Reaction kettle for processing antistatic agent
By setting a mixing mechanism outside the stirring shaft of the reactor, the problem of small contact area of the stirring structure in the prior art is solved, and efficient mixing of the static eliminator raw materials is achieved, especially sufficient stirring of the lower layer raw materials and uniform distribution of the upper layer raw materials.
Patent Information
- Application Number
- CN202422843848.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-20
- Publication Date
- 2025-10-21
- Estimated Expiration
- 2034-11-20
AI Technical Summary
The stirring structure of the existing reactor for processing static eliminators has a small contact area, resulting in low stirring efficiency. In particular, heavy materials are easily deposited at the bottom of the reactor, resulting in uneven mixing.
A mixing mechanism is arranged outside the stirring shaft of the reactor, including a hoop, an outer connecting plate, an L-shaped bending plate, a support ring, a shaft sleeve, a rear connecting rod, a bending plate and a C-shaped bottom plate. Through the cooperation of these components, the lower and upper layers of raw materials in the reactor are stirred to increase the contact area and stirring force.
It effectively improves the stirring and mixing efficiency of the static eliminator raw materials in the reactor, ensures sufficient stirring of the lower and upper layer raw materials, and improves the mixing uniformity.
Smart Images

Figure CN223454250U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of reactors, in particular to a reactor for processing static eliminators. Background Art
[0002] Antistatic agent is a chemical substance used to eliminate static electricity. It is widely used in various fields to prevent problems caused by static electricity. The surfactant in the antistatic agent can release static electricity and act as a lubricant to prevent friction and static electricity accumulation. When processing the antistatic agent, the ingredients will be added to the reactor according to the predetermined formula ratio, and the agitator will be turned on to fully mix the raw materials.
[0003] In the existing technology of static eliminator processing reactor, when stirring the static eliminator raw materials, the stirring structure inside the reactor is mostly a relatively simple U-shaped or I-shaped plate. The contact area between these stirring structures and the materials is small, and some heavier materials tend to sink in the lower area of the reactor, resulting in low contact stirring efficiency of the static eliminator ingredients when stirring in the reactor. For this reason, we propose a static eliminator processing reactor. Utility Model Content
[0004] The main purpose of the present utility model is to provide a reactor for processing static electricity removers, in which a mixing mechanism is arranged outside the stirring shaft of the reactor body, and the hoop of the mixing mechanism is equipped with an external connecting plate and an L-shaped bending plate to stir the lower sinking raw materials in the reactor body, and the shaft-to-sleeve A and the shaft-to-sleeve B of the mixing mechanism are driven by the stirring shaft at the support ring, so that the rear connecting rod stirs the raw materials in the reactor body, and the bending plate of the rear connecting rod cooperates with the C-shaped bottom plate to stir the static electricity remover raw materials in the upper layer of the reactor body, effectively ensuring the stirring and mixing processing efficiency of the static electricity remover raw materials in the reactor body, and there are more rake plates under the C-shaped bottom plate to perform large-area contact stirring on the static electricity remover raw materials in the lower layer of the reactor body, effectively improving the stirring and mixing processing of the static electricity remover raw materials in the reactor body, and can effectively solve the problems in the background technology.
