CN214364496U - Mill uses rainwater drainage device - Google Patents
Mill uses rainwater drainage device Download PDFInfo
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- CN214364496U CN214364496U CN202023334039.7U CN202023334039U CN214364496U CN 214364496 U CN214364496 U CN 214364496U CN 202023334039 U CN202023334039 U CN 202023334039U CN 214364496 U CN214364496 U CN 214364496U
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- support
- drain pipe
- lateral wall
- ejector pin
- rainwater drainage
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Abstract
The utility model relates to a mill uses rainwater drainage device, it is including installing the escape canal body at house body top, the standpipe is installed to the bottom of escape canal body, the drain pipe is installed to the bottom of standpipe, install the support piece that supports the drain pipe on the lateral wall of house body, support piece is including installing the first angle sign indicating number at the house body lateral wall, first angle sign indicating number is located between the lateral wall of drain pipe and house body, the support ejector pin that the level extends is installed on the lateral wall of first angle sign indicating number, the upper portion at the support ejector pin is placed to the drain pipe, the top U-shaped card of establishing on the drain pipe is installed to the upper portion of support ejector pin. This application has the effect that improves hydrophobic pipe's dismantlement efficiency.
Description
Technical Field
The application relates to the field of roof drainage, in particular to a rainwater drainage device for a factory.
Background
At present, in modern buildings, in order to avoid rainwater accumulation on the roof, a special drainage ditch is usually designed on the roof, and the drainage ditch can drain rainwater falling on the roof in time when raining, so that the situation of water leakage caused by long-term water accumulation on the roof is avoided.
In the related art, a rainwater drainage device for a factory generally comprises a drain pipe arranged on one side of a wall body, wherein the drain pipe is directly arranged on the wall body through a clamp; when the drain pipe breaks and needs to be replaced, the clamp needs to be detached from the wall body at the moment, then the drain pipe is detached and replaced, the drain pipe is detached from the wall body for a long time, and the detachment efficiency of the drain pipe is low.
In view of the above-mentioned related art, the inventor believes that the drain pipe takes a long time to be removed from the wall, resulting in a drawback that the drain pipe is less efficiently removed.
SUMMERY OF THE UTILITY MODEL
In order to improve the dismantlement efficiency of drain pipe, this application provides a mill uses rainwater drainage device.
The application provides a mill uses rainwater drainage device adopts following technical scheme:
the utility model provides a mill uses rainwater drainage device, is including installing the escape canal body at house body top, the standpipe is installed to the bottom of escape canal body, the drain pipe is installed to the bottom of standpipe, install the support piece that supports the drain pipe on the lateral wall of house body, support piece is including installing the first angle sign indicating number at house body lateral wall, first angle sign indicating number is located between the lateral wall of drain pipe and house body, the support ejector pin that the level extends is installed on the lateral wall of first angle sign indicating number, the upper portion at the support ejector pin is placed to the drain pipe, the top U-shaped card of cover on the drain pipe is installed on the upper portion of support ejector pin.
By adopting the technical scheme, the vertical pipe is arranged at the bottom of the drainage ditch body, rainwater in the drainage pipe can be drained into the drainage pipe along the vertical pipe, and the drainage is carried out through the opening end of the drainage pipe; when the drain pipe breaks or other circumstances need be changed the drain pipe, only need take off top U-shaped card from supporting the ejector pin, alright take off the drain pipe from supporting the ejector pin, whole dismantlement process is comparatively simple to make the dismantlement efficiency of drain pipe higher.
Preferably, install the support sill bar that is located support ejector pin bottom on the lateral wall of house body, the extending direction who supports the sill bar along house wall lateral wall extends, a plurality of support angle sign indicating numbers are installed to the bottom of supporting the sill bar, support the angle sign indicating number and all install on the lateral wall of house body.
By adopting the technical scheme, the supporting bottom rod and the supporting corner connectors are arranged, so that the supporting ejector rod can be supported, and the stability of the supporting ejector rod relative to the drain pipe is improved; on the other hand, because a plurality of support ejector pins are placed on the upper portion of the same support bottom rod, the stability of a plurality of support ejector pins is better, and the stability of the drain pipe placed between a plurality of support ejector pins is better.
Preferably, the bottom of the top U-shaped clamp is in threaded connection with a nut.
Through adopting above-mentioned technical scheme, the setting of nut for the relative stability that supports between the ejector pin of top U-shaped card is better, reduces because of receiving the appearance that external force drain pipe breaks away from the condition from supporting the ejector pin.
Preferably, the connecting cylinder is all installed at the top of standpipe, the connecting cylinder is installed in the bottom of escape canal body, and with escape canal body intercommunication, the horizontal cross-section of connecting cylinder is greater than the horizontal cross-section of drain pipe.
