Machining equipment for mesh enclosure of fan

By designing a fan mesh cover processing equipment with rotating rods, feeding components and spraying parts, the problem of water flow in the fan mesh cover not being able to contact effectively during the washing process, and effective cleaning and rapid sewage discharge are achieved.

CN120205523AInactive Publication Date: 2025-06-27GAOMI DARONG GUANGLI MACHINERY TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202510581362.2
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-07
Publication Date
2025-06-27
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

During the washing process, the existing fan mesh covers are stacked and in contact with each other, resulting in the water flow being unable to contact effectively, making it difficult to achieve cleaning and processing.

Method used

A kind of mesh processing equipment for fan is designed, including a cleaning chamber, feed chamber and cavity of the shell, and is equipped with a rotating rod, feed assembly and spraying part. The feed assembly is driven to rotate through the transmission system. The spraying part sprays and cleanses the mesh cover, and the rapid discharge of sewage is achieved through the coordination of the inner spiral blades and the outer spiral blades.

Benefits of technology

The effective cleaning of the fan mesh cover is achieved, the problem of water flow not being able to contact effectively, the cleaning efficiency is improved, and pollution is reduced by rapid discharge of sewage.

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Abstract

The invention discloses machining equipment for a mesh enclosure of a fan, and relates to the technical field of mesh enclosure cleaning equipment. The device comprises a shell, the shell comprises a cleaning cavity, a feeding cavity and a cavity, the feeding cavity and the cavity are formed in one side of the cleaning cavity, the feeding cavity is located on the upper side of the cavity, a rotating rod piece and a feeding assembly are installed in the cleaning cavity, one end of the rotating rod piece extends into the cavity, and a power assembly is installed in the cavity; the power assembly is in transmission connection with one end of the rotating rod piece, the feeding assembly communicates with the feeding cavity, materials enter the feeding assembly through the feeding cavity, the rotating rod piece drives the feeding assembly to rotate through the transmission assembly, a plurality of spraying parts are further installed in the cleaning cavity, and the spraying parts are connected to the outer side of the feeding assembly in a sleeving mode. And the spraying part is communicated with a liquid inlet channel arranged in the cleaning cavity. According to the mesh enclosure cleaning device, a plurality of mesh enclosure bodies needing to be cleaned are placed in the feeding cavity, and the two oppositely-distributed protrusions of the mesh enclosure bodies placed in the feeding cavity are both in lap joint with the inclined faces and move towards the limiting grooves along the inclined faces.
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Description

Technical Field

[0001] The invention relates to the technical field of fund transaction terminal equipment, and in particular to a mesh cover processing equipment for a fan. Background Art

[0002] A fan is a machine that relies on input mechanical energy to increase gas pressure and discharge gas. It is a driven fluid machine. Cleaning is a method of using solvents to remove dirt from the surface of an object. It uses cleaning agents to chemically transform, dissolve, and peel off surface pollutants or covering layers to achieve the effects of degreasing, rust removal, and decontamination. The fan mesh needs to be cleaned during the processing of the fan mesh.

[0003] During the water washing process of the existing fan mesh covers, the mesh covers are stacked on each other, and dead angles are formed on the surfaces that contact each other, so that the water flow cannot contact the fan mesh covers, making it difficult to achieve cleaning processing. Summary of the invention

[0004] The purpose of the present invention is to provide a fan screen processing device to solve the related problems raised in the background technology.

[0005] In order to solve the above technical problems, the present invention provides a mesh cover processing equipment for a fan, comprising a shell, the shell comprising a cleaning chamber, a feeding chamber and a cavity, a feeding chamber and a cavity are provided on one side of the cleaning chamber, the feeding chamber is located on the upper side of the cavity, a rotating rod and a feeding assembly are installed in the cleaning chamber, one end of the rotating rod extends into the cavity, a power assembly is installed in the cavity, the power assembly is transmission-connected to one end of the rotating rod, the feeding assembly is communicated with the feeding chamber, the material enters the feeding assembly through the feeding chamber, the rotating rod drives the feeding assembly to rotate through the transmission assembly, a plurality of spray parts are also installed in the cleaning chamber, the spray parts are sleeved on the outside of the feeding assembly, the spray parts are communicated with the liquid inlet channel provided in the cleaning chamber, a drainage groove is provided on one side of the cleaning chamber, the drainage groove is located at the lowest point of the cleaning chamber, and the drainage groove is close to one side of the cavity.

