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CN208088465U - A kind of water intake control switch for device for collecting rain water to be adjusted - Google Patents

A kind of water intake control switch for device for collecting rain water to be adjusted Download PDF

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Publication number
CN208088465U
CN208088465U CN201820181181.6U CN201820181181U CN208088465U CN 208088465 U CN208088465 U CN 208088465U CN 201820181181 U CN201820181181 U CN 201820181181U CN 208088465 U CN208088465 U CN 208088465U
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CN
China
Prior art keywords
rainwater
pipe body
receiving pipe
water
interface
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Expired - Fee Related
Application number
CN201820181181.6U
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Chinese (zh)
Inventor
汪赟
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Individual
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Individual
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Priority to CN201820181181.6U priority Critical patent/CN208088465U/en
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Publication of CN208088465U publication Critical patent/CN208088465U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The utility model provides a kind of water intake control switch for device for collecting rain water to be adjusted, including dmp filter net, closure end, rainwater tube body, rectangular interface, support buckle, mouth of connecting trough and open end;Wherein, the rectangular interface for receiving rainwater is offered on rainwater tube body, and dmp filter net is provided on rectangular interface;Two support buckles of dmp filter net are provided with for nesting and blocked on rainwater inboard wall of tube body face so that are set the dmp filter net in rainwater tube body and be bonded and be packaged rectangular interface;Coordinate between all parts (including main connector, rainwater-collecting interface, the more bore adapters of water pipe, water tank converting interface etc.) in the water intake control switch of the utility model and adjustable device for collecting rain water easy for installation, it is at low cost, applicability is wide, can be used cooperatively with current domestic conventional circular rain drainage pipe.

