Glass rod transportation structure
By designing the feeding and delivery devices and clamping devices on the support frame, the automated transportation of glass rods is realized, and the problem of time-consuming and labor-intensive transportation of glass rods in the prior art is solved, processing efficiency is improved and labor costs are reduced.
Patent Information
- Application Number
- CN202422549561.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-22
- Publication Date
- 2025-08-05
- Estimated Expiration
- 2034-10-22
AI Technical Summary
The lack of automated glass rod transportation structures in existing glass processing devices leads to time-consuming and labor-intensive transportation of glass rods and high labor costs.
A glass rod transport structure including a support frame, a feeding device, a feeding device and a clamping device is designed. The clamping device is arranged corresponding to the processing device on the support frame. Automatic transportation of the glass rod is realized through the feeding and feeding devices, and the glass rod is sent to the processing position through the clamping device.
The automatic transportation of glass rods is realized, processing efficiency is improved, labor costs are reduced, and glass rods are prevented from falling back into the feed box during transportation.
Smart Images

Figure CN223188462U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of glass processing equipment, in particular to a glass rod transportation structure. Background Art
[0002] Glass is an amorphous, inorganic, non-metallic material that is widely used in construction, transportation, and all aspects of daily life. There are different production methods and processing techniques for glass with different uses, such as the glass plate cutting process disclosed in Patent Publication No. CN105171935B and the glass scribing process disclosed in Patent Publication No. CN110682450B. Existing glass processing techniques mainly target square glass plates, while there is a lack of transportation methods for cylindrical glass rods. Most of them are manually transported to a processing table and then processed automatically or manually. The transportation process of glass rods is time-consuming and labor-intensive, so there is a need for a transportation structure that can automatically transport glass rods during the processing process. Summary of the Invention
[0003] The purpose of the utility model is to solve the deficiencies of the prior art and provide a glass rod transportation structure.
[0004] In order to solve the above problems, the present invention adopts the following solutions:
[0005] A glass rod transport structure includes a support frame for supporting, a feeding device for feeding in the glass rods, a delivery device for delivering the glass rods, and a clamping device for clamping the glass rods; the clamping device is arranged above the support frame, and the support frame is also provided with a processing device for processing the glass rods; the clamping device is arranged corresponding to the processing device on the support frame; the feeding device and the delivery device are arranged inside the support frame, and the feeding device and the delivery device are respectively located on both sides of the processing device.
[0006] Furthermore, the clamping device includes a first clamping plate, a second clamping plate, a first motion structure and a second motion structure; the first motion structure and the second motion structure move toward each other, the first clamping plate is fixedly arranged on the first motion structure, and the second clamping plate is fixedly arranged on the second motion structure.
[0007] Furthermore, the first motion structure includes a first slide rail, a first slider, a first power source, a first screw and a first support plate; wherein the first slide rail is fixedly arranged above the support frame, and the first slider is slidably arranged on the first slide rail; the first support plate is fixedly arranged on the first slider, and the first clamping plate is fixedly arranged on the first support plate; the first support plate is also connected to the first power source through a screw.
[0008] Furthermore, the second motion structure includes a second slide rail, a second slider, a second power source, a second lead screw and a second support plate; wherein the second slide rail is fixedly arranged above the support frame, and the second slider is slidably arranged on the second slide rail; the second slider is fixedly arranged with a second support plate, and the second support plate is fixedly arranged with a second clamping plate; the second support plate is also transmission-connected to the second power source through a second lead screw.
[0009] Furthermore, the feeding device includes a feeding box and an ejection assembly; the feeding box is arranged in the support frame, and a discharge port for placing glass rods is provided on one side of the feeding box, and an ejection assembly is provided on the side of the feeding box opposite to the discharge port, and the ejection assembly moves up and down; the upper surface of the feeding box is provided with an opening corresponding to the ejection assembly, and the support frame is also provided with a feeding port corresponding to the ejection assembly.
