CN207917838U - A kind of bilayer vibration conveying mechanism - Google Patents
A kind of bilayer vibration conveying mechanism Download PDFInfo
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- CN207917838U CN207917838U CN201721617159.3U CN201721617159U CN207917838U CN 207917838 U CN207917838 U CN 207917838U CN 201721617159 U CN201721617159 U CN 201721617159U CN 207917838 U CN207917838 U CN 207917838U
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- oscillating plate
- discharge
- guide rail
- baffle
- vibration
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Abstract
The utility model discloses a kind of double-deck vibration conveying mechanisms, including stationary hopper, the exit of stationary hopper is equipped with the first oscillating plate, first the second oscillating plate of oscillating plate arranged beneath, its synchronous vibration is made by rigid link connection between first oscillating plate and the second oscillating plate, the first guide rail is arranged in the exit of first oscillating plate and the second oscillating plate, vibrator is equipped with below second oscillating plate, guider is equipped between first oscillating plate and the first guide rail, second oscillating plate connects the first guide rail by the second guide rail, the bilayer vibration feeding machine structure further includes discharge device, material-pulling device and detection device;The utility model can utilize a vibrator to make the double-deck oscillating plate synchronous vibration, to improve production efficiency, save electric power.
Description
Technical field
The utility model is related to vibrating transportation machinery fields, more specifically, it relates to a kind of bilayer vibration conveying mechanism.
Background technology
Vibrating bunker is a kind of novel feeding device, is mounted on each plant feed bin lower part, makes material activating by vibration, can
The arch camber, blocking and viscous storehouse phenomenon for effectively eliminating material are applied wide in the industrial production to solve the problems, such as that feed bin discharge is difficult
It is general.An oscillating plate is only arranged in existing vibration feeding machine structure mostly, and only there are one the vibration feeding machine structures of oscillating plate to convey work
Part specification is limited, and in addition to this, a vibrator only vibrates an oscillating plate, not only reduces production operation efficiency, but also waste
Electric power increases production cost.
Invention content
The utility model overcomes the deficiencies in the prior art, and the double-deck oscillating plate can be made by providing a kind of one vibrator of utilization
Synchronous vibration, the double-deck vibration feeding machine structure for improving production efficiency.
The technical solution of the utility model is as follows:
A kind of bilayer vibration feeding machine structure, including stationary hopper, the exit of stationary hopper are equipped with the first oscillating plate, and first
The second oscillating plate of oscillating plate arranged beneath makes it synchronize and shakes between the first oscillating plate and the second oscillating plate by rigid link connection
Dynamic, the first guide rail is arranged in the exit of the first oscillating plate and the second oscillating plate, is equipped with vibrator below the second oscillating plate, first shakes
Guider is equipped between movable plate and the first guide rail, the second oscillating plate connects the first guide rail by the second guide rail.
Further, vibrator is fixedly mounted in rack, and material-pulling device is additionally provided in rack, and the material-pulling device includes
Pusher part and the pusher cylinder being connect with pusher part, pusher part are connected on the first guide rail, and can be under the action of pusher cylinder
Push the workpiece on the first guide rail.
Further, the guider include the turning part connected with the first oscillating plate, it is consistent with turning part angle
First baffle and the second baffle vertical with the first guide rail are formed between turning part, first baffle and second baffle from first
For oscillating plate to the feeding passage of the first guide rail, guider further includes adjusting the first of first baffle to be oriented to lead screw and adjusting second
The second of baffle is oriented to lead screw.
Further, which further includes detection device, the detection device include close to switch, with
Close to the detection handwheel of the detection lead screw and driving detection lead screw of switch connection.
Further, which further includes discharge device, the discharge device include discharge holder and
Discharge knife, discharge holder are equipped with the first mounting plate, the discharge motor being connect with the first mounting plate by the second mounting plate and row
Expect that lead screw, discharge knife are fixedly connected on the first mounting plate, and being rotated by discharge motor, mounting plate and discharge silk
Bar connects, and can be moved up and down along discharge holder under the driving of discharge handwheel.
Further, first oscillating plate and the second oscillating plate are arranged in parallel.
Further, the first oscillating plate conveys short material, the long material of the second oscillating plate conveying.
Further, first oscillating plate is equipped with blend stop close to the both sides of first guide rail one end.
Further, the blend stop, which is equipped with, adjusts the first sliding mouth.
Further, the second baffle is equipped with second and adjusts sliding mouth.
Further, the vibrator uses electromagnetic vibrator.
The utility model has the beneficial effects that:By the way that the upper and lower double-deck oscillating plate is arranged on feed mechanism, using one
Vibrator can be such that the double-deck oscillating plate achievees the effect that while vibrate, and the utility model not only improves production efficiency, moreover, upper,
The specification of workpieces of lower bilayer oscillating plate conveying is different, can complete the conveying of different size workpiece.In addition to this, the utility model energy
Electric power is saved, while the installations for other machineries such as can reduce vibrator, connector, to save cost.
