CN216380288U - Water diversion device - Google Patents

Water diversion device Download PDF

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Publication number
CN216380288U
CN216380288U CN202023317731.9U CN202023317731U CN216380288U CN 216380288 U CN216380288 U CN 216380288U CN 202023317731 U CN202023317731 U CN 202023317731U CN 216380288 U CN216380288 U CN 216380288U
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China
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diversion
water
joint
facility
water diversion
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CN202023317731.9U
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Chinese (zh)
Inventor
丁盛
洪全子
黄键
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Gloco Energy Technology Shanghai Co ltd
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Gloco Energy Technology Shanghai Co ltd
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Abstract

The utility model provides a water diversion device which comprises a water diversion body, wherein the water diversion body comprises a connecting part and an outward expansion part connected with the side edge of the connecting part, the surface of the connecting part is provided with a bulge, the bulge forms a joint part, one surface of the joint part, which is deviated from the connecting part, is provided with a joint surface, and a diversion space is arranged between the surface of the joint surface and the outward expansion part. When using, the binding face in the laminating portion will with treat that diversion facility surface is laminated mutually, treat this moment that diversion facility surface will have the water conservancy diversion space with expanding between the portion outward, when the surface of treating diversion facility has ponding, the tension effect on ponding surface will make ponding collect to diversion body department gradually, and under the guide effect in water conservancy diversion space, will promote ponding and discharge along setting for the direction, make the ponding ability of treating diversion facility surface in time discharge, thereby also avoid ponding to leave a large amount of dusts behind treating diversion facility surface evaporation and adhere on the surface of treating diversion facility.

