CN213589961U - Lick brick processingequipment - Google Patents

Lick brick processingequipment Download PDF

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Publication number
CN213589961U
CN213589961U CN202022312969.6U CN202022312969U CN213589961U CN 213589961 U CN213589961 U CN 213589961U CN 202022312969 U CN202022312969 U CN 202022312969U CN 213589961 U CN213589961 U CN 213589961U
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feeding pipe
axle
dust
inclined feeding
port
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CN202022312969.6U
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安添午
罗强
肖敏
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Chengdu Muke Bawei Biotechnology Co ltd
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Chengdu Muke Bawei Biotechnology Co ltd
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Abstract

The utility model relates to a lick brick processingequipment, lick brick processingequipment is the three-layer, is bottom, one deck platform, two layers of platforms respectively, and the cat ladder is all installed to bottom to one deck platform and one deck platform to two layers of platforms, installs the pulse dust remover on two layers of platforms, and the pulse dust remover passes through the pipeline and links to each other with the air compressor of bottom, and the bottom of pulse dust remover communicates to installing the high-efficient machine that mixes of biax paddle formula on the one deck platform, and the high-efficient machine bottom that mixes of biax paddle formula is connected to toper material receiving mouth I, and toper material receiving mouth I other end is connected to the. The utility model discloses can utilize pulse dust collector, dust removal net, dust removal sack to collect the dust, protection staff's breathing safety.

