Disclosure of Invention
The invention provides a building construction reinforced connecting structure, and aims to solve the problems in the prior art.
The invention is realized by the following steps:
a building construction reinforcing and connecting structure comprises a first supporting rod, a second supporting rod, a third supporting rod and a connecting member, wherein the connecting member comprises a first connecting ring, a second connecting ring, a third connecting ring, a first connecting rod and a second connecting rod, the first connecting ring is connected to the outer portion of the first supporting rod, the second connecting ring is connected to the outer portion of the second supporting rod, and the third connecting ring is connected to the outer portion of the third supporting rod; one end of the first connecting rod is hinged with the first connecting ring, the other end of the first connecting rod is hinged with the second connecting ring, one end of the second connecting rod is hinged with the first connecting ring, and the other end of the second connecting rod is hinged with the third connecting ring; the first supporting rod, the second supporting rod and the third supporting rod are all of telescopic structures, and the first connecting rod and the second connecting rod are also of telescopic structures.
Furthermore, a movable rod hinged with the first connecting rod is arranged on the first connecting rod, a clamping seat is arranged on the second connecting rod, and the end part of the movable rod can be clamped into the clamping seat.
Furthermore, a connecting seat is arranged on the outer side of the first connecting ring, the connecting seat is rotatably connected with the first connecting ring to enable the connecting seat to rotate around a horizontal axis, and the end part of the first connecting rod and the end part of the second connecting rod are both connected to the outer side of the connecting seat; an upper baffle is arranged at the top of the connecting seat, and the end part of the first connecting rod is attached to the bottom of the upper baffle when the connecting member is opened; the bottom of the second connecting ring is provided with a lower baffle, and the end part of the second connecting rod is attached to the top of the lower baffle when the connecting member is opened;
when the first support rod and the second support rod are in reverse directions and the first support rod, the second support rod and the connecting member are in a contraction state, the two ends of the first support rod and the second support rod are flush; when the first supporting rod and the second supporting rod are in the same direction and the first supporting rod, the second supporting rod and the connecting member are in an extending state, the two ends of the first supporting rod and the two ends of the second supporting rod are parallel and level.
Further, the second support rod and the third support rod have the same structure, the second support rod comprises a main rod and an inner rod, the inner rod is movably connected in the main rod, and the second connecting ring is connected to the outer part of the main rod; a positioning piece is arranged on the side part of one end, close to the second supporting rod, of the first connecting rod, a through hole is formed in the main rod, and the end part of the positioning piece penetrates through the through hole and extends into the main rod; the side part of the inner rod is provided with a strip-shaped positioning groove, the bottom end of the positioning groove is communicated with the bottom of the inner rod, and the end part of the positioning sheet is inserted into the positioning groove and is attached to the top of the positioning groove;
the end part of the first connecting rod is provided with a positioning column, the positioning column is movably connected with the first connecting rod to enable the positioning column to move along the axial direction of the first connecting rod, the end part of the positioning column extends to the outside of the first connecting rod and abuts against the top of the lower baffle, and the other end of the positioning column is positioned in the first connecting rod and is provided with a push sheet with a sheet structure; the positioning piece and the first connecting rod are also movably connected, so that the positioning piece can move along the direction vertical to the axis of the first connecting rod; one part of the positioning sheet is positioned in the first connecting rod, the bottom of the positioning sheet is provided with a connecting port, and one side of the connecting port is vertical while the other side of the connecting port is of an inclined structure; the end part of the push sheet is inserted into the connecting port;
after the second supporting rod is extended, the positioning piece can be separated from the positioning groove, the first connecting rod can turn over relative to the second supporting rod, the positioning column is separated from the lower baffle, and the positioning column moves to separate the pushing piece from the connecting port.
Furthermore, the plane of the push sheet is perpendicular to the plane of the positioning sheet.
Furthermore, a connecting column is arranged inside the first connecting rod, a long-strip-shaped connecting hole is formed in the positioning sheet, and the connecting column is connected to the connecting hole to enable the connecting column to slide in the connecting hole.
Furthermore, a through hole is formed in the end part of the first connecting rod, the positioning column penetrates through the through hole, and a shoulder is formed in the middle of the positioning column; a conical spring is arranged in the first connecting rod, one end of the conical spring is connected with the first connecting rod, and the other end of the conical spring is connected with the shoulder.
