CN210635318U - Vibration feeding machine - Google Patents

Vibration feeding machine Download PDF

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Publication number
CN210635318U
CN210635318U CN201921337307.5U CN201921337307U CN210635318U CN 210635318 U CN210635318 U CN 210635318U CN 201921337307 U CN201921337307 U CN 201921337307U CN 210635318 U CN210635318 U CN 210635318U
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CN
China
Prior art keywords
air bag
synchronous belt
type synchronous
bag type
vibration
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Expired - Fee Related
Application number
CN201921337307.5U
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Chinese (zh)
Inventor
谢君利
郭魏源
王瑞良
翟述智
秦发广
杨露鑫
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Huanghe Science and Technology College
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Huanghe Science and Technology College
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Priority to CN201921337307.5U priority Critical patent/CN210635318U/en
Application granted granted Critical
Publication of CN210635318U publication Critical patent/CN210635318U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The utility model provides a be suitable for vibration material loading machine of vulnerable part, it is provided with vibration dish entry and vibration dish export on the lateral wall of vibration dish to adopt gasbag formula hold-in range to realize the feeding of material, and be provided with down the efficiency that the fender material strip improves the feeding in the spiral track department of vibration dish, and be provided with the gyration that the carousel realized the material in the bottom of vibration dish, realize the sequencing material loading operation of vulnerable material from this.

