CN219135379U - Multistation circulation conveying and feeding device - Google Patents
Multistation circulation conveying and feeding device Download PDFInfo
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- CN219135379U CN219135379U CN202223482563.8U CN202223482563U CN219135379U CN 219135379 U CN219135379 U CN 219135379U CN 202223482563 U CN202223482563 U CN 202223482563U CN 219135379 U CN219135379 U CN 219135379U
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Abstract
The utility model discloses a multi-station circulating conveying feeding device which comprises a base, a conveying device, a die, guide blocks, guide strips, a guide mechanism and a self-resetting blocking mechanism, wherein the conveying device is arranged on the base, the conveying device is driven by a servo drive to drive the die to periodically and circularly rotate along a track formed by a driving wheel and a driven wheel, the guide blocks and the guide strips for limiting and restricting products on the die are erected on the outer ring of the conveying device, one end of each guide block is provided with a plurality of feeding holes, the guide mechanisms compatible with products with different specifications are arranged at the feeding holes, the other end of each guide block is provided with a plurality of discharging holes, and the self-resetting blocking mechanism is arranged at the discharging holes. Through the mode, the utility model has the advantages of simple structure, small occupied space of equipment, convenient maintenance, large operable space, capability of rapidly replacing the die to realize production transfer, and capability of repeatedly and periodically circulating or removing the pump head or the outer cover which is not grabbed.
Description
Technical Field
The utility model relates to the technical field of mechanical feeding, in particular to a multi-station circulating conveying feeding device.
Background
In order to improve production assembly efficiency, most of the equipment is operated synchronously by a plurality of equipment, the plurality of equipment needs to be corresponding to the equipment and is provided with independent feeding units, the equipment needs to be provided with more personnel, large occupied space, small maintenance space and integral disassembly, the equipment needs to be provided with more operators, the equipment needs to be integrally disassembled and moved out for maintenance, and the enterprise equipment operation and maintenance cost is high.
The existing multiple feeding modes have the defects that multiple groups of independent feeding units cannot be synchronously operated by one person; the occupied space is large, the internal maintenance space is small, and the whole disassembly and removal treatment is needed during maintenance; compact structure, small internal space and difficult cleaning.
Based on the defects and shortcomings, the prior art needs to be improved, and a multi-station circulating conveying feeding device is designed.
Disclosure of Invention
The utility model mainly solves the technical problem of providing a multi-station circulating conveying feeding device, which is convenient to repair and maintain and reduces equipment cost and maintenance cost.
In order to solve the technical problems, the utility model adopts a technical scheme that: the utility model provides a multistation circulation carries feedway, this kind of multistation circulation carries feedway includes base, conveyor, mould, guide block, gib block, leading-in mechanism and self-resetting block mechanism, install conveyor on the base, conveyor drives the mould by servo drive along the action wheel and follows the track that the driving wheel formed and do periodic cycle rotation, the conveyor outer lane erects guide block and gib block that carries out spacing constraint to the product on the mould, and a plurality of feed inlets have been seted up to guide block one end, and the leading-in mechanism of compatible different specification products is installed to feed inlet department, and a plurality of discharge gates have been seted up to the guide block other end, and self-resetting block mechanism is installed to discharge gate department, and a plurality of self-resetting block mechanisms butt joint take-out mechanism.
Preferably, the die comprises a module, pin shafts, a die plate and positioning pins, wherein the module is fixed on the outer side of an annular belt of the conveying device, two pin shafts are arranged on a horizontal plate of the module, the die plate is sleeved on the pin shafts, the positioning pins are horizontally inserted into the upper portion of one pin shaft, and a die groove for clamping products is formed in the die plate.
Preferably, the guiding mechanism comprises a supporting frame, a first adjusting rod, an upper guide bar, a first handle, a front adjusting plate, a rear adjusting plate, a second adjusting rod, a side baffle bar, a second handle and a die pressing bar, wherein the supporting frame is arranged on the guide block, the first adjusting rod is vertically inserted on a horizontal plate of the supporting frame, the upper guide bar is arranged at the lower end of the first adjusting rod, the first handle for locking the first adjusting rod is arranged at the side end of the horizontal plate of the supporting frame, the front adjusting plate and the rear adjusting plate are arranged on the supporting frame, the second adjusting rod is vertically inserted on the front adjusting plate and the rear adjusting plate, the side baffle bar is arranged at the lower end of the second adjusting rod, the second handle for locking the second adjusting rod is arranged at the side end of the front adjusting plate and the rear adjusting plate, and the die pressing bar is also arranged at the lower end of the side baffle bar.
