CN223878787U - An automatic feeding device for the production of nano-calcium - Google Patents

An automatic feeding device for the production of nano-calcium

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Publication number
CN223878787U
CN223878787U CN202520446387.7U CN202520446387U CN223878787U CN 223878787 U CN223878787 U CN 223878787U CN 202520446387 U CN202520446387 U CN 202520446387U CN 223878787 U CN223878787 U CN 223878787U
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CN
China
Prior art keywords
feeding device
nano
automatic feeding
fixedly connected
motor
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CN202520446387.7U
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Chinese (zh)
Inventor
张青
汪超
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Hubei Fengyuan Calcium Industry Technology Co ltd
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Hubei Fengyuan Calcium Industry Technology Co ltd
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Priority to CN202520446387.7U priority Critical patent/CN223878787U/en
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Publication of CN223878787U publication Critical patent/CN223878787U/en
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Abstract

The utility model provides an automatic feeding device for nano calcium production. The automatic feeding device for nano calcium production comprises a supporting table, wherein a supporting frame is fixedly connected to the top of the supporting table, and a conveying wheel is movably sleeved at the top of the supporting frame. According to the automatic feeding device for nano calcium production, the material is fed into the storage box when the nano calcium raw material is fed, the motor I is started at the moment, so that the motor I can drive the conveying belt to convey through the driving wheel, and the conveying belt can drive the plurality of material taking hoppers to rotate and drive, so that the plurality of material taking hoppers can dig and lift the material in the storage box and feed the material into the crushing box, the stable lifting conveying effect of the material is achieved, the problem that the material is difficult to stably convey when the gradient of the conveying belt is large is solved, and the stability of material lifting conveying is improved.

