Methods and apparatus for the continuous monitoring of wear and pressure in centrifugal concentrators
US-2018304277-A1 · Oct 25, 2018 · US
US2017100722A1 · US · A1
| Field | Value |
|---|---|
| Publication number | US-2017100722-A1 |
| Application number | US-201615389228-A |
| Country | US |
| Kind code | A1 |
| Filing date | Dec 22, 2016 |
| Priority date | Dec 30, 2014 |
| Publication date | Apr 13, 2017 |
| Grant date | — |
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The present invention provides a dry method heavy medium separator adopting a dry method heavy medium separation bed and a separation device. According to the dry method heavy medium separator, a floating material end medium drum screen and a sediment end medium drum screen are arranged below a floating material discharge end and a sediment discharge end of the dry method heavy medium separator and used for separating products from media; a bag-type dust collector is used for collecting dust, a dust collector pipeline is arranged at the top of the dry method heavy medium separator, the air draft volume is larger than the air supply volume during working of the dry method heavy medium separator, the inside of the separator is in a negative pressure state, and therefore dust in the dry method heavy medium separator cannot escape; and the whole system is in a fully closed working state. According to the dry method heavy medium separator adopting the dry method heavy medium separation bed and the separation device, the problems that the fluidization density is instable, the air flow distribution is not uniform in a fluidization process, the medium separation efficiency of an existing medium separation screen for fine materials is low, the magnetic medium content of the fine materials subjected to medium separation is high, and the like are solved, and the medium separation efficiency for fine materials can be improved remarkably.
Opening claim text (preview).
We claim: 1 . A dry method heavy medium separator adopting a dry method heavy medium separation bed, wherein the dry method heavy medium separator comprises: a compressed air receiver, a floating material end medium drum screen, a dust collector pipeline, a material inlet, a main heavy medium separation machine, a magnetic separator, a bag-type dust collector, a medium bucket elevator, a Roots blower, a bag-type dust collector induced draft fan, a sediment discharge end medium drum screen, and high-pressure air pipes, wherein the floating material end medium drum screen and the sediment discharge end medium drum screen are arranged below a floating material discharge end and a sediment discharge end of the dry method heavy medium separator, wherein the floating material end medium drum screen and the sediment discharge end medium drum screen are used for separating separation products from media, wherein the bag-type dust collector is used for collecting dust, wherein the dust collector pipeline is arranged at a top of the dry method heavy medium separator, wherein an air draft volume is larger than an air supply volume during working of the dry method heavy medium separator so that the inside of the dry method heavy medium separator is in a negative pressure state such that dust in the dry method heavy medium separator cannot escape, wherein suction pipes are arranged at the floating material end medium drum screen, the sediment discharge end medium drum screen, and the magnetic separator, and wherein the dry method heavy medium separator is in a fully dosed working state. 2 . The dry method heavy medium separator according to claim 1 , wherein the dry method heavy medium separator comprises an air supply system, wherein the air supply system comprises the compressed air receiver, the Roots blower, and the high-pressure air pipes, and wherein the air supply system provides a stable source of air during the working of the dry method heavy medium separator. 3 . The dry method heavy medium separator according to claim 1 , wherein air, a dense medium, and coal flows into the dry method heavy medium separation bed, wherein the air, the dense medium and the coal meet in the separation bed, wherein dense media are in a fluidization separation chamber, and wherein compressed air enters air chambers for primary pressure equalizing and then enters the fluidization separation chamber to fluidize the dense media so as to form to fluidized bed suitable for separation. 4 . The dry method heavy medium separator according to claim 3 , further comprising a double-chain scraper conveyor, wherein the double-chain scraper rotates counterclockwise respectively at different speeds, wherein separation coal enters the double-chain scraper from one end at an upper part of a bed body, wherein fed materials are pushed by an upper chain to move in a first direction and are layered during the movement, wherein a portion of sediment is not pushed by a scraper and goes down to the bottom of the fluidization separation chamber, wherein a lower chain discharges sediment from a tailing end, wherein floating material above the fluidized bed is discharged by the upper chain from a clean coal end, wherein an upper space inside the main heavy medium separation machine is in a negative pressure state, wherein after medium separation with the drum screens, oversize products can be conveyed to a specified position by a conveying device, wherein undersized dense media fall down to a lower medium bed and then are loaded to the medium bucket elevator and returned to the main heavy medium separation machine via a chute, wherein clean coal and gangue obtained after separation by the dry method heavy medium separation bed are respectively discharged from a clean coal outlet and a gangue outlet and then enter respective drum screen medium separation devices for separating media, and wherein the drum screens comprise drive screen surfaces that rotate about central shafts so that materials are subjected to medium separation on the rotating screen surfaces. 5 . The dry method heavy medium separator according to claim 3 , wherein a floating material end discharge device and a sediment end discharge device are arranged on two sides of the main heavy medium separation machine and used for discharging the products and locking air. 6 . A separation method using the dry method heavy medium separator of claim 1 , comprising the following steps: feeding 6-100 mm-grade coal into the dry method heavy medium separator and adding dense media into the dry method heavy medium separator, wherein the 6-100 mm-grade coal is uniformly fed into the dry method heavy medium separator along the width of the dry method heavy medium separator, and wherein the amount of 6-100 mm-grade coal fed into the dry method heavy medium separator and the amount of dense media added to the dry method heavy separator is continuously adjustable; providing compressed air to the inside of the dry method heavy medium separator with an air supply system, and forming a gas-solid two-phase fluidized bed with the dense media so as to realize layering separation based on different densities, wherein the air supply system comprises the Roots blower, the compressed air receiver, and the high-pressure air pipes, wherein an upper part of the dry method heavy medium separator is connected to an air draft dust collection system; arranging, because products discharged by the dry method heavy medium separator carry a certain amount of media, the floating material end medium drum screen and the sediment discharge end medium drum screen below a floating material discharge end and a sediment discharge end of the dry method heavy medium separator, using the floating material end medium drum screen and the sediment discharge end medium drum screen to separate the separation products from media, elevating the separated media into the magnetic separator at the upper part of the dry method heavy medium separator with the medium bucket elevator, removing pulverized coal in the media with the magnetic separator, and unloading pure media inside the dry method heavy medium separator so that the media can be recycled so as to reduce medium consumption; and arranging a dust collection pipeline at the top of the dry method heavy medium separator and connecting the dust collection pipeline to the bag-type dust collector to reduce environmental pollution during the working of the dry method heavy medium separator. 7 . A separation device comprising the dry method heavy medium separator of claim 1 , wherein the separation device is a continuous-operating efficient dry method coal separation system comprising raw coal preparation, separation, medium purification and recycling, air supply, and dust collection on the same platform.
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Combinations of apparatus for separating solids from solids by dry methods applicable to bulk material, e.g. loose articles fit to be handled like bulk material (using wet methods B03B7/00; using gas currents B07B9/00) · CPC title
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while the mixtures are supported by sieves, screens, or like mechanical elements · CPC title
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