Laptop shell carrier correcting device
By designing a laptop housing vehicle guide device with automatic guide, the problem of inaccurate positioning of the laptop housing after spraying is solved, fast and accurate automatic guide is achieved, and production efficiency and safety are improved.
Patent Information
- Application Number
- CN202422091978.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-28
- Publication Date
- 2025-08-05
- Estimated Expiration
- 2034-08-28
AI Technical Summary
In the prior art, the difference in position position of the notebook shell after spraying and rotation makes it difficult for the loading robot arm to fit with the material bearing component, and needs to be manually straightened, resulting in low production efficiency and safety hazards.
A notebook housing vehicle guide device including a conveying assembly, a transfer member and a guide assembly is designed. Through the guide member passing through the guide space under the guide plate, automatic guide is realized and accurate positioning of the bearing member is ensured.
It achieves rapid and accurate correction without manual participation, improves the speed of workpiece transportation, and avoids the generation of bad products and safety hazards.
Smart Images

Figure CN223188280U_ABST
Abstract
Description
Technical field
[0001] The present application relates to a notebook shell carrier guide device, belonging to the technical field of mechanical guide technology. [Background Technology]
[0002] In order to speed up production efficiency, the spraying line for laptop shells is a circular circulation product line. In order to spray quickly and evenly, the spray gun is often fixed while the workpiece rotates. Since the position of the workpiece after the spraying rotation process may have some directional differences, although it does not affect the unloading operation, when the empty receiving part returns to the loading position again, the laptop shell clamped by the loading robot arm is difficult to fit with the discharge plate on the receiving part, and then it needs to be straightened.
[0003] In the existing technology, manual alignment is usually used for operation, but the manual alignment speed is slow and the transportation speed of the product line must be reduced. Secondly, there will always be errors in manual operation, which may cause the notebook shell to fall off during transportation and spraying, resulting in defective products. Manual operation in front of the moving product line is also prone to dangerous accidents, causing personal injury.
[0004] Therefore, it is necessary to improve the prior art to overcome the above defects. [Summary of the invention]
[0005] The purpose of this application is to provide a notebook shell carrier guiding device that can automatically guide.
[0006] The purpose of this application is to achieve the following technical solution: a notebook shell carrier guide device, comprising:
[0007] A conveying assembly, comprising a conveying guide rail and a material receiving component provided on the conveying guide rail for placing a workpiece, wherein the material receiving component can move along an extension direction of the conveying guide rail;
[0008] a transfer component, adapted to transfer the notebook shell to the material receiving component; and
[0009] A guide assembly is provided on one side of the conveying assembly and includes a stand and a guide component provided on the stand;
[0010] In which, the guiding component includes a guide plate connected to one side of the stand, and a guiding space is formed between the guide plate and the other side of the stand. The material-bearing component includes a base connected to the conveying guide rail and a material-bearing member rotatably connected to the base. The material-bearing member has a guiding portion. When the material-bearing component passes through the guiding assembly, the guiding portion passes through the guiding space under the guidance of the guide plate, and the width of the guiding portion is the same as the width of the guiding space.
[0011] Furthermore, the guiding portion includes a first guiding piece and a second guiding piece arranged above and below, the first guiding piece and the second guiding piece are both elliptical in shape as a whole, and the middle portion of the first guiding piece is connected to the material receiving member, and one side of the second guiding piece is connected to the material receiving member;
[0012] After the guiding part passes through the guiding space, the length direction of the first guiding piece is the same as the extension direction of the conveying guide rail, the length direction of the second guiding piece is perpendicular to the extension direction of the conveying guide rail, and a guide groove is provided on the side of the stand away from the guide plate, and the long end side of the second guiding piece extends into the guide groove.
[0013] The material receiving member includes a first connecting rod rotatably connected to the base and a material discharge tray arranged on the top of the first connecting rod, and the first guide piece and the second guide piece are connected to the first connecting rod.
[0014] Furthermore, the bottom of the first connecting rod is recessed inward to form a first connecting groove, and the base includes a first wheel group connected to the conveying guide rail and a second connecting rod connecting the first wheel group and the first connecting rod, and the first connecting rod is rotatably sleeved outside the second connecting rod.
[0015] Furthermore, the material-bearing member further includes a second wheel set arranged between the first connecting rod and the second connecting rod, and the second wheel set is sleeved outside the second connecting rod and can rotate relative to the second connecting rod.
[0016] Furthermore, a second slot is formed on the outer wall of the second connecting rod, and the second wheel set is clamped and fixed in the second slot.
[0017] Furthermore, the second wheel set is a bearing member.
[0018] Furthermore, a third wheel set is sleeved on the first connecting rod, and the third wheel set is arranged close to the guiding part. When the guiding part passes through the guiding space, the third wheel set rotates on the guide plate along the surface of the guide plate.
