CN222957251U - Alloy strip continuous bending device - Google Patents
Alloy strip continuous bending device Download PDFInfo
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- CN222957251U CN222957251U CN202422086562.4U CN202422086562U CN222957251U CN 222957251 U CN222957251 U CN 222957251U CN 202422086562 U CN202422086562 U CN 202422086562U CN 222957251 U CN222957251 U CN 222957251U
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- alloy strip
- bending
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Abstract
The utility model relates to the technical field of alloy strip processing, in particular to an alloy strip continuous bending device which comprises a workbench, wherein a portable feeding mechanism is arranged above the workbench, a conveying control mechanism is arranged on the side edge of the portable feeding mechanism, a bending control mechanism is arranged on the side edge of the conveying control mechanism, when the alloy strip continuous bending device is used, primary limiting is realized on a winding cylinder by utilizing the clamping connection relation of a collision clamping groove and a collision groove, and a protective cover is matched to limit and abut the mounting position of the winding cylinder, so that secondary limiting is realized, the design is further integrated, the winding cylinder can be stably mounted outside a supporting shaft through the design of two limiting supports, the position deviation can not occur in the subsequent rotation feeding process, the subsequent bending process of the strip can be normally performed on the basis of ensuring the standard feeding position, and the whole structure design is simple and the practical effect is strong.
Description
Technical Field
The utility model relates to the technical field of alloy strip processing, in particular to a continuous bending device for an alloy strip.
Background
The alloy strip is a strip material formed by mixing two or more metal elements, can combine the advantages of multiple metals, has the characteristics of excellent corrosion resistance, high strength, high temperature resistance and the like, and is widely applied to the fields of aerospace, automobiles, electronics, buildings and the like, a continuous bending device of the alloy strip is equipment for carrying out continuous bending operation on the alloy strip Jin Daicai in the production process, and during the operation, the alloy strip can be bent into a required angle or shape through a bending mechanism on the equipment and then is sequentially cut into small formed products;
Because the current device is all directly placed around a section of thick bamboo on the bracing piece and is carried out the material loading when carrying out the material loading and carry, this process does not set up relevant stop gear and fixes a position it, and the in-process that just very easily makes the barrel change on the bracing piece of continuous rotation pay-off of a section of thick bamboo around the section of thick bamboo afterwards, thereby consequently leads to the pay-off skew directly to influence the bending effect of follow-up strip, but current device does not improve to this problem, and whole practical effect is less than good.
Disclosure of utility model
The utility model aims to solve the problems and provide the alloy strip continuous bending device, which solves the problems that the existing alloy strip continuous bending device directly places a winding cylinder on a supporting rod for feeding when feeding and conveying, the winding cylinder is not provided with a related limiting mechanism for positioning, and then the position of the cylinder on the supporting rod is easily changed in the continuous rotation feeding process of the winding cylinder, so that feeding deviation is caused, and the bending of the subsequent strip is directly affected.
The utility model provides an alloy strip continuous bending device, includes the workstation, the top of workstation is provided with portable feed mechanism, portable feed mechanism's side is provided with carries control mechanism, carry control mechanism's side to be provided with bending control mechanism, portable feed mechanism includes location mounting panel, back shaft, conflict strip, screw thread post, around a section of thick bamboo, conflict draw-in groove and protective cover, the top outer wall of workstation is provided with the location mounting panel, the back shaft is installed in the side outer wall rotation of location mounting panel, the outside equidistant surrounding type of back shaft is provided with the conflict strip, the side outer wall of back shaft is provided with the screw thread post, the outside of back shaft is provided with around a section of thick bamboo, the side outer wall of a section of thick bamboo link up and has seted up the conflict draw-in groove, be the block installation between conflict draw-in groove and the conflict strip, the external screw thread of screw thread post installs the protective cover.
Preferably, the conveying control mechanism comprises a limiting mounting plate, limiting supporting frames and a driving motor, wherein the limiting mounting plates are symmetrically arranged on the outer walls of the top ends of the work tables, two limiting mounting plates are arranged, the first limiting supporting frame is arranged on the outer walls of the side edges of the limiting mounting plates, the limiting supporting frames are L-shaped, and the driving motor is arranged on the inner walls of the side edges of the limiting supporting frames.
