Ventilation system for inkjet film production
By designing a ventilation system for inkjet film production and using slide rails and drive components to adjust the position of ventilation components, the problem of low efficiency of inkjet material residue in enclosed rooms was solved, achieving more efficient material collection and air circulation.
Patent Information
- Application Number
- CN202423263659.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-27
- Publication Date
- 2026-01-09
- Estimated Expiration
- 2034-12-27
AI Technical Summary
In existing technologies, inkjet printing materials have low residue retention efficiency in enclosed rooms, resulting in a large amount of residue remaining in the room.
Design a ventilation system for inkjet film production. Through a mechanical structure consisting of slide rails, support plates, support rings, and drive components, adjust the position of the ventilation components to enhance air circulation, and collect excess material after inkjet printing using a fan.
It improved the collection efficiency of inkjet printing materials, increased air circulation in the inkjet printing workshop, reduced material residue, and expanded the coverage of the ventilation system.
Smart Images

Figure CN223782988U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of ventilation technology, and in particular to a ventilation system for inkjet film production. Background Technology
[0002] During the processing and production of workpieces, it is necessary to spray or coat the surface of the workpiece. During this process, the spraying equipment sprays the material onto the surface of the workpiece using high pressure, which causes some of the spraying material to remain in the air due to impact and other reasons.
[0003] Currently, inkjet printing on workpieces is carried out in a closed room. The room is ventilated to collect any remaining inkjet material. However, this method is inefficient and often results in a large amount of residue in the room. Utility Model Content
[0004] Therefore, it is necessary to address the issue that traditional inkjet printing is carried out in a closed room, and the inkjet printing material residue is collected by ventilating the room. However, this method is inefficient and often results in a large amount of residue in the room. Therefore, a ventilation system for inkjet printing film production should be provided.
[0005] This application provides a ventilation system for inkjet printing film production, including:
[0006] Slide rail;
[0007] A support plate is disposed on the top of the slide rail, and the support plate is slidably connected to the slide rail;
[0008] A support ring is disposed on the top of the support plate, and the support ring is slidably connected to the support plate;
[0009] A first driving member is disposed on the support plate, and the first driving member is disposed on one side of the support ring, and the first driving member meshes with the gear of the support ring;
[0010] The second driving component is disposed on the top of the support plate. One end of the second driving component is fixedly connected to the inner wall of the support ring, and the other end of the second driving component is suspended in the air.
[0011] A ventilation assembly is disposed on the top of the support plate, and the ventilation assembly is fixedly connected to the suspended end of the second drive member.
[0012] This application relates to a ventilation system for inkjet printing film production. By activating a first driving component to rotate a support ring, the working position of the ventilation component is adjusted. Then, a second driving component is activated to further adjust the working position of the ventilation component, so that the working position of the ventilation component is closer to the inkjet printing position, so as to collect excess material after inkjet printing and increase air circulation in the inkjet printing workshop. Furthermore, the support plate can also move along the slide rail to further increase the coverage area of the working position of the ventilation component. Attached Figure Description
[0013] Figure 1 This is a schematic diagram of the ventilation system for inkjet film production provided in one embodiment of this application.
[0014] Figure 2 This is a schematic diagram showing the positional relationship between the support cylinder and the driven plate in a ventilation system for inkjet film production according to an embodiment of this application.
[0015] Figure 3 This is a schematic diagram showing the positional relationship between the first support shaft and the first mating gear plate in a ventilation system for inkjet film production provided in an embodiment of this application.
[0016] Figure 4 This is a schematic diagram showing the positional relationship between the first positioning groove and the support plate in a ventilation system for inkjet film production provided in an embodiment of this application.
[0017] Figure label:
[0018] 11. Slide rail; 12. Support plate; 121. First positioning groove; 13. Support ring; 14. First driving component;
[0019] 141. Drive gear plate; 142. First motor; 15. Second drive component; 151. Support cylinder;
[0020] 151a, First limiting groove; 152, Driven plate; 153, Threaded shaft; 154, Second motor;
[0021] 16. Ventilation assembly; 161. Fan; 162. First connecting pipe; 163. Second connecting pipe;
[0022] 17. First mating component; 171. First support shaft; 172. First mating gear disc;
[0023] 18. Second mating component; 181. Second support shaft; 182. Second mating gear disc;
[0024] 19. First limit block; 20. Second limit block. Detailed Implementation
[0025] To make the objectives, technical solutions, and advantages of this application clearer, the following detailed description is provided in conjunction with the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative and not intended to limit the scope of this application.
