Dust collection type glass loading platform

By designing a dust-absorbing glass loading platform and utilizing the coordination of transmission components and dust-absorbing components, automatic dust-absorbing and cleaning of the glass surface is achieved, solving the problem of cleaning glass powder and glass slag and improving production efficiency and safety.

CN223442551UActive Publication Date: 2025-10-17DONGGUAN CSG INTELLIGENT EQUIP MFG CO LTD +1
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Patent Information

Application Number
CN202422265332.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-14
Publication Date
2025-10-17
Estimated Expiration
2034-09-14

AI Technical Summary

Technical Problem

During the deep processing of glass, the glass powder and glass slag remaining on the slitting table after cutting are difficult to clean in time, resulting in agglomeration and surface scratches. Manual cleaning also poses safety hazards and inconveniences, affecting production efficiency.

Method used

Design a dust-collecting glass loading platform, including a loading platform, a transmission component, and a dust-collecting component. The dust-collecting component is driven to slide along a slide rail by a transmission belt and a drive wheel to achieve automated dust collection and cleaning of the glass surface. The platform adopts guide wheels and a toothed transmission structure to ensure the accuracy and safety of the transmission.

Benefits of technology

It enables automated vacuum cleaning of glass surfaces, simplifying operations, improving safety, reducing defect rates, and avoiding the time wasted and potential dangers of manual cleaning.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a dust collection type glass loading platform which comprises a loading platform body, a transmission assembly and a dust collection assembly, the loading platform body is used for placing glass and provided with a sliding rail, the dust collection assembly is located above the loading platform body and arranged on the sliding rail in a sliding mode, the transmission assembly comprises a transmission belt and a driving wheel, and the driving wheel is arranged on the dust collection assembly. The two ends of the transmission belt are fixed to the loading platform, and the driving wheels are in transmission connection with the transmission belt and act on the transmission belt to drive the dust collection assembly to slide along the sliding rails. The dust collection assembly can move on the sliding rails on the two sides of the loading platform, and the driving wheels act on the transmission belt to drive the dust collection assembly to slide along the sliding rails, so that the dust collection and cleaning functions of the dust collection type glass loading platform on the glass surface are achieved. Compared with a traditional glass loading platform, the dust collection type glass loading platform has the advantages that automatic dust collection and cleaning work of the dust collection type glass loading platform on the table top can be achieved, and operation is easy and safe.
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Description

TECHNICAL FIELD

[0001] The utility model relates to mechanical technical field especially relates to a dust collection formula glass loading platform. BACKGROUND

[0002] In the glass deep processing process, the cut glass is manually fragmented on the fragmentation table, and a large amount of glass powder and glass slag is left on the table surface, if not cleaned in time, the glass powder will form agglomerates on the felt of the fragmentation table, and the glass slag will be embedded in the felt, which will cause surface scratches on the glass and increase the number of defective products. When the factory is performing glass fragmentation operation, workers are generally required to clean the table surface regularly. When the workers clean the table surface, the cutting equipment stops processing the original glass, and the workers hold the air pipe to blow the glass powder, glass slag and other foreign matters on the table surface, which may cause the foreign matters to be blown into the eyes of others when the air pipe removes the foreign matters on the fragmentation table. It is inconvenient to clean with a dust collector and easy to cause harm to the operator. At the same time, due to the characteristics of the glass powder, if the glass powder is scattered on the ground, it may cause a person to slip event, so the ground needs to be cleaned in time. The cleaning time is generally 10 to 20 minutes, which is inconvenient to operate and takes a long time to clean, affecting the glass processing production. SUMMARY

[0003] Therefore, the present application provides a dust collection type glass loading platform, which can realize automatic dust cleaning of the table surface, is simple to operate and safe.

