technicians, and on the other hand, the introduction cost of such talents is also high.
SUMMERY OF THE UTILITY MODEL
The utility model aims at overcoming above-mentioned defect, provide an easy operation, can the on-the-spot direct manufacturing dysmorphism wall, and receive on-the-spot and design difference to influence less dysmorphism wall model, utilize this kind of model, ordinary manual work just can realize the manufacturing of dysmorphism wall.
The utility model provides a model is assembled to special-shaped wall that can site operation, its characterized in that: comprises a plurality of assembled model plates and a mold closing member;
the spliced model plate consists of a model plate body and an end closing part;
the two end parts of the model plate body are respectively a mould A end and a mould B end;
the A-die end has a recess;
the B-mode end is provided with a convex part;
the concave part is matched with the convex part in structure, shape and size;
the end of the A mould is also provided with an A mould auxiliary sheet protruding out of the surface of the model plate body;
the end of the B mould is also provided with a B mould auxiliary sheet protruding out of the surface of the model plate body;
the A-die auxiliary sheet is provided with a convex positioning strip A;
the auxiliary sheet of the die B is provided with a positioning strip B protruding outwards;
the end closing piece is in a U shape;
the inner surfaces of the two side parts of the U-shaped structure are oppositely provided with a pair of grooves;
the groove is matched with the positioning strip A and the positioning strip B in structure, shape and size;
the end closure closes the auxiliary die a and the auxiliary die B within the concave space of the U-shape.
Further, the utility model provides a pair of model is assembled to special-shaped wall that can site operation, its characterized in that still lies in: the A die end is also provided with a gasket;
the B die end is also provided with a gasket.
Further, the utility model provides a pair of model is assembled to special-shaped wall that can site operation, its characterized in that still lies in: the die A auxiliary sheet is provided with a positioning hole A;
a positioning hole B is formed in the position corresponding to the auxiliary sheet of the die B;
a positioning hole C is formed in the corresponding position on the end sealing piece;
when the end closing piece closes the die A auxiliary sheet and the die B auxiliary sheet in the concave space of the U-shaped model, the positioning hole A, the positioning hole B and the positioning hole C are in a straight line.
Further, the utility model provides a pair of model is assembled to special-shaped wall that can site operation, its characterized in that still lies in: the A die auxiliary sheet is of a rotatable structure;
the auxiliary piece of the B die is a rotatable structure.
Further, the utility model provides a pair of model is assembled to special-shaped wall that can site operation, its characterized in that still lies in: the bottom surface of the model plate body is provided with an elastic layer.
Further, the utility model provides a pair of model is assembled to special-shaped wall that can site operation, its characterized in that still lies in: the bottom edge of the external viewing surface of the model plate body is provided with a plurality of fixing pieces.
Further, the utility model provides a pair of model is assembled to special-shaped wall that can site operation, its characterized in that still lies in: the fixing sheet is provided with a mounting hole.
Drawings
Fig. 1 is a schematic structural diagram of a special-shaped wall assembly model according to this embodiment.
Fig. 2 is a schematic view of a manufacturing process of the special-shaped flower bed according to the embodiment.
Detailed Description
The embodiment provides a spliced special-shaped wall splicing model capable of being constructed on site, the model has a unique splicing and packaging structure, a target special-shaped structure can be split into a plurality of sections to be manufactured, then a target model is formed through on-site splicing, and then cement is poured on site to be molded.
The use of the model can greatly reduce the transportation cost and the production cost, reduce the construction difficulty and has the characteristic of high compatibility with the design model.
In this embodiment, taking the special-shaped exterior surface required for the flower bed as an example, as shown in fig. 2, the project needs to be composed of a plurality of assembling model plates 100A, end-capping model plates 100B, end-capping model plates 100C and a plurality of mold clamping members 200 with a set length.
The two end parts of the model plate bodies of all the model plates are provided with a mold end A and a mold end B, the assembled model plate 100A, the end-capped model plate 100B and the end-capped model plate 100C are only different in the body modeling, in the embodiment, the assembled model plate 100A is in a wave modeling and is formed by splicing a plurality of repeated modeling templates 100A, the end-capped model plate 100B and the end-capped model plate 100C are in a straight modeling, and the end parts of the assembled model plate 100A are designed by matching the modeling of the mold end A and the modeling of the mold end B.
Next, the present embodiment will be described in detail with reference to a specific structure of the assembled model plate 100A as an example.
As shown in fig. 1, the assembled model plate 100A has a main body part of a model plate body 100, and the main body part may have a different shape according to the actual use requirement.
The two end parts have different structures and are respectively a mould end A110 and a mould end B120;
the mold a end 110 is provided with an inward concave clamping groove 111;
the die B end 120 is provided with a clamping strip 121 protruding outwards;
the clamping grooves 111 and the clamping strips 121 of two adjacent assembled model plates 100A are matched in structure;
the clamping strips can be inserted into the clamping grooves to realize connection in the assembling process;
the tightness problem after the installation is considered, a sealing gasket can be arranged on the clamping groove or the clamping strip, when the clamping groove or the clamping strip is combined with the sealing gasket, the tightness between the two connecting structures can be realized by increasing the friction force and reducing the gaps, and therefore the leakage problem after cement pouring is avoided.
