CN216996385U - High accuracy frock conveying mechanism - Google Patents
High accuracy frock conveying mechanism Download PDFInfo
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- CN216996385U CN216996385U CN202220090609.2U CN202220090609U CN216996385U CN 216996385 U CN216996385 U CN 216996385U CN 202220090609 U CN202220090609 U CN 202220090609U CN 216996385 U CN216996385 U CN 216996385U
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Abstract
The utility model discloses a high-precision tool conveying mechanism, which comprises: the device comprises a support, a first conveying assembly, at least one group of second conveying assemblies, a tooling plate and a guide assembly, wherein the first conveying assembly and the second conveying assemblies are used for driving the tooling plate to move; the guide assembly includes: at least two pulleys, with two guide rails of pulley matched with, deflector, the pulley connect in the bottom of frock board, first conveying component and second conveying component set up two guide rails between, be provided with the guide way on the deflector, all be provided with the sliding block on the both ends of frock board, the sliding block with the guide way cooperatees. According to the utility model, through the matching of the pulleys and the guide rail, and the sliding block and the guide groove, the guide in the moving process can be realized, and the stability of the product in the conveying process can be improved; meanwhile, the product can be conveyed in a segmented mode, so that the blocking mechanism is higher in stability of clamping the tooling plate, and the product can be conveniently subjected to related operation.
Description
Technical Field
The utility model relates to the field of tool plate conveying equipment, in particular to a high-precision tool conveying mechanism.
Background
Frock transport structure among the prior art has following problem: usually, the tooling plate is directly driven to move through a conveyor belt, so that conveying is realized, and the moving stability is low due to the fact that the conveying distance is long and the guide of the movement of the tooling plate cannot be realized in the conveying process.
Thus, the prior art is deficient and needs improvement.
SUMMERY OF THE UTILITY MODEL
The utility model aims to overcome the defects of the prior art, provides a high-precision tool conveying mechanism, and solves the problem that in the prior art, the tool conveying mechanism cannot be positioned and guided in the conveying process, so that the moving stability is low.
The technical scheme of the utility model is as follows: the utility model provides a high accuracy frock conveying mechanism, includes: the device comprises a support, a first conveying assembly, at least one group of second conveying assemblies, a tooling plate and a guide assembly, wherein the first conveying assembly, the at least one group of second conveying assemblies, the tooling plate and the guide assembly are arranged on the support, and the first conveying assembly and the second conveying assembly are used for driving the tooling plate to move; the guide assembly includes: at least two pulleys, with two guide rails of pulley matched with, deflector, the pulley connect in the bottom of frock board, first conveying component and second conveying component set up two guide rails between, be provided with the guide way on the deflector, all be provided with the sliding block on the both ends of frock board, the sliding block with the guide way cooperatees.
Further, the first conveyor assembly comprises: the synchronous belt transmission device comprises a rotary driving device arranged on the bracket, a driving wheel connected with the output end of the rotary driving device, a plurality of synchronous wheels and a synchronous belt sleeved on the driving wheel and the plurality of synchronous wheels; the second conveying assembly is identical to the first conveying assembly in structure.
Furthermore, the bottom of the tooling plate is also provided with a clamping groove, a guide block is arranged in the clamping groove, and the guide block is in contact with the synchronous belt.
Further, a high accuracy frock conveying mechanism, still include: and the blocking mechanism is arranged on the guide plate and is used for clamping the tool plate and blocking the tool plate from moving.
Further, the blocking mechanism includes: a first blocking member, a second blocking member disposed at one side of the first blocking member, the first blocking member including: the linear driving device comprises a linear driving device, a push rod connected with the output end of the linear driving device, a blocking block matched with the push rod and a first mounting block, wherein the blocking block is rotatably mounted on the first mounting block.
Further, the second blocking member includes: the second installation block and the elastic clamp installed on the second installation block are provided with installation grooves, and the elastic clamp is arranged in the installation grooves.
By adopting the scheme, the utility model provides a high-precision tool conveying mechanism which has the following beneficial effects:
1. through the matching of the pulleys and the guide rail as well as the sliding block and the guide groove, the guide and the positioning in the moving process can be realized, and the stability in the product conveying process is effectively improved;
2. the first conveying assembly and the plurality of groups of second conveying assemblies are arranged, so that the products are conveyed in a segmented mode, the stability of the blocking mechanism for clamping the tooling plate is higher, and the products can be conveniently subjected to related operations;
3. simple structure, occupation space is few, and the practicality is strong.