[0006] Furthermore, the cleaning chamber is an elliptical channel, a ring groove is provided at the port of the elliptical channel, an end cover is mounted on the ring groove, a through hole and an axial hole are provided on the inner side surface of the end cover, one end of the feeding assembly is mounted in the through hole, and the other end of the rotating rod is mounted in the axial hole.

[0007] Furthermore, a plurality of curved grooves are provided on the upper inner wall of the cleaning chamber, and the plurality of curved grooves are connected through a channel provided on the top of the cleaning chamber. A liquid inlet groove is provided on the end cover, and the liquid inlet groove is connected to the axial hole. After installation, the liquid inlet groove in the end cover is connected to the outermost curved groove.

[0008] Further, a partition is provided between the cleaning chamber and the cavity, and a round hole is provided on the partition.

[0009] Further, the opening of the feeding chamber opens upward, chamfers are provided on opposite sides of the opening, the feeding chamber is communicated with the cleaning chamber through a through hole, four limiting grooves distributed in a cross shape are provided on the inner wall of the through hole, inclined surfaces are provided on opposite sides of the feeding chamber, and the lowest points of the inclined surfaces are flush with the two middle limiting grooves.

[0010] Place several screen cover bodies to be cleaned in the feeding chamber. At the same time, chamfers are provided on the opening of the feeding chamber to facilitate feeding. The two relatively distributed protrusions of the placed screen cover body are both lapped on the inclined surfaces and move along the inclined surfaces towards the limiting grooves. The installed power component drives the installed ring body one to rotate through the transmission gear and the transmission component, so as to realize the rotation of the feeding component. When the screen cover body falling into the limiting groove encounters the spiral guide rail aligned with the limiting groove, it falls into the spiral guide rail, and the screen cover body moves along the spiral guide rail towards one side of the end cover until it is discharged.

[0011] Further, the rotating rod includes a pipe body, a transmission gear, an outer spiral blade and an inner spiral blade. The transmission gear and the outer spiral blade are provided on the outer side of the pipe body. The transmission gear is located on one side of the outer spiral blade. The inner spiral blade is provided in the pipe body. One end of the pipe body and the installed transmission gear are located in the cavity. One end of the pipe body is in transmission connection with the power component, and the power component is a motor.

[0012] Further, the feeding component includes a ring body one, a spiral guide rail and a ring body two. Four annularly distributed spiral guide rails are provided between the ring body one and the ring body two. The ring body one is fitted and installed on one side of the limiting groove. The ring body two is fitted and installed in the through hole of the end cover. The protrusions of the screen cover body move along the spiral guide rail.

[0013] Further, the limiting rod includes a pin rod and a limiting plate. A limiting plate is installed at one end of the pin rod. The pin rod is installed in the installation hole provided in the feeding chamber. At the same time, the limiting plate extends into the cleaning chamber. After installation, the limiting plates are distributed in a vertical state. The side edges of the limiting plates are matched with the grooves formed by the screen cover body.

[0014] The present invention has the following beneficial effects: 1. In the present invention, several screen cover bodies to be cleaned are placed in the feeding chamber. At the same time, chamfers are provided on the opening of the feeding chamber to facilitate feeding. The two relatively distributed protrusions of the placed screen cover body are both lapped on the inclined surfaces and move along the inclined surfaces towards the limiting grooves.

[0015] 2. During the process of the driving gear driving the pipe body to rotate, since the other end of the pipe body is connected to the water supply pipeline, water enters the liquid inlet groove through the pipe body and the inner spiral blade, and then enters the channel connected to the liquid inlet groove. It enters the corresponding spraying part through the curved groove connected to the channel, and completes the cleaning of the screen body passing through the spraying part.

[0016] 3. The spiral direction of the inner spiral blade provided in the present invention is opposite to that of the outer spiral blade. During the liquid inlet process, the outer spiral blade pushes the cleaned sewage towards the drainage groove side, facilitating the rapid discharge of the sewage.

[0017] 4. The spraying part of the present invention is fixed on the inner wall of the cleaning cavity. The spraying part is of an annular structure. A plurality of water spray nozzles are provided on the inner wall of the spraying part, and a liquid inlet connected to the curved groove is provided on the outer side of the spraying part, realizing the spraying and cleaning of the screen body passing through.

[0018] Of course, it is not necessary for any product implementing the present invention to achieve all the above-mentioned advantages simultaneously. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the following will briefly introduce the drawings required for describing the embodiments. Obviously, the drawings in the following description are only some embodiments of the present invention. For those of ordinary skill in the art, without creative efforts, other drawings can be obtained based on these drawings.

