CN214166005U - A material device is thrown in transportation for talcum powder - Google Patents
A material device is thrown in transportation for talcum powder Download PDFInfo
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- CN214166005U CN214166005U CN202023167653.9U CN202023167653U CN214166005U CN 214166005 U CN214166005 U CN 214166005U CN 202023167653 U CN202023167653 U CN 202023167653U CN 214166005 U CN214166005 U CN 214166005U
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- barrel body
- barrel
- frame
- pipe
- belt pulley
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Abstract
The invention relates to a conveying and feeding device for talcum powder, which comprises a supporting frame and two groups of barrel bodies positioned at the top of the supporting frame, wherein the bottom of the barrel bodies is provided with discharge pipes, the barrel bodies are provided with motors, a belt pulley I is arranged on a transmission shaft of each motor, a rotating shaft with the bottom end extending into the discharge pipes is arranged in each barrel body, a stirring paddle is arranged on each rotating shaft, a spiral stirring blade is arranged on each rotating shaft positioned in each discharge pipe, a belt pulley II connected with the belt pulley I through a belt is also arranged at the top end of each rotating shaft, a V-shaped pipe for connecting the two groups of discharge pipes is arranged in the supporting frame, a material guide pipe is arranged at the bottom of each V-shaped pipe, a supporting plate is arranged in an opening of each V-shaped pipe, a connecting plate for connecting the bottom walls of the two groups of barrel bodies is also arranged in an opening at the top of the supporting frame, the connecting plates are connected through protective cylinders, and a vibration motor is arranged on the connecting plate positioned in each protective cylinder, and a sliding mechanism is arranged at the bottom of the supporting frame. The invention has simple structure and convenient use.
Description
Technical Field
The invention relates to the technical field of talcum powder processing equipment, in particular to a conveying and feeding device for talcum powder.
Background
The talcum powder is white or white-like, fine and non-gritty powder, is greasy to the hand, and is mainly used for packing sacks in the conventional talcum powder.
The device that holds that is used for superfine talcum powder that has now is structurally comparatively complicated, and inconvenient in the operation, supply that can not be timely when superfine talcum powder is used up for work efficiency reduces, and need consume a large amount of manpowers carrying superfine talcum powder, makes the human cost increase.
Although the above-mentioned problems are solved, the holding device for the ultra-fine talc disclosed in CN212149886U has the following disadvantages, such as: 1. powder is easy to deposit in the pipeline to block the pipeline, so that the discharging effect and efficiency are influenced; 2. in order to improve the transportation efficiency (certainly, the ground is also uneven, so that the rollers are difficult to move on the ground under the circumstances), a rail is generally installed in the working area for the box body and the rack to run, but because the rollers are adopted at the bottom of the rack, the rollers cannot well grip the rail, so that the rack is difficult to adapt to the running on the rail, if the rollers are replaced by the pulleys capable of gripping the rail, although the trolley can run on the rail, frequent replacement between the rollers and the pulleys at the bottom of the trolley is needed in time, so that the trolley can adapt to the work under the two different environments, the labor intensity of workers is certainly enhanced, and the working efficiency is reduced.
Disclosure of Invention
The invention aims to provide a conveying and feeding device for talcum powder.
The technical problem of the invention is mainly solved by the following technical scheme:
a conveying and feeding device for talcum powder comprises a rectangular supporting frame and barrel bodies arranged at the top of the rectangular supporting frame, wherein a feeding pipe is arranged at the top of each barrel body, a discharging pipe is arranged at the bottom of each barrel body, electromagnetic valves are arranged at the bottom ends of the discharging pipes, the two barrel bodies are divided into two groups, a rack is arranged between the tops of the two groups of barrel bodies, a motor is arranged on each rack, a transmission shaft of the motor is positioned between the two groups of barrel bodies, a belt pulley I positioned above the barrel bodies is arranged on each transmission shaft, a rotating shaft extending to the inside of the barrel bodies is arranged at the top of each barrel body, the bottom end of each rotating shaft extends into the discharging pipe above the electromagnetic valves, stirring paddles positioned in the barrel bodies are arranged on the rotating shafts, spiral stirring blades with the top ends extending to the inner bottom of the barrel bodies are arranged on the rotating shafts positioned in the discharging pipes, and belt pulleys II corresponding to the belt pulleys I are also arranged at the top ends of the rotating shafts, the utility model discloses a novel belt pulley, including belt pulley I and belt pulley II, be provided with the V type pipe of connecting two sets of discharging pipes in the braced frame, wherein the bending department bottom of V type pipe is provided with the passage, and transversely is provided with the backup pad in the V type pipe opening, still be provided with in the braced frame top opening and connect two sets of staving diapalls and just to the connecting plate of backup pad, wherein connect through network structure's protection section of thick bamboo between connecting plate and the backup pad, and be located and be provided with vibrating motor in the backup pad of protection section of thick bamboo, the braced frame bottom is provided with slide mechanism, and slide mechanism comprises the pulley and the gyro wheel of coaxial setting, and the pulley diameter is less than the gyro wheel diameter.
