Glass bead surface treatment device
By designing a glass microsphere surface treatment device that includes a rinsing tank, a filter assembly, and a stirring assembly, the problem of traditional equipment being unable to operate continuously has been solved, achieving automated pickling and rinsing, improving efficiency and reducing costs.
Patent Information
- Application Number
- CN202520001948.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-02
- Publication Date
- 2025-12-26
- Estimated Expiration
- 2035-01-02
AI Technical Summary
Traditional glass microsphere surface treatment equipment cannot achieve continuous operation, resulting in cumbersome operation, low work efficiency, high manual labor intensity, and high equipment cost.
A surface treatment device for glass microspheres was designed, comprising a rinsing tank, a filter assembly, a vibration drive assembly, and a stirring assembly, to achieve continuous acid washing and rinsing operations. The filter assembly automatically retrieves the microspheres, and the vibration and stirring assembly accelerates the rinsing efficiency.
It enables continuous operation of pickling and rinsing of glass microspheres, reduces manual labor intensity, improves work efficiency, and saves equipment procurement costs.
Smart Images

Figure CN223717850U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to the technical field of cleaning equipment, especially relates to a glass bead surface treatment device. BACKGROUND
[0002] Glass bead is a new type of material with wide application and special performance developed in recent years, which is mainly made of borosilicate raw materials through high-tech processing, has the advantages of light weight, low thermal conductivity, high strength and the like, is very easy to disperse in organic material system, and is often applied to rust removal of aerospace machinery, night reflection of zebra lines, no parking lines and double yellow lines of urban traffic roads, and night reflection device of traffic signboards.
[0003] The production process of glass bead is mainly powder method, which is to crush glass into required particles, to make the glass particles melt under the surface tension after screening and uniform heating at a certain temperature, to form microbeads, and then to cool and form, and to naturally form round glass beads.
[0004] However, the traditional cleaning equipment cannot realize continuous operation, and in the pickling process, the workers need to salvage the material after pickling operation and transfer the material to the rinsing device for rinsing operation with clean water, which is complicated, low in work efficiency and high in labor intensity. UTILITY MODEL CONTENT
[0005] The utility model discloses a glass bead surface treatment device with reasonable structure design, which can realize continuous operation of pickling and rinsing of glass beads, reduce the labor intensity of workers, improve the work efficiency, and save the equipment procurement cost.
[0006] The utility model discloses a technical scheme adopted for solving the technical problems existing in the prior art is: a glass bead surface treatment device includes lower support, is installed with the rinsing box body that has the water outlet of bottom and is provided with the water inlet and feed port of top on the lower support, is provided with the guide groove of inside wall lower part of rinsing box body and is slidably connected with two groups of groove installation plate of relative setting that can move longitudinally in the guide groove, and is inserted with the filter screen assembly of activity connection with both between two groups of groove installation plate, is provided with the window of corresponding filter screen assembly with the seal door of seal installation at the window on the side of rinsing box body, still include the vibration rotating shaft of rotation connection in rinsing box body, is installed with two groups of vibration drive assembly that are connected with two groups of groove installation plate respectively on the vibration rotating shaft, still include the vibration drive motor of installation on rinsing box body, is used for driving the rotation of vibration rotating shaft, is provided with the longitudinal multiple groups of stirring assembly of setting in the lower part of vibration rotating shaft, is installed with the steering drive component between vibration rotating shaft and each stirring assembly, is used for driving each stirring assembly rotation, still include the pickling tank body of installation through upper support on rinsing box body, and the discharge port of pickling tank body is connected with the feed port of rinsing box body and is installed with the unloading valve, still include the drive mounting bracket of installation on the top of pickling tank body, is installed with left side stirring assembly, middle stirring assembly and right side stirring assembly on the drive mounting bracket.