Preferably, the front ends of the upper guide bar and the side barrier bars are provided with guide inclined planes.
Preferably, the self-resetting blocking mechanism comprises a rotating block, a rotating shaft, a resetting torsion spring, a blocking piece and a limiting blocking block, wherein the rotating block is inserted into a discharge hole of the guide block through the rotating shaft, the resetting torsion spring capable of resetting is sleeved on the rotating shaft, the blocking piece capable of blocking a product is arranged on the rotating block, and the limiting blocking block for limiting the stroke of the blocking piece is arranged at the lower end of the rotating block.
Compared with the prior art, the utility model has the beneficial effects that:
the device has the advantages of less required operators, low skill requirement, small equipment occupation space, convenient maintenance, large operable space, simple structure, capability of rapidly replacing the die to realize production transfer, and capability of repeatedly and periodically circulating or removing the pump head or the outer cover which is not grabbed.
Drawings
Fig. 1 is a top view of a multi-station circulating conveyor feed device.
Fig. 2 is a schematic structural diagram of a multi-station circulating conveying and feeding device.
Fig. 3 is a schematic diagram of a die structure of a multi-station circulating conveying and feeding device.
Fig. 4 is a schematic structural view of an introduction mechanism of a multi-station circulating conveying and feeding device.
Fig. 5 is a schematic view of a self-resetting blocking mechanism of a multi-station circulating conveying and feeding device.
1, a base;
2. the conveying device 21, the driving wheel 22, the driven wheel 23, the annular belt 24, the servo motor 25, the baffle plate 26 and the shield;
3. the die comprises a die, 31, a die block, 32, a pin shaft, 33, a die plate, 330, a die groove, 34 and a positioning pin;
4. a guide block;
5. a guide bar;
6. the guide mechanism comprises a guide mechanism, 61, a support frame, 62, a first adjusting rod, 63, an upper guide bar, 64, a first handle, 65, a front and rear adjusting plate, 66, a second adjusting rod, 67, a side barrier bar, 68, a second handle, 69 and a die pressing bar;
7. the self-resetting blocking mechanism comprises a 71, a rotating block, a 72, a rotating shaft, a 73, a resetting torsion spring, a 74, a blocking piece, a 75 and a limiting blocking block.
Detailed Description
The preferred embodiments of the present utility model will be described in detail below with reference to the accompanying drawings so that the advantages and features of the present utility model can be more easily understood by those skilled in the art, thereby making clear and defining the scope of the present utility model.
Referring to fig. 1 to 5, an embodiment of the present utility model includes:
the utility model provides a multistation circulation conveying feedway, this kind of multistation circulation conveying feedway includes base 1, conveyor 2, mould 3, guide block 4, gib block 5, leading-in mechanism 6 and self-resetting block mechanism 7, install conveyor 2 on the base 1, conveyor 2 is by servo drive mould 3 along the action wheel 21 and follow the track that the driving wheel 22 formed and do periodic cycle rotation, conveyor 2 outer lane erects and carries out spacing restriction's gib block 4 and gib block 5 to the product on the mould 3, two feed inlets have been seted up to guide block 4 one end, and leading-in mechanism 6 of compatible different specification products are installed to feed inlet department butt joint feed mechanism, six discharge gates have been seted up to the guide block 4 other end, and self-resetting block mechanism 7 is installed to discharge gate department, six self-resetting block mechanism 7 butt joint reclaimer.
The conveying device 2 comprises a driving wheel 21 and a driven wheel 22 which are arranged on the base 1 in a supporting mode, the driving wheel 21 and the driven wheel 22 are synchronously connected through an annular belt 23, the driving wheel 21 is driven to rotate through a servo motor 24, a plurality of detachable dies 3 are arranged at the outer end of the annular belt 23, baffle plates 25 are arranged at two sides of the driving wheel 21 and the driven wheel 22, a protective cover 26 is covered on the driving wheel 21 and the driven wheel 22, and the dies are restrained by the baffle plates 25 and the protective cover 26.
The die 3 comprises a die block 31, pin shafts 32, a die plate 33 and positioning pins 34, the die block 31 is fixed on the outer side of the annular belt 23 of the conveying device 2, two pin shafts 32 are arranged on the horizontal plate of the die block 31, the die plate 33 is sleeved on the pin shafts 32, the positioning pins 34 are horizontally inserted on the upper portion of one pin shaft 32, the die plate 33 and the die block 31 are connected through the pin shafts 32 and are locked and limited through the positioning pins 34, when the die is turned, the die plate 33 can be turned by only opening the positioning pins 34 and pulling out the die plate 33, and the die plate 33 is provided with a die groove 330 for clamping products.