Description

Automatic feeding device for nano calcium production
Technical Field
The utility model relates to the field of feeding devices, in particular to an automatic feeding device for nano calcium production.
Background
The nano calcium carbonate is widely applied to the fields of rubber, plastics, printing ink, paint and the like, and raw materials and a regulator are required to be added for mixing in the preparation process of the nano calcium carbonate.
In the prior art, for example, CN220264030U is an automatic feeding machine for nano calcium carbonate production, which comprises a storage box, wherein the top surface of the storage box is provided with a feed inlet, the bottom of the storage box, which is opposite to the feed inlet, is provided with a discharge outlet, the left side frame of the storage box is provided with a non-cover trough, and the front side and the rear side of the non-cover trough are fixed frames provided with first conveying belts. According to the utility model, the first conveying belt and the second conveying belt are driven to run simultaneously by the driving motor, so that materials in the non-cover material tank are led into the storage tank along the first conveying belt in cooperation with the inclined chute to replace manual feeding operation, labor intensity is reduced, time and labor are saved, the storage tank is set to be inclined by clinging to the inner wall of the discharge port, the second hydraulic cylinder is in cooperation with the pushing plate to drive the shovel block to push the materials in the storage tank into the discharge port, and the first hydraulic cylinder is in cooperation with the L-shaped baffle plate to control the discharge port, so that the materials can be conveniently and rapidly discharged from the discharge port, and the materials are prevented from being accumulated to the side of the storage tank.
When the nano calcium is produced and put in the prior art, as the nano calcium raw material is mostly small in volume, the nano calcium is difficult to stably place at the top of the conveying belt with a large gradient, so that the conveying belt is used for conveying the nano calcium raw material, the problem that the nano calcium raw material is easy to fall off is solved, and the problem that the feeding effect of the nano calcium raw material is poor is caused.
Therefore, it is necessary to provide an automatic feeding device for nano-calcium production to solve the technical problems.
Disclosure of utility model
The utility model provides an automatic feeding device for nano calcium production, which solves the problems that nano calcium is difficult to stably place at the top of a conveying belt with a larger gradient due to the fact that most of nano calcium raw materials are small in volume, so that the conveying belt is easy to drop when conveying the nano calcium raw materials, and the feeding effect of the nano calcium raw materials is poor.
In order to solve the technical problems, the automatic feeding device for nano calcium production comprises a supporting table, wherein the top of the supporting table is fixedly connected with a supporting frame, the top of the supporting frame is movably sleeved with a conveying wheel, the outer part of the conveying wheel is movably sleeved with a conveying belt, the top of the supporting table is fixedly connected with a containing box, the front surface of the containing box is fixedly provided with a first motor, an output shaft of the first motor is fixedly sleeved with a driving wheel, the side surface of the conveying belt is fixedly connected with a material taking hopper, the side surface of the conveying belt is fixedly connected with a first guide block, the bottom of an inner cavity of the containing box is fixedly connected with a second guide block, the top of the supporting table is fixedly connected with a supporting rod, the top of the supporting rod is fixedly connected with a crushing box, the inner part of the crushing box is provided with a crushing mechanism, the side surface of the crushing box is fixedly sleeved with a discharge hopper, and the bottom of the supporting table is provided with a moving mechanism.
Preferably, the number of the material taking hoppers is eight, and the eight material taking hoppers are uniformly distributed outside the conveying belt.
Preferably, the conveying wheels are located right above the driving wheels, and the number of the conveying wheels is three.
Preferably, the first guide block is located at the middle part of the side surface of the driving wheel, and the first guide block is made of stainless steel.
Preferably, the second guide block is fixedly sleeved in the material taking hopper, and the second guide block and the supporting table are mutually parallel.
Preferably, the crushing mechanism comprises a second motor, the second motor is fixedly arranged on the front surface of the crushing box, and an extrusion wheel is fixedly sleeved on an output shaft of the second motor.
Preferably, the discharge hopper is positioned at the middle part of the side surface of the crushing box, and the discharge hopper is made of stainless steel.
Preferably, the moving mechanism comprises a support column, the support column is fixedly connected to the bottom of the support table, and a sliding wheel is installed at the bottom of the support column.
Compared with the related art, the automatic feeding device for nano calcium production has the following beneficial effects:
the utility model provides an automatic feeding device for nano calcium production, which is characterized in that a material taking hopper is arranged, when nano calcium raw materials are conveyed and put in, materials are put in a storage box, a first motor is started at the moment, so that the first motor can drive a conveying belt to convey through a driving wheel, and the conveying belt can drive a plurality of material taking hoppers to rotate and drive, so that the plurality of material taking hoppers can dig and lift the materials in the storage box and put in a crushing box, the stable lifting and conveying effect of the materials is achieved, the problem that the materials are difficult to stably convey when the gradient of the conveying belt is large is solved, and the stability of material lifting and conveying is improved;
