CN111765314B - Modularized movable ice making adjustable collecting and distributing main pipe device and construction method thereof - Google Patents

Modularized movable ice making adjustable collecting and distributing main pipe device and construction method thereof Download PDF

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Publication number
CN111765314B
CN111765314B CN202010580196.1A CN202010580196A CN111765314B CN 111765314 B CN111765314 B CN 111765314B CN 202010580196 A CN202010580196 A CN 202010580196A CN 111765314 B CN111765314 B CN 111765314B
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China
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ice making
main pipe
pipe
section
modularized
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CN111765314A (en
Inventor
孙德远
候本才
高惠润
王赫
张仟
李楠
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China Construction First Group Construction and Development Co Ltd
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China Construction First Group Construction and Development Co Ltd
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    • 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
    • F16LPIPES; JOINTS OR FITTINGS FOR PIPES; SUPPORTS FOR PIPES, CABLES OR PROTECTIVE TUBING; MEANS FOR THERMAL INSULATION IN GENERAL
    • F16L41/00Branching pipes; Joining pipes to walls
    • F16L41/02Branch units, e.g. made in one piece, welded, riveted
    • F16L41/03Branch units, e.g. made in one piece, welded, riveted comprising junction pieces for four or more pipe members
    • 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
    • F16LPIPES; JOINTS OR FITTINGS FOR PIPES; SUPPORTS FOR PIPES, CABLES OR PROTECTIVE TUBING; MEANS FOR THERMAL INSULATION IN GENERAL
    • F16L41/00Branching pipes; Joining pipes to walls
    • F16L41/08Joining pipes to walls or pipes, the joined pipe axis being perpendicular to the plane of a wall or to the axis of another pipe
    • F16L41/10Joining pipes to walls or pipes, the joined pipe axis being perpendicular to the plane of a wall or to the axis of another pipe the extremity of the pipe being screwed into the wall
    • 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
    • F16LPIPES; JOINTS OR FITTINGS FOR PIPES; SUPPORTS FOR PIPES, CABLES OR PROTECTIVE TUBING; MEANS FOR THERMAL INSULATION IN GENERAL
    • F16L41/00Branching pipes; Joining pipes to walls
    • F16L41/08Joining pipes to walls or pipes, the joined pipe axis being perpendicular to the plane of a wall or to the axis of another pipe
    • F16L41/16Joining pipes to walls or pipes, the joined pipe axis being perpendicular to the plane of a wall or to the axis of another pipe the branch pipe comprising fluid cut-off means
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F25REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
    • F25CPRODUCING, WORKING OR HANDLING ICE
    • F25C3/00Processes or apparatus specially adapted for producing ice or snow for winter sports or similar recreational purposes, e.g. for sporting installations; Producing artificial snow
    • F25C3/02Processes or apparatus specially adapted for producing ice or snow for winter sports or similar recreational purposes, e.g. for sporting installations; Producing artificial snow for ice rinks

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  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Physics & Mathematics (AREA)
  • Thermal Sciences (AREA)
  • Production, Working, Storing, Or Distribution Of Ice (AREA)

Abstract

The invention discloses a modularized movable ice making adjustable collecting and distributing main pipe device and a construction method thereof, wherein the main pipe device comprises a group of modularized ice making sections, each modularized ice making section comprises a main pipe section, collecting and distributing quick connecting pieces connected to one side of the main pipe section at intervals and connecting pieces connected to two ends of the main pipe section; the centralized distribution quick connector comprises a centralized distribution quick connector, a central control pipe connected between the centralized distribution quick connector and the main pipe section, and a valve arranged on the central control pipe. The modular ice making section is arranged, so that the demand adaptation and batch production and transportation during temporary ice making are facilitated; the arrangement of the main pipe section is favorable for providing a connection foundation and convenient installation; the arrangement of the central control pipe is beneficial to controlling the opening and closing of the ice making pipe singly or integrally, so that the local adjustment of on-site ice making is adapted, and the construction cost is saved; through the setting of connecting piece, do benefit to and connect adjacent modularization ice making section, and can prefabricate and adjust according to different line types.

