EP2994268B1 - Device for grinding and feeding of solid particles of dry ice for devices for mixing solid particles of dry ice with flow of gaseous medium - Google Patents
Device for grinding and feeding of solid particles of dry ice for devices for mixing solid particles of dry ice with flow of gaseous medium Download PDFInfo
- Publication number
- EP2994268B1 EP2994268B1 EP13731518.0A EP13731518A EP2994268B1 EP 2994268 B1 EP2994268 B1 EP 2994268B1 EP 13731518 A EP13731518 A EP 13731518A EP 2994268 B1 EP2994268 B1 EP 2994268B1
- Authority
- EP
- European Patent Office
- Prior art keywords
- rotative
- roller
- dry ice
- granulate
- solid particles
- 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.)
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Classifications
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B24—GRINDING; POLISHING
- B24C—ABRASIVE OR RELATED BLASTING WITH PARTICULATE MATERIAL
- B24C1/00—Methods for use of abrasive blasting for producing particular effects; Use of auxiliary equipment in connection with such methods
- B24C1/003—Methods for use of abrasive blasting for producing particular effects; Use of auxiliary equipment in connection with such methods using material which dissolves or changes phase after the treatment, e.g. ice, CO2
Definitions
- the invention relates to devices for grinding a feeding of solid particles of dry ice, CO 2 in solid state, granulate, for devices for mixing of solid particles of dry ice with the flow of gaseous medium, (see for example DE 20 2011 102957 U1 ).
- Document DE 102009027974 A1 describes a grinder, which comprises rotative rollers statically positioned against each other, wherein between them an element comprising convex milling surfaces on its sides adjacent to the rollers is placed. Grinding element is movable relative to rollers and by its shifting the distance of its milling surfaces from the rotative rollers is adjusted, thereby adjusting the size of a milling gap.
- Document DE 102006000510 describes a device, which allows changing from milling mode to a mode with opened gap for granulate, without milling. This mode change is carried out by movable partition wall placed over the milling roller.
- known devices comprise at least one driven rotatively mounted feeding/milling roller, whose rotation allows feeding and milling of dry ice granulate from a container to a mixing device.
- granulate is fed/milled by rotation of the roller against a surface, or an inner wall of the milling device.
- Disadvantage of the mentioned method of milling i.e. milling between the roller and a surface, or a wall of the device, is low efficiency, rotation of particles of granulate before the milling gap, and also possible problems when a partition wall, or an element with milling surfaces is shifting under the load of mass of granulate stored in the container.
- Aim of this invention is to eliminate disadvantages of known devices for grinding and feeding of solid particles of dry ice for devices for mixing solid particles of dry ice with the flow of gaseous medium.
- Mentioned aim is achieved by a device for grinding and feeding of solid particles of dry ice according to claim 1.
- Proposed solution allows continuous and fast changing of device working mode - milling, or free passage of granulate. Milling is then realized by a pair of rotating rollers, what provides for effective way of milling - effective intake of granulate and elimination of rotation of particles of granulate before the milling gap. Convex, cylindrical, or sloping surface provided adjacent to the eccentrically positioned rotative roller favors easy passage of granulate from the container and between rollers.
- Device for grinding and feeding of solid particles of dry ice according to this technical solution, according to figures 1 to 6 , comprises rotative roller 1 , against which, a rotative roller 3 eccentrically positioned on rotatively arranged supporting body 2 is placed and provided with means 4 for kinetic coupling with the power source 7 , in this example electric motor.
- the eccentric placement of the rotative roller 3 means its eccentric position in relation to axis of rotation of rotatively arranged supporting body 2 .
- the surface 211 created on the rotatively arranged supporting body 2 , adjacent to the eccentrically positioned rotative roller 3 is cylindrical. This surface 211 is created on the rotatively arranged supporting body 2 such that, during the milling of granulate it appears on the side of granulate being led to the rollers 1 , 3 , thereby favoring the access of granulate to a gap between the rollers 1 and 3 .
