Weighing device for inorganic anticorrosive paint

By designing a weighing device for inorganic anticorrosion coatings containing cleaning components, the problem of the inability to effectively clean the coating residues caused by traditional devices is solved, and high-precision weighing and good working environment maintenance are achieved.

CN222825130UActive Publication Date: 2025-05-02TIELING SHANHAI ENVIRONMENTAL PROTECTION NEW MATERIALS CO LTD
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Patent Information

Application Number
CN202421674840.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-16
Publication Date
2025-05-02
Estimated Expiration
2034-07-16

AI Technical Summary

Technical Problem

Traditional weighing devices cannot be effectively cleaned after weighing, resulting in the accumulation of inorganic anticorrosion coating residues, affecting the accuracy of the measurement results, and may contaminate newly weighed coatings.

Method used

A weighing device for inorganic anticorrosion coatings is designed, including a support plate, a weighing sensor, a weighing table, a placing rack, an electric claw and a cleaning assembly. Through the combination of the screw and the electric claw, the placement plate can be moved under the cleaning assembly, and the water spray and air pipes are used for comprehensive flushing and drying, and the accumulated paint residue can be cleaned.

Benefits of technology

It effectively avoids the impact of paint residue on the measurement results, improves the accuracy of weighing, and maintains the cleanliness of the working environment by collecting sewage and residues in a timely manner. The setting of the trachea further improves the cleaning effect and ensures the reliability of subsequent weighing operations.

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Abstract

The utility model provides a weighing device for inorganic anticorrosive paint, which comprises a supporting plate and a weighing sensor, a weighing platform is arranged on the supporting plate, the weighing sensor is mounted on the weighing platform, a placing frame is arranged above the weighing platform and is in contact with the weighing sensor, and a placing disc is clamped on the placing frame; lead screws and electric claws are arranged on the two sides of the weighing platform, multiple sets of connecting plates are arranged on the supporting plate, the lead screws are arranged in the two sets of connecting plates in a penetrating mode, and the lead screws are sleeved with the electric claws; a cleaning assembly is arranged on the supporting plate, and a collecting funnel is arranged on the supporting plate. According to the weighing device, the placing disc can be grabbed through the electric claw, and the electric claw drives the placing disc to move together through rotation of the lead screw; the cleaning assembly is arranged on the supporting plate, the placing disc is moved to the position below the cleaning assembly, comprehensive flushing can be conducted on the placing disc, accumulated inorganic anti-corrosion coating residues are effectively cleaned away, the influence of the residues on the measuring result is avoided, and therefore the weighing precision is improved.
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Description

Technical Field

[0001] The utility model belongs to the technical field of weighing devices, and more specifically, particularly relates to a weighing device for inorganic anticorrosive coatings. Background Art

[0002] Inorganic anti-corrosion coating is a new type of environmentally friendly coating that can react quickly with iron atoms on the surface of steel structures to generate inorganic polymer anti-corrosion coatings with both physical and chemical protection, extending the service life of steel structures. However, in the use of inorganic anti-corrosion coatings, it is necessary to ensure the accurate use and proportioning of inorganic anti-corrosion coatings so that they can give full play to their due performance and achieve the most ideal use effect. This requires the use of weighing devices that can accurately measure the amount of inorganic anti-corrosion coatings and provide reliable data support for accurate mixing. However, traditional weighing devices cannot be effectively cleaned after weighing. Long-term use can easily lead to the accumulation of inorganic anti-corrosion coating residues on the weighing device, which will not only affect the accuracy of the weighing device and cause deviations in its measurement results, but may also mix with the subsequently weighed inorganic anti-corrosion coatings, thereby affecting the quality and performance of the new coating. Utility Model Content

[0003] In order to solve the above-mentioned technical problems, the utility model provides a weighing device for inorganic anti-corrosion coatings, so as to solve the technical problems in the prior art that traditional weighing devices do not have an effective cleaning function, which easily leads to the accumulation of inorganic anti-corrosion coating residues, causing deviations in measurement results and reducing the weighing accuracy; at the same time, it also leads to the contamination of the newly weighed coating, reducing the quality and performance of the coating.

