CN-224224035-U - Material feeding unit and cutting equipment
Abstract
The utility model discloses a feeding device and cutting equipment, wherein the feeding device comprises a mounting frame, a bearing guide assembly, a linear driving assembly and a spinning assembly, wherein the bearing guide assembly is fixedly arranged on the mounting frame and used for bearing and guiding a workpiece, the linear driving assembly is used for pushing the workpiece positioned on the bearing guide assembly, the spinning assembly is fixedly arranged on the mounting frame and positioned on a guide path of the bearing guide assembly, and the spinning assembly is used for limiting the workpiece positioned on the bearing guide assembly. According to the automatic pushing device, the workpiece is guided and positioned through the bearing guide assembly on the mounting frame, the power piece in the linear driving assembly drives the chain to drive the pushing plate to realize automatic pushing, the problems of low efficiency and empty equipment caused by manual intervention are avoided, the pressing plate is controlled to limit the workpiece through the second rotary driving piece by the spinning assembly, the shaking risk of the workpiece in the cutting process is eliminated, and the potential safety hazard of mechanical clamping injury and scrap splashing is effectively avoided.
Inventors
- Zhou Boen
- ZHAO MINGZHI
Assignees
- 博力根(厦门)复合材料有限公司
Dates
- Publication Date
- 20260512
- Application Date
- 20250522
Claims (10)
- 1. A feeding device, characterized by comprising: A mounting frame (100); The bearing guide assembly (200) is fixedly arranged on the mounting frame (100), and the bearing guide assembly (200) is used for bearing and guiding a workpiece; the linear driving assembly (300) is fixedly arranged on the mounting frame (100), and the linear driving assembly (300) is used for pushing the workpiece on the bearing guide assembly (200); The spinning assembly (400) is fixedly installed on the installation frame (100), the spinning assembly (400) is located on the guide path of the bearing guide assembly (200), and the spinning assembly (400) is used for limiting a workpiece located on the bearing guide assembly (200).
- 2. A feeding device according to claim 1, wherein the load bearing guide assembly (200) comprises a support frame (210) fixedly mounted on the mounting frame (100), the support frame (210) is provided with a first side surface and a second side surface, a first plate body (220) is detachably mounted on the first side surface, a second plate body (230) is detachably mounted on the second side surface, the first plate body (220) is abutted to the second plate body (230), and the first plate body (220) and the second plate body (230) are arranged in a split mode.
- 3. The feeding device according to claim 1, wherein the linear driving assembly (300) comprises a fixed block (310) mounted on the bearing guide assembly (200), a guide groove (301) is formed in the fixed block (310) along the moving direction of the workpiece, a chain (320) is arranged in the guide groove (301), a push plate (340) is fixedly mounted at the end of the chain (320), a power piece (330) is fixedly mounted on the mounting frame (100), and the power piece (330) drives the chain (320) to move in the guide groove (301).
- 4. A feeding device according to claim 3, wherein the fixed block (310) comprises a bearing part (311) and a guide part (312), the bearing part (311) is positioned at the position of the power piece (330), and the guide groove (301) is formed in the guide part (312) along the moving direction of the workpiece.
- 5. The feeding device of claim 4, wherein the guide groove (301) comprises a first groove body (3011), a second groove body (3012) is formed on one side surface of the first groove body (3011), a third groove body (3013) communicated with the outside of the guide part (312) is formed on the side surface of the first groove body (3011) deviating from the second groove body (3012), a chain plate on one side of the chain (320) is arranged in the first groove body (3011), each chain link pin end of the chain (320) is positioned in the second groove body (3012), and each chain link pin of the chain (320) is erected on the surface of the third groove body (3013).
- 6. A feeding device according to claim 3, wherein the power member (330) comprises a fixed seat (331) fixedly mounted on the mounting frame (100), a first rotary driving member (332) is fixedly mounted on the fixed seat (331), a sprocket (333) is mounted at the rotary end of the first rotary driving member (332), and the sprocket (333) is in meshed transmission connection with the chain (320).
- 7. A feeding device according to claim 3, wherein the push plate (340) comprises a fixed plate (341) fixedly connected with the chain (320), and a transmission plate (342) is fixedly arranged at one end of the fixed plate (341).
- 8. The feeding device of claim 1, wherein the workpiece transferring path of the bearing guide assembly (200) is provided with a spinning assembly (400), the spinning assembly (400) is fixedly installed on an installation seat (410) on the installation frame (100), a second rotary driving piece (420) is fixedly installed on the installation seat (410), a rotating shaft is arranged at the rotating end of the second rotary driving piece (420), a pressing plate (430) is fixedly installed on the rotating shaft, and the second rotary driving piece (420) drives the pressing plate (430) to rotate towards or away from the bearing guide assembly (200).
