CN-224198513-U - Vertical wire blanking auxiliary side frame
Abstract
The utility model discloses a vertical wire blanking auxiliary side frame which comprises a frame, wherein chain wheel shafts are rotatably arranged at the front end and the rear end of the frame, chains are sleeved outside the chain wheel shafts, driving motors for driving the chain wheel shafts to rotate are arranged at the tail of the frame, a machine head rotating mechanism is arranged at the bottom of the head of the frame, a machine tail swinging mechanism is arranged at the tail of the frame, the machine head rotating mechanism is matched with the machine tail swinging mechanism through the cooperation of the frame, the chain wheel shafts, the chains and the driving motors, the machine head rotating mechanism and the machine tail swinging mechanism are combined, different working scenes and angle requirements can be met, the flexible blanking auxiliary function is realized, the machine head rotating mechanism can flexibly adjust the machine head direction and the position through rotation and fixed connection, the accurate blanking operation is facilitated, the stability of a stable structure on a support column is improved, the reliability of the whole structure is improved, and shaking and deformation are reduced.
Inventors
- FANG YONGGUANG
Assignees
- 佛山市南亚机电设备有限公司
Dates
- Publication Date
- 20260505
- Application Date
- 20250314
Claims (6)
- 1. The utility model provides a supplementary side frame of vertical line unloading, its characterized in that, includes frame (100), sprocket shaft (120) are all installed in the rotation of the head and the tail both ends of frame (100), outside cover of sprocket shaft (120) is equipped with chain (130), driving motor (110) that drive sprocket shaft (120) was rotatory are installed to the afterbody of frame (100), aircraft nose slewing mechanism is installed to the head bottom of frame (100), organic tail swing mechanism is installed to the afterbody of frame (100).
- 2. The auxiliary side frame for vertical blanking of a wire machine is characterized in that the machine head rotating mechanism comprises a support column (300) and a connecting column (340), a rotary table (310) is rotatably arranged at the top of the support column (300), a connecting plate (320) is welded at the top of the rotary table (310), the connecting plate (320) is rotatably connected with a U-shaped connecting piece (330) through a pin shaft, and the top of the connecting column (340) is connected with the head of the machine frame (100) through a bolt.
- 3. The auxiliary side frame for vertical blanking of wire according to claim 2, wherein the bottom of the pillar (300) is welded with a stabilizing structure.
- 4. A vertical blanking auxiliary side frame as set forth in claim 3, wherein said stabilizing structure comprises at least three triangular plates (301), said triangular plates (301) are welded to the outer wall of said support column (300), and a bottom plate (302) is welded to the bottom of said triangular plates (301).
- 5. The auxiliary side frame for vertical blanking of a wire machine is characterized in that the tail swinging mechanism comprises a tail motor (200), a roller (220) is rotatably arranged at the bottom of the tail motor (200) through a mounting frame (210), and the tail motor (200) drives the roller (220) to rotate.
- 6. The auxiliary side frame for vertical blanking of a wire according to claim 5, wherein a stabilizing rod (230) is rotatably arranged on the outer wall of the mounting frame (210), a stabilizing support rod (240) is rotatably arranged on the outer wall of the stabilizing rod (230), a pulley (250) is rotatably arranged at the tail of the stabilizing support rod (240), and the stabilizing rod (230) and the stabilizing support rod (240) can only rotate horizontally and cannot rotate vertically.
Description
Vertical wire blanking auxiliary side frame Technical Field The utility model relates to the technical field of blanking, in particular to a vertical line blanking auxiliary side frame. Background In conventional blanking operations, many challenges are often faced. The structure of the prior blanking equipment is single, most of the blanking equipment is a fixed frame, and a flexible angle adjusting mechanism is lacked. This makes in the unloading in-process of different shape, size materials, is difficult to accurate adaptation, leads to unloading inefficiency and easily takes place the unloading deviation. For example, when some special-shaped parts are processed, conventional blanking equipment cannot be adjusted according to the special angle requirements of the parts, and workers are required to manually adjust the positions of materials for many times, so that the labor intensity is increased, and the blanking precision is difficult to ensure. Therefore, a vertical wire blanking auxiliary side frame needs to be designed. Disclosure of utility model The utility model aims to provide a vertical wire blanking auxiliary side frame so as to solve the problems in the background technology. In order to achieve the above purpose, the main technical scheme adopted by the utility model comprises the following steps: The utility model provides a supplementary side frame of vertical line unloading, includes the frame, the sprocket shaft is all installed in the rotation of the head and the tail both ends of frame, the outside cover of sprocket shaft is equipped with the chain, the rotatory driving motor of drive sprocket shaft is installed to the afterbody of frame, aircraft nose rotary mechanism is installed to the head bottom of frame, organic tail swing mechanism is installed to the afterbody of frame. Preferably, the machine head rotating mechanism comprises a support column, a turntable is rotatably arranged at the top of the support column, a connecting plate is welded at the top of the turntable, the connecting plate is rotatably connected with the U-shaped connecting piece through a pin shaft, and the top of the connecting column is connected with the head of the machine frame through a bolt. Preferably, the bottom of the pillar is welded with a stabilizing structure. Preferably, the stabilizing structure comprises at least three triangular plates, wherein the triangular plates are welded on the outer wall of the support column, and a bottom plate is welded at the bottom of each triangular plate. Preferably, the tail swing mechanism comprises a tail motor, the bottom of the tail motor is rotatably provided with a roller through a mounting frame, and the tail motor drives the roller to rotate. Preferably, the outer wall of mounting bracket rotates and installs the firm pole, the outer wall of firm pole rotates and installs firm branch, the afterbody of firm branch rotates and installs the pulley, firm pole and firm branch only can carry out horizontal rotation and can not vertical rotation. The utility model has at least the following beneficial effects: auxiliary side frame for vertical wire blanking: Through frame, sprocket axle, chain and driving motor cooperation, combine aircraft nose slewing mechanism and tail swing mechanism, can adapt to different working scenario and angle demand, realize nimble unloading auxiliary function. The machine head rotating mechanism is in rotation and fixed connection, so that the direction and the position of the machine head can be flexibly adjusted, and accurate blanking operation is facilitated. The stability is enhanced by the stable structure on the support column, the reliability of the whole structure is improved, and the shaking and deformation are reduced. The stabilizing rod, the stabilizing support rod and the pulley on the mounting frame play a role in supporting and stabilizing the tail under the limitation of horizontal rotation, and the vertical direction is stable when the tail is kept at the flexible adjustment position in the horizontal direction, so that unnecessary up-and-down shaking is prevented. Drawings The accompanying drawings, which are included to provide a further understanding of the application and are incorporated in and constitute a part of this specification, illustrate embodiments of the application and together with the description serve to explain the application and do not constitute a limitation on the application. In the drawings: FIG. 1 is a front view of the structure of the present utility model; FIG. 2 is a top view of the structure of the present utility model; FIG. 3 is an enlarged view of section A in a top view of the structure of the present utility model; fig. 4 is an enlarged view of a portion B in a front view of the structure of the present utility model. Reference numerals illustrate: 100. The device comprises a frame, 110, a driving motor, 120, a chain wheel shaft, 130, a chain, 200, a tail motor, 210, a mounting r