[0005] In order to achieve the above purpose, the technical solution adopted by the utility model is:
[0006] The utility model provides a kind of reaction kettle for antistatic agent processing, including reaction kettle body and stirring shaft, the stirring shaft is installed in the reaction kettle body and is inserted into the kettle, further including mixing mechanism, the mixing mechanism includes hoop, outer connecting plate, L-shaped pair of bending plate, L-shaped hanging foot, support ring, shaft sleeve A, shaft sleeve B, rear connecting rod, bent twisting plate, C-shaped bottom plate and harrow plate, the hoop is clamped on the shaft bottom of the stirring shaft inserted into the reaction kettle body, and the double sets of sleeve bodies of hoop are locked outside the stirring shaft by bolt, the sleeve body of the hoop is symmetrically welded with outer connecting plate outside, and the outer connecting plate is symmetrically locked with L-shaped pair of bending plate outside, the double sets of plate bodies of L-shaped pair of bending plate are mutually clamped by L-shaped hanging foot, the stirring shaft is welded with support ring above the hoop, and the stirring shaft is clamped with shaft sleeve A and shaft sleeve B outside above the support ring, the sleeve body of shaft sleeve A and shaft sleeve B is locked by bolt, and the sleeve body of shaft sleeve A and shaft sleeve B is welded with bent twisting plate by rear connecting rod back, and the bottom plate body of bent twisting plate is welded with harrow plate by C-shaped bottom plate.
[0007] Further, the two sets of plate bodies of the L-shaped pair of bending plate are integrally formed with L-shaped hanging feet at the ends, and the two sets of plate bodies of the L-shaped pair of bending plate are provided with hanging grooves for clamping the L-shaped hanging feet;
[0008] By adopting the above technical scheme, the L-shaped hanging feet of the two sets of plate bodies can be hung on the hanging grooves of the two sets of plate bodies of the L-shaped pair of bending plate, thereby achieving clamping of the bottom of the L-shaped pair of bending plate.
[0009] Further, the two sets of sleeve bodies of the hoop are symmetrically provided with mounting holes for screwing in bolts outside, and the bottom shaft body of the stirring shaft is clamped in the sleeve groove of the hoop;
[0010] By adopting the above technical scheme, after the two sets of sleeve bodies of the hoop are clamped in the sleeve groove outside the stirring shaft, the sleeve bodies are locked outside the stirring shaft by screwing bolts between the mounting holes of the two sets of sleeve bodies.
[0011] Further, the shaft bodies of the stirring shaft are clamped in the sleeve grooves of the shaft sleeve A and the shaft sleeve B, and the mounting holes for screwing in hexagon socket head cap screws are symmetrically provided outside the sleeve bodies of the shaft sleeve A and the shaft sleeve B;
[0012] By adopting the above technical scheme, the shaft sleeve A and the shaft sleeve B can be symmetrically clamped outside the stirring shaft with the locking of the hexagon socket head cap screws.
[0013] Further, the sleeve bodies of the shaft sleeve A and the shaft sleeve B are provided with positioning grooves at the bottoms for clamping positioning blocks, and the positioning blocks are welded to the upper ring surface of the support ring;
[0014] By adopting the above technical scheme, the shaft sleeve A and the shaft sleeve B are clamped with the positioning blocks of the support ring through the positioning grooves, which facilitates the stable clamping of the shaft sleeve A and the shaft sleeve B by the support ring.
[0015] Further, the rabble plates are arranged and welded with four groups under the lower surface of the plate body of the C-shaped bottom plate, and rabble claws are arranged under the plate body of the rabble plate.
[0016] By adopting the above technical scheme, the four groups of plate bodies of the rabble plates under the C-shaped bottom plate agitate the static electricity removing agent raw materials in the reaction kettle body with the rabble claws.
[0017] Compared with the prior art, the utility model has the following beneficial effects:
[0018] The utility model discloses a mixing mechanism is arranged outside the stirring shaft of the reaction kettle body, and the sleeve of the mixing mechanism is provided with the outer connecting plate and the L-shaped pair of bending plates, which can agitate the lower layer sinking raw materials in the reaction kettle body, and the shaft sleeve A and the shaft sleeve B of the mixing mechanism are driven by the stirring shaft at the supporting ring, so that the rear connecting rod agitates the raw materials in the reaction kettle body, and the bending plate of the rear connecting rod cooperates with the C-shaped bottom plate to agitate the upper layer static electricity removing agent raw materials in the reaction kettle body, thereby effectively guaranteeing the stirring and mixing processing efficiency of the static electricity removing agent raw materials in the reaction kettle body.
