Spiral mixing structure of battery electrolyte
By introducing connecting columns, annular grooves, and return springs into the spiral hybrid structure, the end caps can be quickly disassembled, solving the problem of low cleaning efficiency of spiral blocks in traditional spiral hybrid structures and improving maintenance efficiency.
Patent Information
- Application Number
- CN202520066873.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-08
- Publication Date
- 2025-12-12
- Estimated Expiration
- 2035-01-08
AI Technical Summary
The end caps of traditional spiral hybrid structures are installed with multiple bolts, resulting in low efficiency, time-consuming and labor-intensive cleaning and maintenance of the spiral blocks.
The design incorporates connecting posts and ring grooves, along with a return spring and swivel structure, enabling quick disassembly of the end caps and simplifying the cleaning process of the spiral blocks.
This improved the cleaning and maintenance efficiency of the spiral blocks, reduced time and physical labor consumption, and enhanced maintenance efficiency.
Smart Images

Figure CN223654796U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a liquid mixing device, concretely to a spiral mixing structure of battery electrolyte belongs to liquid mixing device technical field. BACKGROUND
[0002] The battery electrolyte needs to mix different liquid electrolyte raw materials in the production process, generally will mix through the spiral mixing structure, and the spiral mixing structure mainly includes the connecting cylinder, the spiral block in the connecting cylinder and the end cover at the end of the connecting cylinder, and the different liquid raw materials will be repeatedly cut and mixed through the spiral block in the flowing process in the connecting cylinder, since the surface of the spiral block will be attached with certain dirt in the using process, therefore, in order to guarantee the mixing effect, it is necessary to clean the spiral block regularly.
[0003] However, the end cover on the traditional spiral mixing structure is installed at the end of the connecting cylinder through multiple bolts, so a large amount of time is needed to repeatedly twist the screw to realize the disassembly and assembly of the end cover every time the spiral block is cleaned, so not only a certain amount of time is wasted, but also a large amount of physical strength is consumed, thereby leading to the low efficiency of the cleaning and maintenance of the spiral block. UTILITY MODEL CONTENTS
[0004] The utility model aims at solving the above problems and provides a spiral mixing structure of battery electrolyte, which can realize the quick disassembly and assembly of the end cover, thereby facilitating the cleaning and maintenance of the spiral block.
[0005] The utility model realizes the above-mentioned purpose through the following technical scheme, a spiral mixing structure of battery electrolyte, including connecting cylinder, one end of the connecting cylinder is installed with end cover through fixed structure, the inside of the connecting cylinder is equipped with spiral block, the fixed structure includes connecting column and ring groove, one end of the connecting cylinder is fixedly connected with four connecting columns, the connecting column is equipped with ring groove, the end cover is rotatably connected with first rotary ring, four first clamping blocks are fixedly connected on the first rotary ring, the first clamping block is clamped between the adjacent ring grooves, four clamping grooves are equipped on the first rotary ring, one side of the clamping groove is equipped with connecting seat, the connecting seat is fixedly connected on the end cover, the connecting seat is slidably connected with slide rod, one end of the slide rod is fixedly connected with second clamping block, the second clamping block is clamped between the adjacent clamping grooves, the outside of the slide rod is equipped with reset spring, four stop blocks are fixedly connected on the first rotary ring, the end cover is equipped with push structure.
[0006] Preferably, one end of the reset spring abuts against the connecting seat, and the other end of the reset spring abuts against the second clamping block.
[0007] Preferably, the cross section of one end of the second clamping block is in trapezoidal structure, and the cross section of one end of the connecting column is in trapezoidal structure.
[0008] Preferably, the four connecting columns are arranged in a circumferential array about the middle of the first rotating ring, and the four clamping grooves are arranged in a circumferential array about the middle of the first rotating ring.
[0009] Preferably, the pushing structure comprises a second rotating ring and a handle, the second rotating ring is rotatably connected to the end cover, four openings are arranged on the second rotating ring, four recesses are arranged on the second rotating ring, one end of the second clamping block extends into the interior of the adjacent recess and abuts against the second rotating ring, and the handle is fixedly connected to the second rotating ring.
[0010] Preferably, the cross section of the recess is in a trapezoidal structure, and the stop block is located in the interior of the opening.
[0011] Preferably, a stop ring is fixedly connected to the interior of the connecting cylinder, the screw block is slidably connected to the connecting cylinder, one end of the screw block is fixedly connected with a first connecting ring, the other end of the screw block is fixedly connected with a second connecting ring, a compression ring is fixedly connected to the end cover, the first connecting ring abuts against the compression ring, and the second connecting ring abuts against the stop ring.
