CN220504338U - Roof gutter telescoping device - Google Patents

Roof gutter telescoping device Download PDF

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Publication number
CN220504338U
CN220504338U CN202321971110.3U CN202321971110U CN220504338U CN 220504338 U CN220504338 U CN 220504338U CN 202321971110 U CN202321971110 U CN 202321971110U CN 220504338 U CN220504338 U CN 220504338U
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CN
China
Prior art keywords
gutter
breakwater
connecting pipe
protective cover
telescoping device
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Active
Application number
CN202321971110.3U
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Chinese (zh)
Inventor
王永辉
罗盛
葛晓朗
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Auburn Steel Structure Beijing Co ltd
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Auburn Steel Structure Beijing Co ltd
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Priority to CN202321971110.3U priority Critical patent/CN220504338U/en
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Abstract

The utility model discloses a roof gutter telescoping device, which comprises a connecting frame, a first gutter, a second gutter and a diversion assembly, wherein the first gutter and the second gutter are respectively connected in two ends of the connecting frame in a sliding mode, the diversion assembly is used for connecting the first gutter and the second gutter and is used for enabling rainwater to flow in parallel, a buffer groove is formed in the connecting frame, a plurality of second springs are arranged in the buffer groove, one ends of the second springs are fixedly connected with a mounting plate, and sliding strips are arranged on the outer walls of the first gutter and the second gutter. According to the utility model, when the first gutter and the second gutter are expanded, the sliding strips and the sliding grooves are driven to slide by the first gutter and the second gutter, so that the first gutter and the second gutter can both move along the length direction of the mounting plate, the first gutter and the second gutter drive the diversion assembly to shrink, rainwater can still circulate and be discharged through the diversion assembly when the first gutter and the second gutter are expanded, and meanwhile, the mounting plate drives the springs to press in the buffer grooves for buffering, so that the expansion pressure of the gutter can be reduced.