Description

Water diversion device
Technical Field
The utility model relates to a water diversion device, in particular to a water diversion device capable of promoting the drainage of accumulated water on a facility to be diversion.
Background
In the positions of the automobile roof or roof part corner and the like, accumulated water in rainy days cannot flow out quickly, a large amount of dust and the like are contained in the accumulated water, if the accumulated water in the positions is not discharged in time, and after water is evaporated, the positions are easy to collect a large amount of dust, so that the automobile roof or roof part corner is quite unattractive, frequent cleaning is needed, and a plurality of unnecessary expenses are increased.
Therefore, it is necessary to develop a device which can promote the drainage of accumulated water on the roof or roof of a vehicle.
SUMMERY OF THE UTILITY MODEL
In view of the above-mentioned shortcomings of the prior art, the present invention provides a water diversion device capable of promoting the drainage of accumulated water.
In order to achieve the purpose, the utility model provides a water diversion device which comprises a water diversion body, wherein the water diversion body comprises a connecting part and an outward expansion part connected with the side edge of the connecting part, the surface of the connecting part is provided with a bulge, the bulge forms a joint part, one surface of the joint part, which is deviated from the connecting part, is provided with a joint surface, and a diversion space is arranged between the surface of the joint surface and the outward expansion part.
Furthermore, the connecting part comprises a first connecting part and a second connecting part connected with the first connecting part, an included angle alpha is formed between the first connecting part and the second connecting part, alpha is more than 0 degree and less than 180 degrees, and the external expansion part comprises a first external expansion part connected with the side edge of the first connecting part and a second external expansion part connected with the side edge of the second connecting part.
Further, be equipped with on first connecting portion laminating portion, the laminating portion that is located first connecting portion is first laminating portion, the surface that first laminating portion deviates from first connecting portion is equipped with the binding face, and the binding face that is located first laminating portion is first binding face, first binding face place face and first expand outward and have between the portion the water conservancy diversion space.
Further, be equipped with on the second connecting portion laminating portion, the laminating portion that is located on the second connecting portion is second laminating portion, the surface that second laminating portion deviates from the second connecting portion is equipped with the binding face, and the binding face that is located on the second laminating portion is the second binding face, second binding face place face and second expand and have between the portion the water conservancy diversion space.
Furthermore, the distance between the first external expanding portion and the surface where the first binding face is located gradually increases from the side of the first external expanding portion close to the first connecting portion to the side of the first external expanding portion away from the first connecting portion.
Further, the cross section of the first flaring portion is arc-shaped.
Furthermore, the diversion body comprises two outward-expanding parts which are respectively connected with two side edges of the connecting part.
Furthermore, the attaching part is provided with a missing part, and a communicating space is arranged between the surface where the attaching surface is located and the side wall of the missing part.
Furthermore, the side of diversion body is equipped with the location breach.
Furthermore, the left side edge and the right side edge of the water diversion body are provided with the positioning notches.
As described above, the water diversion device according to the present invention has the following beneficial effects:
when the device is used, the binding surface on the binding part is bound with the surface of a to-be-diversion facility with accumulated water, such as an automobile, a house and the like, because the binding surface is located and the diversion space is arranged between the outer expanding part, the diversion space is arranged between the surface of the to-be-diversion facility and the outer expanding part, when the surface of the to-be-diversion facility is accumulated with water, the accumulated water is gradually gathered to the water diversion body under the action of the tension of the accumulated water surface, the drainage of the accumulated water along the set direction is promoted under the guiding action of the diversion space, the accumulated water on the surface of the to-be-diversion facility can be timely drained, and the dust in the accumulated water is taken away along with the drainage of the accumulated water, so that a large amount of dust left after the surface of the to-be-diversion facility is evaporated is prevented from being adhered to the surface of the to-be-diversion facility, and the effects of promoting the drainage and cleaning of the accumulated water are achieved.
Drawings
Fig. 1 is a schematic structural view of a water diversion device according to an embodiment of the present invention.
Fig. 2 is a perspective view of a water diversion device in an embodiment of the utility model.
Fig. 3 is a schematic structural view of a water diversion device in the second embodiment of the present invention.
Fig. 4 is a schematic structural view of a water diversion device in the third embodiment of the present invention.
Description of the element reference numerals
100 water leading body
1 connecting part
11 first connection part
12 second connecting part
2 external expanding part
21 first flaring portion
22 second flared section
23 transition part
3 flow guiding space
41 first bonding part
411 first binding face
412 missing part
42 second attaching part
421 second binding face
5 location gap
Detailed Description
The following description of the embodiments of the present invention is provided for illustrative purposes, and other advantages and effects of the present invention will become apparent to those skilled in the art from the present disclosure.
It should be understood that the structures, ratios, sizes, and the like shown in the drawings are only used for matching the disclosure of the present disclosure, and are not used for limiting the conditions of the present disclosure, so that the present disclosure is not limited to the technical essence, and any modifications of the structures, changes of the ratios, or adjustments of the sizes, can still fall within the scope of the present disclosure without affecting the function and the achievable purpose of the present disclosure. In addition, the terms "upper", "lower", "left", "right", "middle" and "one" used in the present specification are for convenience of description only, and are not intended to limit the scope of the present invention, and the relative relationship between the terms and the terms is not to be construed as a scope of the present invention unless otherwise specified.
Example one