[0010] Furthermore, the bottom of the feeding box is configured as an inclined surface, and the inclined surface is inclined downward from one side of the feeding box discharge port to one side of the ejection assembly.
[0011] Furthermore, the feeding device also includes a tightening component, which is slidably arranged on the upper surface of the support frame, and the tightening component corresponds to the feeding port.
[0012] Furthermore, the tightening assembly includes a first tightening plate and a second tightening plate, wherein the first tightening plate is fixedly arranged above the support frame, the first tightening plate is arranged close to the feed port on the support frame, and the second tightening plate is slidably arranged above the support frame, and the second tightening plate is arranged corresponding to the feed port; an elastic structure is arranged between the second tightening plate and the first tightening plate, and an elastic structure is also arranged between the second tightening plate and the first support plate.
[0013] Furthermore, the ejection assembly includes an ejection plate, a third slide rail, a third slider and a third power source; wherein a partition for separating the feeding device and the sending device is provided on the support frame, and the feeding device and the sending device are respectively located on both sides of the partition; the third slide rail in the ejection assembly is fixedly provided on the partition, and the third slider is slidably provided on the third slide rail; the ejection plate is fixedly provided on the third slider; the third power source is fixedly provided on the ejection plate, and the third power source is also meshed and connected with the rack provided on the partition.
[0014] Furthermore, a U-shaped or V-shaped groove for clamping the glass rod is provided at the upper end of the ejection plate.
[0015] The beneficial effects of the utility model are:
[0016] By arranging a feeding structure and a feeding structure on the support frame and cooperating with a clamping device, the automatic transportation of the glass rod can be completed, thereby improving the processing efficiency of the glass rod and reducing labor costs;
[0017] By providing the feeding device with a tightening assembly, when the clamping device clamps the glass rod, the feeding port on the support frame can be shielded to prevent the glass rod from falling back into the feeding box;
[0018] By arranging an ejection assembly in the feeding box, the glass rod is transported upward and transported to the clamping device area on the upper surface of the support frame to complete the processing. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] Figure 1 Schematic diagram of the overall structure in Example 1 in conjunction with an external processing device;
[0020] Figure 2 This is a schematic diagram of the overall structure in Example 1;
[0021] Figure 3 This is a schematic diagram of the overall structure in Example 1 without the first and second plywood;
[0022] Figure 4 Schematic diagram of the feed port and discharge port on the support frame in Example 1;
[0023] Figure 5 for Figure 4 A local enlarged view of area a;
[0024] Figure 6 This is an exploded view of the overall structural area after the support frame in Example 1.
[0025] Explanation of the accompanying drawings: support frame 1, partition 11, rack 12, feed port 13, discharge port 14, feeding device 2, feeding box 21, discharge port 211, ejection assembly 22, ejection plate 221, third slide rail 222, third slider 223, third power source 224, slot 225, tightening assembly 23, first tightening plate 231, second tightening plate 232, elastic structure 233, feeding device 3, clamping device 4, first clamping plate 41, second clamping plate 42, first motion structure 43, first slide rail 431, first slider 432, first power source 433, first lead screw 434, first support plate 435, second motion structure 44, second slide rail 441, second slider 442, second power source 443, second lead screw 444, second support plate 445. DETAILED DESCRIPTION
[0026] The following describes the embodiments of the present invention through specific examples. Those skilled in the art will readily understand the other advantages and benefits of the present invention from the disclosure herein. The present invention may also be implemented or applied through various other specific embodiments, and the details in this specification may be modified or altered based on different perspectives and applications without departing from the spirit of the present invention. It should be noted that the following embodiments and features within these embodiments may be combined with one another, unless they conflict.
[0027] It should be noted that the illustrations provided in the following embodiments are only schematic illustrations of the basic concept of the present invention. Therefore, the figures only show components related to the present invention and are not drawn according to the number, shape and size of components in actual implementation. In actual implementation, the type, quantity and proportion of each component can be changed at will, and the component layout type may also be more complicated.
