CN217580592U - High-strength aluminum alloy anti-skid embedded channel - Google Patents
High-strength aluminum alloy anti-skid embedded channel Download PDFInfo
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- CN217580592U CN217580592U CN202220853134.8U CN202220853134U CN217580592U CN 217580592 U CN217580592 U CN 217580592U CN 202220853134 U CN202220853134 U CN 202220853134U CN 217580592 U CN217580592 U CN 217580592U
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Abstract
The utility model provides a high-strength aluminum alloy antiskid embedded channel, relates to building electromechanical installation technical field, is the cell body of C shape including the opening, its characterized in that, the left and right sides of cell body opening part all is equipped with the baffle, and two baffles use the cell body central line to set up as symmetry axis symmetry, and two relative one sides settings of baffle are descending wedges, set up on the baffle and be descending wedge one side and evenly laid the interlock tooth, still be equipped with in the cell body and can be at the gliding anti-skidding subassembly of cell body, through the setting of pre-buried groove C shape cell body, set up the descending wedge baffle of laying the interlock tooth in the both sides of cell body simultaneously, set up the interlock tooth on descending wedge simultaneously, can effectually improve the relative stability between cell body and the anti-skidding subassembly, strengthen the setting of subassembly through the upper surface of cell body, can effectively improve the stability that cell body and concrete are connected, the utility model discloses can effectively improve channel bearing capacity, increase the life of channel simultaneously, reach energy saving and emission reduction's purpose.
Description
Technical Field
The utility model belongs to the technical field of the building electromechanical installation, concretely relates to synthesize a pre-buried installing the system of gallows.
Background
The embedded channel is an embedded part for construction, embedded installation is realized, the technology of the embedded channel is widely applied, any component can be fixed by using the embedded channel, the stress of the embedded channel is balanced, the installation is convenient, the adjustment is easy, the construction efficiency is high, and the embedded channel is safe, reliable and environment-friendly. The traditional electromechanical installation field mainly adopts expansion bolts or pre-buried steel channel to fix the installation support pipeline. The expansion bolts are adopted for construction, because holes need to be punched in advance during installation, the construction efficiency is low, and meanwhile, solid dust is generated during the installation and punching process, so that the environment is polluted; the traditional steel pre-buried groove also has a plurality of problems: firstly, the rack is positioned on the inner side of the notch, so that whether the bolt and the embedded groove are fixed tightly or not is difficult to observe visually, and construction is inconvenient; secondly, the steel channel teeth have small size and poor anti-sliding capability, so that safety accidents are easily caused, and the teeth must be increased to ensure the strength, so that the matching degree between the T-shaped bolt and the channel is poor, and the installation and adjustment precision is low; thirdly, steel embedded channel receives the problem in the aspect of cost and technique, and anticorrosive ability is difficult to guarantee, need frequently to change the channel, changes the easy polluted environment of construction waste that the channel produced to still influence channel life, increase later maintenance replacement cost, for solving above-mentioned technical problem, the utility model provides a safe high efficiency, green's high-strength aluminum alloy antiskid embedded channel.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide a: for solving the technical problem who proposes in the background art, the utility model provides a high-strength aluminum alloy antiskid pre-buried channel.
The utility model discloses a realize above-mentioned purpose and specifically adopt following technical scheme:
the utility model provides a high-strength aluminum alloy antiskid embedded channel, is the cell body of C shape including the opening, the left and right sides of cell body opening part all is equipped with the baffle, and two baffles use the cell body central line to set up as symmetry axis symmetry, and the one side setting that two baffles are relative is the decline wedge, it evenly has laid the interlock tooth to set up to be descending wedge-shaped one side on the baffle, still be equipped with in the cell body can be at the internal gliding anti-skidding subassembly of cell.
Further, anti-skidding subassembly is anti-skidding bolt, anti-skidding bolt is including being columniform locking post, the surface of locking post is equipped with the screw thread, the last top fixedly connected with interlock portion of locking post, the cross-section of interlock portion is down trapezoidal and its surface with the cell body contact be equipped with interlock tooth complex rack, the top rigid coupling of interlock portion has joint portion, the longitudinal section and the C shape opening cooperation of joint portion.
