Derusting device for conveying net

By designing an adjustable-width rust removal device, the limitations of fixed-length wire brush rollers in existing technologies have been overcome, enabling efficient, flexible, and automated rust removal of conveyor networks, thus improving rust removal efficiency and environmental cleanliness.

CN223947588UActive Publication Date: 2026-02-27GUANGDONG HUAXING GLASS CO LTD
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Patent Information

Application Number
CN202520451536.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-14
Publication Date
2026-02-27
Estimated Expiration
2035-03-14

AI Technical Summary

Technical Problem

The existing rust removal devices for conveyor networks have fixed wire brush roller lengths, making it difficult to adapt to conveyor networks of different widths. This results in poor rust removal effect and efficiency, failing to meet the diverse needs of industrial production.

Method used

An adjustable-width rust removal device was designed. By combining a slide rail, a sliding seat, and a bidirectional threaded rod, the spacing of the rust removal wire brush rollers can be adjusted. Combined with belt drive and synchronous rotation of the positioning rod, and equipped with a collection mechanism to collect rust residue, the device's flexibility and automation level are improved.

Benefits of technology

The rust removal device can be flexibly adapted to conveyor nets of different widths, improving rust removal efficiency and versatility, ensuring rust removal quality and environmental cleanliness, and reducing operational intensity.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of rust removal of conveying nets, in particular to a rust removal device of a conveying net, which comprises a mounting bottom plate, a first sliding seat, a second sliding seat, a first dust collector, a second dust collector, a first dust collector, a second dust collector, a first dust collector and a second dust collector, the two-way threaded rod is rotationally arranged on the mounting bottom plate and is in threaded connection with the sliding seat I and the sliding seat II, so that the two-way threaded rod rotates to drive the sliding seat I and the sliding seat II to be close to or far away from each other along the sliding rail; the two rust removal steel wire brush rollers comprise the first rust removal steel wire brush roller and the second rust removal steel wire brush roller, and the first rust removal steel wire brush roller is rotationally arranged on the second sliding seat; and through the design of adjustable spacing, the total length after the first rust removal steel wire brush roller and the second rust removal steel wire brush roller are combined can be adjusted according to actual requirements, and the rust removal device perfectly adapts to rust removal operation of conveying nets with various different widths.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a conveying net rust removal technical field especially relates to a conveying net rust removal device. BACKGROUND

[0002] In modern industrial production, conveying nets are widely used in various automatic production lines, especially playing a crucial role in the field of fine manufacturing such as glass printing. On the glass printing production line, the conveying net is responsible for accurately conveying the glass substrate to each printing station, and its cleanliness directly affects the final printing quality.

[0003] However, in the actual production process, the conveying net surface will inevitably be contaminated with printing color paste, ink, and glass debris and other pollutants. If these pollutants are not cleaned in time, they will accumulate on the conveying net surface, not only affecting the stability of the glass substrate conveying, but also possibly contaminating the glass surface again, causing defects in the printing pattern, and seriously affecting product quality. In order to ensure the printing quality and stable operation of the production line, regular cleaning and maintenance of the conveying net are required, but frequent cleaning operations and the humid and chemical environment of the production environment are extremely easy to cause stubborn rust marks on the surface of the conveying net. Rust not only destroys the surface structure of the conveying net, reduces its strength and service life, but also changes the friction coefficient of the conveying net surface, causing the glass substrate to slide or deviate during conveying, ultimately affecting the accuracy and consistency of the printing pattern.

[0004] In order to solve the problem of rust on the conveying net, the existing technology often uses a rust removal steel wire brush rod for rust removal work. However, the existing rust removal steel wire brush rod is usually designed with a fixed length, which is difficult to adapt to conveying nets of different widths in industrial production. From narrow to ultra-wide, the width of the conveying net varies, and the steel wire brush rod with a fixed length will greatly reduce the rust removal effect and efficiency when facing conveying nets of different widths, has poor flexibility, and is difficult to meet the actual production needs. In view of the above problems, the existing technology needs to be improved. UTILITY MODEL CONTENTS

[0005] The utility model aims at solving the shortcomings in the prior art and provides a conveying net rust removal device.

