Spraying water segregator structure for efficient cleaning

By setting up a combination and adjustment mechanism of multiple spray forms in the spray water distributor, the problem that existing spray water distributors cannot be fully covered is solved, and efficient cleaning of large areas is achieved, and cleaning efficiency and thoroughness are improved.

CN120479632APending Publication Date: 2025-08-15GUANGZHOU JIARUN CATERING EQUIPMENT CO LTD
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Patent Information

Application Number
CN202510692414.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-27
Publication Date
2025-08-15

AI Technical Summary

Technical Problem

The existing spray water distributor cannot be fully covered when facing a large-area cleaning area, resulting in inadequate cleaning of some areas, requiring repeated operations multiple times, increasing cleaning time and workload, and wasting water resources.

Method used

A spray water distributor structure for efficient cleaning is designed, including an arc water distributor and a cylindrical connection, and a plurality of first, second, third and fourth water distributors are provided. Combined with a cover cleaning water curtain, multi-angle high-pressure jet and horizontal stain erosion, the water outlet outlet is flexibly controlled through the adjustment mechanism to compensate for the jet covering blind spot.

Benefits of technology

It realizes comprehensive and efficient cleaning of stains in different locations and properties, significantly improves cleaning thoroughness, reduces cleaning blind spots, reduces cleaning time and workload, and improves cleaning efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a spraying water segregator structure for efficient cleaning, and relates to the field of cleaning equipment, the spraying water segregator structure comprises a water segregation part and a connecting part, the cross section of the water segregation part is arc-shaped, the connecting part is cylindrical, the water segregation part is arranged at one end of the connecting part and is connected with the connecting part, and the water segregation part seals the end part of the connecting part; the other end of the connecting part is connected with a water conveying pipe for conveying cleaning water; according to the spraying water segregator structure for efficient cleaning, by arranging the first water segregation opening, the second water segregation opening, the third water segregation opening and the fourth water segregation opening, combination of multiple spraying modes is achieved, the first water segregation opening forms a covering type cleaning water curtain, the second water segregation opening forms multi-angle high-pressure jet flow, and the third water segregation opening is suitable for horizontal stain flushing; and the fourth water distribution port compensates for the spraying coverage blind area of the third water distribution port, so that stains at different positions and with different properties can be comprehensively and efficiently cleaned, the thoroughness of cleaning is remarkably improved, and multi-angle cleaning coverage is realized.
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Description

Technical Field

[0001] The invention relates to cleaning equipment technology, and in particular to a spray water divider structure for high-efficiency cleaning. Background Art

[0002] Cleaning is an essential component of various industrial production processes and everyday life. In the industrial sector, such as food processing and home appliance manufacturing, various impurities, dirt, and residue accumulate within equipment over long periods of operation. These impurities not only affect the proper functioning of the equipment and reduce production efficiency, but can also pose a serious threat to product quality. For example, in food processing equipment, residual raw materials and dirt can breed bacteria, leading to food contamination and, in turn, consumer health. In home appliance manufacturing, the cleanliness of equipment interiors is directly related to product performance and reliability. Inadequate cleaning can pose safety hazards and impact production safety. In the home, kitchen appliances like ovens are frequently used, and the convenience and effectiveness of their internal cleaning are of particular concern. During use, food residue, grease, and other debris can adhere to the oven's interior walls and grill. Failure to clean these debris promptly not only impairs heating performance but can also create odors and breed bacteria, potentially harming the health of family members. Existing sprinkler manifolds have numerous limitations in practical applications, with limited coverage being a prominent issue.

[0003] When cleaning large areas, existing spray manifolds often fail to fully cover them, resulting in incomplete cleaning of some areas and the need for repeated cleaning operations. This not only increases cleaning time and workload, but also wastes a significant amount of water resources. For example, when cleaning the interior of large industrial equipment or ovens, the limited coverage of spray manifolds makes it difficult to clean all areas at once. Manual cleaning or repeated adjustments to the spray position are required, significantly reducing cleaning efficiency. Summary of the Invention

[0004] The purpose of the present invention is to provide a spray water distributor structure for efficient cleaning, so as to solve the problem in the prior art that when facing a large area of cleaning area, the existing spray water distributor often cannot fully cover the entire area, resulting in inadequate cleaning of some areas.