Further, a transition part of a spherical structure is arranged at the end part of the first connecting rod.
Furthermore, two opposite fixing pieces are arranged on the second connecting ring, connecting shafts are arranged on the inner sides of the fixing pieces, and the two connecting shafts are respectively and rotatably connected to two sides of the first connecting rod.
The reinforcing and connecting structure for building construction provided by the invention has the advantages that the reinforcing and connecting structure is provided with the three supporting rod structures and is connected together through the connecting members, the reinforcing and connecting structure can be used as a group to support and reinforce building members in one area when in use, the use is convenient, and the building construction efficiency can be improved.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings needed in the embodiments will be briefly described below, and it is obvious that the drawings in the following description are only some embodiments of the present invention, and it is obvious for those skilled in the art to obtain other drawings without creative efforts. The above and other objects, features and advantages of the present invention will become more apparent from the accompanying drawings. Like reference numerals refer to like parts throughout the drawings. The drawings are not necessarily to scale, emphasis instead being placed upon illustrating the principles of the invention.
FIG. 1 is a schematic structural view of a building construction fastening connection structure provided in an embodiment of the present invention after being retracted;
FIG. 2 is a schematic structural view of a reinforced connection structure for building construction provided by an embodiment of the present invention after being unfolded;
FIG. 3 is a schematic top view of a reinforced connection structure for building construction according to an embodiment of the present invention after being unfolded;
FIG. 4 is a schematic structural diagram of a first connection ring in the building construction fastening connection structure provided by the embodiment of the invention;
FIG. 5 is a schematic structural view of a second connection ring in the building construction fastening connection structure provided in the embodiment of the present invention;
FIG. 6 is a schematic view of a partial cross-sectional structure of a first connecting rod connected to a second supporting rod when the reinforcing connection structure for building construction provided by the embodiment of the invention is retracted;
fig. 7 is a schematic partial sectional view illustrating a connection between a first connecting rod and a second supporting rod when the building construction fastening connection structure according to the embodiment of the present invention is unfolded;
FIG. 8 is a schematic view, partially in section, of a first connecting rod when a building construction fastening structure according to an embodiment of the present invention is unfolded;
fig. 9 is a partial sectional structural view of a first connecting rod when the reinforcing connecting structure for building construction provided by the embodiment of the invention is retracted.
Summary of reference numerals: the support device comprises a first support rod 101, a second support rod 102, a third support rod 103, a connecting component 104, a first connecting ring 105, a second connecting ring 106, a third connecting ring 107, a first connecting rod 108, a second connecting rod 109, a movable rod 110, a clamping seat 111, a connecting seat 112, an upper baffle 113, a lower baffle 114, a main rod 115, an inner rod 116, a positioning piece 117, a through hole 118, a positioning groove 119, a positioning column 120, a push piece 121, a connecting port 122, a connecting column 123, a connecting hole 124, a through hole 125, a shoulder 126, a conical spring 127, a transition part 128, a fixing piece 129 and a connecting shaft 130.
Detailed Description
In order to make the objects, technical solutions and advantages of the embodiments of the present invention clearer, 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 some, but not all, embodiments of the present invention. The components of embodiments of the present invention generally described and illustrated in the figures herein may be arranged and designed in a wide variety of different configurations.
Thus, the following detailed description of the embodiments of the present invention, presented in the figures, is not intended to limit the scope of the invention, as claimed, but is merely representative of selected embodiments of the invention. All other embodiments, which can be obtained by a person skilled in the art without inventive step based on the embodiments of the present invention, are within the scope of protection of the present invention.
It should be noted that: like reference numbers and letters refer to like items in the following figures, and thus, once an item is defined in one figure, it need not be further defined and explained in subsequent figures.
Furthermore, the terms "first," "second," and the like are used merely to distinguish one description from another, and are not to be construed as indicating or implying relative importance.
For example, please refer to FIGS. 1-9.
This embodiment provides a construction adds solid connection structure, and this kind of solid connection structure has three spinal branch vaulting pole structures and links together through connecting elements, can support the reinforcement to the building element in an area as a set of use when using, and convenient to use can improve building construction efficiency.