Description of the drawings
Fig. 1 is the structural schematic diagram of the utility model;
Fig. 2 is the structural schematic diagram of vibrator;
Fig. 3 is the structural schematic diagram of guider.
Figure label:Stationary hopper 1, the first oscillating plate 2, the second oscillating plate 3, connecting rod 4, connector 5, vibrator 6, rack
7, electromagnet 8, beam 9, blend stop 10, the first sliding mouth 11, the first guide rail 12, turning part 13, first baffle 14, second baffle
15, first is oriented to lead screw 16, and second is oriented to lead screw 17, and second adjusts sliding mouth 18, the second guide rail 19, pusher part 20, pusher gas
Cylinder 21 detects lead screw 23 close to switch 22, detects handwheel 24, discharge holder 25, discharge knife 26, discharge handwheel 27, discharge lead screw
28, the first mounting plate 29, discharge motor 30, the second mounting plate 31.
Specific implementation mode
Below in conjunction with attached drawing, the specific technical solution of the utility model is further described.
As shown in Figure 1, a kind of bilayer vibration feeding machine structure, including stationary hopper 1, the exit of stationary hopper 1 is equipped with the
One oscillating plate 2,2 the second oscillating plate of arranged beneath 3 of the first oscillating plate, passes through rigidity between the first oscillating plate 2 and the second oscillating plate 3
Connecting rod 4 connects, and the first oscillating plate 2 and the second oscillating plate 3 are arranged in parallel.First oscillating plate 2 conveys short material, and the specification of short material is straight
Diameter is more than length.The specification of the long material of second oscillating plate 3 conveying, long material is that length is more than diameter.Second oscillating plate, 3 lower section passes through company
Fitting 5 is connected with vibrator 6, and vibrator 6 is fixed in rack 7.Vibrator 6 uses electromagnetic vibrator, as shown in figure 3, vibration
Device 6 is internally provided with electromagnet 8, is fixedly connected with vibrator 6 by welding manner.Beam is equipped between vibrator 6 and rack 7
9, there is damping effect, the Oscillation Amplitude of rack 7 can be reduced.When vibrator 6 vibrates, the vibration of the second oscillating plate 3 is driven, to
Make 2 synchronous vibration of the first oscillating plate being connect with the second oscillating plate 3.It is equipped in one end both sides of the conveying of first baffle 2 outlet
Blend stop 10, blend stop 10 can not only adjust workpiece from the first oscillating plate 2 by width, moreover it is possible to prevent workpiece from being fallen from both ends.
Blend stop 10 is equipped with first and slides, and 11, which can adjust the specification on the first oscillating plate 2 by workpiece.
The first guide rail 12 is arranged in the exit of first oscillating plate 2 and the second oscillating plate 3, and the first guide rail 12 is for conveying work
Part.Guider is equipped between first oscillating plate 2 and the first guide rail 12, as shown in figure 3, guider includes and the first oscillating plate
Turning part 13, the first baffle 2 consistent with 13 angle of inclination of turning part and the second gear vertical with the first guide rail 12 of 2 connections
Plate 3 is formed logical from the feeding of 2 to the first guide rail 12 of the first oscillating plate between turning part 13, first baffle 14 and second baffle 15
Road, guider is equipped with first and is oriented to lead screw 16, for adjusting first baffle 14 at a distance from turning part 13, on guider
It is additionally provided with the second guiding lead screw 17, for adjusting second baffle 15 at a distance from turning part 13.Second baffle 15 is equipped with second
Sliding mouth 18 is adjusted, for adjusting 15 bottom end of second baffle at a distance from guide rail.Second oscillating plate 3 is connected by the second guide rail 19
First guide rail 12.
The second oscillating plate 3 outlet below be equipped with material-pulling device, the material-pulling device include pusher part 20 and with pusher part
The pusher cylinder 21 of 20 connections, material-pulling device are fixed on by pusher cylinder 21 in rack 7.Pusher part 20 and the first guide rail 12 are lived
Dynamic connection, pusher part 20 can slide back and forth under the action of pusher cylinder 21 on the first guide rail 12, to push the first guide rail
Workpiece on 12 moves ahead.
Detection device is equipped with below the first guide rail 12, the detection device includes close to switch 22 and close switch 22
The detection handwheel 24 of the detection lead screw 23 and driving detection lead screw 23 of connection, detection device are solid with rack 7 by detecting lead screw 23
It is fixed.It is used to sense the position of pusher part 20 close to switch 22, when pusher part 20 pushes workpiece to move ahead, pusher part 20 is forwarded to
The range that can be sensed close to switch 22 can make pusher part 20 stop movement close to switch 22.Detection handwheel 24 can drive detection
Lead screw 23 moves to drive close to switch 22, can adjust test position.
