Coating dehumidifying device
By designing a paint dehumidification device, a closed environment is created using a lifting mechanism and a stirring mechanism, combined with a suction pump, which solves the problem of low dehumidification efficiency of steel structure paint and achieves a high-efficiency dehumidification effect.
Patent Information
- Application Number
- CN202520162334.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-23
- Publication Date
- 2026-01-02
- Estimated Expiration
- 2035-01-23
AI Technical Summary
In existing technologies, steel structure coatings are inefficient in the dehumidification process and cannot effectively remove excess moisture from the coating, thus affecting the quality of the coating.
Design a paint dehumidification device, including a drum rack, a lifting mechanism, a stirring mechanism, and a dehumidification mechanism. The device uses a suction pump to draw out moisture in a sealed environment by closing the drum cover, and accelerates the evaporation of water vapor in a sealed state by stirring mechanism.
It significantly improves dehumidification efficiency, ensures coating quality, and meets production needs.
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Figure CN223746983U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to chemical production equipment technical field more specifically, relate to a kind of coating dehumidification device. BACKGROUND
[0002] Steel structure coating is a kind of special material coated on the surface of steel structure, and the special coating on the surface of steel structure can effectively protect the steel structure body and prolong the service life of steel structure. Steel structure coating is prepared by mixing powder raw material and water, and the temperature of the coating just prepared is relatively high, and the moisture content is large. Excessive moisture will affect the quality of the coating, so dehumidification is an important process in coating production. The temperature of the coating just prepared is relatively high, and a large amount of water vapor will evaporate. However, the dehumidification effect is poor if the dehumidification is completely relied on the natural evaporation of water vapor, so enterprises urgently need to design a special dehumidification device to meet the production needs of coating SUMMARY
[0003] The utility model discloses a kind of coating dehumidification devices, and the device can place the cylindrical container containing coating, the device forms airtight environment by driving the closing of combined cylinder cover, and the dehumidification purpose is met by the suction work of dehumidification mechanism, the device is designed with stirring mechanism, and the volatilization of water vapor is accelerated by stirring, so that the dehumidification operation efficiency is greatly improved.
[0004] To achieve the above object, the utility model adopts the following technical scheme:
[0005] A kind of coating dehumidification device, including put cylinder frame, lifting mechanism, stirring mechanism and dehumidification mechanism, the cylindrical container containing coating can be placed on the put cylinder frame, the put cylinder frame is installed with positioning arc plate, cylindrical container is placed when adheres to the positioning arc plate, the lifting mechanism is installed in put cylinder frame side, the lifting mechanism is driven lifting crossbeam and is connected with, the lifting mechanism can drive lifting crossbeam to do vertical lifting motion, the lifting crossbeam is fixedly connected with combined cylinder cover below, the stirring mechanism is installed in the top opening of cylindrical container, the top opening of cylindrical container can be capped after the combined cylinder cover descends, stirring power assembly is installed on the lifting crossbeam, the stirring power assembly can be transmission connection with stirring mechanism, the dehumidification mechanism includes suction pump, the suction pump is fixedly installed on the lifting crossbeam, and the input end pipeline of the suction pump is communicated with combined cylinder cover.
[0006] Further, the put cylinder frame includes two parallelly arranged bottom supports, a gap is left between the two bottom supports, and the spacing size of the two bottom supports is smaller than the diameter size of the bottom of the cylindrical container. The positioning arc plate is vertically connected to the two bottom supports.
[0007] Further, the lifting mechanism comprises a base, a top beam, a transmission screw rod and a first motor, the top beam is arranged in parallel above the base, two parallel arranged guide rods are fixedly connected between the top beam and the base, the transmission screw rod is installed at a position between the two guide rods, the transmission screw rod is rotatably installed, the first motor is fixedly installed on the top beam, the output end of the first motor is connected with the transmission screw rod, the lifting cross beam is sleeved on the two guide rods and is threadedly connected with the transmission screw rod.
