Collection line laying control method for collecting data information of gravel system

By introducing damping components during the acquisition line laying process, the elastic rubber pad generates damping force and controls the speed of the acquisition line, the impact wear problem caused by too fast speed during the acquisition line laying is solved, and a more stable laying process is achieved.

CN119929594APending Publication Date: 2025-05-06CHINA WATER CONSERVANCY & HYDROPOWER NO 9 ENG BUREAU CO LTD
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Patent Information

Application Number
CN202510070060.9
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-01-16
Publication Date
2025-05-06

AI Technical Summary

Technical Problem

The speed of the collection line when laying the wire is too fast, which can easily lead to excessive impact and impact wear.

Method used

By introducing damping components during the acquisition line laying process, the elastic rubber pad generates damping force to control the speed of the acquisition line and prevent too fast laying.

Benefits of technology

It effectively reduces the speed of the acquisition line and avoids impact wear problems caused by excessive speed.

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Abstract

The invention discloses an acquisition line laying control method for acquiring data information of a gravel system, and the method comprises the steps: enabling an acquisition line to penetrate through a damping assembly to generate damping contact blocking, so as to control the control process of the overhigh speed of the line laying of the acquisition line. The elastic rubber base plate A and the elastic rubber base plate B can generate elastic force to generate damping for blocking, so that the speed of the collection wire passing through the position between the upper damping plate and the lower damping plate is controlled to be reduced, and the problem that the collection wire is prone to impact abrasion due to the fact that the speed is too high and the impulse is too large when the collection wire is laid is solved.
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Description

Technical Field

[0001] The invention relates to a collection line laying control method for collecting data information of a sand and gravel system, belonging to the technical field of sand and gravel systems. Background Art

[0002] The threshold data of each device in the sand and gravel system needs to be collected and transmitted through the acquisition line.

[0003] Since the collection line is a weak wire that is not resistant to wear, if the speed of the collection line is too fast during laying, it is easy to cause excessive impulse of the collection line, which will cause wear when impact occurs. Therefore, the speed of the collection line laying process needs to be controlled. Summary of the invention

[0004] In order to solve the above technical problems, the present invention provides a collection line laying control method for collecting sand and gravel system data information.

[0005] The present invention is achieved through the following technical solutions.

[0006] The present invention provides a collection line laying control method for collecting sand and gravel system data information, comprising:

[0007] The acquisition line passes through the damping component to generate a damping contact barrier to control the excessive speed of the acquisition line laying.

[0008] The control process includes: when the collection line passes between the upper damping plate and the lower damping plate at a fast speed, the displacement sensor senses that the displacement of the collection line is large, and the signal is transmitted to the controller. The controller controls the telescopic rod A to extend, and the upper damping plate is pushed against the lower damping plate. The elastic rubber pad A and the elastic rubber pad B will generate elastic force to generate damping for blocking.

[0009] The damping assembly comprises an upper damping plate and a lower damping plate for the collection line to pass through, and a channel is formed between the upper damping plate and the lower damping plate.

[0010] Ball bearings can be rotatably mounted on the inner surfaces of the upper damping plate and the lower damping plate, and the collection line can be in rolling contact with the upper damping plate and the lower damping plate through the ball bearings.

[0011] An elastic rubber pad A is fixedly mounted on the back of the upper damping plate, and a telescopic rod A is fixed to the elastic rubber pad A.

[0012] An elastic rubber pad B is fixedly mounted on the back of the lower damping plate. The elastic rubber pad B is embedded and fixed in the card plate. A hinge plate is rotatably hinged at the bottom of the card plate. The hinge plate is fixed on the mounting plate.

[0013] A telescopic rod B is hinged on the hinged plate, and the telescopic rod B is rotatably hinged on the end of the lower damping plate.

[0014] The telescopic rod A and telescopic rod B are both electric telescopic rods, and the power input ends of the telescopic rods A and B are connected to the power output end of the controller; a displacement sensor for detecting the pulling speed of the acquisition line is installed on the mounting plate, and the signal output end of the displacement sensor is electrically connected to the signal input end of the controller.

[0015] The beneficial effect of the present invention is that the elastic rubber pads A and B will generate elastic force to produce damping for blocking, so that the speed of the collection line passing between the upper damping plate and the lower damping plate is controlled to be reduced, thereby solving the problem of the collection line being prone to impact wear due to excessive speed and excessive impulse during cable laying. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 It is a distribution schematic diagram of the present invention;

[0017] In the figure: 1-collection line; 2-mounting plate; 21-upper damping plate; 22-lower damping plate; 23-ball; 31-elastic rubber pad A; 32-elastic rubber pad B; 41-telescopic rod A; 42-card; 43-hinge plate; 44-telescopic rod B; 5-controller; 6-displacement sensor. DETAILED DESCRIPTION

[0018] The technical solution of the present invention is further described below, but the scope of protection claimed is not limited to the description.

[0019] like Figure 1 shown.

[0020] A collection line laying control method for collecting sand and gravel system data information of the present application includes:

[0021] The collection line 1 is laid on the mounting plate 2, and the collection line 1 passes through the upper damping plate 21 and the lower damping plate 22 to generate a damping contact barrier to control the excessive speed of laying the collection line.

[0022] Specifically, the collection line 1 passes through the channel formed between the upper damping plate 21 and the lower damping plate 22. Balls 23 are rotatably installed on the inner surfaces of the upper damping plate 21 and the lower damping plate 22. The collection line 1 is in rolling contact with the upper damping plate 21 and the lower damping plate 22 through the balls 23.

