CN211637336U - High-efficient alumina hollow ball sorting machine - Google Patents

High-efficient alumina hollow ball sorting machine Download PDF

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Publication number
CN211637336U
CN211637336U CN201922327062.4U CN201922327062U CN211637336U CN 211637336 U CN211637336 U CN 211637336U CN 201922327062 U CN201922327062 U CN 201922327062U CN 211637336 U CN211637336 U CN 211637336U
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CN
China
Prior art keywords
axis
plate chain
frame cylinder
rotary frame
rotary
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Expired - Fee Related
Application number
CN201922327062.4U
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Chinese (zh)
Inventor
刘超
王飞
巫肖飞
刘智民
张峰智
王恩广
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Zhengzhou Yuli Industry Co ltd
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Zhengzhou Yuli Industry Co ltd
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Priority to CN201922327062.4U priority Critical patent/CN211637336U/en
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Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The utility model discloses a high-efficiency alumina hollow ball grading machine, which comprises a rotary sieving part and a plate chain sieving part, wherein the rotary sieving part comprises a rotary frame cylinder consisting of an axial baffle and a spiral baffle, the axial baffle is arranged in a circular array relative to the axis of the rotary frame cylinder, the axis of the spiral baffle is coincided with the axis of the rotary frame cylinder, the axis of the rotary frame cylinder is horizontally arranged, a plurality of groups of screens are arranged on the outer circumference of the rotary frame cylinder along the axis, the mesh number of the screens is gradually reduced along the axis direction, a collecting funnel is arranged below each group of screens, the plate chain sieving part comprises a plate chain conveyer which is horizontally arranged, the feeding direction of the plate chain conveyer is vertical to the axis of the rotary frame cylinder, the high-efficiency alumina hollow ball grading machine adopts the combined operation of the rotary sieving part and the plate chain sieving part, the mixture is firstly graded in granularity, and then the ball sieving is carried out, the screening efficiency is high, the error rate is low, and the production cost is reduced.

