WO2010140123A1 - Rex mill roller-set shaft sealing - Google Patents

Rex mill roller-set shaft sealing Download PDF

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Publication number
WO2010140123A1
WO2010140123A1 PCT/IB2010/052450 IB2010052450W WO2010140123A1 WO 2010140123 A1 WO2010140123 A1 WO 2010140123A1 IB 2010052450 W IB2010052450 W IB 2010052450W WO 2010140123 A1 WO2010140123 A1 WO 2010140123A1
Authority
WO
WIPO (PCT)
Prior art keywords
sealing
seal
machine elements
helical thread
sealing part
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Ceased
Application number
PCT/IB2010/052450
Other languages
French (fr)
Inventor
Niels Ole Cedergaard
Morten Drivsholm
Mads Ullitz
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
FLSmidth AS
Original Assignee
FLSmidth AS
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by FLSmidth AS filed Critical FLSmidth AS
Publication of WO2010140123A1 publication Critical patent/WO2010140123A1/en
Anticipated expiration legal-status Critical
Ceased legal-status Critical Current

Links

Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16JPISTONS; CYLINDERS; SEALINGS
    • F16J15/00Sealings
    • F16J15/16Sealings between relatively-moving surfaces
    • F16J15/164Sealings between relatively-moving surfaces the sealing action depending on movements; pressure difference, temperature or presence of leaking fluid
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16JPISTONS; CYLINDERS; SEALINGS
    • F16J15/00Sealings
    • F16J15/16Sealings between relatively-moving surfaces
    • F16J15/40Sealings between relatively-moving surfaces by means of fluid
    • F16J15/406Sealings between relatively-moving surfaces by means of fluid by at least one pump

Definitions

  • the invention relates to a seal for preventing harmful material from passing through a gap between two machine elements with said seal comprising two sealing parts where at least one of the sealing parts is fixed to one of the machine elements and being configured for rotational operation together with said machine element and where at least one of the machine elements is configured for a movement back and forth in its axial direction relative to the other machine element.
  • seals for preventing harmful material from passing through a gap between two machine elements are well known. Such seals, e.g. for sealing an annular gap between two rotating machine elements, will normally also be capable of absorbing minor axial displacements caused by vibration. But if both rotation of the machine elements relative to each other as well as a significant axial displacement between the machine elements are intended to occur during operation this known kind of seal will break.
  • the known design of seals for sealing an annular gap between two rotating machine elements does not allow a significant relative axial displacement between the machine elements.
  • the seal may in principle be used for sealing a gap between any two relatively rotating machine elements with or without axial displacement between the machine elements. Both machine elements may rotate in similar or opposite directions or only one machine element may rotate.
  • the seal may e.g. be used in a roller mill for sealing an annular gap between a grinding table and a rotatable and axially movable vertical shaft located in the central part of the grinding table.
  • the gap between the grinding table and the shaft needs sealing to prevent harmful material from entering the delicate machine components below the grinding table.
  • the vertical shaft is moved back and forth in its axial direction when the rollers connected to the shaft need to be adjusted relative to the grinding table. During the axial movement the sealing part connected to the shaft will be exposed to varying extents.
  • sealing air is introduced between the two sealing parts to prevent material, which not is thrown away by the helical thread, from passing through the gap between the sealing parts. Only a small constant flow of sealing air is needed since the helical thread will ensure that most of the material coming into contact with the seal is physically removed. If some material, despite the sealing air, passes between the two sealing parts and drop into the bottom of the sealing part forming a casing, the helical thread will excavate and remove the material from the seal.
  • the surface of the sealing parts, whereon the helical thread is provided is substantially cylindrical.
  • the sealing part is provided with a plurality of helical threads each covering a part of the cylindrical surface of the sealing part and overlapping each other in the axial direction of the sealing part.
  • the pitch of the helical thread may have any conceivable sizes as long as the thread performs the desired operation for the seal.
  • FIG. 1 shows a cross-section of an embodiment of a seal between to machine elements and
  • Fig. 2a and 2b show cross-sections of the seal in two different positions.
  • Fig. 1 shows a seal for sealing an annular gap 3 between a grinding table 4 and a rotatable vertical shaft 5 rotating relative to each other.
  • the seal prevents material on the upper side of the grinding table 4 from passing through to the delicate machine parts below the grinding table 4.
  • the seal comprises two sealing parts 1,2 where the first sealing part 1, which is provided with a helical thread 6, is fixed to and rotates with the vertical shaft 5. Besides the rotational movement the vertical shaft 5 is capable of performing a movement, relative to the grinding table 4, in its axial direction.
  • the second sealing part 2, which is fixed to the grinding table 4, forms a casing 2a, 2b, 2c around a portion of the first sealing part 1.
  • the sealing parts 1,2 can move freely relative to each other in their axial direction.
  • the helical thread 6 ensures that the part of the seal which then becomes exposed is not obstructed by removing the material coming into contact with the helical thread 6.
  • Sealing air 7a introduced between the first sealing part 1 and the second sealing part 2b prevents material from passing up through the gap 8 and the sealing air 7b also minimizes the amount of material passing down through the gap 3 between the helical thread 6 and the second sealing part 2a.
  • Fig. 2a and Fig. 2b show the seal in two different positions.
  • the seal is in the bottom position, which means that the first sealing part 1 with the helical thread 6 is at the bottom 2c of the second sealing part 2.
  • the sealing parts 1,2 are moved relative to each other. If some material during operation is deposited in the bottom 2c of the second sealing part 2 this material will be excavated by means of the helical thread 6 when the first sealing part 1, with the helical thread 6, returns to the position shown in Fig. 2a.
  • the material will be present at the outer circumference of the inside of the casing 2a, 2b, 2c due to the inclined bottom 2c of the second sealing part 2 and also due to the centrifugal force if the second sealing part 2 rotates.

