CN223159723U - Plastic particle cleaning device - Google Patents

Plastic particle cleaning device

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Publication number
CN223159723U
CN223159723U CN202422284347.5U CN202422284347U CN223159723U CN 223159723 U CN223159723 U CN 223159723U CN 202422284347 U CN202422284347 U CN 202422284347U CN 223159723 U CN223159723 U CN 223159723U
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CN
China
Prior art keywords
cleaning
conveying
shaft
chamber
plastic particles
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Active
Application number
CN202422284347.5U
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Chinese (zh)
Inventor
许克
宁波
潘铭坚
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Guangdong Nengxing Environmental Protection Co ltd
Original Assignee
Guangdong Nengxing Environmental Protection Co ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
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Priority to CN202422284347.5U priority Critical patent/CN223159723U/en
Application granted granted Critical
Publication of CN223159723U publication Critical patent/CN223159723U/en
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Abstract

本实用新型涉及一种塑料颗粒清洗装置,包括用于塑料颗粒一次清洗的摩擦清洗机构,所述摩擦清洗机构具有出料口,还包括用于塑料颗粒二次清洗且连接于所述出料口的第二清洗机构,所述第二清洗机构包括清洗组件、以及位于所述清洗组件下方的输送组件,所述清洗组件包括清洗腔、对称设置于所述清洗腔两侧的旋转搅动单元、以及安装于所述清洗腔内部的喷淋单元,所述旋转搅动单元对从所述出料口下落至所述清洗腔的塑料颗粒进行搅动对冲,所述喷淋单元将所述清洗腔内分散开的塑料颗粒进行水洗喷淋,所述输。送组件将清洗后塑料颗粒输送至下工序。本实用新型能够能够高效清洗塑料颗粒表面的污垢和杂质,解决现有摩擦清洗机构清洗塑料不干净的问题。

The present invention relates to a plastic particle cleaning device, comprising a friction cleaning mechanism for primary cleaning of plastic particles, the friction cleaning mechanism having a discharge port, and a second cleaning mechanism for secondary cleaning of plastic particles connected to the discharge port, the second cleaning mechanism comprising a cleaning component and a conveying component located below the cleaning component, the cleaning component comprising a cleaning chamber, a rotating stirring unit symmetrically arranged on both sides of the cleaning chamber, and a spray unit installed inside the cleaning chamber, the rotating stirring unit stirring and offsetting the plastic particles falling from the discharge port into the cleaning chamber, the spray unit washing and spraying the plastic particles dispersed in the cleaning chamber, and the conveying component conveying the cleaned plastic particles to the next process. The present invention can efficiently clean dirt and impurities on the surface of plastic particles, solving the problem of poor cleaning of plastics by existing friction cleaning mechanisms.