Drawings
FIG. 1 is a schematic structural view of the present invention;
FIG. 2 is a schematic view of another embodiment of the present invention;
FIG. 3 is a schematic structural diagram of a first conveying assembly, a second conveying assembly, a tooling plate and a guide assembly according to the present invention;
FIG. 4 is a schematic structural diagram of a first blocking member according to the present invention;
fig. 5 is a schematic structural diagram of a second blocking member according to the present invention.
Wherein: the device comprises a support 1, a first conveying assembly 2, a rotary driving device 20, a driving wheel 21, a synchronous wheel 22, a synchronous belt 23, a second conveying assembly 3, a tooling plate 4, a clamping groove 40, a guide block 41, a guide assembly 5, a pulley 50, a guide rail 51, a guide plate 52, a guide groove 53, a sliding block 54, a blocking mechanism 6, a first blocking piece 60, a linear driving device 600, a push rod 601, a blocking piece 602, a first mounting piece 603, a second blocking piece 61, a second mounting piece 610 and an elastic clamp 611.
Detailed Description
The utility model is described in detail below with reference to the figures and the specific embodiments.
Referring to fig. 1 to 5, the present invention provides a high precision tool conveying mechanism, including: the device comprises a support 1, a first conveying assembly 2, four groups of second conveying assemblies 3, a tooling plate 4 and a guide assembly 5, wherein the first conveying assembly 2, the second conveying assembly 3 are arranged on the support 1 and are used for driving the tooling plate 4 to move; the guide assembly 5 comprises: four pulleys 50, with two guide rails 51 of pulley 50 matched with, deflector 52, four pulleys 50 connect in the bottom of frock board 4, and two liang of symmetry sets up, first conveying component 2 and second conveying component 3 set up two guide rails 51 between, be provided with guide way 53 on the deflector 52, all be provided with sliding block 54 on the both ends of frock board 4, sliding block 54 with guide way 53 cooperatees. The specific action process of the high-precision tooling plate 4 conveying mechanism provided by the utility model is as follows: the first conveying assembly 2 and the second conveying assembly 3 drive the tooling plate 4 to move, conveyed products are placed on the tooling plate 4, when the products move, the pulleys 50 on the left side and the right side of the bottom of the tooling plate 4 are respectively contacted with the two guide rails 51, the guide rails 51 are clamped by the sliding grooves on the two pulleys 50, and meanwhile, the sliding blocks 54 at the two ends of the tooling plate 4 move in the guide grooves 53, so that the guiding and the positioning in the moving process are realized, and the high stability in the product conveying process is ensured; on the other hand, in the utility model, the first conveying assembly 2 and the plurality of groups of second conveying assemblies 3 are respectively arranged, and a sectional conveying mode is adopted, so that under the matching action of the guide plate 52, the guide rail 51 and the like, the high stability of the movement of the tooling plate 4 and the products can be ensured, and the conveying sections are not interfered with each other.
Specifically, in the present embodiment, the first conveying assembly 2 includes: the device comprises a rotary driving device 20 arranged on the bracket 1, a driving wheel 21 connected with the output end of the rotary driving device 20, a plurality of synchronous wheels 22, and a synchronous belt 23 sleeved on the driving wheel 21 and the plurality of synchronous wheels 22; the second conveying assembly 3 is identical to the first conveying assembly 2 in structure; the bottom of frock board 4 still is provided with a draw-in groove 40, be provided with guide block 41 in the draw-in groove 40, guide block 41 with hold-in range 23 contacts, guide block 41 also can play certain guide effect at the removal in-process. The rotary driving device 20 is a servo motor; when the rotation driving device 20 is started, the driving wheel 21, the synchronous belt 23 and the synchronous wheel 22 are driven to rotate, and the tooling plate 4 is driven to move.