[0019] And the rabble plates under the C-shaped bottom plate can agitate the lower layer static electricity removing agent raw materials in the reaction kettle body in a large area, thereby effectively improving the stirring and mixing processing of the static electricity removing agent raw materials in the reaction kettle body. BRIEF DESCRIPTION OF DRAWINGS
[0020] Fig. 1 It is a kettle body sectional view of the utility model discloses a kind of static electricity removing agent processing reaction kettle.
[0021] Fig. 2 It is the installation schematic drawing of the stirring shaft and mixing mechanism of the utility model discloses a kind of static electricity removing agent processing reaction kettle.
[0022] Fig. 3 It is the explosion view of the mixing mechanism of the utility model discloses a kind of static electricity removing agent processing reaction kettle.
[0023] In the drawing: 1, reaction kettle body;2, stirring shaft;3, mixing mechanism;4, sleeve;5, outer connecting plate;6, L-shaped pair of bending plates;7, L-shaped hanging foot;8, supporting ring;9, shaft sleeve A;10, shaft sleeve B;11, rear connecting rod;12, bending plate;13, C-shaped bottom plate;14, rabble plate;15, fixed groove;16, fixed block. DETAILED DESCRIPTION
[0024] In order to make the technical means, creative features, purposes and effects realized by the utility model easy to understand, the utility model is further described below in combination with specific embodiments.
[0025] For example, Figs. 1-3As shown, a reactor for processing static eliminators includes a reactor body 1 and a stirring shaft 2. The reactor body 1 is equipped with a stirring shaft 2 extending into the reactor, and also includes a mixing mechanism 3. The mixing mechanism 3 includes a hoop 4, an outer connecting plate 5, an L-shaped bending plate 6, an L-shaped hanging foot 7, a support ring 8, a shaft-to-sleeve A9, a shaft-to-sleeve B10, a rear connecting rod 11, a bending plate 12, a C-shaped bottom plate 13 and a rake plate 14. The stirring shaft 2 extends into the reactor body 1 and is clamped with a hoop 4 at the bottom of the shaft, and the double sets of the hoop 4 are locked to the outside of the stirring shaft 2 by bolts. The sleeve of the hoop 4 The outer connecting plate 5 is welded symmetrically on the outside, and the outer side of the outer connecting plate 5 is symmetrically locked with an L-shaped bending plate 6. The ends of the double sets of plates of the L-shaped bending plate 6 are connected to each other through L-shaped hanging feet 7. The stirring shaft 2 above the hoop 4 is welded with a support ring 8, and the stirring shaft 2 above the support ring 8 is clamped with a shaft-to-sleeve A9 and a shaft-to-sleeve B10. The sleeves of the shaft-to-sleeve A9 and the shaft-to-sleeve B10 are locked by bolts, and the back of the sleeves of the shaft-to-sleeve A9 and the shaft-to-sleeve B10 are welded with a bending plate 12 through a rear connecting rod 11, and the bottom end plate of the bending plate 12 is welded with a rake plate 14 through a C-shaped bottom plate 13.
[0026] The ends of the two sets of plates of the L-shaped bending plate 6 are integrally formed with L-shaped hanging feet 7, and the two sets of plates of the L-shaped bending plate 6 are provided with hanging grooves for snapping into the L-shaped hanging feet 7;
[0027] By adopting the above technical solution, two groups of L-shaped hanging feet 7 of the plate body can be hung at the two groups of plate body hanging grooves of the L-shaped bending plate 6, thereby realizing the bottom connection of the L-shaped bending plate 6.
[0028] The two sets of sleeves of the hoop 4 are symmetrically provided with mounting holes for screwing in bolts, and the bottom shaft body of the stirring shaft 2 is clamped in the sleeve groove of the hoop 4;
[0029] By adopting the above technical solution, after the two sets of sleeves of the hoop 4 are clamped on the outside of the stirring shaft 2 through the sleeve grooves, bolts are screwed between the two sets of sleeve mounting holes of the hoop 4 to lock the sleeves on the outside of the stirring shaft 2.