[0008] Further, the stirring mechanism comprises a mounting ring, a central sleeve, support rods and a stirring main shaft, the mounting ring is matched with the size of the top opening of the cylindrical container, the mounting ring can be sleeved and fixed on the top opening of the cylindrical container, the central sleeve is arranged at the central position of the mounting ring, the mounting ring is connected with the central sleeve through a plurality of support rods, the stirring main shaft is rotatably installed on the central sleeve, the stirring main shaft is vertically installed, and a plurality of uniformly distributed stirring blades are connected to the side wall of the stirring main shaft.
[0009] Further, the top portion of the stirring main shaft is arranged outside the central sleeve, a polygonal transmission hole is formed in the top portion of the stirring main shaft, the stirring power assembly comprises a second motor, the second motor is fixedly installed on the lifting cross beam, the output end of the second motor is connected with a polygonal transmission shaft, and the polygonal transmission shaft is matched with the polygonal transmission hole in size.
[0010] Further, before the cylinder cover is closed, the polygonal transmission shaft can be partially inserted into the polygonal transmission hole.
[0011] Further, two symmetrically arranged bayonet slots are formed in the top outer wall of the stirring main shaft, the stirring main shaft is matched with an angle adjusting tool, the angle adjusting tool comprises a main fork rod, one end of the main fork rod is connected with a branch, the other end of the main fork rod is connected with a bracelet, and the spacing size of the branch and the main fork rod is matched with the spacing size of the two bayonet slots.
[0012] Further, the dehumidification mechanism further comprises a condenser, and the output pipeline of the suction pump is connected to the input end of the condenser.
[0013] The beneficial effects of the utility model are as follows:
[0014] The utility model discloses a cylinder rack is used to place the cylindrical container containing paint, and the cylindrical container can be accurately positioned and installed, the utility model discloses that the cylinder cover is driven to close to form a closed environment, the suction work of the dehumidification mechanism is used to satisfy the dehumidification purpose, the utility model discloses that the stirring mechanism is installed on the cylindrical container, after the cylinder cover is closed, the stirring mechanism is engaged with the power assembly, and the stirring effect is formed, the volatilization of water vapor can be accelerated through stirring, and the dehumidification operation efficiency is greatly improved. BRIEF DESCRIPTION OF DRAWINGS
[0015] Figure 1 This is a side view of a paint dehumidification device in this embodiment;
[0016] Figure 2 This is a top view of a cylindrical container placed on a container rack in this embodiment.
[0017] Figure 3 This is a schematic diagram of the stirring mechanism in this embodiment;
[0018] Figure 4 This is a schematic diagram of the lifting mechanism in this embodiment;
[0019] Figure 5 This is a schematic diagram of the angle adjustment tool in this embodiment.
[0020] Reference numerals: 1. Loading rack; 11. Positioning arc plate; 12. Base support; 2. Lifting mechanism; 21. Base; 22. Top beam; 23. Guide rod; 24. Transmission screw; 25. First motor; 3. Lifting crossbeam; 4. Closing cover; 5. Stirring mechanism; 5. Mounting ring; 51. Central sleeve; 52. Support rod; 53. Stirring main shaft; 54. Polygonal transmission hole; 541. Bayonet groove; 542. Stirring blade; 55. Stirring power assembly; 6. Second motor; 61. Polygonal transmission shaft; 62. Dehumidification mechanism; 7. Suction pump; 71. Condenser; 72. Angle adjustment tool; 8. Main fork; 81. Fork; 82. Hand ring; 83. Detailed Implementation