Preferably, the driving motor is connected with one end of the limiting shaft, and the other end of the limiting shaft penetrates through the outer wall of the side edge of the first limiting mounting plate and the inner wall of the side edge of the second limiting mounting plate to be rotatably mounted.
Preferably, the locating shafts are arranged below the locating shafts in parallel, two ends of each locating shaft are respectively rotatably mounted on the inner walls of the side edges of the two locating mounting plates, conveying rollers are arranged outside the locating shafts and the locating shafts, and driving gears are arranged outside the locating shafts.
Preferably, the driven gear is installed in the meshing of the below of drive gear, driven gear sets up in the outside of locating shaft, and drive gear and driven gear all rotate the installation with the side outer wall of spacing mounting panel.
Preferably, the bending control mechanism comprises an auxiliary supporting seat, a discharging plate and an auxiliary supporting frame, wherein the auxiliary supporting seat is arranged on the outer wall of the top end of the workbench, the discharging plate is arranged on the outer wall of the top end of the auxiliary supporting seat, and the auxiliary supporting frame is arranged right above the discharging plate.
Preferably, the auxiliary stay frame sets up to the "L" shape of inversion, and the auxiliary stay frame is connected with the top outer wall of workstation, the bottom outer wall of auxiliary stay frame is provided with the drive cylinder.
Preferably, the output end of the driving cylinder is connected with the top end outer wall of the bending die, the side edge of the discharging plate is provided with a guide groove, the guide groove is inclined, and a support column is connected between the bottom end outer wall of the guide groove and the top end outer wall of the workbench.
The beneficial effects of the utility model are as follows:
1. When the alloy strip continuous bending device is used, the design that the abutting clamping grooves are formed in the winding barrel and matched with the outer part of the supporting shaft at equal intervals is adopted, the primary limit is realized on the winding barrel by utilizing the clamping connection relation of the abutting clamping grooves and the abutting grooves, the threaded connection relation of the threaded column and the protective cover is matched, when the winding barrel is mounted outside the supporting shaft, the mounting position of the winding barrel can be limited and abutted through the protective cover, so that secondary limit is realized, the design is integrated, the winding barrel can be stably mounted outside the supporting shaft through the design of two limiting supports, the position deviation can not occur in the subsequent rotary feeding process, the bending procedure of the subsequent strip can be further ensured to be normally performed on the basis of ensuring the standard feeding position, the whole structure design is simple, and the practical effect is strong;
2. When the alloy strip continuous bending device is used, the motor drives to drive the two gears to mesh and drive the two conveying rollers to rotate oppositely, and when the two conveying rollers rotate oppositely, the conveying rollers can automatically carry out conveying and feeding to Jin Daicai, so that the strip feeding position is limited and conveyed through the conveying rollers, the strip can not be raised in the feeding process, the smoothness and stability of the feeding process are ensured, and the whole practical effect is good.
Drawings
FIG. 1 is a schematic perspective view of the whole front view of the present utility model;
FIG. 2 is a schematic diagram of the overall rear perspective of the present utility model;
FIG. 3 is a schematic perspective view of a portable feeding mechanism according to the present utility model;
FIG. 4 is a schematic perspective view of a conveyance control mechanism according to the present utility model;
fig. 5 is a schematic perspective view of a bending control mechanism according to the present utility model.