[0004] A dust collection type glass loading platform, comprising a loading platform, a transmission assembly and a dust collection assembly, the loading platform is used for placing glass, the loading platform is provided with a sliding rail, the dust collection assembly is located above the loading platform and is slidably arranged on the sliding rail, the transmission assembly comprises a transmission belt and a driving wheel, the driving wheel is arranged on the dust collection assembly, both ends of the transmission belt are fixed to the loading platform, the driving wheel is in transmission connection with the transmission belt, and the driving wheel acts on the transmission belt to drive the dust collection assembly to slide along the sliding rail.

[0005] The above dust collection type glass loading platform comprises a loading platform, a transmission assembly and a dust collection assembly. The dust collection assembly can move on the sliding rails on both sides of the loading platform to perform dust cleaning work on the glass placed on the loading platform. The transmission assembly can make the dust collection assembly slide along the sliding rail. The transmission assembly comprises a transmission belt and a driving wheel. The driving wheel acts on the transmission belt to drive the dust collection assembly to slide along the sliding rail, so as to realize the function of dust cleaning of the dust collection type glass loading platform on the glass surface. The entire process can realize automatic dust cleaning of the table surface of the dust collection type glass loading platform, which is simple and safe to operate.

[0006] In one of the embodiments, the transmission assembly further comprises a guide wheel, which is arranged on the dust collection assembly and in the same plane as the driving wheel, and which is connected to the driving wheel on the opposite side of the transmission belt, and which makes the transmission belt bend.

[0007] In one of the embodiments, the height of the driving wheel is higher than that of the guide wheel, and the transmission belt is bent by 90° through the guide wheel.

[0008] In one of the embodiments, the guide wheel is divided into a first guide wheel and a second guide wheel, and the transmission belt is connected to the first guide wheel, the driving wheel and the second guide wheel in sequence along the extending direction, and is bent by 90° through the first guide wheel and the second guide wheel, and is bent by 180° through the driving wheel.

[0009] In one of the embodiments, the transmission belt comprises a first end close to the first guide wheel and a second end close to the second guide wheel, and the first end and the second end are fixed to the loading platform, and the part of the transmission belt from the first end to the first guide wheel is in the same straight line as the part of the transmission belt from the second end to the second guide wheel.

[0010] In one of the embodiments, the surface of the guide wheel in contact with the transmission belt is a smooth surface.

[0011] In one of the embodiments, the driving wheel and the transmission belt are connected through a toothed structure.

[0012] In one of the embodiments, the dust collection assembly comprises a cross beam and a dust collection member, the driving wheel and the dust collection member are arranged on the cross beam, and the cross beam is slidably arranged on the slide rail; the transmission assembly comprises a driving motor, which is arranged on the cross beam and is drivingly connected to the driving wheel.

[0013] In one of the embodiments, one slide rail is arranged on each side of the loading platform, and each side of the cross beam is slidably connected to one slide rail.

[0014] In one of the embodiments, the dust collection assembly further comprises a lifting mechanism, which is connected to the dust collection member and the cross beam, and is used to drive the dust collection member to approach or move away from the glass on the loading platform. BRIEF DESCRIPTION OF DRAWINGS

[0015] The utility model will be further explained in combination with the drawings and embodiments, in which:

[0016] Figure 1 It is a structural schematic view of the dust collection type glass loading platform of one embodiment;

[0017] Figure 2 Structure diagram of a glass loading platform of a dust collection type for an embodiment;

[0018] Figure 3 For Figure 2 Enlarged view of the dashed portion.

[0019] Reference signs: glass loading platform 10 of a dust collection type; glass 100; loading platform 20; slide rail 21; transmission assembly 30; transmission belt 31; first end 311; second end 312; driving wheel 32; guide wheel 33; first guide wheel 331; second guide wheel 332; driving motor 34; dust collection assembly 40; cross beam 41; dust collection member 42; lifting mechanism 43; dust accumulation member 44; fan 45 DETAILED DESCRIPTION

[0020] This part will describe the specific embodiments of the present application in detail, the preferred embodiments of the present application are shown in the drawings, the role of the drawings is to supplement the description of the text part with figures, so that people can intuitively and visually understand each technical feature and the overall technical scheme of the present application, but it cannot be understood as a limitation on the protection scope of the present application.

