CN204623955U - A kind of powder packaging automatic feed mechanism - Google Patents
A kind of powder packaging automatic feed mechanism Download PDFInfo
- Publication number
- CN204623955U CN204623955U CN201520075835.3U CN201520075835U CN204623955U CN 204623955 U CN204623955 U CN 204623955U CN 201520075835 U CN201520075835 U CN 201520075835U CN 204623955 U CN204623955 U CN 204623955U
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- Prior art keywords
- vacuum
- fixedly connected
- storage bin
- charging system
- powder
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Abstract
The purpose of this utility model is to provide a kind of powder packaging automatic feed mechanism.The technical solution of the utility model is: be made up of vacuum charging system, storage bin, dust collector, powder packing machine, material conveying device and electric cabinet, vacuum charging system is also provided with vacuum generator, filters cylinder, air compressing cabin, material sucking hole, vacuum hopper, discharge gate and material extraction tube.Its storehouse that feeds intake is negative-pressure operation, and the dust produced time reinforced can not be excessive, and ensure that the clean of production environment, operator is from dust pollution.Self be furnished with 4 filter cores, can not with a large amount of dust in the gas definitely got rid of, the start and stop of this system are by Level control, and when material level is lower than setting position, vacuum feeder starts automatically, completes reinforced.Save production time, avoid environmental pollution, equipment compatibility is good, and degree of automation is high, and project organization is simple, and cost is low, does not produce the advantages such as destruction to powder physical properties.
Description
Technical field
The utility model relates to machinery manufacturing technology field, particularly relates to a kind of powder packaging automatic feed mechanism.
Background technology
Powder feeder apparatus is in the past all by multiple System's composition, do not form a whole set of independent but have no lack of the mechanism of overall performance, the spacing of each system is excessive, spaced far, easily cause material to trickle down, and the dust produced in operating process and the health of particle to operating personal cause certain infringement.This mechanism is by vibrating aggregate-storing system, vacuum charging system, automatic powder packaging system, dust pelletizing system.Its storehouse that feeds intake is negative-pressure operation, and the dust produced time reinforced can not be excessive, and ensure that the clean of production environment, operator is from dust pollution.Self be furnished with 4 filter cores, can not with a large amount of dust in the gas definitely got rid of, feed bin soruce of vibration adopts vibrating motor to drive.Feed bin soruce of vibration starts two kinds of modes, a kind of mode is: when vacuum feeder starts be, vibrating motor starts, another kind of mode is: have hand switch, vibrating motor can be started separately, and the start and stop of this system are by Level control, when material level is lower than setting position, vacuum feeder starts automatically, completes reinforced.Mainly overcome the shortcoming of original powder feed mode, provide a kind of and save time, the feeding mode in space, save production time, avoid environmental pollution, equipment compatibility is good, and degree of automation is high, project organization is simple, and cost is low, does not produce the advantages such as destruction to powder physical properties.
Utility model content
The purpose of this utility model is to provide a kind of powder packaging automatic feed mechanism.