In the figure, 1, a workbench, 2, a portable feeding mechanism, 21, a positioning mounting plate, 22, a supporting shaft, 23, a supporting strip, 24, a threaded column, 25, a winding cylinder, 26, a supporting clamping groove, 27, a protective cover, 3, a conveying control mechanism, 31, a limiting mounting plate, 32, a limiting support frame, a driving motor, 34, a limiting shaft, 35, a positioning shaft, 36, a conveying roller, 37, a driving gear, 38, a driven gear, 4, a bending control mechanism, 41, an auxiliary support seat, 42, a discharging plate, 43, an auxiliary support frame, 44, a driving cylinder, 45, a bending die, 46, a guide chute, 47 and a supporting column.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
In specific implementation, as shown in fig. 1-5, the alloy strip continuous bending device comprises a workbench 1, wherein a portable feeding mechanism 2 is arranged above the workbench 1, a conveying control mechanism 3 is arranged on the side edge of the portable feeding mechanism 2, a bending control mechanism 4 is arranged on the side edge of the conveying control mechanism 3, the portable feeding mechanism 2 comprises a positioning mounting plate 21, a supporting shaft 22, a collision strip 23, a threaded column 24, a winding barrel 25, a collision clamping groove 26 and a protective cover 27, the positioning mounting plate 21 is arranged on the outer wall of the top end of the workbench 1, the supporting shaft 22 is rotatably mounted on the outer wall of the side edge of the positioning mounting plate 21, collision strips 23 are arranged on the outer wall of the supporting shaft 22 at equal intervals, a threaded column 24 is arranged on the outer wall of the side edge of the supporting shaft 22, a winding barrel 25 is arranged on the outer side edge of the supporting shaft 22, the collision clamping groove 26 is mounted in a clamping manner, a protective cover 27 is mounted on the outer thread of the side edge of the winding barrel 25, when the winding barrel 25 which winds alloy raw materials is required to be mounted on the device, firstly, the supporting barrel 24 is required to be screwed out of the outer thread of the winding barrel 25 from the proper position of the supporting barrel 24, and then the supporting barrel 25 is required to be aligned with the outer thread of the supporting barrel 25, and then the supporting barrel 23 is rotatably arranged on the outer side of the supporting barrel 25, and the proper position of the supporting barrel is adjusted, and the proper position of the supporting barrel is set up to the supporting barrel is adjusted, and then the supporting barrel is screwed to the supporting barrel 25, and the proper position is set to the position and screwed to the supporting effect is adjusted.
The conveying control mechanism 3 comprises a limiting mounting plate 31, limiting support frames 32 and a driving motor 33, wherein the limiting mounting plate 31 is symmetrically arranged on the outer wall of the top end of the workbench 1, two limiting mounting plates 31 are arranged on the outer wall of the side edge of the first limiting mounting plate 31, the limiting support frames 32 are arranged in an L shape, the driving motor 33 is arranged on the inner wall of the side edge of the limiting support frames 32, one end of the driving motor 33 is connected with one end of the limiting shaft 34, the other end of the limiting shaft 34 penetrates through the outer wall of the side edge of the first limiting mounting plate 31 and the inner wall of the side edge of the second limiting mounting plate 31 to be rotatably mounted, a positioning shaft 35 is arranged below the limiting shaft 34 in parallel, two ends of the positioning shaft 35 are respectively rotatably mounted on the inner walls of the side edges of the two limiting mounting plates 31, conveying rollers 36 are respectively arranged on the outer sides of the limiting shaft 34 and the positioning shaft 35, a driving gear 37 is arranged on the outer side of the limiting shaft 34, a driven gear 38 is mounted on the lower side of the driving shaft 38 in a meshed mode, the driven gear 38 is arranged on the outer side of the positioning shaft 35, the driving gear 37 and the driven gear 38 is rotatably mounted on the outer wall of the limiting support frames 31, when the driving motor is required to automatically feed the alloy, the driving shaft 33 is automatically controlled to rotate, and then the driving shaft 33 is driven to rotate, and the driving gear 33 is driven to rotate synchronously, and the driving gear 33 is driven to rotate, and then rotate and the driving shaft 33 is positioned to rotate, and the driving shaft 35.
