CN212268678U - Vibration dish mechanism - Google Patents
Vibration dish mechanism Download PDFInfo
- Publication number
- CN212268678U CN212268678U CN202021197927.6U CN202021197927U CN212268678U CN 212268678 U CN212268678 U CN 212268678U CN 202021197927 U CN202021197927 U CN 202021197927U CN 212268678 U CN212268678 U CN 212268678U
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- rubber disc
- frame
- vibration
- rubber
- speaker
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Abstract
The utility model provides a vibration dish mechanism, including frame and the frame that encloses of setting in the frame, be equipped with in the frame and be in the rubber disc that encloses in the frame, the frame below is established and is used for driving rubber disc pivoted rotary actuator, divide into vibration area and non-vibration area on the rubber disc, and the vibration area below of rubber disc is equipped with at least one and is used for directly sending the sound wave to the rubber disc and makes the speaker that the product took place to vibrate on rubber disc and the rubber disc, is equipped with in the frame to be used for supplying the speaker to stretch out the opening of direct to rubber disc transmission sound wave. Compared with the prior art, the utility model provides a vibration dish mechanism is applicable to the product of quality and bulky and adjusts, and the rotary actuator drive rubber disc rotates, and the speaker is in the rubber disc below, and the speaker directly transmits the sound wave to the rubber disc, and the rubber disc produces the vibration, and the product on the rubber disc takes place upset and angle change at random, simple structure, and power consumption is low.
Description
Technical Field
The utility model relates to a machine tooling field, especially a vibration dish mechanism.
Background
The vibration principle of a common vibration disk on the market is as follows: a vibrator is arranged below the material tray of the vibrating tray, so that the material tray integrally vibrates to drive the product to vibrate; this is a vibration that is transmitted through the interconnection of the mechanical parts. The vibrating disk with the structure can enable disordered products to form an ordered directional arrangement finally. For products which cannot be arranged on the vibration plate, the vibration plate can only be placed manually. For parts with larger product quality and larger volume, the vibration of the existing vibration plate is not suitable for the vibration efficiency and the material plate volume of the vibration plate. If a large-sized vibrating disk is manufactured, the power consumption of the vibrating disk is multiplied under the condition that the vibrating disk meets the vibration requirement, and the use cost is increased. The manual turnover placement is used, the dependence on people is large, and the management cost is high.
SUMMERY OF THE UTILITY MODEL
To the above problem, the utility model provides a vibration dish mechanism utilizes the sound wave to drive the rubber tyer vibration for product on the rubber tyer takes place upset and angle change, is applicable to the product of quality and bulky and adjusts, simple structure, and power consumption is low.
The utility model adopts the technical proposal that:
the utility model provides a vibration dish mechanism, includes the frame and sets up the frame that encloses in the frame, is equipped with in the frame and is in the rubber disc that encloses in the frame, and the frame below is equipped with and is used for driving rubber disc pivoted rotary actuator, and the below of rubber disc is equipped with at least one and is used for directly sending the sound wave to the rubber disc and makes the speaker that the product took place to vibrate on rubber disc and the rubber disc, is equipped with in the frame to be used for supplying the speaker to stretch out the opening of direct to rubber disc transmission sound wave.
Preferably, the area of the rubber plate above the loudspeaker is a vibration area, and the other areas are non-vibration areas.
Preferably, a rotating shaft of the rotary driver penetrates through the rack to be connected with a rotating disk and a circular table, the rotating disk is connected with a rubber disk, and the rubber disk is located between the circular table and the rotating disk.
More preferably, a controller for controlling the start of the rotary driver is further provided at one side of the frame.
Preferably, the enclosure frame is further provided with a guide stop block for enabling the product to move to the vibration area.
Preferably, two loudspeakers are arranged below the vibration area of the rubber disc, and two openings corresponding to the loudspeakers are formed in the rack.
More preferably, the rotary drive is a motor.
Compared with the prior art, the beneficial effects of the utility model reside in that: the utility model provides a vibration dish mechanism is applicable to the product of quality and bulky and adjusts, and the rotary actuator drive rubber disc rotates, and the speaker is in the rubber disc below, and the speaker is direct to rubber disc transmission sound wave, and the rubber disc produces the vibration, and the product on the rubber disc takes place upset and angle change, simple structure, and power consumption is low.
Drawings
Fig. 1 is a first schematic view of a vibration plate mechanism provided by the present invention;
fig. 2 is a second schematic view of a vibration plate mechanism provided by the present invention;
fig. 3 is an exploded view of a vibration plate mechanism according to the present invention.
Detailed Description
The preferred embodiments of the present invention will be described in detail with reference to the accompanying drawings.