[0006] To achieve the above purpose, the technical scheme adopted by the present application is as follows: a conveying net rust removal device, comprising a mounting bottom plate, the top of the mounting bottom plate is fixedly connected with a slide rail, and further comprising:

[0007] Sliding seat one and sliding seat two, sliding seat one and sliding seat two are slidingly arranged on the slide rail;

[0008] The bidirectional threaded rod is rotationally arranged on the mounting base and is in threaded connection with the sliding seat one and the sliding seat two, so as to drive the sliding seat one and the sliding seat two to move close to or away from each other along the slide rail through rotation of the bidirectional threaded rod.

[0009] The two rust removal wire brush rods are respectively a rust removal wire brush rod one and a rust removal wire brush rod two, the rust removal wire brush rod one is rotationally arranged on the sliding seat two, the rust removal wire brush rod two is rotationally arranged on the sliding seat one, and the rust removal wire brush rod one and the rust removal wire brush rod two are coaxially arranged and close to or away from each other.

[0010] Preferably, the device further comprises:

[0011] The positioning rod is coaxially fixed to the end of the rust removal wire brush rod one.

[0012] The end of the rust removal wire brush rod two is provided with a positioning slot for inserting the positioning rod, so that the rust removal wire brush rod one drives the rust removal wire brush rod two to rotate synchronously.

[0013] Preferably, the device further comprises:

[0014] The motor two is fixed to the sliding seat two.

[0015] The pulley one is fixed to the output shaft of the motor two.

[0016] The pulley two is fixed to the end of the rust removal wire brush rod one.

[0017] The belt is sleeved between the pulley one and the pulley two, so as to drive the rust removal wire brush rod one to rotate through the motor two.

[0018] Preferably, the outer periphery of the rust removal wire brush rod one is provided with a rust removal wire bristle part one, and the outer periphery of the rust removal wire brush rod two is provided with a rust removal wire bristle part two, which are used for contacting the surface of the conveying net to remove rust.

[0019] Preferably, the device further comprises a collection mechanism, which comprises:

[0020] The two half collection boxes are respectively a half collection box one and a half collection box two, the half collection box one is arranged below the sliding seat two, and the half collection box two is arranged below the sliding seat one, which are used for collecting rust residue generated in the rust removal process, the end of the half collection box one is provided with a sliding groove, and one end of the half collection box two is inserted into the inside of the sliding groove.

[0021] Preferably, the opposite sides of the half collection box one and the half collection box two are respectively provided with clamping blocks, the sliding seat one and the sliding seat two are both provided with clamping holes, and the half collection box one and the half collection box two are connected through clamping and blocking of the clamping blocks and the clamping holes.

[0022] Preferably, the sliding seat one and the sliding seat two are provided with clamping mechanisms respectively, and the clamping mechanisms are used for clamping the clamping blocks in the clamping holes.

[0023] Preferably, the clamping mechanism comprises:

[0024] A fixing ring is correspondingly fixed on the sliding seat one or the sliding seat two;

[0025] A plug rod is slidably arranged in the fixing ring, and one end of the plug rod is used for being inserted into the insertion hole arranged on the corresponding half collecting box, and the other end of the plug rod is connected with a handle;

[0026] A spring is sleeved on the plug rod, and one end of the spring is abutted against the fixing ring, and the other end of the spring is correspondingly abutted against a fixing seat arranged on the sliding seat one or the sliding seat two, so that the plug rod is clamped in the insertion hole through the elastic force of the spring.

[0027] Preferably, the utility model also comprises a motor one, the motor one is fixed on the slide rail, and the output shaft of the motor one is connected with the bidirectional screw rod, and is used for driving the bidirectional screw rod to rotate.