Through setting up crushing mechanism, when the material is thrown into the inside of smashing the case, start No. two motors, no. two motors can drive two extrusion wheels and extrude crushing to the material to reach the preliminary crushing processing effect of material, and then brought the facility for the transportation processing of nano-calcium.
Drawings
FIG. 1 is a schematic structural diagram of a preferred embodiment of an automatic feeding device for nano-calcium production according to the present utility model;
FIG. 2 is a front view of an automatic feeding device for nano-calcium production shown in FIG. 1;
FIG. 3 is a front view of a conveyor belt in the automatic feeding device for nano-calcium production shown in FIG. 1;
Fig. 4 is a front view of a supporting frame in the automatic feeding device for nano-calcium production shown in fig. 1.
The drawing comprises a supporting table 1, a supporting frame 2, a supporting frame 3, a conveying wheel 4, a conveying belt 5, a storage box 6, a first motor, a 7, a driving wheel 8, a material taking hopper 9, a first guide block 10, a second guide block 11, a supporting rod 12, a crushing box 13, a crushing mechanism 131, a second motor 132, a pressing wheel 14, a material discharging hopper 15, a moving mechanism 151, a supporting column 152 and a sliding wheel.
Detailed Description
The utility model will be further described with reference to the drawings and embodiments.
Referring to fig. 1, fig. 2, fig. 3, and fig. 4 in combination, fig. 1 is a schematic structural diagram of a preferred embodiment of an automatic feeding device for nano-calcium production provided by the present utility model, fig. 2 is a front view of the automatic feeding device for nano-calcium production shown in fig. 1, fig. 3 is a front view of a conveyor belt in the automatic feeding device for nano-calcium production shown in fig. 1, and fig. 4 is a front view of a support frame in the automatic feeding device for nano-calcium production shown in fig. 1. The utility model provides an automatic feeding device is used in nano calcium production, which comprises a supporting bench 1, the top fixedly connected with support frame 2 of supporting bench 1, the top activity of support frame 2 has cup jointed delivery wheel 3, the outside activity of delivery wheel 3 has cup jointed conveyer belt 4, the top fixedly connected with containing box 5 of supporting bench 1, the positive fixed mounting of containing box 5 has motor No. 6, fixedly cup joint drive wheel 7 on the output shaft of motor No. 6, the side fixedly connected with material taking hopper 8 of conveyer belt 4, the side fixedly connected with of conveyer belt 4 is a guide block 9, the bottom fixedly connected with of containing box 5 inner chamber is No. two guide blocks 10, the top fixedly connected with bracing piece 11 of supporting bench 1, the top fixedly connected with crushing case 12 of bracing piece 11, the inside of crushing case 12 is provided with crushing mechanism 13, the side fixedly cup joint of crushing case 12 has row's hopper 14, the bottom of supporting bench 1 is provided with moving mechanism 15.
The number of the fetching hoppers 8 is eight, the eight fetching hoppers 8 are uniformly distributed outside the conveying belt 4, and by arranging the fetching hoppers 8, when nano calcium raw materials are conveyed and put in, the materials are put in the storage box 5, the motor 6 is started at the moment, the motor 6 can drive the conveying belt 4 to convey through the driving wheel 7, at the moment, the conveying belt 4 can drive the fetching hoppers 8 to rotate and drive, so that the fetching hoppers 8 can dig and lift the materials in the storage box 5 and put in the crushing box 12, the stable lifting conveying effect of the materials is achieved, the problem that the materials are difficult to convey stably when the gradient of the conveying belt 4 is large is avoided, and the stability of the lifting conveying of the materials is improved.
The conveying wheels 3 are arranged right above the driving wheels 7, the number of the conveying wheels 3 is three, and by arranging the conveying wheels 3, when the conveying belt 4 drives the material taking hopper 8 to take materials, the conveying wheels 3 can limit the conveyed conveying belt 4, so that the problem of shaking when the conveying belt 4 conveys is avoided, and the stability of the material taking hopper 8 during moving is improved.
The first guide block 9 is positioned at the middle part of the side surface of the driving wheel 7, the first guide block 9 is made of stainless steel, and when the materials are driven and conveyed, the first guide block 9 can guide the materials in the storage box 5 to the bottom of the side surface of the conveying belt 4, so that the materials can quickly flow into the material taking hopper 8, the problem that the material taking hopper 8 is difficult to dig the materials when the materials are separated from the material taking hopper 8 is solved, and the stability of material extraction is improved.
The second guide block 10 is fixedly sleeved in the material taking hopper 8, the second guide block 10 and the supporting table 1 are mutually parallel, and when the material conveying is finished and the material is required to be put in, the second guide block 10 can guide the dropped material, so that the dropped material can accurately drop into the crushing box 12, and the accurate material feeding effect of the material is achieved.
The crushing mechanism 13 comprises a second motor 131, the second motor 131 is fixedly arranged on the front surface of the crushing box 12, an output shaft of the second motor 131 is fixedly sleeved with an extrusion wheel 132, and by arranging the crushing mechanism 13, when materials are put into the crushing box 12, the second motor 131 is started, and the second motor 131 can drive the two extrusion wheels 132 to extrude and crush the materials, so that the primary crushing processing effect of the materials is achieved, and convenience is brought to the conveying processing of nano calcium.
