A slurry splash prevention baffle device

By designing a baffle device that prevents slurry splashing, consisting of a baffle body, adjusting plate, locking rod, positioning rod, and flipping plate, the problem of difficulty in adjusting existing baffle devices has been solved. This allows for flexible adjustment of the baffle angle and area, improving the anti-splashing effect and protection flexibility.

CN224506966UActive Publication Date: 2026-07-17YUQIANG NEW MATERIALS (HUBEI) CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
YUQIANG NEW MATERIALS (HUBEI) CO LTD
Filing Date
2025-07-02
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Existing splash guard devices have an integrated structure, making it difficult to adjust the protective angle and direction of the guard according to actual needs, which limits their use.

Method used

A slurry splash prevention baffle device was designed, comprising a baffle body, an adjusting plate, a locking rod, a positioning rod, and a flipping plate. The baffle angle and area can be flexibly adjusted through the cooperation of springs and bearing seats.

Benefits of technology

It improves the splash-proof effect of the baffle, enhances the flexibility of protection, and reduces slurry loss.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN224506966U_ABST
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Abstract

This utility model discloses a baffle device for preventing slurry splashing, relating to the field of baffle technology. The utility model includes a baffle body and an adjusting plate distributed on one side of the baffle body; it also includes: a first spring fixedly connected to the inner side of one end of the adjusting plate, and a locking rod fixedly connected to the top of the first spring; a first auxiliary sliding plate sleeved on the outer side of one end of the locking rod; a locking hole opened on one side of the top of the baffle body; a retraction groove opened on the inner side of one end of the baffle body, and a second spring fixedly connected to the inner side of the retraction groove; and a positioning rod fixedly connected to the other end of the second spring. Through the structure of the baffle body, adjusting plate, locking rod, and positioning rod, this utility model allows for convenient adjustment of the adjusting plate angle according to actual usage needs, thereby facilitating the adjustment of the adjusting plate to a suitable angle, improving the baffle's anti-splashing effect, and resulting in higher overall practicality and better anti-splashing performance.
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Description

Technical Field

[0001] This utility model belongs to the field of baffle technology, and in particular relates to a baffle device for preventing slurry splashing. Background Technology

[0002] In the fields of chemical industry, food processing, and building materials production, splashing is likely to occur during the mixing and transportation of slurry. In order to effectively prevent slurry waste, baffle devices are needed to prevent slurry splashing.

[0003] Anti-splash baffles are one of the protective devices during slurry mixing. They play a protective role in preventing slurry from splashing during the mixing process. However, most protective baffles are currently of an integrated structure, which results in poor flexibility. That is, it is difficult to adjust the protective angle and direction of the baffle according to the actual use needs, thus limiting the use of the baffle. Utility Model Content

[0004] In view of the above-mentioned shortcomings of the existing technology, the present invention provides a slurry splashing baffle device, which can effectively solve the problems of the existing technology.

[0005] To solve the above-mentioned technical problems, this utility model is achieved through the following technical solution:

[0006] This utility model is a baffle device for preventing slurry splashing, including a baffle body and an adjustment plate distributed on one side of the baffle body;

[0007] It also includes: a first spring fixedly connected to the inner side of one end of the adjusting plate, and a locking rod fixedly connected to the top of the first spring; a first auxiliary sliding plate sleeved on the outer side of one end of the locking rod; a locking hole opened on one side of the top of the baffle body; a retraction groove opened on the inner side of one end of the baffle body, and a second spring fixedly connected to the inner side of the retraction groove; a positioning rod fixedly connected to the other end of the second spring, and a second auxiliary sliding plate sleeved on the outer side of one end of the positioning rod; and a toggle block fixedly provided on the outer surface of the second auxiliary sliding plate.

[0008] Furthermore, a positioning hole is provided at one end of the adjusting plate away from the locking rod, a first flip plate is connected to one end surface of the adjusting plate, and a protrusion is fixed on one end surface of the first flip plate, and a bearing seat is connected to one side of the first flip plate.

[0009] Furthermore, a second flip plate is distributed below the first flip plate, and a groove is formed on one end surface of the second flip plate.

