CN216196343U - Shock attenuation buffering aluminium alloy layering - Google Patents
Shock attenuation buffering aluminium alloy layering Download PDFInfo
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- CN216196343U CN216196343U CN202122920040.6U CN202122920040U CN216196343U CN 216196343 U CN216196343 U CN 216196343U CN 202122920040 U CN202122920040 U CN 202122920040U CN 216196343 U CN216196343 U CN 216196343U
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Abstract
The utility model relates to the technical field of pressing strips, in particular to a damping and buffering aluminum profile pressing strip which comprises: the first transition plate and the second transition plate are respectively fixed on two sides of the fixed frame; the supporting mechanism is fixed on the first transition plate and the second transition plate and comprises a supporting plate and a plurality of supporting frames, the supporting plate is fixed on the second transition plate, and the plurality of supporting frames are uniformly distributed and fixed on the first transition plate; the fixing mechanism is arranged on the fixing frame. The utility model not only makes the junction between two wood floors with different heights look more beautiful, but also can protect the wood floors.
Description
Technical Field
The utility model relates to the technical field of pressing strips, in particular to a damping and buffering aluminum profile pressing strip.
Background
When interior decoration, in order to pursue higher comfort level, can be at indoor subaerial shop dress timber apron, to some self-construction houses, sometimes not all the floors in room all are in same horizontal plane, on the premise of not utilizing the concrete again all the floors in room all to repair on same horizontal plane, the difference in height of timber apron can appear in the juncture in two rooms that have the difference in level, do not have the layering that is exclusively used in two timber apron junctures of difference in height again at present, this juncture that lets the timber apron not only unsightly, in the in-process of using, still play the marginal of bellied timber apron very easily, consequently, need a shock attenuation buffering aluminium alloy layering to satisfy the demand.
SUMMERY OF THE UTILITY MODEL
The utility model aims to solve the problem that the joint of two wood floors with different heights in the prior art is not protected by a special pressing strip, and provides a damping and buffering aluminum profile pressing strip.
In order to achieve the purpose, the utility model adopts the following technical scheme:
design a shock attenuation buffering aluminium alloy layering, include:
the first transition plate and the second transition plate are respectively fixed on two sides of the fixed frame;
the supporting mechanism is fixed on the first transition plate and the second transition plate and comprises a supporting plate and a plurality of supporting frames, the supporting plate is fixed on the second transition plate, and the plurality of supporting frames are uniformly distributed and fixed on the first transition plate;
the fixing mechanism is arranged on the fixing frame.
Preferably, the fixing mechanism comprises a fastening component and a clamping component, the fastening component is arranged on the clamping component, and the clamping component is arranged on the fixing frame.
Preferably, the block subassembly includes limiting plate, a plurality of protruding strip and a plurality of recess, the limiting plate cartridge is in the mount, it is a plurality of protruding strip equipartition is fixed on the outer wall of limiting plate both sides, it is a plurality of the recess equipartition is established on the inner wall of mount both sides, it is a plurality of protruding strip cartridge respectively is in a plurality of in the recess, fastening assembly establishes on the limiting plate.
Preferably, the fastening assembly comprises a plurality of holes, a plurality of fastening bolts and a plurality of threaded holes, the holes are uniformly distributed on the two side walls of the fixing frame and are multiple, the threaded holes are uniformly distributed and symmetrically arranged on the two side walls of the limiting plate, the fastening bolts are arranged in the threaded holes in a symmetrical mode, and the fastening bolts penetrate through the holes.
Preferably, a reinforcing rib is fixed between every two adjacent fastening bolts and fixed on the limiting plate.
The shock absorption buffering aluminum profile pressing strip provided by the utility model has the beneficial effects that: this shock attenuation buffering aluminium alloy layering is when using, utilize fixed establishment to fix the mount on high higher timber apron, the mount is established in the one side of high higher timber apron, the second crosses the cab apron and contacts with the surface of high higher timber apron with the backup pad, the first cab apron of crossing contacts with the surface of a plurality of support frames and high lower timber apron, utilize the second to cross the cab apron, the mount and the first juncture of crossing the cab apron between two timber apron of high difference play the effect of transition and protection, not only let the juncture between two timber apron of high difference seem more pleasing to the eye, can also protect the timber apron.
