Middle bottom plate slurry impurity removing and filtering device
By designing an automated scraper system, the filtration effect and manual cleaning problems caused by the accumulation of impurities in the slurry filtration device of the midsole plate are solved, and the automatic impurity removal is achieved and the amount of manual labor is reduced.
Patent Information
- Application Number
- CN202422265659.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-18
- Publication Date
- 2025-07-11
- Estimated Expiration
- 2034-09-18
AI Technical Summary
After the existing midsole slurry filtration device accumulates a large amount of impurities on the filter mesh or filter plate, it needs to be manually cleaned, which affects the subsequent filtration effect and increases the amount of labor.
A midsole plate slurry removal filter device is designed. Through the movement of the bottom scraper, particulate matter on the top surface of the filter plate is scraped down to the vertical through hole, realizing automatic impurity removal and reducing manual operation.
It realizes automatic impurity removal without manual operation, improves filtration effect, and reduces the amount of manual labor.
Smart Images

Figure CN223082361U_ABST
Abstract
Description
Technical Field:
[0001] The utility model relates to the technical field of shoemaking accessories, and more specifically, to an impurity removal and filtration device for midsole slurry. Background Art:
[0002] The midsole is a kind of backing plate inside the shoe, located between the sole and the upper, and is usually made of materials. The main function of the midsole is to stabilize the structure of the shoe and provide additional support and buffering effects to improve the comfort and performance of the shoe. The materials of the midsole of the shoe are diverse, and common ones include EVA, PHYLON, TPU, etc.;
[0003] There is also a midsole made of fiberboard made of materials such as cardboard and cotton wool. Before being made into a plate body, it is a slurry stirred and mixed by materials such as cardboard and cotton wool, and a large amount of impurities and large-particle solid substances are mixed in the slurry, which need to be filtered;
[0004] The existing filtering device only needs to pour the slurry onto the filter screen or filter plate for filtration. However, after several filtrations on the filter screen or filter plate, too many particulate impurities will cover the top surface with water, and manual cleaning is required. Otherwise, the subsequent filtering effect will be greatly reduced, affecting the use effect. Content of the Utility Model:
[0005] The purpose of the utility model is to overcome the deficiencies of the prior art and provide an impurity removal and filtration device for midsole slurry. After filtering on one side, through the movement of the bottom scraper, the particulate substances and other impurities on the top surface of the filter screen plate can be scraped off from its top surface and dropped through the vertical through hole, which is convenient for subsequent filtration use, without manual operation, greatly reducing the manual labor amount and having a good use effect.
[0006] The solution of the utility model to solve the above technical problems is:
[0007] An impurity removal and filtration device for midsole slurry, including a material receiving trough body. A plurality of vertical support legs are fixed on the outer side wall of the material receiving trough body. The bottom ends of the vertical support legs extend out of the bottom surface of the material receiving trough body and are fixed with lower support blocks;
[0008] A middle horizontal partition plate is installed in the middle of the material receiving trough body. A central through groove is formed in the middle of the middle horizontal partition plate. The filter screen plate is fixed on the top surface of the middle horizontal partition plate and covers the central through groove;
[0009] Horizontal moving mechanisms are installed at the top surfaces of the front and rear side plates of the material receiving trough body. The bottom surfaces of the moving blocks of the two horizontal moving mechanisms are fixed with the same vertical moving plate. The vertical moving plate is located in the material receiving trough body. The front and rear wall surfaces of the vertical moving plate are close to the inner side walls of the front and rear side plates of the material receiving trough body. A bottom scraper is fixed at the bottom of the vertical moving plate. The bottom surface of the bottom scraper is closely attached to the top surface of the filter screen plate;
[0010] A vertical through hole is formed in the middle horizontal partition plate at the left side of the filter screen plate. An inclined guide plate is fixed to the bottom surface of the middle horizontal partition plate at the right side edge of the vertical through hole. The front and rear side walls of the inclined guide plate are fixed to the inner side walls of the front and rear side plates of the material receiving tank body, and the bottom surface of the inclined guide plate is fixed to the top surface of the bottom plate of the material receiving tank body. The inclined guide plate extends obliquely leftward and downward.
