Square tube frame of horizontal tube rear-mounted type
Technical Field
The invention mainly relates to the field of constructional engineering, in particular to a horizontal pipe rear-mounted square pipe frame.
Background
Traditional square tube frame installation, the connection between its horizontal pipe and the standpipe needs to adopt the connection accessory. When the field frame is installed, the vertical pipes are installed on one side, the connecting fittings are installed on the vertical pipes, one end of the transverse pipe is connected with the connecting fittings on the side, the other vertical pipes are installed on the other side, the connecting fittings are connected with the other ends of the transverse pipes, and the vertical pipes are installed in an orderly manner from one side to the other side in a reciprocating manner. By adopting the installation mode, the transverse pipe cannot be assembled later, the field installation is very inconvenient, time and labor are wasted, and meanwhile, the construction difficulty is high, so that the construction efficiency is seriously influenced.
Disclosure of Invention
The invention aims to solve the technical problem of overcoming the defects of the prior art and providing the transverse pipe rear-mounted square pipe frame which is flexible and convenient to mount, can reduce construction difficulty and can improve construction efficiency.
In order to solve the technical problems, the invention adopts the following technical scheme:
The utility model provides a horizontal pipe rear-mounted formula side's pipe frame, includes horizontal side's pipe, erects side's pipe, connecting piece, first retaining member and second retaining member, the connecting piece passes through first retaining member fastening on erects side's pipe outer wall, horizontal side's pipe is pegged graft with the connecting piece along self radial direction, and horizontal side's pipe passes through second retaining member and connecting piece fastening.
As a further improvement of the above technical scheme:
and an avoidance socket for avoiding the connecting piece is formed in one side wall of the transverse square tube.
The connecting piece includes first connecting plate, first connecting plate both ends are buckled and are had the plugboard, and one side of first connecting plate has still been buckled and have the second connecting plate, first connecting plate is through first retaining member and the fastening of perpendicular side's pipe outer wall, the dodge socket of horizontal side's pipe is pegged graft with two plugboards, the second connecting plate passes through second retaining member and the fastening of horizontal side's pipe.
The transverse square tube is provided with a groove, and the second connecting plate is fastened with the bottom wall of the groove through a second locking piece.
The avoidance socket is arranged on the edge of the bottom wall of the groove.
The avoidance socket is arranged at the edges of the pipe walls at two sides of the groove.
The connecting piece includes first connecting plate, first connecting plate one end is buckled and is had the folded plate, folded plate both ends are rolled over and are had the plugboard, first connecting plate is through first retaining member and perpendicular side's pipe outer wall fastening, the dodge socket of horizontal side's pipe is pegged graft with two plugboards, and one plugboard passes through second retaining member and horizontal side's pipe fastening.
The square tube is provided with a groove, the avoidance socket is formed at the edges of the tube walls at two sides of the groove, and one of the plugboards is fastened with the bottom wall of the square tube through a second locking piece.
A gap is reserved between the first connecting plate and the two plugboards.
Compared with the prior art, the invention has the advantages that:
The invention relates to a square tube frame with a rear-mounted transverse tube, which comprises a transverse square tube, a vertical square tube, a connecting piece, a first locking piece and a second locking piece, wherein the connecting piece is fastened on the outer wall of the vertical square tube through the first locking piece, the transverse square tube is spliced with the connecting piece along the radial direction of the transverse square tube, and the transverse square tube is fastened with the connecting piece through the second locking piece. During installation, all vertical square pipes are installed firstly, then the connecting piece is fastened on the outer wall of the vertical square pipe through the first locking piece, then the horizontal square pipe is spliced with the connecting piece along the radial direction of the horizontal square pipe, and finally the horizontal square pipe is fastened with the connecting piece through the second locking piece. Compared with the traditional structure, the square pipe frame can be used for installing the vertical square pipes and then installing the horizontal square pipes, so that the rear installation of the horizontal square pipes is realized, the field installation is flexible and convenient, the time and the labor are saved, the construction difficulty is reduced, and the construction efficiency is improved.
Drawings
Fig. 1 is a schematic structural view of embodiment 1 of the present invention.
Fig. 2 is a schematic perspective exploded view of embodiment 1 of the present invention.
Fig. 3 is a schematic structural view of a connector in embodiment 1 of the present invention.
Fig. 4 is a schematic structural view of embodiment 2 of the present invention.
Fig. 5 is a schematic perspective exploded view of embodiment 2 of the present invention.
Fig. 6 is a schematic structural view of a connector in embodiment 2 of the present invention.
Fig. 7 is a schematic structural view of embodiment 3 of the present invention.
Fig. 8 is a schematic view of the structure of example 3 of the present invention (the state in which the horizontal square tube is not attached).
Fig. 9 is a schematic perspective exploded view of embodiment 3 of the present invention.
Fig. 10 is a schematic structural view of a connector in embodiment 3 of the present invention.
The reference numerals in the drawings denote:
1. The device comprises a horizontal square pipe, 11, a avoidance socket, 12, a groove, 2, a vertical square pipe, 3, a connecting piece, 31, a first connecting plate, 32, a plugboard, 33, a second connecting plate, 34, a folded plate, 4, a first locking piece and 5, and a second locking piece.
Detailed Description
The invention will be described in further detail with reference to the drawings and the specific examples.
