CN213198080U - General assembling die of partition wall - Google Patents
General assembling die of partition wall Download PDFInfo
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- CN213198080U CN213198080U CN202021357822.2U CN202021357822U CN213198080U CN 213198080 U CN213198080 U CN 213198080U CN 202021357822 U CN202021357822 U CN 202021357822U CN 213198080 U CN213198080 U CN 213198080U
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Abstract
The utility model discloses a general assembling die of partition wall, the first general side forms of its fixed mounting on the mould platform, the one end of second, three-way side forms is connected at the both ends of first general side forms, second, three-way side forms are installed relatively, and the other end of second, three-way side forms passes through the modulus combination side forms and connects, first, two, three-way side forms include first skeleton respectively and can dismantle the first plastic slab of connection on first skeleton, the modulus combination side forms include the second skeleton and can dismantle the second plastic slab of connection on the second skeleton. The utility model is formed by detachably connecting a framework and a plastic plate, and all side dies can be split and combined at will in the same project, so that the common-mode utilization rate of the side dies reaches 100%; when the side forms are used in different projects, all the side forms can be continuously used only by replacing the plastic plates, and the repeated utilization rate of the framework is 100 percent, so that the cost of the mold can be greatly reduced.
Description
Technical Field
The utility model relates to a concrete prefab mould, especially a general assembling die of partition wall.
Background
In the assembly type structure, traditional concrete prefabricated member mould adopts the steel die system usually, along with the development of mould, appears gradually replacing the steel die system with the aluminium die system in some type components, and traditional steel die system and neotype aluminium die system have following characteristics respectively:
steel mould system
1. The method has wide application and mature processing method, and is often applied to special-shaped wallboard molds and special-shaped component molds, such as: ribbed wallboard, stair mold, balcony mold, convex window mold and the like;
2. the material is alkali-resistant, and the surface of the member is not required to be subjected to surface treatment, but is easy to rust;
3. the material is heavy, the efficiency of the special-shaped component customization die is high, but the universality is extremely low;
4. the cost is high and the residual value is low.
(II) aluminum mold system
1. The processing method is mature, the traditional cast-in-place building aluminum template is widely applied, and the PC industry is applied to simple and universal standard components, such as simple wallboards, floor slab combination molds, combination beam column molds and the like;
2. the material is not alkali-resistant and is treated by adopting an inner surface powder spraying/plastic spraying mode;
3. the material is lighter, the efficiency of the die is higher than that of a steel die when the die is combined, the unitization degree is high, and the universality is strong;
4. high cost and high residual value (recovery rate is nearly 70%).
SUMMERY OF THE UTILITY MODEL
The utility model aims to solve the technical problem that, to current steel mould and aluminium mould not enough with high costs, provide one kind and have stronger commonality, and can reduce the general assembling die of partition wall of mould cost by a wide margin.
In order to solve the technical problem, the utility model discloses a following technical scheme:
the utility model provides a general assembling die of partition wall, includes the mould platform, the first general side forms of fixed mounting on the mould platform, the one end of the general side forms of second is connected to the one end of first general side forms, and the one end of third general side forms is connected to the other end, the general side forms of second, third general side forms are installed relatively, and the other end of the general side forms of second, third general side forms passes through the modularization combination side forms and connects, first, two, three for the side forms include first skeleton respectively and can dismantle the first plastic slab of connection on first skeleton, the modularization combination side forms include the second skeleton and can dismantle the second plastic slab of connection on the second skeleton.
The utility model is formed by detachably connecting a framework and a plastic plate, and all side dies can be split and combined at will in the same project, so that the common-mode utilization rate of the side dies reaches 100%; when the side forms are used in different projects, all the side forms can be continuously used only by replacing plastic plates (the plastic plates are cheap and have the service life of 50+ times), and the repeated utilization rate of the framework is 100%. Additionally, the utility model discloses a remove the general side forms of second or the third general side forms, the not unidimensional partition wall component mould just can be pieced together to the length of adjustment modulization combination side form to can realize quick retooling.
Preferably, first skeleton with but the second skeleton all is the swing joint structure of split reorganization, makes the utility model discloses a skeleton reuse rate improves greatly to the mould cost has been saved.
