CN211396303U - Sliding assembly of metal enclosure system - Google Patents
Sliding assembly of metal enclosure system Download PDFInfo
- Publication number
- CN211396303U CN211396303U CN201922092760.0U CN201922092760U CN211396303U CN 211396303 U CN211396303 U CN 211396303U CN 201922092760 U CN201922092760 U CN 201922092760U CN 211396303 U CN211396303 U CN 211396303U
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- Prior art keywords
- buckling
- connecting portion
- buckled
- containment system
- roof panel
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Abstract
The embodiment of the utility model provides a metal containment system's slip subassembly includes: the first connecting part of the first buckling piece and the third connecting part of the second buckling piece are buckled with each other, and the buckling groove first part and the buckling groove second part form a buckling groove buckled with the roof panel mutually, so that the roof panel is more tightly locked, the roof panel is prevented from being locked and released, and the wind resistance is provided; the second connecting part and the fifth connecting part are mutually buckled, so that the first buckling part and the second buckling part of the sliding assembly and the third buckling part can respectively slide and move back and forth due to the triangular buckling stability principle, and the upper and lower structures are firm; the connecting plate of the third buckling piece becomes a connecting and converting platform and is connected with other material accessories of the roof panel; in addition, the roof panel and other material accessories are connected through the sliding assembly, so that the roof panel and the other material accessories are in a sliding state, the damage of thermal displacement to a roof system is reduced, and the service life of the roof system is prolonged.
Description
Technical Field
The utility model relates to a building metal envelope field especially relates to a metal enclosure system's slip subassembly.
Background
The metal enclosure system is an outer decoration commonly used in the field of steel structures of buildings at present, has the advantages of light weight, beautiful appearance and variable shapes, becomes the mainstream form of buildings such as steel structures and the like, and has the characteristics of high durability, plasticity, strength and the like. The application of the ultra-long plate often exists in the application of large-scale venue projects, the thermal expansion and cold contraction phenomena of the ultra-long plate often cause damage of the enclosure system, the displacement of thermal expansion and cold contraction between the plates can influence the fixation and the service life of the plates, and the wind resistance of the system can be influenced.
SUMMERY OF THE UTILITY MODEL
The embodiment of the utility model discloses metal containment system's slip subassembly has solved the problem of the firm of slip displacement, structure lock between roof boarding and other materials, metal sheet wind resistance ability and the influence of reduction heat displacement to the system of metal containment system.
The embodiment of the utility model provides a metal containment system's slip subassembly, include:
the first buckling piece is provided with a first connecting part, a second connecting part and a buckling groove first subsection;
the second buckling piece is provided with a third connecting part, a fourth connecting part and a second sub-part of the buckling groove;
a third fastener comprising a fifth runner bar and a web, the fifth runner bar being attached to the web;
the first connecting part and the third connecting part are buckled with each other, so that the buckling groove first part and the buckling groove second part form a buckling groove buckled with the roof panel;
the fifth connecting part is buckled with the second connecting part or the fourth connecting part.
The first connecting portion, the second connecting portion and the fourth connecting portion are grooves, the third connecting portion and the fifth connecting portion are protruding buckling portions, and the buckling portions are buckled into the grooves to achieve mutual buckling.
The first connecting part is of an inwards concave triangular structure.
Wherein the first connection portion, the second connection portion, and the fourth connection portion are identical.
The third connecting part is of a raised triangular structure, the fifth connecting part is of the same structure as the third connecting part, and the raised triangular structure of the third connecting part is tightly buckled in the concave triangular structure of the first connecting part.
The first sub-part of the buckling groove comprises an arc surface, an inclined surface and a vertical surface which are connected in sequence.
The first part of the buckling groove and the second part of the buckling groove are in mutually symmetrical structures along the top point of the cambered surface.
Wherein, round holes are arranged on the first buckling piece and the second buckling piece.
