专利摘要:
A rotary valve adapted to be used in regulating the flow of a particulate material comprises a casing with inlet and outlet conduits and a rotor mounted for rotation about a horizontal axis in the casing. The rotor has a ring of open and closed pockets to meter the particulate material passing through the valve and its periphery is spaced inwardly from the interior of the casing an amount sufficient to prevent squeezing and disintegration of the particulate material between the rotor and inlet conduit. A baffle structure is provided to prevent particulate material from flowing downwardly in the space between the rotor and casing at the up-turning of the rotor.
公开号:SU1590036A3
申请号:SU813358452
申请日:1981-11-16
公开日:1990-08-30
发明作者:Уилльям Маккей Пэтрик;Гиэрра Гарсия Жильберто
申请人:Ильса С.А.(Фирма);
IPC主号:
专利说明:

l /
SUBSTANCE: invention relates to mash-making, concerns structures of rotary closures, used mainly for dosed supply of lightly traumatic materials, such as, for example, sponge iron.
The purpose of the invention is to provide the possibility of moving bulk materials without crushing and breaking up particles.
FIG. 1 shows a pre-applied shutter with a rotor with partially closed pockets; Fig 2 is the same, with an ipOM roto with pockets formed by radial walls with curvilinear elements; in fig. 3 deflector. The rotary shutter for controlling; the flow of granulated material comprises a housing 1 formed by sections interconnected by bolts 2. The housing is provided with an inlet 3 and outlet 4 nozzles located coaxially.
Inside the housing, on the horizontal axis 5, there is a rotor 6 with pockets 7 and 8, while the pockets 7 are open, and the pockets 8 are closed at the top with arcuate walls 9 concentric with the rotor 6. The pockets can also be formed by spaced o, n; walls 10 with curvilinear elements 11 (Fig. 3), while the curvilinear elements are bent in the direction opposite to the direction of rotation of the rotor.
An annular gap 12 is formed between the walls of the housing and the pockets; Which should be somewhat larger than the double diameter of the average size of the material granules to exclude the possibility of its crushing between the walls of the case and the pockets. The criterion for choosing the width of the annular gap is the ratio of the diameter of the rotor to the diameter of the housing, depending on the required gate power, taking into account the minimum crushing of sponge iron particles.
The central corners of the pockets formed by the radial walls 10 need not be the same. The number and size of the pockets, as well as the width of the annular gap T2 may also vary depending on the width of the shutter operation.
The shutter is provided with a deflector, including an arcuate bracket 13, on which is mounted abrading with shift
plate 14. The bracket is connected by rods 15 to the sockets 16. With the help of nuts 17, the position of the bracket can be adjusted. A reflective plate 18 rests against the upper end of the bracket, hingedly mounted in the housing and overlapping the annular gap 12.
Since the housing 1 is completely sealed, with the exception of the rods 15 which can be provided with seals, the valve works well under pressure conditions.
The shutter works as follows.
Granules of material, such as sponge iron, entering through pipe 3, fall into open pockets 7. Their slipping down the annular gap 12 is eliminated by a baffle plate 18. The granules fill the open pockets until the normal angle of repose, which is em approximately 30. This angle of repose is formed immediately during the entry of the granules and is maintained during the period of movement of the shutter, as a result of which the possibility of an uncontrolled flow of granules through the annular gap on the falling side of the rotor is excluded. When the rotor rotates counterclockwise, the pockets move in the direction of the outlet, through which the material granules are discharged.
The displacement of the outlet pipe relative to the vertical axis of the gate with a stable angle of repose of the material limits the flow of granules into the pockets when using rotors of small diameters.
权利要求:
Claims (3)
[1]
Claim 1. Rotary valve to control the flow of granular material, comprising a housing, an inlet fitting mounted in the upper part of the housing, an outlet fitting mounted in the lower part of the housing, a cylindrical rotor with a horizontal axis of rotation and pockets for bulk material around it, different that, in order to allow the bulk materials to move without crushing and breaking up particles, the rotor pockets are filled partially closed between the walls of the body and the frame Anami gap is formed, the shutter is provided with a baffle plate and is pivotally mounted above
a baffle plate that overlaps the gap, the dimensions of which correspond to the size of the cross section of the gap, and the nozzles are aligned, while the deflector, the partition plate and the nozzles are offset relative to the vertical axis of the gate passing through the axis of rotation of the rotor.
[2]
2. Rotary closure according to claim 1, characterized in that the pockets
are formed by radial stencil walls spaced apart from one another and curvilinear elements connected with them,
[3]
3. A rotary closure according to claim 1, characterized in that the curved elements are bent away from each radial wall in a direction opposite to the direction of rotation of the rotor.
Phage.2
/ 7
Fig.Z
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同族专利:
公开号 | 公开日
JPS57114493A|1982-07-16|
US4427135A|1984-01-24|
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JPH0212837B2|1990-03-28|
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引用文献:
公开号 | 申请日 | 公开日 | 申请人 | 专利标题

JPS5538176B2|1974-03-11|1980-10-02|
JPS54165370U|1978-05-12|1979-11-20|
JPS5761041Y2|1978-09-06|1982-12-27|US5076293A|1989-06-19|1991-12-31|R. J. Reynolds Tobacco Company|Process and apparatus for the treatment of tobacco material|
US5003894A|1989-12-11|1991-04-02|Lafferty James G|Seeder clutch for tramlines|
US5078066A|1989-12-11|1992-01-07|Lafferty James G|Seeder clutch for tramlines|
US5296015A|1990-01-09|1994-03-22|Hylsa S.A. De C.V.|Method for the pneumatic transport of large iron-bearing particles|
US5447550A|1994-09-21|1995-09-05|Hylsa S.A. De C.V.|Method and apparatus for the pneumatic transport of iron-bearing particles|
US5743639A|1995-11-02|1998-04-28|Apv Crepaco, Inc.|Ingredient feeder with closely spaced enrobing chamber and blender assembly|
US6206247B1|2000-04-06|2001-03-27|Young Industries, Inc.|Rotary valve for particulate materials|
US7703639B2|2002-06-25|2010-04-27|Tamir Levy|Granular product dispensing system|
US20090110517A1|2007-10-29|2009-04-30|Leon Yuan|Catalyst Flow Control Device for Transfer of Solids Between Two Vessels|
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DE102012206590A1|2012-04-20|2013-10-24|Coperion Gmbh|Method for operating a rotary valve and rotary valve for performing the method|
US20160009488A1|2013-02-27|2016-01-14|Nol-Tec Systems, Inc.|System for utilizing multiple vessels for continuous injection of material into a convey line|
WO2015027099A1|2013-08-21|2015-02-26|Nol-Tec Systems, Inc.|Dispensing assembly with continuous loss of weight feed control|
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US10207878B1|2016-03-31|2019-02-19|Nol-Tec Systems, Inc.|Pneumatic conveying system utilizing a pressured hopper with intermittent volumetric feed control|
CN112429467A|2020-11-20|2021-03-02|河北华丰能源科技发展有限公司|Scraper and coal collecting device|
法律状态:
优先权:
申请号 | 申请日 | 专利标题
US06/207,388|US4427135A|1980-11-17|1980-11-17|Rotary valve|
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