The guiding mechanism 6 comprises a support frame 61, a first adjusting rod 62, an upper guide bar 63, a first handle 64, a front adjusting plate 65, a rear adjusting plate 65, a second adjusting rod 66, a side baffle 67, a second handle 68 and a die pressing bar 69, wherein the support frame 61 is arranged on the guide block 4, the first adjusting rod 62 is vertically inserted on a horizontal plate of the support frame 61, the upper guide bar 63 is arranged at the lower end of the first adjusting rod 62, the first handle 64 for locking the first adjusting rod 62 is arranged at the side end of the horizontal plate of the support frame 61, the front adjusting plate 65 and the rear adjusting plate 65 are arranged on the support frame 61, the second adjusting rod 66 is vertically inserted on the front adjusting plate 65, the side baffle 67 is arranged at the lower end of the second adjusting rod 66, the die pressing bar 69 is also arranged at the lower end of the side baffle 67, and the first handle 64 is opened according to different specifications of pump heads or bottle caps during production, and the height of the upper guide bar 63 is adjusted; the position of the side stop bar 67 is adjusted to the front and rear adjusting plate 65 according to pump heads or bottle caps with different diameters so as to prevent toppling; the second adjusting rod 66 is adjusted according to different mold plates 33, so that the height of the mold pressing strip 69 is adjusted, the packaging mold plate 33 is in a state of being restrained by the mold pressing strip 69, and the introduction abnormality caused by the up-and-down jumping of the mold plate 33 is prevented; the front ends of the upper guide bar 63 and the side baffle bars 67 are provided with guide inclined planes, so that the guide inclined planes are convenient for the pump heads or bottle caps which are not grabbed to enter smoothly during circulation, and the clamping and the stopping of the guide are avoided.
The self-resetting blocking mechanism 7 comprises a rotating block 71, a rotating shaft 72, a reset torsion spring 73, a blocking piece 74 and a limiting blocking block 75, wherein the rotating block 71 is inserted into a discharge hole of the guide block 4 through the rotating shaft 72, the reset torsion spring 73 capable of resetting is sleeved on the rotating shaft 72, the blocking piece 74 capable of blocking a product is installed on the rotating block 71, the limiting blocking block 75 for limiting the stroke of the blocking piece 74 is installed at the lower end of the rotating block 71, when a product pump head and a bottle cap are grabbed and transferred, the blocking piece 74 is rotated and opened by taking the rotating shaft 72 as the center after being contacted with the pump head or the bottle cap under the action of external force, and the blocking piece 74 is reset under the elastic constraint of the reset torsion spring 73 after being separated from contact with the pump head or the bottle cap and stops after being in protruding contact with the limiting blocking block 75.
The utility model relates to a multi-station circulating conveying feeding device, which is characterized in that when working: the pump head or the outer cover enters the die 3 through the conveying device 2, the driving wheel 21 drives the die 3 to circularly rotate along a track formed by the driving wheel 21 and the driven wheel 22 in a periodic manner through servo driving, the guide bar 5 of the guide block 4 and the guide mechanism 6 restrict the pump head or the outer cover, the shield 26 and the baffle 25 restrict the die 3, the empty die 3 is turned to the guide mechanism 6, the pump head or the outer cover enters the die 3 through the feeding mechanism, the die 3 conveys the pump head or the outer cover to the self-reset blocking 7, the grabbing mechanism grabs the pump head or the outer cover, when the pump head and the bottle cover of a product are grabbed and transferred, the baffle 74 is rotated and opened by taking the rotating shaft 72 as the center after being contacted with the pump head or the bottle cover under the action of external force, and is restrained to reset by the elasticity of the reset torsion spring 73 after the baffle 74 is separated from the pump head or the spiral cover, and is stopped after being in protruding contact with the limit blocking block 75.
When the production is transferred, the die 3 is disassembled, the positioning pins 34 are opened, the die plate 33 is pulled out, the production can be transferred, and the die plate 33 and the die block 31 corresponding to the new product are connected through the pin shafts 32 and are locked and limited through the positioning pins 34; according to pump heads or bottle caps of different specifications, the first handle 64 is opened, and the height of the upper guide bar 63 is adjusted by the first adjusting rod 62; the position of the side stop bar 67 is adjusted to the front and rear adjusting plate 65 according to pump heads or bottle caps with different diameters so as to prevent toppling; the second adjusting lever 66 is adjusted according to the different die plates 33, thereby adjusting the height of the die press bar 69, and the packaging die plate 33 is in a state of being restrained by the die press bar 69, preventing the die plate 33 from jumping up and down to cause abnormal introduction.
