CN110802266B - Extruder export aluminum product shearing equipment - Google Patents
Extruder export aluminum product shearing equipment Download PDFInfo
- Publication number
- CN110802266B CN110802266B CN201911100242.7A CN201911100242A CN110802266B CN 110802266 B CN110802266 B CN 110802266B CN 201911100242 A CN201911100242 A CN 201911100242A CN 110802266 B CN110802266 B CN 110802266B
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- Prior art keywords
- shearing
- blade
- driving mechanism
- base
- shear
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Classifications
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B21—MECHANICAL METAL-WORKING WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
- B21C—MANUFACTURE OF METAL SHEETS, WIRE, RODS, TUBES, PROFILES OR LIKE SEMI-MANUFACTURED PRODUCTS OTHERWISE THAN BY ROLLING; AUXILIARY OPERATIONS USED IN CONNECTION WITH METAL-WORKING WITHOUT ESSENTIALLY REMOVING MATERIAL
- B21C35/00—Removing work or waste from extruding presses; Drawing-off extruded work; Cleaning dies, ducts, containers, or mandrels for metal extruding
- B21C35/02—Removing or drawing-off work
- B21C35/023—Work treatment directly following extrusion, e.g. further deformation or surface treatment
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B23—MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
- B23D—PLANING; SLOTTING; SHEARING; BROACHING; SAWING; FILING; SCRAPING; LIKE OPERATIONS FOR WORKING METAL BY REMOVING MATERIAL, NOT OTHERWISE PROVIDED FOR
- B23D15/00—Shearing machines or shearing devices cutting by blades which move parallel to themselves
- B23D15/04—Shearing machines or shearing devices cutting by blades which move parallel to themselves having only one moving blade
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B23—MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
- B23D—PLANING; SLOTTING; SHEARING; BROACHING; SAWING; FILING; SCRAPING; LIKE OPERATIONS FOR WORKING METAL BY REMOVING MATERIAL, NOT OTHERWISE PROVIDED FOR
- B23D33/00—Accessories for shearing machines or shearing devices
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B23—MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
- B23D—PLANING; SLOTTING; SHEARING; BROACHING; SAWING; FILING; SCRAPING; LIKE OPERATIONS FOR WORKING METAL BY REMOVING MATERIAL, NOT OTHERWISE PROVIDED FOR
- B23D33/00—Accessories for shearing machines or shearing devices
- B23D33/02—Arrangements for holding, guiding, and/or feeding work during the operation
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- Engineering & Computer Science (AREA)
- Mechanical Engineering (AREA)
- Shearing Machines (AREA)
Abstract
The invention relates to an extruder outlet aluminum shearing device, which comprises: cutting a base; a lower shear blade; the upper shear blade is connected with a shear driving mechanism for driving the upper shear blade to move downwards or swing downwards; the punching needle is arranged above the lower shear blade, and is connected with a punching driving mechanism which drives the lower shear blade to move downwards and punch a workpiece, and the punching driving mechanism is arranged on the shear base. According to the extruder outlet aluminum shearing equipment, the upper shearing blade and the lower shearing blade are matched to shear the extruded aluminum, so that the traditional mode of cutting the extruded aluminum back and forth by using a saw is abandoned, aluminum scraps generated in the cutting process of the extruded aluminum are greatly reduced, aluminum materials are saved, and the production cost of enterprises is greatly reduced.
Description
Technical Field
The invention relates to the field of extrusion aluminum molding, in particular to an extruder outlet aluminum shearing device.
Background
It is known that in the production of extruded aluminum, an aluminum material is melted by heating and extruded from a forming die to obtain an aluminum material of a desired shape.
Since extruded aluminum is typically extruded continuously, the length of the extruded aluminum is typically very long, and enterprises typically need to cut the extruded aluminum continuously for convenience in storage or transportation.
Among the extruded aluminum produced by the existing enterprises, one type is the extruded aluminum with the wall thickness smaller than 1.5mm, the enterprises generally cut the extruded aluminum continuously into aluminum materials with proper lengths by adopting a sawing mode, and when sawing the extruded aluminum by adopting a saw, a large amount of aluminum scraps can be generated, materials are wasted, and the production cost of the enterprises is enhanced.