[0005] To achieve the above-mentioned objectives, the present invention provides the following technical solutions: a high-efficiency water-spraying device for cleaning, comprising a water-spraying portion and a connecting portion, wherein the water-spraying portion has an arc-shaped cross-section and the connecting portion has a cylindrical shape. The water-spraying portion is disposed at one end of the connecting portion and is connected to the connecting portion, and the water-spraying portion seals the end of the connecting portion. The other end of the connecting portion is connected to an external nozzle for delivering cleaning water.

[0006] A plurality of first water diversion ports are provided at the connection between the water diversion portion and the connection portion, and the water flowing through the second water diversion ports flows along the radial direction of the connection portion under the restriction of the second water diversion ports, and a plurality of second water diversion ports are opened on the water diversion portion;

[0007] A third water outlet and a plurality of fourth water outlets are provided on the side wall of the connecting portion, wherein the third water outlet is arranged in a strip shape and extends along the circumference of the connecting portion;

[0008] Multiple fourth water outlets are distributed at intervals along the circumference of the connecting part. Multiple fourth water outlets are arranged between the two ends of the circumferential extension path of the third water outlet and are located in the area of the connecting part axially close to the water outlet side, for compensating for the injection coverage blind area of the third water outlet.

[0009] Furthermore, a baffle is provided on the side surface of one end of the connecting portion close to the water diversion portion, and the baffle is located on a side of the plurality of fourth water diversion ports away from the water diversion portion.

[0010] Furthermore, a mounting hole is provided at the center of the water diversion part.

[0011] Furthermore, the cross section of the first water diversion port is flat.

[0012] Furthermore, a plurality of reinforcing ribs for improving the structural rigidity of the connection portion are provided on the inner wall of the third water diversion port.

[0013] Furthermore, a connecting pipe and an adjusting mechanism are provided. The side of the water diversion part close to the connecting part, the inner cavity of the connecting part and the outer side of the connecting pipe constitute a water delivery chamber. The adjusting mechanism includes a first water diversion part, a second water diversion part, a separator and a separator plate arranged inside the water delivery chamber. One end of the connecting pipe is fixedly connected to the water diversion part. The axis of the connecting pipe is collinear with the axis of the connecting part. The connecting pipe, the first water diversion part, the second water diversion part, the separator and the separator plate jointly divide the water delivery chamber into a water inlet chamber, a first water diversion chamber and a second water diversion chamber. The first water diversion chamber is connected to the first water diversion port, and the second water diversion chamber is connected to the second water diversion port, the third water diversion port and the fourth water diversion port respectively. Two groups of first drain ports and two groups of second drain ports are provided on the separator. The first drain port and the second drain port are both connected to the water inlet chamber. The first water diversion part is provided with a first connecting port connected to the first water diversion chamber, and the second water diversion part is provided with a second connecting port connected to the second water diversion chamber.

[0014] Furthermore, the adjustment mechanism is capable of switching between a first state, a second state, and a third state;

[0015] When the regulating mechanism is in the first state, the first communication port is connected to the first drain port, and the second communication port is connected to the second drain port;

[0016] When the regulating mechanism is in the second state, the first communication port is connected to the first drain port, and the second communication port is not connected to the second drain port;

[0017] When the regulating mechanism is in the third state, the first communicating port is not communicated with the first drain port, and the second communicating port is communicated with the second drain port.

[0018] Furthermore, the bottom end of the partition is arranged between the first water distribution member and the second water distribution member, and the bottom end of the partition is rotatably connected to the partition plate, the outer edge of the partition plate is fixedly connected to the water distribution part, the outer wall of the first water distribution member is slidably connected to the inner wall of the connecting part, the first water distribution member is movably connected to the partition on the side close to the partition, the outer wall of the second water distribution member is movably connected to the partition, and the second water distribution member is slidably connected to the connecting pipe on the side away from the partition.

