Steel pipe galvanizing device

By employing movable partitions and buffer devices in the steel pipe galvanizing equipment, the problems of low production efficiency and uneven galvanizing in traditional equipment have been solved, achieving efficient and uniform galvanizing of multiple steel pipes.

CN223674712UActive Publication Date: 2025-12-16JINJIANG HAOCHENG STEEL PIPE MFG CO LTD
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Patent Information

Application Number
CN202520212565.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-11
Publication Date
2025-12-16
Estimated Expiration
2035-02-11

AI Technical Summary

Technical Problem

The material frame design of traditional steel pipe galvanizing equipment limits production efficiency, and the steel pipes are prone to collisions and uneven galvanizing during the galvanizing process.

Method used

The movable partition design, combined with the inclined base plate and buffer device, allows multiple steel pipes to be galvanized at the same time. The partition is stabilized by the chute and slider, the buffer spring reduces collisions, and the through holes improve the contact of the zinc liquid.

Benefits of technology

It improves production efficiency, avoids steel pipe collisions, ensures uniformity and quality of galvanizing, and reduces operational procedures.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of steel pipe galvanization, in particular to a steel pipe galvanization device which is characterized by comprising a bottom plate, a plurality of partition plates and a buffer device, the buffer device comprises a buffer plate, the buffer plate is movably arranged at the tail end of the bottom plate, the partition plates are movably arranged above the bottom plate, and the buffer plate is movably arranged above the bottom plate. A containing cavity is formed between every two adjacent partition plates, the bottom plate is arranged in an inclined mode, the bottom plate is gradually lowered from the head end to the tail end, and the head end of the bottom plate is connected with a platform. According to the steel pipe galvanizing device, through the arrangement of the multiple partition plates, the device can be provided with the multiple containing cavities capable of containing the steel pipes, the device can contain the multiple steel pipes at a time to be galvanized at the same time, the operation procedures are reduced, the overall production efficiency is improved, each steel pipe is provided with the independent containing cavity, and therefore the production efficiency is improved. Compact arrangement is avoided, the steel pipes do not collide with one another, and the uniformity and quality of galvanization are improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to steel pipe galvanization technical field, specifically to a steel pipe galvanization device. BACKGROUND

[0002] Galvanization is a kind of surface treatment technology that a layer of zinc is plated on the surface of metal, alloy or other materials to play the role of appearance and rust prevention, and can be divided into hot galvanization and electroplating zinc according to the different ways of galvanization, hot galvanization has the advantages of uniform coating, strong adhesion and long service life, and is widely used in steel pipe anticorrosion process to form galvanized steel pipe, steel pipe galvanization device is needed when galvanizing steel pipe, and the design of galvanizing machine material frame on the traditional steel pipe galvanization process often limits the production efficiency.

[0003] However, the traditional material frame design usually only supports a small amount of steel pipe containing and simultaneous processing, for example, only two steel pipes can be produced at a time, which leads to the need for steel pipes to enter the galvanizing machine in sequence or in batches during the galvanizing process, not only the operation process is complicated, but also the overall production efficiency is significantly reduced. At the same time, due to the too compact arrangement of steel pipes in the material frame, mutual collision may occur during galvanizing, and the surface of the steel pipe in contact with the device is also difficult to contact the zinc liquid, which affects the uniformity and quality of galvanizing. SUMMARY

[0004] The technical problem to be solved by the utility model is to provide a steel pipe galvanization device to solve the problems in the background art.

[0005] To solve the above technical problems, the utility model adopts the following technical scheme: the utility model provides a steel pipe galvanization device, which comprises a bottom plate, a partition plate and a buffer device, the buffer device comprises a buffer plate, the buffer plate is movably arranged at the tail end of the bottom plate, the partition plate is provided with a plurality of partition plates and is movably arranged above the bottom plate, a placing cavity is formed between adjacent partition plates, the bottom plate is arranged in an inclined manner, the first end to the tail end of the bottom plate gradually decreases from high to low, and the first end of the bottom plate is connected with a platform. The above-mentioned steel pipe galvanization device can accommodate multiple steel pipes at a time for simultaneous galvanizing, which not only reduces the operation process, but also improves the overall production efficiency, and each steel pipe has a separate placing cavity, avoiding compact arrangement and mutual collision between steel pipes, improving the uniformity and quality of galvanizing, and the movable arrangement of the partition plate allows the steel pipes to roll, ensuring that the surface of the steel pipe in contact with the device can also contact the zinc liquid, further improving the uniformity and quality of galvanizing.

[0006] Further, the bottom plate is provided with two grooves, the grooves are distributed at the head and tail ends of the bottom plate, the grooves are provided with sliding blocks, the upper ends of the sliding blocks are connected with the partition plates; through the cooperation of the grooves and the sliding blocks, the movable connection mode of the partition plates is realized.