[0011] A discharge through hole is formed in the middle of the bottom plate of the material receiving tank body, and a waste discharge through hole is formed in the bottom plate of the material receiving tank body at the left side of the inclined guide plate.
[0012] Vertical side plates are welded and fixed to the four side edges of the top surface of the middle horizontal partition plate. The side walls of two adjacent vertical side plates are welded and fixed. A horizontal support plate is fixed to the outer side wall of the top end of each vertical side plate, and the horizontal support plate is fixed to the top surface of the corresponding side plate of the material receiving tank body. The outer side wall of the vertical side plate is closely attached to the inner side wall of the corresponding side plate of the material receiving tank body.
[0013] The transverse movement mechanism includes connecting seats at the left part and the right end on the top surface of the horizontal support plate fixed at the front or the rear. The articulated shaft fixed in the middle of the driving sprocket is movably connected to the corresponding connecting seat through a bearing, and the driving chain is tensioned on two corresponding driving sprockets.
[0014] A double-output shaft motor is fixed to the middle of the top surface of the right horizontal support plate. The two output shafts of the double-output shaft motor are connected with extension rods through couplings, and the outer ends of the extension rods are connected with one ends of the articulated shafts of the corresponding driving sprockets extending out of the connecting seats through couplings.
[0015] Support plates are fixed to the left part of the top surfaces of the front and rear horizontal support plates. The upper fixing plate is fixed to the top surfaces of the two support plates. A vertical baffle is fixed to the left side wall of the upper fixing plate. The lower part of the vertical baffle is inserted into the material receiving tank body. At least one pushing cylinder is fixed to the top surface of the upper fixing plate. The bottom end of the push rod of the pushing cylinder extends out of the bottom surface of the upper fixing plate and is fixed with a vertical connecting plate. A left vertical baffle is fixed to the right side wall of the vertical connecting plate. The bottom surface of the left vertical baffle is pressed against the top surface of the middle horizontal partition plate and is located at the left side of the filter screen plate. The vertical through hole is located at the left side of the left vertical baffle. The front and rear side walls of the left vertical baffle correspond to the inner side walls of the front and rear wall plates of the material receiving tank body.
[0016] Vertical guide grooves are formed on the inner side walls of the front and rear wall plates of the material receiving tank body opposite to the front and rear side walls of the left vertical baffle. The front and rear parts of the left vertical baffle are inserted into the corresponding vertical guide grooves. Side elastic sealing layers are fixed to the inner side walls of the vertical guide grooves. The front and rear parts of the left vertical baffle are inserted into the corresponding vertical guide grooves, and the side walls of the front and rear parts of the left vertical baffle are closely attached to the corresponding side elastic sealing layers.
[0017] On the left side wall of the upper connecting block fixed to the top of the vertical connecting plate, a plurality of left guiding sliders are fixed, and on the right side wall of the vertical baffle, a plurality of vertical guide rails are fixed. The left guiding sliders are inserted into the corresponding vertical guide rails.
[0018] The outstanding effect of the utility model is:
[0019] After filtering on one side, it can move the bottom scraper to scrape off the impurity such as particulate matter on the top surface of the filter mesh plate from its top surface and drop through the vertical through hole, which is convenient for subsequent filtering use, without manual operation, greatly reducing the manual labor amount and having good use effect. Brief description of the drawings:
[0020] Figure 1 is a partial structural schematic diagram of the utility model;
[0021] Figure 2 is Figure 1 a partial enlarged view of
[0022] Figure 3 is Figure 1 a partial enlarged view of another part of
[0023] Figure 4 is a partial top view of the lateral moving mechanism and the material receiving trough body. Specific implementation manner:
[0024] Embodiment, as shown in Figures 1 to 4 A middle bottom plate slurry impurity removal and filtering device includes a material receiving trough body 10. A plurality of vertical support legs 11 are fixed on the outer side wall of the material receiving trough body 10. The bottom ends of the vertical support legs 11 extend out of the bottom surface of the material receiving trough body 10 and are fixed with lower support blocks 12;
[0025] A middle horizontal partition plate 20 is installed in the middle of the material receiving trough body 10. A central through groove 21 is formed in the middle of the middle horizontal partition plate 20. A filter mesh plate 22 is fixed on the top surface of the middle horizontal partition plate 20 and covers the central through groove 21;