Description

Plastic granules belt cleaning device
Technical Field
The utility model relates to the technical field of waste plastic bucket resource treatment, in particular to a plastic particle cleaning device.
Background
In order to save resources and improve the utilization rate of waste plastic barrels, the waste plastic barrels are generally crushed to prepare plastic particles after being recycled, and then the crushed plastic particles are cleaned to remove dirt and impurities on the plastic particles so as to be reused. In actual production, the friction cleaning mechanism is generally used for cleaning plastic particles, and in the plastic particle cleaning and conveying process, the plastic particles are cleaned through friction force among the plastic particles, between the plastic particles, the rotating blades and the screen mesh, and the plastic particles are possibly poor in cleaning effect due to small friction force.
Disclosure of utility model
Aiming at the problems, the utility model aims to design a plastic particle cleaning device which can efficiently clean dirt and impurities on the surfaces of plastic particles and solve the problem that the existing friction cleaning mechanism cannot clean plastic.
The aim of the utility model is achieved by the following technical scheme:
The utility model provides a plastic granules belt cleaning device, includes the friction cleaning mechanism who is used for plastic granules to once wash, friction cleaning mechanism has the discharge gate, still including be used for plastic granules secondary to wash and connect in the second wiper mechanism of discharge gate, second wiper mechanism includes cleaning assembly and is located cleaning assembly below, cleaning assembly including wash the chamber, the symmetry set up in the rotatory stirring unit of cleaning chamber both sides and install in wash the inside spraying unit of chamber, rotatory stirring unit to follow the discharge gate whereabouts extremely wash the plastic granules of chamber and stir the hedging, spray the unit with wash the plastic granules that disperses in the chamber and wash, conveying assembly carries the plastic granules to the process down after wasing.
The plastic particle cleaning device designed by the scheme cleans the plastic particles twice in the plastic particle conveying process, so that the cleaned plastic particles are clean. The broken plastic is put into the friction cleaning mechanism, the plastic particles are cleaned once through the internal conveying friction stirring piece, and the cleaned plastic particles are discharged from a discharge hole of the friction cleaning mechanism. The plastic particles falling into the cleaning cavity from the discharge hole are stirred and opposite-punched by the rotary stirring unit to achieve the effect of friction cleaning, meanwhile, the spraying unit performs high-pressure spraying on the plastic particles in the cleaning cavity, and the materials falling into the cleaning cavity are cleaned again through the cooperation of the rotary stirring unit and the spraying unit, so that the cleaning device is cleaner. The cleaned plastic particles fall into the conveying assembly and are conveyed to the next working procedure for processing. Through the design, dirt and impurities on the surfaces of plastic particles can be efficiently cleaned, and the problem that the existing friction cleaning machine cannot clean plastics is solved.
Further, the rotary stirring unit comprises a rotary shaft rotatably arranged in the cleaning cavity and a first driving piece for driving the rotary shaft to rotate, and rotary blades are arranged on the periphery of the rotary shaft.
The two rotary stirring units are symmetrically arranged on the side walls of the two sides of the cleaning cavity, the rotation directions of the rotation shafts are opposite, the rotary blades are driven by the first driving piece to rotate at high speed, turbulence is formed in the cleaning cavity, plastic particles fall into the cleaning cavity, and the plastic particles can stir and butt against and rub against each other in the cleaning cavity under the action of the turbulence, so that the cleaning purpose is achieved.
Further, the spraying unit comprises a plurality of cleaning spray heads arranged in the cleaning cavity, the cleaning cavity is provided with a plurality of cleaning pipelines, and the cleaning spray heads are connected with the cleaning pipelines in a one-to-one correspondence manner.
The cleaning spray head adopts a high-pressure spray head to spray plastic particles in the cleaning cavity, so that the plastic particles further wash dirt and impurities in the stirring and mutual friction process and take away the dirt and impurities.