Description

Modularized movable ice making adjustable collecting and distributing main pipe device and construction method thereof
Technical Field
The invention belongs to the field of temporary ice making construction of an ice rink, and particularly relates to a modularized movable type ice making adjustable collecting and distributing main pipe device and a construction method thereof.
Background
With people's liking for sports on ice, more and more ice rinks are built. Nowadays, the number of professional sport stadiums on ice with permanent nature is small, and most of the sport stadiums need to build a part of temporary ice stadium for supplement. Due to the using property of the ordinary temporary ice field, the ice making pipeline is dismantled after being applied for a period of time; the existing pipeline is mostly disposable, the pipeline cannot be reused after being dismantled, the sustainable utilization rate is low, and waste is easily caused. In addition, the existing ice making pipe has the problems of long construction time, inconvenient disassembly and maintenance and the like in the installation process. Therefore, in order to meet the demand of the indoor temporary ice field and the problem of sustainable utilization, the problem of repeated use needs to be further solved on the basis of quick installation and disassembly of the ice making pipeline.
Disclosure of Invention
The invention provides a modularized movable ice-making adjustable collecting and distributing main pipe device and a construction method thereof, which are used for solving the technical problems of convenient and quick installation of ice-making pipes in a temporary ice field, modular construction, movable and reusable property and the like.
In order to achieve the purpose, the invention adopts the following technical scheme:
a modularized movable ice making adjustable collecting and distributing main pipe device comprises a group of modularized ice making sections, wherein each modularized ice making section comprises a main pipe section, collecting and distributing quick connectors connected to one side of the main pipe section at intervals and connecting pieces connected to two ends of the main pipe section;
the centralized distribution quick connector comprises a centralized distribution quick connector, a central control pipe connected between the centralized distribution quick connector and the main pipe section, and a valve arranged on the central control pipe.
Furthermore, the main pipe section comprises a main pipe body and an interface base arranged on the main pipe body in the length direction at intervals, and the length of the main pipe body is adapted to the length of the temporary ice making design surface in the length direction.
Furthermore, the interface base corresponds the collection and distributes the setting of express mail one by one, and interface base and the barrel-shaped body inside and be responsible for the body intercommunication and be provided with the external screw thread.
Furthermore, the central control pipe is communicated with the interior of the interface base, and a thermometer and a flowmeter are also arranged on the central control pipe; the valve arranged on the central control pipe is manually or electrically controlled.
Furthermore, the collection and distribution quick connector comprises a connector base connected to the outer end of the central control pipe, a connector gland connected to the outer end of the connector base and a sealing assembly connected between the connector base and the connector gland; the sealing component is a group of sealing gaskets arranged at the joint; the joint gland is adapted to cross and fasten the ice making tube.
Furthermore, the joint base is a tubular piece and is provided with an external thread, a fixing nut is arranged on the joint base, and the distance between the fixing nut and the outer end of the joint base is suitable for the designed connection length of the ice making pipe; the joint base is correspondingly connected with the joint gland in a threaded manner.
Further, the connecting piece comprises a connecting flange, a first connecting pipe and a second connecting pipe which are connected to two sides of the connecting flange; the first connecting pipe and the second connecting pipe are respectively suitable for connection of the main pipe sections at two sides.
Furthermore, first even pipe and second even pipe are straight spool or pitch arc pipe, first even pipe and second even pipe respectively with the main pipe section leakproofness fixed connection that corresponds.