[0026] Lateral moving mechanisms 30 are installed on the top surfaces of the front and rear side plates of the material receiving trough body 10. The bottom surfaces of the moving blocks 310 of the two lateral moving mechanisms 30 are fixed with the same vertical moving plate 40. The vertical moving plate 40 is located in the material receiving trough body 10. The front and rear wall surfaces of the vertical moving plate 40 are close to the inner side walls of the front and rear side plates of the material receiving trough body 10. A bottom scraper 41 is fixed at the bottom of the vertical moving plate 40. The bottom surface of the bottom scraper 41 is closely attached to the top surface of the filter mesh plate 22;
[0027] The lateral movement mechanism 30 includes connection seats at the left part and the right end on the top surface of the horizontal support plate 26 fixed to the front or the rear. The hinge shaft fixed in the middle of the transmission sprocket 31 is movably connected to the corresponding connection seat through a bearing, and the transmission chain 32 is tensioned on two corresponding transmission sprockets 31;
[0028] In the middle of the top surface of the right horizontal support plate 26, a double-output shaft motor 33 is fixed. The two output shafts of the double-output shaft motor 33 are connected with extension rods 34 through couplings. The outer ends of the extension rods 34 are connected with one end of the hinge shaft of the corresponding transmission sprocket 31 extending out of the connection seat through couplings.
[0029] Further, both the front part and the rear part of the extension rod 34 are movably connected with support seats 350 through bearings, and the support seats 350 are fixed on the top surfaces of the corresponding horizontal support plates 26.
[0030] Further, horizontal guide rails 3 are fixed on the top surfaces of the front or rear horizontal support plates 26. A moving block 310 is fixed on the transmission chain 32. A sliding connection block 35 is fixed on the bottom surface of the moving block 310. The horizontal guide rail 3 is inserted into a chute formed on the bottom surface of the corresponding sliding connection block 35. The vertical moving plate 40 is fixed on the bottom surfaces of the two sliding connection blocks 35;
[0031] A transition connection seat 42 is fixed on the lower left side wall of the vertical moving plate 40, and a bottom scraping plate 41 is fixed on the left side wall of the transition connection seat 42.
[0032] Further, the bottom scraping plate 41 is a flexible scraping plate.
[0033] Further, support plates are fixed on the left parts of the top surfaces of the front and rear horizontal support plates 26. An upper fixing plate 50 is fixed on the top surfaces of the two support plates. A vertical baffle 51 is fixed on the left side wall of the upper fixing plate 50. The lower part of the vertical baffle 51 is inserted into the material receiving trough body 10. At least one pushing cylinder 52 is fixed on the top surface of the upper fixing plate. The bottom end of the push rod of the pushing cylinder 52 extends out of the bottom surface of the upper fixing plate and is fixed with a vertical connecting plate. A left vertical baffle 53 is fixed on the right side wall of the vertical connecting plate. The bottom surface of the left vertical baffle 53 is pressed against the top surface of the middle horizontal partition plate 20 and is located on the left side of the filter screen plate 22. The vertical through hole 23 is located on the left side of the left vertical baffle 53. The front and rear side walls of the left vertical baffle 53 correspond to the inner side walls of the front and rear wall plates of the material receiving trough body 10.
[0034] Furthermore, a vertical through hole 23 is formed in the middle horizontal partition plate 20 at the left side of the filter screen plate 22. At the bottom surface of the middle horizontal partition plate 20 at the right side edge of the vertical through hole 23, an inclined guide plate 24 is fixed. The front and rear side walls of the inclined guide plate 24 are fixed on the inner side walls of the front and rear two side plates of the material receiving trough body 10, and the bottom surface of the inclined guide plate 24 is fixed on the top surface of the bottom plate of the material receiving trough body 10. The inclined guide plate 24 extends obliquely to the left and downward;
[0035] A discharge through hole 13 is formed in the middle of the bottom plate of the material receiving trough body 10, and a waste discharge through hole 14 is formed in the bottom plate of the material receiving trough body 10 at the left side of the inclined guide plate 24.
[0036] Furthermore, a first material receiving head 1 is fixed on the bottom surface of the bottom plate of the material receiving trough body 10 around the discharge through hole 13, and a second material receiving head 2 is fixed on the bottom surface of the bottom plate of the material receiving trough body 10 around the waste discharge through hole 14.