Drawings
FIG. 1 is a schematic structural view of a shock-absorbing buffering aluminum profile pressing strip provided by the utility model;
FIG. 2 is a right side view at A-A in FIG. 1 of a shock-absorbing buffering aluminum profile batten according to the utility model;
fig. 3 is a perspective view of the assembly of the limiting plate, the plurality of protruding strips and the plurality of threaded holes of the shock absorption buffering aluminum profile pressing strip provided by the utility model.
In the figure: the device comprises a first transition plate 1, a fixing frame 2, a second transition plate 3, holes 4, a supporting plate 5, a supporting frame 6, a limiting plate 7, fastening bolts 8, reinforcing ribs 9, protruding strips 10 and threaded holes 11.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments.
Example 1
Referring to fig. 1, a shock attenuation buffering aluminium alloy layering includes:
the fixing frame 2, the first transition plate 1 and the second transition plate 3 are made of aluminum profiles, and the fixing frame 2, the first transition plate 1 and the second transition plate 3 are respectively fixed on two sides of the fixing frame 2; the first transition plate 1 and the second transition plate 3 are both arc-shaped structures, the fixing frame 2 is of an inverted Contraband-shaped structure, the first transition plate 1 and the second transition plate 3 of the arc-shaped structures are matched with the fixing frame 2 of the Contraband-shaped structure, and the fixing frame 2, the first transition plate 1 and the second transition plate 3 have the function of shock absorption and buffering integrally.
The supporting mechanism is fixed on the first transition plate 1 and the second transition plate 3 and comprises a supporting plate 5 and a plurality of supporting frames 6, the supporting plate 5 is fixed on the second transition plate 3, the supporting plate 5 supports the second transition plate 3, and the plurality of supporting frames 6 are uniformly distributed and fixed on the first transition plate 1; the plurality of support frames 6 support the first transition plate 1, and when the first transition plate 1 and the second transition plate 3 are excessively extruded, the support plates 5 and the plurality of support frames 6 can prevent the first transition plate 1 and the second transition plate 3 from being extruded and deformed.
The fixing mechanism is arranged on the fixing frame 2. The fixing frame 2 is fixed on the wood floor by a fixing mechanism.
This shock attenuation buffering aluminium alloy layering is when using, utilize fixed establishment to fix mount 2 on high higher timber apron, mount 2 is established in one side of high higher timber apron, the second crosses cab apron 3 and backup pad 5 and the surface of high higher timber apron and contacts, the first cab apron 1 and a plurality of support frame 6 and the surface of high lower timber apron contact, the cab apron 3 is crossed to the utilization second, mount 2 and first cab apron 1 play the effect of transition and protection in the juncture between two timber apron of high difference, not only let the juncture between two timber apron of high difference seem more pleasing to the eye, can also protect the timber apron.
Example 2
On the basis of embodiment 1, referring to fig. 1 to 3, as another preferred embodiment of the present invention, the difference from embodiment 1 is that the fixing mechanism includes a fastening member and a fastening member, the fastening member is provided on the fastening member, and the fastening member is provided on the fixing frame 2. The clamping component is used for clamping on the fixing frame 2, and is fixed by fixing the fastening component on the wood floor, so that the fixing frame 2 is fixed on the wood floor.
The block subassembly includes limiting plate 7, a plurality of protruding strip 10 and a plurality of recess, limiting plate 7 cartridge is in mount 2, limiting plate 7 is the structure of falling Contraband font, the limiting plate 7 of the structure of falling Contraband font and the shape phase-match of mount 2, utilize limiting plate 7 to play the effect of support for mount 2, strengthen mount 2's the anti-deformation ability, a plurality of protruding strip 10 equipartitions are fixed on the outer wall of limiting plate 7 both sides, a plurality of recess equipartitions are established on the inner wall of mount 2 both sides, a plurality of protruding strip 10 cartridge respectively is in a plurality of recesses, when the installation, install 2 blocks of mount on limiting plate 7, after mount 2 installs to target in place, protruding strip 10 cartridge is in the recess, under the spacing of recess, mount 2 can not take off from limiting plate 7, the fastening subassembly is established on limiting plate 7. The limiting plate 7 is fixed on the wood floor by a fastening assembly.
Fastening components includes a plurality of holes 4, a plurality of fastening bolt 8 and a plurality of screw hole 11, and a plurality of holes 4 equipartitions are established on the both sides wall of mount 2, and hole 4 runs through for falling Contraband font structure and establishes on mount 2, and a plurality of screw hole 11 equipartitions and symmetry are established on the both sides wall of limiting plate 7, and screw hole 11 is used for installing fastening bolt 8, and 8 threaded mounting of fastening bolt are in two screw holes 11 of symmetry, and fastening bolt 8 runs through hole 4 and sets up. The holes 4 are arranged, so that the fastening bolts 8 cannot influence the installation of the fixing frame 2 on the limiting plate 7.
