Cleaning and rinsing equipment for glass beads

By designing an automated glass bead cleaning and rinsing equipment, the problem that existing equipment cannot achieve continuous cleaning is solved, and the automated soaking, pickling and rinsing of glass beads are realized, reducing labor intensity and equipment costs.

CN223325121UActive Publication Date: 2025-09-12IBIZA (TIANJIN) NEW MATERIALS CO LTD
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Patent Information

Application Number
CN202422192415.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-08
Publication Date
2025-09-12
Estimated Expiration
2034-09-08

AI Technical Summary

Technical Problem

Existing glass bead cleaning equipment cannot achieve continuous cleaning and requires manual salvage, which increases the labor intensity of staff and equipment procurement costs.

Method used

A glass bead cleaning and rinsing equipment was designed, which included a pickling bracket, a pickling device and a rinsing device. A stirring assembly, a flip drive device, a salvage basket and a screw lifting assembly were used to realize the automatic soaking, pickling and rinsing operations of the glass beads.

Benefits of technology

The automatic cleaning of glass beads is realized, which reduces the labor intensity of staff, improves work efficiency and saves equipment procurement costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to cleaning and rinsing equipment for glass beads. Comprising an acid pickling support, an acid pickling device is installed on the acid pickling support and comprises an acid pickling box rotationally connected with the acid pickling support, and a stirring assembly is arranged in the acid pickling box in a penetrating mode; an overturning driving device and a stirring driving assembly are mounted on the pickling bracket; a rinsing device is arranged beside the pickling support, the rinsing device comprises a rinsing box body, a fishing basket is installed in the rinsing box body, the rinsing device further comprises a plurality of sets of lifting guide sleeves fixedly connected in the rinsing box body, and a lifting guide rod is arranged in each lifting guide sleeve in a sliding and penetrating mode; a rotating sleeve is mounted in the middle of the fishing basket, a spline shaft is rotationally connected in the rotating sleeve, and a plurality of groups of stirring wheels are in key connection with the spline shaft; the device further comprises a rotary driving assembly, a lead screw lifting assembly, a first driving assembly and a second driving assembly. According to the device, soaking, pickling and rinsing operations of the glass beads can be realized, manual fishing is not needed, the labor intensity of workers is reduced, and the working efficiency is improved.
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Description

Technical Field

[0001] The utility model belongs to the technical field of cleaning equipment, and in particular relates to a glass microbead cleaning and rinsing device. Background Art

[0002] Glass microbeads are a new type of material developed in recent years with a wide range of uses and special properties. This product is mainly made of borosilicate raw materials through high-tech processing. It has the advantages of light weight, low thermal conductivity, and high strength. It is very easy to disperse in organic material systems. It is often used in rust removal of aerospace machinery, and as a night-time reflector for zebra crossings, no-parking lines, double yellow lines on urban traffic roads, and as a night-time reflective device for traffic signs.

[0003] The production process of glass microbeads is mainly the powder method. Its principle is to crush the glass into the required particles, and then pass them through a uniform heating zone at a certain temperature after screening to melt the glass particles. Microbeads are formed under the action of surface tension, and then cooled and formed to naturally form round glass microbeads. After the glass microbeads are manufactured, they need to be pickled and rinsed to remove the flocs on the surface of the beads, and then dried.

[0004] At present, most pickling methods are to add acid for surface cleaning. First, the glass beads are soaked in acid solution, and then the mixture is dehydrated and separated. The separated glass beads are rinsed with water and then dehydrated and separated after rinsing. Traditional cleaning equipment cannot achieve continuous cleaning. Workers are required to salvage the soaked glass beads and then clean them, which increases the labor of the workers. In addition, the process requires the use of multiple equipment, which increases the equipment purchase cost. Therefore, it is urgent to design a glass bead cleaning and rinsing equipment to solve the problems existing in the existing technology. Utility Model Content

[0005] The present invention aims to solve the technical problems existing in the prior art and provides a glass bead cleaning and rinsing device with a rational structural design. The present invention can realize the soaking, pickling and rinsing operations of the glass beads without manual salvaging operations, thus reducing the labor intensity of the staff, improving work efficiency and saving equipment procurement costs.