Description

Water taking control switch for adjustable rainwater collector
Technical Field
The utility model relates to a technical field is collected to the precipitation rainwater, specifically is a water intaking control switch for adjustable rainwater collector.
Background
With the development of world economy, the population is continuously increased, cities are gradually increased and expanded, the water consumption of each place is continuously increased, and the contradiction between supply and demand of water resources in many areas and countries is increasingly prominent. The water saving and the reasonable utilization of water resources are the obligations and obligations of each person to be irrevocable.
Precipitation is a frequent occurrence in almost every area, and if people can effectively and conveniently fully utilize the relatively inexhaustible water resource, the water-saving effect is remarkable, and the exploitation and utilization of underground water and surface runoff water can be effectively reduced. Moreover, along with the continuous expansion of urban building area, the water quantity flowing out through the drainage pipeline arranged on the building is considerable in the precipitation process, and if an effective device and an effective method can be used for collecting and fully utilizing the rainwater on the drainage pipeline, an effective water-saving way can be formed
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a can be connected with the rainwater drain pipe to realize collecting the adjustable rainwater collector of function and a water intaking control switch who is used for adjustable rainwater collector to the rainwater.
In order to achieve the above object, the utility model provides a following technical scheme:
the utility model provides an adjustable rainwater collector, includes main connector, a water intaking control switch, rainwater collection interface, the many bores adapter of water pipe, water tank switching mouth and two fixed buckles of nested both ends about main connector that are used for adjustable rainwater collector, and the many bores adapter of water pipe passes through rainwater collection interface and is connected with main connector.
Preferably, the method comprises the following steps: the main connector comprises an upper connector, a shell barrel, a side switch port, a side rainwater collecting port and a lower connector; the upper connector and the lower connector are positioned in the upper and lower coaxial extending directions, and the side switch port and the side rainwater collecting port are positioned in the left and right coaxial extending directions; a first annular clamping groove used for being matched and connected with the fixing buckle is formed between the upper connector and the top end of the shell barrel, and the rainwater drainage pipeline is communicated with the upper connector of the main connector through the fixing buckle; a second annular clamping groove used for being matched and connected with the water taking control switch is formed between the side switch opening and the side end of the shell barrel body, so that the water taking control switch can be embedded into the side switch opening from outside to inside and faces the side rainwater collecting opening, and the water taking control switch is communicated with the side rainwater collecting opening; the water tank adapter or the water outlet pipeline is communicated with the lower interface of the main connector through a fixing buckle.
Preferably, the method comprises the following steps: the utility model provides a water intaking control switch for adjustable rainwater collector, specifically: the water taking control switch comprises a rainwater filter screen, a plugging end, a rainwater receiving pipe body, a rectangular interface, a support buckle, a connecting notch and an open end; the rainwater receiving pipe body is provided with a rectangular interface for receiving rainwater, and the rectangular interface is provided with a rainwater filter screen for preventing impurities such as leaves in the rainwater and the like from entering the rainwater receiving pipe body along with the rainwater, so that the purpose of filtering the impurities is achieved; two supporting buckles for nesting and clamping the rainwater filter screen are arranged on the inner wall surface of the rainwater receiving pipe body, so that the rainwater filter screen embedded in the rainwater receiving pipe body is attached and a rectangular connector is packaged; one side end of the rainwater receiving pipe body is a plugging end, and the other side end of the rainwater receiving pipe body is an open end, so that rainwater entering from the rectangular connector can only flow out along the open end of the rainwater receiving pipe body; a plurality of connecting notches for being buckled, positioned and connected in the main connector are arranged on the edge of the open end of the rainwater receiving pipe body; the outer side surface of the plugging end of the rainwater receiving pipe body is provided with a knob buckle for regulating and controlling the rainwater receiving pipe body to rotate up and down. The knob buckle is adjusted and controlled through up-and-down rotation, so that the rainwater injected or flowing into the upper connector of the main connector can be received when the rectangular connector on the rainwater receiving pipe body faces upwards, namely faces the upper connector of the main connector; or when the rectangular interface on the rainwater receiving pipe body faces downwards (namely faces to the lower interface of the main connector), rainwater injected or flowing in from the upper interface of the main connector directly flows through the side part of the rainwater receiving pipe body and enters the water tank adapter or a water outlet pipeline (comprising a rainwater drainage pipe) through the lower interface of the main connector.