[0004] The purpose and function of the weighing device for inorganic anticorrosive coatings of the utility model are achieved by the following specific technical means:

[0005] A weighing device for inorganic anticorrosive coatings comprises a support plate and a weighing sensor, wherein a weighing platform is arranged on the support plate, the weighing sensor is mounted on the weighing platform, a placement rack is arranged above the weighing platform, the placement rack is in contact with the weighing sensor, and a placement plate is clamped on the placement rack; screw rods and electric claws are arranged on both sides of the weighing platform, a plurality of groups of connecting plates are arranged on the support plate, the two ends of the screw rod are respectively inserted into the connecting plates, the electric claw is sleeved on the screw rod and is slidably connected to the screw rod; a cleaning component is arranged on the support plate, and a collecting funnel is arranged on the support plate corresponding to the cleaning component.

[0006] According to a preferred embodiment, the cleaning component includes a support frame, which is located above the collecting funnel and is detachably connected to the support plate by screws; a water spray component is arranged below the support frame, the water spray component is connected to the support frame, the water spray component is connected to an external water pump through a connecting pipe, and a plurality of groups of nozzles are also arranged on the water spray component.

[0007] According to a preferred embodiment, a plurality of groups of connecting studs are arranged on the water spraying member, the supporting frame is provided with connecting holes corresponding to the connecting studs, and the connecting studs are provided with connecting nuts passing through the connecting holes.

[0008] According to a preferred embodiment, air pipes are provided on both sides of the support frame, the air pipes are connected to an external fan through the connecting pipe, and a blowing port is provided at the bottom of the air pipe.

[0009] According to a preferred embodiment, a protective cover is arranged above the support plate, the protective cover is connected to the support plate to form a protective cavity, and the cleaning component is located in the protective cavity; a water retaining plate is arranged on the support plate, and the water retaining plate is located in the opening surface of the protective cover.

[0010] According to a preferred embodiment, the two groups of screw rods are connected by a transmission belt, a motor is arranged on the support plate, and the motor shaft end is connected to one group of the screw rods; a sliding rod is arranged between the two groups of connecting plates, and the electric claw sleeve is arranged on the sliding rod and is slidably connected to the sliding rod.

[0011] According to a preferred embodiment, a plurality of connecting sleeves are arranged on the weighing platform, and a plurality of connecting columns are arranged on the bottom surface of the placing rack, and the connecting columns are clamped in the connecting sleeves; the connecting columns are provided with through grooves, and the connecting sleeves are provided with sliding grooves corresponding to the through grooves, and the limit blocks are clamped in the through grooves and the sliding grooves, and springs are arranged in the connecting columns and the connecting sleeves.

[0012] According to a preferred embodiment, magnets are provided on the top surface of the placement rack and the bottom surface of the placement plate, and clamping plates are provided at both ends of the placement plate, and the clamping plates can be clamped between the electric claws.

[0013] Compared with the prior art, the utility model has the following beneficial effects:

[0014] 1. Two sets of screw rods are arranged on the support plate, and electric claws are sleeved on the screw rods. The rotation of the screw rods can make the electric claws move linearly. During use, the electric claws can firmly grasp the placement plate and drive the placement plate to move together. A cleaning component is arranged on the support plate. Through the cooperation of the screw rod and the electric claw, the placement plate can be moved under the cleaning component. The cleaning component can use the nozzle symmetry table and other parts on the water spray part for comprehensive flushing, effectively clean up the accumulated inorganic anti-corrosion coating residues, avoid the influence of the residues on the measurement results, and thus improve the weighing accuracy. At the same time, the collection funnel can collect the sewage and residues after flushing in time to keep the working environment clean. In addition, the setting of the air pipe can blow away the residual water after flushing, further improve the cleaning effect, and provide reliable guarantee for subsequent weighing operations.

[0015] 2. The protective cover is connected to the support plate to form a protective cavity. The cleaning component is in the protective cavity. A water baffle is also provided on the support plate. The waterproof plate is located in the opening surface of the protective cover. The setting of the protective cover and the water baffle effectively prevents the splash of sewage during the cleaning process and protects the surrounding environment. The connection sleeve on the weighing platform cooperates with the connection column on the bottom of the placement rack, and the setting of the spring makes the placement rack have a certain buffering performance and enhances the stability of the weighing process. At the same time, magnets are provided on the corresponding surfaces of the placement rack and the placement plate, which can generate a stable and strong magnetic force. Through this magnetic effect, a tight and stable connection can be achieved between the placement plate and the placement rack, further ensuring the reliability and accuracy of the weighing process. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 It is a schematic diagram of the structure of the utility model after assembly.

[0017] Figure 2 It is a schematic diagram of the structure of the utility model after being disassembled.

[0018] Figure 3 yes Figure 2 A partial enlarged view of area a.