[0006] The utility model adopts the following technical solutions to solve the technical problems existing in the known technology: a glass microbead cleaning and rinsing device comprises a pickling bracket, a pickling device with a feeding port on the upper part is installed on the pickling bracket, the pickling device comprises a pickling box with mounting sleeves fixed at both ends, the pickling box is rotatably connected to the pickling bracket through the mounting sleeve and a rolling bearing, a stirring assembly is horizontally arranged and rotatably connected to the mounting sleeve is passed through the pickling box; a turning drive device connected to the mounting sleeve is installed on the pickling bracket for driving the pickling box to turn; a stirring drive assembly is installed on the pickling bracket for driving the stirring assembly to rotate; and a stirring drive assembly is installed on the pickling bracket for driving the stirring assembly to rotate. A rinsing device is provided on the side thereof, and the rinsing device includes a rinsing box body, a salvage basket is installed in the rinsing box body, and also includes a plurality of lifting guide sleeves fixed in the rinsing box body, and a lifting guide rod connected to the salvage basket is slidably penetrated in each lifting guide sleeve; a rotating sleeve is installed in the middle of the salvage basket, and a spline shaft connected to the rotating sleeve for rotation is penetrated in the rotating sleeve, and a plurality of stirring wheels located in the salvage basket are key-connected to the spline shaft; it also includes a rotary drive assembly for driving the spline shaft to rotate, and a screw lifting assembly for driving the salvage basket to move up and down; it also includes a first drive assembly connected to the screw lifting assembly and a second drive assembly connected to the rotary drive assembly.

[0007] The advantages and positive effects of the utility model are as follows: the utility model provides a cleaning and rinsing device for glass beads. By arranging a pickling device and a stirring drive component, the glass beads put into the pickling device can be soaked and pickled. The stirring component in the pickling device can stir the solid-liquid mixture containing the glass beads, thereby improving the working efficiency of the pickling operation of the glass beads. In addition, by arranging a flipping drive device, the pickling device can be driven to flip, and then the solid-liquid mixture that has completed the pickling operation can be poured into the rinsing device coordinated with the pickling device for dehydration, multiple rinsing and salvage operations, wherein the salvage basket can play a role of filtering and salvaging; by arranging a spline shaft, multiple sets of stirring wheels, a rotating drive component and a second drive component, the glass beads on the salvage basket can be stirred during the rinsing operation, thereby improving the working efficiency of the rinsing operation of the glass beads; by arranging a screw lifting component and a first drive component, the glass beads that have completed the rinsing operation can be salvaged to facilitate the subsequent collection operation of the glass beads. The utility model can realize the soaking, pickling and rinsing operations of glass microbeads without manual salvaging operations, thereby reducing the labor intensity of workers, improving work efficiency and saving equipment procurement costs.

[0008] Preferably: a water outlet pipe is installed at the water outlet opened at the lower part of the rinsing device, a return water bellows is installed at the water inlet opened at the upper part of the pickling device, and a filter is also included, the water inlet of the filter is connected to the water outlet pipe through the return water pipe, and the water outlet of the filter is connected to the return water bellows through the return water pipe.

[0009] Preferably, the stirring assembly includes a transversely arranged pickling stirring shaft, on the outer peripheral wall of which are fixedly connected a plurality of groups of pickling stirring blades distributed along its axial direction; both ends of the pickling stirring shaft are respectively inserted into two groups of mounting sleeves and rotatably connected thereto.

[0010] Preferably: the flipping drive device includes a transversely arranged shaft connected to the pickling bracket for rotation, a flip handwheel is keyed to the outer end of the shaft, a flip gear pair is installed between the inner end of the shaft and the mounting sleeve, the flip gear pair includes a large gear keyed to the mounting sleeve, and also includes a small gear keyed to the inner end of the shaft, and the large gear and the small gear are meshed.

