CN216613098U - Double-layer conveying assembly suitable for hot press molding process - Google Patents
Double-layer conveying assembly suitable for hot press molding process Download PDFInfo
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- CN216613098U CN216613098U CN202123131605.9U CN202123131605U CN216613098U CN 216613098 U CN216613098 U CN 216613098U CN 202123131605 U CN202123131605 U CN 202123131605U CN 216613098 U CN216613098 U CN 216613098U
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Abstract
The utility model discloses a double-layer conveying assembly suitable for a hot-press forming process, which comprises a bracket, wherein under the arrangement of a first conveying unit, a second conveying unit, an edge guide assembly and a material gripper, stable and accurate conveying of a material with larger weight can be realized, so that the processing precision of subsequent hot-press forming equipment is ensured, and the product quality is ensured; the conveying belt, the sliding frame and the material are always kept in a relatively static state, the stability of the material in the conveying process is guaranteed due to the upper and lower double-layer conveying, the friction between the material and the conveying belt is reduced, and the quality of the material to be processed is guaranteed.
Description
Technical Field
The utility model relates to the technical field of hot-press forming equipment, in particular to a double-layer conveying assembly suitable for a hot-press forming process.
Background
Need carry the material to the processing district of hot briquetting equipment before hot briquetting equipment processing, current conveyor components transport stability is not high, especially to the transport of the great material of weight, the material produces easily in the transportation and rocks and take place the friction easily between the conveyer belt, and the damage appears on the surface that one can cause the material of treating processing, and its two can make the unable accurate positioning of material to the processing district of treating of hot briquetting equipment, and the appearance of above-mentioned problem all can cause adverse effect to product quality.
SUMMERY OF THE UTILITY MODEL
The present invention is directed to a double-layer conveying assembly suitable for hot press molding process, so as to solve the problems mentioned in the background art.
In order to achieve the purpose, the utility model provides the following technical scheme:
the utility model provides a double-deck conveying assembly suitable for hot briquetting technology, which comprises a bracket, the support inboard is provided with second conveying unit, the support top is provided with first conveying unit, form material transfer passage between first conveying unit and the second conveying unit, first conveying unit is including following transfer passage reciprocating motion's slip frame, be provided with a plurality of material tongs that are used for snatching the material on the slip frame, second conveying unit is including the conveyer belt that is used for carrying the material, the displacement of slip frame and conveyer belt along transfer passage length direction unit time is the same.
The first conveying unit further comprises a fixed platform fixedly mounted on the support, a rotatable transmission shaft and a first servo motor for driving the transmission shaft to rotate are arranged on the fixed platform, a first chain fixed end and a second chain fixed end are respectively arranged at two ends of the sliding frame, a transmission chain is arranged between the first chain fixed end and the second chain fixed end, a first double-row chain wheel is arranged on the transmission shaft, a second double-row chain wheel and a third double-row chain wheel are rotatable on the fixed platform, and the transmission chain is in transmission connection with the second double-row chain wheel, the first double-row chain wheel and the third double-row chain wheel in sequence.
And a plurality of supporting guide wheels for supporting the sliding frame are arranged on the bracket.
The second conveying unit further comprises a driving rotating shaft and a driven rotating shaft, the driving rotating shaft is arranged on the support, the driven rotating shaft is arranged on the support, the driving rotating shaft and the driven rotating shaft are in transmission connection through a conveying belt, and a second servo motor for driving the driving rotating shaft to rotate is further arranged on the support.
Conveying passageway one side is provided with the edge direction subassembly parallel with material transport direction, and the edge direction subassembly is including setting up the shell on the support, and shell one side opening and inside are provided with a plurality of rotatable side guide rollers.
The material tongs include with first connecting rod of sliding frame articulated, with the second connecting rod of sliding frame handing-over, with sliding frame articulated lifting cylinder and third connecting rod, the third connecting rod both ends are articulated with first connecting rod and second connecting rod respectively, third connecting rod bottom is provided with the electro-magnet, the piston rod of lifting cylinder is articulated with the pin joint of second connecting rod and third connecting rod.
The beneficial effects of the utility model are:
under the arrangement of the first conveying unit, the second conveying unit, the edge guide assembly and the material gripper, stable and accurate conveying of materials with larger weight can be realized, so that the processing precision of subsequent hot-press forming equipment is ensured, and the product quality is ensured; the conveying belt, the sliding frame and the material are always kept in a relatively static state, the stability of the material in the conveying process is guaranteed through the upper layer and the lower layer, friction between the material and the conveying belt is reduced, and the quality of the material to be processed is guaranteed.
Drawings
FIG. 1 is a schematic structural view of the present invention;
FIG. 2 is a schematic structural diagram of a first conveying unit according to the present invention;
FIG. 3 is a schematic structural view of a second conveying unit according to the present invention;
fig. 4 is a schematic structural view of the material gripper of the present invention.