Description

Lick brick processingequipment
Technical Field
The utility model relates to a material mixes dust removal technical field, in particular to lick brick processingequipment.
Background
The licking brick is placed in the grazing and barn feeding processes to supplement nutrients such as energy, crude protein, vitamins, mineral elements and the like to cattle and sheep, improve the utilization rate of feed and feed, promote growth and improve economic benefits. Especially in winter and spring hay season, in cattle and sheep barn feeding green hay, crop straw, silage and other coarse fodder, supplementary feeding lick brick is especially important. In the fattening process of beef cattle and sheep, the licking brick is matched with concentrated feed, so that the daily gain and the feed-meat ratio can be improved, the growth speed of the cattle and sheep is accelerated, the milk production performance of dairy animals is improved, and certain diseases of the cattle and sheep are prevented and treated.
However, during the mixing and stirring of lick material, a large amount of dust is generated, and the dust is sucked into the lung to cause silicosis. In order to avoid the above situation, a mixing and processing device for licking brick materials is urgently needed for removing dust.
SUMMERY OF THE UTILITY MODEL
In order to overcome the problem among the background art, the utility model provides a lick brick processingequipment can utilize pulse dust collector, dust removal net, dust removal sack to collect the dust, protection staff's breathing safety.
In order to achieve the above object, the present invention is realized in the following manner:
a lick brick processing device comprises a pulse dust collector, a double-shaft paddle type efficient mixer, a conical material receiving port, an air compressor, a platform, a ladder stand, a feeding pipe, an auger and a driving motor.
Lick brick processingequipment and be the three-layer, be bottom, one deck platform, double-deck platform respectively, the cat ladder is all installed to bottom to one deck platform and one deck platform to double-deck platform, installs the pulse dust remover on the double-deck platform, the pulse dust remover passes through the pipeline and links to each other with the air compressor of bottom, the bottom of pulse dust remover communicates to the biax paddle formula high efficiency mixer of installing on the one deck platform, biax paddle formula high efficiency mixer bottom is connected to toper material receiving mouth I, toper material receiving mouth I other end is connected to the conveying pipe.
A further technical scheme is that a notch is formed beside the pulse dust collector on the platform layer and is used as a material inlet, the material inlet is communicated to the bottom of the pulse dust collector, a cover plate is arranged on the material inlet, and a mesh grid is arranged on a channel of the material inlet.
The pulse dust collector comprises a top dust collecting motor, a top dust collecting fan, a gas storage tank and a dust collector case, wherein the top dust collecting motor is arranged on the upper portion of the top dust collecting fan, a rotating shaft of the top dust collecting motor is connected with the top dust collecting fan, the top dust collecting fan is arranged on the upper portion of the dust collector case, and the gas storage tank is arranged on one side of the top dust collector case.
A further technical scheme is, high-efficient mixer of biax paddle formula, including shell, axle I, axle II, paddle, dust net, mixer driving motor, shell internally mounted has axle I and axle II, axle I and axle II horizontal direction parallel arrangement, certain distance in interval between axle I and the axle II, still install the paddle through the floor on axle I and the axle II, install the gear on axle I and the tip that axle II stretches out the shell, the gear passes through the chain and links to each other with the mixer driving motor who installs in shell one side.
The further technical scheme is that a dust collecting net is further mounted at the top of the shell, is cylindrical and consists of a cylindrical frame with the inner part woven by steel wires and a dust collecting cloth bag sleeved on the cylindrical frame.
The technical scheme is that the outlet at the bottom of the conical material receiving port I is connected to the middle part of the horizontal feeding pipe, a horizontal feeding pipe packing auger is arranged inside the bottom feeding pipe, one end of the horizontal feeding pipe packing auger is connected to a horizontal feeding pipe driving motor on one side, an inclined feeding port is arranged at the neck part of the horizontal feeding pipe, and the other end of the inclined feeding port is connected to the inclined feeding pipe.
The other end of the inclined feeding pipe is tilted towards the upper part, the end part of the inclined feeding pipe is a rectangular discharge port, a conical receiving port II is arranged on the inclined feeding pipe through a connecting plate, an inclined feeding motor is arranged at the bottom of one end of the inclined feeding pipe, and an inclined feeding pipe auger is arranged on the inclined feeding motor.
A further technical scheme is that the bottom stand column is provided with a fork-shaped stay rib, the stay rib is provided with a reinforcing rib, one end of the straight pulling plate is connected with the horizontal feeding pipe, and the other end of the straight pulling plate is connected with the reinforcing rib.
The further technical scheme is that a material cleaning port is further installed on the side face of the neck of the inclined feeding pipe, and a material observation port is further installed on the inclined feeding port.
The technical scheme is that the top and the four walls of the rectangular discharge port are made of aluminum sheets, the bottom of the rectangular discharge port is provided with an opening, a dust collection cloth bag for further reducing material dust is further mounted at the bottom of the rectangular discharge port, and the dust collection cloth bag is placed in the conical discharge port II.