[0011] Preferably: the rotary drive assembly includes a longitudinally arranged stirring sleeve fixedly connected in the rinsing box, and a sleeve member is fixedly connected coaxially to the top of the stirring sleeve; it also includes a transversely arranged stirring horizontal shaft rotatably connected in the rinsing box, and the second drive assembly is connected to the stirring horizontal shaft; a stirring gear pair is installed between the stirring horizontal shaft and the sleeve member, the stirring gear pair is rotatably connected to the sleeve member, and the stirring gear pair is splined with the spline shaft.

[0012] Preferably: the screw lifting assembly includes two groups of longitudinally arranged lifting sleeves fixedly connected in the rinsing box body, a sleeve member is coaxially fixed to the top of each lifting sleeve, and also includes a transversely arranged lifting horizontal shaft rotatably connected in the rinsing box body, a lifting gear pair is installed between each sleeve member and the lifting horizontal shaft, and a longitudinally arranged lifting screw connected to the salvage basket is screwed on each lifting gear pair; the first drive assembly is connected to the lifting horizontal shaft.

[0013] Preferably, the bottom surface of the salvage basket is tilted to form a discharge slope, the inner end of the discharge slope is higher than the outer end, and a discharge port is provided at the lower portion of the side wall corresponding to the lower end of the salvage basket. BRIEF DESCRIPTION OF THE DRAWINGS

[0014] Figure 1 This is a schematic diagram of the main structure of the utility model;

[0015] Figure 2 It is a schematic diagram of the three-dimensional structure of the pickling device in the utility model;

[0016] Figure 3 It is a schematic diagram of the three-dimensional structure of the rinsing device in the utility model;

[0017] Figure 4 yes Figure 3 AA cross-sectional structure diagram in.

[0018] In the figure: 1. Rinse base; 2. Rinse device; 2-1. Rinse box; 2-2. Material blocking plate; 2-3. Spline shaft; 2-4. Mixing wheel; 2-5. Salvage basket; 2-6. Discharge chute; 2-7. Lifting guide sleeve; 2-8. Lifting screw; 2-9. Lifting guide rod; 2-10. Lifting gear pair; 2-11. Lifting horizontal shaft; 2-12. Mixing horizontal shaft; 2-13. Mixing gear pair; 2-14. Mixing sleeve Pipe; 2-15, lifting sleeve; 3, first drive assembly; 4, second drive assembly; 5, pickling bracket; 6, stirring drive assembly; 7, material guide slide; 8, flip handwheel; 9, flip gear pair; 10, pickling device; 10-1, pickling box; 10-2, pickling stirring shaft; 10-3, pickling stirring blade; 11, feeding port; 12, return water bellows; 13, return water pipe; 14, filter; 15, outlet pipe. DETAILED DESCRIPTION

[0019] In order to further understand the content, features and effects of the present invention, the following embodiments are given to explain in detail:

[0020] See Figure 1 The glass microbead cleaning and rinsing device of the present invention includes an acid cleaning bracket 5, on which is mounted an acid cleaning device 10 having a loading port 11 formed at its top. Furthermore, a stirring drive assembly 6 connected to the acid cleaning device 10 is mounted on the acid cleaning bracket 5. A rinsing base 1 is provided next to the acid cleaning bracket 5, on which a rinsing device 2 is mounted. A first drive assembly 3 and a second drive assembly 4 are mounted on the rinsing device 2.

[0021] Further references Figure 2 In this embodiment, the pickling device 10 includes a pickling box 10-1 with mounting sleeves fixed at both ends. The pickling box 10-1 is rotatably connected to the pickling bracket 5 through the mounting sleeve and a rolling bearing. A stirring assembly is horizontally arranged and rotatably connected to the mounting sleeve in the pickling box 10-1; a turning drive device connected to the mounting sleeve is installed on the pickling bracket 5 for driving the pickling box 10-1 to turn over; wherein the above-mentioned stirring drive assembly 6 is used to drive the stirring assembly to rotate.