Further, the spraying unit further comprises a cleaning shaft which is arranged in the cleaning cavity and is positioned below the rotating shaft, cleaning blades are arranged on the periphery of the cleaning shaft, a water inlet is formed in the end portion of the cleaning shaft, a water inlet channel communicated with the water inlet is formed in the cleaning shaft, and a plurality of through holes communicated with the water inlet channel are formed in the outer wall of the cleaning blades at intervals.
The cleaning shaft is of a hollow design, the end part of the cleaning shaft is connected with the water inlet pipe, cleaning blades are arranged on the periphery of the cleaning shaft and can be arranged in a crossing manner or in a parallel manner, and a plurality of through holes are dispersed on each cleaning blade and are used for atomizing water spraying, so that a water curtain is formed at the position of the cleaning shaft of the cleaning cavity, and plastic particles fall down and are flushed again when passing through the water curtain.
Further, the conveying assembly comprises a conveying cavity communicated with the cleaning cavity, a spiral blade rotatably arranged in the conveying cavity, and a second driving piece for driving the spiral blade to rotate.
The conveying assembly adopts a spiral conveying mode, plastic particles cleaned by the cleaning assembly fall into a conveying cavity, spiral blades are arranged in the conveying cavity, and the spiral blades rotate and convey away the plastic particles under the driving of the second driving piece.
Further, a screen opening and a conveying outlet are formed in the bottom of the conveying cavity.
The bottom of the conveying cavity is provided with a screen mouth, and sewage for cleaning plastic particles by the cleaning component falls into the conveying cavity and flows out of the screen mouth. The conveying outlet is arranged at one end of the conveying cavity opposite to the mounting position of the second driving piece, and the conveying outlet is opposite to the material inlet of the next working procedure.
Further, the friction cleaning mechanism comprises a cleaning cylinder, a cleaning conveying shaft and a third driving piece, the cleaning conveying shaft is arranged in the cleaning cylinder in a rotating mode, the third driving piece drives the cleaning conveying shaft to rotate, the cleaning cylinder is further provided with a feeding hole, and the feeding hole and the discharging hole are respectively arranged at two ends of the cleaning cylinder.
Under the drive of the third driving piece, the cleaning conveying shaft in the cleaning barrel rotates, after the broken plastic particles are thrown into the cleaning barrel from the feed inlet, the cleaning conveying shaft rotates to drive the plastic particles to move towards the discharge outlet, and meanwhile, the plastic particles are stirred, so that the plastic particles, the cleaning conveying shaft and the cleaning barrel are rubbed with each other, and the cleaning effect is achieved.
Further, one end of the cleaning conveying shaft, which is located at the feeding hole, is provided with a feeding blade, one end of the cleaning conveying shaft, which is located at the discharging hole, is provided with a discharging blade, and a friction cleaning blade is arranged at the part of the cleaning conveying shaft, which is located between the feeding hole and the discharging hole.
The feeding blade is a spiral blade, the feeding blade is opposite to the feeding hole, plastic particles put into the cleaning cylinder are driven by the spiral blade to move towards the friction cleaning blade, the friction cleaning blades are distributed at intervals in a spiral mode, a space for the plastic particles to overturn is formed between the two friction cleaning blades, and the spiral design enables the plastic particles to be gradually pushed to the discharging hole in the friction cleaning process and swept out by the discharging blade.
Further, the cleaning cylinder is also provided with a plurality of water inlets and water outlets.
The top of the cleaning cylinder is provided with a plurality of water inlets, a spray head is arranged in the cleaning cylinder for spraying water, the number of the spray heads is set according to the length of the cleaning cylinder, the spray range of the spray head can cover the whole screen, plastic particles are washed in the friction cleaning process through spraying and dust impurities are taken away, the bottom of the cleaning cylinder is provided with a water outlet, and sewage flows out from the water outlet to be collected and treated.
Further, a screen is arranged in the cleaning cylinder, and the screen surrounds the periphery of the feeding blade and the friction cleaning blade.
The detachable screen mesh is arranged in the cleaning cylinder, so that the friction force of plastic during stirring is increased, meanwhile, plastic particles and sewage can be effectively separated and filtered, and the cleaning effect is improved.
