Substrate glass conveying device convenient to change and air knife type blow-drying device
The linear drive mechanism is used to adjust the distance between the conveying wheels of the substrate glass conveying device, which solves the problem of traditional mold change requiring box disassembly and machine shutdown, and realizes rapid mold change and efficient production.
Patent Information
- Application Number
- CN202422815701.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-19
- Publication Date
- 2025-09-12
- Estimated Expiration
- 2034-11-19
AI Technical Summary
Traditional substrate glass conveying devices require disassembly of the box and shutdown when changing models, which is complicated to operate and affects production efficiency. It is difficult to quickly change models without disassembly of the box and shutdown.
A linear drive mechanism is used to drive the side plates, power modules and conveying wheel components to move along the axis of the guide hole. The distance between the conveying wheels is adjusted to achieve rapid changeover and adapt to the conveying of different types of substrate glass.
It achieves rapid model change without disassembling the box or stopping the machine, reduces manual labor, improves model change efficiency, and does not affect the normal rhythm and production efficiency of the production line.
Smart Images

Figure CN223332087U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of substrate glass, and particularly relates to a substrate glass conveying device and an air knife type drying device which are convenient for changing the shape. Background Art
[0002] Due to the large size of the substrate glass and the process requirements that the effective area of the substrate glass is not allowed to have dirt, marks, particles, and dust, in order to avoid wear and scratches on the surface of the finished substrate glass during the conveying process and affecting the surface quality of the finished substrate glass, two rows of conveying wheels are generally set up in each conveying link of the substrate glass production line. The two rows of conveying wheels only contact the two side areas (ineffective areas) of the substrate glass and do not contact the effective area in the middle. The two side areas of the substrate glass are cut off in the final process to obtain a finished substrate glass with good surface quality.
[0003] In order to avoid excessive cutting of the two sides of the substrate glass, the distance between the contact area between the single-row conveyor wheel and the substrate glass and the edges of the two sides of the substrate glass needs to be controlled within a certain size range. Therefore, the distance between the two rows of conveyor wheels is different for different types of substrate glass. When the type of substrate glass changes, the distance between the two rows of conveyor wheels needs to be adjusted accordingly for the change. The traditional change method usually requires manual adjustment and calibration of the position of the single-row conveyor wheel and its various transmission components, especially in the cold end cleaning process of the substrate glass. In order to prevent water splashing, the substrate glass passes along the inside of the box. The conveyor wheel will be set inside the box, and its power module will be set outside the box. When changing the box, it is often necessary to disassemble the box or even shut down the machine. The adjustment operation is complicated and time-consuming, which can easily affect the normal rhythm and production efficiency of the substrate glass production line. Utility Model Content
[0004] The technical problem to be solved by the utility model is to provide a substrate glass conveying device and an air knife-type drying device that can quickly change the mold without disassembling the box and stopping the machine, greatly reducing the amount of manual work and improving the efficiency of the change, and will not affect the normal rhythm and production efficiency of the production line.
[0005] The present invention provides a substrate glass conveying device that is easy to change, comprising two side plates, two power modules and two conveying wheel assemblies, and also comprising a linear drive mechanism; the two side plates are arranged at intervals, and a plurality of guide holes are provided on both side plates, a single power module is located on a side of a single side plate away from the other side plate, the conveying wheel assembly comprises a plurality of conveying wheels, and a rotating shaft is provided on the plurality of conveying wheels, and the plurality of conveying wheels in the two conveying wheel assemblies are arranged opposite to each other between the two side plates, and the rotating shafts on the plurality of conveying wheels in a single conveying wheel assembly are correspondingly passed through a plurality of guide holes on a single side plate and are transmission-connected to the power module corresponding to the side plate; the linear drive mechanism can drive the power module and the conveying wheel assembly corresponding to at least one of the side plates to move along the axis direction of the guide hole to adjust the distance between the plurality of conveying wheels in the two conveying wheel assemblies.
[0006] Furthermore, among the two side panels, a bottom plate is provided at the bottom of a single side panel facing away from the other side panel, and several columns 1 are provided on the bottom plate. The power module and conveying wheel assembly are arranged on the bottom plate and / or several columns 1, and the movable power module and conveying wheel assembly are slidably matched with the bottom plate and / or several columns 1 along the axis direction of the guide hole.
