CN212923720U - Excess material coiling mechanism cuts behind shaping blister tray - Google Patents
Excess material coiling mechanism cuts behind shaping blister tray Download PDFInfo
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- CN212923720U CN212923720U CN202021234621.3U CN202021234621U CN212923720U CN 212923720 U CN212923720 U CN 212923720U CN 202021234621 U CN202021234621 U CN 202021234621U CN 212923720 U CN212923720 U CN 212923720U
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Abstract
The utility model discloses a surplus material coiling mechanism cuts behind shaping blister tray, which comprises a frame, a transmission assembly and a coiling assembly, wherein the transmission assembly comprises a transmission motor, a driving wheel, a transmission belt and a driven wheel, the coiling assembly comprises a coiling shaft, a coiling drum, a pushing disc, a one-way pushing bearing, a threading rod and a spacing strip, the one-way pushing bearing is arranged in the pushing disc, the one-way pushing bearing comprises an outer ring, an inner ring, a rolling ball, a plurality of push rods which are tangentially fixed on the outer wall of the inner ring and a plurality of stop blocks which are integrally fixed on the inner wall of the outer ring, the outer ring is fixed on the inner wall of the pushing disc, a keyway of the inner ring is fixed on the coiling shaft, the push rods have elasticity, and deform under the obstruction of the stop blocks, so that the push rods push the next stop blocks, the coiling drum obtains the same-direction rotating force with, the service life of the motor is delayed, the excess material can be rolled stably and orderly, and the device is simple and practical.
Description
Technical Field
The utility model relates to a plastic uptake production facility technical field, concretely relates to clout coiling mechanism cuts behind shaping plastic uptake tray.
Background
The production and preparation process of the modern blister products mainly comprises the working procedures of automatic feeding, hot melting softening, punch forming, cooling and shaping, cutting and blanking and the like, the technical proposal in the aspect of processing the excess material after cutting and blanking is less, and the excess material is mostly driven by a motor which continuously rotates to be recycled into coils, however, in the processes of punch forming and cooling setting on the production line, obviously, the plate material can not be transferred at a constant speed, which causes the recovery of the excess material to be discontinuous rather than continuous, therefore, the excess material is driven by the motor to be wound, the machine is stopped intermittently, the use is obviously inconvenient, also have very big influence to the motor life-span, consequently need design one kind simple and easy, guarantee the motor continuous rotation and to the coiling equipment of the accessible coil stock of discontinuity of clout rolling to help to inhale the high-efficient production of moulding tray, guarantee to the high-efficient recovery lapping of clout.
Disclosure of Invention
The utility model discloses the purpose: in order to solve the problems in the background art, a winding device for cutting excess materials after forming a blister tray is designed, a transmission motor is utilized to drive a winding shaft to rotate ceaselessly, a winding drum is sleeved on the winding shaft, a specially designed one-way pushing and rotating bearing is utilized, an inner ring is fixedly connected with the winding shaft, push rods uniformly arranged on the periphery of the inner ring push a plurality of stop blocks arranged on the inner wall of an outer ring to drive the outer ring to rotate in the same direction, certain elasticity is provided for the push rods, under the condition that the outer ring is dragged by a winding drum to drag the excess materials of the sheet materials, the push rods have no effect on pushing and pressing of the stop blocks, the stop blocks are bypassed after deformation is generated, then the next stop block is pushed, the outer ring is enabled to continuously keep the state of being stressed by the push rods, the winding drum is enabled not to be loosened, when the excess materials of the sheet materials on a line are discharged step by step, the service life of the motor is delayed, the excess material can be rolled stably and orderly, and the device is simple and practical.
