Screen-type Screw Centrifuge
20230034543 ยท 2023-02-02
Inventors
Cpc classification
B01D33/067
PERFORMING OPERATIONS; TRANSPORTING
B04B3/04
PERFORMING OPERATIONS; TRANSPORTING
International classification
B01D33/067
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A screen-type screw centrifuge including a screw drive shaft, a screw hub, a hollow screw main body and a ring-shaped annular-gap cover. At least one axial access channel is formed radially between a screw main body circumferential wall and the annular-gap cover. Using a tool engagement portion of a tightening means, by which the screw main body is fixed to the screw hub with a first screw main body axial end portion thereof, is axially accessible from a second screw main body axial end portion.
Claims
1. A screen-type screw centrifuge comprising: a screw drive shaft extending along an axial axis; a screw hub fixed to an axial end of the screw drive shaft; a hollow screw main body having a first screw main body axial end portion and a second screw main body axial end portion and which extends axially along the axial axis from the first screw main body axial end portion to the second screw main body axial end portion in the direction opposite to a second axial end of the screw drive shaft and which comprises a screw main body circumferential wall extending around the axial axis, wherein the hollow screw main body is detachably fixed at the first screw main body axial end portion to the screw hub with at least one tightening means by which the screw main body and the screw hub are tightened against each other; and a ring-shaped annular-gap cover having a central opening for receiving a feed line for feeding material to be centrifuged into the interior of the screw main body and which extends from the screw main body circumferential wall to the central opening to cover an annular gap between the received feed line and the screw main body circumferential wall when the feed line is inserted into the opening, and wherein the at least one tightening means has a tool engagement portion facing the second screw main body axial end portion, wherein at least one axial access channel is formed radially between the screw main body circumferential wall and the annular-gap cover, through which the tool engagement portion of the respective tightening means is axially accessible from the second screw main body axial end portion, wherein the respective tightening means is formed as an axial tightening means and the screw main body and the screw hub are placed axially one behind the other and are axially tightened to each other by the respective axial tightening means, wherein a screw main body annular flange is formed by and/or on the screw main body circumferential wall at the first screw main body axial end portion, which extends around the axial axis and via which the screw main body is detachably fixed at the first screw main body axial end portion to a hub annular flange of the screw hub, which extends around the axial axis, wherein the screw main body annular flange and the hub annular flange are placed axially one behind the other and are axially tightened together by the respective axial tightening means, and wherein the annular-gap cover includes a cover annular flange extending around the axial axis, wherein the cover annular flange is placed axially between the screw main body annular flange and the hub annular flange, and is axially tightened together with the screw main body annular flange and the hub annular flange by the respective axial tightening means.
2. The screen-type screw centrifuge according to claim 1, wherein the axial access channel has an axial access opening which is disposed radially between the annular-gap cover and the screw main body circumferential wall and which axially faces the second screw main body axial end portion and which is radially overlapped at least partially with the at least one tool engagement portion.
3. The screen-type screw centrifuge according to claim 1, wherein the respective axial tightening means is formed as a screw which includes a screw head by which the respective tool engagement portion is formed.
4. The screen-type screw centrifuge according to claim 1, wherein the screw main body annular flange is formed as a screw main body annular flange extending radially inward with respect to the axial axis, and wherein the hub annular flange is formed as a hub annular flange extending radially outward with respect to the axial axis.
5. The screen-type screw centrifuge according to claim 1, wherein the hollow screw main body is in the form of a hollow screw cone, and wherein the first screw main body axial end portion is a small-diameter axial end portion of the screw cone and the second screw main body axial end portion is a large-diameter end portion of the screw cone.
6. The screen-type screw centrifuge according to claim 1, wherein the annular-gap cover includes a hollow cylindrical or hollow conical cover body including a cover circumferential wall extending around the axial axis, and wherein the axial access channel is formed as an annular channel extending radially around the axial axis between the cover circumferential wall and the screw main body circumferential wall.