The utility model has the advantages that:
1. the utility model discloses a set up three layer construction, utilize the dead weight of material to realize the decline of material to in the process of falling through the dust removal of pulse dust remover, the dust removal of dust removal net, and when the dust removal of dust removal sack emptys the material, when the material mixes, the dust collection that rises when the material ejection of compact, reduce dust pollution, protection staff breathes safety, and avoided the material to splash everywhere, realized that the material is collected again, reduced the waste of material.
2. The utility model discloses design netted grid at the feed inlet, netted grid can be through the hole on it, emptys powdery material, can avoid the staff during operation to get into from the feed inlet again, has protected staff's safety. The material observation port is arranged on the inclined feeding port and used for observing whether the material in the horizontal feeding pipe is completely sent out or not, so that the waste of the material is avoided. The material clearance mouth has been seted up at the neck of slope pay-off mouth, utilizes the material dead weight firstly, and the material is easily in this position gathering, and this clearance is the better position of effect, and secondly this department is minimum apart from ground, and the staff of being convenient for collects the material that does not send away from slope conveying pipe.
3. Adopt the mode of horizontal conveying pipe and slope conveying pipe, send the material to certain eminence once more, mainly consider licking the brick in-process in the suppression, need weigh the powder, still need control the dust, adopt horizontal conveying pipe airtight in the conveying pipe with the powder, avoided the powder to splash everywhere, adopt the auger to send the powder to the eminence simultaneously, it is efficient and more reliable than the conveyer belt.
Drawings
Fig. 1 is a schematic view of the overall structure of the present invention;
FIG. 2 is a schematic structural view of a bottom feeding mechanism;
FIG. 3 is a schematic diagram of a two-shaft paddle high-efficiency mixer;
fig. 4 is a schematic structural diagram of the pulse dust collector.
In the figure, 1-pulse dust collector, 2-double-shaft paddle type efficient mixer, 3-conical material receiving port I, 4-air compressor, 5-one-layer platform, 6-two-layer platform, 7-ladder stand, 8-horizontal feeding pipe, 9-horizontal feeding pipe packing auger, 10-horizontal feeding pipe driving motor, 11-diagonal ribs, 12-reinforcing ribs, 13-straight pulling plate, 14-inclined feeding port, 15-inclined feeding pipe, 16-inclined feeding motor, 17-inclined feeding packing auger, 18-rectangular material outlet, 19-dust collection bag, 20-material observation port, 21-conical material receiving port II, 22-connecting plate, 23-material cleaning port, 24-mixer driving motor, 25-shell, 26-shaft I, 27-shaft II, 28-blade, 29-dust collection net, 30-air storage tank, 31-top dust collection motor, 32-top dust collection fan, 33-feed inlet, 34-cover plate and 35-dust collector case.
Detailed Description
In order to make the objects, technical solutions and advantages of the present invention clearer and more obvious, the following will explain in detail the preferred embodiments of the present invention with reference to the accompanying drawings to facilitate the understanding of the skilled person.
As shown in fig. 1-4, the utility model discloses a lick brick processingequipment, including pulse dust collector 1, biax paddle formula high-efficient mixer 2, toper material receiving mouth I3, air compressor 4, one deck platform 5, two-layer platform 6, cat ladder 7, horizontal feeding pipe 8, horizontal feeding pipe auger 9, horizontal feeding pipe driving motor 10, diagonal draw 11, strengthening rib 12, straight pull plate 13, slope pay-off mouth 14, slope pay-off pipe 15, slope pay-off motor 16, slope pay-off pipe auger 17, rectangle discharge gate 18, gather dust sack 19, material viewing aperture 20, toper material receiving mouth II21, connecting plate 22, material clearance mouth 23, mixer driving motor 24, shell 25, axle I26, axle II27, paddle 28, gather dust net 29, gas holder 30, top gather dust motor 31, top gather dust fan 32, feed inlet 33, apron 34, dust remover machine case 35.
Lick brick processingequipment is the three-layer, is bottom, one deck platform 5, two layers of platform 6 respectively, and cat ladder 7 is all installed to bottom to one deck platform 5 and one deck platform 5 to two layers of platform 6, and installation cat ladder 7 is used for supplying the staff from top to bottom, checks equipment operation status.
Install pulse dust collector 1 on the second floor platform 6, pulse dust collector 1 passes through the pipeline and links to each other with the air compressor 4 of bottom, and pulse dust collector 1's bottom communicates to installing the high-efficient mixer 2 of biax paddle formula on one deck platform 5, and the high-efficient mixer 2 bottom of biax paddle formula is connected to toper material receiving mouth I3, and toper material receiving mouth I3 other end is connected to the conveying pipe.
A notch is formed beside the pulse dust collector 1 on the platform 5 at one layer and is a material feeding hole 33, the feeding hole 33 is communicated to the bottom of the pulse dust collector 1, a cover plate 34 is installed on the feeding hole 33, and the cover plate 34 is used for covering the feeding hole 33 to prevent the feeding hole from being blocked when the device stops. The feed inlet 33 passageway is installed netted grid, installs netted grid for when empting the material, prevent that the staff from taking place danger.