According to the technical solution provided by the utility model, the embodiment of the utility model has the following advantage:
the embodiment of the utility model provides a metal containment system's slip subassembly includes: the first connecting part of the first buckling piece and the third connecting part of the second buckling piece are buckled with each other, and the buckling groove first part and the buckling groove second part form a buckling groove buckled with the roof panel mutually, so that the roof panel is more tightly locked, the roof panel is prevented from being locked and released, and the wind resistance is provided; the second connecting part and the fifth connecting part are buckled with each other, and the fifth connecting part and the fourth buckling part of the other third buckling part are buckled with each other, so that the first buckling part and the second buckling part are buckled with the third buckling part respectively, and the first buckling part, the second buckling part and the third buckling part of the sliding assembly can slide and move back and forth due to the triangular buckling stability principle, and the upper and lower structures are firm; the connecting plate of the third buckling piece becomes a connecting and converting platform and is connected with other roof panels or other material accessories; in addition, the roof panel and other material accessories are connected through the sliding assembly, so that the roof panel and the other material accessories are in a sliding state, the damage of thermal displacement to a roof system is reduced, and the service life of the roof system is prolonged.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings needed to be used in the description of the embodiments or the prior art will be briefly described below, it is obvious that the drawings in the following description are only some embodiments of the present invention, and for those skilled in the art, other drawings can be obtained according to the drawings without inventive exercise.
Fig. 1 is a schematic structural diagram of a sliding assembly of a metal containment system provided in an embodiment of the present invention;
fig. 2 is a front view of a sliding assembly of a metal containment system provided in an embodiment of the present invention;
Detailed Description
The embodiment of the utility model discloses a sliding component of a metal enclosure system;
referring to fig. 1, an embodiment of a sliding assembly of a metal enclosure system according to an embodiment of the present invention includes:
the first fastener 1 is provided with a first connecting part 11, a second connecting part 12 and a fastening groove first sub-part 13;
the second fastener 2 is provided with a third connecting part 21, a fourth connecting part 22 and a fastening groove second sub-part 23;
a third fastener, said third fastener 3 comprising a fifth runner-up 31 and a runner-up panel, said fifth runner-up 31 being connected to said runner-up panel 32; preferably, the fifth connecting portion 31 is connected to an end of the connecting plate 32.
The first connecting part 11 and the third connecting part 21 are mutually buckled, so that the buckling groove first sub-part 13 and the buckling groove second sub-part 23 form a buckling groove mutually buckled with the roof panel; the first buckling piece 1 and the second buckling piece 2 are buckled together to form a buckling groove capable of being buckled with a roof panel, the buckling groove is convenient to install, and the two separated buckling grooves formed by buckling the first buckling piece 1 and the second buckling piece 2 are convenient to disassemble and assemble; prevent the roof boarding closure dropout, provide the wind resistance ability.
The fifth connection portion 31 is engaged with the second connection portion 12 or the fourth connection portion 22. The fourth connecting portion 22 is fastened to another third fastener 3. The other end of the connecting plate 32 can be connected with other roof panels or other material accessories, and the other end of the connecting plate 32 can also be connected with the same structure as the fifth connecting part 31 and used for connecting another first buckling piece 1. The first buckling piece 1 and the second buckling piece 2 of the sliding assembly and the third buckling piece 3 can respectively slide and move back and forth according to the triangular buckling stability principle, so that the upper and lower structures are firm; the connecting plate 32 of the third fastener 3 becomes a connecting and converting platform and is connected with other roof panels or other material accessories; in addition, the roof panel and other material accessories are connected through the sliding assembly, so that the roof panel and the other material accessories are in a sliding state, the damage of thermal displacement to a roof system is reduced, and the service life of the roof system is prolonged.
The first connecting portion 11, the second connecting portion 12 and the fourth connecting portion 22 are grooves, the third connecting portion 21 and the fifth connecting portion 31 are protruding buckling portions, and the buckling portions are buckled into the grooves to achieve mutual buckling. The arrangement of the groove and the protruding buckling part can realize that when the buckling part is buckled into the groove, the first buckling part 1 and the second buckling part 2 can be buckled together more tightly, so that no gap is left, and the buckling groove formed after buckling and the roof panel can be locked more tightly.
The first connecting portion 11 is a concave triangular structure. The inward-concave triangular structure is a structure with a small opening and a large concave surface, and can realize the fastening effect. The first connecting portion 11 may also be a protruding trapezoid structure, or another structure having a small opening and a large concave surface for fastening.