[0007] The utility model discloses a glass bead surface treatment device, through setting left side stirring assembly, middle stirring assembly and right side stirring assembly, can carry out large -range stirring operation to the mixture in pickling tank body, and then makes glass bead fully contact with pickling liquid, improves the pickling effect and work efficiency of glass bead, through setting filter screen assembly, can filter the material of pouring in rinsing box body and dehydrates, realizes the purpose of automatic salvage glass bead, and staff need not manual salvage operation, through setting two groups of groove installation plate sliding installation filter screen assembly, cooperation seal door installed on the lateral wall of rinsing box body, can conveniently staff smoothly take out filter screen assembly and carry out subsequent drying operation, through setting vibration drive component and vibration drive motor, can drive filter screen assembly to vibrate up and down, cooperation multiple groups of stirring assembly and multiple groups of stirring assembly, can accelerate rinsing effect in the rinsing operation process rinsing work efficiency, and accelerates the work efficiency of dehydration operation in the dehydration process.
[0008] Preferably, the vibration driving assembly comprises a vibration connecting seat fixed to the inner wall of the rinsing box body, a longitudinally reciprocating installation rod is arranged on the vibration connecting seat, a roller installation seat is installed on the upper end of the longitudinally reciprocating installation rod, and a transfer roller is rotatably connected to the roller installation seat; a buffer spring is arranged on the longitudinally reciprocating installation rod between the roller installation seat and the vibration connecting seat; a rotating cam is keyed to the vibration rotating shaft, the rotating cam is in rolling contact with the transfer roller, and the lower end of the longitudinally reciprocating installation rod is connected to the slotted installation plate.
[0009] Preferably, the steering driving assembly comprises a gear box body rotatably connected to the vibration rotating shaft through a rolling bearing, a gear box installation rod is installed on the top of the gear box body and connected to the top of the rinsing box body; a driven gear shaft is rotatably connected to the gear box body through a rolling bearing, and a bevel gear pair is installed between the driven gear shaft and the vibration rotating shaft; the stirring assembly is coaxially connected to the driven gear shaft.
[0010] Preferably, the stirring assembly comprises a stirring rotating shaft connected to the steering driving assembly and arranged longitudinally, and a plurality of groups of stirring blades are arranged on the stirring rotating shaft in the axial direction.
[0011] Preferably, the filter screen assembly comprises a filter screen installation plate, two groups of T-shaped sliding blocks are arranged on the bottom surface of the filter screen installation plate in opposite directions, the two groups of T-shaped sliding blocks are in sliding fit with T-shaped sliding grooves arranged on the slotted installation plate, a filter screen installation box is inserted into a slot arranged in the middle of the filter screen installation plate, a filter screen is installed in the filter screen installation box, and a limiting bent edge bent downward is arranged at the edge of the filter screen installation box and used for clamping the filter screen installation box.
[0012] Preferably, the intermediate stirring assembly comprises an intermediate motor installed on the driving installation bracket, a longitudinally arranged intermediate stirring shaft is keyed to the output shaft of the intermediate motor, a plurality of groups of oblique branch pipes are arranged on the lower end of the intermediate stirring shaft in a circumferential direction and arranged in an inclined manner, and a longitudinally arranged longitudinal branch pipe is fixed to each oblique branch pipe; an annular installation pipe is fixed to each longitudinal branch pipe, and an arc-shaped stirring blade is fixed between adjacent two groups of longitudinal branch pipes.
[0013] Preferably, the left stirring assembly comprises an oblique stirring shaft arranged in the pickling tank body, the oblique direction of the oblique stirring shaft is gradually close to the intermediate stirring assembly from top to bottom, and a stirring wheel is installed on the lower end of the oblique stirring shaft; a left stirring motor is installed on the driving installation bracket and used for driving the oblique stirring shaft to rotate; the right stirring assembly comprises a right stirring motor installed on the driving installation bracket, a longitudinally arranged right stirring shaft is installed on the output shaft of the right stirring motor, and a plurality of stirring paddles are arranged on the outer circumferential wall of the right stirring shaft in the axial and circumferential directions. BRIEF DESCRIPTION OF DRAWINGS
[0014] Figure 1 is the main view of the present utility model structure schematic diagram;
[0015] Figure 2 is the three-dimensional structure schematic diagram of the vibration driving assembly in the present utility model;
[0016] Figure 3 is the three-dimensional structure schematic diagram of the upper part structure of the present utility model;
[0017] Figure 4 is the three-dimensional structure schematic diagram of the stirring assembly and the steering driving assembly in the present utility model;
[0018] Figure 5 is the three-dimensional structure schematic diagram of the filter screen assembly in the present utility model.