[0028] Compared with the prior art, the utility model has the following beneficial effects:

[0029] The rust removal device of the conveying net of the utility model, through the ingenious design installation bottom plate, slide rail, sliding seat and bidirectional screw rod and the like components, constructs a kind of device capable of flexible adjustment rust removal width. Specifically, slide rail is arranged on installation bottom plate, so that sliding seat one and sliding seat two can freely slide on slide rail, and two sliding seats are driven to move towards or away from each other by bidirectional screw rod innovatively, so as to accurately adjust the interval between rust removal steel wire brush stick one and rust removal steel wire brush stick two fixed on the sliding seat. The design of adjustable interval makes the total length of rust removal steel wire brush stick one and rust removal steel wire brush stick two combined after the total length can be adjusted according to actual demand, and perfect adaptation of rust removal operation of various different width conveying net. Compared with the rust removal steel wire brush stick of fixed length in the prior art, the rust removal device of the utility model can effectively solve the problem that the length of steel wire brush stick in the prior art is fixed and cannot adapt to the rust removal needs of conveying net of different width, significantly improves the flexibility and universality of rust removal operation of conveying net, and can better meet the diversified rust removal needs in industrial production. BRIEF DESCRIPTION OF DRAWINGS

[0030] Figure 1 It is the overall structure schematic diagram of the utility model;

[0031] Figure 2 It is the local structure schematic diagram of the utility model;

[0032] Figure 3 It is the structure schematic diagram of the collecting mechanism in the utility model;

[0033] Figure 4 It is the structure schematic view of the rust removal steel wire brush stick two places in the utility model;

[0034] Figure 5 It is the structure schematic view of the rust removal steel wire brush stick one place in the utility model;

[0035] Figure 6 It is the utility model Figure 2 A place enlarged structure schematic view in the utility model.

[0036] In the drawing: 1, rust removal mechanism;101, rust removal steel wire brush stick one;102, rust removal steel wire brush stick two;103, rust removal steel wire brush hair part one;104, rust removal steel wire brush hair part two;105, positioning slot;106, positioning rod;2, collection mechanism;201, half collection box one;202, half collection box two;203, clamping block;204, jack;205, sliding slot;3, mounting base plate;4, clamping mechanism;401, handle;402, spring;403, fixed ring;404, plug-in rod;5, sliding rail;6, motor one;7, sliding seat one;8, sliding seat two;9, motor two;10, pulley one;11, pulley two;12, two-way threaded rod;13, clamping hole. DETAILED DESCRIPTION

[0037] The following description is used to disclose the utility model so that those skilled in the art can implement the utility model. The preferred embodiments in the following description are only as examples, and other obvious variants can be thought of by those skilled in the art.

[0038] In industrial production, especially in the field of precision glass printing, the conveying net plays an indispensable role. It is widely used in glass printing production lines for carrying and conveying glass substrates to various printing stations. However, in the actual production process, the conveying net is easily eroded by printing paste, glass debris and other pollutants, and the working environment is humid. Over a long period of time, rust marks that are difficult to remove will appear on the surface of the conveying net. These rust marks not only reduce the service life of the conveying net, but also affect the conveying quality and printing accuracy of the glass substrate. In order to solve the problem of rust marks on the conveying net, various rust removal devices appear in the prior art, among which the rust removal steel wire brush stick is widely used because of its high rust removal efficiency. However, the traditional rust removal steel wire brush stick is usually designed with a fixed length, and when facing conveying nets with different widths, the rust removal effect is often unsatisfactory, and the flexibility of use is insufficient. In view of the above defects of the prior art, the present application provides a rust removal device for conveying net, which innovatively adopts a width-adjustable design, which can effectively solve the limitations existing in the prior art.

