Jacking vibration loadometer scale

By designing a lifting vibratory weighbridge, which combines a lifting mechanism and a vibratory motor, the problem of the traditional weighbridge's single function is solved. This enables the close arrangement and compaction of goods, improving the stability of transportation and storage, as well as the accuracy of weighing.

CN223461086UActive Publication Date: 2025-10-21HANGZHOU SHIKAI AUTOMATION EQUIP CO LTD
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Patent Information

Application Number
CN202423166237.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-20
Publication Date
2025-10-21
Estimated Expiration
2034-12-20

AI Technical Summary

Technical Problem

Traditional floor scales have a single function and cannot achieve tight arrangement and filling of goods, which causes the goods to shake and shift during transportation and storage, affecting measurement accuracy and safety.

Method used

It adopts a combination of lifting mechanism and vibration motor to achieve smooth lifting and vibration compaction of goods through lifting and vibration functions. Combined with buffer structure and sliding components, it ensures the smoothness and accuracy of operation.

Benefits of technology

It enables the close arrangement of goods, reduces shaking and displacement, improves the stability of transportation and storage, ensures the accuracy of weighing and the convenience of operation, and is suitable for goods such as plastic particles that require compaction.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of loadometer scales, in particular to a jacking vibration loadometer scale, which comprises a base, a loadometer scale body, a jacking mechanism and a vibration mechanism, the jacking mechanism comprises a jacking cylinder, a jacking piston rod and a jacking support, the jacking cylinder is fixedly arranged on the base, the output end of the jacking cylinder is provided with the jacking piston rod, and the jacking piston rod is arranged on the jacking support. The jacking piston rod is connected with the jacking support, and the jacking support is connected with the wagon balance body. The vibration mechanism comprises a vibration motor arranged at the bottom of the weighbridge body, and the vibration motor is used for providing vibration power to enable goods to be vibrated and tamped. The three functions of weighing, jacking and vibration tamping are organically combined into a whole, the application scene of the loadometer scale is greatly expanded, and the loadometer scale can meet more complex goods processing requirements.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of ground weight scale, especially to a ground weight scale with jacking and vibrating functions, for solving the problem of single function of traditional ground weight scale, and is especially suitable for occasions that need to fill and compact goods, such as the weighing and subsequent transportation and storage of goods such as plastic particles. BACKGROUND

[0002] The traditional ground weight scale has functional limitations in the process of goods handling, and its main function is only weighing. When facing goods such as plastic particles that need to be closely arranged to ensure the stability of transportation and storage, the filling operation of the goods cannot be realized. This leads to the goods to easily shake and displace in the subsequent link, not only affecting the safety of transportation, but also possibly leading to inaccurate measurement of goods, which cannot meet the efficient and accurate requirements of modern logistics and production for goods handling.

[0003] Therefore, the utility model provides a jacking and vibrating ground weight scale. UTILITY MODEL CONTENT

[0004] The utility model aims at the deficiencies of the prior art, and provides a jacking and vibrating ground weight scale, which realizes the stable jacking and vibrating filling effect of goods after weighing by increasing a jacking mechanism and a vibrating motor, overcomes the defect of single function of the traditional ground weight scale, and improves the comprehensive efficiency and quality of goods handling.

[0005] In order to solve the above technical problems, the following technical scheme is adopted:

[0006] A jacking and vibrating ground weight scale, comprising a base, a ground weight scale body, a jacking mechanism and a vibrating mechanism, the jacking mechanism comprising a jacking cylinder, a jacking piston rod and a jacking support, the jacking cylinder being fixedly arranged on the base, the output end of the jacking cylinder being provided with the jacking piston rod, the jacking piston rod being connected to the jacking support, and the jacking support being connected to the ground weight scale body.

[0007] The vibrating mechanism comprises a vibrating motor arranged at the bottom of the ground weight scale body, and the vibrating motor is used to provide vibrating power to make the goods vibrate and fill.

[0008] Further improvements based on the above technical scheme are that the jacking support comprises a jacking connecting part, sliding parts located at both ends of the jacking connecting part, and buffer parts extending outward along the sliding parts, the lower part of the jacking connecting part forms a notch, and the notch forms a space for mounting the jacking mechanism.

[0009] Further improvements made on the basis of the technical scheme are that a buffer structure is arranged between the buffer part and the weighbridge body, the buffer structure comprises a buffer spring, a buffer shaft, a buffer support and a buffer block, the upper part of the buffer shaft is connected with the buffer block, the buffer block is connected with the weighbridge body, the lower part of the buffer shaft is connected with the buffer support, the buffer support is fixedly installed on the buffer part, the buffer spring is sleeved outside the buffer shaft, the upper part of the buffer spring is connected with the buffer block, and the lower part of the buffer spring is connected with the buffer support.