[0028] Example 1:
[0029] like Figures 1 to 6 As shown, a glass rod transport structure includes a support frame 1 for supporting, a feeding device 2 for feeding in the glass rod, a discharging device 3 for discharging the glass rod, and a clamping device 4 for clamping the glass rod; the clamping device 4 is arranged above the support frame 1, and the support frame 1 is also provided with a processing device for processing the glass rod; the clamping device 4 is arranged corresponding to the processing device on the support frame 1; the feeding device 2 and the discharging device 3 are arranged inside the support frame 1, and the feeding device 2 and the discharging device 3 are respectively located on both sides of the processing device. First, the feeding device 2 feeds the glass rod from the bottom of the support frame 1 to the clamping device 4 on the support frame 1, and then the clamping device 4 sends the clamped glass rod to the corresponding area of the processing device for processing. After processing is completed, the glass rod is sent out of the workstation by the discharging device 3; it should be noted that the processing device is an existing processing structure, including but not limited to structures such as scribing and cutting.
[0030] The clamping device 4 includes a first clamping plate 41, a second clamping plate 42, a first moving structure 43 and a second moving structure 44; the first moving structure 43 and the second moving structure 44 move toward each other, the first clamping plate 41 is fixedly arranged on the first moving structure 43, and the second clamping plate 42 is fixedly arranged on the second moving structure 44; when the first clamping plate 41 and the second clamping plate 42 approach each other, they can clamp or limit the glass rod transported by the feeding structure and drive the glass rod to the set position for processing. The first motion structure 43 includes a first slide rail 431, a first slider 432, a first power source 433, a first lead screw 434 and a first support plate 435; the first slide rail 431 is fixedly arranged above the support frame 1, and the first slider 432 is slidably arranged on the first slide rail 431; the first support plate 435 is fixedly arranged on the first slider 432, and the first clamping plate 41 is fixedly arranged on the first support plate 435; the first support plate 435 is also connected to the first power source 433 through a lead screw; the first power source 433 drives the lead screw and the first support plate 435 to move, thereby controlling the movement of the first clamping plate 41. Similarly, the second motion structure 44 includes a second slide rail 441, a second slider 442, a second power source 443, a second lead screw 444, and a second support plate 445. The second slide rail 441 is fixedly mounted above the support frame 1, and the second slider 442 is slidably mounted on the second slide rail 441. The second support plate 445 is fixedly mounted on the second slider 442, and the second clamping plate 42 is fixedly mounted on the second support plate 445. The second support plate 445 is also transmission-connected to the second power source 443 via the second lead screw 444. It should be noted that in this example, both the first power source 433 and the second power source 443 are motors.
[0031] The feeding device 2 includes a feeding box 21 and an ejection assembly 22. The feeding box 21 is disposed within the support frame 1. A discharge port 211 for placing glass rods is disposed on one side of the feeding box 21. An ejection assembly 22 is disposed on the side of the feeding box 21 opposite the discharge port 211. The ejection assembly 22 moves up and down. An opening corresponding to the ejection assembly 22 is disposed on the upper surface of the feeding box 21. The support frame 1 is also provided with a feeding port 13 corresponding to the ejection assembly 22. In this example, the bottom of the feeding box 21 is configured as an inclined surface, which slopes downward from the discharge port 211 of the feeding box 21 to the ejection assembly 22. This facilitates the rolling of the glass rods placed within the feeding box 21 along the inclined surface toward the ejection assembly 22 until they reach the position corresponding to the ejection assembly 22. The ejection assembly 22 then ejects the glass rods to a position above the support frame 1.