[0039] As Figures 1 to 6 shown in a kind of rust removal device for conveying net, including mounting base plate 3, the top of mounting base plate 3 is fixedly connected with sliding rail 5, still include:

[0040] The sliding seat one 7 and the sliding seat two 8 are slidably arranged on the slide rail 5;

[0041] The bidirectional threaded rod 12 is rotatably arranged on the mounting bottom plate 3 and is in threaded connection with the sliding seat one 7 and the sliding seat two 8, so that the sliding seat one 7 and the sliding seat two 8 are driven to move towards or away from each other along the slide rail 5 through the rotation of the bidirectional threaded rod 12;

[0042] The two rust removal wire brush rods are rust removal wire brush rod one 101 and rust removal wire brush rod two 102, the rust removal wire brush rod one 101 is rotatably arranged on the sliding seat two 8, the rust removal wire brush rod two 102 is rotatably arranged on the sliding seat one 7, and the rust removal wire brush rod one 101 and the rust removal wire brush rod two 102 are coaxially arranged and move towards or away from each other.

[0043] In work, first, the rust removal device is placed below the conveying net to be rusted, so that the rust removal wire brush rod one 101 and the rust removal wire brush rod two 102 are in contact with the surface of the conveying net. Then, the driving mechanism, such as a motor, is started to drive the rust removal wire brush rod one 101 and the rust removal wire brush rod two 102 to rotate at high speed, and the rust on the surface of the conveying net is removed by friction between the steel wire bristles on the periphery of the rust removal wire brush rod and the rust. At the same time, according to the width size of the conveying net, the operator can manually or automatically control the rotation of the bidirectional threaded rod 12, adjust the relative position of the sliding seat one 7 and the sliding seat two 8 on the slide rail 5, and then adjust the distance between the rust removal wire brush rod one 101 and the rust removal wire brush rod two 102, so that the total length of the combination of the rust removal wire brush rod one 101 and the rust removal wire brush rod two 102 matches the width of the conveying net, so that the rust removal device can fully cover the surface of the conveying net, and efficient and thorough rust removal work is realized. As can be seen, the rust removal device for the conveying net provided by the utility model solves the limitations of the fixed rust removal wire brush rod in the prior art through ingenious structure design and flexible adjustment mode, and provides a more efficient and convenient solution for the rust removal and maintenance work of the conveying net.

[0044] As an embodiment of the utility model, further comprising:

[0045] The positioning rod 106 is coaxially fixed at the end of the rust removal wire brush rod one 101;

[0046] The end of the rust-removing steel wire brush stick two 102 is provided with a positioning slot 105 for inserting a positioning rod 106 to drive the rust-removing steel wire brush stick two 102 to rotate synchronously with the rust-removing steel wire brush stick one 101; in the working process, the structure of the positioning rod 106 and the positioning slot 105 is also provided to realize the synchronous rotation of the rust-removing steel wire brush stick one 101 and the rust-removing steel wire brush stick two 102; in order to ensure that the rust-removing steel wire brush stick one 101 and the rust-removing steel wire brush stick two 102 can work coordinately in the rust-removing operation and improve the rust-removing efficiency and quality, the utility model coaxially fixes a positioning rod 106 at the end of the rust-removing steel wire brush stick one 101, and correspondingly sets the positioning slot 105 at the end of the rust-removing steel wire brush stick two 102. The shape of the positioning slot 105 is matched with the shape of the positioning rod 106, for example, the positioning rod 106 can be cylindrical, and the positioning slot 105 is a round hole. When the rust-removing steel wire brush stick one 101 and the rust-removing steel wire brush stick two 102 are connected, the positioning rod 106 can be accurately inserted into the positioning slot 105, realizing the axial alignment and connection of the two. In summary, by adding the structure of the positioning rod 106 and the positioning slot 105 between the rust-removing steel wire brush stick one 101 and the rust-removing steel wire brush stick two 102, the utility model effectively solves the synchronization problem of the two rust-removing steel wire brush sticks working coordinately. Compared with the scheme of driving each rust-removing steel wire brush stick separately, the structure of the embodiment is more simple, the transmission efficiency is higher, and the rotational speed and the steering of the two rust-removing steel wire brush sticks can be completely consistent, avoiding the problem of the rust-removing effect being reduced due to the rotational speed difference or the steering being opposite, and further improving the overall performance and practical value of the conveying net rust-removing device.