[0021] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0022] like Figures 1-4The paint dehumidification device shown includes a cylinder rack 1, a lifting mechanism 2, a stirring mechanism 5 and a dehumidification mechanism 7. The paint is contained in a cylindrical container before dehumidification operation. The top of the cylindrical container is open to facilitate steam release. In actual production, a forklift is used to transport the cylindrical container. The forklift places the cylindrical container on the cylinder rack 1. The cylinder rack 1 is provided with a positioning arc plate 11. The cylindrical container is placed against the positioning arc plate 11. The positioning arc plate 11 plays a positioning role for the cylindrical container. Only when the installation position of the cylindrical container is determined can the subsequent cover closing operation be completed. The lifting mechanism 2 is installed on the side of the cylinder rack 1. The lifting mechanism 2 is drivingly connected with a lifting beam 3. The lifting mechanism 2 can drive the lifting beam 3 to make vertical lifting movement. A cylinder cover 4 is fixedly connected below the lifting beam 3. The cylinder cover 4 can rise and fall with the lifting beam 3. After the cylinder cover 4 is lowered, it can seal the top opening of the cylindrical container to form a closed dehumidification environment. After the cylinder cover 4 is raised, the cylindrical container can be replaced. The dehumidification mechanism 7 includes a suction pump 71. The suction pump 71 is fixedly installed on the lifting beam 3. The suction pump 71 is connected with the cylinder cover 4 through an input pipeline. The suction pump 71 is started after the cylinder cover 4 is closed. After the suction pump 71 is started, a vacuum suction force is formed to promote the outward extraction of hot steam (the just prepared paint is in a high temperature state and a large amount of hot steam is volatilized) to form a dehumidification effect. In order to improve the dehumidification effect, the stirring mechanism 5 is also designed. The stirring mechanism 5 is installed on the top opening of the cylindrical container. The stirring mechanism 5 is installed before the cylindrical container is placed on the cylinder rack 1. A stirring power assembly 6 is installed on the lifting beam 3. After the cylinder cover 4 is closed, the stirring power assembly 6 can be drivingly connected with the stirring mechanism 5 to form a stirring operation effect. Stirring can accelerate steam volatilization, so that the dehumidification operation efficiency is greatly improved. The paint dehumidification demand can be well met through the device.
[0023] As shown in Figure 1 and Figure 2 The cylinder rack 1 includes two parallel bottom supports 12. A gap is left between the two bottom supports 12 to facilitate the insertion of the forklift fork plate. The distance between the two bottom supports 12 is smaller than the diameter of the bottom of the cylindrical container. In this way, the cylindrical container can be stably placed on the two bottom supports 12. The positioning arc plate 11 is vertically connected to the two bottom supports 12. The positioning arc plate 11 is installed towards the direction in which the cylindrical container is loaded. The shape of the positioning arc plate 11 matches the shape of the cylindrical container. After the cylindrical container is loaded, the two are in close contact with each other to ensure accurate positioning of the cylindrical container. In this way, the cylinder cover 4 can be smoothly closed.
[0024] As shown in Figure 4As shown, the lifting mechanism 2 comprises a base 21, a top beam 22, a transmission screw rod 24 and a first motor 25, the top beam 22 is arranged in parallel above the base 21, two parallel arranged guide rods 23 are fixedly connected between the top beam 22 and the base 21, the transmission screw rod 24 is installed at the position between the two guide rods 23, the transmission screw rod 24 is rotatably installed, the first motor 25 is fixedly installed on the top beam 22, the output end of the first motor 25 is connected with the transmission screw rod 24, the lifting cross beam 3 is sleeved on the two guide rods 23 and is threadedly connected with the transmission screw rod 24, the first motor 25 can drive the transmission screw rod 24 to rotate, the guide rod 23 plays a guiding role for the movement of the lifting cross beam 3, under the condition that the transmission screw rod 24 rotates, the lifting cross beam 3 can move along the length direction of the guide rod 23, which is embodied as vertical lifting movement in the utility model.