The pulse dust collector 1 comprises a top dust collecting motor 31, a top dust collecting fan 32, a gas storage tank 30 and a dust collector case 35, wherein the top dust collecting motor 31 is installed on the upper portion of the top dust collecting fan 32, a rotating shaft of the top dust collecting motor 31 is connected with the top dust collecting fan 32, the top dust collecting fan 32 is installed on the upper portion of the dust collector case 35, and the gas storage tank 30 is installed on one side of the top dust collector case 35. When the materials are poured, the top dust collecting motor 31 rotates to drive the top dust collecting fan 32 to generate negative pressure to adsorb the material dust onto the cloth bag in the dust remover case 35, and when a certain time interval is set, the gas in the gas storage tank 30 is released to generate vibration to shake off the materials on the cloth bag, so that the materials enter the double-shaft paddle type high-efficiency mixer 2 on the two-layer platform 6.
The double-shaft paddle type efficient mixer 2 comprises a shell 25, a shaft I26, a shaft II27, blades 28, a dust collecting net 29 and a mixer driving motor 24, wherein the shaft I26 and the shaft II27 are installed inside the shell 25 of the double-shaft paddle type efficient mixer 2, the shaft I26 and the shaft II27 are arranged in parallel in the horizontal direction, a certain distance is reserved between the shaft I26 and the shaft II27, the blades 28 are also installed on the shaft I26 and the shaft II27 through ribbed plates, gears are installed on the end parts of the shaft I26 and the shaft II27 extending out of the shell 25, and the gears are connected with the mixer driving motor 24 installed on one side of the shell 25 through chains. The top of the shell 25 is also provided with 4 dust collecting nets 29, and each dust collecting net 29 is cylindrical and consists of a cylindrical frame with steel wire weaving inside and a dust collecting cloth bag sleeved on the cylindrical frame.
The dust collecting net 29 is used for collecting dust of the materials which are lifted when the materials are mixed in the double-shaft paddle type efficient mixer 2, and when vibration occurs, the materials which are accumulated to a certain amount are shaken off in the double-shaft paddle type efficient mixer 2, so that the flying of the dust is reduced, and the function of saving the materials is achieved.
The toper material receiving mouth I3 bottom exit linkage is to the middle part of horizontal conveying pipe 8, and 8 internally mounted of bottom conveying pipe have horizontal conveying pipe auger 9, and horizontal conveying pipe auger 9 one end is connected to the horizontal conveying pipe driving motor 10 of one side, installs on the bottom stand to be forked to one side cable stay 11, installs strengthening rib 12 on the cable stay 11, and horizontal conveying pipe 8 is connected to straight pull plate 13 one end, and strengthening rib 12 is connected to the other end.
An inclined feeding port 14 is arranged at the neck part of the horizontal feeding pipe 8, and the other end of the inclined feeding port 14 is connected to an inclined feeding pipe 15. The inclined feeding port 14 is also provided with a material observing port 20 for observing whether the material fed out from the horizontal feeding pipe 8 is completely conveyed by the auger. An inclined feeding motor 16 is arranged at the bottom of one end of the inclined feeding pipe 15, and an inclined feeding pipe packing auger 17 is arranged on the inclined feeding motor 16 and used for feeding materials to a high position.
A material cleaning opening 23 is further arranged on the side face of the neck of the inclined feeding pipe 15 and used for discharging the materials remained in the packing auger during maintenance, and the packing auger is prevented from being blocked to cause motor rotation blockage.
The other end of the inclined feeding pipe 15 is tilted upwards, the end part of the inclined feeding pipe 15 is provided with a rectangular discharging port 18, and the rectangular discharging port 18 can reduce the outlet speed of the material from the inclined feeding pipe 15. The top and the four walls of the rectangular discharge port 18 are made of aluminum sheets, the bottom of the rectangular discharge port is provided with an opening, the bottom of the rectangular discharge port is also provided with a dust collection cloth bag 19 for further reducing material dust, the dust collection cloth bag 19 is placed at the conical material receiving port II21, and the conical material receiving port II21 is installed on the inclined feeding pipe 22 through a connecting plate 22.
This use neotype working process:
dumping materials from a feed inlet 33 of a two-layer platform 6, enabling a pulse dust collector 1 to work, collecting dust of the lifted materials on a cloth bag in a dust collector case 35, enabling most of the materials to enter a double-shaft paddle type efficient mixer 2 for mixing, setting a rotating speed to fully stir and mix the materials, collecting the dust lifted in a stirring process into a dust collection net 29, discharging high-pressure gas in a gas storage tank 30 when an interval time is up, generating vibration, shaking the cloth bag and the materials of the dust collection net 29 down into the double-shaft paddle type efficient mixer 2, and recycling the materials.
When the stirring time is up, a valve on the conical material receiving opening I3 is opened, the material falls in the horizontal feeding pipe 8 under the action of gravity, the material is conveyed to one end under the action of the horizontal feeding pipe auger 9 and falls into the inclined feeding pipe 15 from the inclined feeding opening 14, the inclined feeding pipe auger 17 in the inclined feeding pipe 15 is conveyed to the conical material receiving opening II21 lifted at the other end under the action of the inclined feeding motor 16, and the dust in the discharging process can be further reduced by the dust collecting cloth bag 19 at the bottom of the rectangular material discharging opening 18.
Finally, while the present invention has been described in detail with reference to the preferred embodiments thereof, it will be understood by those skilled in the art that various changes in form and details may be made therein without departing from the scope of the invention encompassed by the appended claims.