Preferably, the method comprises the following steps: the rainwater collecting interface comprises a first cylinder, a second cylinder, a third involute outer cylinder, a third inner cylinder and a fourth annular groove; the bottom end of the first cylinder is fixedly connected with the top end of the second cylinder into a whole, the bottom end of the second cylinder is fixedly connected with the top end of the third involute-shaped outer cylinder into a whole, the inner diameter of the second cylinder is larger than that of the first cylinder, and the inner diameter of the third involute-shaped outer cylinder is larger than that of the second cylinder; the third inner cylinder body is sleeved in the third involute-shaped outer cylinder body, and the top end of the third inner cylinder body is fixedly connected with the bottom end of the second cylinder body into a whole; a fourth annular groove used for embedding the rainwater collecting port at the upper side part of the main connector is formed between the third involute-shaped outer cylindrical body and the third inner cylindrical body, and a plurality of reinforcing ribs are arranged in the fourth annular groove.
Preferably, the method comprises the following steps: the shell barrel is in a cross shape. The upper connector, the side switch opening, the side rainwater collecting opening and the lower connector are communicated with each other. The inner diameter of the lateral rainwater collecting port is larger than that of the upper port.
Preferably, the method comprises the following steps: the rainwater filter screen is made of a filter steel wire mesh or a filter iron wire mesh.
Preferably, the method comprises the following steps: and a third annular groove used for connecting the rainwater receiving pipe body on the lateral switch opening in a buckling manner is arranged at the inner side edge of the plugging end of the rainwater receiving pipe body.
Preferably, the method comprises the following steps: a plurality of reinforcing ribs which are used for being connected with the opening end of the rainwater receiving pipe body in a buckling fit mode are arranged in the fourth annular groove. Thus, the stability of the buckling and positioning of the rainwater receiving pipe body in the main connector is ensured.
Preferably, the method comprises the following steps: the multi-aperture adapter of the water pipe comprises an outer pipe device and a connector device, the outer pipe device comprises a fixed outer pipe, a fixing device and a second bolt, one end of the fixed outer pipe is fixed with the fixing device, the fixing device comprises a baffle and a first bolt, the first bolt is symmetrically distributed in the baffle and is movably connected with the baffle through an internal thread in the baffle, one side of the baffle is fixedly connected with the fixed outer pipe, the other side of the fixed outer pipe is provided with a second bolt hole, the second bolt is movably connected with the fixed outer pipe through a thread and is symmetrically distributed at one end of the fixed outer pipe, the internal thread is arranged on the inner surface of the fixed outer pipe, the fixed outer pipe is movably connected with the connector device through an internal thread, the connector device comprises a first cushion pipe, a water inlet pipe, a water service pipe, a water outlet pipe and a second cushion pipe, one side of the water inlet pipe is fixedly connected with, and the cross-section of inlet tube is trapezoidal, one side of water service pipe is fixed with one side of first pad pipe, and first pad pipe cross-section is trapezoidal, the opposite side of water service pipe and one side fixed connection of outlet pipe, the surface sliding connection of outlet pipe has the second pad pipe, the external screw thread has been seted up to the surface of water service pipe, the water service pipe passes through screw thread swing joint with fixed outer tube, first pad pipe and first bolt sliding connection, second pad pipe and second bolt sliding connection.
The first bolts are symmetrically distributed in the baffle plate. The second bolts are uniformly and symmetrically distributed on one side of the fixed outer pipe, the joint devices are two groups, and one sides of the water outlet pipes in the two groups of joint devices are fixedly connected with each other. The outer pipe devices are divided into two groups and are in one-to-one correspondence with the joint devices. A notch with a trapezoidal section is formed in one side of the first cushion pipe, and the water inlet pipe is located inside the first cushion pipe.
The basic working principle of the water pipe multi-caliber adapter is as follows: the outer tube and the piecing devices sliding connection in different apertures, the water pipe in the different apertures of the outer tube difference sliding connection of advancing among two piecing devices, pass through screw thread and piecing devices swing joint with the outer tube, two outer tubes respectively with the earthing device threaded connection who corresponds, rotate first bolt and second bolt respectively, through bolt extrusion pad pipe, play fixed effect, when changing different water pipes, rotate first bolt and second bolt respectively, then rotatory outer tube, take out the water pipe, reach the purpose of changing different aperture water pipes.
Compared with the prior art, the beneficial effects of the utility model are as follows:
adopt the technical scheme of the utility model, realize being connected with rainwater drain pipe, through this the utility model discloses an adjustable rainwater collector realizes the function of collecting the rainwater, moreover the utility model discloses an each part among adjustable rainwater collector (including main connector, water intaking control switch, rainwater collection interface, water pipe multi-aperture adapter, water tank switching mouth etc. promptly) simple to operate, with low costs, extensive applicability can use with the cooperation of the internal circular rainwater drainage pipe of current conventional.
