Reaction synthesis device for producing waterproof and anticorrosive paint
By using a deflecting hydraulic seat and hydraulic seat structure in the waterproof and anti-corrosion coating production device, the problems of prolonged reaction time and low discharge efficiency were solved, thereby improving both reaction efficiency and discharge efficiency.
Patent Information
- Application Number
- CN202423077777.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-13
- Publication Date
- 2025-11-28
- Estimated Expiration
- 2034-12-13
AI Technical Summary
The production of waterproof and anti-corrosion coatings suffers from problems such as prolonged reaction time and low discharge efficiency of finished coatings.
A reaction synthesis device for producing waterproof and anti-corrosion coatings was designed. It adopts structures such as a deflecting hydraulic seat and a hydraulic seat. The deflecting hydraulic seat controls the deflection of the reaction vessel and the position change of the stirring rod, thereby realizing the rapid pouring of the coating and improving the reaction efficiency.
It improves reaction efficiency and finished coating discharge efficiency, shortens reaction time, and enhances production efficiency.
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Figure CN223602507U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of paint production, especially relates to a reaction synthesis device for waterproof and anticorrosive paint production. BACKGROUND
[0002] Paint is a material coated on the surface of an object to form protection, beautification and functionality, mainly composed of pigments, fillers, resins, solvents and the like; the resin is the basic component of the paint, and its quality directly affects the performance of the paint, and the resin is synthesized through a series of processing processes, such as esterification reaction, polycondensation reaction, alcoholization reaction, epoxidation and the like; the pigments and fillers are the main functional additives of the paint, and the color, gloss and the like are derived from the pigments, and the fillers can be used to increase the thickness and firmness of the coating; the processing of the pigments and fillers includes steps such as dry grinding, wet grinding, dispersion and screening; the above-mentioned resins, pigments, fillers and solvents are mixed in a specific proportion, heated and stirred, and the like, and finally form a paint with appropriate viscosity.
[0003] Due to the complex functions of the waterproof and anticorrosive paint, more materials need to be added in the base solvent during production, which not only increases the reaction time, but also affects the pouring of the finished paint due to the high concentration of the paint after reaction.
[0004] Therefore, a reaction synthesis device for waterproof and anticorrosive paint production is provided to accelerate the reaction and improve the discharging efficiency of the finished paint. SUMMARY
[0005] Therefore, the utility model aims to provide a reaction synthesis device for waterproof and anticorrosive paint production to solve the problems in the background art.
[0006] To solve the above technical problems, the utility model provides the following technical scheme: a reaction synthesis device for waterproof and anticorrosive paint production, comprising a bottom plate, a plurality of deflection hydraulic seats are arranged on the top surface of the bottom plate, a reaction tank is arranged above the deflection hydraulic seats; a vertical plate is arranged on one side of the bottom plate, a sliding seat is arranged on the side of the vertical plate facing the reaction tank, a stirring motor is arranged on one side of the sliding seat, a drive shaft is arranged below the stirring motor, and a stirring rod is arranged below the drive shaft.
[0007] As a preferred scheme of the reaction synthesis device for waterproof and anticorrosive paint production, the plurality of deflection hydraulic seats on the top surface of the bottom plate are symmetrically distributed, and the deflection hydraulic seats on each side are also symmetrically distributed.
[0008] As a preferred scheme of the reaction synthesis device for waterproof and anticorrosive paint production, the inside of the deflection hydraulic seat is coaxially provided with a deflection hydraulic rod, the bottom surface of the deflection hydraulic rod is provided with a deflection block, the opposite side of the two deflection blocks is provided with a deflection rod, the other end of the deflection rod of each side is provided with a deflection plate, and each deflection rod is rotationally connected with the deflection plate.
[0009] As a preferred scheme of the reaction synthesis device for waterproof and anticorrosive paint production, the bottom surface of the reaction tank is provided with a deflection seat, and the lower portion of the deflection seat is provided with a fastening groove; the center of the opposite side of the deflection plate is provided with a connecting shaft, the connecting shaft penetrates through the fastening groove, the outer side of the connecting shaft in the deflection seat is provided with a clamping ring, and the inner side of the connecting shaft in the fastening groove is provided with a fastening block, and the shape of the fastening block is the same as the cross-sectional shape of the fastening groove.
