CN210333320U - Ammonium phosphate granule screening plant - Google Patents

Ammonium phosphate granule screening plant Download PDF

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Publication number
CN210333320U
CN210333320U CN201920983434.6U CN201920983434U CN210333320U CN 210333320 U CN210333320 U CN 210333320U CN 201920983434 U CN201920983434 U CN 201920983434U CN 210333320 U CN210333320 U CN 210333320U
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cavity
ammonium phosphate
fixedly connected
sieve
sieve plate
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CN201920983434.6U
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Chinese (zh)
Inventor
钟守兵
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Zhongxiang Dasheng Chemical Co ltd
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Zhongxiang Dasheng Chemical Co ltd
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Abstract

The utility model discloses an ammonium phosphate granule screening plant, the power distribution box comprises a box body, be equipped with the cavity in the box, the upper end of box is fixed to be inserted and is equipped with the communicating inlet pipe with the cavity, be equipped with the sieve in the cavity, be equipped with a plurality of small openings in the sieve, the first vibrating motor of lower extreme fixedly connected with of sieve, be equipped with the first thing groove of putting on the cavity inside wall, the one end of sieve extends to the first thing inslot of putting, be equipped with well cavity in the sieve, well cavity interpolation is equipped with the gag lever post, the both ends of gag lever post are run through well cavity respectively and are put the relative lateral wall fixed connection of thing inslot with first, the cover is equipped with two third springs on the gag lever post, two the third spring is located the both sides. The utility model discloses a setting of sieve fraction filtering mechanism can sieve the ammonium phosphate granule of different volumes to filter dust impurity wherein, thereby improve the quality of ammonium phosphate granule after the packing.