[0019] Furthermore, a first adjustment groove is provided on a side of the first water-dividing member close to the partition, a first push rod is slidably connected inside the first adjustment groove, one end of the first push rod is fixedly connected to the partition, and a second adjustment groove is provided on a side of the second water-dividing member close to the partition, a second push rod is slidably connected inside the second adjustment groove, one end of the second push rod is fixedly connected to the partition, the first adjustment groove and the second adjustment groove are both formed by connecting two sections of inclined grooves and one section of transverse groove, and the transverse groove is located between the two sections, and the inclined grooves in the first adjustment groove and the second adjustment groove are in opposite inclination directions.

[0020] Furthermore, the top of the partition is fixedly connected to a connector, a slot is provided on the connector for movement of the connector, one end of the connector passes through the slot and is fixedly connected to a sealing ring, the inner side wall of the sealing ring is rotatably connected to the connector.

[0021] Compared with the prior art, the present invention provides an efficient cleaning spray water distributor structure, which realizes the combination of multiple spray forms by setting the first water outlet, the second water outlet, the third water outlet and the fourth water outlet. The first water outlet forms a covering cleaning water curtain, the second water outlet forms a multi-angle high-pressure jet, the third water outlet is suitable for flushing stains in the horizontal direction, and the fourth water outlet compensates for the blind area of the spray coverage of the third water outlet, thereby being able to comprehensively and efficiently clean stains of different positions and properties, significantly improving the thoroughness of cleaning, achieving multi-angle cleaning coverage, effectively reducing cleaning blind areas, improving cleaning efficiency, and reducing cleaning time and workload.

[0022] The adjustment mechanism is set to switch between the first state, the second state and the third state, realizing flexible control of the water outlet. When high-pressure cleaning of stubborn stains is required, the water outlet can be selected, and the volume of the corresponding water diversion chamber can be compressed simultaneously to increase the jet pressure, thereby improving the cleaning effect. It can be accurately set according to the specific cleaning environment, which greatly improves the applicability of the spray water distributor. BRIEF DESCRIPTION OF THE DRAWINGS

[0023] In order to more clearly illustrate the embodiments of the present application or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments. Obviously, the drawings described below are only some embodiments described in the present invention. For ordinary technicians in this field, other drawings can also be obtained based on these drawings.

[0024] Figure 1 A schematic diagram of a first external three-dimensional structure provided by an embodiment of the present invention;

[0025] Figure 2 A schematic diagram of a second external three-dimensional structure provided by an embodiment of the present invention;

[0026] Figure 3 A first installation diagram provided for an embodiment of the present invention;

[0027] Figure 4 A second installation diagram provided by an embodiment of the present invention;

[0028] Figure 5 A schematic diagram of the combination of the first water distribution member, the first communication port and the first regulating tank provided in an embodiment of the present invention;

[0029] Figure 6 A schematic diagram of the combination of the second water distribution member and the second communication port provided in an embodiment of the present invention;

[0030] Figure 7 A schematic diagram of the combination of the second water distribution member, the second communication port, and the second regulating tank provided in an embodiment of the present invention;

[0031] Figure 8 A schematic diagram of the combination of a separator, a first drain outlet, a second drain outlet, and a connector provided in an embodiment of the present invention;

[0032] Figure 9 The embodiment of the present invention provides Figure 4 A is an enlarged schematic diagram.