The technical scheme adopted for solving the problems is as follows:
a winding device for cutting excess materials after forming a plastic sucking tray, which comprises a frame, a transmission component and a winding component,
the transmission component comprises a transmission motor, a driving wheel, a transmission belt and a driven wheel which are fixed on the base of the frame, the driven wheel is fixedly connected with a winding shaft key groove arranged on the winding component, the driving wheel and the driven wheel are connected and transmitted through the transmission belt,
the winding assembly comprises a winding shaft, a winding drum, a pushing disc, a one-way pushing bearing, a threading rod and a limiting strip, the winding shaft is sleeved with a shaft hole of the winding drum, the winding drum is fixedly connected with the end face of the pushing disc through a bolt in a threaded manner, the threading rod is fixed at one end of the winding drum and is arranged in parallel with the axis of the winding drum for hooking the excess material in a threading manner so as to facilitate winding and positioning, the limiting strip is also fixed at the end part of the winding drum and is arranged perpendicular to the axis of the winding drum for limiting the position of the excess material coil in the coiling process,
the one-way rotating bearing that pushes away sets up in pushing away the dish, including outer lane, inner circle, ball, tangent a plurality of push rod and a plurality of dog of an organic whole fixed on the outer lane inner wall of fixing on the inner circle outer wall of fixing, the outer lane is fixed and is being pushed away a set inner wall, the inner circle keyway is fixed on the rolling axle, the push rod has elasticity, under receiving the dog utmost point to hinder, takes place deformation, causes the push rod to the next dog promote to this circulation will give dog and the continuous thrust in outer lane even as an organic whole for the receipts spool obtains and rolls the syntropy power with the rolling axle, can stop rotating under pulling of clout again, and driving motor need not to carry out the discontinuous operation of opening and stopping.
Furthermore, a bearing seat is arranged between one end of the winding shaft and the rack, and a positioning bearing is further arranged between the periphery of the pushing disc and the rack, so that the winding shaft only keeps the rotational freedom degree in the horizontal posture, and the other end of the winding shaft can unload materials.
Furthermore, the excess material is formed into two adjacent plastic trays after the processes of punch forming, cooling and shaping, and after cutting and blanking, the adjacent blanking grooves are formed, the penetrating rod transversely penetrates through the two blanking grooves to form a hook for the excess material, and the excess material is gradually coiled when the coiling shaft rotates.
Furthermore, the outer side of the push rod is provided with a shifting sheet with a circular bead transition, and the shifting sheet is attached to a plurality of circular bead transition check blocks in an annular structure to push the outer ring and the inner ring to rotate in the same direction.
Furthermore, a roller shaft for bearing excess materials is transversely erected at the upper end of the rack.
The utility model has the advantages that:
the device for winding the cut excess material behind the forming blister tray utilizes a transmission motor to drive a winding shaft to rotate ceaselessly, a winding barrel is sleeved on the winding shaft, a specially designed one-way pushing and rotating bearing is utilized, an inner ring is fixedly connected with the winding shaft, push rods uniformly arranged on the periphery of the inner ring push and press a plurality of stop blocks arranged on the inner wall of an outer ring to drive the outer ring to rotate in the same direction, certain elasticity is provided for the push rods, under the condition that the outer ring is dragged by the winding barrel to drag the excess material of the sheet material, the push rods have no effect on pushing and pressing the stop blocks, the stop blocks are bypassed after deformation is generated, the next stop block is pushed and pressed, the outer ring is enabled to continuously keep the state of being stressed by the push rods, the winding barrel is enabled not to be loosened, the excess material of the part is wound again when the excess material of the sheet material on the winding barrel is discharged step by step, the classification and order, is simple and practical.
Drawings
In order to more clearly illustrate the technical solutions in the embodiments of the present invention, the drawings used in the description of the embodiments will be briefly described below.