As shown in fig. 1 and fig. 2, this embodiment provides a water diversion device, including water diversion body 100, water diversion body 100 includes connecting portion 1 and expands portion 2 outward that is connected with the side of connecting portion 1, and the surface of connecting portion 1 is equipped with the arch, and the arch constitutes laminating portion, and a surface that laminating portion deviates from connecting portion 1 is equipped with the binding face, and the binding face place face has water conservancy diversion space 3 with expanding outward between the portion 2. When the device is used, the binding surface on the binding part is bound with the surface of a to-be-diversion facility with accumulated water, such as an automobile, a house and the like, because the binding surface is located between the surface and the outer expanding part 2, the diversion space 3 is arranged between the surface of the to-be-diversion facility and the outer expanding part 2, when the surface of the to-be-diversion facility is provided with the accumulated water, the accumulated water is gradually collected to the water diversion body 100 under the action of the tension of the surface of the accumulated water, the accumulated water is promoted to be discharged along the set direction under the guiding action of the diversion space 3, the accumulated water on the surface of the to-be-diversion facility can be discharged in time, and the dust in the accumulated water is taken away along with the discharge of the accumulated water, so that a large amount of dust left after the surface of the to-be-diverted facility is evaporated is prevented from being adhered to the surface of the to-be-diversion facility, and the effects of promoting the discharge and cleaning of the accumulated water are achieved.
As shown in fig. 2, the connection portion 1 in this embodiment includes a first connection portion 11 and a second connection portion 12 connected to the first connection portion 11, an included angle α is formed between the first connection portion 11 and the second connection portion 12, and 0 ° < α < 180 °, and the flaring portion 2 includes a first flaring portion 21 connected to a side edge of the first connection portion 11 and a second flaring portion 22 connected to a side edge of the second connection portion 12. That is, in this embodiment, the connecting portion 1 is a bent structure and includes two portions; the flaring portion 2 is also of a bent structure and comprises two parts. When the water diversion device is used, the connecting part 1 can be clamped at the side edge of the top of the water diversion facility waiting for automobiles and houses, one part of the connecting part 1 corresponds to the top surface of the water diversion facility to be treated, the other part corresponds to the side wall of the water diversion facility to be treated, so that one part of the outward expansion part 2 corresponds to the top surface of the water diversion facility to be treated, the other part corresponds to the side wall of the water diversion facility to be treated, and the structure can more effectively promote the accumulated water on the top surface of the water diversion facility to be discharged downwards along the side wall of the water diversion facility to be treated. Specifically, in use, the first connecting portion 11 and the first flared portion 21 correspond to the top surface of the facility to be catched, and the second connecting portion 12 and the second flared portion 22 correspond to the side wall of the facility to be catched.
As shown in fig. 2, in the present embodiment, the first connecting portion 11 is provided with a bonding portion, the bonding portion located on the first connecting portion 11 is a first bonding portion 41, a bonding surface is provided on a surface of the first bonding portion 41 departing from the first connecting portion 11, the bonding surface located on the first bonding portion 41 is a first bonding surface 411, and a flow guiding space 3 is provided between a surface where the first bonding surface 411 is located and the first flaring portion 21. Meanwhile, as shown in fig. 2, in this embodiment, a bonding portion is disposed on the second connecting portion 12, the bonding portion located on the second connecting portion 12 is a second bonding portion 42, a surface of the second bonding portion 42 departing from the second connecting portion 12 is provided with the bonding surface, the bonding surface located on the second bonding portion 42 is a second bonding surface 421, and a flow guiding space 3 is provided between a surface where the second bonding surface 421 is located and the second flared portion 22. When the water diversion device is used, the first binding surface 411 is bound with the top surface of a water diversion facility waiting for automobiles and houses, so that a flow guide space 3 is formed between the top surface of the water diversion facility and the first outward expansion part 21; the second attaching surface 421 attaches to the sidewall of the facility to be diversion close to the top surface thereof, and a diversion space 3 is provided between the second attaching surface 421 and the sidewall of the facility to be diversion. When there is ponding on the top surface of treating diversion facility, ponding easily collects in diversion body 100 department, will be under the guide with first flaring portion 21, along the diversion space 3 between first flaring portion 21 and the top surface to the edge flows to under the guide of second flaring portion 22, continue to flow downwards along the diversion space 3 between second flaring portion 22 and the lateral wall, thereby promoted the discharge of ponding on the top surface greatly. In addition, in the embodiment, the first flaring portion 21 and the second flaring portion 22 are connected through a transition portion 23, and the cross section of the transition portion 23 is arc-shaped. The transition part 23 and the edge of the facility to be diversion form a transition channel, and water at the first outward-expanding part 21 can easily flow into the diversion space 3 at the second outward-expanding part 22 through the transition channel.
In other embodiments, only the first connecting portion 11 or only the second connecting portion 12 may be provided with the bonding portion and the bonding surface.
The binding face can directly be fixed on the corresponding face that car, house waited for the diversion facility through the mode that bonds in this embodiment, also can fix diversion body 100 on waiting to divert the water facility through other mountings, and the mounting can direct action in the connecting portion 1 of diversion body 100 to fix diversion body 100 on waiting to divert the water facility, and make the binding face tightly laminate with the corresponding face of waiting to divert the water facility.
As shown in fig. 1 and fig. 2, in the present embodiment, a distance between the first flared portion 21 and the first attachment surface 411 is gradually increased from a side of the first flared portion 21 close to the first connection portion 11 to a side of the first flared portion 21 away from the first connection portion 11. In a use state, the first outward expansion part 21 is of a tilting structure extending along the direction away from the facility to be catched water, and the diversion space 3 formed by the design is easier to guide accumulated water to flow along the first outward expansion part 21. Meanwhile, in the present embodiment, the distance between the second flared portion 22 and the second attachment surface 421 gradually increases from the side of the second flared portion 22 close to the second connecting portion 12 to the side of the second flared portion 22 away from the second connecting portion 12. In a use state, the second outward-expanding part 22 is of a tilting structure extending along the direction away from the facility to be catched water, and the diversion space 3 formed by the design is easier to guide accumulated water to flow downwards along the second outward-expanding part 22. Specifically, as shown in fig. 1 and 2, the cross sections of the first flaring portion 21 and the second flaring portion 22 are arc-shaped in the present embodiment.