[0010] Further improvements made on the basis of the technical scheme are that a sliding assembly is arranged on the sliding part, the sliding assembly comprises a sliding rod and a sliding block, the sliding block is arranged on the sliding rod, the sliding part is provided with a sliding hole, the sliding hole is provided with the sliding block, the lower end of the sliding rod is fixed on the base, and under the action of the jacking cylinder, the sliding block and the jacking support vertically ascend and slide on the sliding rod.

[0011] Further improvements made on the basis of the technical scheme are that a weight sensor is arranged on the base.

[0012] Further improvements made on the basis of the technical scheme are that two jacking mechanisms are arranged, and the jacking mechanisms are symmetrically arranged on the left and right sides of the weighbridge body.

[0013] Due to the adoption of the above technical scheme, the following beneficial effects are achieved:

[0014] The utility model discloses a jacking vibration weighbridge, and the jacking mechanisms are symmetrically arranged on the left and right sides of the weighbridge body, which is used for realizing the jacking operation of the weighbridge platform. The vibration motor is installed at a suitable position below the weighbridge platform to provide power for the vibration filling of goods. The utility model has the following effects:

[0015] 1. Multifunctional integration: the weighing, jacking and vibration filling functions are organically combined, which greatly expands the application scenarios of the weighbridge and meets more complex goods handling requirements.

[0016] 2. Improve the stability of goods: the vibration filling function effectively promotes the close arrangement of goods such as plastic particles, significantly reduces the shaking and displacement of goods during transportation and storage, and improves the overall stability of goods and reduces the risk of goods damage.

[0017] 3. Operation convenience: the cylinder jacking and motor vibration mode is adopted, and the operation is relatively simple and easy to realize automatic control. By equipping with a corresponding control system and sensor (height sensor), the jacking height, vibration state and other key parameters can be monitored in real time, so that the whole working process is safe, accurate and efficient. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] The present invention will be further described below with reference to the accompanying drawings:

[0019] Figure 1 This is an external schematic diagram of a jacking vibrating floor scale according to an embodiment of the present utility model.

[0020] Figure 2 This is a structural schematic diagram of the utility model after the jacking vibration floor scale is removed from the floor scale body.

[0021] Figure 3 For the embodiment of the utility model Figure 2 Top view of .

[0022] Figure 4 For the embodiment of the utility model Figure 2 main view.

[0023] Figure 5 For the embodiment of the utility model Figure 2 side view.

[0024] Figure 6 This is a structural schematic diagram of a jacking vibrating floor scale according to an embodiment of the utility model, in which goods are loaded onto the scale and transported away by an AGV trolley.

[0025] Numbers in the figure: 1-base; 2-scale body; 3-lifting mechanism; 4-vibration mechanism; 5-buffer structure; 6-sliding assembly; 7-AGV trolley; 8-cargo.

[0026] 31-lifting cylinder; 32-lifting piston rod; 33-lifting bracket.

[0027] 331-lifting connection part; 332-sliding part; 333-buffer part; 3321-sliding hole.

[0028] 41-Vibration motor.

[0029] 51-buffer spring; 52-buffer shaft; 53-buffer support; 54-buffer block.

[0030] 61-sliding rod; 62-sliding block. DETAILED DESCRIPTION

[0031] To make the objectives, technical solutions, and advantages of the present invention more clearly apparent, the present invention is further described in detail below with reference to the accompanying drawings and examples. However, it should be understood that the specific embodiments described herein are merely illustrative of the present invention and are not intended to limit the scope of the present invention. Furthermore, descriptions of known structures and technologies are omitted in the following description to avoid unnecessary confusion regarding the concepts of the present invention.

[0032] Referring to Figures 1-6 A jacking vibrating weighbridge comprises a base 1, a weighbridge body 2, a jacking mechanism 3 and a vibrating mechanism 4. The jacking mechanism 3 comprises a jacking cylinder 31, a jacking piston rod 32 and a jacking support 33. The jacking cylinder 31 is fixedly arranged on the base 1. The output end of the jacking cylinder 31 is provided with the jacking piston rod 32. The jacking piston rod 32 is connected with the jacking support 33. The jacking support 33 is connected with the weighbridge body 2.

