Multi-layer bulk cargo scale anti-blocking material combing equipment

By designing anti-blocking combing equipment in multi-layer bulk scales, and using components such as servo motors and vibrating motors for agitation, heating and vibration, the problems of discharge port blockage and material adhesion are solved, and the processing efficiency of materials is improved.

CN222951839UActive Publication Date: 2025-06-06DONGGUAN GUOFENG GRAIN & OIL CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202421897418.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-07
Publication Date
2025-06-06
Estimated Expiration
2034-08-07

AI Technical Summary

Technical Problem

When the existing multi-layer bulk scale is used, the discharge port of the silo body is prone to clogging, and the materials adhered to the silo body cannot be transported smoothly, which affects the processing efficiency of the material.

Method used

A multi-layer bulk material scale anti-blocking combing equipment is designed, using servo motors, vibration motors, transmission rods, cross rods, heating plates and other components. Through agitation, heating and vibration, the discharge ports are avoided and the adhesion of materials are ensured to smoothly transport the materials.

Benefits of technology

It effectively avoids clogging of the bin discharge port, ensures smooth transportation and processing of materials, and improves the processing efficiency of materials.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN222951839U_ABST
    Figure CN222951839U_ABST
Patent Text Reader

Abstract

The utility model relates to the technical field of bulk material scales, in particular to a multi-layer bulk material scale anti-blocking material combing device which comprises a bulk material scale frame, one side of the bulk material scale frame is in bolted connection with a bin body for conveying materials, the outside of the bin body is in bolted connection with a machine frame, and one side of the machine frame is in bolted connection with a servo motor for providing power. The power output end of the servo motor is in key connection with a coupler, the inner side of the coupler is in key connection with a transmission rod for stirring materials in the bin body, a cross rod A and a cross rod B for beating the materials are welded to the outer portion of the transmission rod, and the cross rod A is located on the upper side of the cross rod B; through the servo motor, the vibration motor, the transmission rod, the cross rod A, the cross rod B, the fixing plate, the heating plate, the driving rod and the arc plate, the problems that when an existing multi-layer bulk material scale is used, a discharge port of a bin body on the bulk material scale is prone to being blocked, and meanwhile materials adhered to the bin body cannot be conveyed smoothly are solved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The utility model relates to the technical field of bulk material scales, in particular to anti-blocking combing equipment for multi-layer bulk material scales. Background Art

[0002] Bulk material scale, also known as hopper scale, is an electronic weighing scale composed of equal-volume hopper, bracket and pneumatic valve. Bulk material scale can divide a batch of bulk materials into several discontinuous loads, weigh each weight in turn, and then add up these load values ​​to get the total material value. The material weight is converted into an electrical signal after acting on the sensor, and then amplified by the amplifier in the measuring circuit for display, recording and data processing. Bulk material scale can measure gross weight, tare weight and net weight, and has automatic zeroing and weighing data processing functions.

[0003] However, when the existing multi-layer bulk material scale is used, the material is usually placed in the bin body on the bulk material scale. However, the material becomes wet and agglomerated in the bin body, and the material cannot be smoothly discharged from the discharge port at the bottom of the bin body. At the same time, some of the material will adhere to the stirring mechanism and the inner wall of the bin body, and the material cannot be smoothly transported downward, which has a certain impact on the processing efficiency of the material. Therefore, a multi-layer bulk material scale anti-blocking combing device is provided. Utility Model Content

[0004] The main purpose of the utility model is to provide a multi-layer bulk material scale anti-blocking combing equipment. The utility model solves the problem that when the existing multi-layer bulk material scale is in use, the discharge port of the silo body on the bulk material scale is easily blocked and the material adhered to the silo body cannot be smoothly transported through the servo motor, vibration motor, transmission rod, cross bar A, cross bar B, fixed plate, heating plate, drive rod and arc plate.