Preferably, the roller and the pulley are plastic wheels, wherein the roller and the pulley are integrally arranged.
Preferably, the staving diapire is the arc structure, wherein all is provided with the arc scraper blade on the staving diapire of discharging pipe both sides, and is connected through the connecting rod between scraper blade and the stirring rake of below.
Preferably, a rectangular frame sleeved on the two groups of barrel bodies is arranged above the rectangular frame, and the rectangular frame is fixedly connected with the outer side wall of the barrel body.
The invention has the beneficial effects that:
1. the sliding mechanism can freely switch the contact state between the sliding mechanism and the corresponding object on the rail and the flat ground, so that the sliding mechanism can move in two different environments of the rail and the flat ground, and the application range of the sliding mechanism is expanded.
2. The invention forcibly discharges the materials in the barrel body in a mechanical intervention mode, thereby preventing the materials from blocking the discharge pipe to influence the normal discharge work of the barrel body.
Drawings
FIG. 1 is a schematic structural view of the present invention;
fig. 2 is a schematic structural view of the sliding mechanism of the present invention.
In the figure: 1. braced frame, 2, staving, 3, slide mechanism, 31, pulley, 32, gyro wheel, 4, discharging pipe, 5, solenoid valve, 6, frame, 7, motor, 8, transmission shaft, 9, belt pulley I, 10, pivot, 11, stirring rake, 12, spiral stirring vane, 13, scraper blade, 14, connecting rod, 15, belt pulley II, 16, belt, 17, V type pipe, 18, passage, 19, backup pad, 20, connecting plate, 21, protection section of thick bamboo, 22, vibrating motor, 23, rectangular frame.
Detailed Description
The technical scheme of the invention is further specifically described by the following embodiments and the accompanying drawings.
The utility model provides a material device is thrown in transportation for talcum powder, includes rectangle braced frame 1 and sets up staving 2 at 1 top of rectangle frame, wherein 2 tops of staving are provided with the inlet pipe, and 2 bottoms of staving are provided with discharging pipe 4, 4 bottoms of discharging pipe are provided with solenoid valve 5, 2 quantity of staving are two sets of, and are provided with the cover in 1 top of rectangle frame and put up 23 at two sets of staving 2, wherein fixed connection between rectangle frame 23 and the 2 lateral walls of staving. The two sets of tub bodies 2 are fixed by the rectangular frame 23 to reinforce the stability therebetween.
The bottom of the supporting frame 1 is provided with a sliding mechanism 3, the sliding mechanism 3 is composed of a pulley 31 and a roller 32 which are coaxially arranged, the diameter of the pulley 31 is smaller than that of the roller 32, and the roller 32 and the pulley 31 are both plastic wheels.
The sliding mechanism 3 in this embodiment is composed of a pulley 31 and a roller 32, which are coaxially disposed, and the pulley 31 and the roller 32 are integrally disposed to enhance the stability therebetween, wherein the roller 32 is in contact with the ground, so that the bracket 1 mounted with the roller can be suitable for use on flat ground.
Preferably, the diameter of the pulley 31 is smaller than that of the roller 32, so that when the roller 32 contacts the ground, the pulley 31 is suspended and does not contact the ground, thereby achieving the purpose that the pulley 31 does not interfere with the roller 32 to roll on the ground.