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  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Crushing And Grinding (AREA)

Abstract

A description is provided of a seal for preventing harmful material passing through a gap (3) between two machine elements (4,5) with said seal comprising two sealing parts (1,2) where at least one of the sealing parts (1) is fixed to one of the machine elements (5) and being configured for rotational operation together with said machine element (5) and where at least one of the machine elements (5) is configured for a movement back and forth in its axial direction relative to the other machine element (4). The seal is characterised in that the sealing part (1) being configured for rotational operation is provided with at least one helical thread (6) and in that one of the sealing parts (2) forms a casing (2a,2b,2c) around a portion of the other sealing part (1) and in that at least a portion of the helical thread (6) is located inside the casing (2a,2b,2c). In this way material (e.g. harmful dust) is restricted from passing through the gap between the two machine elements regardless of the fact that both machine elements perform a rotational and translatory movement relative to each other. The rotating sealing part with the helical thread ensures that most of the material coming into contact with the seal will be thrown away from the gap even when a significant relative axial displacement between the machine elements takes place.

Description

Description Title of Invention: REX Mill Roller-Set Shaft Sealing
[1] The invention relates to a seal for preventing harmful material from passing through a gap between two machine elements with said seal comprising two sealing parts where at least one of the sealing parts is fixed to one of the machine elements and being configured for rotational operation together with said machine element and where at least one of the machine elements is configured for a movement back and forth in its axial direction relative to the other machine element.
[2] Seals for preventing harmful material from passing through a gap between two machine elements are well known. Such seals, e.g. for sealing an annular gap between two rotating machine elements, will normally also be capable of absorbing minor axial displacements caused by vibration. But if both rotation of the machine elements relative to each other as well as a significant axial displacement between the machine elements are intended to occur during operation this known kind of seal will break. The known design of seals for sealing an annular gap between two rotating machine elements does not allow a significant relative axial displacement between the machine elements.
[3] It is an objective of the present invention to provide a seal capable of sealing a gap between two relatively rotating machine elements which also carry out a significant translatory movement relative to each other.
[4] This is obtained by a seal mentioned in the introduction, and being characterized in that that the sealing part being configured for rotational operation is provided with at least one helical thread and in that one of the sealing parts forms a casing around a portion of the other sealing part and in that at least a portion of the helical thread is located inside the casing.
[5] In this way material (e.g. harmful dust) is restricted from passing through the gap between the two machine elements regardless of the fact that the machine elements perform a rotational and translatory movement relative to each other. The rotating sealing part with the helical thread ensures that most of the material coming into contact with the seal will be thrown away from the gap even when a significant relative axial displacement between the machine elements takes place.
[6] The seal may in principle be used for sealing a gap between any two relatively rotating machine elements with or without axial displacement between the machine elements. Both machine elements may rotate in similar or opposite directions or only one machine element may rotate. The seal may e.g. be used in a roller mill for sealing an annular gap between a grinding table and a rotatable and axially movable vertical shaft located in the central part of the grinding table. The gap between the grinding table and the shaft needs sealing to prevent harmful material from entering the delicate machine components below the grinding table. The vertical shaft is moved back and forth in its axial direction when the rollers connected to the shaft need to be adjusted relative to the grinding table. During the axial movement