[0022] Furthermore, the stirring assembly includes a transversely arranged pickling stirring shaft 10-2, on the outer peripheral wall of which are fixedly connected a plurality of pickling stirring blades 10-3 distributed along the axial direction thereof; the ends of the pickling stirring shaft 10-2 are respectively inserted into two sets of mounting sleeves and are rotatably connected thereto. The stirring drive assembly 6 includes a rotating motor mounted on the pickling bracket 5, a pulley pair is mounted between the output shaft of the rotating motor and the end of the pickling stirring shaft 10-2, the pulley pair including a driving pulley keyed to the output shaft of the rotating motor, and a driven pulley keyed to the end of the pickling stirring shaft 10-2, with a closed belt being connected between the driving pulley and the driven pulley.

[0023] like Figure 1 As shown, the flipping drive device includes a transversely arranged shaft member rotatably connected to the pickling bracket 5, a flip handwheel 8 is keyed to the outer end of the shaft member, and a flip gear pair 9 is installed between the inner end of the shaft member and the mounting sleeve. The flipping gear pair 9 includes a large gear keyed to the mounting sleeve and a small gear keyed to the inner end of the shaft member, and the large gear and the small gear are meshed.

[0024] In the actual working process, the turning hand wheel 8 can be manually rotated to drive the small gear connected to the key on it to rotate, and then the large gear meshed with the small gear can be rotated, thereby achieving the purpose of driving the installation sleeve and the pickling box 10-1 to rotate. Among them, the large gear and the small gear meshed with each other can play a certain self-locking function for the pickling box 10-1, preventing the pickling box 10-1 from flipping due to other reasons during the pickling process. In addition, in order to further improve the stability of the position locking of the pickling box 10-1, a pin shaft sleeve pointing to the pickling box 10-1 can be fixed on the pickling bracket 5, and a positioning pin shaft is slidably penetrated in the pin shaft sleeve. In addition, a pipe sleeve that is plugged into and matched with the pin shaft is installed on the end face of the pickling box 10-1. When the pickling operation is performed, the above-mentioned positioning pin shaft is inserted into the above-mentioned corresponding pipe sleeve, thereby achieving further positioning and locking of the pickling box 10-1. After the pickling operation is completed, the positioning pin is pulled out, and then the flip hand wheel 8 is manually rotated to drive the pickling device 10 to flip toward the rinsing device 2, and the solid-liquid mixture in the pickling device 10 is poured into the rinsing device 2.

[0025] like Figure 3As shown, in this embodiment, the above-mentioned rinsing device 2 includes a rinsing box 2-1, and the rinsing box 2-1 in the rinsing device 2 is installed on the rinsing base 1. A salvage basket 2-5 is installed in the rinsing box 2-1, and it also includes multiple sets of lifting guide sleeves 2-7 fixed in the rinsing box 2-1, and each lifting guide sleeve 2-7 is slidably penetrated by a lifting guide rod 2-9 connected to the salvage basket 2-5; a rotating sleeve is installed in the middle of the salvage basket 2-5, and a spline shaft 2-3 connected to the rotating sleeve is penetrated by the rotating sleeve, and multiple sets of stirring wheels 2-4 located in the salvage basket 2-5 are keyed to the spline shaft 2-3; it also includes a rotary drive component for driving the spline shaft 2-3 to rotate, and a screw lifting component for driving the salvage basket 2-5 to move up and down. The above-mentioned first drive component 3 is connected to the screw lifting component, and the second drive component 4 is connected to the rotary drive component.