[0032] The ejection assembly 22 includes an ejection plate 221, a third slide rail 222, a third slider 223 and a third power source 224; wherein a partition 11 for separating the feeding device 2 and the feeding device 3 is provided on the support frame 1, and the feeding device 2 and the feeding device 3 are respectively located on both sides of the partition 11; the third slide rail 222 in the ejection assembly 22 is fixedly provided on the partition 11, and the third slider 223 is slidably provided on the third slide rail 222; the ejection plate 221 is fixedly provided on the third slider 223; the third power source 224 is fixedly provided on the ejection plate 221, and the third power source 224 is also meshed with the rack 12 provided on the partition 11. In this example, the rack 12 and the third slide rail 222 are both located in the vertical direction. With the action of the third power source 224, the ejection plate 221 moves upward or downward along the rack 12. The upper end of the ejection plate 221 is provided with a U-shaped or V-shaped groove 225 for clamping the glass rod, which is convenient for clamping the cylindrical glass rod.
[0033] The feeding device 2 also includes a tightening component 23, which is slidably arranged on the upper surface of the support frame 1 and corresponds to the feeding port 13; when the tightening component 23 is tightened, it can cover the feeding port 13 on the support frame 1 to prevent the glass rod from falling back into the feeding box 21. The tightening assembly 23 includes a first tightening plate 231 and a second tightening plate 232. The first tightening plate 231 is fixedly mounted above the support frame 1, adjacent to the feed port 13 on the support frame 1. The second tightening plate 232 is slidably mounted above the support frame 1, corresponding to the feed port 13. In this example, the second tightening plate 232 is slidably mounted on the first slide rail 431 via a fourth slider. An elastic structure 233 is disposed between the second tightening plate 232 and the first tightening plate 231. An elastic structure 233 is also disposed between the second tightening plate 232 and the first support plate 435. In this example, the elastic structure 233 is a spring. When the first motion structure 43 is actuated, the elastic structure 233 also pushes the second tightening plate 232 toward the first tightening plate 231, thereby shielding the feed port 13 on the support frame 1. It should be noted that a groove corresponding to the ejection plate 221 is further provided on the side of the second tightening plate 232 or the first tightening plate 231 close to each other, so that the first tightening plate 231 and the second tightening plate 232 will not clamp the ejection plate 221 when they are in contact, so that the ejection plate 221 can smoothly transport the glass rod up and down.
[0034] The delivery structure includes a delivery box, the bottom of which is arranged as an inclined surface; a discharge port 14 corresponding to the delivery box is arranged on the support frame 1, so as to facilitate the glass rods to fall into the delivery box after processing.
[0035] During the implementation process, by arranging a feeding structure and a feeding structure on the support frame 1, in conjunction with the clamping device 4, the automatic transportation of the glass rod can be completed, the processing efficiency of the glass rod can be improved, and the labor cost can be reduced; by arranging the feeding device 2 to include a tightening component 23, when the clamping device 4 clamps the glass rod, the feeding port 13 on the support frame 1 can be shielded to prevent the glass rod from falling back into the feeding box 21; by arranging an ejection component 22 in the feeding box 21, the glass rod can be transported upward and transported to the clamping device 4 area on the upper surface of the support frame 1 to complete the processing.
[0036] The above description is merely a specific example of the present invention and does not constitute any limitation thereto. It is obvious that those skilled in the art, after understanding the content and principles of the present invention, may make various modifications and changes in form and details without departing from the principles and structure of the present invention. However, such modifications and changes based on the concept of the present invention are still within the scope of protection of the claims of the present invention.
Claims
1. A glass rod transport structure, comprising a support frame (1) for supporting, characterized in that: The invention also includes a feeding device (2) for feeding in a glass rod, a delivery device (3) for delivering a glass rod, and a clamping device (4) for clamping the glass rod; the clamping device (4) is arranged above the support frame (1), and a processing device for processing the glass rod is also arranged on the support frame (1); the clamping device (4) is arranged corresponding to the processing device on the support frame (1); the feeding device (2) and the delivery device (3) are arranged inside the support frame (1), and the feeding device (2) and the delivery device (3) are respectively located on both sides of the processing device.
2. A glass rod transport structure according to claim 1, characterized in that: The clamping device (4) comprises a first clamping plate (41), a second clamping plate (42), a first motion structure (43) and a second motion structure (44); the first motion structure (43) and the second motion structure (44) move toward each other, the first clamping plate (41) is fixedly arranged on the first motion structure (43), and the second clamping plate (42) is fixedly arranged on the second motion structure (44).