[0026] like Figure 1 As shown, in one embodiment of this application, the inkjet film production ventilation system includes a slide rail 11, a support plate 12, a support ring 13, a first drive component 14, a second drive component 15, and a ventilation assembly 16.
[0027] The support plate 12 is disposed on the top of the slide rail 11, and the support plate 12 is slidably connected to the slide rail 11.
[0028] The support ring 13 is disposed on the top of the support plate 12, and the support ring 13 is slidably connected to the support plate 12.
[0029] The first driving member 14 is disposed on the support plate 12 and is disposed on one side of the support ring 13. The first driving member 14 meshes with the support ring 13 via gears.
[0030] The second driving member 15 is disposed on the top of the support plate 12. One end of the second driving member 15 is fixedly connected to the inner wall of the support ring 13, and the other end of the second driving member 15 is suspended in the air.
[0031] The ventilation component 16 is disposed on the top of the support plate 12, and the ventilation component 16 is fixedly connected to the suspended end of the second drive member 15.
[0032] Specifically, there are two slide rails 11, both of which are located at the bottom of the support plate 12 and are slidably connected to the support plate 12; the support ring 13 is circular.
[0033] In this embodiment, the first driving component 14 is activated to drive the support ring 13 to rotate, thereby adjusting the working position of the ventilation component 16. Then, the second driving component 15 is activated to further adjust the working position of the ventilation component 16 so that the working position of the ventilation component 16 is closer to the film printing position, so as to collect the excess material after printing and increase the air circulation in the printing workshop. Furthermore, the support plate 12 can also move along the slide rail 11 to further increase the coverage of the working position of the ventilation component 16.
[0034] like Figure 4 As shown, in one embodiment of this application, the top of the support plate 12 is provided with a first positioning groove 121, and the support ring 13 is slidably connected to the first positioning groove 121.
[0035] Specifically, the bottom wall of the first positioning groove 121 is set as an arc surface that mates with the outer circumferential surface of the support ring 13.
[0036] like Figure 2 As shown, in one embodiment of this application, the first driving member 14 includes a drive gear 141 and a first motor 142.
[0037] The drive gear 141 is rotatably mounted on the support plate 12. The drive gear 141 is located at the bottom of the first positioning groove 121. The drive gear 141 meshes with the outer circumferential gear of the support ring 13.
[0038] The first motor 142 is disposed on one side of the support plate 12, the first motor 142 is fixedly connected to the support plate 12, and the first motor 142 is fixedly connected to the drive gear plate 141.
[0039] In this embodiment, the first motor 142 is started, which drives the drive gear 141 to rotate. The drive gear 141 and the outer circumferential surface gear of the support ring 13 are meshed to make the support ring 13 rotate.
[0040] like Figure 2 As shown, in one embodiment of this application, the second driving member 15 includes a support cylinder 151, a driven plate 152, a threaded shaft 153, and a second motor 154.
[0041] The support cylinder 151 is disposed on the top of the support plate 12. One end of the support cylinder 151 is fixedly connected to the inner wall of the support ring 13, and the other end of the support cylinder 151 is suspended in the air.
[0042] One end of the driven plate 152 is inserted into the suspended end of the support cylinder 151, and the other end of the driven plate 152 is suspended.
[0043] The threaded shaft 153 is rotatably disposed inside the support cylinder 151, and the threaded shaft 153 is threadedly connected to the driven plate 152;
[0044] The second motor 154 is fixedly mounted on the support cylinder 151, and the second motor 154 is fixedly connected to the threaded shaft 153.
[0045] The support cylinder 151 has a first limiting groove 151a at one of its suspended ends, and the driven plate 152 is inserted into the first limiting groove 151a.
[0046] Specifically, the cross-section of the driven plate 152 is set to be square, and the cross-section of the first limiting groove 151a is set to be square to cooperate with the driven plate 152.