- the device as shown in Fig 3 and 4 comprises a housing 5 of the milling and feeding part, in which chambers for housing the rotative roller 1 and for housing the rotatively arranged supporting body 2 with eccentrically positioned rotative roller 3 , are provided.
- the housing 5 of the milling and feeding part is provided by a housing cap 6 of the housing 5 of the milling and feeding part.
- the housing cap 6 is provided by shaft supports of rotative roller 1 , of rotatively arranged supporting body 2 and of power source 7 .
- the housing 5 of the milling and feeding part comprises shaft supports of rotative roller 1 , of rotatively arranged supporting body 2 , and also means for coupling the shifter 9 of position of the rotatively arranged supporting body 2 , so called "positioner".
- This position shifter 9 can advantageously be pneumatic.
- the housing 5 of the milling and feeding part is, in this example, also provided by a flange P2 for its coupling to a mixing device (not shown) and a flange P1 for coupling a container of granulate (not shown).
- Rotative supporting body 2 comprises end plates 22 , 23 , wherein between them the eccentrically positioned rotative roller 3 is mounted and cylindrical surface 211 is arranged, which in this case forms integral part of cylindrical body 21 with longitudinal planar surface placed between end plates 22 , 23 . At least one of the end plates 22 , 23 is removable.
- the eccentrically positioned rotative roller 3 is then placed in a cavity formed in longitudinally planar surface on the cylindrical body 21 .
- the longitudinal planar surface 212 of the cylidrical body 21 is then made such that, it is not projecting over the outer circumference of the eccentrically positioned rotative roller 3 , or at utmost is aligned with the outer circumference of the eccentrically positioned rotative roller 3 .
- End plates 22 , 23 comprise support of the shaft 31 of the eccentrically positioned rotative roller 3 , substantially on their circumferential (edge) part, and at least one of the end plates 22 , 23 can also comprise stopping element 24 corresponding with arcuate stopping groove 8 in the housing cap 6 .
- the arcuate stopping groove 8 can also be provided in the housing 5 of the milling and feeding part.
- Means 4 for kinetic coupling of the eccentrically positioned rotative roller 3 comprise gears in this embodiment, namely gear 72 of the power source 7 , gear 12 of the rotative roller 1 and gear 32 of the eccentrically positioned rotative roller 3 .
- Gears are mounted on shafts of corresponding parts, i.e. the shaft 71 of the power source 7 , the shaft 11 of the rotative roller 1 , and the shaft 31 of the eccentrically positioned rotative roller 3 .
- the arrow A represents the inlet/passage of unground granulate
- the arrow B the outlet of ground granulate
- arrows R the direction of rotation of rotative rollers 1 and 3 .
- Rotative roller 1 is working usually always all the time of device operation. Rotative roller 1 is through its gear 12 driven by the power source 7 through the gear 72 of the power source 7 .
- the rotative supporting body 2 is in the position where the eccentrically positioned rotative roller 3 is aside of the passage channel K of granulate and above the longitudinal planar surface 212 of the cylindrical body 21 .
- the gear 32 of the eccentrically positioned rotative roller 3 is in one end position, determined by the position of the shaft 31 at the one end of the arcuate stopping groove 8 .
- the gear 32 of the eccentrically positioned rotative roller 3 is not engaged with the gear 12 of the rotative roller 1 , and thus the eccentrically positioned rotative roller 3 is not driven, and accidentally revolves only due to a movement of granulate passing through the passage channel K of granulate.
- the rotative roller 1 prevents by its rotation clogging of granulate in the passage channel K of granulate defined in this case by cylindrical surface of the rotative roller 1 , by longitudinal planar surface 212 of the cylindrical body 21 , and partially also by cylindrical surface of the eccentrically positioned rotative roller 3 .
- the eccentric rotative roller 3 favors passage and feeding of granulate to a mixing device.
- the rotative supporting body 2 When grinding of granulate is required, the rotative supporting body 2 is rotated by the position shifter 9 to the other end position, determined by the position of the stopping element 24 at the other end of the arcuate stopping groove 8 .
- the passage channel K is thus partially closed, wherein the milling gap is created by a pair of revolving rollers, i.e. by the rotative roller 1 and the eccentrically positioned rotative roller 3 .