Claims (9)

1. A licking brick processing device comprises a pulse dust collector, a double-shaft paddle type high-efficiency mixer, a conical material receiving port, an air compressor, a platform, a ladder stand, a feeding pipe, a packing auger and a driving motor, and is characterized in that,
lick brick processingequipment and be the three-layer, be bottom, one deck platform, double-deck platform respectively, the cat ladder is all installed to bottom to one deck platform and one deck platform to double-deck platform, installs the pulse dust remover on the double-deck platform, the pulse dust remover passes through the pipeline and links to each other with the air compressor of bottom, the bottom of pulse dust remover communicates to the biax paddle formula high efficiency mixer of installing on the one deck platform, biax paddle formula high efficiency mixer bottom is connected to toper material receiving mouth I, toper material receiving mouth I other end is connected to the conveying pipe.
2. The lick brick processing device is characterized in that a notch is formed beside the pulse dust collector on the platform layer and is a material inlet, the material inlet is communicated to the bottom of the pulse dust collector, a cover plate is installed on the material inlet, and a mesh grid is installed on a channel of the material inlet.
3. The lick brick processing device according to claim 1, wherein the pulse dust collector comprises a top dust collecting motor, a top dust collecting fan, a gas storage tank and a dust collector case, the top dust collecting motor is installed on the upper portion of the top dust collecting fan, a rotating shaft of the top dust collecting motor is connected with the top dust collecting fan, the top dust collecting fan is installed on the upper portion of the dust collector case, and the gas storage tank is installed on one side of the top dust collector case.
4. The lick brick processingequipment of claim 1, characterized in that the high-efficient mixer of biax paddle formula, including shell, axle I, axle II, paddle, mixer driving motor, the shell internally mounted has axle I and axle II, axle I and axle II horizontal direction parallel arrangement, certain distance is at a distance between axle I and the axle II, still install the paddle through the floor on axle I and axle II, install the gear on the tip that axle I and axle II stretch out of the shell, the gear passes through the chain and links to each other with the mixer driving motor who installs in shell one side.
5. The lick brick processing device is characterized in that a dust collection net is further mounted at the top of the shell, is cylindrical and consists of a cylindrical frame with the inner part being woven by steel wires and a dust collection cloth bag sleeved on the cylindrical frame.
6. The licking brick processing device according to claim 1, wherein the outlet at the bottom of the conical material receiving port I is connected to the middle part of a horizontal feeding pipe, a horizontal feeding pipe packing auger is installed inside the bottom feeding pipe, one end of the horizontal feeding pipe packing auger is connected to a horizontal feeding pipe driving motor on one side, an inclined feeding port is installed at the neck part of the horizontal feeding pipe, and the other end of the inclined feeding port is connected to the inclined feeding pipe;
the other end of the inclined feeding pipe is tilted towards the upper part, the end part of the inclined feeding pipe is a rectangular discharge port, a conical receiving port II is arranged on the inclined feeding pipe through a connecting plate, an inclined feeding motor is arranged at the bottom of one end of the inclined feeding pipe, and an inclined feeding pipe auger is arranged on the inclined feeding motor.
7. The lick brick processing device according to claim 6, wherein the bottom column is provided with a fork-shaped stay rib, the stay rib is provided with a reinforcing rib, one end of the straight pulling plate is connected with the horizontal feeding pipe, and the other end of the straight pulling plate is connected with the reinforcing rib.
8. The lick brick processing device is characterized in that a material cleaning port is further arranged on the side face of the neck of the inclined feeding pipe, and a material observation port is further arranged on the inclined feeding port.
9. The lick brick processing device according to claim 6, wherein the top and the four walls of the rectangular discharge port are made of aluminum sheets, the bottom is open, a dust collection cloth bag for further reducing material dust is further installed at the bottom, and the dust collection cloth bag is placed in the conical discharge port II.
CN202022312969.6U 2020-10-16 2020-10-16 Lick brick processingequipment Active CN213589961U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202022312969.6U CN213589961U (en) 2020-10-16 2020-10-16 Lick brick processingequipment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202022312969.6U CN213589961U (en) 2020-10-16 2020-10-16 Lick brick processingequipment

Publications (1)

Publication Number Publication Date
CN213589961U true CN213589961U (en) 2021-07-02

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ID=76591194

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202022312969.6U Active CN213589961U (en) 2020-10-16 2020-10-16 Lick brick processingequipment

Country Status (1)

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CN (1) CN213589961U (en)

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