[0012] Preferably, four positioning blocks are fixedly connected to the stop ring, the positioning blocks are clamped with the second connecting ring, and the four positioning blocks are arranged in a circumferential array about the middle of the stop ring.
[0013] Preferably, a liquid inlet pipe is fixedly connected to the end cover, and a liquid outlet pipe is fixedly connected to one end of the connecting cylinder.
[0014] Preferably, a sealing gasket is clamped to one end of the connecting cylinder, and the sealing gasket abuts against the end cover.
[0015] The beneficial effects of the utility model are as follows: when the screw block needs to be cleaned, the four second clamping blocks can be moved away from the clamping grooves simultaneously through the pushing structure, the reset spring is contracted, the first rotating ring can be rotated when the four second clamping blocks are not clamped with the clamping grooves, the four first clamping blocks are moved when the first rotating ring is rotated, the end cover can be moved to separate the four connecting columns from the end cover when the first clamping blocks are not clamped with the ring grooves, the end cover can be quickly disassembled at this time, the screw block is not blocked after the end cover is disassembled, the screw block can be taken out from the interior of the connecting cylinder, the screw block can be quickly disassembled, and the efficiency of cleaning and maintenance of the screw block is improved. BRIEF DESCRIPTION OF DRAWINGS
[0016] Figure 1 It is a whole structure schematic view of the utility model;
[0017] Figure 2 It is Figure 1 An enlarged schematic view of A part shown in the figure;
[0018] Figure 3 The connecting structure schematic diagram of the connecting barrel and the screw block of the utility model is shown in the figure;
[0019] Figure 4 The connecting structure schematic diagram of the connecting barrel and the screw block of the utility model is shown in the figure; Figure 3 The B part enlarged schematic diagram shown in the figure;
[0020] Figure 5 The connecting structure schematic diagram of the connecting barrel and the screw block of the utility model is shown in the figure; Figure 3 The C part enlarged schematic diagram shown in the figure;
[0021] Figure 6 The connecting structure schematic diagram of the first rotary ring and the clamping groove of the utility model is shown in the figure.
[0022] In the figure: 1, connecting barrel; 2, end cover; 3, fixed structure; 301, connecting column; 302, ring groove; 303, first rotary ring; 304, first clamping block; 305, clamping groove; 306, connecting seat; 307, sliding rod; 308, second clamping block; 309, reset spring; 310, stop block; 4, pushing structure; 401, second rotary ring; 402, handle; 403, opening; 404, recess; 5, pressing ring; 6, first connecting ring; 7, screw block; 8, second connecting ring; 9, stop ring; 10, positioning block; 11, liquid inlet pipe; 12, liquid outlet pipe; 13, sealing gasket. DETAILED DESCRIPTION
[0023] The technical solutions in the embodiments of the utility model will be apparently and completely described in conjunction with the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by the person skilled in the art without creative labor fall within the protection scope of the utility model.
[0024] Please refer to Figure 1 , Figure 2 , Figure 3 , Figure 4 and Figure 6As shown in the battery electrolyte spiral mixing structure, a connecting barrel 1 is provided with an end cover 2 at one end through a fixing structure 3, a spiral block 7 is arranged in the connecting barrel 1, the fixing structure 3 comprises a connecting column 301 and a ring groove 302, four connecting columns 301 are fixedly connected to one end of the connecting barrel 1, the ring groove 302 is arranged on the connecting column 301, a first rotating ring 303 is rotatably connected to the end cover 2, four first clamping blocks 304 are fixedly connected to the first rotating ring 303, the first clamping block 304 is clamped between the adjacent ring grooves 302, four clamping grooves 305 are arranged on the first rotating ring 303, a connecting seat 306 is arranged on one side of the clamping groove 305, the connecting seat 306 is fixedly connected to the end cover 2, a sliding rod 307 is slidably connected to the connecting seat 306, a second clamping block 308 is fixedly connected to one end of the sliding rod 307, the second clamping block 308 is clamped between the adjacent clamping grooves 305, a reset spring 309 is arranged outside the sliding rod 307, four stop blocks 310 are fixedly connected to the first rotating ring 303, a pushing structure 4 is arranged on the end cover 2, the four connecting columns 301 are arranged in a circumferential array about the middle part of the first rotating ring 303, and the four clamping grooves 305 are arranged in a circumferential array about the middle part of the first rotating ring 303.
[0025] As a technical optimization scheme of the utility model, one end of the reset spring 309 abuts against the connecting seat 306, the other end of the reset spring 309 abuts against the second clamping block 308, so that the second clamping block 308 can be clamped between the clamping grooves 305 automatically under the action of the reset spring 309.