- the eccentrically positioned rotative roller 3 which was idle, is now by changing the position of the rotative supporting body 2 engaged along arcuate path, through the gear 32 with the gear 12 of the rotative roller 1 , and thus the eccentrically positioned rotative roller 3 begins to use for its rotation the same power source 7 as the rotative roller 1 .
- the eccentrically positioned rotative roller 3 is thus engaged in the milling mode only.
- the roller 3 is disengaged and is not revolving, or is revolving only accidentally due to a movement of granulate passing through the passage channel K of granulate.
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- Engineering & Computer Science (AREA)
- Mechanical Engineering (AREA)
- Crushing And Grinding (AREA)
- Disintegrating Or Milling (AREA)
- Cleaning In General (AREA)
Description
- The invention relates to devices for grinding a feeding of solid particles of dry ice, CO2 in solid state, granulate, for devices for mixing of solid particles of dry ice with the flow of gaseous medium, (see for example
DE 20 2011 102957 U1 ). - Document
DE 102009027974 A1 describes a grinder, which comprises rotative rollers statically positioned against each other, wherein between them an element comprising convex milling surfaces on its sides adjacent to the rollers is placed. Grinding element is movable relative to rollers and by its shifting the distance of its milling surfaces from the rotative rollers is adjusted, thereby adjusting the size of a milling gap. - Document
DE 102006000510 describes a device, which allows changing from milling mode to a mode with opened gap for granulate, without milling. This mode change is carried out by movable partition wall placed over the milling roller. - In fact, known devices comprise at least one driven rotatively mounted feeding/milling roller, whose rotation allows feeding and milling of dry ice granulate from a container to a mixing device. In these devices, granulate is fed/milled by rotation of the roller against a surface, or an inner wall of the milling device.
- Disadvantage of the mentioned method of milling, i.e. milling between the roller and a surface, or a wall of the device, is low efficiency, rotation of particles of granulate before the milling gap, and also possible problems when a partition wall, or an element with milling surfaces is shifting under the load of mass of granulate stored in the container.
- Aim of this invention is to eliminate disadvantages of known devices for grinding and feeding of solid particles of dry ice for devices for mixing solid particles of dry ice with the flow of gaseous medium.
- Mentioned aim is achieved by a device for grinding and feeding of solid particles of dry ice according to
claim 1. - It is advantageous when convex, cylindrical or sloping surface is provided on the rotatively arranged supporting body, adjacent to the eccentrically positioned rotative roller.
- Proposed solution allows continuous and fast changing of device working mode - milling, or free passage of granulate. Milling is then realized by a pair of rotating rollers, what provides for effective way of milling - effective intake of granulate and elimination of rotation of particles of granulate before the milling gap. Convex, cylindrical, or sloping surface provided adjacent to the eccentrically positioned rotative roller favors easy passage of granulate from the container and between rollers.
- Together with the milling of granulate between the two rotative rollers, the effect of feeding of granulate to a mixing device occurs.