Description

High-efficient alumina hollow ball sorting machine
Technical Field
The utility model relates to a clean shot selects other equipment technical field, specifically is a high-efficient alumina clean shot selects other machine.
Background
In the metallurgical industry, the hollow ball is an intermediate raw material and is a commodity capable of being directly used, when the hollow ball is produced, direct products of the hollow ball are mixtures of hollow balls, elliptical balls, broken balls, solid balls, irregular balls and the like with different diameters, so that the products need to be screened.
SUMMERY OF THE UTILITY MODEL
The to-be-solved technical problem of the utility model is to overcome current defect, provide a high-efficient alumina clean shot grading machine, adopt rotary screen subsection and plate link screening portion to combine the operation, carry out the particle size classification to the mixture earlier, carry out the ball screening afterwards, the screening efficiency is high, and the error rate is low, helps reduction in production cost, can effectively solve the problem in the background art.
In order to achieve the above object, the utility model provides a following technical scheme: a high-efficiency alumina hollow ball sorting machine comprises a rotary screening part and a plate chain screening part, wherein the rotary screening part comprises a rotary frame cylinder consisting of axial blocking strips and spiral blocking strips, the axial blocking strips are arranged in a circular array relative to the axis of the rotary frame cylinder, the axis of the spiral blocking strips is superposed with the axis of the rotary frame cylinder, the axis of the rotary frame cylinder is horizontally arranged, a plurality of groups of screens are arranged on the outer circumferential surface of the rotary frame cylinder along the axis, the number of the screens is gradually reduced along the axis direction, and a collecting funnel is arranged below each group of screens;
the plate chain screening portion comprises a plate chain conveyor arranged horizontally, the feeding direction of the plate chain conveyor is perpendicular to the axis of the rotary frame barrel, the upper surface of the plate chain conveyor is attached to the lower end opening of the collecting hopper, the plate chain surface of the plate chain conveyor is provided with a conical through hole, and a first storage box is arranged below the plate chain conveyor.
As an optimal technical scheme of the utility model, the lower extreme opening downstream side lateral wall department of collecting the funnel sets up the scraper blade that can overturn, collect the fixed vertical setting of funnel outside and draw formula electro-magnet, the free end that draws formula electro-magnet sets up the dog, one side that the dog lower extreme is close to the scraper blade sets up the arcwall face, when drawing the formula electro-magnet and not getting electric, the dog supports the scraper blade, through the scraper blade effect, intercepts the spheroid in collecting the funnel, inside the spheroid that makes the accord with the requirement enters into tapered through-hole, and the spheroid that is not conform to the requirement is in the plate link surface all the time, when collecting the inside more defective work of gathering of funnel, makes to draw the formula electro-magnet to get electric, with the dog upper part of the body, the scraper blade was released this moment, is overtur.
As an optimal technical scheme of the utility model, the plate chain conveyer surface sets up oblique baffle, oblique baffle is in the downstream side of collecting the funnel, the one end below that oblique baffle is close to the downstream side sets up the second bin, when the defective work release back, is intercepted when the oblique baffle of process, and the surface slip of laminating oblique baffle, until from oblique baffle tip landing, is collected in the second bin.
As an optimal technical scheme of the utility model, the inside rotation of plate chain conveyer sets up wolf toothed roll, wolf toothed roll's axis is parallel with plate chain conveyer end roller axis, wolf toothed roll's outer periphery is tangent with the interior lower surface of plate chain conveyer plate chain, and wolf toothed roll outer periphery surface evenly sets up circular arch, circular bellied interval is the same with the interval of plate chain surface taper type through-hole, and when wolf toothed roll's arch combines with the taper type through-hole, can be ejecting with the inside spheroid of taper type through-hole, avoids the taper type through-hole to be taken up for a long time.
Compared with the prior art, the beneficial effects of the utility model are that: this high-efficient alumina clean shot selects other machine to adopt rotary screen branch and flat chain screening portion to combine the operation, the rotary screen branch sieves the mixture through the screen cloth of different mesh numbers, make the spheroid of different granularities enter into inside the collection funnel that corresponds, combine with the tapered through-hole of flat chain conveyer afterwards, circular spheroid can drop to in the tapered through-hole, along with flat chain conveyer synchronous motion, and irregular or oval spheroid then stops on the flat chain surface, can not fall into in the tapered through-hole, by the scraper blade interception, realize circular spheroidal screening, its screening efficiency is high, the error rate is low, help reducing production cost.
Drawings
FIG. 1 is a schematic structural view of the present invention;
fig. 2 is a sectional view of the present invention;
FIG. 3 is an enlarged view of the position A of the present invention;
fig. 4 is an enlarged view of the position B of the present invention.
In the figure: 1 rotary sieving part, 101 axial baffle, 102 spiral baffle, 103 screen, 104 collecting funnel, 105 scraper, 106 pull electromagnet, 2 plate chain sieving part, 201 plate chain conveyer, 202 wolf tooth roller, 203 inclined baffle, 204 first storage tank, 205 second storage tank.
