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公开(公告)号:US09579659B2
公开(公告)日:2017-02-28
申请号:US15035421
申请日:2014-11-13
Applicant: FLSmidth A/S
Inventor: David Starr , Taavi Orupold
CPC classification number: B03B5/623
Abstract: A classifier and a method of separating material using such a classifier are disclosed. The classifier comprises a mixing chamber having a mixing fluidization floor and a concentration chamber having a concentration fluidization floor. The concentration fluidization floor and at least a portion of the concentration chamber is located below the mixing fluidization floor. The method of separating material using such a classifier comprises delivering material to be separated into a mixing chamber of the classifier, fluidizing the material in the mixing chamber; transferring some of the material to a concentration chamber of the classifier in fluid communication with the mixing chamber, fluidizing the material in the concentration chamber, forming a concentrating fluidized bed in the concentration chamber, separating the material with at least the concentrating fluidized bed and drawing heavier portions of the separated material from the concentration chamber.
Abstract translation: 公开了使用这种分粒机分离材料的分选机和分离方法。 分选机包括具有混合流化底板和具有浓缩流化底板的浓缩室的混合室。 浓缩流化底板和浓缩室的至少一部分位于混合流化底板下方。 使用这种分级器分离材料的方法包括将要分离的材料输送到分级机的混合室中,使混合室中的材料流化; 将一些材料转移到与混合室流体连通的分级器的浓缩室中,使浓缩室中的材料流化,在浓缩室中形成浓缩流化床,至少将浓缩流化床和拉伸分离材料 较浓的分离物料与浓缩室相比较重。
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公开(公告)号:US20160074874A1
公开(公告)日:2016-03-17
申请号:US14787504
申请日:2013-05-01
Applicant: FLSMIDTH A/S
Inventor: Michael J. Gardiner , Taavi Orupold
Abstract: Disclosed herein are embodiments of a classifier (100) for classification of particles according to their size and/or weight. Classifiers (100) disclosed herein may include a mixing chamber (120), and a separation chamber (110), where the separation chamber may be separable into parts. Classifiers (100) disclosed herein may include a fluidizing chamber (130). The separation chamber (110) may include a de-aeration chamber (151) and a launder (117).
Abstract translation: 本文公开了根据其尺寸和/或重量分类颗粒的分级器(100)的实施例。 本文公开的分级器(100)可以包括混合室(120)和分离室(110),其中分离室可以分离成部分。 本文公开的分类器(100)可以包括流化室(130)。 分离室(110)可以包括除气室(151)和流槽(117)。
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公开(公告)号:US10350610B2
公开(公告)日:2019-07-16
申请号:US15501224
申请日:2015-09-17
Applicant: FLSmidth A/S
Inventor: David Starr , Taavi Orupold
Abstract: A classifier cleaning and optimization device is provided. The device includes a chamber that is adapted to contain a fluidized bed, an array of two or more adjacently arranged inclined plates positioned above the fluidized bed wherein an inclined channel is formed between each pair of adjacent inclined plates, and a means for introducing a process liquid into the chamber between the fluidized bed and the array of inclined plates such that in use, the process fluid travels through at least one of the inclined channels. A method of cleaning the separation section of a classifier is also disclosed herein.
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公开(公告)号:US09421554B2
公开(公告)日:2016-08-23
申请号:US14787504
申请日:2013-05-01
Applicant: FLSmidth A/S
Inventor: Michael J. Gardiner , Taavi Orupold
Abstract: Disclosed herein are embodiments of a classifier (100) for classification of particles according to their size and/or weight. Classifiers (100) disclosed herein may include a mixing chamber (120), and a separation chamber (110), where the separation chamber may be separable into parts. Classifiers (100) disclosed herein may include a fluidizing chamber (130). The separation chamber (110) may include a de-aeration chamber (151) and a launder (117).
Abstract translation: 本文公开了根据其尺寸和/或重量分类颗粒的分级器(100)的实施例。 本文公开的分级器(100)可以包括混合室(120)和分离室(110),其中分离室可以分离成部分。 本文公开的分类器(100)可以包括流化室(130)。 分离室(110)可以包括除气室(151)和流槽(117)。
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公开(公告)号:US20220362785A1
公开(公告)日:2022-11-17
申请号:US17623454
申请日:2020-06-29
Applicant: FLSmidth A/S
Inventor: Taavi Orupold , Michael Gardiner , Byron Sadler , Andrew Klos , David Starr
Abstract: A fluidized bed separator (1) includes a feed section (4) between an upper separation chamber (19) and a main separation chamber (6). The feed section (4) has one or more feed pipes (11) extending horizontally and transversely with respect to a body wall (10) of the fluidized bed separator (1). The one or more feed pipes (11) are positioned completely and entirely underneath the inclined plates (17). An external oversize protection apparatus (3) which is separate from and external to the body wall (10) may be operatively coupled to the one or more feed pipes (11). One or more lamella cartridges (49) may be provided within channels (18) of the upper separation chamber (19), and one or more breakaway plates (54, 55) may be inserted within channels (18) to prevent sanding and facilitate insertion and extraction of the lamella cartridges (49).
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公开(公告)号:US20170232448A1
公开(公告)日:2017-08-17
申请号:US15501224
申请日:2015-09-17
Applicant: FLSmidth A/S
Inventor: David Starr , Taavi Orupold
CPC classification number: B03B5/623 , B01J8/22 , B01J8/44 , B08B3/02 , B08B5/00 , B08B5/02 , B08B9/08
Abstract: A classifier cleaning and optimization device is provided. The device includes a chamber that is adapted to contain a fluidized bed, an array of two or more adjacently arranged inclined plates positioned above the fluidized bed wherein an inclined channel is formed between each pair of adjacent inclined plates, and a means for introducing a process liquid into the chamber between the fluidized bed and the array of inclined plates such that in use, the process fluid travels through at least one of the inclined channels. A method of cleaning the separation section of a classifier is also disclosed herein.
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公开(公告)号:US20160144376A1
公开(公告)日:2016-05-26
申请号:US14787562
申请日:2013-05-01
Applicant: FLSMIDTH A/S
Inventor: Michael J. Gardiner , Taavi Orupold
IPC: B03B5/62
Abstract: Disclosed herein are embodiments of a classifier (100) for separation of particles according to their size and/or density. The classifiers (100) disclosed herein may include a mixing chamber (120) and a separation chamber (110), where the separation chamber (110) may have a collector (118) located between two opposed plate arrays (116A, 116B).
Abstract translation: 本文公开了根据其尺寸和/或密度分离颗粒的分级器(100)的实施例。 本文公开的分级器(100)可以包括混合室(120)和分离室(110),其中分离室(110)可以具有位于两个相对的板阵列(116A,116B)之间的集电器(118)。
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