An environmentally friendly device for collecting and reusing waste slurry from power pole production.

By designing a movable annular collection hood and driving mechanism, the problem of fixed mudguards affecting the installation of steel molds was solved, thereby improving the production efficiency of utility poles and enabling the full collection and reuse of residual slurry.

CN224275567UActive Publication Date: 2026-05-26YUNNAN JINGYI ELECTRIC POWER TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
YUNNAN JINGYI ELECTRIC POWER TECH CO LTD
Filing Date
2025-06-06
Publication Date
2026-05-26

AI Technical Summary

Technical Problem

In existing technologies, mudguards are fixed and cannot be moved, which affects the installation of steel molds and reduces the production efficiency of utility poles.

Method used

Design a movable annular collection cover. Through a moving mechanism and a driving mechanism, it can move to the end of the pole steel mold and cover the residual slurry to prevent it from being thrown around. The residual slurry is collected and reused through a guide trough and a receiving trough.

Benefits of technology

It improved the efficiency of pole production, enabled the comprehensive collection and reuse of residual slurry, and saved resources.

✦ Generated by Eureka AI based on patent content.

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Abstract

This invention provides an environmentally friendly device for collecting and reusing residual slurry from pole production, comprising a support base, a collection cover, an installation component, and a moving mechanism. The moving mechanism is mounted on the support base, the installation component is movably mounted on the moving mechanism, and the collection cover is mounted on the installation component. The collection cover has a ring-shaped structure with an arc-shaped groove structure on its inner wall. Driven by the moving mechanism, it can move and fit over the end of the pole steel mold. The moving mechanism includes two guide rods, a lead screw, and a motor. The lead screw and the two guide rods are mounted side by side on the support base, with the lead screw in the middle. The motor is mounted on the support base and is connected to the lead screw for transmission. This invention collects residual slurry without affecting the installation of the steel mold, thus improving pole production efficiency. The ring-shaped collection cover completely covers the end of the steel mold, preventing slurry splashing and achieving comprehensive collection of residual slurry.
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Description

Technical Field

[0001] This utility model relates to the field of electric pole production technology, specifically to an environmentally friendly electric pole production waste slurry collection and reuse device. Background Technology

[0002] Most modern utility poles are made of concrete. The production process typically involves using a steel mold as a template. Reinforcing bars and mixed concrete are placed inside the mold, which is then placed on a centrifugal device to rotate. Under the centrifugal force, the cement adheres to the inner wall of the mold and gradually solidifies, forming a hollow pole. During the centrifugation process, residual slurry flows out from both ends of the mold due to centrifugal force, resulting in a waste of concrete resources. A Chinese utility model patent with patent number 202322651407.8, entitled "Residual Slurry Recovery Device for Cement Pole Production," collects the residual slurry using a mudguard and collection trough. However, the mudguard is fixed and cannot be moved, which affects the installation of the steel mold on the centrifugal device, thus reducing the efficiency of pole production. Utility Model Content

[0003] In order to overcome the problems existing in the background technology, this utility model provides an environmentally friendly device for collecting and reusing residual slurry from pole production, so as to solve the technical problem mentioned in the background technology that the inability of the mudguard to move will affect the installation of steel mold and reduce the efficiency of pole production.

[0004] To achieve the above objectives, this utility model is implemented through the following technical solution:

[0005] An environmentally friendly device for collecting and reusing residual slurry from pole production includes a support base 1, a collection cover 2, an installation component 3, and a moving mechanism 4. The moving mechanism 4 is mounted on the support base 1, the installation component 3 is movably mounted on the moving mechanism 4, and the collection cover 2 is mounted on the installation component 3. The collection cover 2 has a ring structure with an arc-shaped groove structure on its inner wall. Driven by the moving mechanism 4, it can move and fit over the end of the pole steel mold 5.

[0006] Preferably, the moving mechanism 4 includes two guide rods 401, a lead screw 402, and a motor 403; the lead screw 402 and the two guide rods 401 are mounted side by side on the support base 1, with the lead screw 402 located in the middle, and the motor 403 is mounted on the support base 1 and is connected to the lead screw 402 for transmission; the two ends of the mounting component 3 are slidably connected to the two guide rods 401 respectively, and the middle part is threadedly connected to the lead screw 402.

[0007] Preferably, the collection cover 2 is vertically divided into two arc-shaped collection covers 2 from the middle, and the two arc-shaped collection covers 2 are mounted on the drive mechanism 6 provided on the mounting component 3 in a movable manner that opens and closes to both sides.