Further, the construction method of the modular movable ice-making adjustable collecting and distributing main pipe device is characterized by comprising the following specific steps:
determining the total length of a modularized ice making section according to the area of a temporary indoor ice field, and determining the connection mode of a main pipe section, a set distribution quick connector and a connecting piece of each unit according to the total length and the line type, wherein the number of the set distribution quick connectors is determined according to the number of ice making pipes distributed by each unit;
connecting the interface base on the main pipe body through hot-melt welding, and detecting that the sealing property meets the requirement; connecting a central control pipe with a valve to an interface base in a threaded manner, connecting a collection and distribution quick connector to the central control pipe in a threaded manner, and then installing connectors at two ends of a main pipe body to form a modular ice making section;
assembling the modular ice making sections according to the designed total length, wherein the line type of the connecting piece is correspondingly designed and adjusted according to the design or site factors until the required total length is assembled;
and step four, buckling the upper joint gland of the collection and distribution quick connector, taking out the sealing assembly, inserting the ice making pipe into the joint base sleeve, screwing the joint gland by the sealing assembly, and completing the connection of the ice making pipe and the modularized main pipe section.
Step five, during ice making, the control of the ice making pipe is realized by opening and closing a valve on a central control pipe, wherein a manual valve and an electric valve can realize single or integral opening and closing control, and the ice making process is controlled by combining a thermometer and a flowmeter until the ice making is finished;
and step six, loosening the threaded connection between the connector base and the connector base by disassembling the connecting flange in the connecting piece during disassembly. And the modular ice making section is decomposed and recycled.
Further, when the electrically operated valve in the step five is controlled, a corresponding sensor is arranged at the electrically operated valve and is transmitted to the control end through a signal or a line; the control time is divided into two stages, each modularized ice making section is connected in parallel to be set as a first stage, each valve on each modularized ice making section is connected in parallel to be a second stage, and real-time control is carried out through a computer.
The invention has the beneficial effects that:
1) according to the invention, through the arrangement of the modularized ice making sections, on one hand, the temporary ice making is facilitated, the demand can be met and adapted according to the ice making area, and on the other hand, the construction time and the storage and transportation space can be saved through the batch manufacturing, transportation and recovery of the modularized ice making sections;
2) according to the ice making pipe, the arrangement of the main pipe section is favorable for providing a connection foundation for the installation of the ice making pipe, and the arrangement of the interface base on the main pipe section is favorable for the convenient installation of the collection and distribution quick connector;
3) the invention is beneficial to controlling the opening and closing of the ice making pipe singly or integrally through the arrangement of the central control pipe, thereby being suitable for local adjustment of on-site ice making and saving the construction cost;
4) according to the invention, through the arrangement of the connecting piece, the connection of the adjacent modular ice making sections is facilitated, and prefabrication and adjustment can be carried out according to different line types.
The invention has simple structure and quick processing, can be quickly changed between mounting and dismounting, can save labor and time, saves construction period and reduces material waste; due to the adoption of the modularized type, the stacking of factory materials on a construction site can be reduced, the utilization rate of the site is effectively improved, the ice-making modularized centralized and distributed pipes can be stacked after being disassembled, the ice-making modularized centralized and distributed pipes can be continuously utilized, and green packages can be continuously utilized.
Additional features and advantages of the invention will be set forth in the description which follows, and in part will be obvious from the description, or may be learned by practice of the invention; the primary objects and other advantages of the invention may be realized and attained by the instrumentalities particularly pointed out in the specification.
Drawings
FIG. 1 is a schematic structural view of a modular ice making section;
FIG. 2 is a schematic structural view of a main pipe segment;
FIG. 3 is a schematic view of a collective distribution quick connect and a connection arrangement;
FIG. 4 is a schematic diagram of a set allocation quick connect architecture;
FIG. 5 is a schematic view of a joint gland configuration;
FIG. 6 is a schematic view of an interface mount configuration;
FIG. 7 is an exploded schematic view of the seal assembly;
FIG. 8 is a schematic view of a connector configuration;
fig. 9 is a schematic view of a connecting flange structure.