[0007] Further, the grooves extend along the width direction of the bottom plate, the cross section of the grooves is in the shape of "convex", the cross section of the sliding blocks matches the cross section of the grooves; through the setting of the shape of the grooves, the stability of the partition plates during movement is improved.

[0008] Further, the left and right sides of the bottom plate are provided with limiting plates, the two ends of the limiting plates cover the two ends of the two grooves and extend to the sides of the two grooves; through the setting of the limiting plates and their lengths, the sliding of the partition plates is avoided.

[0009] Further, the top of the partition plate is provided with a connecting rod, the connecting rod crosses each partition plate, and the two ends of the connecting rod are provided with pull ropes; through the cooperation of the pull ropes and the connecting rod, the convenience of the movement of the partition plates is improved, the partition plates can be moved by pulling the pull ropes, thereby driving the rolling of the steel pipes.

[0010] Further, the buffer device further comprises an auxiliary plate, a buffer spring and a baffle, one end of the auxiliary plate is connected with the tail end of the bottom plate, the baffle is arranged on the upper end face of the auxiliary plate and located at the tail end and the two side edges of the auxiliary plate; the auxiliary plate can provide support for the baffle.

[0011] Further, the buffer spring is located between the baffle and the buffer plate, one end of the buffer spring is connected with the baffle, and the other end of the buffer spring is connected with the buffer plate; through the buffer spring, the impact force is reduced when the steel pipe is placed into the placing cavity, the violent collision between the steel pipe and the device is avoided, and the steel pipe is protected from being damaged.

[0012] Further, the upper end face of the auxiliary plate is provided with a plurality of evenly distributed moving grooves, the moving grooves are provided with moving blocks, and the upper ends of the moving blocks are connected with the buffer plate; through the cooperation of the moving grooves and the moving blocks, the movable connection mode of the buffer plate is realized.

[0013] Further, the partition plate is provided with a plurality of through holes; through the through holes, the zinc liquid can enter the placing cavity more fully.

[0014] As described above, the steel pipe galvanizing device provided by this utility model has the following beneficial effects: the arrangement of several partitions allows the device to have multiple placement cavities for placing steel pipes, enabling the device to accommodate multiple steel pipes for galvanizing simultaneously. This not only reduces the operation process but also improves the overall production efficiency. Furthermore, each steel pipe has its own placement cavity, avoiding a compact arrangement and preventing collisions between steel pipes, thus improving the uniformity and quality of galvanizing. The movable arrangement of the partitions allows the steel pipes to roll, ensuring that the surface of the steel pipe in contact with the device also comes into contact with the molten zinc, further improving the uniformity and quality of galvanizing. Attached Figure Description

[0015] Fig. 1 This is a three-dimensional structural diagram of the present invention.

[0016] Fig. 2 This is a cross-sectional three-dimensional structural diagram of the buffer device. Detailed Implementation

[0017] To make the technical means, creative features, objectives and effects of this utility model easier to understand, the present utility model will be further described below in conjunction with specific embodiments.

[0018] like Figs. 1-2 As shown, this utility model provides a steel pipe galvanizing device: including a base plate 1, partitions 2, and a buffer device 3. The buffer device 3 includes a buffer plate 31, which is movably disposed at the tail end of the base plate 1. Several partitions 2 are provided and movably disposed above the base plate 1. A placement cavity 21 is formed between adjacent partitions 2. The base plate 1 is inclined and gradually decreases in height from the head to the tail end. A platform 11 is connected to the head end of the base plate 1. The above-mentioned steel pipe galvanizing device, through the arrangement of several partitions 2, allows the device to have multiple places to place steel pipes. The cavity 21 allows the device to accommodate multiple steel pipes for galvanizing simultaneously, reducing operational steps and improving overall production efficiency. Each steel pipe has its own placement cavity 21, preventing compact arrangement and collisions between pipes, thus improving the uniformity and quality of galvanizing. The movable design of the partition 2 allows the steel pipes to roll, ensuring that the surface of the steel pipe in contact with the device also comes into contact with the molten zinc, further improving the uniformity and quality of galvanizing. The inclined design of the base plate 1 saves effort when placing the steel pipes into the placement cavity 21.

[0019] The bottom plate 1 is provided with two sliding grooves 12, which are distributed at the head and tail ends of the bottom plate 1, the sliding groove 12 is provided with a sliding block 13, the upper end of the sliding block 13 is connected with the partition plate 2; through the cooperation of the sliding groove 12 and the sliding block 13, the movable connection mode of the partition plate 2 is realized.

[0020] The sliding groove 12 extends along the width direction of the bottom plate 1, the cross section of the sliding groove 12 is in the shape of "convex", and the cross section of the sliding block 13 matches the cross section of the sliding groove 12; through the setting of the shape of the sliding groove 12, the stability of the partition plate 2 during movement is improved.