As shown in fig. 1 to 3, the construction reinforcement connection structure includes a first support bar 101, a second support bar 102, a third support bar 103, and a connection member 104, wherein the connection member 104 includes a first connection ring 105, a second connection ring 106, a third connection ring 107, a first connection rod 108, and a second connection rod 109, the first connection ring 105 is connected to an outer portion of the first support bar 101, the second connection ring 106 is connected to an outer portion of the second support bar 102, and the third connection ring 107 is connected to an outer portion of the third support bar 103; one end of the first connecting rod 108 is hinged with the first connecting ring 105, the other end of the first connecting rod 108 is hinged with the second connecting ring 106, one end of the second connecting rod 109 is hinged with the first connecting ring 105, and the other end of the second connecting rod 109 is hinged with the third connecting ring 107; the first support rod 101, the second support rod 102 and the third support rod 103 are all retractable structures, and the first connecting rod 108 and the second connecting rod 109 are also retractable structures.
This kind of construction adds solid connection structure uses three bracing piece as a set of component connection together, and a set of connection structure of staff supports building wall or roof in an area when using, and the individual need not to measure the construction distance of calculating between two bracing pieces, only needs to open connecting element 104 and can use, and it is very convenient to use. And the structure of three point support is very firm, makes the building roof supported by steadily, uses this connection structure of less group quantity when actual construction, can support the building roof, labour saving and time saving practices thrift the cost.
Three bracing pieces homoenergetic plays supporting role. The connecting member 104 is a member connecting the three support rods. The three connecting rings are used for connecting with the three support rods, the first connecting rod 108 is connected with the first support rod 101 and the second support rod 102, and the second connecting rod 109 is connected with the second support rod 102 and the third support rod 103. The three support rods are connected together by the connecting member 104 during transportation and storage, so that the three support rods cannot be randomly placed. And the end of the connecting rod and the connecting ring are both hinged structures, so that the connecting rod can turn over relative to the supporting rod, and the connecting component 104 can be folded. The storage of the building construction reinforced connection structure is facilitated. The bracing piece is the telescopic structure, can adjust according to the height of building when in actual use. The connecting rod is also the telescopic structure, can accomodate it conveniently when using.
As shown in fig. 3, the first connecting rod 108 is provided with a movable rod 110 hinged thereto, the second connecting rod 109 is provided with a clamping seat 111, and an end of the movable rod 110 can be clamped into the clamping seat 111. The connecting member 104 further comprises a movable rod 110, and the distance between the first connecting rod 108 and the second connecting rod 109 of the opened connecting member 104 can be fixed through the movable rod 110, so that a constant distance is formed between the two connecting rods, the distance between the three supporting rods is constant, and the use is more convenient.
As shown in fig. 4 and 5, a connecting seat 112 is disposed on an outer side of the first connecting ring 105, the connecting seat 112 is rotatably connected to the first connecting ring 105 so that the connecting seat 112 can rotate around a horizontal axis, and an end of the first connecting rod 108 and an end of the second connecting rod 109 are both connected to an outer side of the connecting seat 112; an upper baffle 113 is arranged at the top of the connecting seat 112, and the end of the first connecting rod 108 is attached to the bottom of the upper baffle 113 when the connecting member 104 is opened; the bottom of the second connecting ring 106 is provided with a lower baffle 114, and the end of the second connecting rod 109 is attached to the top of the lower baffle 114 when the connecting member 104 is opened;
as shown in fig. 1 and 2, when the first supporting rod 101 and the second supporting rod 102 are reversed and the first supporting rod 101 and the second supporting rod 102 and the connecting member 104 are in the contracted state, the two ends of the first supporting rod 101 are flush with the two ends of the second supporting rod 102; when the first support bar 101 and the second support bar 102 are in the same direction and the first support bar 101, the second support bar 102 and the connecting member 104 are in the extended state, both ends of the first support bar 101 and the second support bar 102 are also flush.
Through the structure, the building construction reinforced connecting structure can be more conveniently stored. After the folding type folding chair is folded, the structure is smoother, the occupied space is smaller, and the storage and the transportation are more convenient.