Meanwhile, when the sliding mechanism 3 moves in a workshop with a track, the pulley 31 is clamped on the track, so that the supporting frame 1 provided with the pulley can be suitable for being used on the track, and as can be seen from the above, the sliding mechanism 3 in the invention can freely switch the contact state between the track and a flat ground and a corresponding object, wherein when the roller 32 is in contact with the ground and suspends the pulley 31, so that the supporting frame 1 can run on the flat ground, and when the supporting frame needs to run on the track, the supporting frame 1 can run on the track by clamping the pulley 31 on the track, so that the sliding mechanism 3 in the embodiment can move under two different environments of the track and the flat ground, and the application range of the supporting frame 1 provided with the sliding mechanism 3 is improved.
As shown in FIG. 1, a frame 6 is spanned between the tops of the two sets of barrels 2, a motor 7 is arranged on the frame 6, a transmission shaft 8 of the motor 7 is positioned between the two sets of barrels 2, wherein the transmission shaft 8 is provided with a belt pulley I9 positioned above the barrel body 2, the top of the barrel body 2 is provided with a rotating shaft 10 extending into the barrel body, wherein the bottom end of the rotating shaft 10 extends into the discharge pipe 4 above the electromagnetic valve 5, the rotating shaft 10 is provided with a stirring paddle 11 positioned in the barrel body 2, wherein a spiral stirring blade 12 with the top end extending to the bottom in the barrel body 2 is arranged on a rotating shaft 10 positioned in the discharge pipe 4, and the top end of the rotating shaft 10 is also provided with a belt pulley II15 corresponding to the belt pulley I9, the belt pulley I9 is connected with the belt pulley II15 through a belt 16, a V-shaped pipe 17 connected with the two groups of discharge pipes 4 is arranged in the supporting frame 1, wherein a material guide pipe 18 is arranged at the bottom end of the bent part of the V-shaped pipe 17.
When the discharge device is used, the motor 7 drives the transmission shaft 8 and the belt pulley I9 to rotate, the belt pulley I9 drives the belt pulley II15 to rotate through the belt 16, the belt pulley II15 drives the rotating shaft 10 and the stirring paddle 11 to stir products in the barrel body 2 to scatter the products and prevent the products from agglomerating, so that materials can be conveniently discharged through the discharge pipe 4, the electromagnetic valve 5 is opened during feeding, materials at the bottom in the barrel body 2 flow into the V-shaped pipe 17 through the discharge pipe 4 and are discharged through the guide pipe 18, the rotating shaft 10 drives the spiral stirring blade 12 in the discharge pipe 4 to rotate during the process, the materials in the discharge pipe 4 are stirred to prevent the materials from accumulating to block the discharge pipe 4, the materials in the barrel body 2 are discharged through a mechanical intervention mode, and the materials in the other barrel body 2 are switched to be discharged after the materials in the barrel body 2 are discharged.
2 diapalls of staving are the arc structure in this embodiment, wherein all are provided with arc scraper blade 13 on the staving 2 interior diapalls of discharging pipe 4 both sides, and connect through connecting rod 14 between scraper blade 13 and the stirring rake 11 of below. When the stirring paddle 11 is driven to rotate by the rotating shaft 10, the stirring paddle 11 drives the scraping plate 13 to scrape the material on the inner bottom wall of the barrel body 2 through the connecting rod 14, so as to prevent the material from adhering to the bottom end surface of the barrel body 2 and being difficult to discharge.
As shown in fig. 1, a supporting plate 19 is transversely disposed in the opening of the V-shaped pipe 17, a connecting plate 20 which connects the bottom walls of the two sets of barrels 2 and faces the supporting plate 19 is further disposed in the opening of the top of the supporting frame 1, wherein the connecting plate 20 is connected with the supporting plate 19 through a protective cylinder 21 having a mesh structure, and a vibration motor 22 is disposed on the supporting plate 19 in the protective cylinder 21.