As shown in fig. 1 and 2, the water diversion body 100 of the present embodiment includes two outward-expanding portions 2, and the two outward-expanding portions 2 are respectively connected to the left and right sides of the connecting portion 1. Thus, when in use, the diversion space 3 is formed on both sides of the connecting part 1, and the drainage capacity is enhanced.
As shown in fig. 2, in the present embodiment, the attaching portion is provided with a missing portion 412, and a communicating space is provided between the surface where the attaching surface is located and the sidewall of the missing portion 412. When the binding surface is bound with the surface of the facility to be diversion, a communication space is formed between the surface of the facility to be diversion and the side wall of the missing part 412, the communication space is communicated with the diversion space 3, accumulated water around the binding part is easily guided to be converged into the diversion space 3, and the drainage capacity is further enhanced. Specifically, one end of the first attaching portion 41 away from the second connecting portion 12 is provided with a missing portion 412. In this way, a communication space is formed between the surface of the facility to be catched and the top surface of the missing part 412, and the communication space is communicated with the diversion spaces 3 on both sides of the first attaching part 41, so that accumulated water around the first attaching part 41 is easily guided to be gathered into the two diversion spaces 3.
As shown in fig. 1 and 2, in the present embodiment, a positioning notch 5 is formed on a side edge of the water diversion body 100. When depositing, can fold a plurality of diversion devices together, be about to a plurality of diversion bodies 100 and fold together, utilize hoops such as rubber band this moment on whole diversion bodies 100 to make the rubber band card in this location breach 5 department, location breach 5 will play effectual positioning action to the rubber band, avoid the rubber band to drop, and this kind of mode will change and deposit a plurality of diversion devices. Simultaneously, the left and right sides limit of diversion body 100 all is equipped with in this embodiment location breach 5, when stacking a plurality of this diversion devices, the rubber band card can play better positioning action to the rubber band in two location breach 5. In particular, the edge of the transition portion 23 is provided with a positioning notch 5, where the provision of the positioning notch 5 will not affect the drainage.
The water diversion device in this embodiment can be applied to the place of frequent easy ponding such as car roof, photovoltaic power generation board, and this water diversion device is a multipurpose water diversion device.
In the embodiment, the first connecting part 11 and the second connecting part 12 both extend along a plane, the plane where the first connecting part 11 and the second connecting part 12 are located intersects, and the size of an included angle alpha between the first connecting part 11 and the second connecting part 12 is determined according to the actual use position; for example, if the corner at the use position is a right angle, the angle α is set to 90 °. The first attaching surface 411 and the second attaching surface 421 are both planar. One surface of the first bonding portion 41 is fixed to the first connecting portion 11, and the other surface is provided with the first bonding surface 411. One surface of the second bonding portion 42 is fixed to the second connecting portion 12, and the other surface is provided with the second bonding surface 421. Laminating portion adopts protruding structure in this embodiment for binding face place face and expand outward and form water conservancy diversion space 3 between 2, expand portion 2 outward and be the structure that sticks up in the combination, guarantee that the water conservancy diversion space 3 that forms is great, more be favorable to letting rivers pass through, reinforcing drainage ability. The water diversion body 100 in this embodiment is of an integrated structure, so as to facilitate processing and reduce production cost. In this embodiment, the water diversion body 100 is made of hydrophilic material. The water diversion device in the embodiment has the advantages of simple structure, low cost, attractive and elegant appearance and decorative effect.
When the device is used, the device is arranged at a place where accumulated water possibly exists on a facility to be diversion, the binding surface is kept to be bound with the surface of the facility to be diversion, the accumulated water is gradually collected at the device due to the hydrophilicity of the device and the action of the surface tension of the accumulated water, and then the accumulated water is guided to flow out along a diversion space 3 formed among the external expanding part 2, the binding part and the surface of the facility. Before ponding near this diversion device is not run out, rivers can continue to flow to take away the dust in the rivers, leave the dust spot after avoiding the moisture evaporation.
The water diversion device in this embodiment specifically also can be applied to on the photovoltaic power generation board. Due to the effect of rainwater, accumulated water often exists on the photovoltaic power generation panel, meanwhile, the accumulated water can absorb dust in the air, after the accumulated water is evaporated, dust stains can be gathered on the photovoltaic power generation panel, the power generation efficiency is influenced, and the visual effect of a power plant is very poor. When the water diversion device is used, the water diversion device is fixed on the photovoltaic power generation panel frame, the first binding face 411 and the photovoltaic power generation panel frame upper surface are bound, and the second binding face 421 and the photovoltaic power generation panel side frame are bound. When water flow is gathered on the photovoltaic power generation panel, the water flow can flow along the guiding directions of the first outward expanding part 21 and the second outward expanding part 22 due to the surface tension effect of the accumulated water caused by the hydrophilic material of the water guiding device, and then the accumulated water on the photovoltaic power generation panel is guided to flow out. Meanwhile, dust in accumulated water can be taken away by water flow which continuously flows, and dust is prevented from being adhered to the photovoltaic power generation panel after water evaporation.
Example two
As shown in fig. 3, the present embodiment is different from the first embodiment in that only one side of the water diversion body 100 is provided with the positioning notch 5, that is, only the edge of one transition portion 23 is provided with the positioning notch 5.
EXAMPLE III
As shown in fig. 4, the present embodiment is different from the first embodiment in that only one of the flaring portions 2 is provided, i.e., only one side of the connecting portion 1 is provided with the flaring portion 2.
In conclusion, the present invention effectively overcomes various disadvantages of the prior art and has high industrial utilization value.
The foregoing embodiments are merely illustrative of the principles and utilities of the present invention and are not intended to limit the utility model. Any person skilled in the art can modify or change the above-mentioned embodiments without departing from the spirit and scope of the present invention. Accordingly, it is intended that all equivalent modifications or changes which can be made by those skilled in the art without departing from the spirit and technical spirit of the present invention be covered by the claims of the present invention.