7. The screen-type screw centrifuge according to claim 6, further comprising a rotatably supported screen drum having a screen drum circumferential wall, by which the screw main body is surrounded around the axial axis and which is equipped with a screen, and having an adjusting ring disk which extends around the axial axis and which is axially placed between the screw main body annular flange and the hub annular flange, and by which a radial gap between the screw main body and the screen drum circumferential wall is adjustable, wherein the adjusting ring disk is axially tightened by the respective axial tightening means together with the screw main body and the screw hub, and together with the screw main body annular flange and the hub annular flange.
8. The screen-type screw centrifuge according to claim 1, further comprising a separate, annular material feed guide component which extends around the axial axis and is configured to guide the material to be centrifuged, passing through the central opening, to an outer side of the screw main body, wherein the material feed guide component is axially placed between the screw main body and the screw hub and is axially tightened together with the screw main body and the screw hub by the respective tightening means.
9. The screen-type screw centrifuge according to claim 8, wherein the material feed guide component is placed between the cover annular flange and the hub annular flange.
10. The screen-type screw centrifuge according to claim 1, further comprising the feed line for feeding material to be centrifuged into the interior of the screw main body, which is received in the central opening of the annular-gap cover, wherein the feed line includes a feed line end portion which extends parallel to the axial axis and with which the feed line is received in the central opening of the annular-gap cover.
11. A screen-type screw centrifuge system comprising: a screen-type screw centrifuge which includes: a screw drive shaft extending along an axial axis, a screw hub fixed to an axial end of the screw drive shaft, a hollow screw main body which has a first screw main body axial end portion and a second screw main body axial end portion and which extends axially along the axial axis from the first screw main body axial end portion to the second screw main body axial end portion in the direction opposite to a second axial end of the screw drive shaft and which includes a screw main body circumferential wall extending around the axial axis, wherein the hollow screw main body is detachably fixed at the first screw main body axial end portion to the screw hub with at least one tightening means by which the screw main body and the screw hub are tightened against each other, and a ring-shaped annular-gap cover which has a central opening for receiving a feed line for feeding material to be centrifuged into the interior of the screw main body and which extends from the screw main body circumferential wall to the central opening to cover an annular gap between the received feed line and the screw main body circumferential wall when the feed line is inserted into the opening, and wherein the at least one tightening means has a tool engagement portion facing the second screw main body axial end portion, and wherein at least one axial access channel is formed radially between the screw main body circumferential wall and the annular-gap cover, through which the tool engagement portion of the respective tightening means is axially accessible from the second screw main body axial end portion; and a U- or V-shaped holding part which has a first leg and a second leg opposite thereto, which are connected to each other via a base, wherein a holding piece for attachment to a lifting device is arranged on the first leg, and wherein a transverse distance between the two legs in a direction transverse to a longitudinal extension thereof is greater than a radial distance between an inner wall of the screw main body and an outer surface of the screen-type screw centrifuge at an axial level of the screw main body, so that the second leg can engage axially into the interior of the screw main body from the second screw main body end portion and simultaneously the first leg can engage over the screen-type screw centrifuge, to thereby be able to deposit the screw main body on the second leg for a removal of the screw main body from the screen-type screw centrifuge.