A coupling seat 112 is provided at an outer portion of the first coupling ring 105 such that the first connection rod 108 is coupled to the first connection rod 108 through the coupling seat 112. Through the arrangement of the rotatable connecting seat 112, the first connecting rod 108 and the first supporting rod 101 can rotate not only around the axis in the direction perpendicular to the paper surface in fig. 1, but also around the axis in the horizontal direction in fig. 1. Such that the first support bar 101 and the second support bar 102 may be oriented in the same or opposite directions. The top of the connecting seat 112 is provided with an upper baffle 113, the bottom of the second connecting ring 106 and the bottom of the third connecting ring 107 are provided with a lower baffle 114, and when the building construction fastening connecting structure is stored, the first supporting rod 101 moves upwards to turn the first connecting rod 108 and the second connecting rod 109, so that the three supporting rods approach to each other until almost fitting together. Then, the first supporting rod 101 is rotated, so that the direction of the first supporting rod 101 is opposite to that of the second supporting rod 102 and the third supporting rod 103, and two ends of the three supporting rods are parallel and level, so that the building construction reinforcing and connecting structure occupies a small space and is convenient to store.
As shown in fig. 6 and 7, the second support rod 102 and the third support rod 103 have the same structure, the second support rod 102 includes a main rod 115 and an inner rod 116, the inner rod 116 is movably connected in the main rod 115, and the second connection ring 106 is connected to the outside of the main rod 115; a positioning piece 117 is arranged on the side part of one end of the first connecting rod 108 close to the second supporting rod 102, a through hole 118 is arranged on the main rod 115, and the end part of the positioning piece 117 penetrates through the through hole 118 and extends into the main rod 115; the side part of the inner rod 116 is provided with a strip-shaped positioning groove 119, the bottom end of the positioning groove 119 is communicated with the bottom of the inner rod 116, and the end part of the positioning sheet 117 is inserted into the positioning groove 119 and is attached to the top of the positioning groove 119;
as shown in fig. 8 and 9, a positioning post 120 is disposed at an end of the first connecting rod 108, the positioning post 120 is movably connected to the first connecting rod 108 to enable the positioning post 120 to move along an axial direction of the first connecting rod 108, the end of the positioning post 120 extends to an outside of the first connecting rod 108 and abuts against a top of the lower baffle 114, and another end of the positioning post 120 is located inside the first connecting rod 108 and is provided with a pushing piece 121 having a sheet structure; the positioning plate 117 and the first connecting rod 108 are also movably connected, so that the positioning plate 117 can move along the direction perpendicular to the axis of the first connecting rod 108; a part of the positioning plate 117 is located inside the first connecting rod 108, and a connecting port 122 is arranged at the bottom of the positioning plate, one side of the connecting port 122 is vertical, and the other side is an inclined structure; the end of the push sheet 121 is inserted into the connection port 122;
after the second support rod 102 is extended, the positioning plate 117 can be separated from the positioning groove 119, so that the first connecting rod 108 can be turned over relative to the second support rod 102, and the positioning column 120 can be separated from the lower baffle 114, so that the positioning column 120 can move and the pushing plate 121 can be separated from the connecting port 122.
Through the setting of above-mentioned structure for building construction adds solid connection structure after packing up, the interior pole 116 structure of second bracing piece 102 locks head rod 108, makes head rod 108 keep the state that parallels with second bracing piece 102, makes it can not initiatively open downwards, makes building construction add solid connection structure more stable after packing up, is difficult for scattering, convenient transportation and use.
The second support rod 102 has an inner rod 116 and a main rod 115, so that the second support rod can be a telescopic structure, and can also be designed into a two-stage or three-stage telescopic structure, so that the second support rod can be adjusted more conveniently. The end of the main rod 115 is provided with a locking sleeve for locking the adjusted position of the inner rod 116 so that the inner rod 116 does not automatically slide relative to the main rod 115.
The end of the first connecting rod 108 is provided with a positioning piece 117, the main rod 115 is provided with a through hole 118, and the second connecting ring 106 is also provided with a hole position, so that the positioning piece 117 can pass through. The tip of spacer 117 passes through perforation 118 and places in the mobile jib 115 inside, interior pole 116 slides downwards, makes the spacer 117 tip insert constant head tank 119, moves interior pole 116 to the lowest position, makes spacer 117 contradict with the tip of constant head tank 119, and rethread locking cover locks interior pole 116 and makes it not move relative mobile jib 115, prescribes the spacer 117 for spacer 117 can not outwards overturn. So that the first connecting rod 108 cannot move, thereby achieving the effect of locking the first connecting rod 108. The second connecting rod 109 is also locked with the third supporting rod 103 through the same structure, so that the structure of the whole building construction reinforced connecting structure is locked and cannot be automatically opened.