Drawings
FIGS. 1-2 are schematic structural views of the main connector of the present invention;
FIGS. 3 to 5 are schematic structural views of the water intake control switch of the present invention;
fig. 6 to 8 are schematic structural views of the rainwater collecting interface of the present invention;
fig. 9 is a schematic structural view of the multi-caliber adapter for the reclaimed water pipe according to the present invention;
fig. 10 is a schematic structural view of a joint device of the multi-caliber adapter for the reclaimed water pipe according to the present invention;
fig. 11 is a schematic side view of the outer tube of the multi-caliber adapter for the reclaimed water tube according to the present invention;
fig. 12 is a schematic side view of the multi-caliber adapter for the reclaimed water pipe according to the present invention;
fig. 13 is a schematic view of the first cushion tube structure of the multi-caliber adapter for the reclaimed water tube of the present invention.
FIGS. 14 to 15 are schematic structural views of the adapter of the water tank of the present invention;
fig. 16-17 are schematic structural views of the middle fixing buckle of the present invention.
Detailed Description
The technical solution in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention.
Please refer to fig. 1-17, which illustrate a technical solution of the present invention: the utility model provides an adjustable rainwater collector, includes main connector 1, water intaking control switch 2, rainwater collection interface 3, the many bores adapter 4 of water pipe, water tank switching interface 5 and two fixed buckles 6 of nested both ends about main connector 1, the many bores adapter 4 of water pipe is connected with main connector 1 through rainwater collection interface 3.
As shown in FIGS. 1-2: the utility model provides a main connector for adjustable rainwater collector, specifically: the main connector 1 comprises an upper connector 11, a shell cylinder 13, a side switch port 14, a side rainwater collecting port 15 and a lower connector 16; the upper connector 11 and the lower connector 16 are positioned in the upper and lower coaxial extending directions, and the side switch port 14 and the side rainwater collecting port 15 are positioned in the left and right coaxial extending directions; a first annular clamping groove 12 for matching and connecting the fixing buckle 6 is formed between the upper connector 11 and the top end of the shell barrel 13, and the rainwater drainage pipeline is communicated with the main connector 1 through the fixing buckle 6; a second annular clamping groove 17 used for being matched and connected with the water taking control switch 2 is formed between the side switch port 14 and the side end of the shell barrel 13, so that the water taking control switch 2 can be embedded into the side switch port 14 from outside to inside and faces the side rainwater collecting port 15, and the water taking control switch 2 is communicated with the side rainwater collecting port 15; the water tank adapter port 5 or the water outlet pipeline is communicated with the lower port 16 of the main connector 1 through the fixing buckle 6.
As shown in FIGS. 3-5: the utility model provides a water intaking control switch for adjustable rainwater collector, specifically: the water taking control switch 2 comprises a rainwater filter screen, a plugging end 22, a rainwater receiving pipe body 23, a rectangular interface 24, a support buckle 25, a connecting notch 26 and an open end 28; wherein, a rectangular interface 24 for receiving rainwater is arranged on the middle part of the rainwater receiving pipe body 23, and a rainwater filter screen is arranged on the rectangular interface 24 for preventing impurities such as leaves in rainwater and the like from entering the rainwater receiving pipe body 23 along with the rainwater, thereby achieving the purpose of filtering the impurities; two supporting buckles 25 which are used for nesting and clamping the rainwater filter screen are arranged on the inner wall surface of the rainwater receiving pipe body 23, so that the rainwater filter screen embedded in the rainwater receiving pipe body 23 is attached and the rectangular connector 24 is packaged; one side end of the rainwater receiving pipe body 23 is a blocking end 22, and the other side end of the rainwater receiving pipe body 23 is an open end 28, so that rainwater entering from the rectangular connector 24 can only flow out along the open end 28 of the rainwater receiving pipe body 23; a plurality of connecting notches 26 for snap-positioning connection in the main connector 1 are provided on the edge of the open end 28 of the rainwater receiving pipe body 23; a knob 27 for regulating the vertical rotation of the rainwater receiving pipe body 23 is provided on the outer side surface of the plugging end 22 of the rainwater receiving pipe body 23. The knob buckle 27 is adjusted and controlled by rotating up and down to receive rainwater injected or flowing from the upper connector 11 of the main connector 1 when the rectangular connector 24 on the rainwater receiving pipe body 23 is upwards, namely towards the upper connector 11 of the main connector 1; or when the rectangular joint 24 of the rainwater receiving pipe body 23 is directed downward (i.e., toward the lower joint 16 of the main connector 1), rainwater injected or flowing in from the upper joint 11 of the main connector 1 directly flows from the side of the rainwater receiving pipe body 23 and enters the tank adapter 5 or the outlet pipe (including the rainwater drain pipe) through the lower joint 16 of the main connector 1.