[0033] Description of reference numerals:

[0034] 100, water diversion part; 110, first water diversion port; 120, second water diversion port; 130, mounting hole; 200, connecting part; 201, third water diversion port; 202, fourth water diversion port; 203, reinforcing rib; 210, baffle; 300, connecting pipe; 310, water delivery chamber; 311, water inlet chamber; 312, first water diversion chamber; 313, second water diversion chamber; 400, first water diversion component; 410, first connecting port; 420, first adjusting groove; 430, first push rod; 500, second water diversion component; 510, second connecting port; 520, second adjusting groove; 530, second push rod; 600, partition; 610, first drain port; 620, second drain port; 630, connecting component; 640, sealing ring; 700, partition plate. DETAILED DESCRIPTION

[0035] In order to enable those skilled in the art to better understand the technical solution of the present invention, the present invention will be further described in detail below with reference to the accompanying drawings.

[0036] See also Figures 1 to 3 A high-efficiency spray water distributor structure for cleaning includes a water distributor 100 and a connecting portion 200. The cross-section of the water distributor 100 is arc-shaped, and the connecting portion 200 is cylindrical. The water distributor 100 is arranged at one end of the connecting portion 200 and is connected to the connecting portion 200. The water distributor 100 seals the end of the connecting portion 200, and the other end of the connecting portion 200 is connected to an external water pipe for conveying cleaning water.

[0037] A plurality of first water diversion ports 110 are provided at the connection between the water diversion portion 100 and the connection portion 200 , and the water flowing through the second water diversion ports 120 flows radially along the connection portion 200 under the restriction of the second water diversion ports 120 . The water diversion portion 100 is provided with a plurality of second water diversion ports 120 .

[0038] A third water outlet 201 and a plurality of fourth water outlets 202 are provided on the side wall of the connecting portion 200. The number of the fourth water outlets 202 is three or more, preferably three. The third water outlet 201 is arranged in a strip shape and extends along the circumference of the connecting portion 200.

[0039] Multiple fourth water diversion ports 202 are distributed at intervals along the circumference of the connecting portion 200. Multiple fourth water diversion ports 202 are arranged between the two ends of the circumferential extension path of the third water diversion port 201 and are located in the area of the connecting portion 200 axially close to the water diversion portion 100, for compensating for the injection coverage blind area of the third water diversion port 201.

[0040] Specifically, after the water flows into the connecting part 200 from the other end of the connecting part 200, it is blocked by the water diversion part 100, and the pressure is evenly distributed to the first water diversion port 110 and the second water diversion port 120 through the Bernoulli effect to ensure the stability of the jet. The first water diversion port 110 is located at the junction of the water diversion part 100 and the connecting part 200. The water flows through this port and is ejected radially along the connecting part 200 to form a covering cleaning water curtain. The second water diversion port 120 is located on the water diversion part 100. The water flows through this second diversion port. The water outlet 120 forms a directional high-pressure jet, forming multi-angle cleaning coverage. The strip opening extending circumferentially on the side wall of the connecting part 200 is suitable for flushing stains in the horizontal direction (such as the top of the oven). The water flow ejected by the fourth water outlet 202 covers the circumferential cut-off blind area of the third water outlet 201, which is suitable for internal cleaning of the oven. The water distributor is installed on the top of the oven cavity, and the end of the connecting part 200 away from the water outlet 100 is abutted against the top wall of the oven furnace to achieve self-cleaning of the oven.

[0041] See also Figure 1 In one embodiment of the present invention, a baffle 210 is provided on the side of one end of the connecting portion 200 close to the water diversion portion 100, and the baffle 210 is located on the side of the plurality of fourth water diversion ports 202 away from the water diversion portion 100. The baffle 210 guides the water flow ejected from the fourth water diversion ports 202 to adapt to the cleaning environment. For example, when it is set in an oven, it is necessary to avoid part of the area on the top of the oven furnace, and the baffle 210 plays a role in guiding water.

[0042] See also Figure 3 In one embodiment of the present invention, a mounting hole 130 is provided at the center of the water diversion part 100, allowing an external connecting member (such as a bolt) to pass through. For example, for self-cleaning inside the oven, a nozzle connected to the top of the external oven for delivering clean water can be used. A threaded hole is provided on the nozzle, and the end of the connecting part 200 away from the water diversion part 100 is abutted against the top wall of the oven furnace. The bolt is passed through the mounting hole 130 and connected to the threaded hole to fix the water diverter structure.