12. A method of dismounting a screw main body from a screen-type screw centrifuge of a screen-type screw centrifuge system, wherein the screen-type screw centrifuge system includes a screen-type screw centrifuge having: a screw drive shaft extending along an axial axis, a screw hub fixed to an axial end of the screw drive shaft, a hollow screw main body which has a first screw main body axial end portion and a second screw main body axial end portion and which extends axially along the axial axis from the first screw main body axial end portion to the second screw main body axial end portion in the direction opposite to a second axial end of the screw drive shaft and which comprises a screw main body circumferential wall extending around the axial axis, wherein the hollow screw main body is detachably fixed at the first screw main body axial end portion to the screw hub with at least one tightening means by which the screw main body and the screw hub are tightened against each other, and a ring-shaped annular-gap cover which has a central opening for receiving a feed line for feeding material to be centrifuged into the interior of the screw main body and which extends from the screw main body circumferential wall to the central opening to cover an annular gap between the received feed line and the screw main body circumferential wall when the feed line is inserted into the opening, wherein the at least one tightening means has a tool engagement portion facing the second screw main body axial end portion, and wherein at least one axial access channel is formed radially between the screw main body circumferential wall and the annular-gap cover, through which the tool engagement portion of the respective tightening means is axially accessible from the second screw main body axial end portion; and a U- or V-shaped holding part which has a first leg and a second leg opposite thereto, which are connected to each other via a base, wherein a holding piece for attachment to a lifting device is arranged on the first leg, and wherein a transverse distance between the two legs in a direction transverse to a longitudinal extension thereof is greater than a radial distance between an inner wall of the screw main body and an outer surface of the screen-type screw centrifuge at an axial level of the screw main body, so that the second leg can engage axially into the interior of the screw main body from the second screw main body end portion and simultaneously the first leg can engage over the screen-type screw centrifuge, to thereby be able to deposit the screw main body on the second leg for a removal of the screw main body from the screen-type screw centrifuge, the method comprising: axially inserting a tool into the screw main body from the second screw main body axial end portion thereof into engagement with the tool receiving portion of the respective tightening means; releasing the respective tightening means with the tool; and axially removing the screw main body from the one axial end of the screw drive shaft and from the screen-type screw centrifuge in a direction opposite to the second axial end of the screw drive shaft, and wherein the holding part with the second leg is inserted into the screw main body, wherein the first leg engages over the screw centrifuge, the screw main body is deposited on the second leg after the respective tightening means has been released, and the holding part with the second leg and the screw main body deposited thereon is moved axially from the first end of the screw drive shaft in the direction opposite to the second axial end of the screw drive shaft, and the screw main body is thus removed axially from the screen-type screw centrifuge.
13. A screen-type screw centrifuge comprising: a screw drive shaft extending along an axial axis; a screw hub fixed to an axial end of the screw drive shaft; a hollow screw main body which has a first screw main body axial end portion and a second screw main body axial end portion and which extends axially along the axial axis from the first screw main body axial end portion to the second screw main body axial end portion in the direction opposite to a second axial end of the screw drive shaft and which includes a screw main body circumferential wall extending around the axial axis, wherein the hollow screw main body is detachably fixed at the first screw main body axial end portion to the screw hub with at least one tightening means by which the screw main body and the screw hub are tightened against each other, wherein the respective tightening means is formed as an axial tightening means and the screw main body and the screw hub are placed axially one behind the other and are axially tightened to each other by the respective axial tightening means; a ring-shaped annular-gap cover which has a central opening for receiving a feed line for feeding material to be centrifuged into the interior of the screw main body and which extends from the screw main body circumferential wall to the central opening to cover an annular gap between the received feed line and the screw main body circumferential wall when the feed line is inserted into the opening; a rotatably supported screen drum comprising a screen drum circumferential wall, by which the screw main body is surrounded around the axial axis and which is equipped with a screen means; and an adjusting ring disk which extends around the axial axis and which is axially placed between the screw main body and the screw hub, and by which a radial gap between the screw main body and the screen drum circumferential wall is adjustable, wherein the adjusting ring disk is axially tightened by the respective axial tightening means together with the screw main body and the screw hub, and wherein the at least one tightening means has a tool engagement portion facing the second screw main body axial end portion, wherein at least one axial access channel is formed radially between the screw main body circumferential wall and the annular-gap cover, through which the tool engagement portion of the respective tightening means is axially accessible from the second screw main body axial end portion, and wherein the hollow screw main body is in the form of a hollow screw cone, wherein the first screw main body axial end portion is a small-diameter axial end portion of the screw cone, and the second screw main body axial end portion is a large-diameter end portion of the screw cone.