Fig. 1 is a schematic structural view of a cutting excess material winding device after forming a blister tray in the embodiment;
fig. 2 is a side view of the cutting excess material winding device after the blister tray is formed in the embodiment;
fig. 3 is a schematic structural view of the winding assembly according to this embodiment;
FIG. 4 is a schematic structural view illustrating the excess material hooked by the through rod according to the present embodiment;
FIG. 5 is a schematic view of a structure of the push rod and the stopper of this embodiment;
the automatic feeding device comprises a machine frame 1, a machine frame 2, a lap remainder, a winding shaft 3, a winding drum 4, a threading rod 5, a driving wheel 6, a machine frame base 7, a transmission motor 8, a transmission belt 9, a driven wheel 10, a push disc 11, a limit strip 12, a remainder 13, a roller shaft 14, a cutting assembly 15, a formed plastic suction tray 16, a cut plastic suction tray 17, a cut plastic suction tray 18, a blanking box 19, a unidirectional push bearing 191, an outer ring 192, a shifting sheet 193, a push rod 194, an inner ring 195, a stop block 20, a positioning bearing 21, an auxiliary positioning bearing and a blanking groove 22.
Detailed Description
The technical solution in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention.
Referring to fig. 1-5, the present embodiment provides a winding device for cutting remainder 13 after forming a blister tray, including a frame 1, a transmission assembly and a winding assembly.
Specifically speaking, drive assembly is including fixing drive motor 8, action wheel 6, drive belt 9 and the follow driving wheel 10 on 1 base of frame, it links firmly with the rolling axle 3 keyway that rolling assembly was equipped with from driving wheel 10, passes through drive belt 9 between action wheel 6 and the follow driving wheel 10 and connects the transmission.
The winding component comprises a winding shaft 3, a winding drum 4, a pushing disc 11, a one-way pushing bearing 19, a threading rod 5 and a limiting strip 12, the winding shaft 3 is sleeved with a shaft hole of the winding drum 4, the winding drum 4 is fixedly connected with the end face of the pushing disc 11 through a bolt in a screwed mode, the threading rod 5 is fixed at one end of the winding drum 4 and is arranged in parallel with the axis of the winding drum 4 and used for hooking the excess material 13 in a needle threading mode so as to facilitate winding and positioning, the limiting strip 12 is also fixed at the end part of the winding drum 4 and is arranged perpendicular to the axis of the winding drum 4 and used for limiting the position of the coiling process of the excess material 13, the one-way pushing bearing 19 is arranged in the pushing disc 11 and comprises an outer ring 191, an inner ring 194, balls (not shown in the figure), a plurality of pushing rods 193 which are tangentially fixed on the outer wall of the inner ring 194 and a plurality of stopping blocks 195 which, the inner ring 194 is fixed on the winding shaft 3 through a keyway, the push rod 193 has elasticity, and is deformed under the resistance of the stop block 195, so that the push rod 193 pushes the next stop block 195, and continuous pushing force is given to the stop block 195 and the outer ring 191 which are connected into a whole in a circulating manner, so that the winding shaft 4 obtains the same-direction rotating force with the winding shaft 3, and can stop rotating under the pulling of the excess material 13, and the transmission motor 8 does not need to perform intermittent start-stop operation.
In a further embodiment, a bearing seat (not shown in the figure) is arranged between one end of the winding shaft 3 and the rack 1, and a positioning bearing 20 is further arranged between the periphery of the pushing disc 11 and the rack 1, so that the winding shaft 3 only retains the rotational freedom degree in the horizontal posture, and the other end of the winding shaft 3 can be unloaded.
In a further embodiment, after the excess material 13 is subjected to the processes of punch forming, cooling and shaping, two adjacent blister trays are formed, and after the cutting and blanking, the adjacent blanking grooves 22 are formed, the penetrating rod 5 transversely penetrates through the two blanking grooves 22 to form a hook for the excess material 13, and the excess material 13 is gradually coiled when the winding shaft 3 rotates.
In a further embodiment, a circular-bead transition shifting piece 192 is arranged on the outer side of the push rod 193, and is attached to a plurality of circular-bead transition stoppers 195 in an annular structure to push the outer ring 191 and the inner ring 194 to rotate in the same direction.