the sealing part connected to the shaft will be exposed to varying extents. When the shaft is moved up more of the seal is exposed but due to the helical thread most of the material coming into contact with the seal will be thrown away. However, some material may pass through the two sealing parts, being deposited at the bottom of the casing formed by one of the sealing parts. In a seal without a helical thread this would make it impossible to move the shaft back since the deposited material would prevent the movement. But the helical thread excavates the deposited material which, due to the centrifugal force and the geometry of the casing, will be present at the outer circumference of the inside of the casing.
[7] It is preferred that sealing air is introduced between the two sealing parts to prevent material, which not is thrown away by the helical thread, from passing through the gap between the sealing parts. Only a small constant flow of sealing air is needed since the helical thread will ensure that most of the material coming into contact with the seal is physically removed. If some material, despite the sealing air, passes between the two sealing parts and drop into the bottom of the sealing part forming a casing, the helical thread will excavate and remove the material from the seal.
[8] It is preferred that the surface of the sealing parts, whereon the helical thread is provided, is substantially cylindrical.
[9] In a preferred embodiment the sealing part is provided with a plurality of helical threads each covering a part of the cylindrical surface of the sealing part and overlapping each other in the axial direction of the sealing part. In principle the pitch of the helical thread may have any conceivable sizes as long as the thread performs the desired operation for the seal.
[10] The invention will now be explained in greater detail with reference to the drawing, being diagrammatical, and where
[11] Fig. 1 shows a cross-section of an embodiment of a seal between to machine elements and,
[12] Fig. 2a and 2b show cross-sections of the seal in two different positions.
[13] Fig. 1 shows a seal for sealing an annular gap 3 between a grinding table 4 and a rotatable vertical shaft 5 rotating relative to each other. The seal prevents material on the upper side of the grinding table 4 from passing through to the delicate machine parts below the grinding table 4. The seal comprises two sealing parts 1,2 where the first sealing part 1, which is provided with a helical thread 6, is fixed to and rotates with the vertical shaft 5. Besides the rotational movement the vertical shaft 5 is capable of performing a movement, relative to the grinding table 4, in its axial direction. The second sealing part 2, which is fixed to the grinding table 4, forms a casing 2a, 2b, 2c around a portion of the first sealing part 1. Since the helical thread 6 provided on the first sealing part 1 does not engage with the second sealing part 2, the sealing parts 1,2 can move freely relative to each other in their axial direction. When the vertical shaft 5 is moved up, the helical thread 6 ensures that the part of the seal which then becomes exposed is not obstructed by removing the material coming into contact with the helical thread 6. Sealing air 7a introduced between the first sealing part 1 and the second sealing part 2b prevents material from passing up through the gap 8 and the sealing air 7b also minimizes the amount of material passing down through the gap 3 between the helical thread 6 and the second sealing part 2a. If some material passes the helical thread 6 and is deposited at the bottom of the casing 2c the material will be excavated by the helical thread 6, when the vertical shaft 5 is moved down (or the grinding table 4 is moved up) and the helical thread 6 gets into contact with the material.
[14] Fig. 2a and Fig. 2b show the seal in two different positions. In Fig. 2a the seal is in the bottom position, which means that the first sealing part 1 with the helical thread 6 is at the bottom 2c of the second sealing part 2. In Fig. 2b the sealing parts 1,2 are moved relative to each other. If some material during operation is deposited in the bottom 2c of the second sealing part 2 this material will be excavated by means of the helical thread 6 when the first sealing part 1, with the helical thread 6, returns to the position shown in Fig. 2a. The material will be present at the outer circumference of the inside of the casing 2a, 2b, 2c due to the inclined bottom 2c of the second sealing part 2 and also due to the centrifugal force if the second sealing part 2 rotates.