[0020] Figure 1 is the overall structural schematic diagram of the present invention; Figure 2 is the overall sectional structural schematic diagram of the present invention; Figure 3 is the schematic diagram of the cooperation structure of the rotating rod and the feeding assembly of the present invention; Figure 4 is the sectional structural schematic diagram of the end cover of the present invention; Figure 5 is the structural schematic diagram of the housing of the present invention; Figure 6 is the sectional structural schematic diagram of the housing of the present invention; Figure 7 is the structural schematic diagram of the rotating rod of the present invention; Figure 8 is the schematic diagram of the cooperation structure of the limiting rod and the screen body of the present invention; In the drawings, the list of components represented by each reference numeral is as follows: 1. Shell; 101. Cleaning chamber; 1011. Ring groove; 1012. Curved groove; 1013. Channel; 102. Feeding chamber; 1021. Chamfer; 1022. Inclined surface; 1023. Limiting groove; 104. Partition; 1041. Circular hole; 103. Cavity; 2. Rotating rod; 201. Tube; 202. Transmission gear; 203. Outer spiral blade; 204. Inner spiral blade; 3. Transmission assembly; 4. Feeding assembly; 401. Ring body 1; 402. Spiral guide rail; 403. Ring body 2; 5. Spraying part; 6. End cover; 601. Liquid inlet tank; 7. Limiting rod; 701. Pin rod; 702. Limiting plate; 8. Mesh cover body; 9. Power assembly. DETAILED DESCRIPTION

[0021] The present invention is further described in detail below in conjunction with the accompanying drawings and specific embodiments. The embodiments of the present invention are provided for the purpose of illustration and description, and are not intended to be exhaustive or to limit the present invention to the disclosed forms. Many modifications and variations will be apparent to those of ordinary skill in the art. The embodiments are selected and described in order to better illustrate the principles and practical applications of the present invention, and to enable those of ordinary skill in the art to understand the present invention and thereby design various embodiments with various modifications suitable for specific uses.

[0022] See also Figures 1-7 As shown, the present invention is a mesh cover processing equipment for a fan, including a shell 1, the shell 1 includes a cleaning chamber 101, a feeding chamber 102 and a cavity 103, one side of the cleaning chamber 101 is provided with a feeding chamber 102 and a cavity 103, the feeding chamber 102 is located on the upper side of the cavity 103, a rotating rod 2 and a feeding assembly 4 are installed in the cleaning chamber 101, one end of the rotating rod 2 extends into the cavity 103, a power assembly 9 is installed in the cavity 103, the power assembly 9 is transmission-connected with one end of the rotating rod 2, the feeding assembly 4 is communicated with the feeding chamber 102, the material enters the feeding assembly 4 through the feeding chamber 102, the rotating rod 2 drives the feeding assembly 4 to rotate through the transmission assembly 3, and a plurality of spray parts 5 are also installed in the cleaning chamber 101, the spray parts 5 are sleeved on the outside of the feeding assembly 4, and the spray parts 5 are communicated with the liquid inlet channel provided in the cleaning chamber 101.

[0023] A drainage groove is provided on one side of the cleaning chamber 101 . The drainage groove is located at the lowest point of the cleaning chamber 101 and is close to one side of the cavity 103 .

[0024] The cleaning chamber 101 is an elliptical channel, and a ring groove 1011 is provided at the port of the elliptical channel. An end cover 6 is mounted on the ring groove 1011. A through hole and an axial hole are provided on the inner side of the end cover 6. One end of the feeding assembly 4 is mounted in the through hole, and the other end of the rotating rod 2 is mounted in the axial hole.

[0025] A plurality of curved grooves 1012 are provided on the upper inner wall of the cleaning chamber 101, and the plurality of curved grooves 1012 are connected through a channel 1013 provided on the top of the cleaning chamber 101. A liquid inlet groove 601 is provided on the end cover 6, and the liquid inlet groove 601 is connected to the axial hole. After installation, the liquid inlet groove 601 in the end cover 6 is connected to the outermost curved groove 1012.

[0026] A partition 104 is provided between the cleaning chamber 101 and the cavity 103 , and a circular hole 1041 is formed on the partition 104 .

[0027] The opening of the feed chamber 102 is opened upward, and chamfers 1021 are provided on the opposite sides of the opening. The feed chamber 102 is connected to the cleaning chamber 101 through a through hole, and four limit grooves 1023 distributed along a cross are provided on the inner wall of the through hole. Inclined surfaces 1022 are provided on the opposite side surfaces of the feed chamber 102, and the lowest point of the inclined surface 1022 is flush with the two middle limit grooves 1023.