[0010] Furthermore, the locking rod is slidably connected to the adjusting plate via the first spring, and the locking rod is symmetrically distributed along the transverse centerline of the adjusting plate.

[0011] Furthermore, the lock holes are equidistantly distributed along one side of the top of the baffle body, and the inner diameter of the lock holes is adapted to the outer diameter of the lock rod.

[0012] Furthermore, the positioning rod is slidably connected to the baffle body via a second spring, and the positioning rod is symmetrically distributed on both sides of the baffle body.

[0013] Furthermore, the inner diameter of the positioning hole is adapted to the outer diameter of the positioning rod, and the positioning holes are symmetrically distributed along the transverse centerline of the adjusting plate.

[0014] Furthermore, the first flip plate is rotatably connected to the adjusting plate via a bearing seat, and the first flip plate is symmetrically distributed on both sides of the baffle body.

[0015] Furthermore, the protrusions are equidistantly distributed along one end surface of the first flip plate, and the outer diameter of the protrusions matches the inner diameter of the groove.

[0016] Furthermore, the grooves are equidistantly distributed along one end surface of the second flip plate, and the number of grooves is the same as the number of protrusions.

[0017] This utility model has the following beneficial effects:

[0018] 1. This utility model, through its baffle body, adjusting plate, locking rod, and positioning rod, allows for easy adjustment of the plate angle according to actual usage needs. This facilitates adjusting the plate to a suitable angle based on actual usage requirements, improving the baffle's anti-splash effect and enhancing its overall practicality and anti-splash performance.

[0019] 2. This utility model, through the structure of the flip plate, protrusion and groove, can facilitate the subsequent extension of the protective area of ​​the adjustment plate, thereby better protecting the slurry and effectively preventing the slurry from splashing during subsequent processing and other treatments, which would lead to increased slurry loss. Attached Figure Description

[0020] To more clearly illustrate the technical solutions of the embodiments of this utility model, the accompanying drawings used in the description of the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0021] Figure 1 This is a schematic diagram of the present invention;

[0022] Figure 2 This is a schematic cross-sectional view of the baffle body of this utility model;

[0023] Figure 3 This is a side view of the main body of the baffle of this utility model;

[0024] Figure 4 This is a schematic cross-sectional view of the adjusting plate of this utility model;

[0025] Figure 5 This is a side view of the adjustment plate of this utility model;

[0026] Figure 6 This is a side view of the first flip plate of this utility model;

[0027] Figure 7 This is a side view of the second flip plate of this utility model.

[0028] The attached diagram lists the components represented by each number as follows:

[0029] 1. Baffle body; 2. Adjusting plate; 3. First spring; 4. Locking rod; 5. First auxiliary sliding plate; 6. Locking hole; 7. Retraction groove; 8. Second spring; 9. Positioning rod; 10. Second auxiliary sliding plate; 11. Toggle block; 12. Positioning hole; 13. First flip plate; 14. Protrusion; 15. Bearing seat; 16. Second flip plate; 17. Groove. Detailed Implementation

[0030] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present invention.

[0031] Please see Figure 1-7 As shown, this utility model is a baffle device for preventing slurry splashing, including a baffle body 1 and an adjusting plate 2 distributed on one side of the baffle body 1;

[0032] It also includes: a first spring 3 is fixedly connected to the inner side of one end of the adjusting plate 2, and a locking rod 4 is fixedly connected to the top of the first spring 3. The two ends of the first spring 3 are respectively fixedly connected to the bottom of the locking rod 4 and the inner side wall of the adjusting plate 2. A first auxiliary sliding plate 5 is sleeved on the outer side of one end of the locking rod 4. A locking hole 6 is opened on one side of the top of the baffle body 1. The locking holes 6 are equidistantly distributed along the center point of one side of the top of the baffle body 1, and multiple locking holes 6 are distributed in a semi-circular pattern. A retraction groove 7 is opened on the inner side of one end of the baffle body 1, and a second spring 8 is fixedly connected to the inner side of the retraction groove 7. The two ends of the second spring 8 are respectively fixedly connected to the bottom of the positioning rod 9 and the inner side wall of the baffle body 1. The other end of the second spring 8 is fixedly connected to the positioning rod 9, and a second auxiliary sliding plate 10 is sleeved on the outer side of one end of the positioning rod 9. A toggle block 11 is fixedly provided on the outer surface of the second auxiliary sliding plate 10.