[0021] In the description of the present application, the meaning of multiple is more than two, greater than, less than, more than, etc. is not included in the number, above, below, etc. is included in the number. If there is a description of the first, the second is only used for the purpose of distinguishing technical features, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of indicated technical features or implicitly indicating the sequence of indicated technical features.

[0022] In the present application, unless otherwise specified and limited, the first feature is "on" or "under" the second feature. The first and second features can be in direct contact, or the first and second features can be in indirect contact through an intermediate medium. Moreover, the first feature "above", "above" and "above" the second feature can be directly above or obliquely above the first feature, or only indicate that the horizontal height of the first feature is higher than that of the second feature. The first feature "below", "below" and "below" the second feature can be directly below or obliquely below the first feature, or only indicate that the horizontal height of the first feature is less than that of the second feature.

[0023] In the utility model, unless otherwise expressly limited, the words such as ''set'', ''install'', ''connect'' should be understood in a broad sense, for example, it can be directly connected, and it can be indirectly connected through an intermediate medium, it can be fixedly connected, and it can be detachably connected, and it can be integrally formed, it can be mechanically connected, and it can be the communication or interaction relationship of two elements inside two elements. The skilled in the art can determine the specific meaning of the above words in the utility model in combination with the specific content of the technical scheme.

[0024] In the glass deep processing process, the cut glass is manually separated on the separating table, and a large amount of glass powder and glass slag is left on the table surface. If not cleaned in time, the glass powder will form clumps on the felt of the separating table, and the glass slag will be embedded in the felt, which will cause surface scratches on the glass and increase the number of defective products. When the separating operation is carried out in the factory, the workers are generally required to clean the table surface regularly. When the workers clean the table surface, the cutting equipment stops processing the original glass, and the workers hold the air pipe to blow the glass powder, glass slag and other foreign matters on the table surface. When the air pipe removes the foreign matters on the separating table, it may cause the foreign matters to be blown into the eyes of others, and the characteristics of the glass powder may cause the personnel to slip on the ground. Therefore, the ground should be cleaned in time. Generally, the cleaning time is 10 to 20 minutes, the operation is inconvenient, the cleaning time is long, and the glass processing production is affected. Therefore, how to realize the safe and efficient dust cleaning work of the table surface is a technical problem to be solved by the skilled in the art.

[0025] Referring to Figure 1 , Figure 2 and Figure 3 , to solve the above problems, the dust collection type glass loading platform 10 provided by the embodiment of the application comprises a loading platform 20, a transmission assembly 30 and a dust collection assembly 40, the loading platform 20 is used for placing glass 100, the loading platform 20 is provided with a sliding rail 21, the dust collection assembly 40 is located above the loading platform 20 and is slidably arranged on the sliding rail 21, the transmission assembly 30 comprises a transmission belt 31 and a driving wheel 32, the driving wheel 32 is arranged on the dust collection assembly 40, both ends of the transmission belt 31 are fixed to the loading platform 20, the driving wheel 32 is in transmission connection with the transmission belt 31, and the driving wheel 32 drives the transmission belt 31 to drive the dust collection assembly 40 to slide along the sliding rail 21.