Description

Roof gutter telescoping device
Technical Field
The utility model relates to the technical field of roof structures, in particular to a roof gutter telescoping device.
Background
In recent years, along with the wider and wider application of a metal roof in the field of building engineering, a stainless steel gutter is used as an important component of drainage of the metal roof, the stainless steel gutter is required to be suitable for expansion and contraction of a metal roof plate and resistant to settlement displacement, meanwhile, the waterproof performance of an expansion joint of the stainless steel gutter is also required to be good, in order to ensure that a welding joint of the stainless steel gutter plate cannot be influenced by expansion and contraction and/or settlement displacement factors to cause cracking, the stainless steel gutter is required to be divided into a plurality of sections, expansion joints are arranged between two adjacent sections of gutter, and meanwhile, a flexible and telescopic guide assembly is arranged between the expansion joints to communicate the two gutter.
Disclosure of Invention
The utility model aims to overcome the defects of the prior art and provide a roof gutter expansion device which is designed for the roof gutter expansion device and solves the problems in the background art.
The aim of the utility model is realized by the following technical scheme:
a roof gutter telescoping device comprising:
the connecting frame, the first gutter and the second gutter which are respectively connected in the two ends of the connecting frame in a sliding way, and the diversion component which is used for connecting the first gutter and the second gutter and is used for flowing rainwater in parallel;
be equipped with the buffer tank in the connection frame, be equipped with a plurality of second spring in the buffer tank, the one end fixedly connected with mounting panel of second spring, the outer wall of first gutter and second gutter all is equipped with the draw runner, the mounting panel is equipped with the spout that matches with the draw runner, and first gutter and second gutter pass through draw runner and spout and remove and make the mounting panel drive the second spring and cushion in the buffer tank internal pressure along the length direction of mounting panel.
In the above summary, further, one end of the first gutter is fixedly connected with a first water baffle, one end of the second gutter is fixedly connected with a second water baffle, and two ends of the flow guiding assembly are respectively connected with the first water baffle and the second water baffle.
In the above summary, further, the flow guiding assembly includes a first connecting pipe fixed on one side of the first water baffle, a second connecting pipe fixed on one side of the second water baffle, and a bellows connected between the first connecting pipe and the second water baffle, both ends of the bellows are sleeved with fasteners, and the bellows is fixed with the first connecting pipe and the second connecting pipe through the fasteners.
In the above summary, further, the guide assembly is provided with a protective cover, two ends of the protective cover are all vertically arranged downwards, one end of the protective cover is connected with the first water baffle and is fixed on the first water baffle through bolts, the other end of the protective cover extends into the second gutter, and the other end of the protective cover is located on the second water baffle.
In the above summary, further, the sliding strip and the sliding groove are both in a T-shaped structure.
The beneficial effects of the utility model are as follows:
according to the utility model, when the first gutter and the second gutter are expanded, the sliding strips and the sliding grooves are driven to slide by the first gutter and the second gutter, so that the first gutter and the second gutter can both move along the length direction of the mounting plate, the first gutter and the second gutter drive the diversion assembly to shrink, rainwater can still circulate and be discharged through the diversion assembly when the first gutter and the second gutter are expanded, and meanwhile, the mounting plate drives the springs to press in the buffer grooves for buffering, so that the expansion pressure of the gutter can be reduced.
Drawings
FIG. 1 is a schematic elevational cross-sectional view of the overall structure of the present utility model;
FIG. 2 is a schematic top view in overall section of the present utility model;
FIG. 3 is a schematic view of a protective cover connection structure according to the present utility model;
fig. 4 is a schematic diagram of the overall structure of the connecting frame of the present utility model.
In the figure, 1-first gutter, 101-first breakwater, 102-first connecting pipe, 103-bellows, 104-fastener, 105-slide, 2-second gutter, 201-second breakwater, 202-second connecting pipe, 3-protective cover, 4-connecting frame, 401-buffer tank, 402-second spring, 403-mounting plate.
Detailed Description
Other advantages and effects of the present utility model will become apparent to those skilled in the art from the following disclosure, which describes the embodiments of the present utility model with reference to specific examples. The utility model may be practiced or carried out in other embodiments that depart from the specific details, and the details of the present description may be modified or varied from the spirit and scope of the present utility model. It should be noted that the following embodiments and features in the embodiments may be combined with each other without conflict.
Examples:
referring to fig. 1-4, a roof gutter expansion device includes a connection frame 4, a first gutter 1 and a second gutter 2 slidably connected to two ends of the connection frame 4, respectively;
the outer wall of first gutter 1 and second gutter 2 is equal fixedly connected with draw runner 105, be equipped with buffer tank 401 in the connection frame 4, be equipped with a plurality of second spring 402 in the buffer tank 401, the one end of second spring 402 is fixed with mounting panel 403, mounting panel 403 is equipped with the spout that matches with draw runner 105, it is connected with the spout to drive draw runner 105 when first gutter 1 and second gutter 2 take place to expand, let first gutter 1 and second gutter 2 can follow the length direction of mounting panel 403 through the spout and remove, mounting panel 403 drives a plurality of springs and presses the pressure that will expand in buffer tank 401 to cushion simultaneously, let the pressure of inflation can reduce.
Further, the sliding strip 105 and the sliding groove are both in a T-shaped structure, so that the first gutter 1 and the second gutter 2 can not only drive the sliding rod to move along the sliding groove, but also prevent the first gutter 1 and the second gutter 2 from being separated from the mounting plate 403.
The water diversion assembly comprises a first connecting pipe 102 fixed on one side of the first water baffle 101, a second connecting pipe 202 fixed on one side of the second water baffle 201, and a corrugated pipe 103 connected between the first connecting pipe 102 and the second water baffle 201, wherein both ends of the corrugated pipe 103 are respectively connected with the first water baffle 101 and the second water baffle 201 when the first gutter 1 and the second gutter 2 are extruded in opposite directions under the expansion pressure, the corrugated pipe 103 is fixed with the first connecting pipe 102 and the second connecting pipe 202 through the fastening pieces 104, and the corrugated pipe 103 can be easily contracted by the first connecting pipe 102 and the second connecting pipe 202 when the corrugated pipe 103 is easily stretched or is not easily contracted by the fastening pieces 104, and then the corrugated pipe 103 can be easily leaked from the first gutter 2 to the second gutter 2 through the first connecting pipe 102 and the second connecting pipe 202, and the corrugated pipe 2 can be conveniently leaked from the first gutter 2 when the first gutter 1 and the second gutter 2 are expanded, and the corrugated pipe 2 can be conveniently contracted by the fastening pieces 104.
Be equipped with protective cover 3 on the water conservancy diversion subassembly, protective cover 3's both ends are the perpendicular setting downwards, protective cover 3's one end is connected with first breakwater 101 and passes through the bolt fastening on first breakwater 101, protective cover 3's the other end extends to in the second gutter 2, and protective cover 3's the other end is located second breakwater 201, in order to prevent bellows 103 from receiving the insolateing of sun and leading to ageing to protect through installing protective cover 3 to bellows 103's top, then it is fixed with first breakwater 101 through artifical rotatory bolt with protective cover 3's one end, and protective cover 3's the other end is installed to second breakwater 201's top, make first gutter 1 and second gutter 2 can drive protective cover 3 in second breakwater 201's top when moving in opposite directions, make protective cover 3 can protect bellows 103 in the expansion joint not by the sun, make bellows 103's long service life.
The working principle is as follows; the device drives the slide bar 105 to be connected with the chute when first gutter 1 and second gutter 2 take place to expand at first, let first gutter 1 and second gutter 2 can be through the length direction removal of spout along mounting panel 403, simultaneously mounting panel 403 drive a plurality of springs and cushion the pressure that will expand in buffer tank 401 internal pressure, let the pressure that expands reduce, let first breakwater 101 and second breakwater 201 drive bellows 103 through first connecting pipe 102 and second connecting pipe 202 when first gutter 1 and second gutter 2 receive the extrusion in opposite directions of the pressure that expands, simultaneously fix the both ends of bellows 103 outside first connecting pipe 102 and second connecting pipe 202 through fastener 104, let bellows 103 be difficult to take place to drop when tensile or shrink, then the water in first gutter 1 and the second gutter 2 can circulate each other through first connecting pipe 102, bellows 103 and second connecting pipe 202, make drainage make things convenient for, let the expansion joint between first gutter 1 and the second gutter 2 can not take place to leak when the pressure that first gutter 1 and second gutter 2 receive the extrusion in opposite directions, finally, prevent that the expansion joint 103 from taking place to leak, and prevent to make the expansion joint 103 from leading to the side 3 to be installed to prevent that the artifical weather shield 3 from moving to be driven by the bellows 3 to be fixed to the bellows 3 through the second cover 101 when the side that is fixed to the side of the bellows 3 is installed to the side that is 3 in order to prevent that the side that can prevent the side that the expansion cover 3 is fixed to be moved to the bellows 3 to the side 101.
In the description of the present utility model, it should be understood that the directions or positional relationships indicated by the terms "upper", "lower", "left", "right", etc. are based on the directions or positional relationships shown in the drawings, are merely for convenience of describing the present utility model and simplifying the description, and do not indicate or imply that the apparatus or element in question must be provided with a specific orientation, be constructed and operated in a specific orientation, and thus should not be construed as limiting the present utility model.
The foregoing examples merely illustrate specific embodiments of the utility model, which are described in greater detail and are not to be construed as limiting the scope of the utility model. It should be noted that it will be apparent to those skilled in the art that several variations and modifications can be made without departing from the spirit of the utility model, which are all within the scope of the utility model.