[0043] See also Figures 1 to 3 In one embodiment of the present invention, the cross section of the first water diversion port 110 is flat, so that the water flowing through the first water diversion port 110 is a sheet-like jet, thereby increasing the cleaning coverage area.

[0044] See also Figures 2 to 3In one embodiment of the present invention, a plurality of reinforcing ribs 203 are provided on the inner wall of the third water diversion port 201 to increase the structural rigidity of the connecting portion 200. Since the third water diversion port 201 is a long strip-shaped opening extending circumferentially along the connecting portion 200, its presence significantly weakens the structural continuity of the connecting portion 200, and under water pressure, the connecting portion 200 is easily deformed and damaged. Therefore, a plurality of reinforcing ribs 203 are provided on the inner wall of the third water diversion port 201. The number of reinforcing ribs 203 is two or more, and two is preferably selected.

[0045] See also Figures 4 to 8 In order to adapt to different cleaning environments, for example, for some stubborn stains, high-pressure jets are required for fixed-point cleaning, while for large-area light stains, covering water curtain cleaning is required to achieve the purpose of efficient cleaning. In one embodiment of the present invention, a connecting pipe 300 and an adjusting mechanism are further provided. The water diverter 100 is close to the side of the connecting part 200, the inner cavity of the connecting part 200 and the outer side of the connecting pipe 300 constitute a water delivery chamber 310. The adjusting mechanism includes a first water diverter 400, a second water diverter 500, a partition 600 and a partition plate 700 arranged inside the water delivery chamber 310. One end of the connecting pipe 300 is fixedly connected to the water diverter 100. The axis of the connecting pipe 300 is collinear with the axis of the connecting part 200. The connecting pipe 300, the first water diverter 400, The second water diversion member 500, the partition member 600, and the partition plate 700 jointly divide the water delivery chamber 310 into a water inlet chamber 311, a first water diversion chamber 312, and a second water diversion chamber 313. The first water diversion chamber 312 is connected to the first water diversion port 110, and the second water diversion chamber 313 is respectively connected to the second water diversion port 120, the third water diversion port 201, and the fourth water diversion port 202. The partition member 600 is provided with two groups of first drain ports 610 and two groups of second drain ports 620. The first drain ports 610 and the second drain ports 620 are both connected to the water inlet chamber 311. The first water diversion member 400 is provided with a first communication port 410 connected to the first water diversion chamber 312, and the second water diversion member 500 is provided with a second communication port 510 connected to the second water diversion chamber 313.

[0046] The adjustment mechanism can be switched between a first state, a second state, and a third state. When the adjustment mechanism is in the first state, the first communication port 410 is connected to the first drain port 610, and the second communication port 510 is connected to the second drain port 620; when the adjustment mechanism is in the second state, the first communication port 410 is connected to the first drain port 610, and the second communication port 510 is not connected to the second drain port 620; when the adjustment mechanism is in the third state, the first communication port 410 is not connected to the first drain port 610, and the second communication port 510 is connected to the second drain port 620;

[0047] The bottom end of the separator 600 is disposed between the first water distribution member 400 and the second water distribution member 500, and the bottom end of the separator 600 is rotatably connected to the separator plate 700. The outer edge of the separator plate 700 is fixedly connected to the water distribution portion 100. The outer wall of the first water distribution member 400 is slidably connected to the inner wall of the connecting portion 200. The side of the first water distribution member 400 close to the separator 600 is movably connected to the separator 600. The outer wall of the second water distribution member 500 is movably connected to the separator 600. The side of the second water distribution member 500 away from the separator 600 is slidably connected to the connecting pipe 300.