The multi-station circulating conveying feeding device has the advantages of less required operators, low skill requirement, small equipment occupation space, convenient maintenance, large operable space, simple structure, capability of rapidly replacing a die to realize production transfer, and capability of repeatedly and periodically circulating or removing a pump head or an outer cover which is not grabbed.
The foregoing description is only illustrative of the present utility model and is not intended to limit the scope of the utility model, and all equivalent structures or equivalent processes or direct or indirect application in other related technical fields are included in the scope of the present utility model.
Claims (5)
1. A multistation circulation delivery feedway, its characterized in that: including base, conveyor, mould, guide block, gib block, leading-in mechanism and self-resetting block mechanism, install conveyor on the base, conveyor is by servo drive mould along the action wheel with from the track that the driving wheel formed do periodic cycle rotation, conveyor outer lane erects guide block and gib block that carries out spacing constraint to the product on the mould, a plurality of feed inlets have been seted up to guide block one end, and leading-in mechanism of compatible different specification products is installed to feed inlet department, and a plurality of discharge gates have been seted up to the guide block other end, and self-resetting block mechanism is installed to discharge gate department.
2. A multi-station circulating conveyor feed apparatus as in claim 1 wherein: the die comprises a module, pin shafts, a die plate and positioning pins, wherein the module is fixed on the outer side of an annular belt of the conveying device, two pin shafts are arranged on a horizontal plate of the module, the die plate is sleeved on the pin shafts, the positioning pins are horizontally inserted into the upper portion of one pin shaft, and a die groove for clamping products is formed in the die plate.
3. A multi-station circulating conveyor feed apparatus as in claim 1 wherein: the guiding mechanism comprises a supporting frame, a first adjusting rod, an upper conducting bar, a first handle, a front adjusting plate, a rear adjusting plate, a second adjusting rod, a side blocking bar, a second handle and a die pressing bar, wherein the supporting frame is installed on a guide block, the first adjusting rod is vertically inserted on a horizontal plate of the supporting frame, the upper conducting bar is installed at the lower end of the first adjusting rod, the first handle used for locking the first adjusting rod is installed at the side end of the horizontal plate of the supporting frame, the front adjusting plate and the rear adjusting plate are installed on the supporting frame, the second adjusting rod is vertically inserted on the front adjusting plate and the rear adjusting plate, the side blocking bar is installed at the lower end of the second adjusting rod, the second handle used for locking the second adjusting rod is installed at the side end of the front adjusting plate and the rear adjusting plate, and the die pressing bar is also installed at the lower end of the side blocking bar.
4. A multi-station circulating conveyor feed apparatus as in claim 3 wherein: the front ends of the upper guide bar and the side baffle bars are provided with guide inclined planes.
5. A multi-station circulating conveyor feed apparatus as in claim 1 wherein: the self-resetting blocking mechanism comprises a rotating block, a rotating shaft, a resetting torsion spring, a blocking piece and a limiting blocking block, wherein the rotating block is inserted into a discharge hole of the guide block through the rotating shaft, the resetting torsion spring capable of resetting is sleeved on the rotating shaft, the blocking piece capable of blocking a product is arranged on the rotating block, and the limiting blocking block for limiting the stroke of the blocking piece is arranged at the lower end of the rotating block.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202223482563.8U CN219135379U (en) | 2022-12-23 | 2022-12-23 | Multistation circulation conveying and feeding device |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202223482563.8U CN219135379U (en) | 2022-12-23 | 2022-12-23 | Multistation circulation conveying and feeding device |
Publications (1)
Publication Number | Publication Date |
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CN219135379U true CN219135379U (en) | 2023-06-06 |
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ID=86562088
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN202223482563.8U Active CN219135379U (en) | 2022-12-23 | 2022-12-23 | Multistation circulation conveying and feeding device |
Country Status (1)
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CN (1) | CN219135379U (en) |
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2022
- 2022-12-23 CN CN202223482563.8U patent/CN219135379U/en active Active
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Address after: 215000 No.2 factory building, No.600 Fengting Avenue, Suzhou Industrial Park, Jiangsu Province Patentee after: Kexian Intelligent Equipment (Suzhou) Co.,Ltd. Address before: 215000 No.2 factory building, No.600 Fengting Avenue, Suzhou Industrial Park, Jiangsu Province Patentee before: SUZHOU ATPACK MACHINERY Co.,Ltd. |