Description

Vibration feeding machine
Technical Field
The utility model belongs to vibration material loading machine field, concretely relates to vibration sequencing material loading machine to vulnerable part.
Background
In electronic manufacturing, a vibration feeding machine is often needed to sequence and feed materials, while an existing vibration feeding machine often needs to pour sensitive and vulnerable electronic components into a material tray inside the vibration feeding machine, and then sequencing and feeding of the materials are achieved through vibration feeding, however, in the pouring process, the sensitive and vulnerable electronic components often collide with each other, so that the components can be damaged, and the electronic performance of the components is seriously affected.
In order to solve the technical problems, the application provides a novel vibration feeding machine.
SUMMERY OF THE UTILITY MODEL
The utility model aims at providing a can avoid sensitive vulnerable electronic components harm's vibration material loading machine.
In order to solve the technical problem, the technical scheme of the utility model is that:
a vibration feeding machine comprises a vibration disc, a vibrator, an air bag type synchronous belt, a lower material blocking strip, a rotary disc, a hairbrush, an upper material blocking strip, a vibration disc inlet and a vibration disc outlet.
The vibrating disk comprises a vibrating disk inlet and a vibrating disk outlet which are arranged on the side wall, a spiral track arranged on the inner wall of the vibrating disk, a bottom plate and a rotating disk which are arranged at the bottom of the vibrating disk, and a brush is fixed on the rotating disk; wherein, be provided with the material feed inlet at the input of gasbag formula hold-in range, be used for transporting gasbag formula hold-in range with the material of outside, keep off the fixed minimum that sets up at vibration dish spiral track of strip detachably down, be used for blockking the material that gasbag formula hold-in range carried and come, so that the material gets into spiral track, improve the efficiency of carrying, go up and keep off the material strip and set up in spiral track's discharge gate department, avoid the material to fall into in the vibration dish, and standardize the sequencing ejection of compact of material.
The air bag type synchronous belt comprises a side convex edge, an upper conveying surface, a lower tooth surface, an elastic connecting strip connected between the upper conveying surface and the lower tooth surface, a bag cavity arranged between the upper conveying surface and the lower tooth surface and an inflation inlet.
The air bag type synchronous belt enters from the inlet of the vibration disc and is screwed out from the outlet of the vibration disc, and a driving gear and a driven gear are respectively arranged at two ends of the air bag type synchronous belt and are used for driving the air bag type synchronous belt to rotate; wherein, gasbag formula hold-in range gets into the back from the vibration dish entry, and its lower flank of tooth slidable of lower part supports on the bottom plate of vibration dish, and the conveying face passes down and keeps off material strip and carousel on it, and wherein, the carousel can drive the brush and rotate, will be because of unexpected circumstances from the material that the spiral track dropped on gasbag formula hold-in range, through rotatory sweeping into vibration dish entry to the material is carried by the vibration material feeding again.
Furthermore, the upper surface of the rotary table is a smooth convex surface, the convex surface is made of a flexible material, and in the process of vibration feeding, materials falling due to accidents cannot be damaged due to falling onto the convex surface of the rotary table, and can quickly slide onto the air bag type synchronous belt through the rotary table.
Furthermore, a groove is formed in the side wall of the vibration disc, a side convex edge of the air bag type synchronous belt is slidably clamped in the groove, the centripetal force generated by turning of the air bag type synchronous belt is overcome, the air bag type synchronous belt can stably rotate and convey materials, the air bag type synchronous belt can realize flexible conveying of the materials, and better elasticity can be realized due to the fact that an inflatable bag cavity is formed in the air bag type synchronous belt, so that the situation that the materials in the vibration disc are broken when falling to the air bag type synchronous belt can be avoided; on the other hand can realize its and keep off the clearance adjustment between material strip, the carousel down through aerifing its thickness of adjustment, avoid gasbag formula hold-in range and keep off the material strip down, the carousel exists the clearance and cause the embedding damage condition of material.
The vibrator is used as a vibration source and is arranged below the vibration disk and connected with the vibration disk, and a mounting flange is arranged below the vibrator.
The control method of the vibration feeding machine comprises the following steps:
1) installing an air bag type synchronous belt into a vibrating disc, dragging the air bag type synchronous belt to check whether a side convex edge slides smoothly in a groove of the vibrating disc, if so, installing a lower material blocking strip and a rotary disc into the vibrating disc, otherwise, checking until the air bag type synchronous belt can slide smoothly;
2) inflating the air bag type synchronous belt, and checking the contact condition of the air bag type synchronous belt with the lower material blocking strip and the lower surface of the rotary table until the upper conveying surface of the air bag type synchronous belt is in contact with the lower material blocking strip and the lower surface of the rotary table, so that the materials are prevented from being clamped between the air bag type synchronous belt and the lower material blocking strip and the rotary table in the conveying process;
3) and opening the vibrator, conveying the materials to the air bag type synchronous belt from other conveying equipment stably, checking the feeding condition of the materials, and setting the rotating speed of the rotary table according to the actual conveying condition.
By adopting the technical scheme, the utility model discloses an invention point and beneficial effect thereof:
(1) materials of the vibration feeding machine are conveyed through the air bag type synchronous belt, so that collision damage caused by the fact that materials are poured into the conventional vibration feeding machine from the upper side of the vibration disc is avoided, and the vibration feeding machine is more suitable for sequencing feeding operation of easily damaged materials; and the air bag type synchronous belt is more suitable for matching between other conveying devices and is suitable for automatic production operation.