[0005] The technical solution adopted by the utility model to solve its technical problems is a multi-layer bulk material scale anti-blocking combing equipment, including a bulk material scale frame, one side of the bulk material scale frame is bolted to a bin body for material transportation, the outside of the bin body is bolted to a frame, and one side of the frame is bolted to a servo motor for providing power, the power output end of the servo motor is keyed to a coupling, and the inner side of the coupling is keyed to a transmission rod for stirring the material in the bin body, the outside of the transmission rod is welded with a cross bar A and a cross bar B for beating the material, and the cross bar A is located on the upper side of the cross bar B, and the ends of the cross bars A and B away from the transmission rod are welded with arc plates for scraping the inner wall of the bin body, the outside of the transmission rod is screwed to a vibration motor for driving the transmission rod to vibrate, the outside of the transmission rod is screwed to a driving rod for stirring the bottom of the bin body, the outside of the cross bar A is welded with a fixing plate connected to the cross bar B, and a heating plate for heating the material in the bin body is placed inside the fixing plate.

[0006] By adopting the above technical solution, when the material enters the bin on the bulk material scale frame, the servo motor on the frame converts the received electrical energy into mechanical energy, the coupling on the servo motor drives the transmission rod to rotate, the crossbar A and the crossbar B outside the transmission rod stir the material in the bin, and then the heating plate between the crossbar A and the crossbar B heats the material in the bin, so as to facilitate the drying of the material in the bin and disperse the agglomerated material. At the same time, the driving rod at the bottom end of the transmission rod stirs the discharge port at the bottom of the bin, so as to avoid the discharge port of the bin being blocked.

[0007] When the transmission rod drives the crossbar A and the crossbar B to stir the materials in the bin, the arc plates outside the crossbar A and the crossbar B scrape the inner wall of the bin, so as to facilitate the cleaning of the materials adhering to the inside of the bin;

[0008] When the material in the silo is transported from the discharge port of the silo, the external controller turns on the vibration motor switch outside the transmission rod, and the exciting block in the vibration motor generates an exciting force to make the transmission rod vibrate, and then the cross bar A, the cross bar and the fixed plate surface outside the transmission rod vibrate, and then the cross bar A and the cross bar B drive the arc plate to vibrate, so that the material adhered to the surface of the transmission rod, cross bar A, cross bar B, the fixed plate and the arc plate is cleaned.

[0009] Specifically, a temperature measuring probe for measuring the temperature of the material in the bin is fixed by screws on the surface of the transmission rod, and a temperature controller for controlling the temperature of the heating plate is fixed by screws on the outside of the bin.

[0010] By adopting the above technical solution, when the heating plate in the fixed plate heats the material in the bin, the temperature measuring probe outside the transmission rod measures the temperature of the material in the bin, and then transmits the measured temperature signal to the temperature controller outside the bin. When the measured temperature exceeds the set temperature, the temperature controller controls the temperature of the heating plate, thereby facilitating the control of the temperature of the material in the bin.

[0011] Specifically, a support plate for improving the stability of the frame is welded on the inner side of the frame, and a bearing sleeve for stabilizing the rotation of the transmission rod is clamped on the inner side of the support plate.

[0012] By adopting the above technical solution, when the coupling on the servo motor drives the transmission rod to rotate, the transmission rod rotates in the bearing sleeve on the support plate, thereby improving the stability of the rotation of the transmission rod.

[0013] Specifically, the cross bars A and the cross bars B outside the transmission rod are each provided with three groups, and the arc plates provided outside the cross bars A and the cross bars B are each provided with three groups.

[0014] By adopting the above technical solution, the crossbar A and the crossbar B stir the materials in the bin, and the arc plates outside the crossbar A and the crossbar B clean the materials adhered to the inner wall of the bin.

[0015] Specifically, the input ends of the servo motor, the vibration motor and the heating plate are all electrically connected to the power supply end of the external power supply.

[0016] By adopting the above technical solution and connecting to an external power source, the electrical device can work normally.

[0017] Beneficial effects of the utility model:

[0018] (1) The utility model discloses a multi-layer bulk material scale anti-blocking combing device. When the material enters the bin on the bulk material scale frame, the servo motor on the frame converts the received electrical energy into mechanical energy. The coupling on the servo motor drives the transmission rod to rotate. The crossbars A and B outside the transmission rod stir the material in the bin. Then, the heating plate between the crossbars A and B heats the material in the bin, thereby facilitating the drying of the material in the bin and dispersing the agglomerated material. At the same time, the driving rod at the bottom end of the transmission rod stirs the discharge port at the bottom of the bin, thereby preventing the discharge port from being blocked.