Reference numerals are as follows: the system comprises a main pipe section 1, a main pipe body 11, a port base 12, a collective distribution quick connector 2, a collective distribution quick connector 21, a joint gland 211, a joint base 212, a sealing assembly 213, a central control pipe 22, a valve 23, a connector 3, a connecting flange 31, a first connecting pipe 32 and a second connecting pipe 33.
Detailed Description
Taking ice making in a certain temporary ice field as an example, the ice making surface is rectangular, and the ice making pipe is installed by applying the modularized movable ice making adjustable collecting and distributing main pipe device. As shown in fig. 1, the modular ice making segment comprises a main pipe segment 1, a set distribution quick connector 2 connected to one side of the main pipe segment 1 at intervals, and connectors 3 connected to both ends of the main pipe segment 1.
As shown in fig. 2, the main pipe segment 1 includes a main pipe body 11 and a connector base 12 arranged at an interval in the longitudinal direction of the main pipe body 11, and the length of the main pipe body 11 is adapted to the length of the temporary ice making design surface in the longitudinal direction. In this embodiment, the main pipe body 11 is made of a steel pipe, and the joint base 12 is also made of a steel pipe. The interface base 12 corresponds the setting of collection distribution quick-witted 2 of connecing one by one, and the outer end is provided with the external screw thread, and the inner is connected through the hot melt welding with being responsible for body 11, needs the leakproofness of inspection junction after connecting.
The collection and distribution quick connector 2 comprises a collection and distribution quick connector 21, a central control pipe 22 connected between the collection and distribution quick connector 21 and the main pipe section 1, and a valve 23 arranged on the central control pipe 22. As shown in fig. 3, the central control pipe 22 is communicated with the inside of the interface base 12, and a thermometer and a flowmeter are further arranged on the central control pipe 22; the valve 23 provided on the central control pipe 22 is manually or electrically controlled. In this embodiment, the central control pipe 22 is made of a steel pipe.
As shown in fig. 4 to 7, the quick joint 21 includes a joint base 212 connected to an outer end of the center tube 22, a joint cover 211 connected to an outer end of the joint base 212, and a sealing assembly 213 connected between the joint base 212 and the joint cover 211. The seal assembly 213 is a set of seals disposed at the junction; the joint cover 211 is adapted to cross and fasten the ice making pipe.
In this embodiment, the joint cover 211 is frustum-shaped, and the outer side surface is carved with anti-slip lines. The frustum shape of the joint gland 211 is adapted to penetrate through the ice making pipe and the small-sized side is outward. The sealing assembly 213 includes a frustum-shaped annular packing, a T-shaped annular packing, and a linear packing, which are installed at three upper, middle, and lower positions where the joint cover 211 is connected to the joint base 212, respectively.
In this embodiment, the joint base 212 is made of a steel pipe and is provided with an external thread, a fixing nut is arranged on the joint base 212, and the distance between the fixing nut and the outer end of the joint base 212 is adapted to the designed connection length of the ice making pipe; the joint base 212 is correspondingly in threaded connection with the joint gland.
As shown in fig. 8 and 9, the connecting member 3 is made of steel, and the connecting member 3 includes a connecting flange 31, and a first connecting pipe 32 and a second connecting pipe 33 connected to both sides of the connecting flange 31. The first connecting tube 32 and the second connecting tube 33 are each adapted to the connection of the main tube sections 1 on both sides.
In this embodiment, the flanges between the first connecting pipe 32 and the second connecting pipe 33 are connected by bolts. The first connecting pipe 32 and the second connecting pipe 33 are prefabricated into straight pipes or arc pipes in advance according to the ice making trend designed on site. The first connecting pipe 32 and the second connecting pipe 33 are respectively and fixedly connected with the main pipe body 11 in the corresponding main pipe section 1 in a sealing manner through thermal welding.