[0026] like Figure 4 As shown, in this embodiment, the above-mentioned rotary drive assembly includes a longitudinally arranged stirring sleeve 2-14 fixedly connected within the rinsing tank 2-1, with a sleeve member fixedly connected coaxially to the top of the stirring sleeve 2-14; it also includes a transversely arranged stirring shaft 2-12 rotatably connected within the rinsing tank 2-1, and the second drive assembly 4 is connected to the stirring shaft 2-12; a stirring gear pair 2-13 is installed between the stirring shaft 2-12 and the sleeve member, the stirring gear pair 2-13 is rotatably connected to the sleeve member, and the stirring gear pair 2-13 is splined with the spline shaft 2-3. Through this arrangement, it is ensured that when the salvage basket 2-5 is raised and lowered relative to the rinsing tank 2-1, the stirring gear pair 2-13 can drive the spline shaft 2-3 to rotate.

[0027] Furthermore, the above-mentioned stirring gear pair 2-13 includes a driven helical gear rotatably connected to the sleeve member through a rolling bearing, and also includes a driving helical gear keyed to the stirring horizontal shaft 2-12. The driving helical gear and the driven helical gear are meshed with each other, and the spline shaft 2-3 is spline-matched with the above-mentioned driven helical gear.

[0028] Furthermore, in this embodiment, the above-mentioned second drive component 4 includes a rotating motor installed on the pickling bracket 5, a driving pulley is keyed to the output shaft of the rotating motor, and also includes a driven pulley keyed to the stirring horizontal shaft 2-12, and a closed belt is connected between the driving pulley and the driven pulley.

[0029] like Figure 4As shown, the screw lifting assembly includes two sets of longitudinally arranged lifting sleeves 2-15 fixedly connected in the rinsing box 2-1, and a sleeve member is coaxially fixed to the top of each lifting sleeve 2-15. It also includes a transversely arranged lifting horizontal shaft 2-11 that is rotatably connected in the rinsing box 2-1. A lifting gear pair 2-10 is installed between each sleeve member and the lifting horizontal shaft 2-11. A longitudinally arranged lifting screw 2-8 connected to the salvage basket 2-5 is screwed on each lifting gear pair 2-10. In this embodiment, the top of the above-mentioned lifting screw 2-8 is connected to the salvage basket 2-5 through a bearing member. Furthermore, the above-mentioned lifting gear pair 2-10 includes a driven bevel gear that is rotatably connected to the sleeve member through a rolling bearing. The driven bevel gear is screwed to the lifting screw 2-8. The rotation of the driven bevel gear can drive the lifting screw 2-8 to move up and down. It also includes a driving bevel gear keyed to the lifting horizontal shaft 2-11. The driving bevel gear and the driven bevel gear are meshed.

[0030] like Figure 4 As shown, the first drive assembly 3 is connected to the lifting horizontal shaft 2-11. Furthermore, the first drive assembly 3 includes a rotating motor mounted on the pickling bracket 5, a driving pulley keyed to the output shaft of the rotating motor, and a driven pulley keyed to the end of the lifting horizontal shaft 2-11. A closed belt is connected between the driving pulley and the driven pulley.

[0031] like Figure 3 and Figure 4 As shown, in this embodiment, the bottom surface of the aforementioned salvage basket 2-5 is tilted to form a discharge slope, with the inner end of the discharge slope being higher than the outer end. A discharge opening is provided at the lower portion of the sidewall corresponding to the lower end of the salvage basket 2-5. Furthermore, in this embodiment, the rinsing tank 2-1 is a rectangular parallelepiped structure. Two sets of material retaining baffles 2-2 and a set of discharge chutes 2-6 are mounted on the three edges of the open top of the rinsing tank 2-1. The discharge chutes 2-6 cooperate with the discharge openings provided in the salvage basket 2-5. A material guide chute 7 is provided corresponding to the gap in the area enclosed by the two sets of material retaining baffles 2-2 and the discharge chute 2-6.

[0032] In addition, if Figure 1 and Figure 2 As shown, a material guide chute 7 is installed on the pickling bracket 5 to guide the materials dumped from the pickling device 10 into the salvage basket 2 - 5 in the rinsing device 2 .