[0007] Furthermore, it also includes two support plates, a single support plate is arranged on several columns corresponding to a single side plate, and the two power modules both include a rotating mechanism and a transmission component, the rotating mechanism is arranged on the corresponding base plate, and the transmission component and the conveying wheel assembly are arranged on the corresponding support plate. In the movable power module and conveying wheel assembly, the rotating mechanism and the base plate are slidably matched along the axis direction of the guide hole, and the support plate where the transmission component and the conveying wheel assembly are located are slidably matched with several columns along the axis direction of the guide hole.
[0008] Furthermore, in the movable power module and conveying wheel assembly, the rotating mechanism and the support plate are synchronously driven to move by corresponding linear drive mechanisms.
[0009] Furthermore, a second column is provided on the base plate corresponding to the movable power module and the conveying wheel group, and the second column includes a second column body and a second mounting seat. The second column body is fixed on the base plate, and a second wedge-shaped groove is provided on the top of the second column body. The bottom of the second mounting seat is provided with a second wedge-shaped tenon. The second mounting seat is arranged on the top of the second column body through the cooperation of the second wedge-shaped groove and the second wedge-shaped tenon, and a linear drive mechanism for driving the support plate to move is arranged on the second mounting seat.
[0010] Furthermore, when the support plate and several columns are slidably matched along the axis direction of the guide hole, several sliders are provided at the bottom of the support plate, and the column includes a column body and a mounting seat. The column body is fixed to the base plate, and a wedge-shaped groove is provided on the top of the column body. The bottom of the mounting seat is provided with a wedge-shaped tenon. The mounting seat is provided on the top of the column body through the cooperation of the wedge groove and the wedge-shaped tenon, and the top of the mounting seat is provided with a slide rail that slidably cooperates with the slider.
[0011] Furthermore, the transmission component includes a transmission shaft and several gears 1 arranged on the transmission shaft, and the rotating shafts on the several conveying wheels are provided with gears 2 that mesh with the gears 1.
[0012] Furthermore, the linear drive mechanism is an electric cylinder.
[0013] The present invention also provides a wind knife type drying device, comprising a box body, a wind knife mechanism and a substrate glass conveying device that is easy to change as described above. The two side panels of the substrate glass conveying device that is easy to change are two sides of the box body that are opposite to each other, and the wind knife structure is arranged in the box body.
[0014] Furthermore, the two ends of the wind knife mechanism are correspondingly arranged on the two side plates.
[0015] The beneficial effect of the present invention is that a linear drive mechanism drives the power module and conveyor wheel assembly corresponding to at least one of the side panels to move along the axis of the guide hole. During this process, the rotating shaft in the conveyor wheel assembly moves along the guide hole, changing the distance between the conveyor wheel and its corresponding side panel, thereby adjusting the distance between the multiple conveyor wheels in the two conveyor wheel assemblies to achieve a change in type to adapt to the conveying of different types of substrate glass. This simple and fast change operation can be well applied to the process link of the substrate glass production line where the conveyor wheel is set inside the box and the power module is set outside the box. Without disassembling the box or stopping the machine, the type can be quickly changed, greatly reducing the amount of manual labor and improving the efficiency of the change, without affecting the normal rhythm and production efficiency of the production line. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 This is a schematic structural diagram from a first perspective of the substrate glass conveying device that is easy to change.
[0017] Figure 2 This is a schematic structural diagram from a second perspective of the substrate glass conveying device of the utility model which is easy to change.
[0018] Figure 3 For this utility model Figure 2 A in the enlarged view.
[0019] Figure 4This is a front view of the substrate glass conveying device that is easy to change.