Wherein the first connecting portion 11, the second connecting portion 12 and the fourth connecting portion 22 are identical. The management of unified standardization of the structure and the size is facilitated at the time of processing, and additional design or processing cost is not required to be added due to the difference of the first connecting portion 11, the second connecting portion 12 and the fourth connecting portion 22.
The third connecting portion 21 is a raised triangular structure, the fifth connecting portion 31 is the same as the third connecting portion 21 in structure, and the raised triangular structure of the third connecting portion 21 is tightly buckled in the recessed triangular structure of the first connecting portion 11. The third connecting portion 21 and the first connecting portion 11 correspond to each other so that the fastened fastening groove can be more tightly engaged with the roof deck.
The first sub-part 13 of the buckling groove comprises an arc surface, an inclined surface and a vertical surface which are connected in sequence. The fastening groove first sub-portion 13 and the fastening groove second sub-portion 23 are symmetrical to each other along the vertex of the arc surface. The buckling groove formed after the first buckling piece 1 and the second buckling piece 2 are buckled is small in opening and large in inner groove, and the roof plate is locked through the opening.
Wherein, round holes are arranged on the first buckling piece 1 and the second buckling piece 2. So that the first fastener 1 and the second fastener 2 are better connectable to other accessories.
It is right above the utility model provides a metal containment system's slip subassembly introduces in detail, to the general technical personnel in this field, according to the utility model discloses the thought of embodiment all has the change part on concrete implementation and application scope, to sum up, this description content should not be understood as right the utility model discloses a restriction.
Claims (8)
1. A slide assembly for a metal containment system, comprising:
the first buckling piece is provided with a first connecting part, a second connecting part and a buckling groove first subsection;
the second buckling piece is provided with a third connecting part, a fourth connecting part and a second sub-part of the buckling groove;
a third fastener comprising a fifth runner bar and a web, the fifth runner bar being attached to the web;
the first connecting part and the third connecting part are buckled with each other, so that the buckling groove first part and the buckling groove second part form a buckling groove buckled with the roof panel;
the fifth connecting parts are mutually buckled with the second connecting parts or the fourth connecting parts.
2. The sliding assembly of a metal containment system of claim 1, wherein the first connecting portion, the second connecting portion and the fourth connecting portion are all grooves, and the third connecting portion and the fifth connecting portion are all raised buckling portions that buckle into the grooves to achieve mutual buckling.
3. A sliding assembly of a metal containment system according to claim 2, wherein the first connecting portion is a concave triangular structure.
4. A metal containment system slide assembly according to claim 3, wherein the first connection portion, the second connection portion and the fourth connection portion are identical.
5. The sliding assembly of a metal containment system of claim 4, wherein the third connecting portion is a raised triangular structure, the fifth connecting portion is of the same structure as the third connecting portion, and the raised triangular structure of the third connecting portion is tightly engaged with the recessed triangular structure of the first connecting portion.
6. The sliding assembly of a metal containment system of claim 5, wherein the first section of the snap-fit channel comprises a curved surface, a sloped surface, and a vertical surface that are connected in series.
7. The metal containment system slide assembly of claim 6, wherein the first snap-fit channel section and the second snap-fit channel section are symmetrical to each other along the apex of the arc.
8. The metal containment system slide assembly of claim 7, wherein the first fastener and the second fastener each have a circular aperture.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201922092760.0U CN211396303U (en) | 2019-11-28 | 2019-11-28 | Sliding assembly of metal enclosure system |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201922092760.0U CN211396303U (en) | 2019-11-28 | 2019-11-28 | Sliding assembly of metal enclosure system |
Publications (1)
Publication Number | Publication Date |
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CN211396303U true CN211396303U (en) | 2020-09-01 |
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Family Applications (1)
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CN201922092760.0U Active CN211396303U (en) | 2019-11-28 | 2019-11-28 | Sliding assembly of metal enclosure system |
Country Status (1)
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CN (1) | CN211396303U (en) |
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2019
- 2019-11-28 CN CN201922092760.0U patent/CN211396303U/en active Active
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