The technical solution of the utility model is: a kind of powder packaging automatic feed mechanism, it is characterized in that: by vacuum charging system, storage bin, dust collector, powder packing machine, material conveying device and electric cabinet composition, described vacuum charging system is positioned at the top of dust collector, described vacuum charging system and dust collector are for being fixedly connected with, described vacuum charging system is also provided with vacuum generator, filter cylinder, air compressing cabin, material sucking hole, vacuum hopper, discharge gate and material extraction tube, described vacuum generator is positioned at the top of vacuum charging system, described vacuum generator and vacuum charging system are for being fixedly connected with, described filtration cylinder is positioned at the inside of vacuum charging system, described filtration cylinder and vacuum charging system are for being fixedly connected with, described air compressing freight space is in the bottom of filtering cylinder, described air compressing cabin and filtration cylinder are for being fixedly connected with, described material sucking hole is positioned at the side in air compressing cabin, one end of described material sucking hole with air compressing cabin for being fixedly connected with, the other end of described material sucking hole by vacuum charging system with material extraction tube for being fixedly connected with, described vacuum hopper is positioned at the bottom in air compressing cabin, described vacuum hopper and air compressing cabin are for being fixedly connected with, described discharge gate is positioned at the bottom of vacuum hopper, described discharge gate and vacuum hopper are for being fixedly connected with, described material extraction tube is positioned at the side of vacuum charging system, one end of described material extraction tube by material sucking hole for being fixedly connected with, the other end of described material extraction tube by storage bin for being fixedly connected with, described storage bin is positioned at the side of vacuum charging system, described storage bin is also provided with vibrating motor, storage bin support and several filter cores, described vibrating motor is positioned at the side of storage bin, described vibrating motor and storage bin are for being fixedly connected with, described storage bin support is positioned at the bottom of storage bin, described storage bin support and storage bin are for being fixedly connected with, any described filter core is positioned at the inside of storage bin, described filter core and storage bin are for being fixedly connected with, described dust collector is also provided with several assorted dirt adsorbers, any described assorted dirt adsorber is positioned at the inside of dust collector, described assorted dirt adsorber with dust collector for being fixedly connected with, described powder packing machine is positioned at the side of dust collector, described powder packing machine is also provided with packaging seal device, described packaging seal device is positioned at the side of powder packing machine, described packaging seal device and powder packing machine are for being fixedly connected with, described material conveying device is positioned at the bottom of powder packing machine, described material conveying device is flexible connection by dust collector, described electric cabinet is positioned at the opposite side of vacuum charging system, described electric cabinet and vacuum charging system are for being fixedly connected with.
Further, described vacuum generator is air compression plant.
Further, the material of described storage bin is corrosion-resistant steel.
Further, the number of several filter cores described is 4.
Further, the number of several assorted dirt adsorbers described is 2.
Further, described material conveying device is self-service roller transmissioning device.
The beneficial effects of the utility model are: this mechanism is by vibrating aggregate-storing system, vacuum charging system, automatic powder packaging system, dust pelletizing system.Its storehouse that feeds intake is negative-pressure operation, and the dust produced time reinforced can not be excessive, and ensure that the clean of production environment, operator is from dust pollution.Self be furnished with 4 filter cores, can not with a large amount of dust in the gas definitely got rid of, feed bin soruce of vibration adopts vibrating motor to drive.Feed bin soruce of vibration starts two kinds of modes, a kind of mode is: when vacuum feeder starts be, vibrating motor starts, another kind of mode is: have hand switch, vibrating motor can be started separately, and the start and stop of this system are by Level control, when material level is lower than setting position, vacuum feeder starts automatically, completes reinforced.Mainly overcome the shortcoming of original powder feed mode, provide a kind of and save time, the feeding mode in space, save production time, avoid environmental pollution, equipment compatibility is good, and degree of automation is high, project organization is simple, and cost is low, does not produce the advantages such as destruction to powder physical properties.
Accompanying drawing explanation
Fig. 1 is front view of the present utility model.
Wherein: 1, vacuum charging system 2, vacuum generator 3, filtration cylinder
4, air compressing cabin 5, material sucking hole 6, vacuum hopper
7, discharge gate 8, material extraction tube 9, storage bin
10, vibrating motor 11, storage bin support 12, filter core
13, dust collector 14, assorted dirt adsorber 15, powder packing machine
16, packaging seal device 17, material conveying device 18, electric cabinet
Detailed description of the invention
Below in conjunction with accompanying drawing, brief description is made to detailed description of the invention of the present utility model.