[0019] Furthermore, the first wheel group includes a base body detachably connected to the second connecting rod and a rolling element connected to the bottom of the base body and rotatable on the conveying guide rail. There are at least two rolling elements, and at least two rolling elements are tilted on both sides of the base body, and the tilting direction is from top to bottom towards each other.
[0020] Furthermore, there is a distance between the two rolling elements, the conveying guide rail is located within the distance, and two side surfaces of the conveying guide rail are respectively connected to the two rolling elements.
[0021] Compared with the prior art, the present application has the following beneficial effects: the present application is provided with a conveying component, a transfer component suitable for transferring the notebook shell to the material receiving component of the conveying component, and a guiding component arranged on one side of the conveying component, wherein the conveying component includes a conveying guide rail and a material receiving component arranged on the conveying guide rail for placing the workpiece, the material receiving component can move along the extension direction of the conveying guide rail, the guiding component includes a stand and a guiding component arranged on the stand, the guiding component includes a guide plate connected to one side of the stand, a guiding space is formed between the guide plate and the other side of the stand, the material receiving component includes a base connected to the conveying guide rail and a material receiving member rotatably connected to the base, the material receiving member has a guiding part, when guiding, the material receiving member passes through the guiding component, the guiding part passes through the guiding space under the guidance of the guide plate, and the width of the guiding part is the same as the width of the guiding space, so that the guiding part is guided by the limiting effect of the guiding space, thereby driving the material receiving member to be guided, the entire guiding process is simple and accurate, and does not require manual participation, the guiding speed is fast, and can effectively improve the transportation speed of the workpiece.
Brief Description of the Drawings
[0022] Figure 1 1 is a schematic structural diagram of a notebook housing carrier guide device according to an embodiment of the present application;
[0023] Figure 2 yes Figure 1 A schematic diagram of a portion of the structure of the illustrated embodiment;
[0024] Figure 3 yes Figure 1 A schematic diagram of another portion of the structure of the illustrated embodiment;
[0025] Figure 4 yes Figure 2 A partial structural diagram of the embodiment shown. [Specific implementation method]
[0026] In order to make the above-mentioned objects, features and advantages of the present application more obvious and easy to understand, the specific implementation methods of the present application are described in detail below in conjunction with the accompanying drawings. It will be understood that the specific embodiments described herein are only used to explain the present application, rather than to limit the present application. It should also be noted that, for ease of description, only some, rather than all, structures related to the present application are shown in the accompanying drawings. Based on the embodiments in the present application, all other embodiments obtained by ordinary technicians in this field without making creative work are within the scope of protection of this application.
[0027] As used herein, the terms "comprise," "comprising," and "having," and any variations thereof, are intended to cover non-exclusive inclusions. For example, a process, method, system, workpiece, or apparatus comprising a series of steps or elements is not limited to the listed steps or elements but may optionally include steps or elements not listed, or may optionally include other steps or elements that are inherent to the process, method, workpiece, or apparatus.
[0028] References herein to "embodiments" mean that a particular feature, structure, or characteristic described in connection with the embodiments may be included in at least one embodiment of the present application. The appearance of this phrase in various places in the specification does not necessarily refer to the same embodiment, nor does it constitute an independent or alternative embodiment that is mutually exclusive of other embodiments. It is understood, both explicitly and implicitly, by those skilled in the art that the embodiments described herein may be combined with other embodiments.
[0029] See also Figures 1 to 4 As shown, the notebook shell carrier guiding device shown in the embodiment of the present application includes a conveying component 1 and a transfer component 2, wherein the transfer component 2 is suitable for transferring the notebook shell 3 to the conveying component 1 and transporting it to the next process spraying process. In this embodiment, the transfer component 2 is a robotic arm that sucks and transfers the notebook shell 3 by means of air pressure suction.
[0030] In order to speed up production efficiency, the spraying line of the notebook shell 3 is a circular circulation product line, and in order to spray quickly and evenly during spraying, the spray gun is often fixed and the workpiece is rotated for spraying. Since the position of the workpiece after the spraying rotation process may have some directional differences, although it does not affect the unloading operation, when the empty material receiving component 12 returns to the loading position again, the notebook shell 3 clamped by the loading robot arm is difficult to fit with the discharge plate on the material receiving component 12, which may cause the notebook shell 3 to fall off during the transportation and spraying process, resulting in defective products, and using manual alignment to handle it will have safety and efficiency problems.