[0033] During operation, the lever 11 is first activated. Lever 11 causes the second auxiliary slide plate 10 to move longitudinally within the retraction groove 7. This longitudinal movement of the second auxiliary slide plate 10 causes the positioning rod 9 to also move longitudinally, retracting it to the inside of the retraction groove 7. Simultaneously, the second spring 8 deforms under the pressure of the positioning rod 9, generating a reverse force. The adjusting plate 2 then engages with the baffle body 1 through an opening on one side. At this point, the positioning hole 12 moves directly above the positioning rod 9. The longitudinal pressure applied to the lever 11 is then released. The reverse force generated by the deformation of the second spring 8 pushes the positioning rod 9 in the opposite direction, inserting one end of the positioning rod 9 into the inside of the positioning hole 12, thus connecting the adjusting plate 2 to the baffle body 1. When the angle of the adjusting plate 2 needs to be adjusted, the locking rod 4 is pressed longitudinally. At this time, the locking rod 4 moves longitudinally away from the inside of the lock hole 6 and retracts to the inside of one end of the adjusting plate 2. At the same time, the longitudinal movement of the locking rod 4 will press down the first spring 3, realizing the deformation of the first spring 3 and generating a reverse force. Then, when both locking rods 4 are away from the inside of the lock hole 6, the adjusting plate 2 is moved. The positioning rod 9 can be used to make it rotate along the baffle body 1. After the adjustment is completed, the locking rod 4 moves back to the bottom of the other lock hole 6. Then, the reverse force generated by the deformation of the first spring 3 pushes the locking rod 4 in the opposite direction, thereby putting one end of the locking rod 4 back into the inside of the two lock holes 6, realizing the limiting treatment of the adjusting plate 2. The first auxiliary sliding plate 5 can improve the stability of the locking rod 4 during the longitudinal movement.

[0034] The adjusting plate 2 has a positioning hole 12 at one end away from the locking rod 4. The size of the positioning hole 12 is adapted to the size of the positioning rod 9, and the positioning holes 12 are symmetrically distributed on the inner sidewalls of both ends of the adjusting plate 2. A first flip plate 13 is connected to one end surface of the adjusting plate 2, and a protrusion 14 is fixed on one end surface of the first flip plate 13. A bearing seat 15 is connected to one side of the first flip plate 13. The first flip plate 13 is rotatably connected to the adjusting plate 2 through the bearing seat 15. When the first flip plate 13 is installed, a cross coupling, a steel ball and annular groove combination coupling and other mechanisms are used to restrict the circumferential degree of freedom of the first flip plate 13, and the rigid constraint directly prevents the self-rotation.

[0035] During operation, the first flip plate 13 is turned, and the first flip plate 13 will rotate along the adjusting plate 2 through the bearing seat 15. The rotation of the first flip plate 13 will then extend the area of ​​the adjusting plate 2, making it easier to use the adjusting plate 2 to prevent splashing of the slurry. Conversely, when the first flip plate 13 is stored, the first flip plate 13 rotates in the opposite direction, and then the second flip plate 16 rotates to one side of the first flip plate 13, so that the protrusion 14 and the groove 17 can be engaged and connected.

[0036] A second flip plate 16 is distributed below the first flip plate 13, and a groove 17 is provided on one end surface of the second flip plate 16. The grooves 17 are evenly distributed on the recessed surface of one end of the second flip plate 16, and the size of the grooves 17 is adapted to the size of the protrusions 14.

[0037] During operation, since the second flip plate 16 is also rotatably connected to the adjusting plate 2 through the bearing seat 15, when the second flip plate 16 rotates outward along the adjusting plate 2, it is convenient to extend the area of ​​the adjusting plate 2. Conversely, when the second flip plate 16 and the first flip plate 13 are engaged with each other, the protrusion 14 will be input into the inner side of the groove 17 to achieve the engagement connection between the two.