[0019] In the drawing: 1, filter screen assembly;1-1, filter screen mounting plate;1-2, filter screen mounting box;1-3, filter screen;1-4, limiting folded edge;1-5, T-shaped sliding block;2, vibration rotating shaft;3, stirring assembly;3-1, stirring blade;3-2, stirring rotating shaft;4, steering driving assembly;4-1, driven gear shaft;4-2, bevel gear pair;4-3, gear box body;4-4, gear box mounting rod;5, rinsing box body;6, sealing door;7, guide groove;8, vibration driving assembly;8-1, longitudinal movement mounting rod;8-2, buffer spring;8-3, roller mounting seat;8-4, rotary cam;8-5, vibration connecting seat;8-6, adapter roller;9, water injection pipeline;10, upper support;11, unloading valve;12, pickling tank body;13, driving mounting frame;14, left stirring assembly;14-1, stirring wheel;14-2, oblique stirring shaft;14-3, left stirring motor;15, intermediate stirring assembly;15-1, arc-shaped stirring blade;15-2, intermediate stirring shaft;15-3, oblique branch pipe;15-4, longitudinal branch pipe;15-5, annular mounting pipe;15-6, intermediate motor;16, right stirring assembly;16-1, stirring paddle;16-2, right stirring shaft;16-3, right stirring motor;17, vibration driving motor;18, slotted mounting plate;19, lower support. DETAILED DESCRIPTION
[0020] In order to further understand the invention content, characteristics and efficacy of the present utility model, the following examples are described in detail as follows:
[0021] Please refer to Figure 1The glass bead surface treatment device comprises a lower support 19, a rinsing box body 5 provided with a water outlet at the bottom and an inlet at the top and an inlet is installed on the lower support 19, a guide groove 7 is formed at the lower part of the inner wall of the rinsing box body 5, and two groups of groove installation plates 18 which are longitudinally movable and oppositely arranged are slidably connected in the guide groove 7, and a filter screen assembly 1 which is movably connected with the two groups of groove installation plates 18 is inserted between the two groups of groove installation plates 18. A window corresponding to the filter screen assembly 1 is formed on the side of the rinsing box body 5, and a sealing door 6 is sealingly installed at the window. An electromagnetic valve is installed at the water outlet of the rinsing box body 5; a water injection pipeline 9 connected with a tap water source is installed at the water inlet of the rinsing box body 5, and a water pump and a ball valve are installed on the water injection pipeline 9.
[0022] As shown in the drawings, Figure 5 In the present embodiment, the filter screen assembly 1 comprises a filter screen installation plate 1-1, two groups of T-shaped sliding blocks 1-5 are installed on the bottom surface of the filter screen installation plate 1-1, and the two groups of T-shaped sliding blocks 1-5 are slidably matched with the T-shaped sliding grooves formed on the groove installation plates 18. The filter screen assembly 1 further comprises a filter screen installation box 1-2 inserted into the slot formed in the middle of the filter screen installation plate 1-1, and a filter screen 1-3 is installed in the filter screen installation box 1-2; a limiting bent edge 1-4 bent downward is arranged at the edge of the filter screen installation box 1-2, and is used for clamping the filter screen installation box 1-2.
[0023] By arranging the filter screen assembly 1, the material poured into the rinsing box body 5 can be filtered and dewatered, so that the glass beads can be automatically salvaged; by arranging the two groups of groove installation plates 18 to slidably install the filter screen assembly 1, the filter screen assembly 1 and the two groups of groove installation plates 18 can be quickly disassembled and assembled, and in cooperation with the sealing door 6 installed on the side wall of the rinsing box body 5, the filter screen assembly 1 can be smoothly taken out by the staff, and then the glass beads which have completed the pickling and rinsing operations and are intercepted on the filter screen assembly 1 can be transferred and subjected to subsequent drying operations.