Furthermore, the cross section of the clamping part is in a rectangular shape with a pair of diagonal fillet conductors.
Furthermore, the upper top surface of the trough body is also provided with reinforcing components at intervals for tightly connecting the trough body and the concrete.
Further, strengthen the subassembly including setting firmly the vertical support board at the cell body top, the top of vertical support board sets firmly horizontal support board.
Further, strengthen the subassembly including setting firmly the vertical support board at the cell body top, the top of vertical support board is equipped with the backup pad that is "V" shape, the opening of "V" shape backup pad is opposite with the C shape opening direction of cell body.
The utility model has the advantages that:
1. the utility model discloses an opening is the cell body of C shape, the left and right sides of cell body opening part all is equipped with the baffle, and two baffles use the cell body central line to set up as symmetry axis symmetry, and the one side setting that two baffles are relative is the decline wedge, it evenly has laid the interlock tooth to set up to be descending wedge one side on the baffle, still be equipped with in the cell body and can be in the cell body gliding anti-skidding subassembly, set up the baffle through the both sides at C shape opening, realization cell body that can be fine is to anti-skidding subassembly holding, through setting up the baffle into the area of contact that can effectual increase baffle and anti-skidding subassembly, increases the lifting surface of baffle simultaneously, can improve the frictional force of baffle and anti-skidding subassembly through evenly laying the interlock tooth in two relative one sides of baffle, the stress that baffle lifting surface of lifting surface received can effectually reduce the baffle, increases the stability of being connected between cell body and the anti-skidding subassembly when improving the life of cell body.
2. Anti-skidding subassembly is anti-skidding bolt, anti-skidding bolt is including being columniform locking post, the surface of locking post is equipped with the screw thread, the last top fixedly connected with interlock portion of locking post, the cross-section of interlock portion is down trapezoidal and its surface with the cell body contact be equipped with interlock tooth complex rack, the top rigid coupling of interlock portion has joint portion, the longitudinal section and the open cooperation of C shape of joint portion, the transversal rectangle of personally submitting a pair of diagonal angle guide fillet of joint portion through the setting of screw thread on locking post and the locking post, can adopt nut and locking post cooperation to realize anti-skidding bolt and cell body relative position's fixed, specifically do: through the setting of the rack in the interlock portion, interlock tooth cooperation on rack and the C shape cell body to realize the relatively fixed of position between anti-skidding bolt and the cell body, can effectively realize being connected of anti-skidding bolt and cell body through joint portion.
3. The last top surface of cell body is still the interval and is equipped with the enhancement subassembly that makes cell body and concrete zonulae occludens, during the use, through will strengthen in the subassembly is pre-buried to the concrete, can effectively increase the compactness that cell body and concrete are connected, prevent to produce in the cell body later stage use and drop, through will strengthening the subassembly interval and set up can effectual reduction materials, reduce the weight of cell body, be convenient for transport.
4. Strengthen the subassembly including setting firmly the vertical support board at the cell body top, vertical support board's top has set firmly horizontal support board, constitutes through vertical support board and horizontal support board's cooperation and strengthens the subassembly, pre-buried back, horizontal support board and concrete contact increase drawing force to improve the stability of pre-buried cell body.
5. Strengthen the subassembly including setting firmly the vertical support board at the cell body top, vertical support board's top is equipped with the backup pad that is "V" shape, the opening of "V" shape backup pad is opposite with the C shape opening direction of cell body, through being the setting of the backup pad of falling "V" shape, multiplicable pre-buried degree of depth to increase the compactness of cell body and concrete connection.
Drawings
FIG. 1 is a schematic structural view of the present invention;
fig. 2 is a schematic structural view of another view angle of the present invention;
fig. 3 is a schematic structural diagram of embodiment 2 of the present invention;
FIG. 4 is a cross-sectional view of FIG. 3;
fig. 5 is a schematic structural view of embodiment 3 of the present invention;
FIG. 6 is a cross-sectional view of FIG. 4;
fig. 7 is a schematic structural view of the anti-slip assembly of the present invention;
fig. 8 is a schematic structural view of the anti-slip assembly according to another view angle of the present invention;
fig. 9 is a top view of the anti-skid assembly of the present invention;
fig. 10 is a top view of the baffle of the present invention;
fig. 11 is a bottom view of the baffle of the present invention;
reference numerals
1-groove body, 2-reinforcing component, 3-baffle, 4-meshing tooth, 5-antiskid bolt, 501-clamping part, 502-meshing part and 503-locking column.