[0025] As shown in the figure, Figure 3 As shown, the stirring mechanism 5 comprises a mounting ring 51, a central sleeve 52, a support rod 53 and a stirring main shaft 54, the size of the mounting ring 51 matches the size of the top opening of the cylindrical container, the mounting ring 51 can be sleeved and fixed on the top opening of the cylindrical container, the central sleeve 52 is arranged at the central position of the mounting ring 51, the mounting ring 51 is connected with the central sleeve 52 through a plurality of support rods 53, the support rod 53 plays a connecting and supporting role for the central sleeve 52, the stirring main shaft 54 is rotatably installed on the central sleeve 52, the stirring main shaft 54 is vertically installed, a plurality of uniformly distributed stirring blades 55 are connected to the side wall of the stirring main shaft 54, after the stirring mechanism 5 is installed, the stirring main shaft 54 and the stirring blades 55 can extend into the inside of the cylindrical container, under the condition that the stirring main shaft 54 rotates, the stirring blades 55 can stir the paint liquid, the traditional stirring mechanism 5 is directly connected with the power mechanism, the stirring mechanism 5 is designed in a split manner in the utility model, which has multiple advantages, firstly, the stirring mechanism 5 can be installed on the cylindrical container and move with the cylindrical container, so the lifting and lowering amplitude of the cover 4 does not need to be large, the lifting mechanism 2 can be designed to be small, thereby reducing the equipment cost, secondly, the stirring mechanism 5 can be matched with the cylindrical container, one stirring mechanism 5 is installed for each cylindrical container, when different cylindrical containers are replaced, only the operation of connecting the matched stirring mechanism 5 with the power mechanism again is needed, the production continuity is good, and the next batch of paint can be quickly subjected to the dehumidification operation (if the stirring mechanism 5 is fixed on the power mechanism, the stirring mechanism 5 needs to be cleaned first after each dehumidification operation, so the next batch of paint cannot be quickly subjected to the dehumidification operation, and the production continuity is not good).
[0026] As shown in the figure, Figure 1 And Figure 3As shown in the figure, the top portion of the stirring spindle 54 exceeds the central sleeve 52, the top of the stirring spindle 54 is provided with a polygonal transmission hole 541, the stirring power assembly 6 comprises a second motor 61, the second motor 61 is fixedly installed on the lifting cross beam 3, the output end of the second motor 61 is connected with a polygonal transmission shaft 62, the polygonal transmission shaft 62 is matched with the polygonal transmission hole 541 in size, during the closing process of the closing cover 4, the polygonal transmission shaft 62 can be inserted into the polygonal transmission hole 541 to form a transmission connection, so that when the second motor 61 is started, the rotation of the stirring spindle 54 and the stirring blade 55 can be driven, before the closing cover 4 is closed, the polygonal transmission shaft 62 can be partially inserted into the polygonal transmission hole 541, so as to ensure that after the closing cover 4 is closed, the stirring power assembly 6 can smoothly drive the stirring spindle 54, if it is found that the polygonal transmission shaft 62 cannot be inserted into the polygonal transmission hole 541 before closing, this may be caused by misalignment of the insertion angle, the angle adjusting tool 8 is designed to solve the above problems, two symmetrical bayonet grooves 542 are formed on the top outer wall of the stirring spindle 54, the angle adjusting tool 8 is matched with the stirring spindle 54, as shown in the figure, Figure 5 As shown in the figure, the angle adjusting tool 8 comprises a main fork rod 81, one end of the main fork rod 81 is connected with a branch fork 82, the other end is connected with a hand ring 83, the distance between the branch fork 82 and the main fork rod 81 is matched with the distance between the two bayonet grooves 542, the hand ring 83 is used for convenient handheld operation, the branch fork 82 can be forked onto the bayonet groove 542, the stirring spindle 54 can be rotated through the angle adjusting tool 8, so that the angle of the polygonal transmission hole 541 is aligned with the polygonal transmission shaft 62, so that the polygonal transmission shaft 62 can be smoothly inserted into the polygonal transmission hole 541, since the polygonal transmission shaft 62 should be partially inserted into the polygonal transmission hole 541 before the closing cover 4 is closed, therefore, the adjusting operation can be performed before the closing cover 4 is closed, to ensure that the polygonal transmission shaft 62 is smoothly connected, before the closing cover 4 is closed, there is still a visual observation field of view and a tool operation space, which can facilitate the worker to hold the angle adjusting tool 8 to operate.
[0027] As shown in the figure, Figure 1 As shown in the figure, the dehumidification mechanism 7 further comprises a condenser 72, the output end pipeline of the suction pump 71 is connected to the input end of the condenser 72, the hot steam extracted by the suction pump 71 cannot be directly discharged, but can be cooled and cooled through the condenser 72, and then discharged.
[0028] The above is only the preferred embodiment of the present application, the protection scope of the present application is not limited to the above-mentioned embodiments, any technical solution belonging to the idea of the present application is within the protection scope of the present application. It should be pointed out that for ordinary skilled in the art, some improvements and decorations without departing from the principle of the present application can also be considered as the protection scope of the present application.