Disclosure of Invention
The present invention aims to solve at least one of the technical problems existing in the prior art. Therefore, the invention provides the extruder outlet aluminum shearing equipment, which can reduce aluminum scraps generated in the cutting process of extruded aluminum, save aluminum materials and reduce the production cost of enterprises.
In order to solve the technical problems, the invention adopts the following technical scheme:
an extruder outlet aluminum shearing apparatus according to certain embodiments of the present invention comprises:
Cutting a base;
the lower shear blade is fixedly arranged on the shear base;
the upper shear blade is arranged above the lower shear blade, and is connected with a shear driving mechanism which drives the upper shear blade to move downwards or swing downwards and can be matched with the lower shear blade to shear a workpiece, and the shear driving mechanism is arranged on the shear base;
The punching needle is arranged above the lower shear blade, and is connected with a punching driving mechanism which drives the lower shear blade to move downwards and punch a workpiece, and the punching driving mechanism is arranged on the shear base.
According to some embodiments of the invention, one end of the upper scissor blade is pivotally connected to the shearing base; the shearing driving mechanism comprises a first piston cylinder rotatably arranged on the shearing base, and a piston rod of the first piston cylinder is movably connected with the free end of the upper shearing blade.
According to some embodiments of the invention, the punching driving mechanism comprises a second piston cylinder fixedly arranged on the shearing base, and a piston rod of the second piston cylinder is connected with the punching needle.
According to some embodiments of the invention, the cutting base is provided with a limiting structure for limiting upward movement of the workpiece, the limiting structure is arranged above the lower cutting blade, and a gap for the workpiece to pass through is reserved between the limiting structure and the lower cutting blade.
According to some embodiments of the invention, the limiting structure comprises two baffles above the lower scissor blade, and a shearing passage for the upper scissor blade to pass through is reserved between the two baffles.
According to some embodiments of the invention, the lower shear blade is provided with a pushing mechanism for pushing the workpiece to separate from the lower shear blade.
According to some embodiments of the invention, the pushing mechanism comprises a rotating block and a rotating block driving mechanism for driving the rotating block to rotate;
the middle part of the lower shear blade is provided with a mounting groove, a rotating shaft is movably mounted in the mounting groove, the rotating block is fixedly arranged on the rotating shaft, and the rotating block can synchronously rotate along with the rotating shaft;
The rotating block driving mechanism is arranged on the shearing base and is connected with the rotating shaft.
According to some embodiments of the invention, a connecting rod is fixedly arranged at one end of the rotating shaft extending out of the lower scissor blade;
The rotating block driving mechanism comprises a third piston cylinder movably arranged on the shearing base, and a piston rod of the third piston cylinder is movably connected with the free end of the connecting rod.
According to some embodiments of the invention, the invention further comprises a frame body, a sliding vehicle is movably arranged on the frame body, more than one group of guide rail pairs are arranged on the surface of the sliding vehicle, and the shearing base is connected with all the guide rail pairs;
The sliding vehicle is connected with a sliding vehicle driving mechanism for driving the sliding vehicle to reciprocate back and forth along the frame body.
According to some embodiments of the present invention, two opposite side inner walls of the frame body are respectively provided with a sliding groove parallel to each other, and two opposite sides of the sliding vehicle are respectively provided with rollers matched with the two sliding grooves;
The sliding vehicle driving mechanism comprises a rack and a gear which are meshed with each other, and the gear is connected with a motor for driving the gear to rotate;
one of the rack and the gear is arranged on the frame body, and the other is arranged on the sliding vehicle.
The invention has the beneficial effects that: according to the extruder outlet aluminum shearing equipment, the upper shearing blade and the lower shearing blade are matched to shear the extruded aluminum, so that the traditional mode of cutting the extruded aluminum back and forth by using a saw is abandoned, aluminum scraps generated in the cutting process of the extruded aluminum are greatly reduced, aluminum materials are saved, and the production cost of enterprises is greatly reduced.
Drawings
The invention will be described in further detail with reference to the drawings and the detailed description.
FIG. 1 is a schematic diagram of an extruder outlet aluminum shearing apparatus in accordance with certain embodiments of the present invention;
FIG. 2 is a side view of the extruder outlet aluminum shearing apparatus shown in FIG. 1;
Fig. 3 is a schematic view of the structure of the extruder outlet aluminum shearing apparatus shown in fig. 1 with the frame and rollers removed.