[0026] As a technical optimization scheme of the utility model, as shown in Figure 2 and Figure 4 , the cross section of one end of the second clamping block 308 is a trapezoidal structure, and the cross section of one end of the connecting column 301 is a trapezoidal structure, so that the second clamping block 308 can play a guiding role when being clamped between the clamping grooves 305.
[0027] As a technical optimization scheme of the utility model, as shown in Figure 2 and Figure 4 , the pushing structure 4 comprises a second rotating ring 401 and a handle 402, the second rotating ring 401 is rotatably connected to the end cover 2, four openings 403 are arranged on the second rotating ring 401, four recesses 404 are arranged on the second rotating ring 401, one end of the second clamping block 308 extends into the adjacent recess 404 and abuts against the second rotating ring 401, and the handle 402 is fixedly connected to the second rotating ring 401, so that when the second rotating ring 401 is rotated, the four second clamping blocks 308 can move away from the clamping grooves 305 simultaneously.
[0028] As a technical optimization scheme of the utility model, as shown inFigure 2 As shown in the figure, the cross section of the groove 404 is trapezoidal structure, the stop block 310 is located inside the opening 403, so that the second clamping block 308 can be contacted during the rotation of the second rotating ring 401.
[0029] As a technical optimization scheme of the utility model, as shown in the figure, Figure 3 , Figure 4 and Figure 5 The inside of the connecting barrel 1 is fixedly connected with a stop ring 9, the spiral block 7 is slidingly connected to the connecting barrel 1, one end of the spiral block 7 is fixedly connected with a first connecting ring 6, the other end of the spiral block 7 is fixedly connected with a second connecting ring 8, the end cover 2 is fixedly connected with a compression ring 5, the first connecting ring 6 is contacted with the compression ring 5, the second connecting ring 8 is contacted with the stop ring 9, so that the spiral block 7 can be fixed.
[0030] As a technical optimization scheme of the utility model, as shown in the figure, Figure 3 and Figure 5 The stop ring 9 is fixedly connected with four positioning blocks 10, the positioning blocks 10 are clamped between the second connecting ring 8, and the four positioning blocks 10 are arranged in a circumferential array about the middle part of the stop ring 9, so that the spiral block 7 can be positioned.
[0031] As a technical optimization scheme of the utility model, as shown in the figure, Figure 1 and Figure 3 The end cover 2 is fixedly connected with a liquid inlet pipe 11, and one end of the connecting barrel 1 is fixedly connected with a liquid outlet pipe 12, so that the liquid electrolyte raw material can enter the inside of the connecting barrel 1 from the liquid inlet pipe 11 and be discharged from the connecting barrel 1 through the liquid outlet pipe 12.
[0032] As a technical optimization scheme of the utility model, as shown in the figure, Figure 4 One end of the connecting barrel 1 is clamped with a sealing gasket 13, and the sealing gasket 13 is contacted with the end cover 2, so that the sealing property between the connecting barrel 1 and the end cover 2 can be improved.
[0033] The utility model discloses a quick -witted when using, electrolyte liquid raw materials will from the liquid inlet pipe 11 enter the inside of connecting cylinder 1, electrolyte liquid raw materials flow in the inside of connecting cylinder 1 in the process will be repeatedly cut to mix to it through spiral block 7, and the electrolyte liquid raw materials after mixing will be discharged from the liquid outlet pipe 12, when needing to clean spiral block 7, can rotate the second swivel 401 through handheld handle 402, and the second swivel 401 rotation will drive four recesses 404 movement, and the recess 404 is in the movement simultaneously, and the second clamping block 308 will move under the resistance of second swivel 401, and the reset spring 309 contracts, when four second clamping blocks 308 and the clamping groove 305 are not engaged, continue to push the second swivel 401, when the second swivel 401 and the stopper 310 are in resistance, and the stopper 310 will drive the first swivel 303 to rotate along with the continuous rotation of second swivel 401, and the first swivel 303 rotation will drive four first clamping blocks 304 movement, when the first clamping block 304 and the ring groove 302 are not engaged, and the movable end cover 2 can make four connecting columns 301 and end cover 2 separate, at this moment, the quick disassembly of end cover 2 is realized, and after end cover 2 is disassembled, the spiral block 7 is not resisted, then the spiral block 7 can be taken out from the inside of connecting cylinder 1, so that the quick disassembly of spiral block 7 is realized, thereby improve the efficiency of spiral block 7 cleaning overhaul.