Preferably, the first framework comprises at least two rod bodies arranged in parallel, the two ends of each rod body are detachably provided with first connecting pieces, the middle parts of the rod bodies are provided with a plurality of sleeves, first connecting holes are formed in the rod bodies corresponding to the sleeves, and the first connecting holes and the corresponding sleeves are fixedly connected through first screws. With the structure, the first framework can be split, the first connecting pieces are arranged at the two ends of the first framework, the sleeve is arranged in the middle of the first framework, and the first connecting pieces can be connected with the adjacent side forms while the structural stability of the first framework is ensured.
Preferably, the second skeleton includes two at least sub-skeletons, and adjacent sub-skeleton passes through the second connecting piece to be connected, and the both ends of second connecting piece can be dismantled with two sub-skeletons of adjacent setting respectively and be connected.
Preferably, the length of the sub-skeleton is 500mm, 1000mm, 1500mm or 2000 mm. The length of the second connecting piece is 500 mm. The second frameworks with different lengths can be formed by combining the sub-frameworks with four sizes in pairs and adding the second connecting pieces, the optional lengths between 1000 and 4500mm are basically covered, and the modular combined side mold with the optional lengths between 1000 and 4500mm can be provided by matching the second plastic plates with the corresponding lengths.
Preferably, one end of the sub-framework is slotted or perforated, two ends of the second connecting piece are correspondingly slotted or perforated, and the sub-framework and the second connecting piece are fixedly connected with the second connecting piece through a second bolt penetrating through the slotting or perforating of the sub-framework and the second connecting piece.
Preferably, the sub-framework comprises at least two rod bodies arranged in parallel, the two ends of each rod body are adjacent to each other, first connecting pieces are detachably arranged at the two ends of each rod body, the middle of each rod body is adjacent to each other, at least one sleeve is arranged in the middle of each rod body, a first connecting hole is formed in the corresponding sleeve on each rod body, and the first connecting hole and the corresponding sleeve are fixedly connected through a first screw. With the structure, the split of the sub-framework is realized, the first connecting pieces are arranged at the two ends of the sub-framework, the sleeve is arranged in the middle of the sub-framework, and the first connecting pieces can be connected with the adjacent side forms while the structural stability of the sub-framework is ensured.
Preferably, the middle part of the first connecting piece is provided with a connecting hole which is convenient for being connected with an adjacent side form.
Compared with the prior art, the beneficial effects of the utility model reside in that:
1. the universal mold for the partition plate has strong universality, all side molds can be universal, and the universal rate can reach 100%;
2. the utility model can realize quick die change, and only one of the second and the third universal side dies needs to be moved during die change, and the size of the modular combined side die can be adjusted;
3. the utility model discloses baffle general mould's use cost reduces by a wide margin, specifically can refer to the following table:
known by last table, the amortization cost of steel mould is higher than the amortization cost of aluminium mould far away, the utility model discloses an aluminium mould has been reduced 33.1% to the amortization cost of mould.
Drawings
FIG. 1 is a diagram of a diaphragm member.
Fig. 2 is a schematic view of the three-dimensional structure of the general combined mold for partition walls of the present invention.
Fig. 3 is an enlarged view of fig. 2 at a.
Fig. 4 is a three-dimensional structure diagram of the universal side form of the present invention.
Fig. 5 is a schematic perspective view of a first frame (two rods) according to an embodiment of the present invention.
Fig. 6 is a schematic perspective view of a second embodiment (three rods) of the first frame of the present invention.
Fig. 7 is a schematic perspective view of the first connecting member of the present invention.
Fig. 8 is a schematic perspective view of the sleeve of the present invention.
Fig. 9 is a schematic perspective view of the modular combined side form of the present invention.
Fig. 10 is an enlarged view of fig. 9 at B.
Fig. 11 is a schematic perspective view of the sub-frame of the modular combined side form of the present invention.