Claims (5)

1. A roof gutter telescoping device, characterized in that includes:
the connecting frame (4), a first gutter (1) and a second gutter (2) which are respectively connected in the two ends of the connecting frame (4) in a sliding way, and a diversion assembly for connecting the first gutter (1) and the second gutter (2) and flowing rainwater;
be equipped with in connecting frame (4) dashpot (401), be equipped with a plurality of second spring (402) in dashpot (401), the one end fixedly connected with mounting panel (403) of second spring (402), the outer wall of first gutter (1) and second gutter (2) all is equipped with draw runner (105), mounting panel (403) are equipped with spout (404) that match with draw runner (105), and first gutter (1) and second gutter (2) are through draw runner (105) and spout (404) along the length direction of mounting panel (403) remove and make mounting panel (403) drive second spring (402) and press in dashpot (401) and cushion.
2. The roof gutter telescoping device according to claim 1,
one end fixedly connected with first breakwater (101) of first gutter (1), one end fixedly connected with second breakwater (201) of second gutter (2), the both ends of water conservancy diversion subassembly are connected with first breakwater (101) and second breakwater (201) respectively.
3. The roof gutter telescoping device according to claim 2,
the water conservancy diversion subassembly is including fixing first connecting pipe (102) at a first breakwater (101) side, fix second connecting pipe (202) at a second breakwater (201) side to and connect bellows (103) between first connecting pipe (102) and second breakwater (201), fastener (104) have all been cup jointed at the both ends of bellows (103), and bellows (103) are all fixed with first connecting pipe (102) and second connecting pipe (202) through fastener (104).
4. The roof gutter telescoping device according to claim 1,
be equipped with protective cover (3) on the water conservancy diversion subassembly, the both ends of protective cover (3) are the perpendicular setting down, and the one end and the first breakwater (101) of protective cover (3) are connected and are fixed on first breakwater (101) through the bolt, and the other end of protective cover (3) extends to in second gutter (2), and the other end of protective cover (3) is located second breakwater (201).
5. The roof gutter telescoping device according to claim 1,
the sliding strip (105) and the sliding groove (404) are of T-shaped structures.
CN202321971110.3U 2023-07-25 2023-07-25 Roof gutter telescoping device Active CN220504338U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202321971110.3U CN220504338U (en) 2023-07-25 2023-07-25 Roof gutter telescoping device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202321971110.3U CN220504338U (en) 2023-07-25 2023-07-25 Roof gutter telescoping device

Publications (1)

Publication Number Publication Date
CN220504338U true CN220504338U (en) 2024-02-20

Family

ID=89882086

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202321971110.3U Active CN220504338U (en) 2023-07-25 2023-07-25 Roof gutter telescoping device

Country Status (1)

Country Link
CN (1) CN220504338U (en)

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