[0037] Furthermore, vertical side plates 25 are welded and fixed to the four side edges of the top surface of the middle horizontal partition plate 20. The side walls of two adjacent vertical side plates 25 are welded and fixed. A horizontal support plate 26 is fixed on the outer side wall of the top end of each vertical side plate 25. The horizontal support plate 26 is fixed on the top surface of the corresponding side plate of the material receiving trough body 10, and the outer side wall of the vertical side plate 25 is closely attached to the inner side wall of the corresponding side plate of the material receiving trough body 10.
[0038] Furthermore, vertical guide grooves are formed on the inner side walls of the front and rear wall plates of the material receiving trough body 10 opposite to the front and rear side walls of the left vertical baffle 53. The front part and the rear part of the left vertical baffle 53 are inserted into the corresponding vertical guide grooves. Side elastic sealing layers are fixed on the inner side walls of the vertical guide grooves. The front part and the rear part of the left vertical baffle 53 are inserted into the corresponding vertical guide grooves, and the side walls of the front part and the rear part of the left vertical baffle 53 are closely attached to the corresponding side elastic sealing layers.
[0039] Furthermore, a plurality of left guide sliders 55 are fixed on the left side wall of the upper connection block fixed to the top of the vertical connection plate. A plurality of vertical guide rails are fixed on the right side wall of the vertical baffle 51. The left guide sliders 55 are inserted into the corresponding vertical guide rails.
[0040] When this embodiment is in use, the slurry to be filtered is poured onto the filter screen plate 22. The left vertical baffle 53 blocks its leftward flow, so that the slurry is filtered through the filter screen plate 22. The filtered slurry enters the material receiving trough body 10 and flows out to the subsequent equipment through the connecting pipe connected to the first material receiving head 1, and then can be used;
[0041] Then, retract the push rod of the cylinder 52 to lift the left vertical baffle 53. Then, operate the double-output shaft motor 33 to move the bottom scraper 41 from right to left, pushing large particle substances such as filter residues and impurities on the filter screen plate 22 to the left and guiding them along the inclined guide plate 24 into the left part of the material receiving trough 10, and entering the waste material receiving bucket placed below through the second material receiving head 2 for collection, which is very convenient.
[0042] It does not require manual operation, greatly reducing the manual labor intensity.
Claims
1. A mid-bottom plate slurry impurity removal and filtration device, comprising a material receiving tank body (10), characterized in that: A plurality of vertical support legs (11) are fixed on the outer side wall of the material receiving tank body (10), and the bottom end of the vertical support leg (11) extends out of the bottom surface of the material receiving tank body (10) and is fixed with a lower support block (12); An intermediate horizontal partition plate (20) is installed in the middle of the material receiving tank body (10). A central through groove (21) is formed in the middle of the intermediate horizontal partition plate (20). A filter screen plate (22) is fixed on the top surface of the intermediate horizontal partition plate (20) and covers the central through groove (21); Transverse moving mechanisms (30) are installed at the top surfaces of the front and rear side plates of the material receiving tank body (10). The bottom surfaces of the moving blocks (310) of the two transverse moving mechanisms (30) are fixed with the same vertical moving plate (40). The vertical moving plate (40) is located in the material receiving tank body (10). The front and rear wall surfaces of the vertical moving plate (40) are close to the inner side walls of the front and rear side plates of the material receiving tank body (10). A bottom scraping plate (41) is fixed at the bottom of the vertical moving plate (40), and the bottom surface of the bottom scraping plate (41) is closely attached to the top surface of the filter screen plate (22); A vertical through hole (23) is formed in the intermediate horizontal partition plate (20) at the left side of the filter screen plate (22). An inclined guide plate (24) is fixed to the bottom surface of the intermediate horizontal partition plate (20) at the right side edge of the vertical through hole (23). The front and rear side walls of the inclined guide plate (24) are fixed to the inner side walls of the front and rear side plates of the material receiving tank body (10). The bottom surface of the inclined guide plate (24) is fixed to the top surface of the bottom plate of the material receiving tank body (10). The inclined guide plate (24) extends obliquely leftward and downward; A discharge through hole (13) is formed in the middle of the bottom plate of the material receiving tank body (10). A waste discharge through hole (14) is formed in the bottom plate of the material receiving tank body (10) at the left side of the inclined guide plate (24).