In the figure: 1. a mould table; 2. a first universal sideform; 3. a second universal side form; 4. thirdly, using a side die; 5. carrying out modulization on the combined side mold; 21. a first skeleton; 22. a first plastic panel; 211. a rod body; 212. a first bolt; 213. a first connecting member; 214. a sleeve; 215. a first screw; 2111. a first connection hole; 2131. A first connection portion; 2132. a second connecting portion; 2133. a second connection hole; 51. a second skeleton; 52. a second plastic panel; 511. a sub-skeleton; 512. a second connecting member; 5111. a connecting end; 513. and a second bolt.
Detailed Description
The invention is further described below with reference to specific preferred embodiments, without thereby limiting the scope of protection of the invention.
For convenience of description, the description of the relative position of the components (e.g., up, down, left, right, etc.) is described with reference to the layout direction of the drawings, and does not limit the structure of the patent.
As shown in fig. 1-11, the utility model discloses general assembling die of partition wall includes mould platform 1, the first general side forms 2 of fixed mounting on the mould platform 1, the one end of the general side forms 3 of second is connected to the one end of first general side forms 2, and the one end of the general side forms 4 of third is connected to the other end, the general side forms 2 of second, the general side forms 3 of third are installed relatively, and the general side forms 2 of second, the general side forms 3 of third pass through modulization combination side forms 5 and connect.
The first, second and third side dies 2, 3 and 4 are all universal side dies.
The universal side form comprises a first framework 21 in movable connection and a first plastic plate 22 connected to the first framework 21 in a self-tapping screw or universal glue mode and the like.
The rod body 211 is preferably a rectangular tube.
The first connecting member 213 is preferably a plate, and is integrally of an "n" type structure, that is, two ends of the first connecting member 213 are bent in one direction to form a first connecting portion 2131, the middle portion of the first connecting member 213 is provided with a second connecting portion 2132, the first connecting portion 2131 and the second connecting portion 2132 are respectively provided with a second connecting hole 2133, wherein the second connecting hole 2133 on the first connecting portion 2131 is used for being fastened with the rod body 211, and the second connecting hole 2133 on the second connecting portion 2133 is used for being connected with an adjacent side mold.
The sleeve 214 is made of PP, has a round and square cross section, is light, and can be used as a connecting support between adjacent rods 211 or as a back edge of the first plastic plate 22.
The first plastic panel 22 is preferably a hollow plastic panel.
The length of the rod body 211 is 6000 mm, 5000 mm, 3200 mm and 1000mm, and the length of the first plastic plate 22 is also 6000 mm, 5000 mm, 3200 mm and 1000 mm. The height of the first plastic plate 22 is determined (customized) according to the height of different partition wall members, the number of the rod bodies 211 of the first skeleton 21 is set according to the height of different partition wall members, and the interval between the adjacent rod bodies is not more than 200 mm.
As shown in fig. 3, in this embodiment, the second universal side form 3 is vertically connected to the first universal side form 2, one end of the first plastic plate of the second universal side form 3 abuts against the working surface of the first plastic plate of the first universal side form 2, and the first connecting member 213 of the second universal side form 3 is fixedly connected to the first plastic plate 22 of the first universal side form 2 by a bolt inserted into the second connecting hole 2133, or fixedly connected to the corners of the first and second universal side forms 2 and 3 by a G-clip or the like.
The modular combined side form 5 comprises a second framework 51 movably connected and a second plastic plate 52 detachably connected on the second framework 51.
The second skeleton 51 includes at least two sub-skeletons 511 and second connecting pieces 512, and adjacent sub-skeletons 511 are connected by the second connecting pieces 512.
The sub-frame 511 has substantially the same structure as the first frame 21, and is different from the first frame only in that: the first connection member 213 of one end of the sub-bobbin 511 is built in such that one end of the sub-bobbin 511 forms an overhanging connection end 5111.
The connecting end 5111 of the sub-framework 511 is slotted or perforated, two ends of the second connecting piece 512 are correspondingly slotted or perforated, and the connecting end 5111 of the sub-framework 511 is fastened and connected with the second connecting piece 512 through a second bolt 513 passing through the slots or perforations of the sub-framework 511 and the second connecting piece 512.
The second connecting member 511 is preferably a rectangular tube having the same size as the rod body 211.