Claims (10)

1. The utility model provides a diversion device, its characterized in that, includes diversion body (100), diversion body (100) include connecting portion (1) and expand portion (2) outward that are connected with the side of connecting portion (1), the surface of connecting portion (1) is equipped with the arch, the arch constitutes laminating portion, a surface that laminating portion deviates from connecting portion (1) is equipped with the binding face, binding face place face and expand outward and have water conservancy diversion space (3) between portion (2).
2. The water diversion device according to claim 1, characterized in that the connecting part (1) comprises a first connecting part (11) and a second connecting part (12) connected with the first connecting part (11), an included angle α is formed between the first connecting part (11) and the second connecting part (12), 0 ° < α < 180 °, and the flared part (2) comprises a first flared part (21) connected with a side edge of the first connecting part (11) and a second flared part (22) connected with a side edge of the second connecting part (12).
3. The water diversion device according to claim 2, characterized in that the attaching portion is provided on the first connecting portion (11), the attaching portion on the first connecting portion (11) is a first attaching portion (41), the surface of the first attaching portion (41) facing away from the first connecting portion (11) is provided with the attaching surface, the attaching surface on the first attaching portion (41) is a first attaching surface (411), and the diversion space (3) is provided between the surface of the first attaching surface (411) and the first flared portion (21).
4. The diversion device according to claim 3, wherein the joint portion is provided on the second connecting portion (12), the joint portion located on the second connecting portion (12) is a second joint portion (42), the surface of the second joint portion (42) facing away from the second connecting portion (12) is provided with the joint surface, the joint surface located on the second joint portion (42) is a second joint surface (421), and the diversion space (3) is provided between the surface where the second joint surface (421) is located and the second flared portion (22).
5. The water diversion device according to claim 3, wherein the distance between the first flared portion (21) and the first abutting surface (411) is gradually increased from the side of the first flared portion (21) close to the first connecting portion (11) to the side of the first flared portion (21) away from the first connecting portion (11).
6. The water diversion device according to claim 5, characterized in that the cross section of the first flared part (21) is arc-shaped.
7. The water diversion device according to claim 1, characterized in that the water diversion body (100) comprises two outward-expanding parts (2), and the two outward-expanding parts (2) are respectively connected with two side edges of the connecting part (1).
8. The priming device of claim 1, wherein the joint part is provided with a missing part (412), and a communication space is formed between the surface of the joint surface and the side wall of the missing part (412).
9. The water diversion device according to claim 1, characterized in that the side of the water diversion body (100) is provided with a positioning notch (5).
10. The water diversion device according to claim 9, wherein the positioning notches (5) are arranged on the left side and the right side of the water diversion body (100).
CN202023317731.9U 2020-12-31 2020-12-31 Water diversion device Active CN216380288U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202023317731.9U CN216380288U (en) 2020-12-31 2020-12-31 Water diversion device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202023317731.9U CN216380288U (en) 2020-12-31 2020-12-31 Water diversion device

Publications (1)

Publication Number Publication Date
CN216380288U true CN216380288U (en) 2022-04-26

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Application Number Title Priority Date Filing Date
CN202023317731.9U Active CN216380288U (en) 2020-12-31 2020-12-31 Water diversion device

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