As shown in FIGS. 6 to 8: the utility model provides a rainwater collection interface for adjustable rainwater collector, specifically: the rainwater collecting interface 3 comprises a first cylinder 31, a second cylinder 32, a third involute-shaped outer cylinder 33, a third inner cylinder 34 and a fourth annular groove 35; wherein, the bottom end of the first cylinder 31 is fixedly connected with the top end of the second cylinder 32 into a whole, the bottom end of the second cylinder 32 is fixedly connected with the top end of the third involute external cylinder 33 into a whole, the inner diameter of the second cylinder 32 is larger than that of the first cylinder 31, and the inner diameter of the third involute external cylinder 33 is larger than that of the second cylinder 32; the third inner cylinder 34 is sleeved in the third involute-shaped outer cylinder 33, and the top end of the third inner cylinder 34 is fixedly connected with the bottom end of the second cylinder 32 into a whole; a fourth annular groove 35 for embedding the upper side rainwater collection port 15 of the main connector 1 is formed between the third involute-shaped outer cylindrical body 33 and the third inner cylindrical body 34, and a plurality of reinforcing ribs 36 are arranged in the fourth annular groove 35. The rainwater collecting interface 3 is integrally in the shape of a step with different outer diameters of a plurality of layers so as to adapt to and connect the inner diameters of different water collecting pipelines.
As shown in FIGS. 1-2: the shell cylinder 13 is in a cross shape. The upper connector 11, the side switch port 14, the side rainwater collecting port 15 and the lower connector 16 are communicated with each other. The inner diameter of the lateral rainwater collecting port 15 is larger than that of the upper connector 11.
Wherein, the rainwater filter screen adopts the filtration wire net or filters the wire netting.
As shown in fig. 3 to 5, a third annular groove 29 for snap-connecting the rainwater receiving pipe body 23 to the side opening/closing port 14 is provided at the inner side edge of the plugging end 22 of the rainwater receiving pipe body 23.
As shown in fig. 6 to 8, a plurality of reinforcing ribs 36 are provided in the fourth annular groove 35 for snap-fit connection with the corresponding connecting notches 26 of the open end 28 of the rain water receiving pipe body 23. This ensures the stability of the snap-fit positioning of the rain water receiving pipe body 23 in the main connector 1.
As shown in FIGS. 9 to 13: the utility model provides a many calibers of water pipe adapter for adjustable rainwater collector, specifically: many bores adapter 4 of water pipe includes outer tube device 41 and piecing devices 42, outer tube device 41 is including fixed outer tube 43, fixing device 44 and second bolt 46, fixed outer tube 43 one end is fixed with fixing device 44, fixing device 44 includes baffle 47 and first bolt 45, first bolt 45 symmetric distribution is in baffle 47, and internal thread and baffle 47 swing joint in first bolt 45 passes through baffle 47, baffle 47 one side and fixed outer tube 43 fixed connection, second bolt hole 46 has been seted up to fixed outer tube 43 opposite side, second bolt 46 passes through screw thread and fixed outer tube 43 swing joint, and second bolt 46 symmetric distribution is in the one end of fixed outer tube 43, the internal thread has been seted up to the internal surface of fixed outer tube 43, fixed outer tube 43 passes through internal thread and piecing devices 42 swing joint, piecing devices 42 include first filler pipe 411, second filler pipe 411, The water inlet pipe 412, water service pipe 413, outlet pipe 414 and second pad pipe 415, inlet pipe 412 one side and water service pipe 413 one side fixed connection, and the cross-section of inlet pipe 412 is trapezoidal, one side of water service pipe 413 is fixed with one side of first pad pipe 411, and first pad pipe 411 cross-section is trapezoidal, the opposite side of water service pipe 413 and one side fixed connection of outlet pipe 414, the surface sliding connection of outlet pipe 414 has second pad pipe 415, the external screw thread has been seted up to the surface of water service pipe 413, water service pipe 413 passes through screw thread swing joint with fixed outer tube 43, first pad pipe 411 and first bolt 45 sliding connection, second pad pipe 415 and second bolt 46 sliding connection.
Wherein, the first bolts 45 have four groups, and the first bolts 45 are symmetrically distributed in the baffle plate 47. The second bolts 46 are distributed on one side of the fixed outer tube 43, the joint devices 42 are distributed symmetrically, and one sides of the water outlet pipes 414 in the two joint devices 42 are fixedly connected with each other. The outer tube devices 41 have two groups in total and correspond to the joint devices 42 one by one. A notch with a trapezoidal cross section is formed in one side of the first pad pipe 45, and the water inlet pipe 412 is located inside the first pad pipe 45.
The basic working principle of the water pipe multi-caliber adapter 4 is as follows: outer tube and piecing devices 42 sliding connection in different apertures, the water pipe 41 in the different apertures of outer tube difference sliding connection of advancing in two piecing devices 42, pass through screw thread and piecing devices 42 swing joint with the outer tube, two outer tubes respectively with the earthing device threaded connection who corresponds, rotate first bolt 45 and second bolt 46 respectively, fill up the pipe through the bolt extrusion, play fixed effect, when changing different water pipe 41, rotate first bolt 45 and second bolt 46 respectively, then rotatory outer tube, take out water pipe 41, reach the purpose of changing different aperture water pipe 41.
Although the present invention has been described in detail with reference to the foregoing embodiments, it will be apparent to those skilled in the art that modifications may be made to the embodiments described in the foregoing embodiments, or equivalents may be substituted for elements thereof. Any modification, equivalent replacement, or improvement made within the spirit and principle of the present invention should be included in the protection scope of the present invention.