[0048] Specifically, an annular cavity is formed by the proximal end of the water diversion portion 100, the inner wall of the connecting portion 200, and the outer wall of the connecting pipe 300. Water is supplied to the water inlet cavity 311 through an external water supply nozzle. The adjustment mechanism is adjusted between the first state, the second state, and the third state by the axial sliding of the first water diversion member 400 and the second water diversion member 500. When the adjustment mechanism switches from the first state to the second state, the first water diversion member 400 moves downward to the first communication port 410 to communicate with one of the first drain ports 610. The second water diversion member 500 moves upward to the second communication port 510 to disconnect from the second drain port 620. The side wall of the partition member 600 blocks the second communication port 510.

[0049] When the regulating mechanism switches from the first state to the second state, the second water diversion member 500 moves downward to the second communication port 510 to communicate with one of the second drain ports 620, the first water diversion member 400 moves upward to the first communication port 410 to break away from the communication with the first drain ports 610, and the side wall of the partition member 600 blocks the first communication port 410.

[0050] Among them, two groups of first drain ports 610 and two groups of second drain ports 620 are arranged up and down on the side wall of the partition 600, and there are multiple first drain ports 610 and first connecting ports 410 and they correspond one to one, and there are multiple second drain ports 620 and second connecting ports 510 and they correspond one to one.

[0051] See also Figure 4 、 Figure 5 、 Figure 7 and Figure 9In one embodiment of the present invention, a first adjustment groove 420 is formed on a side of the first water distribution member 400 close to the partition 600, a first push rod 430 is slidably connected inside the first adjustment groove 420, and one end of the first push rod 430 is fixedly connected to the partition 600. A second adjustment groove 520 is formed on a side of the second water distribution member 500 close to the partition 600, a second push rod 530 is slidably connected inside the second adjustment groove 520, and one end of the second push rod 530 is fixedly connected to the partition 600. The first adjustment groove 420 and the second adjustment groove 520 are both formed by connecting two sections of inclined grooves and a section of transverse groove, and the transverse groove is located between the two sections. The inclined grooves in the first adjustment groove 420 and the second adjustment groove 520 are inclined in opposite directions.

[0052] Specifically, the partition 600 is rotated, and the first push rod 430 / the second push rod 530 on the partition 600 slides along the first adjustment groove 420 / the second adjustment groove 520. Since the first water distribution member 400 is slidably connected to the inner wall of the connecting portion 200, and the second water distribution member 500 is slidably connected to the connecting pipe 300, under the action of the first push rod 430 / the second push rod 530 and the first adjustment groove 420 / the second adjustment groove 520, the rotational motion of the partition 600 is converted into axial linear motion of the first water distribution member 400 and the second water distribution member 500;

[0053] When the first push rod 430 / the second push rod 530 is in the horizontal groove section of the first adjustment groove 420 / the second adjustment groove 520, that is, the adjustment mechanism is in the first state, the first communication port 410 is connected to the first drainage port 610 located on the upper side, and the second communication port 510 is connected to the second drainage port 620 located on the upper side. At this time, the first water diversion port 110, the second water diversion port 120, the third water diversion port 201 and the fourth water diversion port 202 are opened synchronously;

[0054] Since the first adjustment groove 420 and the second adjustment groove 520 are inclined in opposite directions, under the action of the first push rod 430 and the second push rod 530, the first water diversion member 400 and the second water diversion member 500 move in opposite directions, thereby disconnecting the first drain port 610 from the first communication port 410 and switching the connection between the second drain port 620 and the second communication port 510, thereby switching the adjustment mechanism from the first state to the second state / third state.

[0055] To ensure smooth communication between the first drain port 610 and the first communication port 410, and between the second drain port 620 and the second communication port 510, the two groups of first drain ports 610 and the two groups of second drain ports 620 are staggered vertically to prevent the first drain port 610 from being misaligned with the first communication port 410, and the second drain port 620 from being misaligned with the second communication port 510, due to rotation of the partition 600, thereby preventing poor communication.

[0056] The cross-sectional sizes of the first drain outlet 610 and the second drain outlet 620 at the bottom may also be increased to avoid a reduction in the flow area of the water flow.