[0019] Figure 4 It is a structural schematic diagram of the support plate.

[0020] In the figure, the corresponding relationship between the component names and the figure numbers is as follows:

[0021] 11. Support plate; 12. Weighing platform; 13. Connecting plate; 14. Collecting funnel; 15. Water retaining plate; 16. Connecting sleeve; 17. Slide; 21. Weighing sensor; 31. Placement rack; 32. Placement plate; 33. Protective cover; 34. Connecting column; 35. Through slot; 36. Limit block; 37. Card; 41. Screw rod; 42. Electric claw; 43. Transmission belt; 44. Slide rod; 51. Support rack; 52. Water spraying parts; 53. Connecting studs; 54. Connecting holes; 55. Air pipe. DETAILED DESCRIPTION

[0022] The following is a further detailed description of the implementation of the present invention in conjunction with the accompanying drawings and examples. The following examples are used to illustrate the technical solution of the present invention, but cannot be used to limit the protection scope of the present invention.

[0023] Example:

[0024] like Figure 1 , 2 As shown in Figures 4 and 5, the utility model provides a weighing device for inorganic anticorrosive coatings, including a support plate 11 and a weighing sensor 21. A weighing platform 12 is provided on the support plate 11, and the weighing sensor 21 is installed on the weighing platform 12, thereby realizing the weighing function. A placement rack 31 is provided above the weighing platform 12, and the placement rack 31 is in contact with the weighing sensor 21 to ensure that the weight can be pressed on the weighing sensor 21. At the same time, a placement plate 32 is clamped on the placement rack 31, and the placement plate 32 is convenient for containing the coating. A screw rod 41 and an electric claw 42 are provided on both sides of the weighing platform 12. A plurality of connecting plates 13 are provided on the support plate 11, and the two ends of the screw rod 41 are inserted into the interior of these connecting plates 13, so as to realize the stable support and rotation of the screw rod 41. The electric claw 42 is sleeved on the screw rod 41 and can realize a smooth sliding connection with the screw rod 41. When the screw rod 41 rotates, the electric claw 42 can make linear motion along the screw rod 41, which provides great convenience for subsequent operations. A cleaning component is provided on the support plate 11, and the cleaning component can rinse the placement plate 32 to effectively avoid the accumulation of paint residues. At the same time, in order to better deal with the waste and sewage generated during the cleaning process, the support plate 11 is also provided with a collection funnel 14 corresponding to the cleaning component. Through the collection funnel 14, the sewage and residue generated during the cleaning process can be collected in time to prevent them from polluting the surrounding environment, and also make the entire cleaning process more efficient and orderly.

[0025] The cleaning assembly includes a support frame 51, which is located above the collecting funnel 14 and is detachably connected to the support plate 11 by screws, which not only ensures the stability of the connection, but also facilitates disassembly and maintenance when necessary. A water spraying member 52 is arranged below the support frame 51, and the water spraying member 52 is connected to the support frame 51. The water spraying member 52 is connected to an external water pump through a special connecting pipe, so that sufficient water supply can be obtained. In addition, a plurality of nozzles are specially equipped on the water spraying member 52, which can spray water at a suitable pressure and angle to ensure comprehensive and efficient flushing of the parts to be cleaned. In order to further enhance the reliability of the connection between the water spraying member 52 and the support frame 51, a plurality of connecting studs 53 are arranged on the water spraying member 52, and connecting holes 54 are opened on the support frame 51 corresponding to these connecting studs 53. In the actual installation process, the connection stud 53 passes through the corresponding connection hole 54, and then a connection nut is sleeved on the outside so that the water spraying member 52 can be firmly fixed on the support frame 51, and can remain stable and not loose even in the long-term use process and when facing a large water pressure shock. The various actual needs of the cleaning component during operation are fully considered, which not only ensures the smooth progress of the cleaning work, but also improves the durability and reliability of the entire cleaning component, providing a guarantee for achieving efficient and stable cleaning effects.