[0024] As shown in the drawings, Figure 1 The present embodiment further comprises a vibrating rotating shaft 2 rotating in the rinsing box body 5, and the vibrating rotating shaft 2 is transversely arranged. The vibrating rotating shaft 2 is provided with two groups of vibration driving assemblies 8 respectively connected with the two groups of groove installation plates 18, and further comprises a vibration driving motor 17 installed on the rinsing box body 5 and used for driving the vibrating rotating shaft 2 to rotate. A plurality of groups of stirring assemblies 3 are longitudinally arranged below the vibrating rotating shaft 2, and a steering driving assembly 4 is installed between the vibrating rotating shaft 2 and each stirring assembly 3, and is used for driving each stirring assembly 3 to rotate.
[0025] As shown in the drawings, Figure 2As shown in the drawings, the vibration driving assembly 8 comprises a vibration connecting seat 8-5 fixed on the inner wall of the rinsing box 5, a longitudinally movable mounting rod 8-1 longitudinally movably arranged on the vibration connecting seat 8-5, a roller mounting seat 8-3 mounted on the upper end of the longitudinally movable mounting rod 8-1, and a connecting roller 8-6 rotatably connected to the roller mounting seat 8-3. The vibration driving assembly 8 further comprises a buffer spring 8-2 arranged on the longitudinally movable mounting rod 8-1 between the roller mounting seat 8-3 and the vibration connecting seat 8-5. The vibration driving assembly 8 further comprises a rotating cam 8-4 rotatably connected to the vibration rotating shaft 2, and the rotating cam 8-4 is in rolling contact with the connecting roller 8-6. The lower end of the longitudinally movable mounting rod 8-1 is connected to the slotted mounting plate 18.
[0026] In addition, the vibration connecting seat 8-5 is in L shape, the longitudinally movable mounting rod 8-1 is slidably arranged on the horizontal plate of the vibration connecting seat 8-5, and the buffer spring 8-2 is arranged between the roller mounting seat 8-3 and the horizontal plate of the vibration connecting seat 8-5, so that when the roller mounting seat 8-3 is driven to move downward by an external force, the buffer spring 8-2 can be compressed. When the external force disappears, the compressed buffer spring 8-2 can drive the roller mounting seat 8-3 to move upward, so as to realize the purpose of driving the slotted mounting plate 18 to move longitudinally.
[0027] In actual working process, the vibration driving motor 17 is started to drive the vibration rotating shaft 2 connected to the output shaft of the vibration driving motor 17 to rotate, and the rotating vibration rotating shaft 2 drives the rotating cam 8-4 mounted thereon to rotate. Since the rotating cam 8-4 is in rolling contact with the connecting roller 8-6 rotatably connected to the roller mounting seat 8-3, when the distal end of the rotating cam 8-4 swings downward around the vibration rotating shaft 2, the longitudinally movable mounting rod 8-1 is driven to move downward, and the buffer spring 8-2 is compressed. The longitudinally movable mounting rod 8-1 moving downward drives the slotted mounting plate 18 connected thereto to move downward, so as to realize the purpose of driving the filter screen assembly 1 to move downward. When the distal end of the rotating cam 8-4 swings upward beyond the lowest end, the proximal end of the rotating cam 8-4 swings downward around the vibration rotating shaft 2. At this time, the compression of the buffer spring 8-2 is gradually released, so as to drive the roller mounting seat 8-3 to gradually move upward, and then drive the slotted mounting plate 18 to move upward, so as to realize the purpose of driving the filter screen assembly 1 to move upward. Therefore, with the rotation of the rotating cam 8-4, the filter screen assembly 1 can be driven by the vibration driving assembly 8 to move longitudinally, so as to realize the purpose of vibrating the filter screen assembly 1 and the glass beads material retained thereon upward and downward.
[0028] In addition, in order to speed up the rinsing operation of the glass beads, the plurality of stirring assemblies 3 can be driven by the respective corresponding turning driving assemblies 4 and the rotating vibration rotating shaft 2 to stir the material retained on the filter screen assembly 1, so as to speed up the rinsing efficiency and rinsing effect of the material.