[0057] Through the setting of the adjustment mechanism, specific settings can be made according to the specific cleaning environment. For example, if high-pressure cleaning of stubborn stains is required, the state of the adjustment mechanism can be switched to select the first water outlet 110 and / or the second water outlet 120, the third water outlet 201, and the fourth water outlet 202 for water outlet. When the first water outlet 110 or the second water outlet 120 is used for high-pressure flushing, the space of the first water outlet chamber 312 or the second water outlet chamber 313 is compressed synchronously to increase the jet pressure and improve the cleaning effect.

[0058] See also Figure 3 In one embodiment of the present invention, a connector 630 is fixedly connected to the top of the separator 600. A slot for the connector 630 to move is provided on the connecting portion 200. One end of the connector 630 passes through the slot and is fixedly connected to a sealing ring 640. The inner side wall of the sealing ring 640 is rotatably connected to the connecting portion 200.

[0059] Specifically, when the state of the regulating mechanism needs to be switched, the sealing ring 640 can be rotated, and the sealing ring 640 drives the partition 600 to rotate through the connecting member 630, thereby achieving the switching of the state of the regulating mechanism.

[0060] In one embodiment of the present invention, sealing rings are provided at the upper and lower ends of the contact surfaces between the separator 600 and the first water distribution member 400 and the second water distribution member 500, a sealing ring is provided between the first water distribution member 400 and the connecting portion 200, and a sealing ring is provided between the second water distribution member 500 and the connecting pipe 300 to prevent water leakage.

[0061] The above description is merely illustrative of certain exemplary embodiments of the present invention. It goes without saying that those skilled in the art will be able to modify the described embodiments in various ways without departing from the spirit and scope of the present invention. Therefore, the above drawings and description are illustrative in nature and should not be construed as limiting the scope of protection of the claims.

Claims

1. A high-efficiency cleaning spray water separator structure, characterized in that: The water diversion part (100) comprises a water diversion part (100) and a connecting part (200), wherein the cross section of the water diversion part (100) is arranged in an arc shape, and the connecting part (200) is arranged in a cylindrical shape. The water diversion part (100) is arranged at one end of the connecting part (200) and is connected to the connecting part (200), and the water diversion part (100) seals the end of the connecting part (200), and the other end of the connecting part (200) is connected to an external nozzle for conveying cleaning water. A plurality of first water diversion ports (110) are provided at the connection between the water diversion portion (100) and the connection portion (200), and water flowing through the second water diversion ports (120) flows radially along the connection portion (200) under the restriction of the second water diversion ports (120). The water diversion portion (100) is provided with a plurality of second water diversion ports (120); A third water diversion port (201) and a plurality of fourth water diversion ports (202) are provided on the side wall of the connecting portion (200); the third water diversion port (201) is arranged in a strip shape and extends along the circumference of the connecting portion (200); The plurality of fourth water diversion ports (202) are distributed at intervals along the circumference of the connecting portion (200). The plurality of fourth water diversion ports (202) are arranged between the two ends of the circumferential extension path of the third water diversion port (201) and are located in an area of the connecting portion (200) axially close to the water diversion portion (100), so as to compensate for the blind area of the injection coverage of the third water diversion port (201).

2. The high-efficiency cleaning spray water separator structure according to claim 1, characterized in that: A baffle (210) is provided on the side surface of one end of the connecting portion (200) close to the water diversion portion (100), and the baffle (210) is located on a side of the plurality of fourth water diversion ports (202) away from the water diversion portion (100).

3. The high-efficiency cleaning spray water separator structure according to claim 1, characterized in that: A mounting hole (130) is provided at the center of the water diversion portion (100).

4. The high-efficiency cleaning spray water separator structure according to claim 1, characterized in that: The cross section of the first water diversion port (110) is flat.

5. The high-efficiency cleaning spray water separator structure according to claim 1, characterized in that: A plurality of reinforcing ribs (203) for improving the structural rigidity of the connecting portion (200) are provided on the inner wall of the third water diversion port (201).