[0010] As a preferred scheme of the reaction synthesis device for waterproof and anticorrosive paint production, the inside of the deflection hydraulic seat is coaxially provided with a deflection hydraulic rod, the bottom surface of the deflection hydraulic rod is provided with a deflection block, the opposite side of the two deflection blocks is provided with a deflection rod, the other end of the deflection rod of each side is provided with a deflection plate, and each deflection rod is rotationally connected with the deflection plate.
[0011] As a preferred scheme of the reaction synthesis device for waterproof and anticorrosive paint production, the other end of the second sliding block is connected with the stirring motor, the cross-sectional center of the second sliding block is coincident with the cross-sectional center of the stirring motor, one end of the stirring motor is coincident with one side of the sliding seat, the length of the driving shaft is less than the length of the stirring rod, and the length of the stirring rod is the same as the length of the second sliding rail.
[0012] As a preferred scheme of the reaction synthesis device for waterproof and anticorrosive paint production, the inside of the deflection hydraulic seat is coaxially provided with a deflection hydraulic rod, the bottom surface of the deflection hydraulic rod is provided with a deflection block, the opposite side of the two deflection blocks is provided with a deflection rod, the other end of the deflection rod of each side is provided with a deflection plate, and each deflection rod is rotationally connected with the deflection plate.
[0013] The reaction synthesis device for waterproof and anticorrosive paint production has the advantages that:
[0014] 1. The deflection hydraulic seat is arranged, a plurality of deflection hydraulic seats control the deflection of the reaction tank, the reaction completed paint in the reaction tank can be quickly poured out, and the overall reaction efficiency of the reaction is improved.
[0015] 2. The hydraulic seat is arranged, the position of the stirring rod and the reaction tank is changed, and the reaction tank is convenient for causing interference when deflected. BRIEF DESCRIPTION OF DRAWINGS
[0016] In order to more clearly illustrate the technical scheme of the embodiments of the present application, the drawings needed in the embodiment description will be briefly introduced as follows. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can be obtained by those skilled in the art without creative labor on the basis of these drawings. Among them:
[0017] Figure 1 It is a whole structure schematic view of the reaction synthesis device for waterproof and anticorrosive paint production of the present application;
[0018] Figure 2 It is a bottom view of the reaction synthesis device for waterproof and anticorrosive paint production of the present application;
[0019] Figure 3 It is a partial sectional view of the reaction synthesis device for waterproof and anticorrosive paint production of the present application;
[0020] Figure 4 It is a top view of the reaction synthesis device for waterproof and anticorrosive paint production of the present application.
[0021] Explanation of reference signs:
[0022] 1, bottom plate; 11, vertical plate; 2, reaction tank; 21, deflection seat; 22, fastening groove; 23, fastening block; 3, deflection hydraulic seat; 31, deflection hydraulic rod; 32, deflection block; 33, deflection rod; 34, deflection plate; 35, connecting shaft; 36, clamping ring; 4, sliding seat; 41, first sliding rail; 42, second sliding rail; 43, first sliding block; 44, second sliding block; 5, hydraulic seat; 51, hydraulic sleeve; 52, hydraulic rod; 6, stirring motor; 61, drive shaft; 62, stirring rod. DETAILED DESCRIPTION
[0023] In order to make the above-mentioned purposes, features and advantages of the present application more apparent and easy to understand, the specific embodiments of the present application will be described in detail below with reference to the drawings of the specification.
[0024] Reference Figures 1-4 The reaction synthesis device for waterproof and anticorrosive paint production provided by the present application comprises a bottom plate 1, a plurality of deflection hydraulic seats 3 are arranged on the top surface of the bottom plate 1, a reaction tank 2 is arranged above the deflection hydraulic seats 3; a vertical plate 11 is arranged on one side of the bottom plate 1, a sliding seat 4 is arranged on the side of the vertical plate 11 facing the reaction tank 2, a stirring motor 6 is arranged on one side of the sliding seat 4, a drive shaft 61 is arranged below the stirring motor 6, and a stirring rod 62 is arranged below the drive shaft 61.