Description

Ammonium phosphate granule screening plant
Technical Field
The utility model relates to a screening technical field especially relates to an ammonium phosphate granule screening plant.
Background
Ammonium phosphate, also known as triammonium phosphate, an inorganic compound, of the formula (NH4)3PO4, is an ammonium salt of phosphoric acid, in the presence of anhydrate and hydrate, is a colorless crystal or an off-white powder, sometimes in the form of granules, readily soluble in water, contains nitrogen and phosphorus, is a complex fertilizer, and needs to be sieved after being granulated.
The existing ammonium phosphate particle screening device can only carry out simple screening, and can not screen particles with different volumes due to different particle sizes, so that the particles with different sizes are mixed together, and the quality of packaged ammonium phosphate is influenced.
SUMMERY OF THE UTILITY MODEL
The utility model aims at solving the problem that the particles with different volumes cannot be screened, so that the particles with different sizes are mixed together, the quality of the packaged ammonium phosphate is influenced, and the ammonium phosphate particle screening device is provided.
In order to achieve the above purpose, the utility model adopts the following technical scheme:
a ammonium phosphate particle screening device comprises a box body, wherein a cavity is arranged in the box body, an inlet pipe communicated with the cavity is fixedly inserted in the upper end of the box body, a screen plate is arranged in the cavity, a plurality of leakage holes are formed in the screen plate, a first vibrating motor is fixedly connected to the lower end of the screen plate, a first object placing groove is formed in the inner side wall of the cavity, one end of the screen plate extends into the first object placing groove, a hollow groove is formed in the screen plate, a limiting rod is inserted in the hollow groove, two ends of the limiting rod respectively penetrate through the hollow groove and are fixedly connected with the side wall opposite to the first object placing groove, two third springs are sleeved on the limiting rod and are respectively located on two sides of the screen plate, a first discharge hole communicated with the cavity is formed in the outer side wall of the box body, the lower end of the screen plate penetrates through a first discharge hole, a second spring is fixedly connected between the upper end of the, the first discharge port is positioned below the first object placing groove, the filter plate is arranged in the cavity and positioned below the filter plate, the lower end of the filter plate is fixedly connected with a second vibrating motor, the second object placing groove is arranged in the cavity, one end of the filter plate extends into the second object placing groove, a first spring is fixedly connected between the lower end of the filter plate and the side wall of the bottom end in the second object placing groove, a second discharge port is arranged at one side of the box body, which is far away from the first discharge port, the lower end of the filter plate penetrates through the second discharge port, a fourth spring is fixedly connected between the upper end of the second discharge port and the side wall of the lower end of the filter plate, the position of the second discharge port is lower than that of the second object placing groove, a dust storage box is arranged in the cavity and positioned at the lower end of the filter plate, and one end of the, the dust storage box is connected with the box body in a sliding manner.
Preferably, a plurality of grooves are formed in the side wall of the inner bottom end of the cavity, balls are arranged in the grooves, and the balls are abutted to the side wall of the lower end of the dust storage box.
Preferably, the outer side wall of the box body is provided with an observation port, and transparent glass is fixedly embedded in the observation port.
Preferably, a handle is fixedly connected to one side of the baffle plate, which is far away from the dust storage box.
Preferably, the number of the fourth spring and the second spring is two.
Preferably, the lower end of the box body is fixedly connected with four rubber pads which are distributed in a rectangular shape.
Has the advantages that:
1. first, the power supply of a first vibrating motor is switched on, the first vibrating motor is started, ammonium phosphate particles are put into a cavity through a feeding pipe and then fall onto a sieve plate, the sieve plate is driven to shake through the first vibrating motor, the sieve plate can be prevented from falling through the arrangement of a limiting rod, the sieve plate can be supported through the arrangement of a third spring and a second spring, larger ammonium phosphate particles can be discharged through a first discharge port, smaller ammonium phosphate particles and dust impurities can leak onto the sieve plate along with the sieve mesh, then, the power supply of a second vibrating motor is switched on, the second vibrating motor is started to drive the sieve plate to shake, the filter plate can be supported through the arrangement of a fourth spring and the first spring, the dust impurities on the sieve plate fall into a dust storage box under the shaking effect, smaller ammonium phosphate particles are discharged through a second discharge port, a baffle is pulled to drive the dust storage box, and the dust storage box is taken out for cleaning, the utility model can screen the ammonium phosphate particles with different volumes and filter the dust impurities therein by setting the screening and filtering mechanism, thereby improving the quality of the ammonium phosphate particles after being packaged;
2. through the setting of ball, can reduce the frictional force between dust storage box and the box, reduce the removal resistance, through clear glass's setting, but convenience of customers observes the inside condition of box, through the setting of handle, can convenience of customers stimulate the baffle, and the quantity of fourth spring and second spring is two, can improve the holding power, through the setting of rubber pad, can strengthen overall stability.
Drawings
Fig. 1 is a schematic structural diagram of an ammonium phosphate particle screening device provided by the present invention;
fig. 2 is a schematic side view of the ammonium phosphate particle screening device of the present invention;