- Technical solution is explained more in detail on attached drawings, where:
-
Fig. 1 shows perspective bottom view of device rollers according to this invention in the position when milling granulate; -
Fig. 2 shows top view of device rollers fromFig. 1 without one end plate of the rotatively arranged supporting body; -
Fig. 3 shows sectional view of device according to the invention, with rollers in the position when milling granulate; -
Fig. 4 shows sectional view of device according to this invention, with rollers in the position when granulate is passing freely; -
Fig. 5 shows a view of means for kinetic coupling of the eccentrically positioned rotative roller with driven roller during the milling of granulate; -
Fig. 6 shows means for kinetic coupling of the eccentrically positioned rotative roller with driven roller during free passage of granulate. - Device for grinding and feeding of solid particles of dry ice according to this technical solution, according to
figures 1 to 6 , comprisesrotative roller 1, against which, arotative roller 3 eccentrically positioned on rotatively arranged supportingbody 2 is placed and provided with means 4 for kinetic coupling with thepower source 7, in this example electric motor. - The eccentric placement of the
rotative roller 3 means its eccentric position in relation to axis of rotation of rotatively arranged supportingbody 2. - In this example, the
surface 211 created on the rotatively arranged supportingbody 2, adjacent to the eccentrically positionedrotative roller 3 is cylindrical. Thissurface 211 is created on the rotatively arranged supportingbody 2 such that, during the milling of granulate it appears on the side of granulate being led to therollers rollers - The device as shown in
Fig 3 and 4 comprises ahousing 5 of the milling and feeding part, in which chambers for housing therotative roller 1 and for housing the rotatively arranged supportingbody 2 with eccentrically positionedrotative roller 3, are provided. - On one side, as can be seen in
Fig. 5 and 6 , thehousing 5 of the milling and feeding part is provided by ahousing cap 6 of thehousing 5 of the milling and feeding part. Thehousing cap 6 is provided by shaft supports ofrotative roller 1, of rotatively arranged supportingbody 2 and ofpower source 7. - On the other side, the
housing 5 of the milling and feeding part comprises shaft supports ofrotative roller 1, of rotatively arranged supportingbody 2, and also means for coupling the shifter 9 of position of the rotatively arranged supportingbody 2, so called "positioner". This position shifter 9 can advantageously be pneumatic. - The
housing 5 of the milling and feeding part is, in this example, also provided by a flange P2 for its coupling to a mixing device (not shown) and a flange P1 for coupling a container of granulate (not shown). - Next follows detailed description of the embodiment of rotatively arranged supporting
body 2, mounting ofrotative rollers body 2, and also the embodiment of means 4 for kinetic coupling of therotative rollers - Rotative supporting
body 2 comprisesend plates rotative roller 3 is mounted andcylindrical surface 211 is arranged, which in this case forms integral part ofcylindrical body 21 with longitudinal planar surface placed betweenend plates end plates rotative roller 3 is then placed in a cavity formed in longitudinally planar surface on thecylindrical body 21. The longitudinalplanar surface 212 of thecylidrical body 21 is then made such that, it is not projecting over the outer circumference of the eccentrically positionedrotative roller 3, or at utmost is aligned with the outer circumference of the eccentrically positionedrotative roller 3. -
End plates shaft 31 of the eccentrically positionedrotative roller 3, substantially on their circumferential (edge) part, and at least one of theend plates element 24 corresponding witharcuate stopping groove 8 in thehousing cap 6. Thearcuate stopping groove 8 can also be provided in thehousing 5 of the milling and feeding part. - Means 4 for kinetic coupling of the eccentrically positioned
rotative roller 3 comprise gears in this embodiment, namely gear 72 of thepower source 7, gear 12 of therotative roller 1 and gear 32 of the eccentrically positionedrotative roller 3. Gears are mounted on shafts of corresponding parts, i.e. theshaft 71 of thepower source 7, theshaft 11 of therotative roller 1, and theshaft 31 of the eccentrically positionedrotative roller 3. - Device for grinding and feeding of solid particles of dry ice according to this invention is working as will be described further with reference to