[0038] The locking rod 4 is slidably connected to the adjusting plate 2 via the first spring 3, and the locking rod 4 is symmetrically distributed along the transverse center line of the adjusting plate 2;

[0039] During operation, the reverse force generated by the deformation of the first spring 3 will push the locking rod 4 in the opposite direction, thereby causing the locking rod 4 to move longitudinally inside the adjusting plate 2, which facilitates the subsequent input of one end of the locking rod 4 into the inside of the lock hole 6.

[0040] The lock holes 6 are equidistantly distributed along one side of the top of the baffle body 1, and the inner diameter of the lock holes 6 is adapted to the outer diameter of the lock rod 4;

[0041] During operation, the size of the lock hole 6 is adapted to the lock rod 4, so when one end of the lock rod 4 is inserted into the inside of the lock hole 6, it is convenient to subsequently limit the adjustment plate 2.

[0042] The positioning rod 9 is slidably connected to the baffle body 1 via the second spring 8, and the positioning rod 9 is symmetrically distributed on both sides of the baffle body 1;

[0043] During operation, the reverse force generated by the deformation of the second spring 8 will push the positioning rod 9 in the opposite direction, thereby inputting one end of the positioning rod 9 into the inner side of the positioning hole 12, which facilitates the subsequent connection between the adjusting plate 2 and the baffle body 1.

[0044] The inner diameter of the positioning hole 12 is adapted to the outer diameter of the positioning rod 9, and the positioning holes 12 are symmetrically distributed along the transverse center line of the adjusting plate 2;

[0045] During operation, when the positioning rod 9 is inserted into the inside of the positioning hole 12, it facilitates the quick connection between the adjustment plate 2 and the baffle body 1, and also facilitates subsequent disassembly.

[0046] The first flip plate 13 is rotatably connected to the adjusting plate 2 through the bearing seat 15, and the first flip plate 13 is symmetrically distributed on both sides of the baffle body 1.

[0047] During operation, since the first flip plate 13 is rotatably connected to the adjusting plate 2 through the bearing seat 15, it will rotate along the adjusting plate 2 when the first flip plate 13 moves, which makes it convenient to use the first flip plate 13 to increase the anti-splash area of ​​the adjusting plate 2.

[0048] The protrusions 14 are evenly distributed along one end surface of the first flip plate 13, and the outer diameter of the protrusions 14 is adapted to the inner diameter of the groove 17.

[0049] During operation, when the first flip plate 13 rotates around the adjusting plate 2 via the bearing seat 15, it will drive the protrusion 14 to move accordingly. Then the protrusion 14 is fed into the inner side of the groove 17 to achieve the engagement connection between the two.

[0050] The grooves 17 are evenly distributed along one end surface of the second flip plate 16, and the number of grooves 17 is the same as the number of protrusions 14;

[0051] During operation, since the number of grooves 17 is the same as the number of protrusions 14 and their sizes are compatible, when the first flip plate 13 and the second flip plate 16 engage with each other, the protrusions 14 will be fed into the inside of the grooves 17, thus achieving a stable engagement connection between the two flip plates.