The length of the sub-skeleton 511 is 500mm, 1000mm, 1500mm or 2000 mm. The length of the second connecting member 512 is 500 mm. The second frameworks 51 with different lengths can be formed by combining the four sizes of the sub-frameworks 511 in pairs and connecting the sub-frameworks through the second connecting pieces 512, any length between 1000 and 4500mm can be basically covered, and the modular combined side mold with any length between 1000 and 4500mm can be provided by matching the second plastic plates 52 with corresponding lengths.
The above description is only for the preferred embodiment of the present application and should not be taken as limiting the present application in any way, and although the present application has been disclosed in the preferred embodiment, it is not intended to limit the present application, and those skilled in the art should understand that they can make various changes and modifications within the technical scope of the present application without departing from the scope of the present application, and therefore all the changes and modifications can be made within the technical scope of the present application.
Claims (9)
1. The utility model provides a general assembling die of partition wall, includes the mould platform, the first general side forms of fixed mounting on the mould platform, the one end of the general side forms of second is connected to the one end of first general side forms, and the one end of third general side forms is connected to the other end, the general side forms of second, third general side forms are installed relatively, and the other end of the general side forms of second, third general side forms passes through the modularization combination side forms and connects, its characterized in that, first general side forms, the general side forms of second, third general side forms include first skeleton respectively and can dismantle the first plastic slab of connection on first skeleton, the modularization combination side forms include the second skeleton and can dismantle the second plastic slab of connection on the second skeleton.
2. The universal assembly mold for partition walls of claim 1, wherein the first frame and the second frame are both detachable and reconfigurable movable connecting structures.
3. The universal combined mold for partition walls as claimed in claim 1, wherein the first skeleton comprises at least two rod bodies arranged in parallel, first connecting members are detachably arranged at two ends of each rod body, a plurality of sleeves are arranged at the middle parts of the rod bodies, corresponding sleeves are arranged on the rod bodies and provided with first connecting holes, and the first connecting holes and the corresponding sleeves are fixedly connected through first screws.
4. The universal combined mold for partition walls as claimed in claim 1, wherein the second framework comprises at least two sub-frameworks, adjacent sub-frameworks are connected through a second connecting member, and two ends of the second connecting member are detachably connected with the two sub-frameworks which are adjacently arranged respectively.
5. A universal assembly mould for a partition wall as claimed in claim 4, wherein the length of the sub-frame is 500mm, 1000mm, 1500mm or 2000 mm.
6. A universal assembly mould for a partition wall as claimed in claim 4, wherein the length of the second connector is 500 mm.
7. The universal combined mould for partition walls as claimed in claim 4, wherein one end of the sub-framework is slotted or perforated, two ends of the second connecting piece are correspondingly slotted or perforated, and the sub-framework and the second connecting piece are fastened and connected with the second connecting piece through a second bolt passing through the sub-framework and the second connecting piece.
8. The general assembling die of a partition wall of claim 4, wherein the sub-frame comprises at least two rod bodies arranged in parallel, first connecting pieces are detachably arranged at two ends of the adjacent rod bodies, at least one sleeve is arranged in the middle of the adjacent rod bodies, first connecting holes are formed in the corresponding sleeve on the rod bodies, and the first connecting holes and the corresponding sleeve are fixedly connected through first screws.
9. A universal combined mould for a partition wall as claimed in claim 3 or 8, wherein the middle part of the first connecting member is provided with a second connecting hole for facilitating connection with an adjacent connecting side mould.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202021357822.2U CN213198080U (en) | 2020-07-10 | 2020-07-10 | General assembling die of partition wall |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202021357822.2U CN213198080U (en) | 2020-07-10 | 2020-07-10 | General assembling die of partition wall |
Publications (1)
Publication Number | Publication Date |
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CN213198080U true CN213198080U (en) | 2021-05-14 |
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Family Applications (1)
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CN202021357822.2U Active CN213198080U (en) | 2020-07-10 | 2020-07-10 | General assembling die of partition wall |
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2020
- 2020-07-10 CN CN202021357822.2U patent/CN213198080U/en active Active
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