[0029] As Figure 4 shown in the drawings, the above-mentioned steering drive assembly 4 includes a gear box body 4-3 connected with the vibration rotating shaft 2 through rolling bearings, a gear box mounting rod 4-4 connected with the top of the rinsing box body 5 is installed on the top of the gear box body 4-3; it also includes a driven gear shaft 4-1 connected with the gear box body 4-3 through rolling bearings, a bevel gear pair 4-2 is installed between the driven gear shaft 4-1 and the vibration rotating shaft 2; the stirring assembly 3 is coaxially connected with the driven gear shaft 4-1. Among them, the above-mentioned bevel gear pair 4-2 includes a driving gear connected with the vibration rotating shaft 2 by key, and a driven gear installed on the driven gear shaft 4-1 and engaged with the above-mentioned driving gear, the above-mentioned driving gear and driven gear are both bevel gears.
[0030] As Figure 4 shown in the drawings, the stirring assembly 3 includes a stirring rotating shaft 3-2 connected with the steering drive assembly 4 and longitudinally arranged, a plurality of groups of stirring blades 3-1 are installed on the stirring rotating shaft 3-2 and distributed along the axial direction thereof; in the actual working process, when the filter screen assembly 1 moves upward to the highest position, the lower end of the stirring rotating shaft 3-2 is adjacent to the filtering surface of the filter screen 1-3 and cooperates with the gap therebetween.
[0031] In the actual working process, the solid-liquid mixture after pickling is poured into the inner cavity of the rinsing box body 5 from the feed port thereof, at this time the glass beads are trapped and salvaged by the filter screen assembly 1, and the pickling liquid is discharged from the water outlet of the rinsing box body 5 to the outside of the rinsing box body 5 for recycling or discharged after treatment; after the pickling liquid is discharged to the outside of the rinsing box body 5, clean water for rinsing is injected into the inner cavity of the rinsing box body 5 through the water injection pipeline 9, after the liquid level of the clean water rises to the preset position, the vibration driving motor 17 is started to drive the vibration rotating shaft 2 to rotate, thereby driving the filter screen assembly 1 to vibrate up and down, and simultaneously driving a plurality of groups of stirring assemblies 3 to rotate, the rotating stirring assembly 3 can stir the liquid around it, thereby disturbing the trapped material on the filter screen assembly 1, so that the accumulated material on the filter screen assembly 1 is suspended in the rinsing liquid, thereby stirring the material trapped by the filter screen assembly 1, and accelerating the rinsing efficiency and effect of the glass beads.
[0032] As Figure 1 shown in the drawings, in order to perform efficient pickling operation on the glass beads, the embodiment further includes a pickling tank body 12 installed on the rinsing box body 5 through the upper support 10, the discharge port of the pickling tank body 12 is connected with the feed port of the rinsing box body 5 and is installed with a discharge valve 11; it also includes a driving mounting bracket 13 installed on the top of the pickling tank body 12, a left stirring assembly 14, a middle stirring assembly 15 and a right stirring assembly 16 are installed on the driving mounting bracket 13.
[0033] Further referring to Figure 3The intermediate stirring assembly 15 comprises an intermediate motor 15-6 mounted on the driving mounting frame 13, a longitudinal intermediate stirring shaft 15-2 is keyed connected to an output shaft of the intermediate motor 15-6, and slanting branch pipes 15-3 are uniformly distributed in a circumferential direction and are obliquely arranged at a lower end of the intermediate stirring shaft 15-2, and longitudinal branch pipes 15-4 are longitudinally arranged on each of the slanting branch pipes 15-3; and an annular mounting pipe 15-5 is fixedly connected with each of the longitudinal branch pipes 15-4, and arc-shaped stirring blades 15-1 are fixedly connected between two adjacent groups of the longitudinal branch pipes 15-4, and upper ends and lower ends of the arc-shaped stirring blades 15-1 are connected with upper ends and lower ends of the two adjacent groups of the longitudinal branch pipes 15-4 respectively.
[0034] As shown in Figure 3 The left stirring assembly 14 comprises a slanting stirring shaft 14-2 arranged in the pickling tank body 12, the slanting stirring shaft 14-2 is obliquely arranged from top to bottom and gradually approaches the intermediate stirring assembly 15, and a stirring wheel 14-1 is mounted at a lower end of the slanting stirring shaft 14-2, and a left stirring motor 14-3 is mounted on the driving mounting frame 13 and is used to drive the slanting stirring shaft 14-2 to rotate, the stirring wheel 14-1 is disc-shaped, a plurality of upwardly bent blade portions and downwardly bent blade portions are arranged at an outer edge of the stirring wheel 14-1, and the upwardly bent blade portions and the downwardly bent blade portions are alternately distributed, and the right stirring assembly 16 comprises a right stirring motor 16-3 mounted on the driving mounting frame 13, and a longitudinal right stirring shaft 16-2 is mounted on an output shaft of the right stirring motor 16-3, and a plurality of stirring paddles 16-1 are arranged on an outer circumferential wall of the right stirring shaft 16-2 in an axial direction and a circumferential direction.