[0019] (2) In the anti-blocking combing device of the multi-layer bulk material scale described in the utility model, when the transmission rod drives the crossbar A and the crossbar B to stir the materials in the bin, the arc plates outside the crossbar A and the crossbar B scrape the inner wall of the bin, thereby facilitating the cleaning of the materials adhering to the inside of the bin;

[0020] (3) The utility model discloses a multi-layer bulk material weighing anti-blocking combing device. When the material in the bin is transported from the discharge port of the bin, the external controller turns on the vibration motor switch outside the transmission rod. The exciting block in the vibration motor generates an exciting force, causing the transmission rod to vibrate. Then, the cross bar A, the cross bar and the fixed plate surface outside the transmission rod vibrate. Subsequently, the cross bar A and the cross bar B drive the arc plate to vibrate, so that the material adhered to the transmission rod, the cross bar A, the cross bar B, the fixed plate and the arc plate surface is cleaned.

[0021] (4) In the utility model, a multi-layer bulk material weighing anti-blocking combing device is described. When the heating plate in the fixed plate heats the material in the bin, the temperature measuring probe outside the transmission rod measures the temperature of the material in the bin, and then transmits the measured temperature signal to the temperature controller outside the bin. When the measured temperature exceeds the set temperature, the temperature controller controls the temperature of the heating plate, thereby facilitating the control of the temperature of the material in the bin. BRIEF DESCRIPTION OF THE DRAWINGS

[0022] The utility model is further described below in conjunction with the accompanying drawings and embodiments.

[0023] Figure 1 This is a schematic diagram of the overall structure of a multi-layer bulk material scale anti-blocking combing device of the utility model;

[0024] Figure 2 This is a schematic diagram of the internal structure of a bin of a multi-layer bulk material scale anti-blocking combing device of the utility model;

[0025] Figure 3 This is a schematic diagram of the internal structure of a fixed plate of a multi-layer bulk material scale anti-blocking combing device of the utility model;

[0026] In the figure: 1. servo motor; 2. coupling; 3. bearing sleeve; 4. support plate; 5. vibration motor; 6. arc plate; 7. fixed plate; 8. warehouse body; 9. temperature controller; 10. temperature probe; 11. heating plate; 12. transmission rod; 13. cross bar A; 14. cross bar B; 15. driving rod; 16. frame; 17. bulk material scale frame. DETAILED DESCRIPTION

[0027] In order to make the technical means, creative features, objectives and effects achieved by the present invention easy to understand, the present invention is further described below in conjunction with specific implementation methods.

[0028] In order to avoid the blockage of the discharge port of the bin body 8, as an embodiment of the present utility model, Figure 1 , Figure 2 and Figure 3 As shown, a multi-layer bulk material scale anti-blocking combing device described in the utility model includes a bulk material scale frame 17, one side of the bulk material scale frame 17 is bolted to a bin body 8 for material conveying, the outside of the bin body 8 is bolted to a frame 16, and one side of the frame 16 is bolted to a servo motor 1 for providing power, the power output end of the servo motor 1 is keyed to a coupling 2, and the inner side of the coupling 2 is keyed to a transmission rod 12 for stirring the material in the bin body 8, and the outside of the transmission rod 12 is welded with a cross bar A13 and a cross bar A14 for beating the material. Rod B14, and cross bar A13 is located on the upper side of cross bar B14, the ends of cross bar A13 and cross bar B14 away from the transmission rod 12 are welded with arc plates 6 for scraping the inner wall of the bin body 8, the external screws of the transmission rod 12 are fixed with a vibration motor 5 for driving the transmission rod 12 to vibrate, the external bottom end of the transmission rod 12 is fixed with a driving rod 15 for stirring the bottom of the bin body 8, the external side of the cross bar A13 is welded with a fixing plate 7 connected to the cross bar B14, and the internal side of the fixing plate 7 is provided with a heating plate 11 for heating the material in the bin body 8.