Fig. 3 and 4 . Infigures 3 and 4 , the arrow A represents the inlet/passage of unground granulate, the arrow B the outlet of ground granulate and arrows R the direction of rotation ofrotative rollers -
Rotative roller 1 is working usually always all the time of device operation.Rotative roller 1 is through its gear 12 driven by thepower source 7 through the gear 72 of thepower source 7. - During the mode, when milling of granulate is not required, the rotative supporting
body 2 is in the position where the eccentrically positionedrotative roller 3 is aside of the passage channel K of granulate and above the longitudinalplanar surface 212 of thecylindrical body 21. The gear 32 of the eccentrically positionedrotative roller 3 is in one end position, determined by the position of theshaft 31 at the one end of thearcuate stopping groove 8. The gear 32 of the eccentrically positionedrotative roller 3 is not engaged with the gear 12 of therotative roller 1, and thus the eccentrically positionedrotative roller 3 is not driven, and accidentally revolves only due to a movement of granulate passing through the passage channel K of granulate. Therotative roller 1 prevents by its rotation clogging of granulate in the passage channel K of granulate defined in this case by cylindrical surface of therotative roller 1, by longitudinalplanar surface 212 of thecylindrical body 21, and partially also by cylindrical surface of the eccentrically positionedrotative roller 3. In this mode, the eccentricrotative roller 3 favors passage and feeding of granulate to a mixing device. - When grinding of granulate is required, the rotative supporting
body 2 is rotated by the position shifter 9 to the other end position, determined by the position of thestopping element 24 at the other end of thearcuate stopping groove 8. The passage channel K is thus partially closed, wherein the milling gap is created by a pair of revolving rollers, i.e. by therotative roller 1 and the eccentrically positionedrotative roller 3. - The eccentrically positioned
rotative roller 3, which was idle, is now by changing the position of the rotative supportingbody 2 engaged along arcuate path, through the gear 32 with the gear 12 of therotative roller 1, and thus the eccentrically positionedrotative roller 3 begins to use for its rotation thesame power source 7 as therotative roller 1. - The eccentrically positioned
rotative roller 3 is thus engaged in the milling mode only. When not in the milling mode, theroller 3 is disengaged and is not revolving, or is revolving only accidentally due to a movement of granulate passing through the passage channel K of granulate. - The device shown in figures and described in examples of embodiments represents the best construction embodiments. This particular embodiment is introduced only as an illustrative example for disclosure of the technical solution. It is obvious that also other construction variants are possible without departing from the scope of the invention as defined by the appended claims; e.g. regarding constructional embodiment of the means 4 for kinetic coupling and their arrangement, embodiment of the
power source 7, mounting of the rotative supportingbody 2, as well as the embodiment of substantially slopingsurface 211 adjacent to the eccentrically positionedrotative roller 3, or embodiment of thecylindrical body 21 with longitudinal planar surface, as well as arrangement and embodiment of the position shifter 9, etc.
Claims (2)
- Device for grinding and feeding of solid particles of dry ice comprising rotative rollers (1, 3) placed against each other to form a passage channel (K) of granulate where at least one of the rollers (3) can be displaced against the other roller (1) connected to a power source (7) through means (4) for kinetic coupling, characterized in that, one rotative roller (3) is eccentrically positioned on a rotative supporting body (2) rotatively arranged against the other roller (1), whereas by rotation of the supporting body (2), the eccentrically positioned rotative roller (3) is disconnected from the power source (7) and is aside of the passage channel (K) of granulate.
- Device for grinding and feeding of solid particles of dry ice, according to claim 1, characterized in that, the supporting body (2) comprises convex, cylindrical or sloping surface (211) adjacent to the eccentrically positioned rotative roller (3).
Priority Applications (2)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
PL13731518T PL2994268T3 (en) | 2013-05-07 | 2013-05-07 | Device for grinding and feeding of solid particles of dry ice for devices for mixing solid particles of dry ice with flow of gaseous medium |