Detailed Description
Reference will now be made in detail to the present embodiments of the present invention, examples of which are illustrated in the accompanying drawings, wherein the accompanying drawings are used to supplement the description of the written description so that one can intuitively and intuitively understand each technical feature and overall technical scheme of the present invention, but not to limit the scope of the present invention.
In the description of the present invention, it should be understood that references to orientation descriptions such as upper, lower, front, rear, left, right, etc. are based on the orientation or positional relationship shown in the drawings, are merely for convenience of description of the present invention and to simplify the description, and do not indicate or imply that the apparatus or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and thus should not be construed as limiting the present invention.
In the description of the present invention, a number means one or more, a number means three or more, and greater than, less than, exceeding, etc. are understood to not include the present number, and greater than, less than, within, etc. are understood to include the present number. The description of first, second, etc. if provided for the purpose of distinguishing between technical features only, should not be construed as indicating or implying a relative importance or implicitly indicating the number of technical features indicated or implicitly indicating the precedence of the technical features indicated.
In the description of the present invention, unless explicitly defined otherwise, terms such as arrangement, installation, connection, etc. should be construed broadly and the specific meaning of the terms in the present invention can be reasonably determined by a person skilled in the art in combination with the specific contents of the technical scheme.
Referring to fig. 1 to 3, an outlet aluminum shearing apparatus for an extruder according to some embodiments of the present invention includes a shearing base 100, a lower shearing blade 110 fixedly installed on the shearing base 100, an upper shearing blade 120 provided above the lower shearing blade 110, and a shearing driving mechanism driving the upper shearing blade 120 to move downward or swing downward and capable of shearing a workpiece 300 in cooperation with the lower shearing blade 110, the shearing driving mechanism being disposed on the shearing base 100; a punching needle 130 is disposed above the lower scissor blade 110, and the punching needle 130 is connected with a punching driving mechanism for driving the punching driving mechanism to move downwards and punch the workpiece 300, and the punching driving mechanism is disposed on the shearing base 100. The workpiece 300 described above comprises extruded aluminum.
Because the extruder outlet aluminum shearing equipment shears the extruded aluminum by adopting the mode of matching the upper shearing blade 120 with the lower shearing blade 130, the traditional mode of cutting the extruded aluminum back and forth by adopting a saw is abandoned, aluminum scraps generated in the cutting process of the extruded aluminum are greatly reduced, aluminum materials are saved, and the production cost of enterprises is greatly reduced.
Referring to fig. 2 and 3, in order to allow the upper blade 120 to better cooperate with the lower blade 110 to shear the workpiece 300, in some embodiments of the present invention, one end of the upper blade 120 is pivotally connected to the shear base 100, and the upper blade 120 is rotatable about its pivot connection with the shear base 100; the shear driving mechanism comprises a first piston cylinder 121 rotatably mounted on the shear base 100, and a piston rod of the first piston cylinder 121 is movably connected with the free end of the upper shear blade 120. The first piston cylinder 121 may be a cylinder or a hydraulic cylinder, and may be specifically determined according to practical needs. By adopting the structure, the structure of the outlet aluminum shearing equipment of the extruder can be simplified, and the upper shearing blade 120 can be matched with the lower shearing blade 110 better to shear the workpiece 300.
It is conceivable that the shear driving mechanism may employ other structures than the above-described one, such as: the shearing driving mechanism may adopt a structure (not shown in the figure) that a driving motor is matched with a screw rod mechanism, a nut of the screw rod mechanism is movably connected with the free end of the upper scissor blade 120, a screw rod of the screw rod mechanism is connected with an output shaft of the driving motor, and when the output shaft of the driving motor rotates positively or reversely, the nut of the screw rod mechanism can drive the upper scissor blade 120 to swing upwards or downwards.