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. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Referring to fig. 1-4, the present invention provides a technical solution: a high-efficiency alumina hollow ball sorting machine comprises a rotary screening part 1 and a plate chain screening part 2, wherein the rotary screening part 1 comprises a rotary frame cylinder consisting of axial baffles 101 and spiral baffles 102, the axial baffles 101 are arranged in a circular array relative to the axis of the rotary frame cylinder, the axis of the spiral baffles 102 is superposed with the axis of the rotary frame cylinder, the axis of the rotary frame cylinder is horizontally arranged, a plurality of groups of screens 103 are arranged on the outer circumferential surface of the rotary frame cylinder along the axis, the number of the screens 103 is gradually reduced along the axis direction, and a collecting funnel 104 is arranged below each group of screens 103;
the plate chain screening part 2 comprises a plate chain conveyor 201 which is horizontally arranged, the feeding direction of the plate chain conveyor 201 is vertical to the axis of a rotary frame cylinder, the upper surface of the plate chain conveyor 201 is attached to the lower end opening of a collecting hopper 104, a tapered through hole is formed in the surface of a plate chain of the plate chain conveyor 201, and a first storage box 204 is arranged below the plate chain conveyor 201.
Collect the lower extreme opening downstream side lateral wall department of funnel 104 and set up the scraper blade 105 that can overturn, collect funnel 104 outside fixed vertical setting and draw formula electro-magnet 106, the free end that draws formula electro-magnet 106 sets up the dog, the dog lower extreme is close to one side of scraper blade 105 and sets up the arcwall face, when drawing formula electro-magnet 106 not to be electrified, the dog supports scraper blade 105, act on through scraper blade 105, intercept the spheroid in collecting funnel 104, make the spheroid that meets the requirements enter into inside the tapered through-hole, and the spheroid that does not meet the requirements is on the plate chain surface all the time, when collecting the more defective work of the inside gathering of funnel 104, make and draw formula electro-magnet 106 to be electrified, with the dog upper part of the body, scraper blade 105 is released this moment, the motion of following the.
The inclined baffle 203 is arranged on the surface of the plate chain conveyor 201, the inclined baffle 203 is positioned on the downstream side of the collecting hopper 104, the second storage box 205 is arranged below one end, close to the downstream side, of the inclined baffle 203, after unqualified products are released, the unqualified products are intercepted when passing through the inclined baffle 203, the surface of the inclined baffle 203 is attached to slide until the unqualified products slide down from the end part of the inclined baffle 203, and the inclined baffle 203 is collected in the second storage box 205.
The inner part of the plate chain conveyor 201 is rotatably provided with the wolf tooth roller 202, the axis of the wolf tooth roller 202 is parallel to the axis of the rolling roller at the end part of the plate chain conveyor 201, the outer circumferential surface of the wolf tooth roller 202 is tangent to the inner lower surface of the plate chain conveyor 201, circular bulges are uniformly arranged on the surface of the outer circumferential surface of the wolf tooth roller 202, the distance between the circular bulges is the same as that between conical through holes on the surface of the plate chain, when the bulges of the wolf tooth roller 202 are combined with the conical through holes, spheres in the conical through holes can be ejected out, and the conical through holes are prevented from being occupied for.
When in use: the method comprises the steps of respectively connecting a rotary frame cylinder, a plate chain conveyor 201 and a wolf tooth roller 202 with external rotary power, ensuring that the linear speeds of the wolf tooth roller 202 and the plate chain conveyor 201 are equal, firstly separating a produced mixture into hollow balls and solid balls through a cyclone separator, then putting the hollow balls into the rotary frame cylinder from one larger end of a screen 103, rotating the rotary frame cylinder, driving the mixture to roll in the rotary frame cylinder through an axial barrier strip 101, driving the mixture to axially feed through a spiral barrier strip 102, screening the mixture from the screen 103 with a proper rear end, entering a corresponding collecting hopper 104, enabling the circular balls to enter a conical through hole through the interception effect of a scraper 105 in the collecting hopper 104, feeding along with the plate chain conveyor 201, and separating the balls from the conical through hole and dropping into a first storage box 204 when the conical through hole overturns.
The sphere which is not qualified is temporarily stored in the collecting hopper 104, when the internal storage amount is large, the pull type electromagnet 106 drives the stop block to contract upwards, the scraping plate 105 is released, the non-qualified sphere flows out, but is intercepted by the inclined baffle plate 203 and is collected in the second storage tank 205, then the pull type electromagnet 106 is powered off, the stop block is reset at the moment, the scraping plate 105 is abutted again, and the screening of the sphere is continued.
The utility model discloses a rotary screening part 1 and 2 combination operations of flat link chain screening portion, rotary screening part 1 sieves the mixture through the screen cloth 103 of different mesh numbers, make the spheroid of different granularities enter into corresponding collection funnel 104 inside, combine with the tapered through-hole of flat link chain conveyer 201 afterwards, circular spheroid can drop to in the tapered through-hole, along with flat link chain conveyer 201 synchronous motion, and irregular or oval spheroid then stops on the flat link chain surface, can not fall into in the tapered through-hole, by scraper blade 105 interception, realize circular spheroidal screening, its screening efficiency is high, the error rate is low, help reduction in production cost.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.