[0029] When in use, after the material enters the bin 8 on the bulk material scale frame 17, the servo motor 1 on the frame 16 converts the received electrical energy into mechanical energy, and the coupling 2 on the servo motor 1 drives the transmission rod 12 to rotate, and the crossbar A13 and the crossbar B14 outside the transmission rod 12 stir the material in the bin 8, and then the heating plate 11 between the crossbar A13 and the crossbar B14 heats the material in the bin 8, so as to facilitate the drying of the material in the bin 8 and disperse the agglomerated material. At the same time, the driving rod 15 at the bottom end of the transmission rod 12 stirs the discharge port at the bottom of the bin 8, so as to avoid the discharge port of the bin 8 from being blocked;

[0030] When the transmission rod 12 drives the crossbar A13 and the crossbar B14 to stir the materials in the bin body 8, the arc plates 6 outside the crossbar A13 and the crossbar B14 scrape the inner wall of the bin body 8, so as to facilitate the cleaning of the materials adhering to the inside of the bin body 8;

[0031] When the material in the silo 8 is transported from the discharge port of the silo 8, the external controller turns on the switch of the vibration motor 5 outside the transmission rod 12, and the exciting block in the vibration motor 5 generates an exciting force, causing the transmission rod 12 to vibrate, and then the cross bar A13, the cross bar and the surface of the fixed plate 7 outside the transmission rod 12 vibrate, and then the cross bar A13 and the cross bar B14 drive the arc plate 6 to vibrate, so that the materials adhered to the surfaces of the transmission rod 12, the cross bar A13, the cross bar B14, the fixed plate 7 and the arc plate 6 are cleaned.

[0032] In order to control the temperature of the material in the bin 8, for example, Figure 1 , Figure 2 As shown, the utility model also includes that a temperature measuring probe 10 for measuring the temperature of the material in the bin body 8 is screwed fixedly on the surface of the transmission rod 12, and a temperature controller 9 for controlling the temperature of the heating plate 11 is screwed fixedly on the outside of the bin body 8.

[0033] During use, when the heating plate 11 in the fixed plate 7 heats the material in the bin body 8, the temperature measuring probe 10 outside the transmission rod 12 measures the temperature of the material in the bin body 8, and then transmits the measured temperature signal to the temperature controller 9 outside the bin body 8. When the measured temperature exceeds the set temperature, the temperature controller 9 controls the temperature of the heating plate 11, thereby facilitating the control of the temperature of the material in the bin body 8.

[0034] In order to improve the stability of the rotation of the transmission rod 12, for example, Figure 1 As shown, the utility model also includes that a support plate 4 for improving the stability of the frame 16 is welded to the inner side of the frame 16, and a bearing sleeve 3 for stabilizing the rotation of the transmission rod 12 is clamped to the inner side of the support plate 4.

[0035] When in use, when the coupling 2 on the servo motor 1 drives the transmission rod 12 to rotate, the transmission rod 12 rotates in the bearing sleeve 3 on the support plate 4, thereby improving the stability of the rotation of the transmission rod 12.

[0036] In order to transport the materials in the bin 8, for example, Figure 1 As shown, the utility model also includes that the cross bars A13 and the cross bars B14 outside the transmission rod 12 are each provided with three groups, and the arc plates 6 provided outside the cross bars A13 and the cross bars B14 are provided with three groups.

[0037] When in use, the crossbar A13 and the crossbar B14 stir the materials in the bin body 8, and the arc plates 6 outside the crossbar A13 and the crossbar B14 clean the materials adhering to the inner wall of the bin body 8.

[0038] In order to use the electrical equipment to work normally, for example, Figure 1 and Figure 3 As shown, the utility model also includes that the input ends of the servo motor 1, the vibration motor 5 and the heating plate 11 are all electrically connected to the power supply end of the external power supply.

[0039] When in use, by connecting to an external power source, the electrical equipment can work normally.

[0040] When the utility model is in use, after the material enters the bin body 8 on the bulk material scale frame 17, the servo motor 1 on the frame 16 converts the received electrical energy into mechanical energy, and the coupling 2 on the servo motor 1 drives the transmission rod 12 to rotate, and the crossbar A13 and the crossbar B14 outside the transmission rod 12 stir the material in the bin body 8, and then the heating plate 11 between the crossbar A13 and the crossbar B14 heats the material in the bin body 8, so as to facilitate the drying of the material in the bin body 8 and disperse the agglomerated material, and at the same time, the driving rod 15 at the bottom end of the transmission rod 12 stirs the discharge port at the bottom of the bin body 8, so as to avoid the discharge port of the bin body 8 from being blocked;

[0041] When the transmission rod 12 drives the crossbar A13 and the crossbar B14 to stir the materials in the bin body 8, the arc plates 6 outside the crossbar A13 and the crossbar B14 scrape the inner wall of the bin body 8, so as to facilitate the cleaning of the materials adhering to the inside of the bin body 8;