With reference to fig. 1 to 9, a construction method of the modular movable ice-making adjustable collecting and distributing main pipe device is further described, which specifically comprises the following steps:
the method comprises the steps of firstly, determining the total length of a modularized ice making section according to the area of a temporary indoor ice field, and determining the connection mode of a main pipe section 1, a set distribution quick connector 2 and a connecting piece 3 of each unit according to the total length and the line type, wherein the number of the set distribution quick connectors 2 is determined according to the number of ice making pipes distributed by each unit.
Secondly, connecting the interface base 12 on the main pipe body 11 through hot-melt welding, and detecting that the sealing property meets the requirement; a central control pipe 22 with a valve 23 is connected to the interface base 12 in a threaded mode, the collection and distribution quick connector 2 is connected to the central control pipe 22 in a threaded mode, and then the connecting pieces 3 are installed at the two ends of the main pipe body 11, so that the modular ice making section is formed.
And step three, assembling the modular ice making section according to the designed total length, wherein the line type of the connecting piece 3 is correspondingly designed and adjusted according to the design or site factors until the required total length is assembled.
And step four, the joint gland 211 on the collection and distribution quick connector 2 is buckled, the sealing assembly 213 is taken out, the ice making pipe is inserted into the joint base 212, the sealing assembly 213 is sleeved on the joint gland 211, and the joint gland 211 is screwed tightly, so that the connection between the ice making pipe and the modularized main pipe section 1 is completed.
And step five, during ice making, the control of the ice making pipe is realized by opening and closing the valve 23 on the central control pipe 22, wherein the manual valve and the electric valve can realize single or integral opening and closing control, and the ice making process is controlled by combining the thermometer and the flowmeter until the ice making is finished. When the electric valve is controlled, a corresponding sensor is arranged at the electric valve and is transmitted to a control end through a signal or a line; the control time is divided into two stages, each modularized ice making section is connected in parallel to form a first stage, each valve 23 on each modularized ice making section is connected in parallel to form a second stage, and the control is carried out in real time through a computer.
Step six, during dismantling, the threaded connection between the interface base 12 and the joint base 212 is unscrewed by dismantling the connecting flange 31 in the connecting piece 3; and the modular ice making section is decomposed and recycled.
The above description is only for the preferred embodiment of the present invention, but the scope of the present invention is not limited thereto, and any changes or substitutions that may be considered by those skilled in the art within the technical scope of the present invention disclosed herein should be covered within the scope of the present invention.

Claims (6)

1. The construction method of the modularized movable ice making adjustable collecting and distributing main pipe device is characterized by comprising a group of modularized ice making sections, wherein each modularized ice making section comprises a main pipe section (1), collecting and distributing quick connecting pieces (2) connected to one side of the main pipe section (1) at intervals and connecting pieces (3) connected to two ends of the main pipe section (1);
the collection distribution quick connector (2) comprises a collection distribution quick connector (21), a central control pipe (22) connected between the collection distribution quick connector (21) and the main pipe section (1), and a valve (23) arranged on the central control pipe (22);
the quick joint (21) comprises a joint base (212) connected to the outer end of the central control pipe (22), a joint gland (211) connected to the outer end of the joint base (212), and a sealing assembly (213) connected between the joint base (212) and the joint gland (211); the sealing component (213) is a group of sealing gaskets arranged at the joint; the joint gland (211) is suitable for penetrating and fastening the ice making pipe;
the main pipe section (1) comprises a main pipe body (11) and interface bases (12) arranged on the main pipe body (11) at intervals in the length direction, and the length of the main pipe body (11) is adapted to the length of the temporary ice making design surface in the length direction;
the connecting piece (3) comprises a connecting flange (31), a first connecting pipe (32) and a second connecting pipe (33) which are connected to two sides of the connecting flange (31); the first connecting pipe (32) and the second connecting pipe (33) are respectively suitable for connection of the main pipe sections (1) on two sides;