In order to further improve the sealing effect, the present embodiment also provides secondary sealing members, i.e., a die 112 disposed at the a-mode end and a die 122 disposed at the B-mode end;
the die 112 and the die 122 each have a raised stop bar 1121 and 1221 thereon.
In order to achieve the fixing effect, the bottom of the form body 100 further has a fixing plate 130, the fixing plate 130 has a fixing hole 131, one end face of the fixing plate 130, which is at a right angle, is welded to the form body, and after the form panels are all spliced, one end face of the fixing plate, which is attached to the ground, is screwed tightly to the ground through a material such as a bolt.
As shown in fig. 2, when all the wave-shaped formworks 100A are completely connected, the end caps 100B and 100C are installed at both sides, respectively.
The end-capping plate 100B has a mold piece 120B, the mold piece 120B is attached to the original brick surface of the flower bed (or the non-molding surface of the flower bed), and the mold piece 120B has a through hole, which is identical in structure and function to the fixing hole 131 of the fixing piece 130, for fixing the mold piece.
Similarly, the end-sealing plate 100C has a mold piece 120C, the mold piece 120C is also attached to the original brick surface of the flower bed (or the non-molding surface of the flower bed), and the mold piece 120C has a through hole, which is configured and functions in accordance with the fixing hole 131 of the fixing piece 130, for fixing the mold piece.
After the end-sealing piece is fixed, the die-closing buckle 200 is sleeved at the connecting point of each two models. Because the mold closing buckle 200 is provided with the two guide grooves 210 and 220, and the structures of the two guide grooves are consistent with the limiting strips on the mold sheet, when the mold closing buckle 200 is just buckled at the position where the two mold closing buckles are connected, the further mold closing leakage-proof effect can be realized.
Claims (7)
1. The utility model provides a model is assembled to special-shaped wall that can site operation which characterized in that: comprises a plurality of assembled model plates and a mold closing member;
the spliced model plate consists of a model plate body and an end closing part;
the two end parts of the model plate body are respectively a mould A end and a mould B end;
the A-die end has a recess;
the B-mode end is provided with a convex part;
the concave part is matched with the convex part in structure, shape and size;
the end of the A mould is also provided with an A mould auxiliary sheet protruding out of the surface of the model plate body;
the end of the B mould is also provided with a B mould auxiliary sheet protruding out of the surface of the model plate body;
the A-die auxiliary sheet is provided with a convex positioning strip A;
the auxiliary sheet of the die B is provided with a positioning strip B protruding outwards;
the end closing piece is in a U shape;
the inner surfaces of the two side parts of the U-shaped structure are oppositely provided with a pair of grooves;
the groove is matched with the positioning strip A and the positioning strip B in structure, shape and size;
the end closure closes the auxiliary die a and the auxiliary die B within the concave space of the U-shape.
2. The special-shaped wall assembling model capable of being constructed on site as claimed in claim 1, wherein:
the A die end is also provided with a gasket;
the B die end is also provided with a gasket.
3. The special-shaped wall assembling model capable of being constructed on site as claimed in claim 1, wherein:
the die A auxiliary sheet is provided with a positioning hole A;
a positioning hole B is formed in the position corresponding to the auxiliary sheet of the die B;
a positioning hole C is formed in the corresponding position on the end sealing piece;
when the end closing piece closes the die A auxiliary sheet and the die B auxiliary sheet in the concave space of the U-shaped model, the positioning hole A, the positioning hole B and the positioning hole C are in a straight line.
4. The special-shaped wall assembling model capable of being constructed on site as claimed in claim 1, wherein:
the A die auxiliary sheet is of a rotatable structure;
the auxiliary piece of the B die is a rotatable structure.
5. The special-shaped wall assembling model capable of being constructed on site as claimed in claim 1, wherein:
the bottom surface of the model plate body is provided with an elastic layer.
6. The special-shaped wall assembling model capable of being constructed on site as claimed in claim 1, wherein:
the bottom edge of the external viewing surface of the model plate body is provided with a plurality of fixing pieces.
7. The special-shaped wall assembling model capable of being constructed on site as claimed in claim 6, wherein:
the fixing sheet is provided with a mounting hole.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202020799796.2U CN211827858U (en) | 2020-05-14 | 2020-05-14 | Model is assembled to special-shaped wall that can site operation |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN202020799796.2U CN211827858U (en) | 2020-05-14 | 2020-05-14 | Model is assembled to special-shaped wall that can site operation |
Publications (1)
Publication Number | Publication Date |
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CN211827858U true CN211827858U (en) | 2020-10-30 |
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CN202020799796.2U Active CN211827858U (en) | 2020-05-14 | 2020-05-14 | Model is assembled to special-shaped wall that can site operation |
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CN (1) | CN211827858U (en) |
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2020
- 2020-05-14 CN CN202020799796.2U patent/CN211827858U/en active Active
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