fig. 3 is a schematic structural diagram of a position a of the ammonium phosphate particle screening device provided by the utility model.
In the figure: 1-box, 2-dust storage box, 3-ball, 4-handle, 5-baffle, 6-first spring, 7-second spring, 8-sieve plate, 9-feeding pipe, 10-third spring, 11-first vibrating motor, 12-second vibrating motor, 13-filter plate, 14-fourth spring, 15-transparent glass and 16-limiting rod.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments.
Referring to fig. 1-3, a ammonium phosphate particle screening device, comprising a box body 1, a cavity is arranged in the box body 1, a feeding pipe 9 communicated with the cavity is fixedly inserted at the upper end of the box body 1 for conveying ammonium phosphate particles into the cavity, a screen plate 8 is arranged in the cavity for screening the ammonium phosphate particles, a plurality of leakage holes are arranged in the screen plate 8 for conveying smaller ammonium phosphate particles onto a screen plate 13, a first vibrating motor 11 is fixedly connected at the lower end of the screen plate 8 for improving screening efficiency, a first object placing groove is arranged on the inner side wall of the cavity, one end of the screen plate 8 extends into the first object placing groove, a hollow groove is arranged in the screen plate 8, a limiting rod 16 is inserted in the hollow groove for preventing the screen plate 8 from falling off, two ends of the limiting rod 16 respectively penetrate through the hollow groove and are fixedly connected with the side wall opposite to the first object placing groove, two third springs 10 are sleeved on, the second spring 10 is respectively arranged at two sides of the sieve plate 8, a first discharge port communicated with the cavity is arranged on the outer side wall of the box body 1 and used for discharging larger ammonium phosphate particles, the lower end of the sieve plate 8 penetrates through the first discharge port, a second spring 7 is fixedly connected between the upper end of the first discharge port and the side wall of the lower end of the sieve plate 8 and used for supporting, the first discharge port is lower than the first storage tank, a filter plate 13 is arranged in the cavity and used for filtering dust and impurities, the filter plate 13 is arranged below the sieve plate 8, a second vibrating motor 12 is fixedly connected at the lower end of the filter plate 13 and used for improving the filtering effect, a second storage tank is arranged in the cavity, one end of the filter plate 13 extends into the second storage tank, and a first spring 6 is fixedly connected between the lower end of the filter plate 13 and the side wall of the bottom end of the second storage tank and, one side that first discharge gate was kept away from to box 1 is equipped with the second discharge gate, be used for discharging less ammonium phosphate granule, the lower extreme of filter 13 runs through the second discharge gate, fixedly connected with fourth spring 14 between the upper end of second discharge gate and the lower extreme lateral wall of filter 13, be used for playing the supporting role, the position of second discharge gate is less than the second and puts the thing groove, be equipped with storage dust box 2 in the cavity, be used for storing dust and impurity, storage dust box 2 is located the lower extreme of filter 13, storage dust box 2's one end runs through box 1 and fixedly connected with baffle 5, be used for driving storage dust box 2, storage dust box 2 is sliding connection with box 1.
In this embodiment, be equipped with a plurality of recesses on the lateral wall of cavity bottom end side, be equipped with ball 3 in the recess, ball 3 offsets with the lower extreme lateral wall of dust storage box 2, be used for reducing the frictional force between dust storage box 2 and the box 1, reduce the removal resistance, be equipped with the viewing aperture on the lateral wall of box 1, the fixed clear glass 15 that is equipped with that inlays in the viewing aperture, be used for convenience of customers to observe the inside condition of box 1, one side fixedly connected with handle 4 of dust storage box 2 is kept away from to baffle 5, be used for convenience of customers pulling baffle 5, fourth spring 14 is two with the quantity of second spring 7, be used for improving the holding power, the lower extreme fixedly connected with of box 1 is four rubber pads that the rectangle distributes, be used for reinforcing.
In the embodiment, when the vibrating screen is used, the power supply of the first vibrating motor 11 is firstly switched on, the first vibrating motor 11 is started, the ammonium phosphate particles are put into the cavity through the feeding pipe 9 and then fall on the screen plate 8, the screen plate 8 is driven to shake through the first vibrating motor 11, the screen plate 8 can be prevented from falling off through the arrangement of the limiting rod 16, the screen plate 8 can be supported through the arrangement of the third spring 10 and the second spring 7, larger ammonium phosphate particles can be discharged through the first discharge hole, smaller ammonium phosphate particles and dust impurities can leak to the screen plate 13 along with the screen hole, the power supply of the second vibrating motor 12 is switched on, the second vibrating motor 12 is started to drive the screen plate 13 to shake, the dust impurities on the screen plate 13 can be supported through the arrangement of the fourth spring 14 and the first spring 6, the dust impurities on the screen plate 13 fall into the dust storage box 2 under the shaking effect, and the smaller ammonium phosphate particles are discharged through the second discharge hole, pulling baffle 5 drives storage dust box 2, will store up dust box 2 and take out and to clear up, the utility model discloses a setting of sieve and filter mechanism can sieve the ammonium phosphate granule of different volumes to filter dust impurity wherein, thereby improve the quality of ammonium phosphate granule after the packing.
The above, only be the concrete implementation of the preferred embodiment of the present invention, but the protection scope of the present invention is not limited thereto, and any person skilled in the art is in the technical scope of the present invention, according to the technical solution of the present invention and the utility model, the concept of which is equivalent to replace or change, should be covered within the protection scope of the present invention.