the construction method of the modularized movable ice-making adjustable collecting and distributing main pipe device is characterized by comprising the following specific steps of:
the method comprises the steps of firstly, determining the total length of a modularized ice making section according to the area of a temporary indoor ice field, and determining the connection mode of a main pipe section (1), a collection distribution quick connector (2) and a connector (3) of each unit according to the total length and the line type, wherein the number of the collection distribution quick connectors (2) is determined according to the number of ice making pipes distributed by each unit;
secondly, connecting an interface base (12) on the main pipe body (11) through hot-melt welding, and detecting that the sealing property meets the requirement; connecting a central control pipe (22) with a valve (23) to an interface base (12) in a threaded manner, connecting a collection distribution quick connector (2) to the central control pipe (22) in a threaded manner, and then installing connectors (3) at two ends of a main pipe body (11) to form a modular ice making section;
assembling the modularized ice making section according to the designed total length, wherein the line type of the connecting piece (3) is correspondingly designed and adjusted according to the design or site factors until the required total length is assembled;
step four, buckling down a joint gland (211) on the collection and distribution quick connector (2), taking out the sealing assembly (213), inserting the ice making pipe into the joint base (212), sleeving the sealing assembly (213) on the joint gland (211) and screwing down the joint gland (211), and completing the connection of the ice making pipe and the modularized main pipe section (1);
step five, during ice making, the control of the ice making pipe is realized by opening and closing a valve (23) on a central control pipe (22), wherein a manual valve and an electric valve can realize single or integral opening and closing control, and the ice making process is controlled by combining a thermometer and a flowmeter until the ice making is finished;
and step six, disassembling the connecting flange (31) in the connecting piece (3) during disassembly, unscrewing the threaded connection at the connector base (12) and the connector base (212), and decomposing and recycling the modular ice making section.
2. The construction method of the modular mobile ice-making adjustable main collecting and distributing pipe device according to claim 1, wherein the interface bases (12) are arranged one by one corresponding to the quick collecting and distributing connectors (2), and the interface bases (12) are communicated with the interior of the cylindrical body and the main pipe body (11) and are provided with external threads.
3. The construction method of the modular mobile ice-making adjustable collecting and distributing main pipe device as claimed in claim 1, wherein the central control pipe (22) is connected to the inside of the interface base (12), and a thermometer and a flowmeter are further arranged on the central control pipe (22); the valve (23) arranged on the central control pipe (22) is controlled manually or electrically.
4. The construction method of the modular movable ice-making adjustable collecting and distributing main pipe device according to claim 3, wherein the joint base (212) is a tubular member and is provided with an external thread, and a fixing nut is arranged on the joint base (212), and the distance between the fixing nut and the outer end of the joint base (212) is adapted to the designed connection length of the ice-making pipe; the joint base (212) is correspondingly in threaded connection with the joint gland (211).
5. The construction method of the modular movable ice-making adjustable collecting and distributing main pipe device according to claim 4, wherein the first connecting pipe (32) and the second connecting pipe (33) are straight pipes or arc pipes, and the first connecting pipe (32) and the second connecting pipe (33) are respectively and fixedly connected with the corresponding main pipe segment (1) in a sealing manner.
6. The method as claimed in claim 1, wherein when the electrically operated valve is used for controlling in step five, a corresponding sensor is disposed at the electrically operated valve and is transmitted to the control end through a signal or a line; the control time is divided into two stages, each modularized ice making section is connected in parallel to form a first stage, each valve on each modularized ice making section is connected in parallel to form a second stage, and the second stage is controlled in real time through a computer.
CN202010580196.1A 2020-06-23 2020-06-23 Modularized movable ice making adjustable collecting and distributing main pipe device and construction method thereof Active CN111765314B (en)

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GB0905871D0 (en) * 2009-04-03 2009-05-20 Eaton Williams Group Ltd Cooling distribution unit
KR101490391B1 (en) * 2013-01-29 2015-02-09 주식회사 삼화엔지니어링 Cooling Tube for Ice Link
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