Compared with the prior art, the utility model has the beneficial effects that:
The plastic particle cleaning device designed by the scheme cleans the plastic particles twice in the plastic particle conveying process, so that the cleaned plastic particles are clean. The broken plastic is put into the friction cleaning mechanism, the plastic particles are cleaned once through the internal conveying friction stirring piece, and the cleaned plastic particles are discharged from a discharge hole of the friction cleaning mechanism. The plastic particles falling into the cleaning cavity from the discharge hole are stirred and opposite-punched by the rotary stirring unit to achieve the effect of friction cleaning, meanwhile, the spraying unit performs high-pressure spraying on the plastic particles in the cleaning cavity, and the materials falling into the cleaning cavity are cleaned again through the cooperation of the rotary stirring unit and the spraying unit, so that the cleaning device is cleaner. The cleaned plastic particles fall into the conveying assembly and are conveyed to the next working procedure for processing. Through the design, dirt and impurities on the surfaces of plastic particles can be efficiently cleaned, and the problem that the existing friction cleaning machine cannot clean plastics is solved.
Drawings
Fig. 1 is a block diagram of a plastic particle cleaning apparatus according to an embodiment of the present utility model.
Fig. 2 is a structural view of a friction cleaning mechanism according to an embodiment of the present utility model.
Fig. 3 is a structural view of a second cleaning mechanism according to an embodiment of the present utility model.
The illustration is 1, friction cleaning mechanism, 2, second cleaning mechanism, 11, cleaning cylinder, 12, cleaning conveying shaft, 13, third driving piece, 14, screen, 111, feeding hole, 112, discharging hole, 113, water inlet, 114, water outlet, 121, feeding blade, 122, friction cleaning blade, 123, discharging blade, 21, cleaning component, 22, conveying component, 211, cleaning cavity, 212, rotary stirring unit, 213, spraying unit, 221, conveying cavity, 222, spiral blade, 223, second driving piece, 2111, cleaning pipeline, 2121, rotating shaft, 2122, first driving piece, 2123, rotating blade, 2131, cleaning nozzle, 2132, cleaning shaft, 2133, cleaning blade, 2134, water inlet, 2135, through hole, 2211, screen hole, 2212, conveying outlet.
Detailed Description
In order that the utility model may be readily understood, a more complete description of the utility model will be rendered by reference to the appended drawings. The drawings illustrate preferred embodiments of the utility model. This utility model may, however, be embodied in many different forms and should not be construed as limited to the embodiments set forth herein.
As shown in fig. 1 to 3, the present embodiment provides a plastic particle cleaning apparatus, including a friction cleaning mechanism 1 for primary cleaning of plastic particles, the friction cleaning mechanism 1 having a discharge port 112, and further including a second cleaning mechanism 2 for secondary cleaning of plastic particles and connected to the discharge port, the second cleaning mechanism 2 including a cleaning assembly 21 and a conveying assembly 22 located below the cleaning assembly 21, the cleaning assembly 21 including a cleaning chamber 211, rotary stirring units 212 symmetrically disposed at both sides of the cleaning chamber 211, and a spraying unit 213 mounted inside the cleaning chamber 211, the rotary stirring units 212 stirring and hedging the plastic particles falling from the discharge port 112 to the cleaning chamber 211, the spraying unit 213 water-washing-spraying the plastic particles dispersed in the cleaning chamber 211, and the conveying assembly 22 conveying the cleaned plastic particles to the next process.
The plastic particle cleaning device provided by the embodiment cleans the plastic particles twice in the plastic particle conveying process, so that the cleaned plastic particles are clean. The crushed plastic is put into the friction cleaning mechanism 1, the plastic particles are cleaned once by the internal conveying friction stirring piece, and the cleaned plastic particles are discharged from the discharge hole 112 of the friction cleaning mechanism 1. The cleaning cavity 211 is arranged at the discharge hole 112 in a butt joint mode, plastic particles falling into the cleaning cavity 211 from the discharge hole 112 are stirred and opposite to each other by the rotary stirring unit 212 to rub each other, so that a friction cleaning effect is achieved, meanwhile, the spraying unit 213 performs high-pressure spraying on the plastic particles in the cleaning cavity 211, and materials falling into the cleaning cavity 211 are cleaned again through the cooperation of the rotary stirring unit 212 and the spraying unit 213, so that the cleaning device is cleaner. The cleaned plastic particles fall into the conveyor assembly 22 and are transferred to the next process for processing. Through the design, dirt and impurities on the surfaces of plastic particles can be efficiently cleaned, and the problem that the existing friction cleaning machine cannot clean plastics is solved.