A kind of powder packaging automatic feed mechanism as shown in Figure 1, it is characterized in that: by vacuum charging system 1, storage bin 9, dust collector 13, powder packing machine 15, material conveying device 17 and electric cabinet 18 form, described vacuum charging system 1 is positioned at the top of dust collector 13, described vacuum charging system 1 and dust collector 13 are for being fixedly connected with, described vacuum charging system 1 is also provided with vacuum generator 2, filter cylinder 3, air compressing cabin 4, material sucking hole 5, vacuum hopper 6, discharge gate 7 and material extraction tube 8, described vacuum generator 2 is positioned at the top of vacuum charging system 1, described vacuum generator 2 and vacuum charging system 1 are for being fixedly connected with, described filtration cylinder 3 is positioned at the inside of vacuum charging system 1, described filtration cylinder 3 and vacuum charging system 1 are for being fixedly connected with, described air compressing cabin 4 is positioned at the bottom of filtering cylinder 3, described air compressing cabin 4 and filtration cylinder 3 are for being fixedly connected with, described material sucking hole 5 is positioned at the side in air compressing cabin 4, one end of described material sucking hole 5 with air compressing cabin 4 for being fixedly connected with, the other end of described material sucking hole 5 by vacuum charging system 1 with material extraction tube 8 for being fixedly connected with, described vacuum hopper 6 is positioned at the bottom in air compressing cabin 4, described vacuum hopper 6 and air compressing cabin 4 are for being fixedly connected with, described discharge gate 7 is positioned at the bottom of vacuum hopper 6, described discharge gate 7 and vacuum hopper 6 are for being fixedly connected with, described material extraction tube 8 is positioned at the side of vacuum charging system 1, one end of described material extraction tube 8 by material sucking hole 5 for being fixedly connected with, the other end of described material extraction tube 8 by storage bin 9 for being fixedly connected with, described storage bin 9 is positioned at the side of vacuum charging system 1, described storage bin 9 is also provided with vibrating motor 10, storage bin support 11 and several filter cores 12, described vibrating motor 10 is positioned at the side of storage bin 9, described vibrating motor 10 and storage bin 9 are for being fixedly connected with, described storage bin support 11 is positioned at the bottom of storage bin 9, described storage bin support 11 and storage bin 9 are for being fixedly connected with, any described filter core 12 is positioned at the inside of storage bin 9, described filter core 12 and storage bin 9 are for being fixedly connected with, described dust collector 13 is also provided with several assorted dirt adsorbers 14, any described assorted dirt adsorber 14 is positioned at the inside of dust collector 13, described assorted dirt adsorber 14 with dust collector 13 for being fixedly connected with, described powder packing machine 15 is positioned at the side of dust collector 13, described powder packing machine 15 is also provided with packaging seal device 16, described packaging seal device 16 is positioned at the side of powder packing machine 15, described packaging seal device 16 and powder packing machine 15 are for being fixedly connected with, described material conveying device 17 is positioned at the bottom of powder packing machine 15, described material conveying device 17 is flexible connection by dust collector 13, described electric cabinet 18 is positioned at the opposite side of vacuum charging system 1, described electric cabinet 18 and vacuum charging system 1 are for being fixedly connected with.Described vacuum generator 2 is air compression plant.The material of described storage bin 9 is corrosion-resistant steel.The number of several filter cores 12 described is 4.The number of several assorted dirt adsorbers 14 described is 2.Described material conveying device 17 is self-service roller transmissioning device.
Mode of operation: the operating switch first opening the vibration aggregate-storing system on electric cabinet 18, storage bin 9 can produce vibration under the effect of vibrating motor 10, so that the material in storage bin 9 produces vibration.Owing to being equipped with four filter cores 12 in storage bin 9, ensure with a large amount of dust, after vibration aggregate-storing system is ready, the vacuum charging system operating switch on electric cabinet 18 to be opened in the process extracting material.Air can compress from vacuum generator 2, discharge gate 7 can be closed voluntarily under the promotion of filtering cylinder 3 simultaneously, produce vacuum in air compressing cabin 4, under atmospheric pressure, material can enter in air compressing cabin 4 through material extraction tube 8 from storage bin 9 along with the air promoted.After certain hour, (material loading time adjustable) pressurized air is closed, discharge gate 7 simultaneously below vacuum hopper 6 is opened under the promotion of filtering cylinder 3, the vacuum expendable pattern of inside, air compressing cabin 4, material falls in the packaging bag of dust collector 13 inside from discharge gate 7, owing to being equipped with two assorted dirt adsorbers 14 in dust collector 13, so the dust falling into packaging bag periphery can be adsorbed well, packaging bag is driven on powder packing machine 15 by material conveying device 17 and is processed for it carries out sealing by packaging seal device 16.Native system is negative-pressure operation, and producing dust time reinforced can not be excessive, ensure that the clean of production environment, makes operating personal from dust pollution.
Above an embodiment of the present utility model has been described in detail, but described content being only preferred embodiment of the present utility model, can not being considered to for limiting practical range of the present utility model.All equalizations done according to the utility model application range change and improve, and all should still belong within patent covering scope of the present utility model.