Detailed Description
In order to make the objects, technical solutions and advantages of the embodiments of the present invention clearer, the drawings in the embodiments of the present invention are combined below to clearly and completely describe the technical solutions in the embodiments of the present invention.
Example 1
As shown in fig. 1-11, a high-strength aluminum alloy antiskid embedded channel, including the cell body 1 that the opening is C shape, the left and right sides of cell body 1 opening part all is equipped with baffle 3, two baffle 3 use cell body 1 central line to set up as symmetry axis symmetry, the setting of two relative one sides of baffle 3 is descending wedge, set up on the baffle and be descending wedge one side and evenly laid interlock tooth 4, still be equipped with the antiskid subassembly that can slide in cell body 1 in the cell body 1, set up baffle 3 through the both sides at C shape opening, realization cell body 1 that can be fine is to holding of antiskid subassembly, through setting up baffle 3 to descending wedge can effectual increase the area of contact of baffle 3 and antiskid subassembly, increase baffle 3's lifting surface, increase the contact surface between baffle 3 and the antiskid subassembly simultaneously, can improve the frictional force of baffle 3 and antiskid subassembly through evenly laying interlock tooth 4 in two relative one side of baffle 3, the increase of baffle 3 lifting surface can effectually reduce the stress that baffle 3 received the baffle 3, increase the stability of connecting between cell body 1 and the antiskid subassembly when improving the life of cell body 1.
Preferably, anti-skidding subassembly is anti-skidding bolt 5, anti-skidding bolt 5 is including being columniform locking post 503, the surface of locking post 503 is equipped with the screw thread, the last top fixedly connected with interlock portion 502 of locking post 503, the cross-section of interlock portion 502 is down trapezoidal and its surface with the contact of cell body 1 is equipped with and 4 complex racks of interlock tooth, the top rigid coupling of interlock portion 502 has joint portion 501, the longitudinal section and the C shape opening cooperation of joint portion 501, the cross-section of joint portion 501 is the rectangle of a pair of diagonal angle fillet of leading, through the setting of screw thread on locking post 503 and the locking post 503, can adopt nut and locking post 503 cooperation to realize the fixed of anti-skidding bolt 5 and 1 relative position of cell body, specifically do: through the setting of the rack on interlock portion 502, interlock tooth 4 cooperation on rack and the C shape cell body 1, thereby realize the relatively fixed of position between anti-skidding bolt 5 and the cell body 1, can effectively realize anti-skidding bolt 5 and cell body 1's connection through joint portion 501, during the use, earlier with anti-skidding bolt lie in locking post 503 top part side direction 90 deep into the cell body that the opening is C shape, then make it just to make it change anti-skidding bolt counter-rotation 90, then outside is drawn, make interlock portion and the mutual interlock of interlock tooth in the C shape groove, make anti-skidding bolt and cell body relatively fixed.
Preferably, the last top surface of cell body 1 still is equipped with the enhancement subassembly 2 that makes cell body 1 and concrete zonulae occludens at the interval, and during the use, through in with strengthening subassembly 2 pre-buried to the concrete, can effectively increase the compactness that cell body 1 and concrete are connected, prevents to produce in the 1 later stage use of cell body and drops, through setting up the interval with enhancement subassembly 2 and can effectual reduction materials, reduce the weight of cell body 1, the transportation of being convenient for.
Example 2
As shown in fig. 3 and 4, the embodiment is a further improvement on the embodiment 1, the reinforcing component 2 comprises a vertical support plate fixedly arranged at the top of the tank body 1, a horizontal support plate vertical to the vertical support plate is fixedly arranged at the top of the vertical support plate, the reinforcing component 2 is formed by matching the vertical support plate and the horizontal support plate, and after the tank body is embedded, the horizontal support plate and the concrete contact the reinforcing component to increase the drawing force, so that the stability of the embedded tank body 1 is improved.