[0008] Preferably, the drive mechanism 6 includes a lead screw 601 and a motor 602. The lead screw 601 is horizontally rotatably mounted in a groove 301 on the mounting component 3 and is connected to the motor 602 mounted at the end of the mounting component 3. Support rods 201 are connected to the ends of the two arc-shaped collection covers 2 respectively. The lower ends of the two support rods 201 are slidably mounted in the groove 301 and threadedly connected to the lead screw 601. The threads on the left and right halves of the lead screw 601 have opposite helical directions, and the two threads with opposite helical directions are respectively connected to the two support rods 201.

[0009] Preferably, the support base 1 is equipped with an inclined guide groove 7, and a receiving groove 8 for receiving excess slurry is provided below the guide groove 7.

[0010] The beneficial effects of this utility model are as follows: This utility model uses a movable collection cover 2 to collect the residual slurry flowing out of the end of the pole steel mold 5. After the pole steel mold 5 is hoisted and installed on the centrifugal device, the collection cover 2 is moved to cover the end of the steel mold, thereby collecting the residual slurry. This does not affect the installation of the steel mold and is conducive to improving the efficiency of pole production. The annular structure of the collection cover 2 can cover the end of the steel mold, which can prevent the residual slurry from being thrown to the surroundings and can collect the residual slurry comprehensively. Attached Figure Description

[0011] Figure 1 This is a three-dimensional structural diagram of the present invention.

[0012] Figure 2 This is a schematic diagram of the structure of the moving mechanism.

[0013] Figure 3 This is a schematic diagram of the drive mechanism. Detailed Implementation

[0014] To make the objectives, technical solutions, and beneficial effects of this utility model clearer, the preferred embodiments of this utility model will be described in detail below with reference to the accompanying drawings, so as to facilitate the understanding of those skilled in the art.

[0015] like Figure 1-3As shown, this utility model provides an environmentally friendly device for collecting and reusing residual slurry from pole production, including a support base 1, a collection cover 2, an installation component 3, and a moving mechanism 4. The moving mechanism 4 is mounted on the support base 1, the installation component 3 is movably mounted on the moving mechanism 4, and the collection cover 2 is mounted on the installation component 3. The collection cover 2 has a ring structure with an arc-shaped groove structure on its inner wall. Driven by the moving mechanism 4, it can move and fit over the end of the pole steel mold 5. In use, the moving mechanism 4 first moves the installation component 3 and the collection cover 2, causing the collection cover 2 to move away from the centrifuge device, thus facilitating the installation of the pole steel mold 5 onto the centrifuge device and preventing the collection cover 2 from interfering with the installation of the pole steel mold 5. Then, the moving mechanism 4 moves the collection cover 2 so that it covers the end of the pole steel mold 5. The residual slurry flowing out of the pole steel mold 5 during centrifugation flows into the collection cover 2 for collection. This improves the efficiency of pole production. The ring-shaped collection cover 2 can cover the end of the steel mold, preventing the residual slurry from being thrown around and allowing for comprehensive collection of the residual slurry.

[0016] The moving mechanism 4 includes two guide rods 401, a lead screw 402, and a motor 403. The lead screw 402 and the two guide rods 401 are mounted side by side on the support base 1, with the lead screw 402 located in the middle. The motor 403 is mounted on the support base 1 and is connected to the lead screw 402 for transmission. The mounting component 3 is slidably connected to the two guide rods 401 at both ends and threadedly connected to the lead screw 402 in the middle. The motor 403 drives the lead screw 402 to rotate, thereby driving the mounting component 3 to slide along the guide rods 401, which in turn moves the collection cover 2, facilitating the installation of the pole steel mold 5.

[0017] The collection hood 2 is vertically divided into two arc-shaped collection hoods 2 from the middle. The two arc-shaped collection hoods 2 are mounted on the drive mechanism 6 on the mounting component 3, which is movably installed to open and close to both sides. The drive mechanism 6 drives the two arc-shaped collection hoods 2 to open or close to both sides. When collecting residual slurry, the two arc-shaped collection hoods 2 are closed to form a ring-shaped collection hood 2 to collect the residual slurry. After the residual slurry is collected, the two arc-shaped collection hoods 2 are opened to facilitate the discharge of the residual slurry in the collection hoods 2, making it convenient for the next collection of residual slurry.

[0018] The driving mechanism 6 includes a lead screw 601 and a motor 602. The lead screw 601 is horizontally rotatably mounted in a groove 301 on the mounting component 3 and is connected to the motor 602 mounted at the end of the mounting component 3. Support rods 201 are connected to the ends of two arc-shaped collection covers 2. The lower ends of the two support rods 201 are slidably mounted in the groove 301 and threadedly connected to the lead screw 601. The threads on the left and right halves of the lead screw 601 have opposite helical directions, and these two opposite helical threads are connected to the two support rods 201 respectively. The motor 602 drives the lead screw 601 to rotate, thereby moving the support rods 201 within the groove 301. Because the threads connecting the two support rods 201 to the lead screw 601 have opposite directions, the support rods 201 drive the two arc-shaped collection covers 2 to move in opposite directions, thus opening or closing the two arc-shaped collection covers 2 to facilitate the discharge of collected residual slurry.