[0020] In the figure: 1. Side panel; 11. Guide hole; 2. Power module; 21. Rotating mechanism; 22. Transmission component; 221. Transmission shaft; 222. Gear 1; 3. Conveying wheel assembly; 31. Conveying wheel; 32. Rotating shaft; 33. Gear 2; 4. Linear drive mechanism; 5. Bottom plate; 6. Column 1; 61. Column body 1; 62. Mounting seat 1; 7. Support plate; 8. Column 2; 81. Column body 2; 82. Mounting seat 2; 9. Wind knife mechanism. DETAILED DESCRIPTION
[0021] like Figures 1-4 As shown, the present invention provides a substrate glass conveying device that is easy to change, including two side panels 1, two power modules 2 and two conveying wheel assemblies 3, and also includes a linear drive mechanism 4. The two side panels 1 are spaced apart to form a spacing channel for the movement of the substrate glass. Both side panels 1 are provided with a plurality of guide holes 11. A single power module 2 is located on the side of a single side panel 1 facing away from the other side panel 1. Specifically, in the present invention, the side of the two side panels 1 facing each other is the inner side of the side panel 1, and the side of the side panel 1 facing away from the other side panel 1 is the outer side, that is, the two power modules 2 are correspondingly located on the outer sides of the two side panels 1. The conveying wheel assembly 3 includes several conveying wheels 31, each of which is provided with a rotating shaft 32. The several conveying wheels 31 in the two conveying wheel assemblies 3 are arranged opposite to each other between the two side plates 1. The rotating shaft 32 on the several conveying wheels 31 in a single conveying wheel assembly 3 is correspondingly penetrated into the several guide holes 11 on the single side plate 1 and is transmission-connected to the power module 2 corresponding to the side plate 1. That is, the rotating shafts 32 of the several conveying wheels 31 located on the inner side of the side plate 1 pass through the guide holes 11 and are transmission-connected to the power module 2 located on the outer side of the side plate 1, thereby driving the several conveying wheels 31 to rotate through the power module 2, and the length of the rotating shaft 32 is greater than the thickness of the side plate 1, so that the rotating shaft 32 has a stroke that can move axially along the guide hole 11. Among them, the power module 2 and the conveying wheel assembly 3 located in the area of a single side panel 1 are the power module 2 and the conveying wheel assembly 3 corresponding to the side panel 1, and the linear drive mechanism 4 can drive the power module 2 and the conveying wheel assembly 3 corresponding to at least one of the side panels 1 to move along the axial direction of the guide hole 11 to adjust the distance between the multiple conveying wheels 31 in the two conveying wheel assemblies 3.
[0022] Based on the above arrangement, the side panels 1 can be used to separate the conveying wheel assembly 3 and its power module 2, preventing water from splashing onto the power module 2, reducing the waterproof requirements of the power module 2, and avoiding circuit breakage caused by water seepage. At the same time, the guide hole 11 can also play a role in supporting the rotating shaft 32 to a certain extent, thereby improving the support strength of the conveying wheel 31. The linear drive mechanism 4 drives the power module 2 and the conveying wheel assembly 3 corresponding to at least one of the side panels 1 to move along the axis of the guide hole 11. During this process, the rotating shaft 32 in the conveying wheel assembly 3 moves along the guide hole 11, and the distance between the conveying wheel 31 and its corresponding side panel 1 changes, thereby adjusting the distance between the multiple conveying wheels 31 in the two conveying wheel assemblies 3, realizing the type change to adapt to the conveying of different types of substrate glass. The mold changing operation is simple and fast, and can be well applied to the process link in the substrate glass production line where the conveying wheel 31 is set inside the box and the power module 2 is set outside the box. It can quickly change the mold without disassembling the box and stopping the machine, which greatly reduces the manual labor and improves the mold changing efficiency, and will not affect the normal rhythm and production efficiency of the production line.
[0023] In one embodiment of the present invention, the immovable power module 2 and the conveying wheel assembly 3 are fixed on their corresponding side panels 1 .
[0024] In a preferred embodiment of the present invention, a bottom plate 5 is provided on the bottom of a single side plate 1 of the two side plates 1 facing away from the other side plate 1, i.e., a bottom plate 5 is provided on the outer bottom of each of the two side plates 1. Several columns 6 are provided on the two bottom plates 5, and the power module 2 and the conveying wheel assembly 3 are provided on the bottom plates 5 and / or the several columns 6. The power module 2 and the conveying wheel assembly 3 are supported by the bottom plates 5 and / or the columns, and the movable power module 2 and the conveying wheel assembly 3 are slidably engaged with the bottom plates 5 and / or the several columns 6 along the axial direction of the guide hole 11 to ensure that the movable power module 2 and the conveying wheel assembly 3 can be displaced along the axial direction of the guide hole 11 under the drive of the linear drive mechanism 4. This arrangement can reduce the load on the linear drive mechanism 4.