The end part of the first connecting rod 108 is further provided with a positioning column 120 which can carry out strip two-stage positioning on the positioning sheet 117, the position of the positioning column 120 can be automatically adjusted in the adjusting process of the first connecting rod 108, and then the position of the positioning sheet 117 is adjusted, so that the positioning sheet 117 can be partially accommodated in the first connecting rod 108 when not in use, and the positioning sheet is not exposed to the outside for a long time, so that the external structure is attractive and is not easy to damage. When the positioning sheet 117 needs to be used, the positioning column 120 can automatically adjust the positioning sheet 117 to extend to a proper position and can be matched with the positioning groove 119.
When the first connecting rod 108 is retracted, the first connecting rod 108 is substantially parallel to the second supporting rod 102, the end of the positioning post 120 extends to the outside of the first connecting rod 108 and abuts against the top of the lower baffle 114, the pushing piece 121 at the end of the positioning post 120 is connected in the connecting port 122 at the bottom of the positioning piece 117, and the pushing piece 121 limits the position of the positioning piece 117 so that the positioning piece 117 cannot move and the positioning groove 119 can be inserted into the positioning piece 117.
When the first connecting rod 108 is opened, it is turned downward, the end of the positioning post 120 is separated from the lower baffle 114, the positioning post 120 moves outward by a portion, so that the pushing piece 121 is separated from the connecting port 122, and the limitation of the pushing piece 121 on the positioning piece 117 is released. When the first connecting rod 108 is turned to be horizontal, the positioning plate 117 falls down under the action of gravity, so that a part of the positioning plate slides into the first connecting rod 108.
As shown in FIG. 9, the push plate 121 is located on a plane perpendicular to the plane of the positioning plate 117. The perpendicular configuration allows the push tab 121 to more easily drop into the inclined attachment opening 122 and push the locating tab 117 when moved upward.
As shown in fig. 8, a connection post 123 is disposed inside the first connection rod 108, a long strip-shaped connection hole 124 is disposed on the positioning plate 117, and the connection post 123 is connected to the connection hole 124 so that the connection post 123 can slide in the connection hole 124. The connecting post 123 is connected to the connecting hole 124, and defines the positioning plate 117 and allows the positioning plate 117 to move. The first connecting rod 108 is provided with a hole for allowing the positioning plate 117 to pass through and also limiting the positioning plate 117, so that the positioning plate 117 can slide relative to the first connecting rod 108.
As shown in fig. 8 and 9, a through hole 125 is formed at an end of the first connecting rod 108, the positioning post 120 passes through the through hole 125, and a shoulder 126 is formed at a middle portion of the positioning post 120; a conical spring 127 is disposed inside the first connecting rod 108, one end of the conical spring 127 is connected to the first connecting rod 108, and the other end of the conical spring 127 is connected to the shoulder 126. The conical spring 127 connects the positioning post 120 and the first connecting rod 108, so that when the positioning post is not blocked by the lower baffle 114, the conical spring 127 contracts, and pushes a part of the positioning post 120 to the outside of the first connecting rod 108, so that the push piece 121 is separated from the positioning piece 117. After the positioning post 120 is blocked by the lower baffle 114, the conical spring 127 is stretched.
As shown in fig. 6, the end of the first connecting rod 108 is provided with a transition 128 of spherical configuration. The transition portion 128 facilitates rotation of the first connecting rod 108, and the first connecting rod is not easily jammed during rotation.
As shown in fig. 5, the second connection ring 106 is provided with two opposite fixing pieces 129, and the fixing pieces 129 are provided at inner sides thereof with connection shafts 130, and the two connection shafts 130 are rotatably connected to both sides of the first connection rod 108, respectively. The fixing plate 129 and the connecting shaft 130 are provided to allow the first connecting rod 108 to be stably connected to the second connecting ring 106 and to be smoothly rotated.
The previous description of the disclosed embodiments is provided to enable any person skilled in the art to make or use the present invention. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the generic principles defined herein may be applied to other embodiments without departing from the spirit or scope of the invention. Thus, the present invention is not intended to be limited to the embodiments shown herein but is to be accorded the widest scope consistent with the principles and novel features disclosed herein.