HRP20170772TT HRP20170772T1 (en) | 2013-05-07 | 2017-05-23 | Device for grinding and feeding of solid particles of dry ice for devices for mixing solid particles of dry ice with flow of gaseous medium |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
PCT/SK2013/050002 WO2014182254A1 (en) | 2013-05-07 | 2013-05-07 | Device for grinding and feeding of solid particles of dry ice for devices for mixing solid particles of dry ice with flow of gaseous medium |
Publications (2)
Publication Number | Publication Date |
---|---|
EP2994268A1 EP2994268A1 (en) | 2016-03-16 |
EP2994268B1 true EP2994268B1 (en) | 2017-03-08 |
Family
ID=48699233
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
EP13731518.0A Active EP2994268B1 (en) | 2013-05-07 | 2013-05-07 | Device for grinding and feeding of solid particles of dry ice for devices for mixing solid particles of dry ice with flow of gaseous medium |
Country Status (6)
Country | Link |
---|---|
EP (1) | EP2994268B1 (en) |
JP (1) | JP6463343B2 (en) |
HR (1) | HRP20170772T1 (en) |
HU (1) | HUE032781T2 (en) |
PL (1) | PL2994268T3 (en) |
WO (1) | WO2014182254A1 (en) |
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN111170312A (en) * | 2020-03-10 | 2020-05-19 | 牛思婷 | Production system for preparing graphene by using low-layer graphene oxide |
Families Citing this family (7)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
WO2015109354A2 (en) * | 2014-01-27 | 2015-07-30 | Feiba Engineering & Plants Gmbh | Adjusting mechanism for roller mills |
TWI664056B (en) * | 2015-10-19 | 2019-07-01 | 冷卻噴射公司 | Blast media comminutor and method of comminuting cryogenic particles from each particle's respective initial size to a second size smaller than a predetermined size |
US12036637B2 (en) | 2018-04-24 | 2024-07-16 | Cold Jet, Llc | Particle blast apparatus |
WO2020000095A1 (en) * | 2018-06-26 | 2020-01-02 | Coulson Ice Blast Ltd. | Ice blasting machine with dual-mode operation for water ice and dry ice |
JP7610618B2 (en) | 2020-12-10 | 2025-01-08 | 任天堂株式会社 | Information processing system, controller, information processing method, and information processing program |
WO2022133693A1 (en) * | 2020-12-22 | 2022-06-30 | 南通大学 | Micro-cavity liquid phase shear apparatus used for quasi-two-dimensional material preparation |
CN113908948B (en) * | 2021-10-11 | 2022-11-04 | 常州智砼绿色建筑科技有限公司 | Adjustable crushing module for construction waste treatment |
Family Cites Families (7)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JPS5836913A (en) * | 1981-08-26 | 1983-03-04 | Nitto Chem Ind Co Ltd | Molding method for dry ice |
CA2113291A1 (en) * | 1993-01-26 | 1994-07-27 | William D. Fraresso | Apparatus for real time ice supply to ice blasting system |
DE102006000510B3 (en) | 2006-12-07 | 2008-08-21 | Cornel Thorma Metallverarbeitungs Gmbh | Dry ice radiating device, has chamber in which dry ice is mixed with propellant and delivered via outlet, and switch device to cooperate with partition wall and supply dry ice granulates alternatively to area on side of partition wall |
DE102009027974B4 (en) | 2009-07-23 | 2011-04-28 | Cornel Thorma Metallverarbeitungs Gmbh | Grinder for dry ice blasting machine |
DE102010004211B4 (en) * | 2010-01-08 | 2021-10-28 | Tq-Systems Gmbh | Processing machine or device for dry ice |
DE102011008139B4 (en) * | 2011-01-08 | 2022-03-10 | Tq-Systems Gmbh | Processing machine for dry ice |
DE202011102957U1 (en) * | 2011-07-07 | 2011-08-19 | Tq-Systems Gmbh | Processing machine for dry ice |
-
2013
- 2013-05-07 WO PCT/SK2013/050002 patent/WO2014182254A1/en active Application Filing
- 2013-05-07 HU HUE13731518A patent/HUE032781T2/en unknown
- 2013-05-07 PL PL13731518T patent/PL2994268T3/en unknown
- 2013-05-07 EP EP13731518.0A patent/EP2994268B1/en active Active
- 2013-05-07 JP JP2016512882A patent/JP6463343B2/en active Active
-
2017
- 2017-05-23 HR HRP20170772TT patent/HRP20170772T1/en unknown
Non-Patent Citations (1)
Title |
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN111170312A (en) * | 2020-03-10 | 2020-05-19 | 牛思婷 | Production system for preparing graphene by using low-layer graphene oxide |
CN111170312B (en) * | 2020-03-10 | 2021-07-09 | 山东海迈新材料有限公司 | Production system for preparing graphene by using low-layer graphene oxide |
Also Published As
Publication number | Publication date |
---|---|
JP6463343B2 (en) | 2019-01-30 |
HUE032781T2 (en) | 2017-10-30 |
JP2016517799A (en) | 2016-06-20 |
EP2994268A1 (en) | 2016-03-16 |
HRP20170772T1 (en) | 2017-08-11 |
WO2014182254A1 (en) | 2014-11-13 |
PL2994268T3 (en) | 2017-09-29 |
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