[0025] Specifically, the two power modules 2 each include a rotating mechanism 21 and a transmission component 22. The rotating mechanism 21 drives the multiple conveying wheels 31 in the single conveying wheel assembly 3 to rotate through the transmission component 22. The present invention also includes two support plates 7. The single support plate 7 is arranged on the multiple columns 6 corresponding to the single side plate 1, that is, the two support plates 7 are correspondingly arranged on the multiple columns 6 on the outside of the two side plates 1. The rotating mechanism 21 in each power module 2 is arranged on the corresponding base plate 5, and the transmission component 22 in each power module 2 and the conveying wheel assembly 3 connected thereto are arranged on the corresponding support plate 7. In the movable power module 2 and the conveying wheel assembly 3, the rotating mechanism 21 and the base plate 5 are slidably matched along the axial direction of the guide hole 11, and the support plate 7 where the transmission component 22 and the conveying wheel assembly 3 are located are slidably matched with the multiple columns 6 along the axial direction of the guide hole 11. Since the conveying wheel assembly 3 has a certain height on the side plate 1, this arrangement can effectively support the single conveying wheel assembly 3 as a whole and facilitate the linear drive mechanism 4 to drive the single conveying wheel assembly 3 to move as a whole. At the same time, it does not increase the difficulty of installing the rotating mechanism 21. The rotating mechanism 21 can still be installed on the lower bottom plate 5.
[0026] Based on the above arrangement, further, in the movable power module 2 and the conveying wheel assembly 3, the rotating mechanism 21 and the support plate 7 where the conveying wheel assembly 3 is located are synchronously driven and moved by the corresponding linear drive mechanism 4. Figure 1-Figure 3 As shown, in the movable power module 2 and the conveying wheel assembly 3, the rotating mechanism 21 is driven to move by a linear drive mechanism 4, and the support plate 7 is driven to move by a linear drive mechanism 4. The two linear drive mechanisms 4 move synchronously to ensure the synchronization of the movement of the power module 2 and the conveying wheel assembly 3.
[0027] A second column 8 is also provided on the bottom plate 5 corresponding to the movable power module 2 and the conveying wheel 31 group. The second column 8 includes a second column body 81 and a second mounting seat 82. The second column body 81 is fixed to the bottom plate 5. A second wedge-shaped groove is provided on the top of the second column body 81. The second mounting seat 82 is provided with a second wedge-shaped tenon at the bottom. The second mounting seat 82 is provided on the top of the second column body 81 through the cooperation of the second wedge groove and the second wedge tenon. The linear drive mechanism 4 for driving the support plate 7 to move is provided on the second mounting seat 82. Based on this arrangement, the linear drive mechanism 4 for driving the support plate 7 is supported so that its height can meet the driving requirements of the support plate 7. On this basis, the second mounting seat 82 can be made of a different material from the second column body 81, and combined with the mortise and tenon structure formed by the cooperation of the second wedge groove and the second wedge tenon, while taking into account the material cost, the structural stability and support strength of the second column 8 are improved, thereby improving the reliability of the device under long-term use.
[0028] When the support plate 7 and several columns 6 are slidably matched along the axial direction of the guide hole 11, several sliders are provided at the bottom of the support plate 7. The column 6 includes a column body 61 and a mounting seat 62. The column body 61 is fixed on the base plate 5. A wedge-shaped groove is provided on the top of the column body 61. A wedge-shaped tenon is provided at the bottom of the mounting seat 62. The mounting seat 62 is provided on the top of the column body 61 through the cooperation of the wedge groove and the wedge tenon, and a slide rail is provided on the top of the mounting seat 62 for sliding cooperation with the slider. Based on this arrangement, the mounting seat 62 can be made of a different material from the column body 61, and combined with the mortise and tenon structure formed by the cooperation of the wedge groove and the wedge tenon, while taking into account the material cost, the structural stability and support strength of the column 6 are improved, thereby improving the reliability of the device under long-term use.
[0029] The transmission component 22 includes a transmission shaft 221 and several gears 1 222 disposed on the transmission shaft 221. The rotating shafts 32 of the several conveying wheels 31 are provided with gears 2 33 that mesh with gears 1 222. Gears 1 222 and 2 33 may be helical or bevel gears. In other words, the rotating shafts 32 of the several conveying wheels 31 are connected to the transmission component 22 through the meshing of gears 1 222 and 2 33. The rotating shafts 32 of the several conveying wheels 31 are rotatably mounted on support 1, while the transmission shaft 221 is rotatably mounted on support 2. Both support 1 and support 2 are fixed to the support plate 7, thereby ensuring that the conveying wheel assembly 3 and the transmission component 22 are mounted on the support base.