The bending control mechanism 4 comprises an auxiliary supporting seat 41, a discharging plate 42 and an auxiliary supporting frame 43, wherein the auxiliary supporting seat 41 is arranged on the outer wall of the top end of the workbench 1, the discharging plate 42 is arranged on the outer wall of the top end of the auxiliary supporting seat 41, the auxiliary supporting frame 43 is arranged right above the discharging plate 42, the auxiliary supporting frame 43 is arranged in an inverted L shape, the auxiliary supporting frame 43 is connected with the outer wall of the top end of the workbench 1, the bottom outer wall of the auxiliary supporting frame 43 is provided with a driving cylinder 44, the output end of the driving cylinder 44 is connected with the outer wall of the top end of a bending die 45, a guide groove 46 is arranged on the side edge of the discharging plate 42, the guide groove 46 is arranged in an inclined shape, a supporting column 47 is connected between the outer wall of the bottom end of the guide groove 46 and the outer wall of the workbench 1, the auxiliary supporting seat 41 is arranged for supporting the discharging plate 42, when an alloy strip is fed above the discharging plate 42, the driving cylinder 44 needs to be controlled to be opened, the driving cylinder 44 plays an auxiliary supporting effect on the driving cylinder 44, the output end of the driving cylinder 44 can automatically move downwards after the driving cylinder 44 is opened, the output end of the driving cylinder is automatically moved downwards to the bending die 45 is then automatically moved downwards, the bending die 45 is sequentially moves downwards to the guide groove 46, the guide groove is arranged to be provided with the guide groove 47, and the bending mechanism is sequentially arranged at two sides of the guide groove 46, and the bending mechanism is required to be synchronously bent to be arranged at the two sides of the bending die and the guide groove through the conventional guide groove and the bending mechanism
When the device is used, firstly, the winding cylinder 25 around which the alloy strip raw material is wound is required to be mounted on the device, at the moment, firstly, the protective cover 27 is required to be screwed out of the screw column 24, then, after the winding cylinder 25 is adjusted to a proper position, the abutting clamping groove 26 is aligned with the abutting strip 23 and pushed out of the abutting strip 23, then, the protective cover 27 is screwed out of the screw column 24 again, and the limiting shaft 34 plays a role in rotatably supporting the winding cylinder 25, and the positioning mounting plate 21 plays a role in rotatably supporting the supporting shaft 22; when the feeding and feeding of the alloy strip are required to be carried out, the driving motor 33 needs to be controlled to be started at the moment, the setting of the limiting support frame 32 is required to have the effect of positioning and supporting the driving motor 33, the limiting shaft 34 is automatically driven to rotate and then the driving gear 37 is driven to rotate after the driving motor 33 is started, then the driving gear 37 is automatically driven to rotate and then the positioning shaft 35 is driven to rotate, further the synchronous rotation of the limiting shaft 34 and the positioning shaft 35 synchronously drives the two conveying rollers 36 to relatively rotate and feed the alloy strip Jin Daicai, the setting of the auxiliary support seat 41 is required to have the effect of auxiliary supporting the discharging plate 42, the driving cylinder 44 needs to be controlled to be started at the moment when the alloy strip is fed to the position above the discharging plate 42, the setting of the auxiliary support frame 43 is required to have the effect of auxiliary supporting the driving cylinder 44, the output end of the driving cylinder 44 is automatically displaced downwards and then the bending die 45 is driven to displace downwards after the driving cylinder 44 is started, the two sides of the alloy strip material are automatically processed when the bending die 45 moves downwards, the punching mechanism and the bending mechanism are required to be synchronously equipped with the punching mechanism and the bending mechanism according to the prior art, the bent alloy strips are automatically formed into small formed products after being cut by the existing cutting mechanism and conveyed to a designated position for collection through the guide chute 46, the arrangement of the support columns 47 has the effect of supporting the guide chute 46 in an auxiliary mode, the fact that the driving motor 33 and the driving air cylinder 44 are powered by the conventional technical means in the prior art, and the power supply piece is used for supplying power or the electric wire is used for supplying power is not described in the prior art.
Furthermore, it should be understood that although the present disclosure describes embodiments, not every embodiment is provided with a separate embodiment, and that this description is provided for clarity only, and that the disclosure is not limited to the embodiments described in detail below, and that the embodiments described in the examples may be combined as appropriate to form other embodiments that will be apparent to those skilled in the art.