[0033] Specifically, the jacking mechanism comprises a jacking cylinder, a jacking piston rod and a jacking support. The jacking cylinder is stably installed on the base. The output end of the jacking cylinder is connected with the jacking piston rod. The jacking piston rod is further connected with the jacking support. Finally, the jacking support is connected with the weighbridge body. This connection mode ensures that the jacking power can be effectively transmitted, so that the stable jacking action of the weighbridge body is realized.

[0034] The vibrating mechanism 4 comprises a vibrating motor 41 arranged at the bottom of the weighbridge body 2. The vibrating motor 41 is used to provide vibrating power to make the goods vibrate and fill. The vibrating mechanism mainly comprises the vibrating motor arranged at the bottom of the weighbridge body. The key role of the vibrating mechanism is to provide vibrating power for the goods, so that the particles of the goods move and fill the gaps under the action of vibration, so that the goods are closely arranged and filled. The vibrating mechanism is especially suitable for goods such as plastic particles which need to be filled.

[0035] As a further description of the embodiment, the jacking support 33 comprises a jacking connecting part 331, sliding parts 332 arranged at both ends of the jacking connecting part 331 and a buffer part 333 extending outward along the sliding parts 332. The lower part of the jacking connecting part 331 is formed with a notch. The notch forms a space for installing the jacking mechanism 3.

[0036] Specifically, the jacking support is designed to be unique and comprises a jacking connecting part, sliding parts arranged at both ends of the jacking connecting part and a buffer part extending outward. The notch in the lower part of the jacking connecting part provides a reasonable installation space for the jacking mechanism.

[0037] As a further description of the embodiment, a buffer structure 5 is arranged between the buffer part 333 and the weighbridge body 2. The buffer structure 5 comprises a buffer spring 51, a buffer shaft 52, a buffer support 53 and a buffer block 54. The upper part of the buffer shaft 52 is connected with the buffer block 54. The buffer block 54 is connected with the weighbridge body 2. The lower part of the buffer shaft 52 is connected with the buffer support 53. The buffer support 53 is fixedly installed on the buffer part 333. The buffer spring 51 is arranged outside the buffer shaft 52. The upper part of the buffer spring 51 is connected with the buffer block 54. The lower part of the buffer spring 51 is connected with the buffer support 53.

[0038] Specifically, a buffer structure is arranged between the buffer part and the weighbridge body, and the buffer structure comprises a buffer spring, a buffer shaft, a buffer support and a buffer block. The upper end of the buffer shaft is connected with the buffer block, the buffer block is connected with the weighbridge body, the lower end of the buffer shaft is connected with the buffer support, the buffer support is fixed on the buffer part, and the buffer spring is sleeved outside the buffer shaft, and the upper and lower parts of the buffer spring are connected with the buffer block and the buffer support respectively. The buffer structure effectively reduces the impact force that may be generated in the process of jacking and vibration, protects the equipment and ensures the stability of the goods.

[0039] As a further description of the embodiment, the sliding part 332 is provided with a sliding assembly 6, which comprises a sliding rod 61 and a sliding block 62. The sliding block 62 is arranged on the sliding rod 61, and the sliding part 332 is provided with a sliding hole 3321, in which the sliding block 62 is installed. The lower end of the sliding rod 61 is fixed on the base 1. Under the action of the jacking cylinder 31, the sliding block 62 and the jacking support 33 vertically ascend and descend on the sliding rod 61.

[0040] Specifically, the sliding part is equipped with a sliding assembly, which is composed of a sliding rod and a sliding block. The sliding block is installed on the sliding rod, and the sliding hole of the sliding part is provided with the sliding block. The lower end of the sliding rod is fixed on the base. Under the action of the jacking cylinder, the sliding block and the jacking support can vertically ascend and descend along the sliding rod, ensuring the stability and accuracy of the jacking process.

[0041] As a further description of the embodiment, the base 1 is provided with a weight sensor.

[0042] As a further description of the embodiment, the jacking mechanism 3 is provided with two, which are symmetrically distributed on the left and right sides of the weighbridge body 2.

[0043] Workflow:

[0044] 1. Weighing operation: after the goods 7 are loaded on the table of the weighbridge body 2, the pre-installed high-precision weighing system is started. At this time, the weight sensor on the base 1 starts to work, accurately senses the weight of the goods, and transmits the data to the control system for recording and display. This weight data provides a basis for subsequent operation, ensuring the accuracy of data in the process of handling goods.