Through adopting above-mentioned technical scheme, the connecting cylinder is installed in the bottom of escape canal body, and inside the connecting cylinder can be followed to the ponding of escape canal body inside and get into to the standpipe, because the horizontal cross-section of connecting cylinder is greater than the horizontal cross-section of drain pipe moreover for inside ponding of escape canal body is changeed and is got into inside the standpipe, makes things convenient for the ponding to discharge.
Preferably, the support bottom bar has a gap from the side wall of the house body.
Through adopting above-mentioned technical scheme, will support the sill bar and set up to the interval form with the house body, reduce the interior rivers of drain pipe when flowing, the inside noise of drain pipe transmits through the house body, reduces the condition of the transmission of the inside noise of drain pipe body for the result of use of drain pipe is better.
Preferably, the upper portion of the supporting corner brace is provided with a bottom U-shaped clamp, and the bottom U-shaped clamp is sleeved on the supporting bottom rod.
Through adopting above-mentioned technical scheme, the setting of bottom U-shaped card for it is comparatively stable to support to be connected between sill bar and the support angle sign indicating number.
Preferably, the supporting ejector rod is provided with a round hole, the diameter of the round hole is larger than that of the nut, a first opening communicated with the round hole is formed in the side wall of the supporting ejector rod, the supporting ejector rod is provided with a locking piece, the locking piece comprises a sliding block which is arranged on the inner side of the first opening in a sliding mode, the upper end face of the sliding block is provided with a sliding plate located on the upper portion of the supporting bottom rod, and the bottom of the sliding block is provided with a limiting plate located at the bottom of the supporting ejector rod.
By adopting the technical scheme, when the drain pipe is broken by accident and needs to be replaced, the sliding plate is moved to one side away from the top U-shaped clamp, and then the sliding plate can drive the sliding block to be separated from the first opening and drive the limiting plate to move away from the bottom of the supporting bottom rod; because the diameter of nut is less than the diameter of round hole, so the top U-shaped card can drive the nut and shift out from the round hole is inside, and whole use is comparatively convenient, can dismantle the quick follow support sill bar of top U-shaped card.
Preferably, the sliding block is provided with a first opening side wall on which an installation rod is installed, the end part of the installation rod is provided with a fixed plate, and a spring is installed between the fixed plate and the sliding block.
Through adopting above-mentioned technical scheme, spring coupling is between fixed plate and sliding block for it is comparatively stable to be connected between sliding block and the support sill bar, reduces the appearance that breaks away from the condition on sliding block and the support sill bar.
In summary, the present application includes at least one of the following beneficial technical effects:
by arranging the supporting piece, the drain pipe is arranged on the upper part of the wall body, and meanwhile, the drain pipe and the wall body can be conveniently disassembled, so that the disassembly efficiency of the drain pipe is high;
because the horizontal section of the connecting cylinder is larger than that of the drainage pipe, accumulated water in the drainage ditch body can easily enter the vertical pipe, and the accumulated water is convenient to drain;
the setting of locking piece for it is comparatively convenient to dismantle between top U-shaped card and the drain pipe, and excellent in use effect.
Drawings
Fig. 1 is a schematic structural view of a rainwater drainage device for a plant according to an embodiment of the present application.
Fig. 2 is a schematic structural view mainly showing positions and connection relations of a drainage ditch body, a connecting cylinder and a drainage pipe in the embodiment of the present application.
Fig. 3 is a schematic structural diagram mainly used for showing a support member in the embodiment of the present application.
Fig. 4 is an enlarged schematic view at a in fig. 3.
Fig. 5 is a schematic structural view illustrating a locking member according to an embodiment of the present application.
Description of reference numerals: 1. a house body; 11. a wall body; 12. a roof; 2. a drainage ditch body; 21. a connecting cylinder; 22. a vertical tube; 23. a drain pipe; 3. a support member; 31. a first corner connector; 32. supporting the ejector rod; 321. a circular hole; 322. a first opening; 33. a top U-shaped card; 34. a nut; 4. supporting the corner connectors; 41. a support bottom bar; 42. a bottom U-shaped card; 5. a locking member; 51. a slider; 52. a sliding plate; 53. a limiting plate; 54. mounting a rod; 55. a fixing plate; 56. a spring.
Detailed Description
The present application is described in further detail below with reference to figures 1-5.