[0030] The shaft body of the stirring shaft 2 is clamped in the sleeve grooves of the shaft-to-sleeve A9 and the shaft-to-sleeve B10, and mounting holes for screwing in hexagon socket bolts are symmetrically opened on the sleeve bodies of the shaft-to-sleeve A9 and the shaft-to-sleeve B10;
[0031] By adopting the above technical solution, the shaft-to-sleeve A9 and the shaft-to-sleeve B10 can be symmetrically clamped on the outside of the stirring shaft 2 by means of the locking of the hexagon socket bolts.
[0032] The bottom of the shaft-to-sleeve A9 and the shaft-to-sleeve B10 is provided with a fixed groove 15 for clamping a fixed block 16, and the fixed block 16 is welded to the upper ring surface of the support ring 8;
[0033] By adopting the technical scheme, the shaft sleeve A9 and the shaft sleeve B10 are clamped and connected with the fixed block 16 of the fixed groove 15 of the support ring 8, so that the support ring 8 can stably support and connect the shaft sleeve A9 and the shaft sleeve B10.
[0034] Wherein, the four groups of the rake plates 14 are arranged and welded on the lower surface of the plate body of the C-shaped bottom plate 13, and the rake plates 14 are provided with rake claws below the plate body.
[0035] By adopting the technical scheme, the four groups of the plate bodies of the rake plates 14 below the C-shaped bottom plate 13 can stir the static agent raw materials in the reaction kettle body 1 by the rake claws.
[0036] It should be noted that the utility model is a kind of reaction kettle for static agent processing, and the mixing mechanism 3 is arranged outside the stirring shaft 2 of the reaction kettle body 1, after the collar 4 of the mixing mechanism 3 is clamped outside the stirring shaft 2, the collar 4 can be locked outside the stirring shaft 2 by bolt, and the L-shaped pair of bent plates 6 connected by the outside connecting plate 5 of the collar 4 can form the bottom stirring mechanism at the bottom of the reaction kettle body 1, and the plate body end of the L-shaped pair of bent plates 6 is connected with two groups of plates by the L-shaped hanging foot 7, at this time, the shaft sleeve A9 and the shaft sleeve B10 are clamped at the fixed block 16 above the support ring 8 by the fixed groove 15, then the shaft sleeve A9 and the shaft sleeve B10 are clamped and locked outside the stirring shaft 2 by the inner hexagonal bolt, the C-shaped bottom plate 13 is arranged below the bent plate 12 connected by the rear connecting rod 11 of the shaft sleeve A9 and the shaft sleeve B10, and the C-shaped bottom plate 13 can be symmetrically distributed outside the L-shaped pair of bent plates 6 in cooperation with the rake plates 14, when the static agent raw materials are poured into the reaction kettle body 1 for stirring, the stirring shaft 2 rotates with the collar 4, the L-shaped pair of bent plates 6 connected by the outside connecting plate 5 of the collar 4 stirs the lower layer of the raw materials in the reaction kettle body 1, and the shaft sleeve A9 and the shaft sleeve B10 are driven by the stirring shaft 2 at the support ring 8, at this time, the shaft sleeve A9 and the shaft sleeve B10 stir the raw materials in the reaction kettle body 1 with the rear connecting rod 11, and the bent plate 12 of the rear connecting rod 11 cooperates with the C-shaped bottom plate 13 to stir the upper layer of the static agent raw materials in the reaction kettle body 1, and the C-shaped bottom plate 13 below has more rake plates 14 to contact and stir the lower layer of the static agent raw materials in the reaction kettle body 1, so that the stirring and mixing processing of the static agent raw materials in the reaction kettle body 1 is effectively improved.