[0047] As an embodiment of the utility model, further comprising:

[0048] The motor two 9 is fixed on the sliding seat two 8;

[0049] The belt pulley one 10 is fixed on the output shaft of the motor two 9;

[0050] The belt pulley two 11 is fixed at the end of the rust-removing steel wire brush stick one 101;

[0051] A belt is sleeved between the belt pulley one 10 and the belt pulley two 11 to drive the rust-removing steel wire brush stick one 101 to rotate by the motor two 9; during operation, in order to realize the rotary motion of the rust-removing steel wire brush stick one 101 and further drive the rust-removing steel wire brush stick two 102 to rotate synchronously, the utility model skillfully designs a belt transmission mechanism. The mechanism mainly comprises the motor two 9, the belt pulley one 10, the belt pulley two 11 and the belt. The motor two 9 is stably installed on the sliding seat two 8 as a power source, the output shaft of the motor two 9 is fixedly connected with the belt pulley one 10, and the belt pulley one 10 rotates synchronously with the output shaft of the motor two 9. The belt pulley two 11 is fixedly arranged at the end of the rust-removing steel wire brush stick one 101 and rotates synchronously with the rust-removing steel wire brush stick one 101. The belt is sleeved between the belt pulley one 10 and the belt pulley two 11 as a transmission medium and is tightly sleeved to form a closed annular transmission loop. Therefore, when the motor two 9 is started, the rotary power output by the motor two 9 is firstly transmitted to the belt pulley one 10, then the belt pulley one 10 drives the belt pulley two 11 to rotate through the belt, and finally the rust-removing steel wire brush stick one 101 is driven to rotate, thereby realizing the rust-removing function.

[0052] As an embodiment of the utility model, the rust-removing steel wire brush stick one 101 is provided with a rust-removing steel wire brush part one 103 on the outer periphery, the rust-removing steel wire brush stick two 102 is provided with a rust-removing steel wire brush part two 104 on the outer periphery, and the rust-removing steel wire brush part one 103 and the rust-removing steel wire brush part two 104 are used for contacting the conveying net surface to remove rust; during operation, the rust-removing steel wire brush part one 103 and the rust-removing steel wire brush part two 104 are the core components for realizing the rust-removing function, directly contact the conveying net surface, remove the rust, the oxidation layer and other attachments on the conveying net surface through the friction force generated by high-speed rotation, and during specific operation, when the conveying net is located above the rust-removing device and moves relatively, the rust-removing steel wire brush part one 103 and the rust-removing steel wire brush part two 104 rotate at high speed under the drive of the motor two 9, the steel wire brush on the rust-removing steel wire brush part one 103 and the rust-removing steel wire brush part two 104 continuously brush the conveying net surface, like countless small files, and grind down the rust layer little by little, thereby realizing the cleaning and renovation of the conveying net surface.

[0053] As an embodiment of the utility model, the rust-removing device further comprises a collecting mechanism 2, and the collecting mechanism 2 comprises:

[0054] Two half collecting boxes, namely a half collecting box one 201 and a half collecting box two 202, the half collecting box one 201 is arranged below the sliding seat two 8, the half collecting box two 202 is arranged below the sliding seat one 7, is used for collecting rust slag and debris generated during rust removal, and the end of the half collecting box one 201 is provided with a sliding groove 205, one end of the half collecting box two 202 is inserted into the inside of the sliding groove 205.