In order to better enable the punch pin 130 to punch the workpiece 300, in some embodiments of the present invention, the punch driving mechanism includes a second piston cylinder 131 fixedly disposed on the shear base 100, and a piston rod of the second piston cylinder 131 is connected to the punch pin 130. The second piston cylinder 131 may be a cylinder or a hydraulic cylinder, and may be specifically determined according to practical needs. By adopting the structure, the structure of the extruder outlet aluminum shearing equipment can be simplified, and the punching driving mechanism can better drive the punching needle 130 to move downwards and perform injection on the workpiece 300. It is conceivable that the punching driving mechanism may be replaced by other structures besides the above structure, for example, the punching driving mechanism is replaced by a structure in which a driving motor is matched with a screw rod mechanism (not shown in the figure), a nut of the screw rod mechanism is fixedly connected with the punching needle 130, a screw rod of the screw rod mechanism is connected with an output shaft of the driving motor, and when the output shaft of the driving motor rotates forward or rotates reversely, the nut of the screw rod mechanism can drive the punching needle 130 to move upwards to lift or move downwards to punch.
Referring to fig. 1 to 3, since the extruded aluminum has a certain viscosity, in order to prevent the extruded aluminum from being adhered to the upper blade 120 and moving upward along with the upper blade 120, in some embodiments of the present invention, a limiting structure for limiting upward movement of the workpiece 300 is provided on the shear base 100, the limiting structure is disposed above the lower blade 110, and a gap 301 for the workpiece 300 to pass through is left between the limiting structure and the lower blade 110. In some embodiments of the present invention, the limiting structure includes two baffles 140 above the lower scissor blade 110, with a shear aisle 141 between the two baffles 140 through which the upper scissor blade 120 can pass. By adopting the above structure, when the upper blade 120 moves downward and cooperates with the lower blade 110 to shear the workpiece 300, even if the workpiece 300 is adhered to the upper blade 120 and moves upward along with the upper blade 120, the workpiece 300 moves upward by a certain distance, i.e. is abutted against the baffle 140, the baffle 140 can apply a force on the workpiece 300 and separate the workpiece 300 from the upper blade 120, thereby meeting the demands of users. It is conceivable that, in addition to the above-mentioned structure, the limiting structure may also adopt other structures, for example, the limiting structure includes a vacuum chuck (not shown in the drawing), the vacuum chuck is connected with a vacuum generator (not shown in the drawing), the vacuum chuck is disposed below the workpiece 300, after the upper scissor blade 120 and the lower scissor blade 110 cooperate to shear the workpiece 300, the workpiece 300 is adsorbed by the vacuum chuck, so as to limit the workpiece 300 to move upwards along with the upper scissor blade 120, and further realize the automatic separation of the workpiece 300 from the upper scissor blade 120, when the workpiece 300 needs to be moved, the vacuum chuck can remove the adsorption effect on the workpiece 300, so as to move the workpiece 300.
In order to prevent the work piece 300 from adhering to the lower scissor blade 110, a pushing mechanism for pushing the work piece 300 to separate from the lower scissor blade 110 is provided on the lower scissor blade 110. In some embodiments of the present invention, the pushing mechanism includes a rotating block 150 and a rotating block driving mechanism for driving the rotating block 150 to rotate; the middle part of the lower shear blade 110 is provided with a mounting groove 111, a rotating shaft 151 is movably mounted in the mounting groove 111, a rotating block 150 is fixedly arranged on the rotating shaft 151, and the rotating block 150 can synchronously rotate along with the rotating shaft 151; the rotating block driving mechanism is disposed on the shear base 100, and is connected to the rotating shaft 151. One end of the rotating shaft 151 extending out of the lower scissor blade 110 is fixedly provided with a connecting rod 152; the rotating block driving mechanism comprises a third piston cylinder 153 movably arranged on the shearing base 100, and a piston rod of the third piston cylinder 153 is movably connected with the free end of the connecting rod 152. The third piston cylinder 153 may be a cylinder or a hydraulic cylinder, and may be specifically determined according to practical needs.
In the initial state, the rotating block 150 is completely embedded in the mounting groove 111, after the upper shearing blade 120 and the lower shearing blade 110 are matched to shear the workpiece 300, the piston rod of the third piston cylinder 153 extends out and drives the connecting rod 152 to drive the rotating shaft 151 to rotate, the rotating shaft 151 can drive the rotating block 150 to synchronously rotate and tilt, the rotating block 150 tilts upwards and protrudes out of the mounting groove 111, and then the rotating block 150 can push the workpiece 300 to move upwards and separate from the lower shearing blade 110. Then, the piston rod of the third piston cylinder 153 contracts and drives the connecting rod 152 to drive the rotating shaft 151 to reversely rotate, and the rotating shaft 151 can drive the rotating block 150 to reversely rotate synchronously, and at the moment, the rotating block 150 is stored in the mounting groove 111 again.