Claims
1. A paint dehumidifying device characterized by comprising: The utility model provides a paint mixing device, including put cylinder frame (1), elevating system (2), stirring mechanism (5) and dehumidification mechanism (7), the paint container of the cylinder container that can be placed is installed on put cylinder frame (1), the locating arc plate (11) is installed to put cylinder frame (1), and the cylinder container is placed and fits the locating arc plate (11), elevating system (2) is installed in put cylinder frame (1) side, driving connection has elevating crossbeam (3) on elevating system (2), elevating system (2) can drive elevating crossbeam (3) to do vertical lifting movement, fixedly connected with the cylinder cover (4) below elevating crossbeam (3), the top opening of cylinder container can be capped after stirring mechanism (5) is installed to the top opening of cylinder container, the top opening of cylinder container can be capped after the cylinder cover (4) drops, stirring power assembly (6) is installed on elevating crossbeam (3), stirring power assembly (6) can be transmission connection with stirring mechanism (5), the suction pump (71) of dehumidification mechanism (7) is fixedly installed on elevating crossbeam (3), and the input end pipeline of suction pump (71) is communicated with cylinder cover (4).
2. The paint dehumidifying device according to claim 1, wherein The put cylinder frame (1) includes two parallel bottom supports (12) with a gap between them, and the distance between the two bottom supports (12) is smaller than the diameter of the cylinder bottom of the cylinder container. The locating arc plate (11) is vertically connected to the two bottom supports (12).
3. The paint dehumidifying device according to claim 1, wherein The elevating system (2) includes a base (21), a top beam (22), a transmission screw (24), and a first motor (25). The top beam (22) is arranged parallel above the base (21). Two parallel guide rods (23) are fixedly connected between the top beam (22) and the base (21). The transmission screw (24) is installed between the two guide rods (23). The transmission screw (24) is rotatably installed. The first motor (25) is fixedly installed on the top beam (22). The output end of the first motor (25) is connected to the transmission screw (24). The elevating crossbeam (3) is threaded onto the two guide rods (23) and is in threaded connection with the transmission screw (24).
4. The paint dehumidifying device according to claim 1, wherein The stirring mechanism (5) includes a mounting ring (51), a central sleeve (52), support rods (53), and a stirring main shaft (54). The size of the mounting ring (51) matches the size of the top opening of the cylinder container. The mounting ring (51) can be fixedly fitted on the top opening of the cylinder container. The central sleeve (52) is arranged at the central position of the mounting ring (51). The mounting ring (51) and the central sleeve (52) are connected by a plurality of support rods (53). The stirring main shaft (54) is rotatably installed in the central sleeve (52). The stirring main shaft (54) is vertically installed. A plurality of evenly distributed stirring blades (55) are connected to the side wall of the stirring main shaft (54).
5. The paint dehumidifying device according to claim 4, wherein The top portion of the stirring spindle (54) is beyond the central sleeve (52), and the top of the stirring spindle (54) is provided with a polygonal transmission hole (541); the stirring power assembly (6) comprises a second motor (61), the second motor (61) is fixedly installed on the lifting cross beam (3), and the output end of the second motor (61) is connected with a polygonal transmission shaft (62); the polygonal transmission shaft (62) is matched with the polygonal transmission hole (541) in size.
6. The paint dehumidifying device according to claim 5, wherein Before the cover of the combined cylinder cover (4), the polygonal transmission shaft (62) can be partially inserted into the polygonal transmission hole (541).
7. The paint dehumidifying device according to claim 5, wherein Two symmetrical bayonet slots (542) are formed in the outer wall of the top of the stirring spindle (54), and the stirring spindle (54) is matched with an angle adjusting tool (8); the angle adjusting tool (8) comprises a main fork rod (81), one end of the main fork rod (81) is connected with a branch fork (82), and the other end is connected with a hand ring (83); the distance between the branch fork (82) and the main fork rod (81) is matched with the distance between the two bayonet slots (542).
8. The paint dehumidifying device according to claim 1, wherein The dehumidification mechanism (7) further comprises a condenser (72), and the output pipeline of the suction pump (71) is connected to the input end of the condenser (72).