Claims (6)

1. The utility model provides a phosphorus ammonium granule screening plant, includes box (1), its characterized in that: the improved structure of the sieve plate is characterized in that a cavity is arranged in the box body (1), an inlet pipe (9) communicated with the cavity is fixedly inserted in the upper end of the box body (1), a sieve plate (8) is arranged in the cavity, a plurality of leakage holes are formed in the sieve plate (8), a first vibrating motor (11) is fixedly connected to the lower end of the sieve plate (8), a first object containing groove is formed in the inner side wall of the cavity, one end of the sieve plate (8) extends into the first object containing groove, a hollow groove is formed in the sieve plate (8), a limiting rod (16) is inserted into the hollow groove, two ends of the limiting rod (16) respectively penetrate through the hollow groove and are fixedly connected with the side wall opposite to the first object containing groove, two third springs (10) are sleeved on the limiting rod (16), the two third springs (10) are respectively located on two sides of the sieve plate (8), and a first discharge hole communicated with the cavity is, the lower end of the sieve plate (8) penetrates through the first discharge hole, a second spring (7) is fixedly connected between the upper end of the first discharge hole and the side wall of the lower end of the sieve plate (8), the first discharge hole is lower than the first object placing groove, a filter plate (13) is arranged in the cavity, the filter plate (13) is arranged below the sieve plate (8), a second vibrating motor (12) is fixedly connected with the lower end of the filter plate (13), the second object placing groove is arranged in the cavity, one end of the filter plate (13) extends into the second object placing groove, a first spring (6) is fixedly connected between the lower end of the filter plate (13) and the side wall of the bottom end in the second object placing groove, a second discharge hole is arranged on one side of the box body (1) far away from the first discharge hole, the lower end of the filter plate (13) penetrates through the second discharge hole, a fourth spring (14) is fixedly connected between the upper end of the second discharge hole, the position of the second discharge port is lower than that of the second object placing groove, a dust storage box (2) is arranged in the cavity, the dust storage box (2) is located at the lower end of the filter plate (13), one end of the dust storage box (2) penetrates through the box body (1) and is fixedly connected with the baffle (5), and the dust storage box (2) is in sliding connection with the box body (1).
2. The ammonium phosphate particle screening device of claim 1, wherein: the side wall of the bottom end of the cavity is provided with a plurality of grooves, the grooves are internally provided with balls (3), and the balls (3) are abutted against the side wall of the lower end of the dust storage box (2).
3. The ammonium phosphate particle screening device of claim 1, wherein: the outer side wall of the box body (1) is provided with an observation port, and transparent glass (15) is fixedly embedded in the observation port.
4. The ammonium phosphate particle screening device of claim 1, wherein: one side of the baffle (5) far away from the dust storage box (2) is fixedly connected with a handle (4).
5. The ammonium phosphate particle screening device of claim 1, wherein: the number of the fourth springs (14) and the number of the second springs (7) are both two.
6. The ammonium phosphate particle screening device of claim 1, wherein: the lower end of the box body (1) is fixedly connected with four rubber pads which are distributed in a rectangular shape.
CN201920983434.6U 2019-06-27 2019-06-27 Ammonium phosphate granule screening plant Active CN210333320U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201920983434.6U CN210333320U (en) 2019-06-27 2019-06-27 Ammonium phosphate granule screening plant

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201920983434.6U CN210333320U (en) 2019-06-27 2019-06-27 Ammonium phosphate granule screening plant

Publications (1)

Publication Number Publication Date
CN210333320U true CN210333320U (en) 2020-04-17

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN201920983434.6U Active CN210333320U (en) 2019-06-27 2019-06-27 Ammonium phosphate granule screening plant

Country Status (1)

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CN (1) CN210333320U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111448881A (en) * 2020-04-29 2020-07-28 澄迈农博农业发展有限公司 Small fertilizer applicator for agricultural field

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111448881A (en) * 2020-04-29 2020-07-28 澄迈农博农业发展有限公司 Small fertilizer applicator for agricultural field

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