[0047] In this embodiment, by starting the second motor 154 to drive the threaded shaft 153 to rotate, the threaded connection between the driven plate 152 and the threaded shaft 153 is utilized so that when the threaded shaft 153 rotates, the driven plate 152 can slide along the first limiting groove 151a, thereby adjusting the position of the ventilation assembly 16 in the circumferential direction of the support ring 13.
[0048] like Figure 3 As shown, in one embodiment of this application, the ventilation assembly 16 includes a fan 161, a first connecting pipe 162, and a second connecting pipe 163.
[0049] The fan 161 is disposed on the top of the support plate 12, and the fan 161 is fixedly connected to the suspended end of the driven plate 152.
[0050] The first connecting pipe 162 is disposed on one side of the support ring 13, and the first connecting pipe 162 is connected to the fan 161.
[0051] The second connecting pipe 163 is located on the other side of the support ring 13, and the second connecting pipe 163 is connected to the fan 161.
[0052] In this embodiment, the fan 161 is started to collect the excess material generated by the inkjet printing, and the first connecting pipe 162 and the second connecting pipe 163 are used to transport the collected excess material.
[0053] like Figures 2 to 3 As shown, in one embodiment of this application, the inkjet film production ventilation system further includes a first mating component 17 and a second mating component 18.
[0054] The first mating member 17 is rotatably disposed within the support plate 12. The first mating member 17 is disposed on one side of the drive gear disk 141. The first mating member 17 meshes with the gear of the support ring 13.
[0055] The second mating member 18 is rotatably disposed within the support plate 12, and is disposed on the other side of the drive gear 141. The second mating member 18 meshes with the gear of the support ring 13.
[0056] The first mating component 17 includes a first support shaft 171 and a first mating gear 172.
[0057] The first support shaft 171 is fixedly disposed inside the support plate 12, and the first support shaft 171 is disposed on one side of the drive gear disk 141.
[0058] The first mating gear 172 is sleeved on the first support shaft 171, the first mating gear 172 is rotatably connected to the first support shaft 171, and the first mating gear 172 meshes with the outer circumferential gear of the support plate 12.
[0059] The second mating component 18 includes a second support shaft 181 and a second mating gear 182.
[0060] The second support shaft 181 is fixedly disposed inside the support plate 12, and the second support shaft 181 is disposed on the side of the drive gear disk 141 away from the first support shaft 171.
[0061] The second mating gear 182 is sleeved on the second support shaft 181, the second mating gear 182 is rotatably connected to the second support shaft 181, and the second mating gear 182 meshes with the outer circumferential gear of the support plate 12.
[0062] In this embodiment, the contact area between the support ring 13 and the support plate 12 is reduced by using the first mating part 17 and the second mating part 18, thereby reducing the friction between the support ring 13 and the support plate 12.
[0063] like Figure 4 As shown, in one embodiment of this application, the inkjet film production ventilation system further includes a first limiting block 19 and a second limiting block 20.
[0064] The first limiting block 19 is disposed in the first positioning groove 121. The first limiting block 19 is fixedly connected to one inner wall of the first positioning groove 121, and the first limiting block 19 abuts against the inner wall of the support ring 13.
[0065] The second limiting block 20 is disposed in the first positioning groove 121, the second limiting block 20 is fixedly connected to the other inner wall of the first positioning groove 121, and the second limiting block 20 abuts against the inner wall of the support ring 13.
[0066] Specifically, the structure of the first limiting block 19 is the same as that of the second limiting block 20, and the bottom of the first limiting block 19 is set as an arc-shaped surface that cooperates with the inside of the support ring 13.
[0067] In this embodiment, the first limiting block 19 and the second limiting block 20 are used to cooperate with the first positioning groove 121 to limit the inner wall side of the support ring 13, thereby enabling the support ring 13 to rotate stably within the first positioning groove 121 with a small contact area.
[0068] The technical features of the above embodiments can be combined arbitrarily, and the execution order of the method steps is not restricted. For the sake of brevity, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this specification.