[0026] Referring to Figure 1 , Figure 2 and Figure 3In some embodiments, the dust-suction glass loading platform 10 comprises a loading platform 20 for placing the glass 100, a transmission assembly 30, and a dust-suction assembly 40 arranged above the loading platform 20. The loading platform 20 is provided with slide rails 21, and the dust-suction assembly 40 is slidably arranged on the slide rails 21. The dust-suction assembly 40 can move above the loading platform 20 through the slide rails 21 to perform dust-suction cleaning on the glass 100 placed on the loading platform 20. In some embodiments, the loading platform 20 is provided with one slide rail 21 on each side, and the transmission assembly 30 can move the dust-suction assembly 40 along the slide rails 21. Specifically, the transmission assembly 30 comprises a transmission belt 31 and a driving wheel 32 arranged on the dust-suction assembly 40. The driving wheel 32 acts on the transmission belt 31 to drive the dust-suction assembly 40 to slide along the slide rails 21. The driving wheel 32 can rotate to drive the transmission belt 31, and the transmission belt 31 drives the dust-suction assembly 40 to move along the slide rails 21 on both sides of the loading platform 20 together with the transmission assembly 30, so as to realize the dust-suction cleaning function of the dust-suction glass loading platform 10 on the surface of the glass 100. The whole process can realize the automatic dust-suction cleaning of the dust-suction glass loading platform 10 on the platform, which is simple and safe to operate.

[0027] Referring to Figure 2 and Figure 3In some embodiments, the transmission assembly 30 further comprises a guide wheel 33 configured to guide the transmission belt 31, the guide wheel 33 is arranged on the dust collection assembly 40 and in the same plane as the driving wheel 32, so that the guide wheel 33, the driving wheel 32 and the transmission belt 31 are in the same plane, which can effectively prevent the transmission belt 31 from being uneven or deviating. In some embodiments, the transmission belt 31 can be made of rubber, fiber, metal or plastic and fabric composite. The guide wheel 33 and the driving wheel 32 are connected to the opposite sides of the transmission belt 31, and the guide wheel 33 bends the transmission belt 31. Specifically, the driving wheel 32 can drive the transmission belt 31 to move, and the transmission belt 31 is bent under the guidance of the guide wheel 33. Further, the height of the driving wheel 32 is higher than that of the guide wheel 33, the transmission belt 31 is bent by 90° through the guide wheel 33, the transmission belt 31 is bent by 180° through the driving wheel 32, and the tangent line parallel to the tangent line at the top end of the driving wheel 32 is parallel to the tangent line at the bottom end of the guide wheel 33. The transmission assembly 30 provides a new driving mode for the dust collection type glass loading platform 10, which is simple to operate and can move the dust collection assembly 40 along the slide rails 21 at both ends of the loading platform 20 while dust collection. In some embodiments, the guide wheel 33 comprises a first guide wheel 331 and a second guide wheel 332, which can be symmetrically arranged below the driving wheel 32. The first guide wheel 331, the driving wheel 32 and the second guide wheel 332 are connected in sequence in the extension direction of the transmission belt 31. The first guide wheel 331 and the second guide wheel 332 can move along the slide rails 21 at both ends of the loading platform 20 together with the driving wheel 32. During the movement, the relative positions among the driving wheel 32, the first guide wheel 331 and the second guide wheel 332 remain unchanged. The driving wheel 32, the first guide wheel 331 and the second guide wheel 332 move together with the dust collection assembly 40, thereby realizing the movement of the transmission assembly 30 and the dust collection device along the slide rails 21 at both ends of the loading platform 20, so as to realize the dust collection and cleaning of the glass 100 on the loading platform 20.