As shown in fig. 2, the friction cleaning mechanism 1 includes a cleaning barrel 11, a cleaning conveying shaft 12 rotatably disposed in the cleaning barrel 11, and a third driving member 13 for driving the cleaning conveying shaft 12 to rotate, wherein the cleaning barrel 11 is further provided with a feed inlet 111, and the feed inlet 111 and a discharge outlet 112 are respectively disposed at two ends of the cleaning barrel 11. The cleaning barrel 11 is installed on the frame, can be horizontally placed, can also be obliquely placed, two ends of the cleaning conveying shaft 12 are installed and fixed on two end covers of the cleaning barrel 11 through sealing bearing seats, a third driving piece 13 is a driving motor, the driving motor is arranged on a supporting platform on the barrel body, a rotating shaft of the driving motor is connected with the end part of the cleaning conveying shaft 12 through a belt or a chain, the cleaning conveying shaft 12 in the cleaning barrel 11 rotates under the driving of the third driving piece 13, broken plastic particles are thrown into the cleaning barrel 11 from a feeding hole 111, the cleaning conveying shaft 12 rotates to drive the plastic particles to move towards a discharging hole 112, and meanwhile, the plastic particles are stirred, so that the plastic particles, the cleaning conveying shaft 12 and the cleaning barrel 11 are rubbed with each other, and the cleaning effect is achieved.
As shown in fig. 2, a feeding blade 121 is disposed at one end of the cleaning and conveying shaft 12 located at the feeding port 111, a discharging blade 123 is disposed at one end of the cleaning and conveying shaft 12 located at the discharging port 112, and a friction cleaning blade 122 is disposed at a portion of the cleaning and conveying shaft 12 located between the feeding port 111 and the discharging port 112. The feeding blades 121 are spiral blades, are opposite to the feeding hole 111, and the plastic particles put into the cleaning cylinder 11 are driven by the spiral blades to move towards the friction cleaning blades 122, the friction cleaning blades 122 are distributed at intervals in a spiral mode, a space for turning over the plastic particles is formed between the two friction cleaning blades 122, and the spiral design enables the plastic particles to be gradually pushed to the discharging hole 112 in the friction cleaning process and swept out by the discharging blades 123.
As shown in fig. 2, the cleaning cartridge 11 is further provided with a plurality of water inlets 113 and water outlets 114. The inside of the cleaning cylinder 11 is provided with a screen 14, and the screen 14 surrounds the periphery of the feeding blade 121 and the friction cleaning blade 122. The top of the cleaning cylinder 11 is provided with a plurality of water inlets 113, a spray head is arranged in the cleaning cylinder 11 for spraying water, the number of the spray heads is set according to the length of the cleaning cylinder 11, the spray range of the spray head can cover the whole screen 14, plastic particles are washed in the friction cleaning process through spraying and dust impurities are taken away, the bottom of the cleaning cylinder 11 is provided with a water outlet 114, and sewage flows out from the water outlet 114 to be collected. The detachable screen 14 is arranged in the cleaning cylinder 11, so that the friction force of plastic during stirring is increased, and meanwhile, plastic particles and sewage can be effectively separated and filtered, and the cleaning effect is improved.
As shown in fig. 3, the rotary agitation unit 212 includes a rotation shaft 2121 rotatably provided in the washing chamber 211, and a first driving member 2122 driving the rotation shaft 2121 to rotate, and a rotary blade 2123 is provided at an outer periphery of the rotation shaft 2121. The two rotation stirring units 212 are symmetrically arranged on the side walls of two sides of the cleaning cavity 211, the first driving piece 2122 adopts a driving motor, the rotating shaft 2121 is arranged on the side wall of the cleaning cavity 211 through a sealing bearing seat, the rotating shaft of the driving motor is connected with the rotating shaft 2121 through a coupler, the rotating directions of the rotating shafts of the driving motor are set to be opposite, therefore, the rotating directions of the two rotating shafts 2121 are opposite, the rotating blades 2123 rotate at a high speed under the driving of the first driving piece 2122, turbulence is formed in the cleaning cavity 211, plastic particles fall into the cleaning cavity 211, and the plastic particles are stirred and hedging in the cleaning cavity 211 under the action of the turbulence so as to rub each other, so that the purpose of cleaning is achieved.