Claims

Claims
[Claim 1] 1. A seal for preventing harmful material from passing through a gap (3) between two machine elements (4,5) with said seal comprising two sealing parts (1,2) where at least one of the sealing parts (1) is fixed to one of the machine elements (5) and being configured for rotational operation together with said machine element (5) and where at least one of the machine elements (5) is configured for a movement back and forth relative to the other machine element (4) characterised in that the sealing part (1) being configured for rotational operation is provided with at least one helical thread (6) and in that one of the sealing parts (2) forms a casing (2a,2b,2c) around a portion of the other sealing part (1) and in that at least a portion of the helical thread (6) is located inside the casing (2a,2b,2c).
[Claim 2] 2. A seal according to claim 1 characterized in that the surface of the sealing part (1), whereon the helical thread (6) is provided, is substantially cylindrical.
[Claim 3] 3. A seal according to any preceding claim characterized in that one of the sealing parts (1) is provided with a plurality of helical threads (6) each covering a part of the cylindrical surface of the sealing part (1).
[Claim 4] 4. A seal according to claim 3 characterized in that the helical threads (6) overlap each other in the axial direction of the sealing part (1).
[Claim 5] 5. A seal according to any preceding claim characterized in that sealing air (7a) is introduced between the two sealing parts (1,2).
PCT/IB2010/052450 2009-06-03 2010-06-01 Rex mill roller-set shaft sealing Ceased WO2010140123A1 (en)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
DKPA200900688 2009-06-03
DKPA200900688 2009-06-03

Publications (1)

Publication Number Publication Date
WO2010140123A1 true WO2010140123A1 (en) 2010-12-09

Family

ID=42697287

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/IB2010/052450 Ceased WO2010140123A1 (en) 2009-06-03 2010-06-01 Rex mill roller-set shaft sealing

Country Status (1)

Country Link
WO (1) WO2010140123A1 (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105134951A (en) * 2015-07-01 2015-12-09 北京京诚科林环保科技有限公司 Mechanical follow-up sealing device
CN105536936A (en) * 2016-02-29 2016-05-04 长沙坚韧机械有限责任公司 Wind pressure sealing device for pulverizer

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB1489136A (en) * 1974-05-02 1977-10-19 Polygraph Leipzig Bearing assembly
EP0049719A1 (en) * 1980-10-09 1982-04-21 John Crane-Houdaille, Inc. Low energy tandem seal
SU1093851A1 (en) * 1983-05-24 1984-05-23 Предприятие П/Я А-1270 Labyrinth screw seal
JP2002022032A (en) * 2000-07-06 2002-01-23 Meidensha Corp Labyrinth seal

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB1489136A (en) * 1974-05-02 1977-10-19 Polygraph Leipzig Bearing assembly
EP0049719A1 (en) * 1980-10-09 1982-04-21 John Crane-Houdaille, Inc. Low energy tandem seal
SU1093851A1 (en) * 1983-05-24 1984-05-23 Предприятие П/Я А-1270 Labyrinth screw seal
JP2002022032A (en) * 2000-07-06 2002-01-23 Meidensha Corp Labyrinth seal

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105134951A (en) * 2015-07-01 2015-12-09 北京京诚科林环保科技有限公司 Mechanical follow-up sealing device
CN105536936A (en) * 2016-02-29 2016-05-04 长沙坚韧机械有限责任公司 Wind pressure sealing device for pulverizer
CN105536936B (en) * 2016-02-29 2018-03-20 长沙坚韧机械有限责任公司 A kind of flour mill blast sealing device

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