[0042] When the material in the silo 8 is transported from the discharge port of the silo 8, the external controller turns on the switch of the vibration motor 5 outside the transmission rod 12, and the exciting block in the vibration motor 5 generates an exciting force, causing the transmission rod 12 to vibrate, and then the cross bar A13, the cross bar and the surface of the fixed plate 7 outside the transmission rod 12 vibrate, and then the cross bar A13 and the cross bar B14 drive the arc plate 6 to vibrate, so that the materials adhered to the surfaces of the transmission rod 12, the cross bar A13, the cross bar B14, the fixed plate 7 and the arc plate 6 are cleaned;

[0043] When the heating plate 11 in the fixed plate 7 heats the material in the bin body 8, the temperature measuring probe 10 outside the transmission rod 12 measures the temperature of the material in the bin body 8, and then transmits the measured temperature signal to the temperature controller 9 outside the bin body 8. When the measured temperature exceeds the set temperature, the temperature controller 9 controls the temperature of the heating plate 11, thereby facilitating the control of the temperature of the material in the bin body 8;

[0044] When the coupling 2 on the servo motor 1 drives the transmission rod 12 to rotate, the transmission rod 12 rotates in the bearing sleeve 3 on the support plate 4, thereby improving the stability of the rotation of the transmission rod 12.

[0045] The above shows and describes the basic principles, main features and advantages of the utility model. Those skilled in the art should understand that the utility model is not limited by the above embodiments. The above embodiments and descriptions in the specification are only to illustrate the principles of the utility model. Without departing from the spirit and scope of the utility model, the utility model may have various changes and improvements, which fall within the scope of the protection required by the utility model. The scope of protection required by the utility model is defined by the attached claims and their equivalents.

Claims

1. A multi-layer bulk material scale anti-blocking combing equipment, characterized in that: The invention comprises a bulk material scale frame (17), one side of the bulk material scale frame (17) is bolted to a bin body (8) for material transportation, the outside of the bin body (8) is bolted to a frame (16), and one side of the frame (16) is bolted to a servo motor (1) for providing power, the power output end of the servo motor (1) is keyed to a coupling (2), and the inner side of the coupling (2) is keyed to a transmission rod (12) for stirring the material in the bin body (8), the outside of the transmission rod (12) is welded with a cross bar A (13) and a cross bar B (14) for beating the material, and the cross bar A (13) is located on the cross bar B (14), the ends of the cross bars A (13) and B (14) away from the transmission rod (12) are welded with arc plates (6) for scraping the inner wall of the bin body (8), the outer side of the transmission rod (12) is screwed with a vibration motor (5) for driving the transmission rod (12) to vibrate, the outer bottom end of the transmission rod (12) is screwed with a driving rod (15) for stirring the bottom of the bin body (8), the outer side of the cross bar A (13) is welded with a fixing plate (7) connected to the cross bar B (14), and the inner side of the fixing plate (7) is provided with a heating plate (11) for heating the material in the bin body (8).

2. The anti-blocking combing equipment for multi-layer bulk material scale according to claim 1 is characterized in that: A temperature measuring probe (10) for measuring the temperature of the material in the bin body (8) is screwed fixedly on the surface of the transmission rod (12), and a temperature controller (9) for controlling the temperature of the heating plate (11) is screwed fixedly on the outside of the bin body (8).

3. The anti-blocking combing equipment for multi-layer bulk material scale according to claim 1 is characterized in that: A support plate (4) for improving the stability of the frame (16) is welded to the inner side of the frame (16), and a bearing sleeve (3) for ensuring stable rotation of the transmission rod (12) is clamped to the inner side of the support plate (4).

4. The anti-blocking combing equipment for multi-layer bulk material scale according to claim 1 is characterized in that: The cross bars A (13) and the cross bars B (14) outside the transmission rod (12) are each provided with three groups, and the arc plates (6) provided outside the cross bars A (13) and the cross bars B (14) are provided with three groups.

5. The anti-blocking combing equipment for multi-layer bulk material scale according to claim 1 is characterized in that: The input ends of the servo motor (1), the vibration motor (5) and the heating plate (11) are all electrically connected to the power supply end of an external power source.