[0025] Specifically, the top surface of the bottom plate 1 is provided with a plurality of deflection hydraulic seats 3, the upper side of the deflection hydraulic seat 3 is provided with a reaction tank 2, the solvent and raw material of the paint are reacted in the reaction tank 2, the deflection of the reaction tank 2 is driven by the movement of the deflection hydraulic seat 3, and the reacted paint in the reaction tank 2 is poured out; one side of the bottom plate 1 is provided with a vertical plate 11, the side of the vertical plate 11 facing the reaction tank 2 is provided with a sliding seat 4, one side of the sliding seat 4 is provided with a stirring motor 6, the sliding seat 4 is supported by the vertical plate 11, the central axis of the sliding seat 4 and the central axis of the reaction tank 2 are located on the same horizontal plane, and the bottom end of the sliding seat 4 is located above the top surface of the reaction tank 2; the lower side of the stirring motor 6 is provided with a driving shaft 61, the lower side of the driving shaft 61 is provided with a stirring rod 62, the driving shaft 61 is driven to rotate by the stirring motor 6, the driving shaft 61 drives the stirring rod 62 to rotate synchronously, and the stirring rod 62 stirs the paint raw material and solvent in the reaction tank 2 to speed up the reaction in the reaction tank 2.
[0026] The plurality of deflection hydraulic seats 3 on the top surface of the bottom plate 1 are symmetrically distributed, and the deflection hydraulic seats 3 on each side are also symmetrically distributed.
[0027] Specifically, the mutual symmetrical distribution of the plurality of deflection hydraulic seats 3 provides stable support for the reaction in the reaction tank 2.
[0028] The inside of the deflection hydraulic seat 3 is coaxially provided with a deflection hydraulic rod 31, the bottom surface of the deflection hydraulic rod 31 is provided with a deflection block 32, the opposite side of the two deflection blocks 32 is provided with a deflection rod 33, the other end of each deflection rod 33 is provided with a deflection plate 34, and each deflection rod 33 is rotationally connected with the deflection plate 34.
[0029] Specifically, the deflection hydraulic seat 3 drives the deflection hydraulic rod 31 to ascend and descend, thereby driving the deflection block 32 to ascend and descend synchronously, the deflection block 32 drives the deflection rod 33 to ascend and descend synchronously, a plurality of deflection rods 33 on the same side are connected with the deflection plate 34 and are uniformly distributed on the surface of the deflection plate 34, the deflection block 32 drives the deflection rod 33 to ascend and descend, thereby driving the deflection plate 34 to ascend and descend synchronously, according to the descent of the deflection hydraulic rod 31 on the side far away from the vertical plate 11, the corresponding end of the two deflection plates 34 is driven to descend synchronously, and in the process of the descent of the deflection plate 34, the deflection rod 33 rotates around the deflection plate 34, thereby maintaining the stability of the deflection block 32.
[0030] The bottom surface of the reaction tank 2 is provided with a deflection seat 21, the lower side of the deflection seat 21 is provided with a fastening groove 22; the center of the opposite side of the deflection plate 34 is provided with a connecting shaft 35, the connecting shaft 35 penetrates the fastening groove 22, the outer side of the connecting shaft 35 is provided with a clamping ring 36, the inner side of the connecting shaft 35 in the fastening groove 22 is provided with a fastening block 23, and the shape of the fastening block 23 is the same as the cross-sectional shape of the fastening groove 22.