[0055] As an embodiment of the utility model, one side of half collection box one 201 and half collection box two 202 respectively is provided with clamping block 203, sliding seat one 7 and sliding seat two 8 are equipped with clamping hole 13, and half collection box one 201 and half collection box two 202 are connected by clamping block 203 and clamping hole 13, in order to solve the problem that rust slag and debris generated in the rust removal process scatter, keep the neatness of working environment, and facilitate subsequent centralized treatment of rust slag and debris, the utility model innovatively designs collection mechanism 2. The collection mechanism 2 is mainly composed of half collection box one 201 and half collection box two 202, and the two are respectively arranged below sliding seat one 7 and sliding seat two 8, and correspond to the positions of rust removal steel wire brush stick one 101 and rust removal steel wire brush stick two 102. When rust removal steel wire brush one 103 and rust removal steel wire brush two 104 are used to remove rust on the surface of the conveying net, the rust slag, debris and other substances generated will naturally fall under the action of gravity and be effectively collected by half collection box one 201 and half collection box two 202, avoiding splashing or scattering everywhere, keeping the working area clean and sanitary, and facilitating subsequent unified cleaning and disposal of the collected waste, meeting the requirements of environmental protection and clean production.

[0056] As an embodiment of the utility model, sliding seat one 7 and sliding seat two 8 are equipped with clamping mechanism 4, and clamping mechanism 4 is used to clamp clamping block 203 in clamping hole 13.

[0057] As an embodiment of the utility model, clamping mechanism 4 includes:

[0058] Fixed ring 403 is fixed on sliding seat one 7 or sliding seat two 8;

[0059] Inserting rod 404 is slidably arranged in fixed ring 403, one end is used to insert into insertion hole 204 arranged on the corresponding half collection box, and the other end is connected with handle 401;

[0060] The spring 402 is sleeved on the inserting rod 404, one end of the spring 402 abuts against the fixed ring 403, and the other end of the spring 402 abuts against a fixed seat arranged on the sliding seat one 7 or the sliding seat two 8, so that the inserting rod 404 is clamped in the inserting hole 204 by the elastic force of the spring 402; during operation, in order to prevent the half collecting box one 201 and the half collecting box two 202 from being accidentally separated during operation and affecting the collecting effect of the rust and debris, the clamping mechanism 4 is innovatively arranged on the sliding seat one 7 and the sliding seat two 8. The clamping mechanism 4 is used for further locking the clamping block 203 in the clamping hole 13 after the half collecting box one 201 and the half collecting box two 202 are connected through the clamping block 203 and the clamping hole 13, preventing the clamping block 203 from loosening or falling off, and ensuring the stability and reliability of the connection of the half collecting boxes. During specific operation, the clamping mechanism 4 applies a certain clamping force to the clamping block 203, so that the clamping block 203 and the clamping hole 13 are in close fit, even if the device is vibrated or impacted during operation, the half collecting box one 201 and the half collecting box two 202 can also maintain a stable connection state and are not easily separated; wherein the specific structure of the clamping mechanism 4 can have multiple choices, and a spring clamping mechanism is adopted in the embodiment. The mechanism mainly comprises the fixed ring 403, the spring 402 and the inserting rod 404. The fixed ring 403 is fixed on the sliding seat, for example, the sliding seat one 7 or the sliding seat two 8. The spring 402 is sleeved on the inserting rod 404 and is pre-compressed, one end of the spring 402 abuts against the fixed ring 403, and the other end of the spring 402 abuts against a fixed seat arranged on the sliding seat one 7 or the sliding seat two 8. The inserting rod 404 is slidably arranged in the fixed ring 403, one end of the inserting rod 404 penetrates through the fixed ring 403 and is used for being inserted into the inserting hole 204 arranged on the corresponding half collecting box. Under the elastic force of the spring 402, the inserting rod 404 always has a tendency to be inserted into the inserting hole 204, so that the clamping block 203 is tightly clamped in the clamping hole 13, and reliable locking is realized. When the half collecting boxes need to be separated, the spring 402 is only needed to be overcome, the handle 401 is pulled, the inserting rod 404 is pulled out of the inserting hole 204, and the clamping state is released, which is convenient and fast.