In the figure, 1, a bracket;
2. a first conveying unit; 21. a first chain fixing end; 22. a second chain fixing end; 23. a first servo motor; 24. a first double sprocket; 25. a second double sprocket; 26. a third double sprocket; 27. a sliding frame; 28. a fixed platform;
3. a second conveying unit; 31. a second servo motor; 32. a driving rotating shaft; 33. a driven rotating shaft; 34. a conveyor belt;
4. supporting guide wheels; 5. an edge guide assembly;
6. a material gripper; 61. A first link; 62. a second link; 63. a lifting cylinder; 64. a third link; 65. an electromagnet.
Detailed Description
The technical solutions of the present invention are further described in detail below with reference to the accompanying drawings, but the scope of the present invention is not limited to the following.
Referring to fig. 1 to 4, an embodiment of the present invention provides a double-layer conveying assembly suitable for a hot press forming process, including a bracket 1, a second conveying unit 3 disposed inside the bracket 1, a first conveying unit 2 disposed above the bracket 1, a material conveying channel formed between the first conveying unit 2 and the second conveying unit 3, the first conveying unit 2 including a sliding frame 27 capable of reciprocating along the conveying channel, a plurality of material grippers 6 disposed on the sliding frame 27 for gripping materials, the first conveying unit 2 further including a fixed platform 28 fixedly mounted on the bracket 1, a rotatable transmission shaft and a first servo motor 23 for driving the transmission shaft to rotate disposed on the fixed platform 28, a first chain fixing end 21 and a second chain fixing end 22 disposed at two ends of the sliding frame 27, a transmission chain disposed between the first chain fixing end 21 and the second chain fixing end 22, the transmission shaft is provided with a first double-row chain wheel 24, a second double-row chain wheel 25 and a third double-row chain wheel 26 which are rotatable on the fixed platform 28, and the transmission chain is in transmission connection with the second double-row chain wheel 25, the first double-row chain wheel 24 and the third double-row chain wheel 26 in sequence.
When the first servo motor 23 is started, the transmission shaft is driven to rotate by the forward and reverse rotation of the first servo motor, and the first double-row chain wheel 24 is driven to rotate, and the sliding frame 27 can reciprocate in the material conveying channel as two ends of the transmission chain are fixed with the sliding frame 27.
The portion of the drive chain between the third double sprocket 26 and the first double sprocket 24 and the portion of the drive chain between the first double sprocket 24 and the second double sprocket 25 are parallel to each other.
The second double-row chain wheel 25 and the third double-row chain wheel 26 are additionally arranged, and the second double-row chain wheel 25 and the third double-row chain wheel 26 are arranged as described above, so that the tensioning degree of the chain can be improved, and the running stability of the sliding frame 27 can be further improved.
The support frame 1 is provided with a plurality of supporting guide wheels 4 for supporting the sliding frame 27, and the arrangement of the supporting guide wheels 4 can improve the running stability of the sliding frame 27.
The second conveying unit 3 comprises a conveying belt 34 for conveying materials, the second conveying unit 3 further comprises a driving rotating shaft 32 and a driven rotating shaft 33, the driving rotating shaft 32 is arranged on the support 1 in a rotatable mode, the driven rotating shaft 33 is arranged on the support 1 in a rotatable mode, the driving rotating shaft 32 and the driven rotating shaft 33 are in transmission connection through the conveying belt 34, and a second servo motor 31 for driving the driving rotating shaft 32 to rotate is further arranged on the support 1.
The second servo motor 31 is activated to drive the driving shaft 32 to rotate, so as to drive the conveyer belt to move back and forth.
The displacement of the sliding frame 27 and the conveying belt 34 in the length direction of the conveying channel is the same in unit time; the conveying speed that accessible was adjusted first servo motor 23 and second servo motor 31 control first conveying unit 2 and second conveying unit 3 keeps unanimous, and the material is at transportation process promptly, and conveyer belt, sliding frame and material three remain relative quiescent condition throughout, and upper and lower double-deck is carried and has been guaranteed the stability among the material transportation process, and the positioning accuracy of its ejection of compact also can be guaranteed.
Conveying channel one side is provided with the edge direction subassembly 5 parallel with material transport direction, and edge direction subassembly 5 is including setting up the shell on support 1, and shell one side opening and inside are provided with a plurality of rotatable side guide rollers, and edge direction subassembly 5 matches with the mechanism that leans on the limit of anterior segment process, and its purpose carries out the accurate positioning to the side direction of material.
The material gripper 6 comprises a first connecting rod 61 hinged to the sliding frame 27, a second connecting rod 62 connected with the sliding frame 27, a lifting cylinder 63 and a third connecting rod 64 hinged to the sliding frame 27, two ends of the third connecting rod 64 are hinged to the first connecting rod 61 and the second connecting rod 62 respectively, an electromagnet 65 is arranged at the bottom of the third connecting rod 64, a piston rod of the lifting cylinder 63 is hinged to a hinged point of the second connecting rod 62 and the third connecting rod 64, the lifting cylinder 63 is started to extend and shorten a piston rod of the lifting cylinder 63 to drive the electromagnet 65 to ascend and descend, the electromagnet 65 descends to grip materials, and after the materials are gripped, the electromagnet 65 carries adsorbed materials to ascend and enables the materials to be located on the inner side of a material conveying channel, so that the materials can be conveyed.