[0033] In addition, in order to save water resources, such as Figure 1As shown, a water outlet pipe 15 is installed at the water outlet opened at the bottom of the rinsing device 2, and a liquid valve is installed on the water outlet pipe 15. A return water bellows 12 is installed at the water inlet opened at the top of the pickling device 10. The device also includes a filter 14. The water inlet of the filter 14 is connected to the water outlet pipe 15 through the return water pipe 13, and the water outlet of the filter 14 is connected to the return water bellows 12 through the return water pipe 13. In addition, a water pump is installed on the return water pipe 13.

[0034] Working process:

[0035] The glass beads to be cleaned are poured into the pickling box 10-1 filled with cleaning liquid, and the motor in the stirring drive assembly 6 is started to drive the pickling stirring shaft 10-2 to rotate, thereby stirring the material in the pickling box 10-1 to realize the pickling operation of the glass beads; after stirring for a period of time, the flip hand wheel 8 is manually rotated to drive the pickling box 10-1 to flip toward the rinsing box 2-1, and then the solid-liquid mixture in the pickling box 10-1 is poured into the rinsing box 2-1 for subsequent rinsing operation; after the solid-liquid mixture material is poured into the rinsing device 2, the salvage basket 2-5 can filter the solid-liquid mixture, thereby realizing the operation of salvaging the glass beads. Under the action of the water pump, the pickling liquid flows to the filter 14 through the outlet pipe 15, and after filtering and removing slag in the filter 14, it flows back to the pickling box 10-1 through the return pipe 13 and the return water bellows 12;

[0036] After completing the above-mentioned salvaging operation of the glass beads, close the liquid valve on the water outlet pipe 15, inject rinsing liquid into the rinsing box 2-1, and then start the motor in the second drive assembly 4 to drive the stirring horizontal shaft 2-12 to rotate, thereby driving the stirring gear pair 2-13 to operate. The running stirring gear pair 2-13 can drive the spline shaft 2-3 matched with its spline to rotate to achieve the purpose of stirring the glass beads in the salvage basket 2-5, thereby performing a single rinsing operation on the glass beads in the salvage basket 2-5. After completing the single rinsing operation, the liquid valve on the water outlet pipe 15 can be opened again to discharge the rinsing liquid and then perform a second or multiple rinsing operation;

[0037] After the rinsing operation is completed, the motor in the first drive assembly 3 is turned on to drive the lifting horizontal shaft 2-11 to rotate, and then drive the lifting gear pair 2-10 to operate. The operating lifting gear pair 2-10 can drive the lifting screw 2-8 screwed therewith to move upward, and then lift the salvage basket 2-5 connected thereto to realize the salvage and dehydration operation of the glass beads. When the salvage basket 2-5 rises and moves to the discharge port opened on it higher than the rinsing box 2-1, the glass beads flow into the discharge chute 2-6 under the action of their own gravity, and flow along the discharge chute 2-6 into the collection box placed under the discharge chute 2-6, completing the pickling and rinsing operation of the glass beads. The operation process is continuous and smooth, and no manual salvage operation is required, which reduces the labor intensity of the staff, improves work efficiency, and saves equipment procurement costs.