Example 3
As shown in fig. 5 and 6, the present embodiment is a further improvement on embodiment 1, and the reinforcing component includes a vertical supporting plate fixedly arranged at the top of the tank body 1, the top of the vertical supporting plate is provided with a V-shaped supporting plate, the opening of the V-shaped supporting plate is opposite to the C-shaped opening of the tank body, and the arrangement of the inverted V-shaped supporting plate can increase the embedded depth, thereby increasing the connection tightness between the tank body 1 and the concrete.
It will be appreciated by those skilled in the art that the invention may be embodied in other specific forms without departing from the spirit or essential characteristics thereof. The embodiments disclosed above are therefore to be considered in all respects as illustrative and not restrictive. All changes within the scope of the invention or within the scope equivalent to the invention are all embraced by the invention.
Claims (6)
1. The utility model provides a high-strength aluminum alloy antiskid embedded channel, is cell body (1) of C shape including the opening, its characterized in that, the left and right sides of cell body (1) opening part all is equipped with baffle (3), and two baffles (3) use cell body (1) central line to set up as symmetry axis symmetry, and the one side setting that two baffles (3) are relative is the decline wedge, set up on the baffle and be the even interlock tooth (4) of having laid in the wedge one side that descends, still be equipped with in cell body (1) gliding antiskid subassembly.
2. The anti-skidding embedded channel of high-strength aluminum alloy of claim 1, characterized in that, anti-skidding subassembly is anti-skidding bolt (5), anti-skidding bolt (5) are including being columniform locking post (503), the surface of locking post (503) is equipped with the screw thread, the last top fixedly connected with interlock portion (502) of locking post (503), the cross-section of interlock portion (502) is down trapezoidal and its surface with cell body (1) contact be equipped with interlock tooth (4) complex rack, the top rigid coupling of interlock portion (502) has joint portion (501), the longitudinal section and the C shape opening cooperation of joint portion.
3. The high-strength aluminum alloy anti-skid embedded channel as claimed in claim 2, wherein the cross section of the clamping portion (501) is rectangular with a pair of diagonal fillet leads.
4. The high-strength aluminum alloy anti-skid embedded channel as claimed in claim 1, wherein the upper top surface of the channel body (1) is further provided with reinforcing components (2) at intervals for tightly connecting the channel body (1) and concrete.
5. The high-strength aluminum alloy anti-skid embedded channel as claimed in claim 4, wherein the reinforcing component (2) comprises a vertical supporting plate fixedly arranged at the top of the tank body (1), and a horizontal supporting plate is fixedly arranged at the top of the vertical supporting plate.
6. The anti-skidding embedded channel of the high-strength aluminum alloy as claimed in claim 4, wherein the reinforcing component (2) comprises a vertical supporting plate fixedly arranged at the top of the groove body (1), a V-shaped supporting plate is arranged at the top of the vertical supporting plate, and the opening of the V-shaped supporting plate is opposite to the C-shaped opening of the groove body in direction.
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CN202220853134.8U CN217580592U (en) | 2022-04-11 | 2022-04-11 | High-strength aluminum alloy anti-skid embedded channel |
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CN202220853134.8U CN217580592U (en) | 2022-04-11 | 2022-04-11 | High-strength aluminum alloy anti-skid embedded channel |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN116677083A (en) * | 2023-06-15 | 2023-09-01 | 扬州市金诺尔不锈钢有限公司 | Pre-buried channel subassembly and anti-skidding pre-buried channel |
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2022
- 2022-04-11 CN CN202220853134.8U patent/CN217580592U/en active Active
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN116677083A (en) * | 2023-06-15 | 2023-09-01 | 扬州市金诺尔不锈钢有限公司 | Pre-buried channel subassembly and anti-skidding pre-buried channel |
CN116677083B (en) * | 2023-06-15 | 2024-05-10 | 扬州市金诺尔不锈钢有限公司 | Pre-buried channel subassembly and anti-skidding pre-buried channel |
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