It is equipped with discharge device in 2 side of the first oscillating plate, discharge device is fixed on by discharge holder 25 in rack 7.Institute
It includes discharge knife 26, discharge handwheel 27 and discharge lead screw 28 to state discharge device, and discharge knife 26 is fixedly connected on the first mounting plate 29
On, the first mounting plate 29 is flexibly connected with discharge holder 25.Discharge motor 30 is fixedly connected with the second mounting plate 31, the second installation
Plate 31 is fixedly connected on the first mounting plate 29, discharge knife 26 being rotated by discharge motor 30, for exclude do not conform to
Lattice workpiece.First mounting plate 29 is flexibly connected with discharge lead screw 28, can be under the driving of discharge handwheel 27 along about 25 discharge holder
It is mobile.
The embodiments of the present invention are based on described by above-mentioned, only a part of embodiment of the invention, ability
The embodiment that domain is obtained without making creative work, all belongs to the protection scope of this patent.
Claims (7)
1. a kind of bilayer vibration conveying mechanism, characterized in that including stationary hopper, the exit of stationary hopper is equipped with the first vibration
Plate, first the second oscillating plate of oscillating plate arranged beneath are made between the first oscillating plate and the second oscillating plate by rigid link connection
The first guide rail is arranged in the exit of its synchronous vibration, the first oscillating plate and the second oscillating plate, and vibration is equipped with below the second oscillating plate
Device, is equipped with guider between the first oscillating plate and the first guide rail, the second oscillating plate connects the first guide rail by the second guide rail;
Vibrator is fixedly mounted in rack, is additionally provided with material-pulling device in rack, the material-pulling device include pusher part and with push away
The pusher cylinder of materials and parts connection, pusher part is connected on the first guide rail, and the first guide rail can be pushed under the action of pusher cylinder
On workpiece;
The guider include the turning part connected with the first oscillating plate, the first baffle consistent with turning part angle and with
First guide rail vertical second baffle is formed between turning part, first baffle and second baffle and is led from the first oscillating plate to first
The feeding passage of rail, guider further include adjusting the first of first baffle to be oriented to lead screw and adjust the second guiding of second baffle
Lead screw;
The bilayer vibration feeding machine structure further includes detection device, and the detection device includes being connected close to switch, with close to switch
Detection lead screw and driving detection lead screw detection handwheel;
The bilayer vibration feeding machine structure further includes discharge device, and the discharge device includes discharge holder and discharge knife, discharge branch
Frame is equipped with the first mounting plate, the discharge motor being connect with the first mounting plate by the second mounting plate and discharge lead screw, discharge knife
Be fixedly connected on the first mounting plate, and being rotated by discharge motor, mounting plate connect with discharge lead screw, and can be
It is moved up and down along discharge holder under the driving of discharge handwheel.
2. a kind of double-deck vibration conveying mechanism according to claim 1, characterized in that first oscillating plate and second shakes
Movable plate is arranged in parallel.
3. a kind of double-deck vibration conveying mechanism according to claim 1, characterized in that the first oscillating plate conveys short material, the
The long material of two oscillating plates conveying.
4. a kind of double-deck vibration conveying mechanism according to claim 1, characterized in that first oscillating plate is close to first
The both sides of guide rail one end are equipped with blend stop.
5. a kind of double-deck vibration conveying mechanism according to claim 4, characterized in that the blend stop, which is equipped with, adjusts the first cunning
It opens one's mouth.
6. a kind of double-deck vibration conveying mechanism according to claim 1, characterized in that the second baffle is equipped with second and adjusts
Section sliding mouth.
7. a kind of double-deck vibration conveying mechanism according to claim 1, characterized in that the vibrator uses electric and magnetic oscillation
Device.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201721617159.3U CN207917838U (en) | 2017-11-28 | 2017-11-28 | A kind of bilayer vibration conveying mechanism |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201721617159.3U CN207917838U (en) | 2017-11-28 | 2017-11-28 | A kind of bilayer vibration conveying mechanism |
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CN207917838U true CN207917838U (en) | 2018-09-28 |
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CN201721617159.3U Active CN207917838U (en) | 2017-11-28 | 2017-11-28 | A kind of bilayer vibration conveying mechanism |
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN111591722A (en) * | 2020-05-14 | 2020-08-28 | 玉环双群机械有限公司 | Double-track red punching discharging device |
CN113184465A (en) * | 2021-04-20 | 2021-07-30 | 辛集市旭昶矿物制品有限公司 | Vibration feeder |
-
2017
- 2017-11-28 CN CN201721617159.3U patent/CN207917838U/en active Active
Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN111591722A (en) * | 2020-05-14 | 2020-08-28 | 玉环双群机械有限公司 | Double-track red punching discharging device |
CN113184465A (en) * | 2021-04-20 | 2021-07-30 | 辛集市旭昶矿物制品有限公司 | Vibration feeder |
CN113184465B (en) * | 2021-04-20 | 2022-08-26 | 辛集市旭昶矿物制品有限公司 | Vibration feeder |
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