[0019] The support base 1 is equipped with an inclined guide groove 7, and a receiving trough 8 for receiving residual slurry is provided below the guide groove 7. After the collection hood 2 has collected the residual slurry, the moving mechanism 4 moves the collection hood 2 above the guide groove 7, and then the driving mechanism 6 opens the collection hood 2 to both sides, so that the residual slurry in the collection hood 2 falls into the guide groove 7 and slides along the guide groove 7 into the receiving trough 8 for reuse, thereby improving the utilization rate of residual slurry and saving resources.

[0020] Work process:

[0021] In use, this invention first moves the mounting component 3 and the collecting cover 2 via the moving mechanism 4, causing the collecting cover 2 to move away from the centrifuge device. This facilitates the installation of the pole steel mold 5 onto the centrifuge device and prevents the collecting cover 2 from interfering with the installation of the pole steel mold 5. Then, the moving mechanism 4 moves the collecting cover 2 so that it covers the end of the pole steel mold 5. The residual slurry flowing out of the pole steel mold 5 during centrifugation flows into the collecting cover 2 for collection. This improves the efficiency of pole production. The annular structure of the collecting cover 2 can cover the end of the steel mold, preventing the residual slurry from being thrown around and allowing for comprehensive collection of the residual slurry. After the collecting cover 2 has collected the residual slurry, the moving mechanism 4 moves the collecting cover 2 above the guide trough 7. Then, the driving mechanism 6 opens the collecting cover 2 to both sides, allowing the residual slurry in the collecting cover 2 to fall into the guide trough 7 and slide along the guide trough 7 into the receiving trough 8 for reuse, improving the utilization rate of the residual slurry and saving resources.

[0022] Finally, it should be noted that the above preferred embodiments are only used to illustrate the technical solution of this utility model and are not intended to limit it. Although the utility model has been described in detail through the above preferred embodiments, those skilled in the art should understand that various changes can be made to it in form and detail without departing from the scope defined by the claims of this utility model.

Claims

1. An environmentally friendly device for collecting and reusing waste slurry from power pole production, characterized in that: It includes a support base (1), a collection cover (2), an installation component (3), and a moving mechanism (4); the moving mechanism (4) is installed on the support base (1), the installation component (3) is movably installed on the moving mechanism (4), the collection cover (2) is installed on the installation component (3), the collection cover (2) is a ring structure, the inner wall is an arc groove structure with an arc cross section, and it can move under the drive of the moving mechanism (4) and fit onto the end of the pole steel mold (5).

2. The environmentally friendly pole production waste slurry collection and reuse device according to claim 1, characterized in that: The moving mechanism (4) includes two guide rods (401), a lead screw (402), and a motor (403); the lead screw (402) and the two guide rods (401) are mounted side by side on the support base (1), with the lead screw (402) located in the middle, and the motor (403) is mounted on the support base (1) and connected to the lead screw (402) in a transmission connection; the two ends of the mounting component (3) are slidably connected to the two guide rods (401) respectively, and the middle part is threadedly connected to the lead screw (402).

3. The environmentally friendly pole production waste slurry collection and reuse device according to claim 1 or 2, characterized in that: The collection cover (2) is vertically divided into two arc-shaped collection covers (2) on the left and right sides from the middle. The two arc-shaped collection covers (2) are installed on the drive mechanism (6) set on the mounting component (3) in a moving manner to open and close to both sides.

4. The environmentally friendly pole production waste slurry collection and reuse device according to claim 3, characterized in that: The drive mechanism (6) includes a second lead screw (601) and a second motor (602). The second lead screw (601) is horizontally rotatably installed in a groove (301) on the mounting component (3) and is connected to the second motor (602) installed at the end of the mounting component (3). The ends of the two arc-shaped collection covers (2) are respectively connected to support rods (201). The lower ends of the two support rods (201) are slidably installed in the groove (301) and threadedly connected to the second lead screw (601). The left and right halves of the second lead screw (601) are provided with threads in opposite directions.

5. The environmentally friendly pole production waste slurry collection and reuse device according to claim 4, characterized in that: An inclined guide groove (7) is installed on the support base (1), and a receiving groove (8) for receiving residual slurry is provided below the guide groove (7).