[0061] As an embodiment of the utility model, further include motor one 6, motor one 6 is fixed on slide rail 5, the output shaft of motor one 6 is connected with bidirectional screw rod 12, for driving bidirectional screw rod 12 rotation;When working, in order to further promote the degree of automation and the operation convenience of conveying net rust cleaning device, the utility model introduces motor one 6 as driving mechanism, is especially used for controlling the rotation of bidirectional screw rod 12.Motor one 6 is stably fixed on slide rail 5, and the output shaft thereof is connected with one end of bidirectional screw rod 12, for example, can be connected by coupling, gear or belt transmission mode, etc.When needing to adjust the distance between rust cleaning steel wire brush stick one 101 and rust cleaning steel wire brush stick two 102, operating personnel only need to control the starting and steering of motor one 6, and motor one 6 will drive bidirectional screw rod 12 to rotate, and then drive sliding seat one 7 and sliding seat two 8 to slide on slide rail 5 towards or away from each other, realize the automatic adjustment of the distance between rust cleaning steel wire brush stick.This automatic adjustment mode does not need manual adjustment of bidirectional screw rod 12, greatly reduces the operation intensity, improves the adjustment efficiency and accuracy, makes the operation of rust cleaning device more intelligent and humanized.

[0062] The utility model works as follows:

[0063] In use, the conveying net is moved above the device, and the conveying net is contacted with the rust removing steel wire brush part one 103 and the rust removing steel wire brush part two 104 by the device, the motor two 9 drives the belt pulley one 10 to rotate, the belt pulley one 10 drives the belt pulley two 11 to rotate through the belt, the belt pulley two 11 drives the rust removing steel wire brush stick one 101 to rotate, the rust removing steel wire brush stick one 101 drives the positioning rod 106 to rotate synchronously, the positioning rod 106 is inserted into the positioning slot 105, the rust removing steel wire brush stick two 102 is driven to rotate synchronously by the rust removing steel wire brush stick one 101, so that the rust removing steel wire brush part one 103 and the rust removing steel wire brush part two 104 rotate to polish and remove rust on the surface of the conveying net, and according to the width of the conveying net and practical needs, the motor one 6 drives the bidirectional threaded rod 12 to rotate, the sliding seat one 7 and the sliding seat two 8 can slide on the slide rail 5, the sliding seat one 7 and the sliding seat two 8 are driven to move close to or away from each other by the bidirectional threaded rod 12, so that the rust removing steel wire brush stick one 101 and the rust removing steel wire brush stick two 102 move close to or away from each other, so that the length of the rust removing steel wire brush stick one 101 and the rust removing steel wire brush stick two 102 combined together can be adapted to the width of the conveying net, so that the rust removing needs of the conveying net with different widths can be met, the use is more flexible, and most of the rust and debris falling during the rust removing process of the rust removing steel wire brush part one 103 and the rust removing steel wire brush part two 104 falls into the half collecting box one 201 and the half collecting box two 202 for collection, when it is needed to pour out the collected rust and debris, the handle 401 drives the inserting rod 404 to move, the spring 402 is elastically compressed, until the end of the inserting rod 404 is pulled out of the insertion hole 204, then the half collecting box one 201 and the half collecting box two 202 are moved close to each other, the clamping block 203 is moved out of the clamping hole 13, then the half collecting box one 201 and the half collecting box two 202 are taken down, and the collected rust and debris can be poured out, so that the rust and debris are cleaned.

[0064] The basic principle, main features and advantages of the utility model are shown and described above. It should be understood by those skilled in the art that the utility model is not limited by the above examples, and the above examples and descriptions in the specification are only the principles of the utility model, and various changes and improvements can be made without departing from the spirit and scope of the utility model, and these changes and improvements all fall within the scope of the utility model claimed.