[0069] The embodiments described above are merely illustrative of several implementation methods of this application, and while the descriptions are specific and detailed, they should not be construed as limiting the scope of this patent application. It should be noted that those skilled in the art can make various modifications and improvements without departing from the concept of this application, and these all fall within the protection scope of this application. Therefore, the protection scope of this application should be determined by the appended claims.
Claims
1. A ventilation system for inkjet printing film production, characterized in that, The ventilation system for inkjet film production includes: slide rail; A support plate is disposed on the top of the slide rail, and the support plate is slidably connected to the slide rail; A support ring is disposed on the top of the support plate, and the support ring is slidably connected to the support plate; A first driving member is disposed on the support plate, and the first driving member is disposed on one side of the support ring, and the first driving member meshes with the gear of the support ring; The second driving component is disposed on the top of the support plate. One end of the second driving component is fixedly connected to the inner wall of the support ring, and the other end of the second driving component is suspended in the air. A ventilation assembly is disposed on the top of the support plate, and the ventilation assembly is fixedly connected to the suspended end of the second drive member.
2. The ventilation system for inkjet printing film production according to claim 1, characterized in that, The top of the support plate is provided with a first positioning groove, and the support ring is slidably connected to the first positioning groove.
3. The ventilation system for inkjet printing film production according to claim 2, characterized in that, The first driving element includes: A drive gear is rotatably mounted on the support plate, the drive gear is located at the bottom of the first positioning groove, and the drive gear meshes with the outer circumferential gear of the support ring; A first motor is disposed on one side of the support plate, and the first motor is fixedly connected to the support plate and the drive gear plate.
4. The ventilation system for inkjet printing film production according to claim 3, characterized in that, The second driving element includes: A support cylinder is disposed on the top of the support plate. One end of the support cylinder is fixedly connected to the inner wall of the support ring, and the other end of the support cylinder is suspended in the air. A driven plate, one end of which is inserted into the suspended end of the support cylinder, and the other end of which is suspended. A threaded shaft is rotatably disposed inside the support cylinder, and the threaded shaft is threadedly connected to the driven plate; The second motor is fixedly mounted on the support cylinder and is fixedly connected to the threaded shaft.
5. The ventilation system for inkjet printing film production according to claim 4, characterized in that, The support cylinder has a first limiting groove at one of its suspended ends, and the driven plate is inserted into the first limiting groove.
6. The ventilation system for inkjet printing film production according to claim 5, characterized in that, The ventilation assembly includes: A fan is mounted on top of the support plate, and the fan is fixedly connected to one of the suspended ends of the driven plate; A first connecting pipe is disposed on one side of the support ring, and the first connecting pipe is connected to the fan; The second connecting pipe is located on the other side of the support ring and is connected to the fan.
7. The ventilation system for inkjet film production according to claim 6, characterized in that, The ventilation system for inkjet film production also includes: The first mating component is rotatably disposed within the support plate and is located on one side of the drive gear disk. The first mating component meshes with the support ring gear. The second mating component is rotatably disposed within the support plate and is located on the other side of the drive gear disk. The second mating component meshes with the support ring gear.
8. The ventilation system for inkjet printing film production according to claim 7, characterized in that, The first mating component includes: The first support shaft is fixedly installed inside the support plate and is located on one side of the drive gear disk; The first mating gear is sleeved on the first support shaft. The first mating gear is rotatably connected to the first support shaft. The first mating gear meshes with the gear on the outer circumferential surface of the support plate.
9. The ventilation system for inkjet printing film production according to claim 8, characterized in that, The second mating component includes: The second support shaft is fixedly installed inside the support plate, and the second support shaft is located on the side of the drive gear disk away from the first support shaft; The second mating gear is sleeved on the second support shaft. The second mating gear is rotatably connected to the second support shaft and meshes with the gear on the outer circumferential surface of the support plate.
10. The ventilation system for inkjet printing film production according to claim 9, characterized in that, The ventilation system for inkjet film production also includes: A first limiting block is disposed in the first positioning groove. The first limiting block is fixedly connected to one inner wall of the first positioning groove, and the first limiting block abuts against the inner wall of the support ring. The second limiting block is disposed in the first positioning groove. The second limiting block is fixedly connected to the other inner wall of the first positioning groove, and the second limiting block abuts against the inner wall of the support ring.