[0031] Specifically, by penetrating the fastening groove 22 through the connecting shaft 35, the two side deflection plates 34 can drive the reaction tank 2 to deflect when deflecting synchronously, the paint in the reaction tank 2 after reaction is poured out, the connecting shaft 35 at the penetrating fastening groove 22 is reinforced by the clamping ring 36, the connecting shaft 35 inside the fastening groove 22 is reinforced by the fastening block 23, and the connecting shaft 35 inside the fastening groove 22 is fixed with the fastening groove 22, and the reaction tank 2 is deflected by the deflection plate 34.
[0032] The inside of the sliding seat 4 is provided with a first sliding rail 41, the other side of the first sliding rail 41 is provided with a second sliding rail 42, the second sliding rail 42 penetrates one side of the sliding seat 4, the opening of the second sliding rail 42 faces the reaction tank 2, the inside of the first sliding rail 41 is provided with a first sliding block 43, the shape of the first sliding block 43 is fitted with the shape of the first sliding rail 41, the inside of the second sliding rail 42 is provided with a second sliding block 44, the shape of the second sliding block 44 is fitted with the shape of the second sliding rail 42, and the first sliding block 43 is connected with the second sliding block 44.
[0033] Specifically, by the movement of the first sliding block 43 and the second sliding block 44 in the first sliding rail 41 and the second sliding rail 42, the coaxial arrangement of the first sliding block 43 and the second sliding block 44 enables the synchronous movement of the first sliding block 43 and the second sliding block 44; the size of the first sliding block 43 is larger than the size of the second sliding block 44, so that the second sliding block 44 limits the first sliding block 43.
[0034] The other end of the second sliding block 44 is connected with the stirring motor 6, the cross-sectional center of the second sliding block 44 coincides with the cross-sectional center of the stirring motor 6, one end of the stirring motor 6 coincides with one side of the sliding seat 4, the length of the driving shaft 61 is less than the length of the stirring rod 62, and the length of the stirring rod 62 is the same as the length of the second sliding rail 42.
[0035] Specifically, by the movement of the second sliding block 44, the stirring motor 6 is driven to move in the second sliding rail 42, and then the driving shaft 61 and the stirring rod 62 are driven to move in the reaction tank 2, which is convenient for separating from the reaction tank 2 when charging and discharging the reaction tank 2.
[0036] The upper part of the sliding seat 4 is provided with a hydraulic seat 5, the bottom surface of the hydraulic seat 5 is provided with a hydraulic sleeve 51, the inside of the hydraulic sleeve 51 is coaxially provided with a hydraulic rod 52, the hydraulic rod 52 is located in the inside of the first sliding rail 41, and the other end of the hydraulic rod 52 is fixed on the top of the first sliding block 43.
[0037] Specifically, by driving the hydraulic rod 52 to move in the inside of the hydraulic sleeve 51 through the hydraulic seat 5, the first sliding block 43 is pushed to slide in the inside of the first sliding rail 41, the stirring motor 6 is driven to slide synchronously on the outside of the sliding seat 4, and the stirring rod 62 is driven to move in the inside of the reaction tank 2
[0038] During use, the control hydraulic seat 5 changes the position of the stirring motor 6, and the stirring rod 62 is taken out of the inside of the reaction kettle 2, and then solvent and raw materials are added into the inside of the reaction kettle 2; after the raw materials are added, the stirring rod 62 is inserted into the inside of the reaction kettle 2, the stirring motor 6 is started to drive the rotating of the stirring rod 62 through the driving shaft 61, and the raw materials in the inside of the reaction kettle 2 are stirred and mixed; after the reaction is finished, the stirring motor 6 is taken out of the inside of the reaction kettle 2 again by the hydraulic seat 5, the control of the deflection hydraulic seat 3 drives the downward of the deflection hydraulic rod 31, the reaction kettle 2 is completely separated from the stirring rod 62, the deflection hydraulic seat 3 on one side is controlled to drive the downward of the deflection hydraulic rod 31 again, and the reaction kettle 2 is deflected to pour out the paint in the inside of the reaction kettle 2 after the reaction.
[0039] It should be noted that the above embodiments are only used to illustrate the technical solutions of the present application, not to limit it. Although the present application has been described in detail with reference to the preferred embodiments, those skilled in the art should understand that the technical solutions of the present application can be modified or replaced equivalently without departing from the spirit and scope of the technical solutions of the present application, and they should be covered in the scope of the claims of the present application.