It is conceivable that the pushing mechanism may have other structures besides the above structure, for example, the pushing mechanism is a high-pressure air source (not shown in the drawing), the lower scissor blade 110 is provided with an air hole (not shown in the drawing) penetrating through the whole lower scissor blade 110, and when the workpiece 300 is required to be separated from the lower scissor blade 110, the high-pressure air source can output high-pressure air into the air hole, and the high-pressure air can push the workpiece 300 to move upwards and separate from the lower scissor blade 110.
In order to facilitate adjustment of the relative positions of the extruder outlet aluminum shearing device and the extruder, in some embodiments of the present invention, the extruder outlet aluminum shearing device further includes a frame 200, a sliding vehicle 210 is movably mounted on the frame 200, more than one set of guide rail pairs 211 are disposed on the surface of the sliding vehicle 210, and the shearing base 100 is connected with all the guide rail pairs 211; the carriage 210 is connected to a carriage driving mechanism for driving the carriage to reciprocate back and forth along the frame 200. To better adjust the relative position of the extruder outlet aluminum shear device to the extruder, in some embodiments of the present invention, the guide rail pair 211 is oriented perpendicular to the direction of movement of the carriage 210. By adopting the above-described structure, the user can adjust the position of the extruder outlet aluminum shearing apparatus at will, thereby making the extruder outlet aluminum shearing apparatus capable of shearing the work 300 better.
In order to facilitate the production and manufacture of the extruder outlet aluminum shearing device, in some embodiments of the present invention, the frame 200 is a rectangular frame formed by enclosing two long sides and two short sides, two parallel sliding grooves 220 are respectively formed on the inner walls of two opposite sides of the long sides of the frame 200, and rollers 212 matched with the two sliding grooves 220 are respectively formed on two opposite sides of the sliding vehicle 210, and the sliding vehicle 210 reciprocates back and forth along the long sides of the frame 200 through the cooperation of the rollers 212 and the sliding grooves 220. The sliding vehicle driving mechanism comprises a rack 310 and a gear 320 which are meshed with each other, and the gear 320 is connected with a motor 330 for driving the sliding vehicle driving mechanism to rotate; one of the rack 310 and the gear 320 is disposed on the frame 200, and the other is disposed on the carriage 210. When the rack 310 is disposed on the frame 200, the gear 320 is disposed on the carriage 210; when the rack 310 is disposed on the carriage 210, the gear 320 is disposed on the frame 200. And the specific requirements can be determined according to actual needs. It is conceivable that the carriage driving mechanism may have other structures besides the above-mentioned structure, for example, the carriage driving mechanism may be a cylinder or a hydraulic cylinder (not shown in the drawings), the cylinder or the hydraulic cylinder is fixedly disposed on the frame 200, and a piston rod of the cylinder or the hydraulic cylinder is connected to the frame 200, so that the piston rod of the cylinder or the hydraulic cylinder extends or contracts, that is, the frame 200 may be driven to reciprocate along a long side of the frame 200.
The embodiments of the present invention have been described in detail with reference to the accompanying drawings, but the present invention is not limited to the above embodiments, and various changes can be made within the knowledge of one of ordinary skill in the art without departing from the spirit of the present invention.