[0037] It should be noted that the utility model is a kind of reaction kettle for static agent processing, and the components in the utility model are known to those skilled in the art, and the structure and principle thereof can be known by technical manual or conventional experimental method.
[0038] The basic principle and main features of the present application and the advantages of the present application are shown and described above. Those skilled in the art should understand that the present application is not limited by the above examples, and the above examples and descriptions in the specification are only to illustrate the principles of the present application. Without departing from the spirit and scope of the present application, various changes and improvements can be made to the present application, and these changes and improvements all fall within the scope of the present application. The scope of protection of the present application is defined by the appended claims and their equivalents.
Claims
1. A reaction vessel for electrostatic agent processing, comprising a reaction vessel body (1) and a stirring shaft (2), the stirring shaft (2) being installed in the reaction vessel body (1) and extending into the vessel, characterized in that: Also include mixing mechanism (3), the mixing mechanism (3) includes hoop (4), outer connecting plate (5), L-shaped pair of bent plate (6), L-shaped hanging foot (7), support ring (8), shaft sleeve A (9), shaft sleeve B (10), rear connecting rod (11), bent plate (12), C-shaped bottom plate (13) and harrow plate (14), the stirring shaft (2) is inserted into the shaft bottom of the reaction kettle body (1) and is clamped with the hoop (4), and the double sets of sleeve bodies of the hoop (4) are locked outside the stirring shaft (2) by bolts, the sleeve body of the hoop (4) is symmetrically welded with the outer connecting plate (5) outside, and the outer connecting plate (5) is symmetrically locked with the L-shaped pair of bent plate (6) outside, the double sets of plate bodies of the L-shaped pair of bent plate (6) are clamped and connected with each other through the L-shaped hanging foot (7), the stirring shaft (2) is welded with the support ring (8) outside above the hoop (4), and the stirring shaft (2) is clamped with the shaft sleeve A (9) and the shaft sleeve B (10) outside above the support ring (8), the sleeve bodies of the shaft sleeve A (9) and the shaft sleeve B (10) are locked by bolts, and the sleeve bodies of the shaft sleeve A (9) and the shaft sleeve B (10) are welded with the bent plate (12) through the rear connecting rod (11) at the back, the bottom plate body of the bent plate (12) is welded with the harrow plate (14) through the C-shaped bottom plate (13).
2. The electrostatic agent processing reaction vessel according to claim 1, characterized by: The two sets of plate bodies of the L-shaped pair of bent plate (6) are integrally formed with the L-shaped hanging foot (7) at the ends, and the L-shaped pair of bent plate (6) is provided with a hanging groove for clamping the L-shaped hanging foot (7).
3. The electrostatic agent processing reaction vessel according to claim 1, characterized by: The two sets of sleeve bodies of the hoop (4) are symmetrically provided with mounting holes for screwing bolts outside, and the bottom shaft body of the stirring shaft (2) is clamped in the sleeve groove of the hoop (4).
4. The electrostatic agent processing reaction vessel according to claim 1, characterized by: The shaft body of the stirring shaft (2) is clamped in the sleeve groove of the shaft sleeve A (9) and the shaft sleeve B (10), and the sleeve bodies of the shaft sleeve A (9) and the shaft sleeve B (10) are symmetrically provided with mounting holes for screwing hexagon socket head cap screws outside.
5. The electrostatic agent processing reaction vessel according to claim 1, characterized by: The sleeve body of the shaft sleeve A (9) and the shaft sleeve B (10) is provided with a positioning groove (15) for clamping a positioning block (16) at the bottom, and the positioning block (16) is welded to the upper ring surface of the support ring (8).
6. The electrostatic agent processing reaction vessel according to claim 1, wherein: Four groups of harrow plates (14) are arranged and welded to the lower surface of the plate body of the C-shaped bottom plate (13), and harrow claws are arranged below the plate body of the harrow plate (14).