[0028] The rotating rod 2 includes a tube body 201, a transmission gear 202, an outer spiral blade 203 and an inner spiral blade 204. The outer side of the tube body 201 is provided with a transmission gear 202 and an outer spiral blade 203. The transmission gear 202 is located on one side of the outer spiral blade 203. The inner spiral blade 204 is provided inside the tube body 201. One end of the tube body 201 and the installed transmission gear 202 are located in the cavity 103. One end of the tube body 201 is transmission-connected to the power component 9, wherein the power component 9 is a motor.

[0029] Several mesh cover bodies 8 that need to be cleaned are placed in the feed chamber 102. At the same time, a chamfer 1021 is provided on the opening of the feed chamber 102 to facilitate discharge. After being placed, the two relatively distributed protrusions of the mesh cover body 8 are overlapped on the inclined surface 1022 and move along the inclined surface 1022 to the limiting groove 1023. The installed power component 9 drives the installed ring body 401 to rotate through the transmission gear 202 and the transmission component 3, thereby realizing the rotation of the feeding component 4. When the mesh cover body 8 that falls into the limiting groove 1023 encounters the spiral guide rail 402 and is aligned with the limiting groove 1023, it falls into the spiral guide rail 402, realizing that the mesh cover body 8 moves along the spiral guide rail 402 to one side of the end cover 6 until it is discharged.

[0030] The feeding assembly 4 includes a ring body 1 401, a spiral guide rail 402 and a ring body 2 403. Four annularly distributed spiral guide rails 402 are provided between the ring body 1 401 and the ring body 2 403. The ring body 1 401 is installed on one side of the limiting groove 1023, and the ring body 2 403 is installed in the through hole of the end cover 6. The protrusion of the mesh cover body 8 moves along the spiral guide rail 402.

[0031] The limiting rod 7 includes a pin rod 701 and a limiting plate 702. One end of the pin rod 701 is installed with the limiting plate 702. The pin rod 701 is installed in the installation hole provided in the feeding cavity 102. At the same time, the limiting plate 702 extends into the cleaning cavity 101. After installation, the limiting plate 702 is distributed in a vertical state, and the side edge of the limiting plate 702 cooperates with the groove formed by the mesh cover body 8.

[0032] Working principle: One side of the cleaning cavity 101 is provided with a drain groove. The provided drain groove is located at the lowest part of the cleaning cavity 101, and at the same time, it is close to one side of the cavity 103. During the use process, several mesh cover bodies 8 to be cleaned are placed in the feeding cavity 102. At the same time, a chamfer 1021 is provided on the opening of the feeding cavity 102 to facilitate feeding. The two relatively distributed protrusions of the placed mesh cover body 8 both overlap on the inclined surface 1022 and move along the inclined surface 1022 towards the limiting groove 1023. The installed power component 9 drives the installed ring body one 401 to rotate through the transmission gear 202 and the transmission component 3, thereby realizing the rotation of the feeding component 4. When the mesh cover body 8 falling into the limiting groove 1023 encounters the spiral guide rail 402 aligned with the limiting groove 1023, it falls into the spiral guide rail 402, realizing the movement of the mesh cover body 8 along the spiral guide rail 402 towards one side of the end cover 6 until it is discharged. During the process of the transmission gear 202 driving the pipe body 201 to rotate, since the other end of the pipe body 201 is communicated with the water supply pipeline, water enters the liquid inlet groove 601 through the pipe body 201 and the inner spiral blade 204, and then enters the channel 1013 communicated with the liquid inlet groove 601, and enters the corresponding spraying part 5 through the curved groove 1012 communicated with the channel 1013, completing the cleaning of the mesh cover body 8 passing through the spraying part 5. The rotation direction of the provided inner spiral blade 204 is opposite to that of the outer spiral blade 203. During the liquid inlet process, the outer spiral blade 203 pushes the cleaned sewage towards the drain groove side, facilitating the rapid discharge of the sewage. The spraying part 5 is fixed on the inner wall of the cleaning cavity 101. The spraying part 5 is of a ring structure. A plurality of spray nozzles are provided on the inner wall of the spraying part 5. An inlet for liquid is provided on the outer side of the spraying part 5 and is communicated with the curved groove 1012, realizing the spraying and cleaning of the passing mesh cover body 8.