Example 1:
Fig. 1 to 3 show a first embodiment of the horizontal pipe afterloading type square pipe frame of the present invention, which comprises a horizontal square pipe 1, a vertical square pipe 2, a connecting piece 3, a first locking piece 4 and a second locking piece 5, wherein the connecting piece 3 is fastened on the outer wall of the vertical square pipe 2 through the first locking piece 4, the horizontal square pipe 1 is inserted into the connecting piece 3 along the radial direction of the horizontal square pipe 1, and the horizontal square pipe 1 is fastened with the connecting piece 3 through the second locking piece 5. During installation, all vertical square pipes 2 are installed firstly, then connecting pieces 3 are fastened on the outer walls of the vertical square pipes 2 through first locking pieces 4, then the horizontal square pipes 1 are spliced with the connecting pieces 3 along the radial direction of the horizontal square pipes 1, and finally the horizontal square pipes 1 are fastened with the connecting pieces 3 through second locking pieces 5. Compared with the traditional structure, the square pipe frame can be used for firstly installing the vertical square pipes 2 and then installing the horizontal square pipes 1, so that the rear installation of the horizontal square pipes 1 is realized, the field installation is flexible and convenient, the time and the labor are saved, the construction difficulty is reduced, and the construction efficiency is improved.
In this embodiment, a side wall of the square tube 1 is provided with a relief socket 11 for relieving the connecting member 3. In this structure, dodge socket 11 realizes on the one hand that horizontal side pipe 1 is pegged graft and dodges the effect when, on the other hand realize with connecting piece 3 peg graft the cooperation, its simple structure is reliable.
In this embodiment, the connecting piece 3 includes a first connecting plate 31, two ends of the first connecting plate 31 are bent with a plug board 32, one side of the first connecting plate 31 is further bent with a second connecting plate 33, the first connecting plate 31 is fastened with the outer wall of the vertical square tube 2 through a first locking member 4, the avoidance socket 11 of the horizontal square tube 1 is inserted with two plug boards 32, and the second connecting plate 33 is fastened with the horizontal square tube 1 through a second locking member 5. In this structure, the first connecting plate 31 is connected with the vertical square tube 2 through the first locking member 4, the second connecting plate 33 is connected with the horizontal square tube 1 through the second locking member 5, and the two plug-in boards 32 are plugged with the horizontal square tube 1, so that the rear assembly of the horizontal square tube 1 is realized. The first locking member 4 and the second locking member 5 are each provided as a bolt.
In this embodiment, the transverse square tube 1 is provided with a groove 12, and the second connecting plate 33 is fastened to the bottom wall of the groove 12 by the second locking member 5. In this structure, the arrangement of the groove 12 can enable the second connecting plate 33 and the second locking piece 5 to be hidden in the groove 12, so that the appearance is more attractive and more durable.
In this embodiment, the avoiding socket 11 is formed at the edge of the bottom wall of the groove 12. This arrangement allows the entire connector 3 to be submerged in the square tube 1, further improving the external visual effect.
Example 2:
fig. 4 to 6 show a second embodiment of the horizontal tube rear-loading square tube frame of the present invention, which is substantially the same as embodiment 1, except that in this embodiment, the avoiding sockets 11 are provided at the edges of the tube walls on both sides of the groove 12. The arrangement makes the pipe wall of the horizontal square pipe 1 below the avoidance jack 11 and the plugboard 32 form mutual support, so that the strength is improved.
Example 3:
Fig. 7 to 10 show a third embodiment of a square tube frame of the present invention, which is basically the same as embodiment 1, except that in this embodiment, the connector 3 includes a first connecting plate 31, one end of the first connecting plate 31 is bent with a folded plate 34, two ends of the folded plate 34 are folded with a plug plate 32, the first connecting plate 31 is fastened to the outer wall of the vertical square tube 2 by a first locking member 4, the avoidance socket 11 of the horizontal square tube 1 is plugged into two plug plates 32, and one of the plug plates 32 is fastened to the horizontal square tube 1 by a second locking member 5. In this structure, the first connecting plate 31 is connected with the vertical square tube 2 through the first locking member 4, wherein a plug-in plate 32 and the second locking member 5 are connected with the horizontal square tube 1, and the two plug-in plates 32 are connected with the horizontal square tube 1 in a plug-in manner, so that the rear assembly of the horizontal square tube 1 is realized.
In this embodiment, the transverse square tube 1 is provided with a groove 12, the avoiding socket 11 is formed at the edges of the tube walls at two sides of the groove 12, and one of the plug boards 32 is fastened with the bottom wall of the transverse square tube 1 through the second locking member 5. The avoiding jack 11 is arranged at the edges of the pipe walls at the two sides of the groove 12. The arrangement makes the pipe wall of the horizontal square pipe 1 below the avoidance jack 11 and the plugboard 32 form mutual support, so that the strength is improved. The second locking piece 5 is fastened with the bottom wall of the transverse square tube 1 to form a surrounding structure corresponding to the transverse square tube 1, and the structure is simple and reliable.
In the present embodiment, a gap is left between the first connecting board 31 and the two plug boards 32. The gap enables the pipe wall of the horizontal square pipe 1 below the avoidance socket 11 to further form a support in the gap, and the structure is simple and the design is ingenious.
While the invention has been described in terms of preferred embodiments, it is not intended to be limiting. Many possible variations and modifications of the disclosed technology can be made by anyone skilled in the art, or equivalent embodiments with equivalent variations can be made, without departing from the scope of the invention. Therefore, any simple modification, equivalent variation and modification of the above embodiments according to the technical substance of the present invention shall fall within the scope of the technical solution of the present invention.