A reinforcing rib 9 is fixed between every two adjacent fastening bolts 8, the reinforcing rib 9 is of an O-shaped structure, and the reinforcing rib 9 is fixed on the limiting plate 7. The reinforcing ribs 9 increase the deformation resistance of the stopper plate 7.
When in actual use, utilize fastening bolt 8 to install the mode in high higher timber apron side, fix limiting plate 7 on high higher timber apron, and the surface of limiting plate 7 and high lower timber apron contacts, then install mount 2 on limiting plate 7, utilize the mutual block between protruding strip 10 and the recess, fix mount 2 on limiting plate 7, the surface of cab apron 3 and backup pad 5 and high higher timber apron contacts is crossed to the second, the surface of cab apron 1 and a plurality of support frame 6 and high lower timber apron contacts for the first time.
The above description is only for the preferred embodiment of the present invention, but the scope of the present invention is not limited thereto, and any person skilled in the art should be considered to be within the technical scope of the present invention, and equivalent alternatives or modifications according to the technical solution of the present invention and the inventive concept thereof should be covered by the scope of the present invention.
Claims (5)
1. The utility model provides a shock attenuation buffering aluminium alloy layering which characterized in that includes:
the device comprises a fixed frame (2), a first transition plate (1) and a second transition plate (3), wherein the first transition plate (1) and the second transition plate (3) are respectively fixed on two sides of the fixed frame (2);
the supporting mechanism is fixed on the first transition plate (1) and the second transition plate (3) and comprises a supporting plate (5) and a plurality of supporting frames (6), the supporting plate (5) is fixed on the second transition plate (3), and the plurality of supporting frames (6) are uniformly distributed and fixed on the first transition plate (1);
the fixing mechanism is arranged on the fixing frame (2).
2. The shock-absorbing buffering aluminum profile pressing strip as claimed in claim 1, wherein the fixing mechanism comprises a fastening component and a clamping component, the fastening component is arranged on the clamping component, and the clamping component is arranged on the fixing frame (2).
3. The shock-absorbing buffering aluminum profile pressing bar as claimed in claim 2, wherein the clamping assembly comprises a limiting plate (7), a plurality of protruding strips (10) and a plurality of grooves, the limiting plate (7) is inserted into the fixing frame (2), the plurality of protruding strips (10) are uniformly distributed and fixed on the outer walls of two sides of the limiting plate (7), the plurality of grooves are uniformly distributed and arranged on the inner walls of two sides of the fixing frame (2), the plurality of protruding strips (10) are respectively inserted into the plurality of grooves, and the fastening assembly is arranged on the limiting plate (7).
4. The shock absorption buffering aluminum profile pressing strip according to claim 3, wherein the fastening assembly comprises a plurality of holes (4), a plurality of fastening bolts (8) and a plurality of threaded holes (11), the holes (4) are uniformly distributed on two side walls of the fixing frame (2), the threaded holes (11) are uniformly distributed and symmetrically arranged on two side walls of the limiting plate (7), the fastening bolts (8) are installed in the threaded holes (11) symmetrically in a threaded mode, and the fastening bolts (8) penetrate through the holes (4).
5. The shock-absorbing buffering aluminum profile pressing strip as claimed in claim 4, wherein a reinforcing rib (9) is fixed between two adjacent fastening bolts (8), and the reinforcing rib (9) is fixed on the limiting plate (7).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202122920040.6U CN216196343U (en) | 2021-11-26 | 2021-11-26 | Shock attenuation buffering aluminium alloy layering |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN202122920040.6U CN216196343U (en) | 2021-11-26 | 2021-11-26 | Shock attenuation buffering aluminium alloy layering |
Publications (1)
Publication Number | Publication Date |
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CN216196343U true CN216196343U (en) | 2022-04-05 |
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CN202122920040.6U Active CN216196343U (en) | 2021-11-26 | 2021-11-26 | Shock attenuation buffering aluminium alloy layering |
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CN (1) | CN216196343U (en) |
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2021
- 2021-11-26 CN CN202122920040.6U patent/CN216196343U/en active Active
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