Claims (8)
1. An extruder outlet aluminum shearing apparatus comprising:
A shear base (100);
a lower shear blade (110), wherein the lower shear blade (110) is fixedly arranged on the shear base (100);
The upper shear blade (120) is arranged above the lower shear blade (110), the upper shear blade (120) is connected with a shearing driving mechanism which drives the upper shear blade (120) to move downwards or swing downwards and can be matched with the lower shear blade (110) to shear a workpiece, and the shearing driving mechanism is arranged on the shearing base (100);
The punching needle (130), the punching needle (130) is arranged above the lower shear blade (110), the punching needle (130) is connected with a punching driving mechanism which drives the punching driving mechanism to move downwards and punch a workpiece, and the punching driving mechanism is arranged on the shear base (100);
the lower shear blade (110) is provided with a pushing mechanism for pushing the workpiece to be separated from the lower shear blade (110);
The pushing mechanism comprises a rotating block (150) and a rotating block driving mechanism for driving the rotating block (150) to rotate;
a mounting groove (111) is formed in the middle of the lower shear blade (110), a rotating shaft (151) is movably mounted in the mounting groove (111), the rotating block (150) is fixedly arranged on the rotating shaft (151), and the rotating block (150) can synchronously rotate along with the rotating shaft (151);
The rotating block driving mechanism is arranged on the shearing base (100) and is connected with the rotating shaft (151).
2. An extruder outlet aluminum shearing apparatus as recited in claim 1, wherein:
one end of the upper shear blade (120) is pivoted on the shear base (100);
the shearing driving mechanism comprises a first piston cylinder (121) rotatably arranged on the shearing base (100), and a piston rod of the first piston cylinder (121) is movably connected with the free end of the upper shearing blade (120).
3. An extruder outlet aluminum shearing apparatus as recited in claim 1, wherein,
The punching driving mechanism comprises a second piston cylinder (131) fixedly arranged on the shearing base (100), and a piston rod of the second piston cylinder (131) is connected with the punching needle (130).
4. An extruder outlet aluminum shearing apparatus as recited in any one of claims 1 to 3, wherein:
The cutting base (100) is provided with a limiting structure for limiting upward movement of the workpiece, the limiting structure is arranged above the lower cutting blade (110), and a gap for the workpiece to pass through is reserved between the limiting structure and the lower cutting blade (110).
5. An extruder outlet aluminum shearing apparatus as recited in claim 4, wherein,
The limiting structure comprises two baffles (140) positioned above the lower shear blade (110), and a shearing passage (141) which can be used for the upper shear blade (120) to pass through is reserved between the two baffles (140).
6. An extruder outlet aluminum shearing apparatus as recited in claim 1, wherein,
One end of the rotating shaft (151) extending out of the lower shear blade (110) is fixedly provided with a connecting rod (152);
The rotating block driving mechanism comprises a third piston cylinder (153) movably arranged on the shearing base (100), and a piston rod of the third piston cylinder (153) is movably connected with the free end of the connecting rod (152).
7. An extruder outlet aluminum shearing apparatus as recited in claim 1, wherein:
the shear base comprises a shear base body (100), and is characterized by further comprising a frame body (200), wherein a sliding vehicle (210) is movably arranged on the frame body (200), more than one group of guide rail pairs (211) are arranged on the surface of the sliding vehicle (210), and the shear base (100) is connected with all the guide rail pairs (211);
The sliding vehicle (210) is connected with a sliding vehicle driving mechanism for driving the sliding vehicle to reciprocate back and forth along the frame body (200).
8. An extruder outlet aluminum shearing apparatus as recited in claim 7 wherein:
two opposite side inner walls of the frame body (200) are respectively provided with a sliding groove (220) which is parallel to each other, and two opposite sides of the sliding vehicle (210) are respectively provided with rollers (212) which are matched with the two sliding grooves (220);
The sliding vehicle driving mechanism comprises a rack (310) and a gear (320) which are meshed with each other, and the gear (320) is connected with a motor (330) for driving the gear to rotate;
one of the rack (310) and the gear (320) is disposed on the frame (200), and the other is disposed on the slide car (210).
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN201911100242.7A CN110802266B (en) | 2019-11-12 | 2019-11-12 | Extruder export aluminum product shearing equipment |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN201911100242.7A CN110802266B (en) | 2019-11-12 | 2019-11-12 | Extruder export aluminum product shearing equipment |
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| CN110802266A CN110802266A (en) | 2020-02-18 |
| CN110802266B true CN110802266B (en) | 2024-07-19 |
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| CN113427063B (en) * | 2020-03-23 | 2022-05-20 | 广东博智林机器人有限公司 | Rotary shearing mechanism and net hanging pulp filling machine device |
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| CN211218881U (en) * | 2019-11-12 | 2020-08-11 | 中山市和胜智能家居配件有限公司 | Extruder outlet aluminum shearing equipment |
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