[0031] In order to solve the problems existing in the above-mentioned prior art, in this embodiment, a guiding assembly 4 is further provided on one side of the conveying assembly 1, including a stand 41 and a guiding component 42 arranged on the stand 41, wherein the conveying assembly 1 includes a conveying guide rail 11 and a material receiving component 12 arranged on the conveying guide rail 11 for placing the workpiece, the material receiving component 12 can be moved along the extension direction of the conveying guide rail 11, the guiding component 42 includes a guide plate 421 connected to one side of the stand 41, a guiding space 5 is formed between the guide plate 421 and the other side of the stand 41, and the material receiving component 12 includes a guide plate 421 connected to the conveying guide rail The base 121 connected to the rail 11 and the material-receiving member 122 rotatably connected to the base 121, the material-receiving member 122 has a guiding portion 1221. When guiding, the material-receiving member 12 passes through the guiding assembly 4, and the guiding portion 1221 passes through the guiding space 5 under the guidance of the guide plate 421, and the width of the guiding portion 1221 is the same as the width of the guiding space 5, so that the guiding portion 1221 is guided by the limiting effect of the guiding space 5, and then the material-receiving member 122 is guided. The entire guiding process is simple and accurate, and does not require human intervention. The guiding speed is fast, which can effectively improve the transportation speed of the workpiece.
[0032] Specifically, in this embodiment, the guiding portion 1221 includes a first guiding piece 7 and a second guiding piece 8 arranged above and below. The first guiding piece 7 and the second guiding piece 8 are both elliptical in shape. The middle of the first guiding piece 7 is connected to the material receiving member 122, and one side of the second guiding piece 8 is connected to the material receiving member 122.
[0033] After the guiding portion 1221 passes through the guiding space 5, the length direction of the first guiding piece 7 is the same as the extension direction of the conveying guide rail 11, and the length direction of the second guiding piece 8 is perpendicular to the extension direction of the conveying guide rail 11. A guide groove 9 is provided on the side of the stand 41 away from the guide plate 421, and the long end side of the second guiding piece 8 extends into the guide groove 9. Therefore, through the setting of the two guiding pieces, the direction position of the material receiving piece 122 after guidance is further limited, ensuring that the direction of all material receiving pieces 122 is consistent.
[0034] It is noteworthy that the guiding device is installed before the blanking station, thereby ensuring the uniqueness of the spatial state of the notebook shell 3 during blanking, and ensuring the uniqueness of the spatial state of the receiving member 122 during cyclic loading.
[0035] The material receiving member 122 includes a first connecting rod 1222 rotatably connected to the base 121, and a material discharge tray 1223 disposed on top of the first connecting rod 1222. The laptop shell 3 transported by the transfer component 2 is placed on the material discharge tray 1223. The material discharge tray 1223 matches the shape of the laptop shell 3 and can effectively fix the laptop shell 3. The first guide plate 7 and the second guide plate 8 are both connected to the first connecting rod 1222. The bottom of the first connecting rod 1222 is recessed inward to form a first connecting groove 1224. The base 121 includes a first wheel assembly 1211 connected to the conveying guide rail 11 and a second connecting rod 1212 connecting the first wheel assembly 1211 and the first connecting rod 1222. The first connecting rod 1222 is rotatably mounted outside the second connecting rod 1212. Therefore, when the guiding portion 1221 is corrected, the first connecting rod 1222 can rotate relative to the second connecting rod 1212, while the correction is performed without affecting the movement of the base 121.
[0036] The first wheel group 1211 includes a base body 1214 detachably connected to the second connecting rod 1212 and a rolling member 1215 connected to the bottom of the base body 1214 and rotatable on the conveying guide rail 11. There are at least two rolling members 1215, and at least two rolling members 1215 are tilted on both sides of the base body 1214. The tilting direction is from top to bottom toward each other. In this embodiment, there is a spacing 7 between the two rolling members 1215, the conveying guide rail 11 is located within the spacing 7, and the two side surfaces of the conveying guide rail 11 are respectively connected to the two rolling members 1215, so that the first wheel group 1211 can move smoothly along the conveying guide rail 11 under the drive of external force.
[0037] To ensure smoother rotation of the first connecting rod 1222 relative to the second connecting rod 1212, in this embodiment, the material receiving member 122 further comprises a second wheel assembly 1225 disposed between the first connecting rod 1222 and the second connecting rod 1212. The second wheel assembly 1225 is sleeved outside the second connecting rod 1212 and is rotatable relative to the second connecting rod 1212. Specifically, a second retaining groove 1213 is formed on the outer wall of the second connecting rod 1212, and the second wheel assembly 1225 is retained and fixed in the second retaining groove 1213. The provision of the second wheel assembly 1225 thus ensures smoother rotation of the first connecting rod 1222 relative to the second connecting rod 1212.
[0038] A third wheel assembly 6 is also mounted on the first connecting rod 1222. The third wheel assembly 6 is positioned adjacent to the guiding portion 1221. When the guiding portion 1221 passes through the guiding space 5, the third wheel assembly 6 rotates along the surface of the guide plate 421, thereby ensuring a smoother guiding of the guiding portion 1221. In this embodiment, the rolling element 1215, the second wheel assembly 1225, and the third wheel assembly 6 are all bearings.