[0035] By arranging the left stirring assembly 14, the intermediate stirring assembly 15 and the right stirring assembly 16, the pickling solution and the glass bead material in the pickling tank body 12 can be stirred in a large range, so that the glass beads are fully contacted with the pickling solution, and the pickling effect and the working efficiency of the glass beads are improved.
[0036] Working process:
[0037] Close the discharge valve 11, inject pickling solution into the pickling tank 12 and put the glass beads to be pickled, start the left stirring assembly 14, the middle stirring assembly 15 and the right stirring assembly 16, and stir the pickling solution and the glass beads in the pickling tank 12 in a large range. After a period of stirring, start the discharge valve 11, and pour the pickled solid-liquid mixture into the inner cavity of the rinsing tank 5 from the inlet of the rinsing tank 5. At this time, the glass beads are trapped and salvaged by the filter screen assembly 1, and the pickling liquid is discharged from the water outlet of the rinsing tank 5. Then, close the electromagnetic valve at the water outlet of the rinsing tank 5, inject clean water into the inner cavity of the rinsing tank 5, start the vibration driving motor 17, drive the filter screen assembly 1 to vibrate up and down, and drive the multiple stirring assemblies 3 to rotate, thereby stirring the trapped material of the filter screen assembly 1 and accelerating the rinsing efficiency and effect of the glass beads.
[0038] After a period of rinsing, open the electromagnetic valve at the water outlet of the rinsing tank 5 to discharge the rinsing liquid. At this time, the up-and-down vibrating filter screen assembly 1 can accelerate the work efficiency of the dehydration operation of the glass beads. After the dehydration operation of the glass beads is completed, open the sealing door 6 to smoothly take out the filter screen assembly 1, and then transfer the glass beads trapped on the filter screen assembly 1 after pickling and rinsing to the subsequent drying operation.
Claims
1. A glass microbead surface treatment apparatus, characterized by: The utility model provides a kind of acid pickling and rinsing device, including lower support (19), on lower support (19) is installed and the bottom is opened with water outlet, top is provided with the rinsing box (5) of water inlet and feed inlet, guide slot (7) is opened in the inner wall lower part of rinsing box (5) and is slidably connected with two groups of slot installation plate (18) that are relatively arranged and can be longitudinally moved in guide slot (7), filter screen assembly (1) is inserted between two groups of slot installation plate (18) and is movably connected with two groups of slot installation plate (18);Window is opened in the side of rinsing box (5) with filter screen assembly (1) corresponding and sealing door (6) is sealingly installed at window;It further includes vibration rotating shaft (2) rotatably connected in rinsing box (5), two groups of vibration drive assemblies (8) are installed on vibration rotating shaft (2) and are connected with two groups of slot installation plate (18) respectively, and it further includes vibration drive motor (17) installed on rinsing box (5), for driving vibration rotating shaft (2) rotation;A plurality of stirring assemblies (3) are arranged longitudinally below vibration rotating shaft (2), and steering drive assembly (4) is installed between vibration rotating shaft (2) and each stirring assembly (3), for driving each stirring assembly (3) rotation;It further includes pickling tank body (12) installed on rinsing box (5) by upper support (10), the discharge port of pickling tank body (12) is connected with the feed inlet of rinsing box (5) and is installed with unloading valve (11);It further includes drive mounting bracket (13) installed on the top of pickling tank body (12), left stirring assembly (14), middle stirring assembly (15) and right stirring assembly (16) are installed on drive mounting bracket (13).