(2) The air bag type synchronous belt can be used for adjusting inflation and deflation to adjust the gaps among the materials, the rotary table and the lower material blocking strip, so that the damage caused by the embedding of the materials is avoided; gasbag formula hold-in range has better elasticity, and it sets up and avoids the material to drop and cause the material to bump badly, pound badly in the below of vibration dish.
(3) The adoption is kept off the efficiency that the material strip improved vibration material loading under, and the setting up of carousel and brush can realize that the material that drops sweeps the place ahead of keeping off the material strip under again and carry out the material loading operation again.
Drawings
FIG. 1 is a schematic view; the overall schematic diagram of the vibration feeding machine.
FIG. 2 is a schematic view; the vibration material loading machine is in a decomposition schematic view.
FIG. 3 is a schematic view; air bag type synchronous belt section.
Description of reference numerals: the device comprises a vibration disc 1, a vibrator 2, an air bag type synchronous belt 3, a lower material blocking strip 4, a rotary disc 5, a brush 6, an upper material blocking strip 7, a vibration disc inlet 8, a vibration disc outlet 9, a side convex edge 10, a spiral track 11, an upper conveying surface 12, a lower tooth surface 13, an elastic connecting strip 14 and a bag cavity 15.
Detailed Description
The present invention will be further explained with reference to the drawings and examples.
As shown in the figure, the vibrating feeder comprises a vibrating disc 1, a vibrator 2, an air bag type synchronous belt 3, a lower material blocking strip 4, a rotary disc 5, a hairbrush 6, an upper material blocking strip 7, a vibrating disc inlet 8 and a vibrating disc outlet 9.
The vibration disc 1 comprises a vibration disc inlet 8 and a vibration disc outlet 9 which are arranged on the side wall, a spiral track 11 arranged on the inner wall of the vibration disc 1, a bottom plate and a rotating disc 5 which are arranged at the bottom of the vibration disc 1, and a brush 6 is fixed on the rotating disc 5; wherein, be provided with the material feed inlet at gasbag formula hold-in range 3's input, be used for transporting gasbag formula hold-in range 3 with the material of outside, keep off material strip 4 detachably down and fix the lowest at 1 spiral track 11 of vibration dish, be used for blockking that gasbag formula hold-in range 3 carries the material, so that the material gets into spiral track 11, improve the efficiency of carrying, it sets up in spiral track 11's discharge gate department to go up to keep off material strip 7, avoid the material to fall into in the vibration dish 1, and standardize the sequencing ejection of compact of material.
The air bag type synchronous belt 3 comprises a side convex edge 10, an upper conveying surface 12, a lower tooth surface 13, an elastic connecting strip 14 connecting the upper conveying surface and the lower tooth surface, a bag cavity 15 arranged between the upper conveying surface and the lower tooth surface and an air inflation opening.
The air bag type synchronous belt 3 enters from an inlet 8 of the vibration disc and is screwed out from an outlet 9 of the vibration disc, and a driving gear and a driven gear are respectively arranged at two ends of the air bag type synchronous belt 3 and are used for driving the air bag type synchronous belt 3 to rotate; wherein, gasbag formula hold-in range 3 gets into the back from vibration dish entry 8, and the lower flank of tooth slidable of its lower part supports on the bottom plate of vibration dish 1, and what the face of delivery was gone up passes down and keeps off material strip 4 and carousel 5, and wherein, carousel 5 can drive brush 6 and rotate, will sweep vibration dish entry 8 departments soon because of unexpected circumstances from the material that drops on gasbag formula hold-in range 3 on delivery track 11 to the material is vibrated the material again.
Further, 5 upper surfaces of carousel are a smooth convex surface, and the convex surface is a flexible material, and at the in-process of vibration material loading, the material that drops because of the accident can not bump badly because of falling on 5's convex surface of carousel, and can be very fast through the gliding gasbag formula hold-in range 3 of carousel 5 on.
Furthermore, a groove is formed in the side wall of the vibration disc 1, the side convex edge 10 of the air bag type synchronous belt 3 can be slidably clamped in the groove, the centripetal force generated by the turning of the air bag type synchronous belt 3 is overcome, the air bag type synchronous belt 3 can stably and rotatably convey materials, the air bag type synchronous belt 3 can realize the flexible conveying of the materials, and the air bag type synchronous belt 3 can generate better elasticity due to the fact that an inflated bag cavity is formed in the air bag type synchronous belt 3, so that the materials in the vibration disc 1 can be prevented from falling onto the air bag type synchronous belt 3 and being damaged; on the other hand can realize its and keep off the clearance adjustment between strip 4, the carousel 5 down through aerifing its thickness of adjustment, avoid gasbag formula hold-in range 3 and keep off the condition that there is the clearance and cause material embedding damage between strip 4, the carousel 5 down.
The vibrator 2 is arranged below the vibration disc 1 as a vibration source and is connected with the vibration disc 1, and a mounting flange is arranged below the vibrator 2.
The control method of the vibration feeding machine comprises the following steps:
1) installing an air bag type synchronous belt (3) into a vibrating disc (1), dragging the air bag type synchronous belt (3) to check whether a side convex edge (10) slides smoothly in a groove of the vibrating disc (1), if so, installing a lower material blocking strip (4) and a rotary disc (5) into the vibrating disc (1), otherwise, checking until the air bag type synchronous belt (3) can slide smoothly;
2) inflating the air bag type synchronous belt 3, and checking the contact condition of the air bag type synchronous belt 3 with the lower material blocking strip 4 and the lower surface of the rotary table 5 until the upper conveying surface of the air bag type synchronous belt 3 is in contact with the lower material blocking strip 4 and the lower surface of the rotary table 5, so as to prevent materials from being clamped between the air bag type synchronous belt 3 and the lower material blocking strip 4 and the rotary table 5 in the conveying process;
3) the vibrator 2 is opened, materials are conveyed to the air bag type synchronous belt 3 from other conveying equipment stably, the feeding condition of the materials is checked, and the rotating speed of the rotary table 5 is set according to the actual conveying condition.
The above detailed description of one embodiment of the present invention is only for the purpose of describing the preferred embodiment of the present invention, and should not be construed as limiting the scope of the present invention. All equivalent changes made in accordance with the scope of the present invention should be covered by the claims of the present invention.