[0030] Preferably, the linear drive mechanism 4 is an electric cylinder, which is electrically connected to the PLC control system. By presetting the electric cylinder stroke, the electric cylinder movement is controlled to achieve one-key change. In the embodiment where the linear drive mechanism 4 is an electric cylinder, the specific matching method can be as follows Figure 3 As shown, the electric cylinder used to drive the rotation mechanism 21 is fixed to the base. The bottom of the base of the rotation mechanism 21 slides with the surface of the cylinder body of the electric cylinder, thereby sliding the rotation mechanism 21 with the base. The output end of the electric cylinder is connected to the bottom of the base of the rotation mechanism 21. When the electric cylinder output end is extended and retracted, the rotation mechanism 21 is driven to move as a whole. The electric cylinder used to drive the support plate 7 is fixed to the second mounting base 82. The bottom of the support plate 7 slides with the surface of the electric cylinder body. The output end of the electric cylinder is connected to the bottom of the support plate 7. When the electric cylinder output end is extended and retracted, the support plate 7 is driven to move as a whole.
[0031] In other embodiments, the linear drive mechanism 4 may also be a screw-nut structure driven by an oil cylinder, an air cylinder, and a stepping motor.
[0032] Among them, in the present invention, specifically one power module 2 and one conveying wheel assembly 3 are fixed, and one power module 2 and one conveying wheel assembly 3 can be moved based on the above structure. In the fixed power module 2 and the conveying wheel assembly 3, the rotating mechanism 21 is fixed on the base plate 5, and the transmission component 22 and the support plate 7 of the conveying wheel assembly 3 are fixed on the top of several columns 6.
[0033] The present invention also provides an air knife type drying device, comprising a housing, an air knife mechanism 9 and a substrate glass conveying device that is easy to change as described above. The two side panels 1 in the substrate glass conveying device that is easy to change are two sides of the housing that are opposite to each other. The several conveying wheels 31 in the two conveying wheel assemblies 3 are arranged at intervals along the conveying direction of the substrate glass in the housing. The air knife structure is arranged in the housing. The air knife type drying device is specifically used in the cold end cleaning process of the substrate glass to dry the cleaned substrate glass. Due to the provision of the above-mentioned substrate glass conveying device that is easy to change, the housing can be quickly changed without disassembling the housing and stopping the machine, meeting the drying requirements of different types of substrate glass after cleaning, greatly reducing the amount of manual work and improving the efficiency of the changeover, without affecting the normal rhythm and production efficiency of the production line.
[0034] The two ends of the air knife mechanism 9 are correspondingly arranged on the two side panels 1, that is, the air knife mechanism 9 is installed using the two side panels 1. The air knife mechanism 9 includes an upper air knife and a lower air knife arranged along the height direction of the box body. A gap is left between the upper air knife and the lower air knife for the substrate glass to move. The substrate glass moves between the upper air knife and the lower air knife under the conveying action of the two conveying wheel assemblies 3. Under the action of the upper air knife and the lower air knife, water stains on the upper and lower surfaces of the substrate glass are blown away. In some embodiments, based on the aforementioned structure, a pneumatic floating platform mechanism can be set below the bottom of the box body to generate air buoyancy below the middle of the substrate glass to provide a certain support force for the middle of the substrate glass. The pneumatic floating platform mechanism is a prior art and will not be described in detail here.
[0035] Those skilled in the art should understand that the discussion of any of the above embodiments is merely illustrative and is not intended to imply that the scope of protection of the present application is limited to these examples. In line with the present application, the technical features in the above embodiments or different embodiments may be combined, the steps may be implemented in any order, and there are many other variations of different aspects of one or more embodiments of the present application as described above, which are not provided in detail for the sake of simplicity.
[0036] The one or more embodiments of this application are intended to encompass all such substitutions, modifications, and variations that fall within the broad scope of this application. Therefore, any omissions, modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of one or more embodiments of this application should be included in the scope of protection of this application.
Claims
1. A substrate glass conveying device that is easy to change, characterized in that: The invention comprises two side plates (1), two power modules (2) and two conveying wheel assemblies (3), and also comprises a linear drive mechanism (4); the two side plates (1) are spaced apart, and the two side plates (1) are each provided with a plurality of guide holes (11); a single power module (2) is located on a side of the single side plate (1) facing away from the other side plate (1); the conveying wheel assembly (3) comprises a plurality of conveying wheels (31), each of the plurality of conveying wheels (31) is provided with a rotating shaft (32); the plurality of conveying wheels (31) in the two conveying wheel assemblies (3) are arranged on the side of the single side plate (1) facing away from the other side plate (1); The two side plates (1) are arranged relative to each other, and the rotating shafts (32) on the several conveying wheels (31) in a single conveying wheel assembly (3) are correspondingly arranged in the several guide holes (11) on the single side plate (1) and are transmission-connected with the power module (2) corresponding to the side plate (1); the linear drive mechanism (4) can drive the power module (2) corresponding to at least one of the side plates (1) and the conveying wheel assembly (3) to move along the axis direction of the guide hole (11) to adjust the distance between the several conveying wheels (31) in the two conveying wheel assemblies (3).