After the materials are conveyed to the processing area of the hot-press forming equipment, the electromagnet 65 loses power, and then the conveying of the materials can be completed.
The foregoing is illustrative of the preferred embodiments of this invention, and it is to be understood that the utility model is not limited to the precise form disclosed herein and that various other combinations, modifications, and environments may be resorted to, falling within the scope of the concept as disclosed herein, either as described above or as apparent to those skilled in the relevant art. And that modifications and variations may be effected by those skilled in the art without departing from the spirit and scope of the utility model as defined by the appended claims.
Claims (6)
1. The utility model provides a double-deck conveying assembly suitable for hot briquetting technology, which comprises a bracket (1), a serial communication port, support (1) inboard is provided with second conveying unit (3), support (1) top is provided with first conveying unit (2), form material transfer passage between first conveying unit (2) and the second conveying unit (3), first conveying unit (2) are including sliding frame (27) that can follow transfer passage reciprocating motion, be provided with a plurality of material tongs (6) that are used for snatching the material on sliding frame (27), second conveying unit (3) are including conveyer belt (34) that are used for carrying the material, sliding frame (27) and conveyer belt (34) are the same along transfer passage length direction unit interval's displacement.
2. The double-layer conveying assembly suitable for the hot press forming process according to claim 1, the first conveying unit (2) is characterized by further comprising a fixing platform (28) fixedly mounted on the support (1), a rotatable transmission shaft and a first servo motor (23) driving the transmission shaft to rotate are arranged on the fixing platform (28), a first chain fixing end (21) and a second chain fixing end (22) are arranged at two ends of the sliding frame (27) respectively, a transmission chain is arranged between the first chain fixing end (21) and the second chain fixing end (22), a first double-row chain wheel (24) is arranged on the transmission shaft, a second double-row chain wheel (25) and a third double-row chain wheel (26) which are rotatable on the fixing platform (28), and the transmission chain is in transmission connection with the second double-row chain wheel (25), the first double-row chain wheel (24) and the third double-row chain wheel (26) in sequence.
3. The double-layer conveying assembly suitable for the hot-press forming process according to claim 1, wherein a plurality of supporting guide wheels (4) for supporting the sliding frame (27) are arranged on the bracket (1).
4. The double-layer conveying assembly suitable for the hot press forming process according to claim 1, wherein the second conveying unit (3) further comprises a rotatable driving rotating shaft (32) arranged on the support (1) and a rotatable driven rotating shaft (33) arranged on the support (1), the driving rotating shaft (32) and the driven rotating shaft (33) are in transmission connection through a conveying belt (34), and the support (1) is further provided with a second servo motor (31) for driving the driving rotating shaft (32) to rotate.
5. The double-layer conveying assembly suitable for the hot-press forming process is characterized in that an edge guide assembly (5) parallel to the material conveying direction is arranged on one side of the conveying channel, the edge guide assembly (5) comprises a shell arranged on the support (1), one side of the shell is open, and a plurality of rotatable side guide rollers are arranged inside the shell.
6. The double-layer conveying assembly suitable for the hot press forming process is characterized in that the material gripper (6) comprises a first connecting rod (61) hinged to the sliding frame (27), a second connecting rod (62) connected with the sliding frame (27), a lifting cylinder (63) and a third connecting rod (64) hinged to the sliding frame (27), two ends of the third connecting rod (64) are hinged to the first connecting rod (61) and the second connecting rod (62) respectively, an electromagnet (65) is arranged at the bottom of the third connecting rod (64), and a piston rod of the lifting cylinder (63) is hinged to a hinged point of the second connecting rod (62) and the third connecting rod (64).
Priority Applications (1)
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CN202123131605.9U CN216613098U (en) | 2021-12-14 | 2021-12-14 | Double-layer conveying assembly suitable for hot press molding process |
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CN202123131605.9U CN216613098U (en) | 2021-12-14 | 2021-12-14 | Double-layer conveying assembly suitable for hot press molding process |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN117001491A (en) * | 2023-09-08 | 2023-11-07 | 威伦维客节能科技河北有限公司 | Online equipment of polishing of acoustical board |
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2021
- 2021-12-14 CN CN202123131605.9U patent/CN216613098U/en active Active
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN117001491A (en) * | 2023-09-08 | 2023-11-07 | 威伦维客节能科技河北有限公司 | Online equipment of polishing of acoustical board |
CN117001491B (en) * | 2023-09-08 | 2024-02-20 | 威伦维客节能科技河北有限公司 | Online equipment of polishing of acoustical board |
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