2. The glass microbead surface treatment apparatus according to claim 1, wherein: Vibration drive assembly (8) includes vibration connecting seat (8-5) fixedly connected on the inner wall of rinsing box (5), longitudinally reciprocatingly movable longitudinal installation rod (8-1) is penetrated on vibration connecting seat (8-5), roller mounting seat (8-3) is installed on the upper end of longitudinal installation rod (8-1), and adapter roller (8-6) is rotatably connected on roller mounting seat (8-3);It further includes buffer spring (8-2) that is penetrated on longitudinal installation rod (8-1) between roller mounting seat (8-3) and vibration connecting seat (8-5);It further includes rotation cam (8-4) keyed on vibration rotating shaft (2), and rotation cam (8-4) is in rolling contact with adapter roller (8-6);The lower end of longitudinal installation rod (8-1) is connected with slot installation plate (18).
3. The glass microbead surface treatment apparatus of claim 1, wherein: Steering drive assembly (4) includes gear box body (4-3) rotatably connected with vibration rotating shaft (2) by rolling bearing, gear box mounting rod (4-4) is installed on the top of gear box body (4-3) and is connected with the top of rinsing box (5);It further includes driven gear shaft (4-1) rotatably connected with gear box body (4-3) by rolling bearing, bevel gear pair (4-2) is installed between driven gear shaft (4-1) and vibration rotating shaft (2);Stirring assembly (3) is coaxially connected with driven gear shaft (4-1).
4. The glass microbead surface treatment apparatus of claim 1, wherein: The stirring assembly (3) comprises a stirring shaft (3-2) connected with the steering driving assembly (4) and longitudinally arranged, and a plurality of groups of stirring blades (3-1) are arranged on the stirring shaft (3-2) in the axial direction.
5. The glass microsphere surface treatment apparatus as described in claim 1, characterized in that: The filter screen assembly (1) comprises a filter screen mounting plate (1-1), two groups of T-shaped sliding blocks (1-5) are arranged on the bottom surface of the filter screen mounting plate (1-1) in a relative arrangement, and the two groups of T-shaped sliding blocks (1-5) are in sliding fit with the T-shaped sliding grooves formed on the slotted mounting plate (18); the filter screen mounting box (1-2) is inserted into the slot formed in the middle of the filter screen mounting plate (1-1), and the filter screen (1-3) is mounted in the filter screen mounting box (1-2); and the limiting bent edge (1-4) is arranged at the edge of the filter screen mounting box (1-2) and is bent downward to clamp the filter screen mounting box (1-2).
6. The glass microbead surface treatment apparatus of claim 1, wherein: The intermediate stirring assembly (15) comprises an intermediate motor (15-6) mounted on the driving mounting frame (13), a longitudinally arranged intermediate stirring shaft (15-2) is keyed connected to the output shaft of the intermediate motor (15-6), and a plurality of groups of oblique branch pipes (15-3) are uniformly distributed in the circumferential direction and are arranged obliquely at the lower end of the intermediate stirring shaft (15-2), and a longitudinally arranged longitudinal branch pipe (15-4) is fixedly connected to each oblique branch pipe (15-3); the ring-shaped mounting pipe (15-5) is fixedly connected to each longitudinal branch pipe (15-4), and the arc-shaped stirring blades (15-1) are fixedly connected between the adjacent two groups of longitudinal branch pipes (15-4), and the upper end and the lower end of the arc-shaped stirring blades (15-1) are connected with the upper end and the lower end of the adjacent two groups of longitudinal branch pipes (15-4), respectively.
7. The glass microsphere surface treatment apparatus as described in claim 1, characterized in that: The left stirring assembly (14) comprises an oblique stirring shaft (14-2) arranged in the pickling tank body (12), the oblique direction of the oblique stirring shaft (14-2) is gradually close to the intermediate stirring assembly (15) from top to bottom, and a stirring wheel (14-1) is mounted at the lower end of the oblique stirring shaft (14-2), and the left stirring motor (14-3) is mounted on the driving mounting frame (13) to drive the oblique stirring shaft (14-2) to rotate; the right stirring assembly (16) comprises a right stirring motor (16-3) mounted on the driving mounting frame (13), and a longitudinally arranged right stirring shaft (16-2) is mounted on the output shaft of the right stirring motor (16-3), and a plurality of stirring paddles (16-1) are arranged on the outer peripheral wall of the right stirring shaft (16-2) in the axial and circumferential directions.