[0052] Working principle: First, the lever 11 is moved, which drives the second auxiliary slide plate 10 to move longitudinally and causes the positioning rod 9 to retract into the retraction groove 7. At the same time, the second spring 8 deforms and generates a reverse force, which then engages the adjusting plate 2 with the baffle body 1, moving the positioning hole 12 directly above the positioning rod 9. Then, the longitudinal pressure applied to the lever 11 is released, and the second spring 8 pushes the positioning rod 9 in the opposite direction, inserting one end of the positioning rod 9 into the inside of the positioning hole 12, thus connecting the adjusting plate 2 with the baffle body 1. When the angle of the adjusting plate 2 needs to be adjusted, the locking rod 4 is pressed longitudinally. At this time, the locking rod 4 moves longitudinally away from the inside of the locking hole 6 and retracts into the adjusting plate 2, pressing down the first spring 3 and causing it to deform. A reverse force is generated. When both locking rods 4 are disengaged from the inner side of the lock hole 6, the adjusting plate 2 is moved to rotate along the baffle body 1. After adjustment, the locking rod 4 moves back to the bottom of the other lock hole 6. Then the first spring 3 pushes the locking rod 4 in the opposite direction, thereby re-inputting one end of the locking rod 4 into the inner side of the two lock holes 6, thus limiting the adjustment plate 2. When it is necessary to extend the area of ​​the adjustment plate 2, the first flip plate 13 rotates along the adjustment plate 2, and the rotation of the first flip plate 13 is used to extend the area of ​​the adjustment plate 2. Conversely, when the first flip plate 13 is to be stored, the first flip plate 13 rotates in the opposite direction, and then the second flip plate 16 rotates to one side of the first flip plate 13, so that the protrusion 14 and the groove 17 are engaged and connected.

[0053] The above are merely preferred embodiments of the present utility model and do not limit the present utility model. Any modifications, equivalent substitutions, or improvements made to the technical solutions described in the foregoing embodiments, or to some of the technical features, shall fall within the protection scope of the present utility model.

Claims

1. A baffle device for preventing slurry splashing, comprising a baffle body (1) and an adjusting plate (2) distributed on one side of the baffle body (1); characterized in that Also includes: A first spring (3) is fixedly connected to the inner side of one end of the adjusting plate (2), and a locking rod (4) is fixedly connected to the top of the first spring (3). A first auxiliary sliding plate (5) is sleeved on the outer side of one end of the locking rod (4). A locking hole (6) is opened on one side of the top of the baffle body (1). A retraction groove (7) is opened on the inner side of one end of the baffle body (1), and a second spring (8) is fixedly connected to the inner side of the retraction groove (7). A positioning rod (9) is fixedly connected to the other end of the second spring (8), and a second auxiliary sliding plate (10) is sleeved on the outer side of one end of the positioning rod (9). A toggle block (11) is fixedly provided on the outer surface of the second auxiliary sliding plate (10).

2. A splash guard device according to claim 1, wherein, The adjusting plate (2) has a positioning hole (12) at one end away from the locking rod (4). A first flip plate (13) is connected to one end surface of the adjusting plate (2), and a protrusion (14) is fixed to one end surface of the first flip plate (13). A bearing seat (15) is connected to one side of the first flip plate (13).

3. A splash guard device according to claim 2, wherein, A second flip plate (16) is distributed below the first flip plate (13), and a groove (17) is provided on one end surface of the second flip plate (16).

4. The device of claim 1, wherein, The locking rod (4) is slidably connected to the adjusting plate (2) via the first spring (3), and the locking rod (4) is symmetrically distributed along the transverse center line of the adjusting plate (2).

5. The device of claim 1, wherein, The lock holes (6) are equidistantly distributed along one side of the top of the baffle body (1), and the inner diameter of the lock holes (6) is adapted to the outer diameter of the lock rod (4).

6. The device of claim 1, wherein, The positioning rod (9) is slidably connected to the baffle body (1) via the second spring (8), and the positioning rod (9) is symmetrically distributed on both sides of the baffle body (1).

7. The device of claim 2, wherein, The inner diameter of the positioning hole (12) is adapted to the outer diameter of the positioning rod (9), and the positioning hole (12) is symmetrically distributed along the transverse center line of the adjusting plate (2).

8. The splash guard device of claim 2, wherein, The first flip plate (13) is rotatably connected to the adjusting plate (2) through the bearing seat (15), and the first flip plate (13) is symmetrically distributed on both sides of the baffle body (1).

9. A slurry splash prevention baffle device according to claim 3, characterized in that, The protrusions (14) are equidistantly distributed along one end surface of the first flip plate (13), and the outer diameter of the protrusions (14) is matched with the inner diameter of the groove (17).

10. The splash guard device of claim 3, wherein, The grooves (17) are equidistantly distributed along one end surface of the second flip plate (16), and the number of grooves (17) is the same as the number of protrusions (14).