Claims

1. A rust removal device for a conveying net, comprising a mounting base plate (3), a sliding rail (5) is fixedly connected to the top of the mounting base plate (3), characterized in that, Also include: Sliding seat one (7) and sliding seat two (8), sliding seat one (7) and sliding seat two (8) are slidingly arranged on the slide rail (5); Two-way threaded rod (12), rotationally arranged on the mounting bottom plate (3), and threaded with the sliding seat one (7) and the sliding seat two (8), so as to drive the sliding seat one (7) and the sliding seat two (8) to move closer or farther away along the slide rail (5) by rotating the two-way threaded rod (12); Two rust removal steel wire brush rods, rust removal steel wire brush rod one (101) and rust removal steel wire brush rod two (102), rust removal steel wire brush rod one (101) is rotationally arranged on the sliding seat two (8), rust removal steel wire brush rod two (102) is rotationally arranged on the sliding seat one (7), and rust removal steel wire brush rod one (101) and rust removal steel wire brush rod two (102) are coaxially arranged and move closer or farther away.

2. The rust removal device of the conveyor net according to claim 1, characterized in that, Also include: Positioning rod (106), coaxially fixed at the end of the rust removal steel wire brush rod one (101); The end of the rust removal steel wire brush rod two (102) is provided with a positioning slot (105), and the positioning slot (105) is used for inserting the positioning rod (106) to drive the rust removal steel wire brush rod two (102) to rotate synchronously.

3. The rust removal device of the conveyor net according to claim 1, characterized in that, Also include: Motor two (9), fixed on the sliding seat two (8); Pulley one (10), fixed on the output shaft of the motor two (9); Pulley two (11), fixed at the end of the rust removal steel wire brush rod one (101); Belt, sleeved between the pulley one (10) and the pulley two (11), so as to drive the rust removal steel wire brush rod one (101) to rotate by the motor two (9).

4. The rust removal device of the conveyor net according to claim 1, wherein The outer periphery of the rust removal steel wire brush rod one (101) is provided with a rust removal steel wire brush part one (103), and the outer periphery of the rust removal steel wire brush rod two (102) is provided with a rust removal steel wire brush part two (104), and the rust removal steel wire brush part one (103) and the rust removal steel wire brush part two (104) are used for contacting with the surface of the conveying net to remove rust.

5. The rust removal device of the conveyor net according to claim 4, characterized in that, Also include collection mechanism (2), the collection mechanism (2) includes: Two half collection boxes, half collection box one (201) and half collection box two (202), half collection box one (201) is arranged below the sliding seat two (8), half collection box two (202) is arranged below the sliding seat one (7), which is used for collecting rust and debris generated in the rust removal process, and the end of the half collection box one (201) is provided with a sliding groove (205), and one end of the half collection box two (202) is inserted into the inside of the sliding groove (205).

6. The rust removal device of the conveyor net according to claim 5, wherein The side away from the half collection box one (201) and the half collection box two (202) is respectively provided with a clamping block (203), and the sliding seat one (7) and the sliding seat two (8) are provided with a clamping hole (13), and the half collection box one (201) and the half collection box two (202) are connected by clamping the clamping block (203) and the clamping hole (13).

7. A rust removal device for a conveyor belt as claimed in claim 6, characterized in that The sliding seat one (7) and the sliding seat two (8) are provided with clamping mechanisms (4), which are used for clamping the clamping block (203) in the clamping hole (13).

8. The rust removal device of the conveyor net according to claim 7, characterized in that, The clamping mechanism (4) includes: The fixed ring (403) is fixed on the sliding seat one (7) or the sliding seat two (8); The insertion rod (404) is slidably arranged in the fixed ring (403), and one end of the insertion rod (404) is arranged in the insertion hole (204) on the corresponding half collecting box, and the other end of the insertion rod (404) is connected with the handle (401); The spring (402) is sleeved on the insertion rod (404), one end of the spring (402) abuts against the fixed ring (403), and the other end of the spring (402) abuts against the fixed seat arranged on the sliding seat one (7) or the sliding seat two (8), so that the insertion rod (404) is clamped in the insertion hole (204) by the elastic force of the spring (402).

9. A rust removal device for a conveyor belt according to any one of claims 1 to 8, characterized in that The motor one (6) is further arranged on the sliding rail (5), the output shaft of the motor one (6) is connected with the bidirectional threaded rod (12), and the motor one (6) is used for driving the bidirectional threaded rod (12) to rotate.