[0028] With reference to the drawings Figure 2 and Figure 3In some embodiments, the transmission belt 31 includes a first end 311 near the first guide wheel 331 and a second end 312 near the second guide wheel 332, the first end 311 and the second end 312 are fixed to the loading platform 20, the portion of the transmission belt 31 from the first end 311 to the first guide wheel 331 and the portion of the transmission belt 31 from the second end 312 to the second guide wheel 332 are located on the same straight line, the straight line where the portion of the transmission belt 31 from the first end 311 to the first guide wheel 331 and the portion of the transmission belt 31 from the second end 312 to the second guide wheel 332 are located is parallel to the slide rails 21 at both ends of the loading platform 20, and is parallel to the tangent line where the tangent line of the transmission belt 31 at the top of the drive wheel 32 is located. In some embodiments, the surface of the guide wheel 33 in contact with the transmission belt 31 is a smooth surface, so that the guide wheel 33 guides the transmission belt 31 without causing wear to the transmission belt 31, ensuring the smooth operation of the drive wheel 32 driving the transmission belt 31 and the dust collection assembly 40. In some embodiments, the drive wheel 32 and the transmission belt 31 are connected by a toothed structure, specifically, the inner circumferential surface of the transmission belt 31 is provided with equidistant teeth, and the drive wheel 32 is also designed with corresponding teeth. This design allows the teeth of the transmission belt 31 and the teeth of the drive wheel 32 to be meshed for transmission, thereby ensuring that there is no relative sliding between the transmission belt 31 and the drive wheel 32 during transmission, ensuring the accuracy and efficiency of the transmission. The working principle of the transmission belt 31 is based on the precise meshing between the teeth of the transmission belt 31 and the teeth of the drive wheel 32, when the power source drives the drive wheel 32 to rotate, the teeth of the drive wheel 32 and the teeth of the transmission belt 31 mesh with each other, due to the precise matching of their shapes and spacing, this meshing can ensure that there is no relative sliding during transmission, thereby ensuring the stability and accuracy of the transmission. For example, the drive wheel 32 rotates at a certain speed, and through the meshing of the teeth, the power is accurately transmitted to the transmission belt 31, and the transmission belt 31 moves at the same linear speed as the drive wheel 32.

[0029] With reference to Figure 2 and Figure 3In some embodiments, the dust collection assembly 40 comprises a crossbeam 41 and a dust collection member 42, the driving wheel 32 and the dust collection member 42 are arranged on the crossbeam 41, and the crossbeam 41 is slidably arranged on the slide rail 21. The two sides of the crossbeam 41 are respectively slidably connected with a slide rail 21, and the upper side of the crossbeam 41 can be used to place a dust collection member 44. The dust collection member 44 is used to suck the foreign matters sucked by the dust collection member 42, and has a dust storage function. The dust collection member 44 can be provided with a double-channel cyclone suction force to suck the dirt sucked by the dust collection member 42 and store it in a dust bag in a sealed manner, thereby realizing the convenience of cleaning and dust storage of the dust collection assembly 40. The opening of the dust collection member 42 faces the loading platform 20, and the dust collection member 42 can capture foreign matters on the surface of the glass 100, such as glass slag and glass fragments. In some embodiments, the material of the shell of the dust collection member 42 can be ABS plastic (a terpolymer of acrylonitrile, butadiene and styrene). ABS plastic has excellent physical properties, such as good electrical properties, wear resistance, dimensional stability, chemical resistance and surface gloss, and is easy to process and shape. In addition, the flame-retardant ABS material has excellent flame retardance, flowability, high gloss and easy color matching. In some embodiments, the dust collection member 44 is connected with the dust collection channel, and the dust collection member 44 can be used to suck the foreign matters sucked by the dust collection member 42. In some embodiments, the dust collection member 42 can be provided as one or multiple, and the length of the opening surface of the dust collection member 42 covers the length of the glass 100 along the direction of the crossbeam 41, so as to realize more comprehensive dust collection and cleaning of the surface of the glass 100. The dust collection member 42 can adopt a flow guide type dust collection cover, which generally comprises an inner and outer double-layer structure. The inner cover is used to capture foreign matters discharged from the flow guide cover according to a diffusion angle, and the outer cover is used to capture overflowed foreign matters, which can more effectively absorb foreign matters on the surface of the glass 100, reduce pollution to the environment, and maintain the cleanliness of the work site. In some embodiments, the dust collection member 42 can be attached to the glass 100 for dust collection. The dust collection assembly 40 is driven by the transmission assembly 30 to move along the slide rail 21, thereby performing dust collection and cleaning work on the foreign matters on the surface of the glass 100. In some embodiments, the transmission assembly 30 comprises a driving motor 34 arranged on the crossbeam 41 and drivingly connected with the driving wheel 32. The driving motor 34 provides kinetic energy for the driving wheel 32. In some embodiments, the dust collection type glass loading platform 10 further comprises a fan 45. The fan 45 can adopt a three-phase negative pressure fan to ventilate and exchange air by using the principle of air convection and negative pressure ventilation, which can enhance air circulation and help indoor cooling. The fan 45 generates a negative pressure effect by rotating the impeller inside, so that the pressure inside the fan 45 is reduced to form a negative pressure area. In some embodiments, the dust collection assembly 40 further comprises a lifting mechanism 43 connected with the dust collection member 42 and the crossbeam 41. The lifting mechanism 43 is used to drive the dust collection member 42 to approach or move away from the glass 100 on the loading platform 20, and the lifting mechanism 43 can drive the height of the crossbeam 41, the dust collection assembly 40 and the driving wheel 32 relative to the glass 100.In some embodiments, the lifting mechanism 43 can adopt a lifting cylinder, which can convert the power of compressed air or liquid into mechanical energy to realize the lifting of the object. In the dust collection type glass loading platform 10, the lifting cylinder can be used to drive the dust collection member 42 to approach or move away from the glass 100 on the loading platform 20, so as to better realize the dust collection work on the foreign matters on the glass 100. In the specific operation process, the height of the dust collection member 42 relative to the glass 100 can be adjusted according to the degree of cleaning foreign matters.