Claims

1. A glass bead cleaning and rinsing device, characterized by: The invention comprises a pickling bracket (5), a pickling device (10) with a feeding port (11) on the upper portion thereof being installed on the pickling bracket (5), the pickling device (10) comprising a pickling box (10-1) with mounting sleeves fixedly connected at both ends, the pickling box (10-1) being rotatably connected to the pickling bracket (5) via the mounting sleeve and a rolling bearing, a stirring assembly being transversely arranged and rotatably connected to the mounting sleeve being passed through the pickling box (10-1); a turning drive device connected to the mounting sleeve being installed on the pickling bracket (5) for driving the pickling box (10-1) to turn over; a stirring drive assembly (6) being installed on the pickling bracket (5) for driving the stirring assembly to rotate; a rinsing device (2) being arranged on the side of the pickling bracket (5), the rinsing device (2) comprising a rinsing box (2-1), a salvage basket (2-5) being installed in the rinsing box (2-1), and a stirring assembly (6) being installed in the rinsing box (2-1). 1) multiple groups of lifting guide sleeves (2-7) fixedly connected inside, each lifting guide sleeve (2-7) is slidably penetrated by a lifting guide rod (2-9) connected to the salvage basket (2-5); a rotating sleeve is installed in the middle of the salvage basket (2-5) and a spline shaft (2-3) is penetrated in the rotating sleeve and is rotatably connected to the rotating sleeve, and multiple groups of stirring wheels (2-4) located in the salvage basket (2-5) are key-connected on the spline shaft (2-3); it also includes a rotary drive component for driving the spline shaft (2-3) to rotate, and a screw lifting component for driving the salvage basket (2-5) to move upward and downward; it also includes a first drive component (3) connected to the screw lifting component and a second drive component (4) connected to the rotary drive component; the bottom surface of the salvage basket (2-5) is inclined to form a discharge slope, the inner end of the discharge slope is higher than the outer end, and a discharge port is opened at the lower part of the side wall corresponding to the lower end of the salvage basket (2-5).

2. The glass microbead cleaning and rinsing device according to claim 1, characterized in that: A water outlet pipe (15) is installed at the water outlet opened at the lower part of the rinsing device (2), a return water corrugated pipe (12) is installed at the water inlet opened at the upper part of the pickling device (10), and a filter (14) is also included. The water inlet of the filter (14) is connected to the water outlet pipe (15) through the return water pipe (13), and the water outlet of the filter (14) is connected to the return water corrugated pipe (12) through the return water pipe (13).

3. The glass microbead cleaning and rinsing device according to claim 1, characterized in that: The stirring assembly comprises a transversely arranged pickling stirring shaft (10-2), on the outer peripheral wall of which are fixedly connected a plurality of groups of pickling stirring blades (10-3) distributed along the axial direction thereof; both ends of the pickling stirring shaft (10-2) are respectively inserted into two groups of mounting rotating sleeves and are rotatably connected thereto.

4. The glass microbead cleaning and rinsing device according to claim 1, characterized in that: The turning drive device includes a transversely arranged shaft member rotatably connected to the pickling bracket (5), a turning hand wheel (8) is keyed to the outer end of the shaft member, and a turning gear pair (9) is installed between the inner end of the shaft member and the mounting sleeve. The turning gear pair (9) includes a large gear keyed to the mounting sleeve and a small gear keyed to the inner end of the shaft member, and the large gear and the small gear are meshed.

5. The glass microbead cleaning and rinsing device according to claim 1, characterized in that: The rotary drive assembly comprises a longitudinally arranged stirring sleeve (2-14) fixedly connected in a rinsing box (2-1), a sleeve member being fixedly connected coaxially to the top of the stirring sleeve (2-14); and a transversely arranged stirring shaft (2-12) rotatably connected in the rinsing box (2-1). The second drive assembly (4) is connected to the stirring shaft (2-12); a stirring gear pair (2-13) is installed between the stirring shaft (2-12) and the sleeve member, the stirring gear pair (2-13) being rotatably connected to the sleeve member, and the stirring gear pair (2-13) is spline-matched with the spline shaft (2-3).

6. The glass microbead cleaning and rinsing device according to claim 1, characterized in that: The screw lifting assembly comprises two sets of longitudinally arranged lifting sleeves (2-15) fixedly connected in a rinsing box (2-1), a sleeve member coaxially fixedly connected to the top of each lifting sleeve (2-15), and a transversely arranged lifting shaft (2-11) rotatably connected in the rinsing box (2-1). A lifting gear pair (2-10) is installed between each sleeve member and the lifting shaft (2-11), and a longitudinally arranged lifting screw (2-8) connected to the salvage basket (2-5) is screwed on each lifting gear pair (2-10); and a first drive assembly (3) is connected to the lifting shaft (2-11).