[0033] Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art and related fields without creative efforts shall fall within the protection scope of the present invention. The structures, devices, and operation methods not specifically described and explained in the present invention, unless otherwise specified and limited, are implemented according to the conventional means in the art.

Claims

1. A fan screen processing device, comprising a housing (1), characterized in that: The housing (1) comprises a cleaning chamber (101), a feeding chamber (102) and a cavity (103); the feeding chamber (102) and the cavity (103) are provided on one side of the cleaning chamber (101); the feeding chamber (102) is located on the upper side of the cavity (103); A rotating rod (2) and a feeding assembly (4) are installed in the cleaning chamber (101); one end of the rotating rod (2) extends into the cavity (103); a power assembly (9) is installed in the cavity (103); the power assembly (9) is in driving connection with one end of the rotating rod (2); the feeding assembly (4) is in communication with the feeding chamber (102); and the material enters the feeding assembly (4) through the feeding chamber (102); The rotating rod (2) drives the feeding assembly (4) to rotate via the transmission assembly (3); A plurality of spray parts (5) are also installed in the cleaning chamber (101). The spray parts (5) are sleeved on the outside of the feeding assembly (4). The spray parts (5) are communicated with a liquid inlet channel provided in the cleaning chamber (101).

2. The fan screen processing equipment according to claim 1, characterized in that: The cleaning chamber (101) is an elliptical channel, a ring groove (1011) is provided at the end of the elliptical channel, and an end cover (6) is mounted on the ring groove (1011); A through hole and an axial hole are provided on the inner side surface of the end cover (6); one end of the feeding assembly (4) is mounted in the through hole, and the other end of the rotating rod (2) is mounted in the axial hole.

3. The fan screen processing equipment according to claim 2, characterized in that: A plurality of curved grooves (1012) are provided on the upper inner wall of the cleaning chamber (101), and the plurality of curved grooves (1012) are connected through a channel (1013) provided on the top of the cleaning chamber (101); The end cover (6) is provided with a liquid inlet groove (601), the liquid inlet groove (601) being in communication with the shaft hole; and the liquid inlet groove (601) in the installed end cover (6) is in communication with the outermost curved groove (1012).

4. The fan screen processing equipment according to claim 3, characterized in that: A partition (104) is provided between the cleaning chamber (101) and the cavity (103), and a circular hole (1041) is provided on the partition (104).

5. The fan screen processing equipment according to claim 4, characterized in that: The opening of the feed chamber (102) is opened upwards, and chamfers (1021) are provided on two opposite sides of the opening; the feed chamber (102) is connected to the cleaning chamber (101) via a through hole, and four limit grooves (1023) distributed along a cross are provided on the inner wall of the through hole; Inclined surfaces (1022) are provided on opposite side surfaces of the feed cavity (102), and the lowest point of the inclined surfaces (1022) is flush with the two limiting grooves (1023) in the middle.

6. The fan screen processing equipment according to claim 5, characterized in that: The rotating rod (2) comprises a tube body (201), a transmission gear (202), an outer spiral blade (203) and an inner spiral blade (204); the transmission gear (202) and the outer spiral blade (203) are arranged on the outer side of the tube body (201); the transmission gear (202) is located on one side of the outer spiral blade (203); and the inner spiral blade (204) is arranged inside the tube body (201); One end of the tube body (201) and the installed transmission gear (202) are located in the cavity (103), and one end of the body (201) is transmission-connected to a power assembly (9), wherein the power assembly (9) is a motor.

7. The fan screen processing equipment according to claim 6, characterized in that: The feeding assembly (4) comprises a ring body 1 (401), a spiral guide rail (402) and a ring body 2 (403), wherein four spiral guide rails (402) are arranged in an annular arrangement between the ring body 1 (401) and the ring body 2 (403); The first ring body (401) is mounted on one side of the limiting groove (1023), and the second ring body (403) is mounted on the through hole of the end cover (6). The protrusion of the mesh cover body (8) moves along the spiral guide rail (402).

8. The fan screen processing equipment according to claim 7, characterized in that: The limiting rod (7) comprises a pin rod (701) and a limiting plate (702); one end of the pin rod (701) is mounted with the limiting plate (702); the pin rod (701) is mounted in a mounting hole provided in the feed chamber (102); and the limiting plate (702) extends into the cleaning chamber (101); after installation, the limiting plate (702) is arranged in a vertical state, and the side edges of the limiting plate (702) cooperate with the grooves formed by the mesh cover body (8).