[0030] Referring to Figure 1 , Figure 2 and Figure 3The dust-absorbing glass loading platform 10 provided in the application can be used to clean the glass 100 in an automatic and efficient manner. In the working state, the dust-absorbing assembly 40 of the dust-absorbing glass loading platform 10 is located above the workbench 20, and the dust-absorbing assembly 40 is away from the glass 100. At this time, other operations can be performed on the glass 100. Since the dust-absorbing assembly 40 is away from the surface of the glass 100, the dust-absorbing assembly 40 will not affect the other operations on the glass 100. When the glass powder, glass slag and other foreign matters generated during the processing of the glass 100 (for example, cutting the glass 100) need to be cleaned, the dust-absorbing glass loading platform 10 starts the dust-absorbing cleaning work. At this time, the lifting mechanism 43 can be used to drive the cross beam 41, the dust-absorbing assembly 40 and the driving wheel 32 to descend. The cross beam 41, the dust-absorbing assembly 40 and the driving wheel 32 descend together. When the dust-absorbing assembly 40 descends to the appropriate height, the height of the dust-absorbing assembly 40 can be fixed. The driving motor 34 can drive the driving wheel 32 to rotate. The surface of the guiding wheel 33 in contact with the transmission belt 31 is a smooth surface. The guiding wheel 33 can guide the transmission belt 31 without causing abrasion to the transmission belt 31, so that the driving wheel 32 can drive the transmission belt 31 and the dust-absorbing assembly 40 to move smoothly. The driving wheel 32 and the transmission belt 31 are connected through the toothed structure. Specifically, the inner circumferential surface of the transmission belt 31 is provided with equidistant teeth, and the driving wheel 32 is also provided with corresponding teeth. This design can ensure that the teeth of the transmission belt 31 and the teeth of the driving wheel 32 can be connected through meshing, so that the transmission belt 31 and the driving wheel 32 will not slide relative to each other during the transmission, ensuring the accuracy and efficiency of the transmission. The driving wheel 32 is arranged on the dust-absorbing assembly 40. The driving wheel 32 drives the transmission belt 31 to drive the dust-absorbing assembly 40 to slide along the slide rail 21. The driving wheel 32 can rotate to drive the transmission belt 31 to move, and the transmission belt 31 drives the dust-absorbing assembly 40 to move along the slide rail 21 on both sides of the loading platform 20 together with the transmission assembly 30, so as to realize the dust-absorbing cleaning function of the dust-absorbing glass loading platform 10 on the surface of the glass 100. The entire process can realize the automatic dust-absorbing cleaning work of the dust-absorbing glass loading platform 10 on the workbench, which is simple and safe to operate. Further, after the dust-absorbing glass loading platform 10 completes the dust-absorbing cleaning work once, the cross beam 41 can be raised by the lifting mechanism 43, and the dust-absorbing assembly 40 and the driving wheel 32 can be raised together to return to the initial position, that is, a certain distance exists between the dust-absorbing assembly 42 and the glass 100. When the dust-absorbing cleaning work on the surface of the glass 100 is needed again, the above steps can be repeated. As described above, the dust-absorbing glass loading platform 10 can realize the automatic dust-absorbing cleaning work on the workbench, which is simple and safe to operate.