[0026] Air pipes 55 are provided on both sides of the support frame 51, and the air pipes 55 are connected to the external blower through a connecting pipe, so that a stable gas supply can be obtained. A blowing port is provided at the bottom of the air pipe 55, and the blowing port can blow out the gas evenly and forcefully. When further drying treatment is required, the air pipe 55 can play an important role. The gas blown out through the blowing port can quickly dry the residual moisture after cleaning, effectively improving the cleaning effect and the efficiency of subsequent work. A protective cover 33 is also provided above the support plate 11, and the protective cover 33 is connected to the support plate 11 to form a relatively independent protective cavity. It can provide good protection for the internal cleaning components to avoid interference and damage to them by external factors; it can also prevent the splashes, water mist, etc. generated during the cleaning process from splashing everywhere, ensuring the cleanliness and safety of the surrounding environment. The cleaning component is located in this protective cavity and can work in a relatively stable and safe environment. At the same time, a water baffle 15 is also provided on the support plate 11, and the water baffle 15 is placed in the opening surface of the protective cover 33. The water retaining plate 15 can effectively prevent the sewage that may splash out of the protection chamber during the cleaning process, further enhancing the protection effect on the surrounding environment. It cooperates with the protective cover 33 to form a defense line, which minimizes the adverse effects that the cleaning work may bring to the surrounding environment.

[0027] The two groups of screw rods 41 are connected by a transmission belt 43, which has good transmission performance and can ensure that the movement between the two groups of screw rods 41 remains synchronized and coordinated. When one group of screw rods 41 rotates, the other group of screw rods 41 can also rotate accordingly through the action of the transmission belt 43, thereby achieving overall collaborative work. A motor is arranged on the support plate 11, and the shaft end of the motor is connected to one group of screw rods 41. As a power source, the motor can provide a strong driving force for the rotation of the screw rod 41. When the motor is started, the power output by the motor is transmitted to the screw rod 41 connected thereto through the shaft end, prompting the screw rod 41 to start rotating, thereby driving the relevant components of the entire device to perform corresponding actions. This motor-driven method has the characteristics of high efficiency and stability, and can provide reliable guarantee for the normal operation of the device. A slide bar 44 is arranged between the two groups of connecting plates 13, and the slide bar 44 plays a guiding and supporting role. The electric claw 42 is sleeved on the slide bar 44 and can achieve a smooth sliding connection with the slide bar 44. When the screw rod 41 rotates, the electric claw 42 slides along the slide bar 44 under the drive of the screw rod 41. The existence of the slide bar 44 ensures that the movement trajectory of the electric claw 42 is straight and stable, and there will be no deviation or shaking. It cooperates with the screw rod 41 to make the movement of the electric claw 42 more accurate and reliable.

[0028] like Figure 2 , 3 As shown, multiple groups of connecting sleeves 16 are arranged on the weighing platform 12, and multiple groups of connecting columns 34 are correspondingly arranged on the placing frame 31, and the connecting columns 34 can be clamped inside the connecting sleeves 16, thereby realizing the connection between the weighing platform 12 and the placing frame 31. A through groove 35 is provided on the connecting column 34, and the connecting sleeve 16 is provided with a slide groove 17 corresponding to the through groove 35. In order to further enhance the stability and reliability of the connection, a limit block 36 is also provided, and this limit block 36 can be clamped in the through groove 35 and the slide groove 17. The relative movement between the connecting column 34 and the connecting sleeve 16 is effectively limited, ensuring that they will not be accidentally loosened or separated during the working process. In addition, a spring is also arranged inside the connecting column 34 and the connecting sleeve 16. The existence of the spring plays an important role in buffering and shock absorption. When the placing frame 31 is subjected to external impact or pressure, the spring can absorb and disperse these forces through its own elastic deformation, thereby protecting the placing frame 31 and other components connected thereto from damage. At the same time, the spring can also assist the connection between the connecting column 34 and the connecting sleeve 16 to a certain extent, making it tighter and more stable.

[0029] Magnets are provided on the top surface of the placement rack 31 and the bottom surface of the placement tray 32. The presence of the magnets allows the placement tray 32 to be firmly adsorbed on the placement rack 31, and even in some special cases, it can ensure that the placement tray 32 will not fall or shift easily. In addition, clamping plates 37 are provided at both ends of the placement tray 32, which can be clamped between the electric claws 42. When the placement tray 32 needs to be grabbed or moved, the electric claws 42 can control and operate the placement tray 32 by clamping the clamping plates 37, which greatly improves work efficiency and accuracy.