Claims (3)

1. A vibration feeding machine comprises a vibration disc (1), a vibrator (2), an air bag type synchronous belt (3), a lower material blocking strip (4), a rotary disc (5), a brush (6) and an upper material blocking strip (7); the method is characterized in that:
the vibrating disk (1) comprises a vibrating disk inlet (8) and a vibrating disk outlet (9) which are arranged on the side wall, a spiral track (11) is arranged on the inner wall of the vibrating disk (1), a bottom plate and a rotating disk (5) are arranged at the bottom of the vibrating disk (1), and a brush (6) is fixed on the rotating disk (5); the device comprises an air bag type synchronous belt (3), a lower material blocking strip (4), an upper material blocking strip (7), a vibrator (2) and a vibrating disc (1), wherein the input end of the air bag type synchronous belt (3) is provided with a material feeding hole, the lower material blocking strip is detachably fixed at the lowest position of a spiral track (11) of the vibrating disc (1), the upper material blocking strip is arranged at a material discharging hole of the spiral track (11), and the vibrator (2) is arranged at the bottom of the vibrating;
the air bag type synchronous belt (3) comprises a side convex edge (10), an air charging port, an upper conveying surface (12), a lower tooth surface (13), an elastic connecting strip (14) connecting the upper conveying surface and the lower tooth surface, and an air bag cavity (15) arranged between the upper conveying surface and the lower tooth surface;
the side wall of the vibrating disk (1) is provided with a groove which is matched with a side convex edge (10) of the air bag type synchronous belt (3).
2. A vibratory feeder as claimed in claim 1, wherein: the air bag type synchronous belt (3) enters from an inlet (8) of the vibration disc and is screwed out from an outlet (9) of the vibration disc, and a driving gear and a driven gear are respectively arranged at two ends of the air bag type synchronous belt (3) and are used for driving the air bag type synchronous belt (3) to rotate; wherein, gasbag formula hold-in range (3) get into the back from vibration dish entry (8), and the lower flank of tooth slidable of its lower part supports on the bottom plate of vibration dish (1), and the transport face passes down and keeps off material strip (4) and carousel (5) on it, and wherein, carousel (5) can drive brush (6) and rotate, will drop to the material on gasbag formula hold-in range (3) and sweep vibration dish entry (8) department soon to the material is vibrated the material again and is carried.
3. A vibratory feeder as claimed in claim 2, in which: the upper surface of the rotary disc (5) is a smooth convex surface, and the convex surface is made of flexible material.
CN201921337307.5U 2019-08-19 2019-08-19 Vibration feeding machine Expired - Fee Related CN210635318U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921337307.5U CN210635318U (en) 2019-08-19 2019-08-19 Vibration feeding machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921337307.5U CN210635318U (en) 2019-08-19 2019-08-19 Vibration feeding machine

Publications (1)

Publication Number Publication Date
CN210635318U true CN210635318U (en) 2020-05-29

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ID=70801013

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201921337307.5U Expired - Fee Related CN210635318U (en) 2019-08-19 2019-08-19 Vibration feeding machine

Country Status (1)

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CN (1) CN210635318U (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110329749A (en) * 2019-08-19 2019-10-15 黄河科技学院 A kind of control method of vibration feeding machine
CN110329748A (en) * 2019-08-19 2019-10-15 黄河科技学院 A kind of vibration feeding machine

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110329749A (en) * 2019-08-19 2019-10-15 黄河科技学院 A kind of control method of vibration feeding machine
CN110329748A (en) * 2019-08-19 2019-10-15 黄河科技学院 A kind of vibration feeding machine
CN110329748B (en) * 2019-08-19 2024-03-26 黄河科技学院 Vibration feeding machine
CN110329749B (en) * 2019-08-19 2024-04-19 黄河科技学院 Control method of vibration feeding machine

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CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20200529

Termination date: 20210819

CF01 Termination of patent right due to non-payment of annual fee