Claims (4)

1. The utility model provides a high-efficient alumina clean ball selects other machine, includes rotary screen part (1) and flat link chain screening part (2), its characterized in that: the rotary screening part (1) comprises a rotary frame cylinder consisting of axial retaining strips (101) and spiral retaining strips (102), wherein the axial retaining strips (101) are arranged in a circular array relative to the axis of the rotary frame cylinder, the axis of the spiral retaining strips (102) is overlapped with the axis of the rotary frame cylinder, the axis of the rotary frame cylinder is horizontally arranged, a plurality of groups of screens (103) are arranged on the outer circumferential surface of the rotary frame cylinder along the axis, the mesh number of the screens (103) is gradually reduced along the axis direction, and a collecting funnel (104) is arranged below each group of screens (103);
the flat link chain screening portion (2) is including flat link chain conveyer (201) that the level was arranged, the direction of feed of flat link chain conveyer (201) is perpendicular with the axis of gyration frame section of thick bamboo, the upper surface of flat link chain conveyer (201) is laminated with the lower extreme opening of collecting funnel (104) mutually, the flat link chain surface of flat link chain conveyer (201) sets up the tapered through-hole, the below of flat link chain conveyer (201) sets up first bin (204).
2. The high-efficiency alumina hollow sphere sorter according to claim 1, wherein: the scraper blade (105) that can overturn is set up to the lower extreme opening downstream side lateral wall department of collecting funnel (104), collect funnel (104) outside fixed vertical setting and draw formula electro-magnet (106), the free end that draws formula electro-magnet (106) sets up the dog, one side that the dog lower extreme is close to scraper blade (105) sets up the arcwall face, when drawing formula electro-magnet (106) when not having the electricity, the dog supports scraper blade (105).
3. The high-efficiency alumina hollow sphere sorter according to claim 2, wherein: the plate chain conveyor (201) surface sets up inclined baffle (203), inclined baffle (203) are in the downstream side of collecting funnel (104), inclined baffle (203) are close to the one end below on downstream side and are set up second bin (205).
4. The high-efficiency alumina hollow sphere sorter according to claim 1, wherein: the inside rotation of plate chain conveyer (201) sets up wolf tooth roller (202), the axis and plate chain conveyer (201) tip roller axis of wolf tooth roller (202) are parallel, the outer periphery of wolf tooth roller (202) is tangent with the interior lower surface of plate chain conveyer (201) plate chain, and wolf tooth roller (202) outer periphery surface evenly sets up circular arch, circular bellied interval is the same with the interval of plate chain surface taper type through-hole.
CN201922327062.4U 2019-12-23 2019-12-23 High-efficient alumina hollow ball sorting machine Expired - Fee Related CN211637336U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201922327062.4U CN211637336U (en) 2019-12-23 2019-12-23 High-efficient alumina hollow ball sorting machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201922327062.4U CN211637336U (en) 2019-12-23 2019-12-23 High-efficient alumina hollow ball sorting machine

Publications (1)

Publication Number Publication Date
CN211637336U true CN211637336U (en) 2020-10-09

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ID=72698023

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Application Number Title Priority Date Filing Date
CN201922327062.4U Expired - Fee Related CN211637336U (en) 2019-12-23 2019-12-23 High-efficient alumina hollow ball sorting machine

Country Status (1)

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CN (1) CN211637336U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112934913A (en) * 2021-01-27 2021-06-11 淄博高新区成大机械设计研究所 Rubber recycling device and using method thereof

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112934913A (en) * 2021-01-27 2021-06-11 淄博高新区成大机械设计研究所 Rubber recycling device and using method thereof

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Granted publication date: 20201009

Termination date: 20211223