3. A glass rod transport structure according to claim 2, characterized in that: The first motion structure (43) comprises a first slide rail (431), a first slider (432), a first power source (433), a first lead screw (434) and a first support plate (435); wherein the first slide rail (431) is fixedly arranged above the support frame (1), and the first slider (432) is slidably arranged on the first slide rail (431); the first support plate (435) is fixedly arranged on the first slider (432), and the first clamping plate (41) is fixedly arranged on the first support plate (435); and the first support plate (435) is also transmission-connected to the first power source (433) via the lead screw.
4. A glass rod transport structure according to claim 3, characterized in that: The second motion structure (44) includes a second slide rail (441), a second slider (442), a second power source (443), a second lead screw (444) and a second support plate (445); wherein the second slide rail (441) is fixedly arranged above the support frame (1), and the second slider (442) is slidably arranged on the second slide rail (441); a second support plate (445) is fixedly arranged on the second slider (442), and a second clamping plate (42) is fixedly arranged on the second support plate (445); the second support plate (445) is also transmission-connected to the second power source (443) via the second lead screw (444).
5. The glass rod transport structure according to claim 3, characterized in that: The feeding device (2) comprises a feeding box (21) and an ejection assembly (22); the feeding box (21) is arranged in the support frame (1); a discharge port (211) for placing glass rods is provided on one side of the feeding box (21); an ejection assembly (22) is provided on the side of the feeding box (21) opposite to the discharge port (211); and the ejection assembly (22) moves up and down; an opening corresponding to the ejection assembly (22) is provided on the upper surface of the feeding box (21); and a feeding port (13) corresponding to the ejection assembly (22) is also provided on the support frame (1).
6. The glass rod transport structure according to claim 5, characterized in that: The bottom of the feeding box (21) is configured as an inclined surface, and the inclined surface slopes downward from one side of the discharge port (211) of the feeding box (21) to one side of the ejection assembly (22).
7. The glass rod transport structure according to claim 5, characterized in that: The feeding device (2) further comprises a tightening assembly (23), the tightening assembly (23) being slidably arranged on the upper surface of the support frame (1), and the tightening assembly (23) corresponding to the feeding port (13).
8. The glass rod transport structure according to claim 7, characterized in that: The tightening assembly (23) includes a first tightening plate (231) and a second tightening plate (232), wherein the first tightening plate (231) is fixedly arranged above the support frame (1), and the first tightening plate (231) is arranged close to the feeding port (13) on the support frame (1); the second tightening plate (232) is slidably arranged above the support frame (1), and the second tightening plate (232) is arranged corresponding to the feeding port (13); an elastic structure (233) is arranged between the second tightening plate (232) and the first tightening plate (231), and an elastic structure (233) is also arranged between the second tightening plate (232) and the first support plate (435).
9. The glass rod transport structure according to claim 5, characterized in that: The ejection assembly (22) includes an ejection plate (221), a third slide rail (222), a third slider (223) and a third power source (224); wherein a partition (11) for separating the feeding device (2) and the feeding device (3) is provided on the support frame (1), and the feeding device (2) and the feeding device (3) are respectively located on both sides of the partition (11); the third slide rail (222) in the ejection assembly (22) is fixedly provided on the partition (11), and the third slider (223) is slidably provided on the third slide rail (222); the ejection plate (221) is fixedly provided on the third slider (223); the third power source (224) is fixedly provided on the ejection plate (221), and the third power source (224) is also meshedly connected with a rack (12) provided on the partition (11).
10. The glass rod transport structure according to claim 9, characterized in that: The upper end of the ejection plate (221) is provided with a U-shaped or V-shaped slot (225) for clamping a glass rod.
Citation Information
Patent Citations
A cutting device
CN105171935B
A glass processing apparatus and processing method
CN110682450B