The discharge hopper 14 is positioned at the middle part of the side surface of the crushing box 12, and the discharge hopper 14 is made of stainless steel, so that when the crushing of the materials is finished, the crushed materials can flow out from the side surface of the crushing box 12 through the discharge hopper 14, and the processing box is moved to the lower part of the discharge hopper 14 at the moment, so that the materials can be rapidly discharged into the processing box, and the automatic discharging effect of the materials is further achieved.
The moving mechanism 15 comprises a support column 151, the support column 151 is fixedly connected to the bottom of the support table 1, the bottom of the support column 151 is provided with a sliding wheel 152, and by arranging the moving mechanism 15, when the feeding device moves and conveys, the support table 1 is pushed, so that the sliding wheel 152 can drive the support table 1 to move horizontally through the support column 151, namely, the storage box 5 is driven to move horizontally, the moving and conveying effect of the feeding device is achieved, and convenience is brought to the adjustment of the working position of the feeding device.
The utility model provides an automatic feeding device for nano calcium production, which has the following working principle:
Firstly, when nano calcium raw materials are conveyed and put in, the materials are put in the storage box 5, the first motor 6 is started at the moment, the first motor 6 can drive the conveying belt 4 to convey through the driving wheel 7, the conveying belt 4 can drive the plurality of material taking hoppers 8 to rotate and drive, the plurality of material taking hoppers 8 can dig and lift the materials in the storage box 5 and put in the crushing box 12, the stable conveying effect of the materials is achieved, the problem that the materials are difficult to stably convey when the gradient of the conveying belt 4 is large is avoided, the stability of the lifting conveying of the materials is improved, the conveying wheel 3 can limit the conveyed conveying belt 4 when the conveying belt 4 drives the material taking hoppers 8 to take materials, the problem that the conveying belt 4 shakes when conveying is avoided, the stability of the material taking hoppers 8 is improved, the first guide blocks 9 can guide the materials in the storage box 5 to the bottom of the side surfaces of the conveying belt 4 when the materials are driven and conveyed, the materials can rapidly flow to the inside the material taking hoppers 8, the problem that the materials are difficult to stably convey the materials when the material taking hoppers 8 fall down, the guide the material taking hoppers 8 are separated from the material taking hoppers 8 when the material taking hoppers 8 are separated from the material taking hoppers 8, the problem that the accurate material taking hoppers are required to take the materials, and the crushed materials when the material taking hoppers 12 fall down, and the material taking effect is avoided, and the accurate material taking effect of the material taking hopper is achieved, and the material taking effect is achieved, and the stable material taking effect is achieved, and the material taking effect is that the material taking box is accurate when the material taking and the material taking is finished when the material taking box is conveyed and the material taking and is accurately conveyed when the material taking materials to be separated;
When the materials are put into the crushing box 12, the second motor 131 is started, the second motor 131 can drive the two extrusion wheels 132 to extrude and crush the materials, so that the preliminary crushing processing effect of the materials is achieved, the conveying processing of nano calcium is facilitated, when the crushing of the materials is finished, the crushed materials can flow out of the side face of the crushing box 12 through the discharging hopper 14, the processing box is moved to the lower part of the discharging hopper 14 at the moment, the materials can be rapidly discharged into the processing box, the automatic discharging effect of the materials is achieved, when the feeding device is moved and conveyed, the supporting table 1 is pushed, the sliding wheel 152 can drive the supporting table 1 to horizontally move through the supporting columns 151, namely, the containing box 5 is driven to horizontally move, the moving and conveying effect of the feeding device is achieved, and the convenience is brought to the adjustment of the working position of the feeding device.
Compared with the related art, the automatic feeding device for nano calcium production has the following beneficial effects:
Through setting up the hopper 8, when carrying out nano-calcium raw materials and carrying and put in, put in the inside of containing box 5 with the material, start motor 6 this moment for motor 6 can drive conveyer belt 4 through drive wheel 7 and convey, conveyer belt 4 can drive a plurality of hopper 8 rotatory transmission of getting this moment, thereby make a plurality of hopper 8 dig the inside material of containing box 5 and get and then promote, and then put in the inside of smashing case 12, thereby reached the stable promotion conveying effect of material, be difficult to carry the problem of stable transport to the material when having avoided the conveyer belt 4 slope great, thereby improved the stability that the material promoted and carried.
The foregoing description is only illustrative of the present utility model and is not intended to limit the scope of the utility model, and all equivalent structures or equivalent processes or direct or indirect application in other related technical fields are included in the scope of the present utility model.