Claims (6)
1. a powder packaging automatic feed mechanism, it is characterized in that: by vacuum charging system, storage bin, dust collector, powder packing machine, material conveying device and electric cabinet composition, described vacuum charging system is positioned at the top of dust collector, described vacuum charging system and dust collector are for being fixedly connected with, described vacuum charging system is also provided with vacuum generator, filter cylinder, air compressing cabin, material sucking hole, vacuum hopper, discharge gate and material extraction tube, described vacuum generator is positioned at the top of vacuum charging system, described vacuum generator and vacuum charging system are for being fixedly connected with, described filtration cylinder is positioned at the inside of vacuum charging system, described filtration cylinder and vacuum charging system are for being fixedly connected with, described air compressing freight space is in the bottom of filtering cylinder, described air compressing cabin and filtration cylinder are for being fixedly connected with, described material sucking hole is positioned at the side in air compressing cabin, one end of described material sucking hole with air compressing cabin for being fixedly connected with, the other end of described material sucking hole by vacuum charging system with material extraction tube for being fixedly connected with, described vacuum hopper is positioned at the bottom in air compressing cabin, described vacuum hopper and air compressing cabin are for being fixedly connected with, described discharge gate is positioned at the bottom of vacuum hopper, described discharge gate and vacuum hopper are for being fixedly connected with, described material extraction tube is positioned at the side of vacuum charging system, one end of described material extraction tube by material sucking hole for being fixedly connected with, the other end of described material extraction tube by storage bin for being fixedly connected with, described storage bin is positioned at the side of vacuum charging system, described storage bin is also provided with vibrating motor, storage bin support and several filter cores, described vibrating motor is positioned at the side of storage bin, described vibrating motor and storage bin are for being fixedly connected with, described storage bin support is positioned at the bottom of storage bin, described storage bin support and storage bin are for being fixedly connected with, any described filter core is positioned at the inside of storage bin, described filter core and storage bin are for being fixedly connected with, described dust collector is also provided with several assorted dirt adsorbers, any described assorted dirt adsorber is positioned at the inside of dust collector, described assorted dirt adsorber with dust collector for being fixedly connected with, described powder packing machine is positioned at the side of dust collector, described powder packing machine is also provided with packaging seal device, described packaging seal device is positioned at the side of powder packing machine, described packaging seal device and powder packing machine are for being fixedly connected with, described material conveying device is positioned at the bottom of powder packing machine, described material conveying device is flexible connection by dust collector, described electric cabinet is positioned at the opposite side of vacuum charging system, described electric cabinet and vacuum charging system are for being fixedly connected with.
2. a kind of powder packs automatic feed mechanism according to claim 1, it is characterized in that: described vacuum generator is air compression plant.
3. a kind of powder packs automatic feed mechanism according to claim 1, it is characterized in that: the material of described storage bin is corrosion-resistant steel.
4. a kind of powder packs automatic feed mechanism according to claim 1, it is characterized in that: the number of several filter cores described is 4.
5. a kind of powder packs automatic feed mechanism according to claim 1, it is characterized in that: the number of several assorted dirt adsorbers described is 2.
6. a kind of powder packs automatic feed mechanism according to claim 1, it is characterized in that: described material conveying device is self-service roller transmissioning device.
Priority Applications (1)
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CN201520075835.3U CN204623955U (en) | 2015-02-02 | 2015-02-02 | A kind of powder packaging automatic feed mechanism |
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CN201520075835.3U CN204623955U (en) | 2015-02-02 | 2015-02-02 | A kind of powder packaging automatic feed mechanism |
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN106742113A (en) * | 2016-11-28 | 2017-05-31 | 杨自标 | A kind of application of homemade vacuum feeding system |
CN110371335A (en) * | 2019-08-09 | 2019-10-25 | 普菱兴云智能科技(广州)有限公司 | A kind of granule filling spiral cover all-in-one machine |
-
2015
- 2015-02-02 CN CN201520075835.3U patent/CN204623955U/en not_active Expired - Fee Related
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN106742113A (en) * | 2016-11-28 | 2017-05-31 | 杨自标 | A kind of application of homemade vacuum feeding system |
CN110371335A (en) * | 2019-08-09 | 2019-10-25 | 普菱兴云智能科技(广州)有限公司 | A kind of granule filling spiral cover all-in-one machine |
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C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20150909 Termination date: 20160202 |