2. The substrate glass conveying device for easy conversion according to claim 1, wherein: In the two side panels (1), a bottom plate (5) is provided at the bottom of a single side panel (1) facing away from the other side panel (1), and a plurality of columns (6) are provided on the bottom plate (5). The power module (2) and the conveying wheel assembly (3) are provided on the bottom plate (5) and / or the plurality of columns (6). The movable power module (2) and the conveying wheel assembly (3) are slidably matched with the bottom plate (5) and / or the plurality of columns (6) along the axial direction of the guide hole (11).
3. The substrate glass conveying device for easy conversion according to claim 2, wherein: It also includes two support plates (7), a single support plate (7) is arranged on a plurality of columns (6) corresponding to a single side plate (1), and the two power modules (2) each include a rotating mechanism (21) and a transmission component (22), the rotating mechanism (21) is arranged on the corresponding bottom plate (5), and the transmission component (22) and the conveying wheel assembly (3) are arranged on the corresponding support plate (7). In the movable power module (2) and the conveying wheel assembly (3), the rotating mechanism (21) and the bottom plate (5) are in sliding cooperation along the axial direction of the guide hole (11), and the support plate (7) where the transmission component (22) and the conveying wheel assembly (3) are located are in sliding cooperation with the plurality of columns (6) along the axial direction of the guide hole (11).
4. The substrate glass conveying device for easy conversion according to claim 3, wherein: In the movable power module (2) and the conveying wheel assembly (3), the rotating mechanism (21) and the support plate (7) are synchronously driven to move by the corresponding linear drive mechanism (4).
5. The substrate glass conveying device for easy conversion according to claim 4, wherein: A second column (8) is further provided on the bottom plate (5) corresponding to the movable power module (2) and the conveying wheel (31) group. The second column (8) includes a second column body (81) and a second mounting seat (82). The second column body (81) is fixed on the bottom plate (5). A second wedge-shaped groove is provided on the top of the second column body (81). The second mounting seat (82) is provided with a second wedge-shaped tenon at the bottom. The second mounting seat (82) is provided on the top of the second column body (81) through the cooperation of the second wedge-shaped groove and the second wedge-shaped tenon. A linear drive mechanism (4) for driving the support plate (7) to move is provided on the second mounting seat (82).
6. The substrate glass conveying device for easy conversion according to any one of claims 3 to 5, characterized in that: When the support plate (7) and the plurality of columns (6) are slidably matched along the axial direction of the guide hole (11), the bottom of the support plate (7) is provided with a plurality of sliders, the column (6) comprises a column body (61) and a mounting seat (62), the column body (61) is fixed on the bottom plate (5), the top of the column body (61) is provided with a wedge-shaped groove, the bottom of the mounting seat (62) is provided with a wedge-shaped tenon, the mounting seat (62) is provided on the top of the column body (61) through the cooperation of the wedge-shaped groove and the wedge-shaped tenon, and the top of the mounting seat (62) is provided with a slide rail that slidably matches the slider.
7. The substrate glass conveying device for easy conversion according to any one of claims 3 to 5, characterized in that: The transmission component (22) includes a transmission shaft (221) and a plurality of gears (222) arranged on the transmission shaft (221), and a gear (33) meshing with the gear (222) is arranged on the rotating shaft (32) on the plurality of conveying wheels (31).
8. The substrate glass conveying device for easy conversion according to any one of claims 1 to 5, characterized in that: The linear drive mechanism (4) is an electric cylinder.
9. An air knife type drying device, characterized in that: The invention comprises a box body, an air knife mechanism (9) and a substrate glass conveying device for easy transformation as claimed in any one of claims 1 to 8, wherein the two side panels (1) in the substrate glass conveying device for easy transformation are two sides of the box body that are opposite to each other, and the air knife mechanism is arranged in the box body.
10. The air knife drying device according to claim 9, wherein: The two ends of the wind knife mechanism (9) are correspondingly arranged on the two side plates (1).