[0034] It will be apparent to those skilled in the art that the present application is not limited to the details of the above-exemplified embodiments but can be implemented in other concrete forms without departing from the spirit or essential characteristics of the present application. Thus, the embodiments should be considered in all respects as illustrative and not restrictive, the scope of the present application being indicated by the appended claims rather than by the above description, and it is intended to be encompassing of all changes and modifications which fall within the meaning and scope of equivalents of the claims. Any reference signs in the claims should not be construed as limiting the claims to the figures in which the reference signs are used.
[0035] In addition, it should be understood that, although the present specification is described in terms of embodiments, not every embodiment contains only one independent technical solution, and the specification is described in this way only for the sake of clarity, and those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that those skilled in the art can understand.
Claims
1. A spiral mixing structure of a battery electrolyte, comprising a connecting cylinder (1), characterized in that: One end of the connecting barrel (1) is provided with an end cover (2) through a fixing structure (3), the inside of the connecting barrel (1) is provided with a spiral block (7), the fixing structure (3) comprises a connecting column (301) and a ring groove (302), one end of the connecting barrel (1) is fixedly connected with four connecting columns (301), the connecting column (301) is provided with a ring groove (302), the end cover (2) is rotatably connected with a first rotary ring (303), the first rotary ring (303) is fixedly connected with four first clamping blocks (304), the first clamping block (304) is clamped between the adjacent ring grooves (302), the first rotary ring (303) is provided with four clamping grooves (305), one side of the clamping groove (305) is provided with a connecting seat (306), the connecting seat (306) is fixedly connected to the end cover (2), the connecting seat (306) is slidably connected with a sliding rod (307), one end of the sliding rod (307) is fixedly connected with a second clamping block (308), the second clamping block (308) is clamped between the adjacent clamping grooves (305), the outside of the sliding rod (307) is sleeved with a reset spring (309), the first rotary ring (303) is fixedly connected with four stop blocks (310), the end cover (2) is provided with a pushing structure (4).
2. The spiral mixing structure of a battery electrolyte according to claim 1, characterized in that: One end of the reset spring (309) abuts against the connecting seat (306), the other end of the reset spring (309) abuts against the second clamping block (308).
3. The spiral mixing structure of a battery electrolyte according to claim 1, characterized in that: The section of one end of the second clamping block (308) is a trapezoidal structure, and the section of one end of the connecting column (301) is a trapezoidal structure.
4. The spiral mixing structure of a battery electrolyte according to claim 1, characterized in that: The four connecting columns (301) are circumferentially arrayed about the middle part of the first rotary ring (303), and the four clamping grooves (305) are circumferentially arrayed about the middle part of the first rotary ring (303).
5. The spiral mixing structure of a battery electrolyte according to claim 1, wherein: The pushing structure (4) comprises a second rotary ring (401) and a handle (402), the end cover (2) is rotatably connected with the second rotary ring (401), the second rotary ring (401) is provided with four openings (403), the second rotary ring (401) is provided with four recesses (404), one end of the second clamping block (308) extends into the inside of the adjacent recess (404) and abuts against the second rotary ring (401), and the second rotary ring (401) is fixedly connected with the handle (402).
6. The helical mixing structure of a battery electrolyte according to claim 5, wherein: The section of the recess (404) is a trapezoidal structure, and the stop block (310) is located in the inside of the opening (403).
7. The spiral mixing structure of a battery electrolyte according to claim 1, wherein: The inside of the connecting barrel (1) is fixedly connected with a stop ring (9), the spiral block (7) is slidably connected to the connecting barrel (1), one end of the spiral block (7) is fixedly connected with a first connecting ring (6), the other end of the spiral block (7) is fixedly connected with a second connecting ring (8), the end cover (2) is fixedly connected with a pressing ring (5), the first connecting ring (6) abuts against the pressing ring (5), and the second connecting ring (8) abuts against the stop ring (9).
8. The helical mixing structure of a battery electrolyte according to claim 7, wherein: Four positioning blocks (10) are fixedly connected on the blocking ring (9), and are clamped between the second connecting ring (8), and the four positioning blocks (10) are distributed in a circumferential array about the middle part of the blocking ring (9).
9. The spiral mixing structure of a battery electrolyte according to claim 1, wherein: A liquid inlet pipe (11) is fixedly connected on the end cover (2), and a liquid outlet pipe (12) is fixedly connected on one end of the connecting cylinder (1).
10. The spiral mixing structure of a battery electrolyte according to claim 1, wherein: A sealing gasket (13) is clamped on one end of the connecting cylinder (1), and the sealing gasket (13) abuts against the end cover (2).