Specifically, in this embodiment, the conveying mechanism for the high-precision tooling plate 4 further includes: a blocking mechanism 6 mounted on the guide plate 52, wherein the blocking mechanism 6 is used for clamping the tooling plate 4 and blocking the movement of the tooling plate; the blocking mechanism 6 includes: a first stopper 60, a second stopper 61 disposed at one side of the first stopper 60, the first stopper 60 including: the linear driving device 600 comprises a linear driving device 600, a push rod 601 connected with the output end of the linear driving device 600, a stop block 602 matched with the push rod 601, and a first mounting block 603, wherein the linear driving device 600 is a driving cylinder, and the stop block 602 is rotatably mounted on the first mounting block 603; the second stopper 61 includes: the mounting structure comprises a second mounting block 610 and an elastic clamp 611 mounted on the second mounting block 610, wherein a mounting groove is formed in the second mounting block 610, and the elastic clamp 611 is arranged in the mounting groove; the guide plate 52 is provided with a support plate, and the support plate is connected with the bracket 1. One end of each of the first conveying assemblies 2 and each of the second conveying assemblies 3 is provided with a blocking mechanism 6, under the action of the blocking mechanism 6, the tooling plate 4 can be clamped, so that the tooling plate 4 stops moving, and corresponding operation can be performed on products on the tooling plate 4 according to production requirements. Specifically, the action process of the blocking mechanism 6 is as follows: when the tooling plate 4 moves to the second blocking member 61 under the action of the first conveying assembly 2, the elastic clamp 611 on the second blocking member 61 is urged to move into the mounting groove, when the tooling plate 4 moves to a position between the first blocking member 60 and the second blocking member 61, the linear driving device 600 is started to drive the blocking member 602 to move to abut against one end of the tooling plate 4, and the elastic clamp 611 springs up to abut against the other end of the tooling plate 4, so as to clamp the tooling plate 4 and block the tooling plate from further moving.
In summary, the utility model provides a high-precision tool conveying mechanism, which has the following beneficial effects:
1. through the matching of the pulleys and the guide rail as well as the sliding block and the guide groove, the guiding and the positioning in the moving process can be realized, and the stability in the product conveying process is effectively improved;
2. the first conveying assembly and the plurality of groups of second conveying assemblies are arranged, so that the products are conveyed in a segmented mode, the stability of the blocking mechanism for clamping the tooling plate is higher, and the products can be conveniently subjected to related operations;
3. simple structure, occupation space is few, and the practicality is strong.
The present invention is not limited to the above preferred embodiments, and any modifications, equivalent substitutions and improvements made within the spirit and principle of the present invention should be included in the protection scope of the present invention.
Claims (6)
1. The utility model provides a high accuracy frock conveying mechanism which characterized in that includes: the device comprises a support, a first conveying assembly, at least one group of second conveying assemblies, a tooling plate and a guide assembly, wherein the first conveying assembly, the at least one group of second conveying assemblies, the tooling plate and the guide assembly are arranged on the support, and the first conveying assembly and the second conveying assembly are used for driving the tooling plate to move; the guide assembly includes: at least two pulleys, with two guide rails of pulley matched with, deflector, the pulley connect in the bottom of frock board, first conveying component and second conveying component set up two guide rails between, be provided with the guide way on the deflector, all be provided with the sliding block on the both ends of frock board, the sliding block with the guide way cooperatees.
2. The high-precision tool conveying mechanism according to claim 1, wherein the first conveying assembly comprises: the synchronous belt transmission device comprises a rotary driving device arranged on the bracket, a driving wheel connected with the output end of the rotary driving device, a plurality of synchronous wheels and a synchronous belt sleeved on the driving wheel and the plurality of synchronous wheels; the second conveying assembly is identical to the first conveying assembly in structure.
3. The high-precision tool conveying mechanism according to claim 2, wherein a clamping groove is further formed in the bottom of the tool plate, a guide block is arranged in the clamping groove, and the guide block is in contact with the synchronous belt.
4. The high-precision tool conveying mechanism according to claim 1, further comprising: and the blocking mechanism is arranged on the guide plate and is used for clamping the tool plate and blocking the tool plate from moving.
5. The high-precision tool conveying mechanism according to claim 4, wherein the blocking mechanism comprises: a first blocking member, a second blocking member disposed at one side of the first blocking member, the first blocking member including: the device comprises a linear driving device, a push rod connected with the output end of the linear driving device, a blocking block matched with the push rod and a first mounting block, wherein the blocking block is rotatably mounted on the first mounting block.
6. The high-precision tool conveying mechanism according to claim 5, wherein the second blocking piece comprises: the second installation block and the elastic clamp installed on the second installation block are provided with installation grooves, and the elastic clamp is arranged in the installation grooves.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202220090609.2U CN216996385U (en) | 2022-01-13 | 2022-01-13 | High accuracy frock conveying mechanism |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN202220090609.2U CN216996385U (en) | 2022-01-13 | 2022-01-13 | High accuracy frock conveying mechanism |
Publications (1)
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CN216996385U true CN216996385U (en) | 2022-07-19 |
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CN202220090609.2U Active CN216996385U (en) | 2022-01-13 | 2022-01-13 | High accuracy frock conveying mechanism |
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CN (1) | CN216996385U (en) |
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2022
- 2022-01-13 CN CN202220090609.2U patent/CN216996385U/en active Active
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