14. The screen-type screw centrifuge according to claim 13, wherein a screw main body annular flange is formed by and/or on the screw main body circumferential wall at the first screw main body axial end portion, which extends around the axial axis and via which the screw main body is detachably fixed at the first screw main body axial end portion to a hub annular flange of the screw hub, which extends around the axial axis, and wherein the screw main body annular flange and the hub annular flange are placed axially one behind the other and are axially tightened together by the respective axial tightening means.
15. The screen-type screw centrifuge according to claim 14, wherein the adjusting ring disk is axially placed between the screw main body annular flange and the hub annular flange, and wherein the adjusting ring disk is axially tightened with the respective axial tightening means together with the screw main body annular flange and the hub annular flange.
16. The screen-type screw centrifuge according to claim 14, further comprising a separate, annular material feed guide component which extends around the axial axis and which is configured to guide the material to be centrifuged, passing through the central opening, to an outer side of the screw main body, wherein the material feed guide component is axially placed between the screw main body and the screw hub and is axially tightened together with the screw main body and the screw hub by the respective tightening means, and wherein the material feed guide component is placed between the adjusting ring disk and the hub annular flange.
17. The screen-type screw centrifuge according to claim 13, wherein the respective axial tightening means is formed as a screw which includes a screw head by which the respective tool engagement portion is formed.
18. The screen-type screw centrifuge according to claim 13, further comprising a separate, annular material feed guide component which extends around the axial axis and which is configured to guide the material to be centrifuged, passing through the central opening, to an outer side of the screw main body, wherein the material feed guide component is axially placed between the screw main body and the screw hub and is axially tightened together with the screw main body and the screw hub by the respective tightening means, and wherein the material feed guide component is placed between the adjusting ring disk and the screw hub.
Description
IV. BRIEF DESCRIPTION OF THE DRAWINGS
[0025] The invention is explained below by means of embodiment examples with reference to the drawings. These embodiment examples are not intended to limit the invention, but merely to explain to those skilled in the art possible ways of carrying out the invention. In the drawings, the same reference signs are used for the same components throughout all of their figures, in which:
[0026]
[0027]
[0028]
[0029]
[0030]
[0031]
[0032]
[0033]
[0034]
V. DETAILED DESCRIPTION OF THE INVENTION
[0035] According to the embodiments of
[0036] The screw main body 11 is provided with a screw helix 39 on its radially outer side (or outer face). Furthermore, the screw main body 11 is formed in the shape of a hollow screw cone, wherein the first axial end portion 13 is a small-diameter axial end portion of the screw cone and the second axial end portion 15 is a large-diameter end portion of the screw cone.
[0037] The screen-type screw centrifuge 1 includes a separate, ring-shaped material feed guide component (for example, also called a filling lantern) 41, which includes, for example, material guide fins 43, which extends around the axial axis 5 and which is configured to guide the material to be centrifuged, passing through the central opening 29, to the outside of the screw main body 11 (see arrow P2 in
[0038] In the embodiments of
[0039] The respective tightening means 21 is formed, for example, as a screw, and respective threaded holes are formed in the screw hub 7 (for example, in the hub annular flange 49) into which the tightening means 21 can be screwed, to thereby be able to screw the screw body 11 detachably to the screw hub 7. For this purpose, a number of first body through-holes 51 corresponding to the number of tightening means 21 are formed in the screw main body annular flange 47, through which the tightening means 21 extend axially.
[0040] In the embodiments of
[0041] The screen-type screw centrifuge 1 according to the embodiments of
[0042] In filtration operation, the material (for example, the suspension) guided along arrow P2 to the outside of the screw main body 11 is separated by means of the filter means 74 into a filtrate, which passes through the filter means 74 and is discharged along arrow P3 (for example, via a filtrate discharge nozzle), and into a solid material remaining on the filter material 74, which is conveyed by means of the screw helix 39 axially further in the direction of the second screw main body axial end portion 15, in order to fall down there and be discharged along arrow P4.
[0043] In order to adjust a radial gap 80 between the conically shaped screen drum 70 and the conically shaped screw main body 11, the screen-type screw centrifuge 1 according to the embodiment of
[0044] In the embodiment of
[0045] The size of the radial gap 80 can be adjusted by selecting the thickness of the adjusting ring disk 82.