Fig. 1 to 3 are specific illustrations of a preferred embodiment of a vibrating plate mechanism according to the present invention. As shown in fig. 1 to 3, the vibrating plate mechanism includes a frame 10 and an enclosing frame 20 disposed on the frame, a rubber plate 30 disposed in the enclosing frame is disposed on the frame 10, a rotary driver 40 for driving the rubber plate to rotate is disposed below the frame, at least one speaker 50 for directly emitting sound waves to the rubber plate to vibrate the rubber plate and products on the rubber plate is disposed below the rubber plate 30, an opening 11 for the speaker to extend out and directly transmit the sound waves to the rubber plate is disposed on the frame 10, the rotary driver 40 drives the rubber plate 30 to rotate, the speaker 50 is disposed below the rubber plate 30, the speaker 50 directly transmits the sound waves to the rubber plate 30, the rubber plate 30 vibrates, the products on the rubber plate 30 are turned and changed in angle, the structure is simple, and the power consumption is low.
The rubber plate area above the loudspeaker 50 is a vibration area, and the other areas are non-vibration areas, when the rotary driver 40 drives the rubber plate 30 to rotate, the vibration area and the non-vibration areas on the rubber plate 30 change, and products in the vibration area rotate to the non-vibration areas. In a preferred embodiment, two speakers 50 are disposed below the vibration region of the rubber plate 30, and two openings 11 corresponding to the two speakers 50 are disposed on the frame 10.
The rotating shaft of the rotating driver 40 penetrates through the rack to be connected with a rotating disc 41 and a circular table 42, the rotating disc 41 is connected with the rubber disc 30, the rubber disc 30 is located between the circular table 42 and the rotating disc 41, and the circular table 42 can prevent the rubber disc 30 from falling off from the rotating shaft. The rotary drive 40 may be a motor. A controller 60 for controlling the start of the rotary driver is further arranged on one side of the frame 10, and when the frame is used, the controller 60 controls the start of the rotary driver 40, so that the rubber plate 30 rotates.
The surrounding frame 20 is further provided with a guide stop 21 for enabling the product to move to the vibration area, and the product in the non-vibration area on the rubber plate 30 can move to the vibration area through the guide stop 21.
Whole vibration dish mechanism can accomplish and put and adjust the product, but this adjustment is random, uncontrollable adjustment, generally enables the product to accomplish the change of upset, angle, can not accomplish the work of sequencing. The adjustable product can be matched with other structures or machines for use, such as a mechanical arm to grab the adjusted product. Compared with a common vibration disc, the whole vibration disc mechanism can adjust products with larger mass and volume, and is simple in structure and low in power consumption.
To sum up, the technical scheme of the utility model can be fully effectual the above-mentioned utility model purpose of realization, just the utility model discloses a structure and functional principle all obtain abundant verification in the embodiment, can reach anticipated efficiency and purpose, do not deviating from the utility model discloses a under the prerequisite of principle and essence, can make multiple change or modification to the embodiment of utility model. Therefore, the present invention includes all the alternative contents within the scope mentioned in the claims, and all the equivalent changes made within the claims of the present invention are included in the claims of the present application.
Claims (7)
1. The utility model provides a vibration dish mechanism, a serial communication port, including frame and the frame that encloses of setting in the frame, be equipped with in the frame and be in the rubber disc that encloses in the frame, the frame below is established and is used for driving rubber disc pivoted rotary actuator, divide into vibration area and non-vibration area on the rubber disc, the vibration area below of rubber disc is equipped with at least one and is used for directly sending the sound wave to the rubber disc and makes rubber disc and rubber disc go up the speaker that the product takes place the vibration, be equipped with in the frame and be used for supplying the speaker to stretch out the opening of direct to rubber disc transmission sound wave.
2. A vibrating disk mechanism according to claim 1 wherein: the rubber disc area above the loudspeaker is a vibration area, and the other areas are non-vibration areas.
3. A vibrating disk mechanism according to claim 1 wherein: the rotary shaft of the rotary driver penetrates through the rack to be connected with the rotary disk and the circular table, the rotary disk is connected with the rubber disk, and the rubber disk is located between the circular table and the rotary disk.
4. A vibrating disk mechanism according to claim 1 wherein: and a controller for controlling the starting of the rotary driver is also arranged on one side of the frame.
5. A vibrating disk mechanism according to claim 1 wherein: the rotary driver is a motor.
6. A vibrating disk mechanism according to claim 2 wherein: the surrounding frame is also provided with a guide stop block for enabling the product to move to the vibration area.
7. A vibrating disk mechanism according to claim 2 wherein: two loudspeakers are arranged below the vibration area of the rubber disc, and two openings corresponding to the loudspeakers are arranged on the rack.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202021197927.6U CN212268678U (en) | 2020-06-24 | 2020-06-24 | Vibration dish mechanism |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202021197927.6U CN212268678U (en) | 2020-06-24 | 2020-06-24 | Vibration dish mechanism |
Publications (1)
Publication Number | Publication Date |
---|---|
CN212268678U true CN212268678U (en) | 2021-01-01 |
Family
ID=73881512
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
CN202021197927.6U Active CN212268678U (en) | 2020-06-24 | 2020-06-24 | Vibration dish mechanism |
Country Status (1)
Country | Link |
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CN (1) | CN212268678U (en) |
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2020
- 2020-06-24 CN CN202021197927.6U patent/CN212268678U/en active Active
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