The embodiment of the application discloses mill uses rainwater drainage device. Referring to fig. 1, the rainwater drainage apparatus for a factory includes a drainage ditch body 2 installed at the top of a house body 1; the house body 1 is composed of a plurality of wall bodies 11 and a roof 12 which is installed on the wall bodies 11 and covers the wall bodies 11; escape canal body 2 is made by U shaped steel, and fixed connection is in the up end of wall body 11, and the extending direction of escape canal body 2 is the same with the extending direction of wall body 11, and the width of escape canal body 2 is greater than the width of wall body 11, and the rainwater on roof 12 upper portion can be catched to inside escape canal body 2 along its inclined plane.
Referring to fig. 2, the bottom of the drainage ditch body 2 is fixedly connected with a plurality of vertically arranged connecting cylinders 21, the connecting cylinders 21 are arranged at equal intervals along the length direction of the drainage ditch body 2 and are communicated with the drainage ditch body 2, and the horizontal cross section of the connecting cylinders 21 is larger than that of the drainage pipe 23; the equal rigid coupling in bottom of connecting cylinder 21 has standpipe 22, and a drain pipe 23 is installed to a plurality of standpipes 22's bottom, and drain pipe 23 communicates with escape canal body 2, and the both ends of drain pipe 23 all extend to the outside of wall body 11.
Referring to fig. 2 and 3, a plurality of supporting members 3 for supporting the adjacent drainage pipes 23 are mounted on the side wall of the wall 11, the supporting members 3 are arranged at equal intervals along the length direction of the wall 11, and each supporting member 3 comprises a first corner connector 31, a supporting ejector rod 32, a top U-shaped clamp 33 and a nut 34. The first corner connectors 31 are vertically arranged and are installed on the side wall of the wall body 11 through expansion bolts; the supporting ejector rod 32 is also made of angle steel, the supporting ejector rod 32 is horizontally arranged and is welded on the first corner connector 31, the supporting ejector rod 32 is perpendicular to the side wall of the wall body 11, the top of the supporting ejector rod 32 is a horizontally arranged straight section, the bottom of the supporting ejector rod 32 is a vertically arranged straight section, the water drainage pipe 23 is placed on the upper portion of the supporting ejector rod 32, and the water drainage pipe 23 is perpendicular to the extending direction of the supporting ejector rod 32; the top U-shaped clamp 33 penetrates through the support mandril 32 and is sleeved on the drain pipe 23; the nut 34 is provided with two bottom ends which are threaded on the top U-shaped clamp 33 and are positioned at the bottom of the supporting mandril 32.
Referring to fig. 3, a plurality of support angle braces 4 are installed on the side wall of the wall 11 at equal intervals along the horizontal direction, the support angle braces 4 are installed on the side wall of the wall 11 through expansion bolts, the support angle braces 4 are L-shaped, the vertical ends of the support angle braces 4 are abutted against the side wall of the wall 11, and the extending direction of the horizontal section of the support angle braces 4 is perpendicular to the extending direction of the drain pipe 23; and a support bottom rod 41 is placed on the upper parts of the plurality of support corner connectors 4, and the support bottom rod 41 extends along the extension direction of the side wall of the house wall 11. The upper portion of support angle sign indicating number 4 is installed bottom U-shaped card 42, and bottom U-shaped card 42 cover is established on supporting sill 41, and wherein supporting sill 41 has the clearance apart from the lateral wall of wall body 11.
Referring to fig. 4 and 5, a vertically extending circular hole 321 is formed in the horizontal section of the supporting ejector rod 32, the outer diameter of the circular hole 321 is larger than that of the nut 34, a first opening 322 communicated with the circular hole 321 is formed in the upper end surface of the horizontal section of the supporting ejector rod 32, and one end, away from the circular hole 321, of the first opening 322 is open; the supporting mandril 32 is provided with a locking piece 5, and the locking piece 5 comprises a sliding block 51, a sliding plate 52 and a limiting plate 53; the sliding block 51 is horizontally placed in the first opening 322, and the side wall is abutted with the inner side wall of the first opening 322; the sliding plate 52 is fixedly connected to the upper end surface of the sliding block 51 and extends to the upper end surface of the supporting top rod 32, and the sliding plate 52 covers the round hole 321 and is positioned at one side of the top U-shaped card 33; the limit plate 53 is fixedly connected to the bottom of the slide block 51 and located at the bottom of the support top rod 32, and the upper end surface of the slide block 51 is abutted to the lower end surface of the support top rod 32.
Referring to fig. 5, the side wall of the sliding block 51, on which the first opening 322 is formed, is fixedly connected with an installation rod 54, and the extending direction of the installation rod 54 is the same as the extending direction of the support bottom rod 41; the end surface of the mounting rod 54 facing away from the support top bar 32 is vertically provided with a horizontally extending fixing plate 55, and a spring 56 is arranged between the side wall of the fixing plate 55 and the side wall of the slide block 51.