[0023] The upper damping plate 21 is fixed with an elastic rubber pad A31 by bolts on the back thereof, and the elastic rubber pad A31 is fixed with a telescopic rod A41 by bolts, the telescopic end of the telescopic rod A41 is fixed to the elastic rubber pad A31, and the fixed end of the telescopic rod A41 is fixed to the mounting plate 2, and the mounting plate 2 provides a fixed mounting foundation.

[0024] The lower damping plate 22 is bolted to the back with an elastic rubber pad B32, which is embedded and fixed in the clamping plate 42. The bottom of the clamping plate 42 is rotatably hinged with a hinge plate 43, which is fixed on the mounting plate 2. The hinge plate 43 is hinged with a telescopic rod B44, which is rotatably hinged at the end of the lower damping plate 22. When the telescopic rod B44 is extended or retracted, it can drive the lower damping plate 22 to tilt at the hinge point where the clamping plate 42 is hinged to the mounting plate 2.

[0025] The telescopic rod A41 and the telescopic rod B44 are both electric telescopic rods, and the power input ends of the telescopic rods A41 and B44 are connected to the power output end of the controller 5; a displacement sensor 6 for detecting the pulling speed of the acquisition line 1 is installed on the mounting plate 2, and the signal output end of the displacement sensor 6 is electrically connected to the signal input end of the controller 5.

[0026] The telescopic rod A41, the telescopic rod B44, the upper damping plate 21, the lower damping plate 22, etc. constitute a damping assembly.

[0027] When the collection line 1 passes between the upper damping plate 21 and the lower damping plate 22 at a fast speed, the displacement sensor 6 senses that the displacement of the collection line 1 is large, and the signal is transmitted to the controller 5. The controller 5 controls the telescopic rod A41 to extend, and the upper damping plate 21 is pushed toward the lower damping plate 22. Since the elastic rubber pads A31 and B32 will generate elastic force to generate damping for blocking, the speed of the collection line 1 passing between the upper damping plate 21 and the lower damping plate 22 is controlled to be reduced, which solves the problem of the collection line being too fast and the impulse being too large during the cable laying, which is prone to impact wear.

[0028] When the collection line 1 first passes through the upper damping plate 21 and the lower damping plate 22, the telescopic rod B44 is controlled to extend and rotate the lower damping plate 22 counterclockwise, so that the upper damping plate 21 and the lower damping plate 22 present a bell mouth to facilitate the collection line 1 to pass through.

Claims

1. A collection line laying control method for collecting sand and gravel system data information, characterized in that: include: The collection line (1) passes through the damping component to generate a damping contact barrier to control the excessive speed of the collection line (1) during laying.

2. The method for controlling the laying of a collection line for collecting data information of a sand and gravel system according to claim 1, characterized in that: The control process comprises: when the collection line (1) passes between the upper damping plate (21) and the lower damping plate (22) at a relatively fast speed, the displacement sensor (6) senses that the displacement of the collection line (1) is relatively large, and the signal is transmitted to the controller (5), the controller (5) controls the telescopic rod A (41) to extend, and the upper damping plate (21) is pushed toward the lower damping plate (22), and the elastic rubber pad A (31) and the elastic rubber pad B (32) generate elastic force to generate damping for blocking.

3. The line laying control method for collecting data information of a sand and gravel system according to claim 1 or 2, characterized in that: The damping assembly comprises an upper damping plate (21) and a lower damping plate (22) for the collection line (1) to pass through, and a channel is formed between the upper damping plate (21) and the lower damping plate (22).

4. The line laying control method for collecting data information of a sand and gravel system according to claim 3, characterized in that: Ball bearings (23) can be rotatably mounted on the inner surfaces of the upper damping plate (21) and the lower damping plate (22), and the collection line (1) is in rolling contact with the upper damping plate (21) and the lower damping plate (22) via the ball bearings (23).

5. The line laying control method for collecting data information of a sand and gravel system according to claim 4, characterized in that: An elastic rubber pad A (31) is fixedly mounted on the back of the upper damping plate (21), and a telescopic rod A (41) is fixed to the elastic rubber pad A (31).

6. The method for controlling the laying of a collection line for collecting data information of a sand and gravel system according to claim 4, characterized in that: An elastic rubber pad B (32) is fixedly mounted on the back of the lower damping plate (22), the elastic rubber pad B (32) is embedded and fixed in a clamping plate (42), a hinge plate (43) is rotatably hinged at the bottom of the clamping plate (42), and the hinge plate (43) is fixed on the mounting plate (2).

7. The method for controlling the laying of a collection line for collecting data information of a sand and gravel system according to claim 6, characterized in that: A telescopic rod B (44) is hinged on the hinged plate (43), and the telescopic rod B (44) is rotatably hinged on the end of the lower damping plate (22).

8. The line laying control method for collecting data information of a sand and gravel system according to claim 7, characterized in that: The telescopic rod A (41) and the telescopic rod B (44) are both electric telescopic rods, and the power input ends of the telescopic rod A (41) and the telescopic rod B (44) are connected to the power output end of the controller (5); a displacement sensor (6) for detecting the pulling speed of the acquisition line (1) is installed on the mounting plate (2), and the signal output end of the displacement sensor (6) is electrically connected to the signal input end of the controller (5).