[0031] Any combination of the technical features in the above-described embodiments can be made, and for the sake of brevity, not all possible combinations are described, however, as long as the combination of the technical features does not exist in contradiction, it shall be considered as the scope of the description.

[0032] The above-described embodiments only express several implementation manners of the utility model, the description is more specific and detailed, but it cannot be understood as the limitation of the utility model patent scope. It should be pointed out that for ordinary skilled person in the art, under the premise of not departing from the utility model concept, a number of modifications and improvements can be made, which all belong to the protection scope of the utility model. Therefore, the protection scope of the utility model patent shall be subject to the appended claims.

Claims

1. A dust-absorbing glass loading platform, characterized in that: It includes a loading platform, a transmission assembly and a dust collection assembly. The loading platform is used to place glass. The loading platform is provided with a slide rail. The dust collection assembly is located above the loading platform and is slidably arranged on the slide rail. The transmission assembly includes a transmission belt and a drive wheel. The drive wheel is arranged on the dust collection assembly. Both ends of the transmission belt are fixed to the loading platform. The drive wheel is connected to the transmission belt. The drive wheel acts on the transmission belt to drive the dust collection assembly to slide along the slide rail.

2. The dust suction glass loading platform according to claim 1, characterized in that: The transmission assembly further includes a guide wheel, which is provided on the dust collection assembly and is located in the same plane as the driving wheel. The guide wheel and the driving wheel are connected to opposite sides of the transmission belt, and the guide wheel bends the transmission belt.

3. The dust suction glass loading platform according to claim 2, characterized in that: The height of the driving wheel is higher than that of the guide wheel, and the transmission belt is bent 90° through the guide wheel.

4. The dust suction glass loading platform according to claim 2 or claim 3, characterized in that: The guide wheel is divided into a first guide wheel and a second guide wheel. The transmission belt is connected to the first guide wheel, the driving wheel and the second guide wheel in sequence along the extension direction. The transmission belt is bent 90° after passing through the first guide wheel and the second guide wheel, and the transmission belt is bent 180° after passing through the driving wheel.

5. The dust suction glass loading platform according to claim 4, characterized in that: The transmission belt includes a first end close to the first guide wheel and a second end close to the second guide wheel, the first end and the second end are fixed to the loading platform, and the portion of the transmission belt from the first end to the first guide wheel and the portion from the second end to the second guide wheel are located on the same straight line.

6. The dust suction glass loading platform according to claim 2, characterized in that: The surface of the guide wheel in contact with the transmission belt is a smooth surface.

7. The dust suction glass loading platform according to claim 1, characterized in that: The driving wheel and the transmission belt are connected through a toothed structure.

8. The dust suction glass loading platform according to claim 1, characterized in that: The dust collection component includes a crossbeam and a dust collection piece, the driving wheel and the dust collection piece are arranged on the crossbeam, and the crossbeam is slidably arranged on the slide rail; the transmission component includes a driving motor, which is arranged on the crossbeam and drives the driving wheel.

9. The dust suction glass loading platform according to claim 8, characterized in that: The two sides of the loading platform are respectively provided with a slide rail, and the two sides of the crossbeam are respectively slidably connected with a slide rail.

10. The dust suction glass loading platform according to claim 8, characterized in that: The dust collection component further includes a lifting mechanism, which connects the dust collection piece and the crossbeam, and is used to drive the dust collection piece to approach or move away from the glass on the loading platform.