As shown in fig. 3, the spray unit 213 includes a plurality of cleaning spray heads 2131 disposed inside the cleaning chamber 211, the cleaning chamber 211 is provided with a plurality of cleaning pipes 2111, and the cleaning spray heads 2131 are connected to the cleaning pipes 2111 in a one-to-one correspondence. The cleaning spray heads 2131 may be provided on four sidewalls of the cleaning chamber 211, and the number of the cleaning spray heads 2131 on each sidewall is set according to the size of the cleaning chamber 211, so that the spray range of the cleaning spray heads 2131 can cover the entire cleaning chamber 211. The cleaning nozzle 2131 adopts a high-pressure nozzle to spray plastic particles in the cleaning cavity 211, so that the plastic particles further wash away dirt and impurities in the process of stirring and mutual friction. The spraying unit 213 further comprises a cleaning shaft 2132 disposed in the cleaning cavity 211 and located below the rotating shaft 2121, cleaning blades 2133 are disposed on the periphery of the cleaning shaft 2132, a water inlet 2134 is disposed at an end of the cleaning shaft 2132, a water inlet channel communicating with the water inlet 2134 is disposed in the cleaning shaft 2132, and a plurality of through holes 2135 communicating with the water inlet channel are disposed on the outer wall of the cleaning blades 2133 at intervals. The cleaning shaft 2132 is hollow, the end of the cleaning shaft 2132 is connected with a water inlet pipe, the periphery of the cleaning shaft 2132 is provided with cleaning blades 2133, the cleaning blades 2133 can be arranged in a crossed manner or in parallel manner, and a plurality of through holes 2135 are dispersed on each cleaning blade 2133 for atomizing and spraying water, so that a water curtain is formed at the position of the cleaning shaft 2132 of the cleaning cavity 211, and plastic particles are flushed again when falling through the water curtain.
As shown in fig. 3, the conveying assembly 22 includes a conveying cavity 221 communicated with the cleaning cavity 211, a spiral blade 222 rotatably disposed in the conveying cavity 221, and a second driving member 223 for driving the spiral blade 222 to rotate, wherein the second driving member 223 adopts a driving motor, a screen opening 2211 is formed in the bottom of the conveying cavity 221, a conveying outlet 2212 is formed at one end opposite to the mounting position of the second driving member 223, and the conveying outlet 2212 is opposite to the material inlet of the next process. The sewage from the cleaning assembly 21 for cleaning plastic particles falls into the conveying cavity 221 and flows out from the screen opening 2211, the conveying assembly 22 adopts a spiral conveying mode, the plastic particles cleaned by the cleaning assembly 21 fall into the conveying cavity 221, the conveying cavity 221 is internally provided with a spiral blade 222, and the spiral blade 222 rotates and conveys the plastic particles to the conveying outlet 2212 under the driving of the second driving piece 223, so that the plastic particles fall into the material inlet of the following procedure.
In the description of the present utility model, it should be understood that the terms such as "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc. indicate orientations or positional relationships based on the drawings, are merely for convenience in describing the present utility model and simplifying the description, and do not indicate or imply that the devices or elements referred to must have a specific orientation, be configured and operated in a specific orientation, and thus should not be construed as limiting the present utility model.
Furthermore, the terms "first," "second," and the like, are used for descriptive purposes only and are not to be construed as indicating or implying a relative importance or implicitly indicating the number of technical features indicated. Thus, a feature defining "a first", "a second", etc. may explicitly or implicitly include one or more such feature. In the description of the present utility model, the meaning of "a plurality" is two or more, unless explicitly defined otherwise.
Although embodiments of the present utility model have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made therein without departing from the principles and spirit of the utility model, the scope of which is defined in the appended claims and their equivalents.