Claims (8)
1. The utility model provides an alloy strip continuous bending device, its characterized in that, including workstation (1), the top of workstation (1) is provided with portable feed mechanism (2), the side of portable feed mechanism (2) is provided with carries control mechanism (3), the side of carrying control mechanism (3) is provided with bending control mechanism (4), portable feed mechanism (2) are including location mounting panel (21), back shaft (22), conflict strip (23), screw thread post (24), around material section of thick bamboo (25), conflict draw-in groove (26) and protecting cover (27), the top outer wall of workstation (1) is provided with location mounting panel (21), support shaft (22) are installed in the side outer wall rotation of location mounting panel (21), the outside equidistant surrounding type of support shaft (22) is provided with conflict strip (23), the side outer wall of support shaft (22) is provided with screw thread post (24), the outside of support shaft (22) is provided with around material section of thick bamboo (25), link up conflict draw-in groove (26) are offered around the side outer wall of material section of thick bamboo (25), conflict draw-in groove (26) and protecting cover (27) are installed for screw thread post (24).
2. The alloy strip continuous bending device according to claim 1, wherein the conveying control mechanism (3) comprises limiting mounting plates (31), limiting supporting frames (32) and driving motors (33), the limiting mounting plates (31) are symmetrically arranged on the outer walls of the top ends of the working tables (1), two limiting mounting plates (31) are arranged, the limiting supporting frames (32) are arranged on the outer walls of the side edges of the first limiting mounting plate (31), the limiting supporting frames (32) are L-shaped, and the driving motors (33) are arranged on the inner walls of the side edges of the limiting supporting frames (32).
3. The device for continuously bending an alloy strip according to claim 2, wherein the driving motor (33) is connected with one end of the limiting shaft (34), and the other end of the limiting shaft (34) penetrates through the outer side wall of the first limiting mounting plate (31) and is rotatably mounted on the inner side wall of the second limiting mounting plate (31).
4. The alloy strip continuous bending device according to claim 3, wherein a positioning shaft (35) is arranged below the limiting shaft (34) in parallel, two ends of the positioning shaft (35) are respectively rotatably installed on side inner walls of the two limiting mounting plates (31), conveying rollers (36) are arranged outside the limiting shaft (34) and the positioning shaft (35), and a driving gear (37) is arranged outside the limiting shaft (34).
5. The device for continuously bending an alloy strip according to claim 4, wherein a driven gear (38) is mounted below the driving gear (37) in a meshed manner, the driven gear (38) is arranged outside the positioning shaft (35), and the driving gear (37) and the driven gear (38) are rotatably mounted on the outer side walls of the limit mounting plate (31).
6. The alloy strip continuous bending device according to claim 1, wherein the bending control mechanism (4) comprises an auxiliary supporting seat (41), a discharging plate (42) and an auxiliary supporting frame (43), the auxiliary supporting seat (41) is arranged on the outer wall of the top end of the workbench (1), the discharging plate (42) is arranged on the outer wall of the top end of the auxiliary supporting seat (41), and the auxiliary supporting frame (43) is arranged right above the discharging plate (42).
7. The device for continuously bending an alloy strip according to claim 6, wherein the auxiliary supporting frame (43) is in an inverted L shape, the auxiliary supporting frame (43) is connected with the top outer wall of the workbench (1), and a driving cylinder (44) is arranged on the bottom outer wall of the auxiliary supporting frame (43).
8. The device for continuously bending alloy strips according to claim 7, wherein the output end of the driving cylinder (44) is connected with the top end outer wall of the bending die (45), a guide groove (46) is arranged on the side edge of the discharging plate (42), the guide groove (46) is inclined, and a supporting column (47) is connected between the bottom end outer wall of the guide groove (46) and the top end outer wall of the workbench (1).
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202422086562.4U CN222957251U (en) | 2024-08-27 | 2024-08-27 | Alloy strip continuous bending device |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202422086562.4U CN222957251U (en) | 2024-08-27 | 2024-08-27 | Alloy strip continuous bending device |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| CN222957251U true CN222957251U (en) | 2025-06-10 |
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ID=95908303
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| CN202422086562.4U Active CN222957251U (en) | 2024-08-27 | 2024-08-27 | Alloy strip continuous bending device |
Country Status (1)
| Country | Link |
|---|---|
| CN (1) | CN222957251U (en) |
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2024
- 2024-08-27 CN CN202422086562.4U patent/CN222957251U/en active Active
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