[0021] The left and right sides of the bottom plate 1 are provided with limiting plates 14, the two ends of the limiting plate 14 cover the two ends of the two sliding grooves 12, and extend to the side of the two sliding grooves 12; through the setting of the limiting plate 14 and its length, the sliding of the partition plate 2 is avoided.

[0022] The top of the partition plate 2 is provided with a connecting rod 22, the connecting rod 22 transversely passes through each partition plate 2, and the two ends of the connecting rod 22 are provided with pull ropes 23; through the cooperation of the pull rope 23 and the connecting rod 22, the convenience of the partition plate 2 during movement is improved, the partition plate 2 can be moved by pulling the pull rope 23, thereby driving the rolling of the steel pipe.

[0023] The buffer device 3 further includes an auxiliary plate 32, a buffer spring 33 and a baffle 34, one end of the auxiliary plate 32 is connected with the tail end of the bottom plate 1, the baffle 34 is arranged on the upper end face of the auxiliary plate 32 and is located at the tail end and the two side edges of the auxiliary plate 32; the auxiliary plate 32 can provide support for the baffle 34.

[0024] The buffer spring 33 is located between the baffle 34 and the buffer plate 31, one end of the buffer spring 33 is connected with the baffle 34, and the other end is connected with the buffer plate 31; through the buffer spring 33, the impact force is reduced when the steel pipe is placed into the placing cavity 21, the violent collision between the steel pipe and the device is avoided, and the steel pipe is protected from being damaged.

[0025] The upper end face of the auxiliary plate 32 is provided with a plurality of evenly distributed moving grooves 35, the moving groove 35 is provided with a moving block 36, and the upper end of the moving block 36 is connected with the buffer plate 31; through the cooperation of the moving groove 35 and the moving block 36, the movable connection mode of the buffer plate 31 is realized.

[0026] The partition plate 2 is provided with a plurality of through holes 24; through the through hole 24, the zinc liquid can more fully enter into the placing cavity 21.

[0027] The above are only some specific embodiments of the present application, but the design concept of the present application is not limited thereto, and any non-essential modification of the present application using this concept shall be deemed to infringe the protection scope of the present application.

Claims

1. A steel pipe galvanizing apparatus characterized by comprising: Including bottom plate (1), partition (2) and buffer device (3), the buffer device (3) includes buffer plate (31), the buffer plate (31) is movably arranged in the tail end of bottom plate (1), the partition (2) is provided with several, movably arranged above the bottom plate (1), the adjacent partition (2) forms the placing cavity (21) between, the bottom plate (1) is arranged in an inclined manner, the first end to the tail end of bottom plate (1) gradually decreases from high to low, the first end of bottom plate (1) is connected with platform (11).

2. A steel pipe galvanizing apparatus according to claim 1, wherein: The bottom plate (1) is provided with two grooves (12), the grooves (12) are distributed at the first end and the tail end of the bottom plate (1), the sliding block (13) is arranged in the groove (12), and the upper end of the sliding block (13) is connected with the partition (2).

3. A steel pipe galvanizing apparatus according to claim 2, wherein: The sliding groove (12) extends along the width direction of the bottom plate (1), the cross section of the sliding groove (12) is in the shape of "convex", and the cross section of the sliding block (13) matches the cross section of the sliding groove (12).

4. A steel pipe galvanizing apparatus according to claim 3, wherein: The left and right sides of the bottom plate (1) are provided with limiting plates (14), both ends of the limiting plate (14) cover both ends of the two grooves (12), and extend to the side of the two grooves (12).

5. A steel pipe galvanizing apparatus according to claim 1, wherein: The top of the partition (2) is provided with a connecting rod (22), the connecting rod (22) crosses each partition (2), and the two ends of the connecting rod (22) are provided with pull ropes (23).

6. A steel pipe galvanizing apparatus according to claim 1, wherein: The buffer device (3) further includes an auxiliary plate (32), a buffer spring (33) and a baffle (34), one end of the auxiliary plate (32) is connected with the tail end of the bottom plate (1), the baffle (34) is arranged on the upper end face of the auxiliary plate (32) and located at the tail end and two side edges of the auxiliary plate (32).

7. A steel pipe galvanizing apparatus according to claim 6, wherein: The buffer spring (33) is located between the baffle (34) and the buffer plate (31), one end of the buffer spring (33) is connected with the baffle (34), and the other end is connected with the buffer plate (31).

8. A steel pipe galvanizing apparatus according to claim 7, wherein: The upper end face of the auxiliary plate (32) is provided with a plurality of evenly distributed moving grooves (35), the moving groove (35) is provided with a moving block (36), and the upper end of the moving block (36) is connected with the buffer plate (31).

9. A steel pipe galvanizing apparatus according to claim 1, wherein: The partition (2) is provided with a plurality of through holes (24).