[0030] The specific usage and function of this embodiment are as follows:

[0031] When in use, first place the coating to be weighed on the placement plate 32, and the placement plate 32 is firmly adsorbed on the placement frame 31 through a magnet. Then, the weighing sensor 21 can realize the weighing function. Then, start the motor, the motor drives one set of screw rods 41 to rotate, and the other set of screw rods 41 rotate synchronously through the action of the transmission belt 43. At this time, the electric claw 42 moves in a straight line under the joint action of the screw rod 41 and the slide rod 44. When it is necessary to grab or move the placement plate 32, the electric claw 42 clamps the card plate 37 at both ends of the placement plate 32 to perform corresponding operations. After the weighing is completed, if the placement plate 32 needs to be cleaned, the external water pump can be turned on to make the water spraying part 52 spray water through multiple groups of nozzles to rinse it, and at the same time, the external fan can be turned on to make the air pipe 55 blow air through the blowing port to blow dry the residual water, and the sewage and residue generated during the cleaning process are collected by the collecting funnel 14. The whole device can efficiently and stably complete the weighing and related operations of inorganic anticorrosive coatings through the coordinated work of various components.

[0032] The basic principle and main features of the present invention and the advantages of the present invention are shown and described above. For those skilled in the art, it is obvious that the present invention is not limited to the details of the above exemplary embodiments.

Claims

1. A weighing device for an inorganic anticorrosive coating, comprising a support plate (11) and a weighing sensor (21), characterized in that: A weighing platform (12) is arranged on the support plate (11), the weighing sensor (21) is mounted on the weighing platform (12), a placement rack (31) is arranged above the weighing platform (12), the placement rack (31) is in contact with the weighing sensor (21), and a placement plate (32) is clamped on the placement rack (31); screw rods (41) and electric claws (42) are arranged on both sides of the weighing platform (12), a plurality of groups of connecting plates (13) are arranged on the support plate (11), two ends of the screw rod (41) are respectively inserted into the connecting plates (13), the electric claws (42) are sleeved on the screw rod (41) and are slidably connected to the screw rod (41); a cleaning component is arranged on the support plate (11), and a collecting funnel (14) is arranged on the support plate (11) corresponding to the cleaning component.

2. The weighing device for inorganic anticorrosive coating according to claim 1, characterized in that: The cleaning assembly comprises a support frame (51), the support frame (51) is located above the collecting funnel (14), and is detachably connected to the support plate (11) via screws; a water spraying member (52) is arranged below the support frame (51), the water spraying member (52) is connected to the support frame (51), the water spraying member (52) is connected to an external water pump via a connecting pipe, and a plurality of groups of spray heads are also arranged on the water spraying member (52).

3. The weighing device for inorganic anticorrosive coating according to claim 2, characterized in that: The water spraying member (52) is provided with a plurality of connecting studs (53), the supporting frame (51) is provided with connecting holes (54) corresponding to the connecting studs (53), and the connecting studs (53) pass through the connecting holes (54) and are sleeved with connecting nuts.

4. The weighing device for inorganic anticorrosive coating according to claim 3, characterized in that: Air pipes (55) are provided on both sides of the support frame (51), and the air pipes (55) are connected to an external fan through the connecting pipe. An air blowing port is provided at the bottom of the air pipe (55).

5. The weighing device for inorganic anticorrosive coating according to claim 1, characterized in that: A protective cover (33) is arranged above the support plate (11), the protective cover (33) is connected to the support plate (11) to form a protective cavity, and the cleaning component is located in the protective cavity; a water retaining plate (15) is arranged on the support plate (11), and the water retaining plate (15) is located in the opening surface of the protective cover (33).

6. The weighing device for inorganic anticorrosive coating according to claim 5, characterized in that: The two groups of screw rods (41) are connected via a transmission belt (43); a motor is provided on the support plate (11); the motor shaft end is connected to one group of the screw rods (41); a sliding rod (44) is provided between the two groups of connecting plates (13); the electric claw (42) is sleeved on the sliding rod (44) and is slidably connected to the sliding rod (44).

7. The weighing device for inorganic anticorrosive coating according to claim 1, characterized in that: The weighing platform (12) is provided with a plurality of connecting sleeves (16), and the bottom surface of the placing frame (31) is provided with a plurality of connecting columns (34), and the connecting columns (34) are clamped in the connecting sleeves (16); the connecting columns (34) are provided with through grooves (35), and the connecting sleeves (16) are provided with sliding grooves (17) corresponding to the through grooves (35), and the limiting blocks (36) are clamped in the through grooves (35) and the sliding grooves (17), and springs are provided in the connecting columns (34) and the connecting sleeves (16).

8. The weighing device for inorganic anticorrosive coating according to claim 7, characterized in that: Magnets are provided on the top surface of the placement rack (31) and the bottom surface of the placement plate (32). Clamping plates (37) are provided at both ends of the placement plate (32). The clamping plates (37) can be clamped between the electric claws (42).