The implementation principle of the rainwater drainage device for the factory in the embodiment of the application is as follows: rainwater falls into the upper part of the roof 12, the rainwater on the upper part of the roof 12 is discharged into the drainage ditch body 2 and flows into the vertical pipe 22 along the connecting cylinder 21, the rainwater in the vertical pipe 22 flows into the drainage pipe 23, and the rainwater in the drainage pipe 23 is discharged to the outer side of the wall body 11.
When one section of the drainage pipe 23 is broken and needs to be replaced, firstly, the sliding plate 52 is moved to the side away from the top U-shaped clamp 33, at this time, the spring 56 is compressed, at this time, the sliding plate 52 can drive the sliding block 51 to be separated from the first opening 322, and the limiting plate 53 is driven to move away from the bottom of the supporting bottom rod 41; because the diameter of the nut 34 is smaller than that of the round hole 321, the top U-shaped clamp 33 can drive the nut 34 to move out of the round hole 321, the whole using process is convenient, and the top U-shaped clamp 33 can be rapidly detached from the supporting bottom rod 41.
The above embodiments are preferred embodiments of the present application, and the protection scope of the present application is not limited by the above embodiments, so: all equivalent changes made according to the structure, shape and principle of the present application shall be covered by the protection scope of the present application.
Claims (8)
1. The utility model provides a rainwater drainage device for mill, is including installing escape canal body (2) at house body (1) top, standpipe (22) are installed to the bottom of escape canal body (2), drain pipe (23), its characterized in that are installed to the bottom of standpipe (22): install support piece (3) that carry out the support to drain pipe (23) on the lateral wall of house body (1), support piece (3) are including installing first angle sign indicating number (31) at house body (1) lateral wall, first angle sign indicating number (31) are located between the lateral wall of drain pipe (23) and house body (1), install support ejector pin (32) that the level extends on the lateral wall of first angle sign indicating number (31), the upper portion at support ejector pin (32) is placed in drain pipe (23), the top U-shaped card (33) of establishing on drain pipe (23) is installed on the upper portion of support ejector pin (32).
2. A rainwater drainage apparatus for a factory according to claim 1, wherein: install support sill bar (41) that are located support ejector pin (32) bottom on the lateral wall of house body (1), support sill bar (41) and extend along the extending direction of house wall body (11) lateral wall, a plurality of support angle sign indicating numbers (4) are installed to the bottom of supporting sill bar (41), support angle sign indicating number (4) and all install on the lateral wall of house body (1).
3. A rainwater drainage apparatus for a factory according to claim 1, wherein: the bottoms of the top U-shaped clamps (33) are all connected with nuts (34) in a threaded mode.
4. A rainwater drainage apparatus for a factory according to claim 1, wherein: connecting cylinder (21) are all installed at the top of standpipe (22), install in the bottom of escape canal body (2) connecting cylinder (21), and communicate with escape canal body (2), the horizontal cross-section of connecting cylinder (21) is greater than the horizontal cross-section of drain pipe (23).
5. A rainwater drainage apparatus for a factory according to claim 2, wherein: the supporting bottom rod (41) has a gap from the side wall of the house body (1).
6. A rainwater drainage apparatus for a factory according to claim 2, wherein: the upper portion of supporting the corner connectors (4) is provided with a bottom U-shaped clamp (42), and the bottom U-shaped clamp (42) is sleeved on the supporting bottom rod (41).
7. A rainwater drainage apparatus for a factory according to claim 1, wherein: round hole (321) have been seted up on support ejector pin (32), the diameter of round hole (321) is greater than the diameter of nut (34), set up first opening (322) with round hole (321) intercommunication on the lateral wall of support ejector pin (32), install locking piece (5) on support ejector pin (32), sliding block (51) of the inboard of first opening (322) are placed including sliding in locking piece (5), sliding plate (52) that are located support sill bar (41) upper portion are installed to the up end of sliding block (51), limiting plate (53) that are located support ejector pin (32) bottom are installed to the bottom of sliding block (51).
8. A rainwater drainage apparatus for a factory according to claim 7, wherein: install installation pole (54) on the lateral wall that first opening (322) were seted up in sliding block (51), fixed plate (55) are installed to the tip of installation pole (54), install spring (56) between fixed plate (55) and sliding block (51).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202023334039.7U CN214364496U (en) | 2020-12-31 | 2020-12-31 | Mill uses rainwater drainage device |
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CN202023334039.7U CN214364496U (en) | 2020-12-31 | 2020-12-31 | Mill uses rainwater drainage device |
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CN214364496U true CN214364496U (en) | 2021-10-08 |
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CN202023334039.7U Active CN214364496U (en) | 2020-12-31 | 2020-12-31 | Mill uses rainwater drainage device |
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