Claims (10)

1. The utility model provides a plastic granules belt cleaning device, includes and is used for plastics granule once abluent friction cleaning mechanism, friction cleaning mechanism has the discharge gate, its characterized in that still including be used for plastics granule secondary to wash and connect in the second wiper mechanism of discharge gate, second wiper mechanism includes cleaning assembly and is located cleaning assembly below, cleaning assembly including wash the chamber, the symmetry set up in the rotatory stirring unit of cleaning chamber both sides and install in the spraying unit of cleaning the intracavity portion, rotatory stirring unit pair follow the discharge gate whereabouts extremely wash the plastics granule in chamber and stir the offset, spray the unit with wash plastics granule that the intracavity portion dispersed and wash and spray, conveying assembly carries plastics granule to the next process after wasing.
2. The plastic particle cleaning apparatus according to claim 1, wherein the rotary stirring unit includes a rotary shaft rotatably provided in the cleaning chamber, and a first driving member driving the rotary shaft to rotate, the rotary shaft being provided at an outer periphery thereof with rotary blades.
3. The plastic particle cleaning apparatus according to claim 2, wherein the spray unit includes a plurality of cleaning nozzles disposed inside the cleaning chamber, the cleaning chamber is provided with a plurality of cleaning pipes, and the cleaning nozzles are connected to the cleaning pipes in one-to-one correspondence.
4. The plastic particle cleaning apparatus according to claim 3, wherein the spraying unit further comprises a cleaning shaft disposed in the cleaning cavity and located below the rotating shaft, cleaning blades are disposed on the periphery of the cleaning shaft, water inlets are disposed at ends of the cleaning shaft, water inlet channels communicated with the water inlets are disposed in the cleaning shaft, and a plurality of through holes communicated with the water inlet channels are disposed on outer walls of the cleaning blades at intervals.
5. The plastic particle cleaning apparatus of claim 1, wherein the transport assembly comprises a transport chamber in communication with the cleaning chamber, a helical blade rotatably disposed within the transport chamber, and a second drive member that drives the helical blade in rotation.
6. The plastic particle cleaning apparatus of claim 5, wherein the bottom of the conveying chamber is provided with a screen opening and a conveying outlet.
7. The plastic particle cleaning apparatus according to claim 1, wherein the friction cleaning mechanism comprises a cleaning cylinder, a cleaning conveying shaft rotatably arranged in the cleaning cylinder, and a third driving member for driving the cleaning conveying shaft to rotate, the cleaning cylinder is further provided with a feed inlet, and the feed inlet and the discharge outlet are respectively arranged at two ends of the cleaning cylinder.
8. The plastic particle cleaning apparatus according to claim 7, wherein the cleaning conveying shaft is provided with a feeding blade at one end of the feeding port, a discharging blade is provided at one end of the cleaning conveying shaft at the discharging port, and a friction cleaning blade is provided at a portion of the cleaning conveying shaft between the feeding port and the discharging port.
9. The plastic particle cleaning apparatus of claim 8, wherein the cleaning cartridge is further provided with a plurality of water inlets and water outlets.
10. The plastic particle cleaning apparatus of claim 9, wherein a screen is provided inside the cleaning cylinder, the screen surrounding the feed blade and the frictional cleaning blade.
CN202422284347.5U 2024-09-19 2024-09-19 Plastic particle cleaning device Active CN223159723U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202422284347.5U CN223159723U (en) 2024-09-19 2024-09-19 Plastic particle cleaning device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202422284347.5U CN223159723U (en) 2024-09-19 2024-09-19 Plastic particle cleaning device

Publications (1)

Publication Number Publication Date
CN223159723U true CN223159723U (en) 2025-07-29

Family

ID=96480785

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202422284347.5U Active CN223159723U (en) 2024-09-19 2024-09-19 Plastic particle cleaning device

Country Status (1)

Country Link
CN (1) CN223159723U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN121289159A (en) * 2025-12-11 2026-01-09 江苏东浦精细陶瓷科技股份有限公司 A multi-stage spiral propulsion ceramic ball high-efficiency cleaning device

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN121289159A (en) * 2025-12-11 2026-01-09 江苏东浦精细陶瓷科技股份有限公司 A multi-stage spiral propulsion ceramic ball high-efficiency cleaning device

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