In a further embodiment, a roller shaft 14 for receiving the excess material 13 is transversely erected at the upper end of the frame 1 and is used for winding the excess material on the outer ring of the winding drum according to a predetermined route.
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, modifications, substitutions and alterations can be made without departing from the spirit of the present invention within the knowledge of those skilled in the art, and the scope of the present invention is defined by the appended claims and their equivalents.
Claims (5)
1. The utility model provides a surplus material coiling mechanism cuts behind shaping blister tray, includes frame, drive assembly and rolling component, its characterized in that:
the transmission component comprises a transmission motor, a driving wheel, a transmission belt and a driven wheel which are fixed on the base of the frame, the driven wheel is fixedly connected with a winding shaft key groove arranged on the winding component, the driving wheel and the driven wheel are connected and transmitted through the transmission belt,
the winding assembly comprises a winding shaft, a winding drum, a pushing disc, a one-way pushing bearing, a threading rod and a limiting strip, the winding shaft is sleeved with a shaft hole of the winding drum, the winding drum is fixedly connected with the end face of the pushing disc through a bolt in a threaded manner, the threading rod is fixed at one end of the winding drum and is arranged in parallel with the axis of the winding drum for hooking the excess material in a threading manner so as to facilitate winding and positioning, the limiting strip is also fixed at the end part of the winding drum and is arranged perpendicular to the axis of the winding drum for limiting the position of the excess material coil in the coiling process,
the one-way rotating bearing that pushes away sets up in pushing away the dish, including outer lane, inner circle, ball, tangent a plurality of push rod and a plurality of dog of an organic whole fixed on the outer lane inner wall of fixing on the inner circle outer wall of fixing, the outer lane is fixed and is being pushed away a set inner wall, the inner circle keyway is fixed on the rolling axle, the push rod has elasticity, under receiving the dog utmost point to hinder, takes place deformation, causes the push rod to the next dog promote to this circulation will give dog and the continuous thrust in outer lane even as an organic whole for the receipts spool obtains and rolls the syntropy power with the rolling axle, can stop rotating under pulling of clout again, and driving motor need not to carry out the discontinuous operation of opening and stopping.
2. The post-trimming excess material winding device for the formed blister tray of claim 1, wherein: a bearing seat is arranged between one end of the winding shaft and the rack, and a positioning bearing is further arranged between the periphery of the push disc and the rack, so that the winding shaft only keeps the rotational freedom degree in the horizontal posture, and the other end of the winding shaft can unload materials.
3. The post-trimming excess material winding device for the formed blister tray of claim 1, wherein: the excess material is through stamping forming, cooling design process back, two adjacent blister supporting plate of shaping to after cutting the unloading, form adjacent charging chute, and wear the pole and form after passing two charging chutes crosswise and draw together the excess material, the excess material is the lapping gradually under the rotation of rolling axle.
4. The post-trimming excess material winding device for the formed blister tray of claim 1, wherein: the outer side of the push rod is provided with a shifting sheet with a circular bead transition, and the shifting sheet is attached to a plurality of circular bead transition check blocks in an annular structure to push the outer ring and the inner ring to rotate in the same direction.
5. The post-trimming excess material winding device for the formed blister tray of claim 1, wherein: and a roller shaft for bearing excess materials is transversely erected at the upper end of the rack.
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CN202021234621.3U CN212923720U (en) | 2020-06-29 | 2020-06-29 | Excess material coiling mechanism cuts behind shaping blister tray |
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CN202021234621.3U CN212923720U (en) | 2020-06-29 | 2020-06-29 | Excess material coiling mechanism cuts behind shaping blister tray |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN114643297A (en) * | 2022-03-08 | 2022-06-21 | 石家庄中利锌业有限公司 | Zinc wire production process |
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2020
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN114643297A (en) * | 2022-03-08 | 2022-06-21 | 石家庄中利锌业有限公司 | Zinc wire production process |
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