6. The high-efficiency cleaning spray water separator structure according to claim 1, characterized in that: A connecting pipe (300) and an adjusting mechanism are also provided. A water delivery chamber (310) is formed by a side of the water distribution part (100) close to the connecting part (200), an inner cavity of the connecting part (200), and an outer side of the connecting pipe (300). The adjusting mechanism comprises a first water distribution part (400), a second water distribution part (500), a partition (600), and a partition plate (700) arranged inside the water delivery chamber (310). One end of the connecting pipe (300) is fixedly connected to the water distribution part (100). The axis of the connecting pipe (300) is collinear with the axis of the connecting part (200). The connecting pipe (300), the first water distribution part (400), the second water distribution part (500), the partition (600), and the partition plate (700) jointly divide the water delivery chamber (310) into a water inlet chamber (311). ), a first water diversion chamber (312) and a second water diversion chamber (313), the first water diversion chamber (312) being connected to the first water diversion port (110), the second water diversion chamber (313) being connected to the second water diversion port (120), the third water diversion port (201) and the fourth water diversion port (202), respectively; two groups of first drainage ports (610) and two groups of second drainage ports (620) being provided on the partition (600), the first drainage ports (610) and the second drainage ports (620) being both connected to the water inlet chamber (311); a first communication port (410) being connected to the first water diversion chamber (312) being provided on the first water diversion member (400), and a second communication port (510) being connected to the second water diversion chamber (313) being provided on the second water diversion member (500).

7. The high-efficiency cleaning spray water separator structure according to claim 6, characterized in that: The adjustment mechanism is capable of switching between a first state, a second state, and a third state; When the regulating mechanism is in the first state, the first communication port (410) is connected to the first drainage port (610), and the second communication port (510) is connected to the second drainage port (620); When the regulating mechanism is in the second state, the first communication port (410) is connected to the first drainage port (610), and the second communication port (510) is not connected to the second drainage port (620); When the regulating mechanism is in the third state, the first communication port (410) is not in communication with the first drainage port (610), and the second communication port (510) is in communication with the second drainage port (620).

8. The high-efficiency cleaning spray water separator structure according to claim 6, characterized in that: The bottom end of the partition (600) is arranged between the first water distribution member (400) and the second water distribution member (500), and the bottom end of the partition (600) is rotatably connected to the partition plate (700), the outer edge of the partition plate (700) is fixedly connected to the water distribution portion (100), the outer wall of the first water distribution member (400) is slidably connected to the inner wall of the connecting portion (200), the side of the first water distribution member (400) close to the partition (600) is movably connected to the partition (600), the outer wall of the second water distribution member (500) is movably connected to the partition (600), and the side of the second water distribution member (500) away from the partition (600) is slidably connected to the connecting pipe (300).

9. The high-efficiency cleaning spray water separator structure according to claim 6, characterized in that: A first regulating groove (420) is provided on a side of the first water distribution member (400) close to the partition member (600), a first push rod (430) is slidably connected inside the first regulating groove (420), one end of the first push rod (430) is fixedly connected to the partition member (600), a second regulating groove (520) is provided on a side of the second water distribution member (500) close to the partition member (600), a second push rod (530) is slidably connected inside the second regulating groove (520), one end of the second push rod (530) is fixedly connected to the partition member (600), the first regulating groove (420) and the second regulating groove (520) are both formed by connecting two sections of inclined grooves and one section of transverse groove, and the transverse groove is located between the two sections, and the inclined grooves in the first regulating groove (420) and the second regulating groove (520) are inclined in opposite directions.

10. The high-efficiency cleaning spray water separator structure according to claim 9, characterized in that: The top end of the partition (600) is fixedly connected to a connecting piece (630), a slot for the connecting piece (630) to move is provided on the connecting portion (200), one end of the connecting piece (630) passes through the slot and is fixedly connected to a sealing ring (640), and the inner side wall of the sealing ring (640) is rotatably connected to the connecting portion (200).