Claims (8)

1. The utility model provides an automatic feeding device for nano calcium production, includes brace table (1), its characterized in that, the top fixedly connected with support frame (2) of brace table (1), conveyer wheel (3) have been cup jointed in the top activity of support frame (2), conveyer belt (4) have been cup jointed in the outside activity of conveyer wheel (3), the top fixedly connected with containing box (5) of brace table (1), the front fixed mounting of containing box (5) has motor (6) No. one, fixed cup joint drive wheel (7) on the output shaft of motor (6) No. one, the side fixedly connected with extracting hopper (8) of conveyer belt (4), the side fixedly connected with of conveyer belt (4) is led and is sent piece (9) No. one, the bottom fixedly connected with No. two guide and send piece (10) of containing box (5) inner chamber, the top fixedly connected with bracing piece (11) of brace table (1), the top fixedly connected with of bracing piece (11) smash case (12), the inside of smashing case (12) is provided with smashing mechanism (13), smashing case (14) are provided with moving mechanism (15) in a row of fixedly connected with.
2. The automatic feeding device for nano-calcium production according to claim 1, wherein the number of the material taking hoppers (8) is eight, and the eight material taking hoppers (8) are uniformly distributed outside the conveying belt (4).
3. The automatic feeding device for nano-calcium production according to claim 1, wherein the conveying wheels (3) are positioned right above the driving wheels (7), and the number of the conveying wheels (3) is three.
4. The automatic feeding device for nano-calcium production according to claim 1, wherein the first guide block (9) is positioned at the middle part of the side surface of the driving wheel (7), and the first guide block (9) is made of stainless steel.
5. The automatic feeding device for nano-calcium production according to claim 1, wherein the second guide block (10) is fixedly sleeved in the material taking hopper (8), and the second guide block (10) and the supporting table (1) are mutually parallel.
6. The automatic feeding device for nano-calcium production according to claim 1, wherein the crushing mechanism (13) comprises a second motor (131), the second motor (131) is fixedly arranged on the front surface of the crushing box (12), and an extrusion wheel (132) is fixedly sleeved on an output shaft of the second motor (131).
7. The automatic feeding device for nano-calcium production according to claim 1, wherein the discharge hopper (14) is positioned at the middle of the side surface of the crushing box (12), and the discharge hopper (14) is made of stainless steel.
8. The automatic feeding device for nano-calcium production according to claim 1, wherein the moving mechanism (15) comprises a supporting column (151), the supporting column (151) is fixedly connected to the bottom of the supporting table (1), and a sliding wheel (152) is installed at the bottom of the supporting column (151).
CN202520446387.7U 2025-03-14 2025-03-14 An automatic feeding device for the production of nano-calcium Active CN223878787U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202520446387.7U CN223878787U (en) 2025-03-14 2025-03-14 An automatic feeding device for the production of nano-calcium

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202520446387.7U CN223878787U (en) 2025-03-14 2025-03-14 An automatic feeding device for the production of nano-calcium

Publications (1)

Publication Number Publication Date
CN223878787U true CN223878787U (en) 2026-02-06

Family

ID=98634274

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202520446387.7U Active CN223878787U (en) 2025-03-14 2025-03-14 An automatic feeding device for the production of nano-calcium

Country Status (1)

Country Link
CN (1) CN223878787U (en)

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