Claims (3)

1. A water intake control switch for an adjustable rainwater collector is characterized by comprising a rainwater filter screen, a plugging end (22), a rainwater receiving pipe body (23), a rectangular interface (24), a support buckle (25), a connecting notch (26) and an open end (28); wherein,
a rectangular interface (24) for receiving rainwater is arranged on the rainwater receiving pipe body (23), and a rainwater filter screen is arranged on the rectangular interface (24); two supporting buckles (25) for nesting and clamping the rainwater filter screen are arranged on the inner wall surface of the rainwater receiving pipe body (23), so that the rainwater filter screen embedded in the rainwater receiving pipe body (23) is attached and the rectangular connector (24) is packaged;
one side end of the rainwater receiving pipe body (23) is a blocking end (22), and the other side end of the rainwater receiving pipe body (23) is an open end (28), so that rainwater entering from the rectangular connector (24) can only flow out along the open end (28) of the rainwater receiving pipe body (23);
a plurality of connecting notches (26) for being buckled, positioned and connected in the main connector (1) are arranged on the edge of the open end (28) of the rainwater receiving pipe body (23);
a knob buckle (27) for regulating and controlling the rainwater receiving pipe body (23) to rotate up and down is arranged on the outer side surface of the plugging end (22) of the rainwater receiving pipe body (23); the rotating button (27) is adjusted and controlled through up-and-down rotation so as to receive rainwater flowing from the upper connector (11) of the main connector (1) when the rectangular connector (24) on the rainwater receiving pipe body (23) faces upwards and towards the upper connector (11) of the main connector (1); and when the rectangular interface (24) on the rainwater receiving pipe body (23) is downward and faces the lower interface (16) of the main connector (1), rainwater flowing in from the upper interface (11) of the main connector (1) directly flows from the side part of the rainwater receiving pipe body (23) and enters the water outlet pipeline through the lower interface (16) of the main connector (1).
2. The switch of claim 1, wherein the rain strainer is a wire mesh or wire mesh.
3. A water intake control switch for an adjustable stormwater collector as claimed in claim 1, characterised in that a third annular groove (29) is provided at the inner edge of the blocking end (22) of the stormwater receiving body (23) for snap-fitting the stormwater receiving body (23) to the side switch opening (14).
CN201820181181.6U 2018-02-02 2018-02-02 A kind of water intake control switch for device for collecting rain water to be adjusted Expired - Fee Related CN208088465U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201820181181.6U CN208088465U (en) 2018-02-02 2018-02-02 A kind of water intake control switch for device for collecting rain water to be adjusted

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201820181181.6U CN208088465U (en) 2018-02-02 2018-02-02 A kind of water intake control switch for device for collecting rain water to be adjusted

Publications (1)

Publication Number Publication Date
CN208088465U true CN208088465U (en) 2018-11-13

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN201820181181.6U Expired - Fee Related CN208088465U (en) 2018-02-02 2018-02-02 A kind of water intake control switch for device for collecting rain water to be adjusted

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109837975A (en) * 2019-03-21 2019-06-04 浙江双林环境股份有限公司 Intelligent control spiral-flow type rain pollution discharge separator

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109837975A (en) * 2019-03-21 2019-06-04 浙江双林环境股份有限公司 Intelligent control spiral-flow type rain pollution discharge separator
CN109837975B (en) * 2019-03-21 2024-02-23 浙江双林环境股份有限公司 Intelligent control cyclone type rain and sewage separator

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CF01 Termination of patent right due to non-payment of annual fee
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20181113