[0046] As an alternative to the above-explained separate configuration of the components shown in
[0047] The screen-type screw centrifuge 1 according to the embodiments of
[0048]
[0049]
[0050] In the embodiment of
[0051] In this embodiment of
[0052] The material feed component 41 is formed as a ring component, and, as can be seen from the sectional view through the material feed component (for example, through the filling lantern) 41 shown in
[0053] The adjusting ring disk 82 is located between the screw hub 7 and the material feed component 41.
[0054] The axial access channel 37 with its axial access opening 38 facing the second screw body axial end portion is formed radially between the screw main body circumferential wall 19 and the annular-gap cover 23 as a continuous annular channel, so that the tool engagement portion 35 of the respective tightening means 21 is axially accessible from the second screw main body axial end portion 15.
[0055] In the embodiment of
[0056] In this embodiment, the material feed component 41 also forms the hub annular flange 49 of the screw hub 7 at the same time, in which threaded holes 140 are formed, into which the tightening means 21, configured as screws, can be screwed axially.
[0057] Furthermore, in this embodiment according to
[0058] The annular gap 33 between an/the axial end 144, limiting the opening 29 and facing the second screw main body axial end portion 15, of the annular-gap cover 23 (and/or here of the cover body (and/or of the filling distributor) 25) and the screw main body circumferential wall 19 of the screw main body 11 serves as or forms at the same time the axial access channel 37 or at least a part of the axial access channel 37, via which the respective tool engagement portion 35 is accessible (for example, freely) from the second screw main body axial end portion 15 and which has its axial access opening 38 radially between the annular-gap cover 23 and the screw main body circumferential wall 19.
[0059] Furthermore, in this embodiment according to
[0060] The material feed component 41 is formed as a ring component, and, as can be seen from the sectional view through the material feed component (for example, through the filling lantern) 41 shown in
[0061] The guide component through-holes 86 are formed in the webs 132, through which the tightening means 21 extend and/or may extend axially.
[0062] The adjusting ring disk 82 is located between the material feed component 41, which is integrally formed with the screw hub 7, and the annular-gap cover 23 (or the cover body 25, which is designed as a filling distributor, or the cover annular flange 53).
LIST OF REFERENCE SIGNS
[0063] 1 screw centrifuge [0064] 3 screw drive shaft [0065] 5 axial axis [0066] 7 screw hub [0067] 9 axial end [0068] 11 screw main body [0069] 13 first screw main body axial end portion [0070] 15 second screw main body axial end portion [0071] 17 second axial end [0072] 19 screw main body circumferential wall [0073] 21 tightening means [0074] 23 annular-gap cover [0075] 25 cover body [0076] 27 conical circumferential wall [0077] 29 central opening [0078] 31 feed line [0079] 33 annular gap [0080] 34 feed line end portion [0081] 35 tool engagement portion [0082] 37 axial access channel [0083] 38 axial access opening [0084] 39 screw helix [0085] 41 material feed guide component [0086] 43 material guide fins [0087] 45 screw helix portion [0088] 47 screw main body annular flange [0089] 49 hub annular flange [0090] 51 body through-holes [0091] 53 cover annular flange [0092] 70 screen drum [0093] 72 screen drum circumferential wall [0094] 74 screen means [0095] 76 drum drive shaft [0096] 80 radial gap [0097] 82 adjusting ring disk [0098] 84 disk through-holes [0099] 86 guide component through-holes [0100] 100 receiving housing [0101] 102 machine frame [0102] 104 pivot bearing [0103] 110 screen-type screw centrifuge system [0104] 112 holding part [0105] 114 first leg [0106] 116 second leg [0107] 118 base [0108] 120 holding piece [0109] 122 lifting device [0110] 130 radial apertures [0111] 132 webs [0112] 134 body apertures [0113] 140 threaded holes [0114] 144 axial end of the annular-gap cover