Claims
1. A reaction synthesis apparatus for producing waterproof and anti-corrosion coatings, comprising a base plate (1), characterized in that: The top surface of the bottom plate (1) is provided with a plurality of deflection hydraulic seats (3), and the upper side of the deflection hydraulic seat (3) is provided with a reaction tank (2); One side of the bottom plate (1) is provided with a vertical plate (11), and the side of the vertical plate (11) facing the reaction tank (2) is provided with a sliding seat (4), and one side of the sliding seat (4) is provided with a stirring motor (6), and the lower side of the stirring motor (6) is provided with a driving shaft (61), and the lower side of the driving shaft (61) is provided with a stirring rod (62).
2. The reaction synthesis device for producing a waterproof and anticorrosive paint according to claim 1, characterized in that: The plurality of deflection hydraulic seats (3) on the top surface of the bottom plate (1) are symmetrically distributed, and the deflection hydraulic seats (3) on each side are also symmetrically distributed.
3. The reaction synthesis device for producing a waterproof and anticorrosive paint according to claim 2, characterized in that: The inside of the deflection hydraulic seat (3) is coaxially provided with a deflection hydraulic rod (31), the bottom surface of the deflection hydraulic rod (31) is provided with a deflection block (32), the opposite side of the two deflection blocks (32) is provided with a deflection rod (33), and the other end of each deflection rod (33) is provided with a deflection plate (34), and each deflection rod (33) is rotatably connected with the deflection plate (34).
4. The reaction synthesis device for producing a waterproof and anticorrosive paint according to claim 3, characterized in that: The bottom surface of the reaction tank (2) is provided with a deflection seat (21), and the lower side of the deflection seat (21) is provided with a fastening groove (22); The center of the opposite side of the deflection plate (34) is provided with a connecting shaft (35), the connecting shaft (35) penetrates the fastening groove (22), the connecting shaft (35) is provided with a clamping ring (36) on the outside of the deflection seat (21), and the connecting shaft (35) is provided with a fastening block (23) on the inside of the fastening groove (22), the shape of the fastening block (23) is the same as the cross-sectional shape of the fastening groove (22).
5. The reaction synthesis device for producing a waterproof and anticorrosive paint according to claim 4, characterized in that: The inside of the sliding seat (4) is provided with a first sliding rail (41), the other side of the first sliding rail (41) is provided with a second sliding rail (42), the second sliding rail (42) penetrates one side of the sliding seat (4), the opening of the second sliding rail (42) faces the reaction tank (2), the inside of the first sliding rail (41) is provided with a first sliding block (43), the shape of the first sliding block (43) is consistent with the shape of the first sliding rail (41), the inside of the second sliding rail (42) is provided with a second sliding block (44), the shape of the second sliding block (44) is consistent with the shape of the second sliding rail (42), and the first sliding block (43) and the second sliding block (44) are connected.
6. The reaction synthesis device for producing a waterproof and anticorrosive paint according to claim 5, characterized in that: The other end of the second sliding block (44) is connected with the stirring motor (6), the cross-sectional center of the second sliding block (44) coincides with the cross-sectional center of the stirring motor (6), one end of the stirring motor (6) coincides with one side of the sliding seat (4), the length of the driving shaft (61) is less than the length of the stirring rod (62), and the length of the stirring rod (62) is the same as the length of the second sliding rail (42).
7. The reaction synthesis device for producing a waterproof and anticorrosive paint according to claim 6, characterized in that: The upper side of the sliding seat (4) is provided with a hydraulic seat (5), the bottom surface of the hydraulic seat (5) is provided with a hydraulic sleeve (51), the inside of the hydraulic sleeve (51) is coaxially provided with a hydraulic rod (52), the hydraulic rod (52) is located in the inside of the first sliding rail (41), and the other end of the hydraulic rod (52) is fixed on the top of the first sliding block (43).