When the materials in the barrel body 2 are discharged through the discharge pipe 4 and the V-shaped pipe 17, the vibration motor 22 works to drive the support plate 19 and the connecting plate 20 through the support plate 19 and the protective barrel 21, and the vibrating support plate 19 and the connecting plate 20 drive the V-shaped pipe 17, the discharge pipe 4 and the bottom wall of the barrel body 2 to vibrate, so that the materials in the equipment are influenced by the vibration force and are discharged through the discharge pipe 4, the V-shaped pipe 17 and the material guide pipe 18, thereby achieving the purpose of facilitating the material discharge work in the barrel body 2 through a mechanical intervention mode, the inclined surface of the V-shaped pipe 17 is convenient for the material flow in the process, meanwhile, the heat generated by the work of the vibration motor 22 is discharged through the aperture of the protective barrel 21, thereby facilitating the heat dissipation, and simultaneously playing a protective role in protecting the vibration motor 22.
The present invention has been described in detail, but the above description is only a preferred embodiment of the present invention, and is not to be construed as limiting the scope of the present invention. All equivalent changes and modifications made within the scope of the present invention shall fall within the scope of the present invention.
Claims (4)
1. A conveying and feeding device for talcum powder comprises a rectangular supporting frame and two groups of barrel bodies arranged at the top of the rectangular supporting frame, wherein a feeding pipe is arranged at the top of each barrel body, a discharging pipe is arranged at the bottom of each barrel body, an electromagnetic valve is arranged at the bottom end of each discharging pipe, the two groups of barrel bodies are characterized in that a frame is arranged between the top of each two groups of barrel bodies in a spanning mode, a motor is arranged on each frame, a transmission shaft of each motor is positioned between the two groups of barrel bodies, a belt pulley I positioned above each barrel body is arranged on each transmission shaft, a rotating shaft extending into the top of each barrel body is arranged at the top of each barrel body, the bottom end of each rotating shaft extends into the discharging pipe above the electromagnetic valve, a stirring paddle positioned in each barrel body is arranged on each rotating shaft, spiral stirring blades with the top ends extending to the inner bottom of each barrel body are arranged on the rotating shafts positioned in the discharging pipes, and belt pulleys II corresponding to the belt pulleys I are also arranged at the top ends of the rotating shafts, the utility model discloses a novel belt pulley, including belt pulley I and belt pulley II, be provided with the V type pipe of connecting two sets of discharging pipes in the braced frame, wherein the bending department bottom of V type pipe is provided with the passage, and transversely is provided with the backup pad in the V type pipe opening, still be provided with in the braced frame top opening and connect two sets of staving diapalls and just to the connecting plate of backup pad, wherein connect through network structure's protection section of thick bamboo between connecting plate and the backup pad, and be located and be provided with vibrating motor in the backup pad of protection section of thick bamboo, the braced frame bottom is provided with slide mechanism, and slide mechanism comprises the pulley and the gyro wheel of coaxial setting, and the pulley diameter is less than the gyro wheel diameter.
2. The conveying and feeding device for talc according to claim 1, wherein said rollers and pulleys are plastic wheels, and they are integrated with each other.
3. The conveying and feeding device for the talcum powder according to claim 1, wherein the bottom wall of the barrel body is of an arc-shaped structure, arc-shaped scraping plates are arranged on the bottom wall of the barrel body on two sides of the discharging pipe, and the scraping plates are connected with the stirring paddle at the lowest position through connecting rods.
4. The conveying and feeding device for the talc powder of claim 1, wherein a rectangular frame is disposed above the rectangular frame and sleeved on the two sets of barrel bodies, wherein the rectangular frame is fixedly connected with the outer side wall of the barrel body.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202023167653.9U CN214166005U (en) | 2020-12-24 | 2020-12-24 | A material device is thrown in transportation for talcum powder |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202023167653.9U CN214166005U (en) | 2020-12-24 | 2020-12-24 | A material device is thrown in transportation for talcum powder |
Publications (1)
Publication Number | Publication Date |
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CN214166005U true CN214166005U (en) | 2021-09-10 |
Family
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Family Applications (1)
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CN202023167653.9U Active CN214166005U (en) | 2020-12-24 | 2020-12-24 | A material device is thrown in transportation for talcum powder |
Country Status (1)
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CN (1) | CN214166005U (en) |
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2020
- 2020-12-24 CN CN202023167653.9U patent/CN214166005U/en active Active
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