[0039] To sum up: the present application is provided with a conveying component, a transfer component suitable for transferring the notebook shell to the material receiving component of the conveying component, and a guiding component arranged on one side of the conveying component, wherein the conveying component includes a conveying guide rail and a material receiving component arranged on the conveying guide rail for placing the workpiece, the material receiving component can move along the extension direction of the conveying guide rail, the guiding component includes a stand, and a guiding component arranged on the stand, the guiding component includes a guide plate connected to one side of the stand, a guiding space is formed between the guide plate and the other side of the stand, the material receiving component includes a base connected to the conveying guide rail and a material receiving member rotatably connected to the base, the material receiving member has a guiding part, when guiding, the material receiving member passes through the guiding component, the guiding part passes through the guiding space under the guidance of the guide plate, and the width of the guiding part is the same as the width of the guiding space, so that the guiding part is guided by the limiting effect of the guiding space, thereby driving the material receiving member to be guided, the entire guiding process is simple and accurate, and does not require manual participation, the guiding speed is fast, and can effectively improve the transportation speed of the workpiece.
[0040] The above is only a specific implementation of the present application. Any other improvements made based on the concept of the present application are considered to be within the scope of protection of the present application.
Claims
1. A notebook shell carrier guide device, characterized in that: include: A conveying assembly, comprising a conveying guide rail and a material receiving component provided on the conveying guide rail for placing a workpiece, wherein the material receiving component can move along an extension direction of the conveying guide rail; A transfer component, adapted to transfer the notebook shell to the material receiving component; as well as A guide assembly is provided on one side of the conveying assembly and includes a stand and a guide component provided on the stand; In which, the guiding component includes a guide plate connected to one side of the stand, and a guiding space is formed between the guide plate and the other side of the stand. The material-bearing component includes a base connected to the conveying guide rail and a material-bearing member rotatably connected to the base. The material-bearing member has a guiding portion. When the material-bearing component passes through the guiding assembly, the guiding portion passes through the guiding space under the guidance of the guide plate, and the width of the guiding portion is the same as the width of the guiding space.
2. The notebook shell carrier guiding device according to claim 1, wherein: The guiding portion includes a first guiding piece and a second guiding piece arranged above and below, the first guiding piece and the second guiding piece are both elliptical in shape as a whole, and the middle portion of the first guiding piece is connected to the material receiving member, and one side of the second guiding piece is connected to the material receiving member; After the guiding part passes through the guiding space, the length direction of the first guiding piece is the same as the extension direction of the conveying guide rail, the length direction of the second guiding piece is perpendicular to the extension direction of the conveying guide rail, and a guide groove is provided on the side of the stand away from the guide plate, and the long end side of the second guiding piece extends into the guide groove.
3. The notebook shell carrier guiding device according to claim 2, wherein: The material receiving member includes a first connecting rod rotatably connected to the base and a material discharge tray arranged on the top of the first connecting rod, and the first guide piece and the second guide piece are connected to the first connecting rod.
4. The notebook shell carrier guiding device according to claim 3, wherein: The bottom of the first connecting rod is recessed inward to form a first connecting groove. The base includes a first wheel group connected to the conveying guide rail and a second connecting rod connecting the first wheel group and the first connecting rod. The first connecting rod is rotatably sleeved outside the second connecting rod.
5. The notebook shell carrier guiding device according to claim 4, wherein: The material-carrying member further includes a second wheel set arranged between the first connecting rod and the second connecting rod. The second wheel set is sleeved outside the second connecting rod and can rotate relative to the second connecting rod.
6. The notebook shell carrier guiding device according to claim 5, wherein: A second clamping groove is formed on the outer wall of the second connecting rod, and the second wheel set is clamped and fixed in the second clamping groove.
7. The notebook shell carrier guiding device according to claim 6, wherein: The second wheel set is a bearing member.
8. The notebook shell carrier guiding device according to claim 7, wherein: A third wheel set is also sleeved on the first connecting rod. The third wheel set is arranged close to the guiding portion. When the guiding portion passes through the guiding space, the third wheel set rotates on the guide plate along the surface of the guide plate.
9. The notebook shell carrier guiding device according to claim 8, wherein: The first wheel group includes a base body detachably connected to the second connecting rod and a rolling element connected to the bottom of the base body and rotatable on the conveying guide rail. There are at least two rolling elements, and at least two rolling elements are tilted on both sides of the base body, and the tilting direction is from top to bottom towards each other.
10. The notebook shell carrier guiding device according to claim 9, wherein: There is a distance between the two rolling elements, the conveying guide rail is located within the distance, and two side surfaces of the conveying guide rail are respectively connected to the two rolling elements.