2. The impurity removal and filtration device for medium bottom plate slurry according to claim 1, characterized in that: A first material receiving head (1) is fixed to the bottom surface of the bottom plate of the material receiving tank body (10) around the discharge through hole (13). A second material receiving head (2) is fixed to the bottom surface of the bottom plate of the material receiving tank body (10) around the waste discharge through hole (14).
3. The impurity removal and filtration device for the middle bottom plate slurry according to claim 1, characterized in that: Vertical side plates (25) are welded and fixed to the four edges of the top surface of the intermediate horizontal partition plate (20). The side walls of adjacent two vertical side plates (25) are welded and fixed. A horizontal support plate (26) is fixed to the outer side wall of the top end of each vertical side plate (25). The horizontal support plate (26) is fixed to the top surface of the corresponding side plate of the material receiving tank body (10). The outer side wall of the vertical side plate (25) is closely attached to the inner side wall of the corresponding side plate of the material receiving tank body (10).
4. The impurity removal and filtration device for the middle bottom plate slurry according to claim 3, characterized in that: The transverse moving mechanism (30) includes connecting seats at the left part and the right end of the top surface of the horizontal support plate (26) fixed at the front or rear part. The hinge shaft fixed in the middle of the driving sprocket (31) is movably connected to the corresponding connecting seat through a bearing. A driving chain (32) is tensioned on the two corresponding driving sprockets (31); In the middle of the top surface of the horizontal support plate (26) on the right side, a double-output shaft motor (33) is fixed. The two output shafts of the double-output shaft motor (33) are connected with extension rods (34) through couplings. The outer ends of the extension rods (34) are connected with one ends of the articulated shafts of the corresponding drive sprockets (31) extending out of the connecting seat through couplings.
5. The impurity removal and filtration device for the middle bottom plate slurry according to claim 4, characterized in that: Both the front and rear parts of the extension rod (34) are movably connected with support seats (350) through bearings, and the support seats (350) are fixed on the top surfaces of the corresponding horizontal support plates (26).
6. The impurity removal and filtration device for the middle bottom plate slurry according to claim 4, characterized in that: On the top surfaces of the front or rear horizontal support plates (26), transverse guide rails (3) are fixed. A moving block (310) is fixed on the drive chain (32). A sliding connection block (35) is fixed on the bottom surface of the moving block (310). The transverse guide rail (3) is inserted into a chute formed on the bottom surface of the corresponding sliding connection block (35). A vertical moving plate (40) is fixed on the bottom surfaces of the two sliding connection blocks (35); On the lower left side wall of the vertical moving plate (40), a transition connection seat (42) is fixed. On the left side wall of the transition connection seat (42), a bottom scraper (41) is fixed.
7. The impurity removal and filtration device for the middle bottom plate slurry according to claim 6, characterized in that: The bottom scraper (41) is a flexible scraper.
8. The impurity removal and filtration device for the middle bottom plate slurry according to claim 4, wherein: On the left parts of the top surfaces of the front and rear horizontal support plates (26), support plates are fixed. An upper fixing plate (50) is fixed on the top surfaces of the two support plates. A vertical baffle (51) is fixed on the left side wall of the upper fixing plate (50). The lower part of the vertical baffle (51) is inserted into the material receiving trough body (10). At least one push cylinder (52) is fixed on the top surface of the upper fixing plate. The bottom end of the push rod of the push cylinder (52) extends out of the bottom surface of the upper fixing plate and is fixed with a vertical connecting plate. A left vertical baffle (53) is fixed on the right side wall of the vertical connecting plate. The bottom surface of the left vertical baffle (53) is pressed against the top surface of the middle horizontal partition plate (20) and is located on the left side of the filter mesh plate (22). A vertical through hole (23) is on the left side of the left vertical baffle (53). The front and rear side walls of the left vertical baffle (53) correspond to the inner side walls of the front and rear wall plates of the material receiving trough body (10).
Citation Information
Cited By
Efficient impurity removing and filtering device for non-woven fabric paper pulp
CN224513926U