- 9. A feeding device according to claim 3, wherein the end of the fixed block (310) is provided with a storage assembly (500), the storage assembly (500) comprises a guide wheel (510) arranged at the end of the fixed block (310), the chain (320) is erected on the guide wheel (510), one side of the mounting frame (100) is provided with a storage groove (520), and the storage groove (520) is positioned below the guide wheel (510).
- 10. A cutting apparatus comprising the feeding device according to any one of claims 1 to 9.
Description
Material feeding unit and cutting equipment Technical Field The utility model relates to the technical field of pipe cutting, in particular to a feeding device and cutting equipment. Background The pipe cutting processing is used as an important process in the field of mechanical manufacturing, and is widely applied to industries such as construction, automobiles, furniture and the like. At present, the traditional processing mode commonly adopted in the industry mainly relies on manual operation to complete the pipe feeding process, and is characterized in that an operator needs to manually push the pipe to be cut to a feed port of cutting equipment section by section, and clamping and positioning of the next section of pipe are performed after the equipment completes cutting. The operation mode with high manual intervention degree has the obvious technical defects that firstly, the operation efficiency of manually pushing the pipe is subjected to double restriction of the physical strength and the proficiency of operators, especially, the phenomenon of unmatched operation rhythm easily occurs in a continuous production scene, so that the empty rate of equipment is increased, and secondly, operators closely contact with cutting equipment which runs at high speed, and potential safety hazards such as mechanical clamping injury, cutting scraps splashing and the like exist. Disclosure of utility model The utility model aims to overcome the defects of the prior art and provides a feeding device and cutting equipment. The aim of the utility model is achieved by the following technical scheme: A feeding device, comprising: A mounting frame; The bearing guide assembly is fixedly arranged on the mounting frame and is used for bearing and guiding the workpiece; The linear driving assembly is fixedly arranged on the mounting frame and is used for pushing the workpiece on the bearing guide assembly; The spinning assembly is fixedly arranged on the mounting frame and located on the guide path of the bearing guide assembly, and the spinning assembly is used for limiting a workpiece located on the bearing guide assembly. Preferably, the bearing guide assembly comprises a support frame fixedly mounted on the mounting frame, the support frame is provided with a first side face and a second side face, a first plate body is detachably mounted on the first side face, a second plate body is detachably mounted on the second side face, the first plate body is abutted to the second plate body, and the first plate body and the second plate body are in split type. Preferably, the linear driving assembly comprises a fixed block arranged on the bearing guide assembly, a guide groove is formed in the fixed block along the moving direction of the workpiece, a chain is arranged in the guide groove, a push plate is fixedly arranged at the end part of the chain, a power piece is fixedly arranged on the mounting frame, and the power piece drives the chain to move in the guide groove. Preferably, the fixing block comprises a bearing part and a guiding part, the bearing part is positioned at the position of the power piece, and the guiding groove is formed in the guiding part along the moving direction of the workpiece. Preferably, the guide groove comprises a first groove body, a second groove body is formed in one side face of the first groove body, a third groove body communicated with the outside of the guide part is formed in the side face of the first groove body, a chain plate on one side of the chain is arranged in the first groove body, each chain link pin end part of the chain is positioned in the second groove body, and each chain link pin of the chain is erected on the surface of the third groove body. Preferably, the power piece includes fixed mounting is in fixing base on the mounting bracket, fixed mounting has first rotary driving piece on the fixing base, the sprocket is installed to the rotation end of first rotary driving piece, the sprocket with the chain meshing transmission is connected. Preferably, the push plate comprises a fixed plate fixedly connected with the chain, and a transmission plate is fixedly arranged at one end of the fixed plate. Preferably, a spinning assembly is arranged on the workpiece transferring path of the bearing guide assembly, the spinning assembly is fixedly arranged on a mounting seat on the mounting frame, a second rotary driving piece is fixedly arranged on the mounting seat, a rotating shaft is arranged at the rotating end of the second rotary driving piece, a pressing plate is fixedly arranged on the rotating shaft, and the second rotary driving piece drives the pressing plate to face or deviate from the bearing guide assembly to rotate. Preferably, the end of the fixed block is provided with a storage assembly, the storage assembly comprises a guide wheel arranged at the end of the fixed block, the chain is erected on the guide wheel, one side of the mounting frame is provided with a s