[0045] 2. Lifting operation: After weighing is completed, the control system issues instructions according to the preset program to drive the lifting cylinder 31 to start working. The lifting cylinder 31 pushes the lifting piston rod 32 to move upwards, and then drives the lifting support 33 to rise steadily. In this process, the sliding assembly 6 plays a key role, the sliding block 62 slides vertically along the sliding rod 61 to ensure the stable lifting of the lifting support 33, and the platform of the platform scale 2 is steadily lifted to separate from the scale body, forming a certain height gap. At the same time, the height sensor monitors the lifting height in real time, and once the predetermined position is reached, it immediately feeds back a signal to the control system to stop the lifting operation, ensuring the accuracy of the platform lifting height, creating good conditions for subsequent vibration filling operation, and ensuring the safety of the operation.

[0046] 3. Vibration filling operation: After the platform is lifted to the position, the control system starts the vibration motor 41. According to the specific type, characteristics (such as particle size, shape, density, etc.) of the goods and the required filling degree, the operator sets appropriate vibration time and frequency parameters in the control system. The vibration motor 41 produces strong vibration when working, and the vibration energy is evenly transmitted to the goods through the platform of the platform scale 2. The particles of the goods begin to move actively under the action of vibration, fill the gaps with each other, and gradually achieve close arrangement to achieve the ideal filling effect. During the vibration process, the sensor continuously monitors the vibration state, including vibration amplitude, frequency stability and other parameters, and feeds back the data to the control system. The control system adjusts the working parameters of the vibration motor 41 in real time according to the feedback information to ensure that the vibration process always meets the set requirements, so as to achieve the best filling effect.

[0047] 4. Platform recovery and goods transportation: After the filling operation is completed, the control system turns off the vibration motor 41. At this time, the platform scale platform naturally starts to recover to a stable state under the action of gravity. Then, the control system controls the lifting mechanism 3 to slowly lower the platform, and the lifting support 33 steadily descends along the sliding assembly 6 under the coordinated action of the lifting piston rod 32 and the lifting cylinder 31, so that the platform steadily falls back into the platform scale body and recovers to the initial state. Finally, the AGV car 7 and other transportation equipment move to the platform scale under the instruction of the control system, drag the goods away from the platform scale platform, and transport them to the designated location for subsequent storage, processing or transportation operations. In the entire work flow, the perfect control system realizes the automatic and accurate control and real-time monitoring of each operation step, greatly improves the work efficiency, reduces the human operation errors, and effectively ensures the safe operation of the equipment and the safety of the personnel.

[0048] The above are only specific embodiments of the present application, but the technical features of the present application are not limited to this. Any simple change, equivalent replacement or modification made on the basis of the present application to solve the basically same technical problem and realize the basically same technical effect is all covered in the protection scope of the present application.

Claims

1. A jacking vibrating load cell characterized by: The application relates to a lifting and vibrating type weighbridge, which comprises a base, a weighbridge body, a lifting mechanism and a vibrating mechanism. The vibrating mechanism comprises a vibrating motor arranged at the bottom of the weighbridge body, and the vibrating motor is used for providing vibrating power to make goods vibrate and fill.

2. A jacking vibrating load cell according to claim 1, characterised in that: The lifting support comprises a lifting connecting part, sliding parts arranged at the two ends of the lifting connecting part and buffer parts extending outward along the sliding parts, the lower part of the lifting connecting part is provided with a notch, and the notch forms a space for mounting the lifting mechanism.

3. A jacking vibrating load scale according to claim 2, characterized in that: The buffer structure comprises a buffer spring, a buffer shaft, a buffer support and a buffer block, the upper part of the buffer shaft is connected with the buffer block, the buffer block is connected with the weighbridge body, the lower part of the buffer shaft is connected with the buffer support, the buffer support is fixedly mounted on the buffer part, the buffer spring is arranged outside the buffer shaft, the upper part of the buffer spring is connected with the buffer block, and the lower part of the buffer spring is connected with the buffer support.

4. A jacking vibrating load scale according to claim 2, characterized in that: The sliding part is provided with a sliding assembly, the sliding assembly comprises a sliding rod and a sliding block, the sliding block is arranged on the sliding rod, the sliding part is provided with a sliding hole, the sliding hole is provided with the sliding block, the lower end of the sliding rod is fixed on the base, and the sliding block and the lifting support vertically slide on the sliding rod under the action of the lifting cylinder.

5. The jacking vibrating load scale of claim 1, wherein: The base is provided with a weight sensor.

6. A jacking vibrating load scale according to claim 1, characterized in that: The lifting mechanism is provided with two lifting mechanisms, and the two lifting mechanisms are symmetrically arranged on the left and right sides of the weighbridge body.