CN218224616U - High-efficient cooling device of ingot casting - Google Patents

High-efficient cooling device of ingot casting Download PDF

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Publication number
CN218224616U
CN218224616U CN202221734177.0U CN202221734177U CN218224616U CN 218224616 U CN218224616 U CN 218224616U CN 202221734177 U CN202221734177 U CN 202221734177U CN 218224616 U CN218224616 U CN 218224616U
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CN
China
Prior art keywords
cooling tower
cooling
ingot casting
thick bamboo
cooling device
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Active
Application number
CN202221734177.0U
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Chinese (zh)
Inventor
周荣强
姚建春
王伟
张建峰
陆国平
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Inner Mongolia Chendong Recycling Technology Co ltd
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Inner Mongolia Chendong Recycling Technology Co ltd
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Priority to CN202221734177.0U priority Critical patent/CN218224616U/en
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Abstract

The utility model discloses an ingot casting high-efficiency cooling device, which comprises a vertically arranged cooling tower drum, wherein a plurality of support legs are vertically and downwardly arranged on the cooling tower drum, a feed inlet and a discharge outlet are respectively arranged at the top end and the bottom end of the cooling tower drum, a central shaft is coaxially arranged in the cooling tower drum, the two ends of the central shaft are respectively and rotatably connected with the top end and the bottom end of the cooling tower drum, the central shaft is in transmission connection with a motor, and a spiral material plate is coaxially arranged on the central shaft; the utility model has the advantages that: the utility model relates to a simple structure saves space, designs spiral blanking structure, makes the ingot casting after the drawing of patterns fall on the spiral flitch, carries out the water spray cooling in the ingot casting whereabouts, and the air that the design draught fan cooled off a tower section of thick bamboo with higher speed flows to make the moisture rapid evaporation on ingot casting surface, reach rapid cooling's purpose, be worth using widely on a large scale.

Description

High-efficient cooling device of ingot casting
The technical field is as follows:
the utility model relates to an ingot casting cooling device technical field especially relates to a high-efficient cooling device of ingot casting.
Background art:
in the nickel-chromium alloy smelting process, molten iron smelted from a submerged arc furnace enters a ladle, the ladle pours the molten iron on an ingot casting mold to form an ingot casting, in order to increase the working efficiency, continuous casting equipment is generally adopted to carry out batch production of the ingot casting, the temperature of the ingot casting demoulded from a continuous casting machine is high, the ingot casting needs to be kept stand for several hours, and the ingot casting can be packaged and stored in a warehouse after being cooled, so the following technical problems generally exist in the ingot casting production process: the cooling time is long after the ingot is demoulded, so that the ingot to be cooled is accumulated and cannot be stored, and the production speed can only be forced to be slowed down.
The utility model has the following contents:
an object of the utility model is to provide a high-efficient cooling device of ingot casting.
The content of the utility model is as follows: the utility model provides a high-efficient cooling device of ingot casting, its includes the cooling tower section of thick bamboo of vertical setting vertical decurrent installation a plurality of landing leg on the cooling tower section of thick bamboo feed inlet and discharge gate have been seted up respectively to the top and the bottom of a cooling tower section of thick bamboo coaxial center pin that is provided with in the cooling tower section of thick bamboo, the both ends of center pin respectively with the top and the bottom swivelling joint of a cooling tower section of thick bamboo, the center pin is connected with motor drive coaxial installation helical screw flitch on the center pin the outer vertical condenser tube that is provided with of a cooling tower section of thick bamboo install a plurality of cooling water branch pipe on the condenser tube, the end of cooling water branch pipe extends to in the cooling tower section of thick bamboo, the shower nozzle is installed to the end of cooling water branch pipe.
Furthermore, a material baffle plate matched with the spiral material plate in shape is installed on the outer edge of the spiral material plate.
Furthermore, a material receiving groove is obliquely arranged right below the cooling tower barrel.
Furthermore, the included angle between the material receiving groove and the horizontal direction is 10-30 degrees.
Further, connect the articulated arm that the top of silo and level set up articulated, the equal fixed connection in both ends of articulated arm is in on the landing leg connect the below of silo to be provided with the elastic support seat, the gyro wheel is installed on the top of elastic support seat, the gyro wheel with connect the bottom plate elastic contact of silo.
Furthermore, a water collecting tank is arranged on the bottom plate of the material receiving tank, a perforated plate is fixedly covered on the water collecting tank, a water collecting pipe is arranged on the bottom plate of the material receiving tank downwards, and the water collecting pipe is communicated with the water collecting tank.
Furthermore, an induced draft fan is installed at the top end of the cooling tower barrel.
The utility model has the advantages that: the utility model relates to a simple structure saves space, designs spiral blanking structure, makes the ingot casting after the drawing of patterns fall on the spiral flitch, carries out the water spray cooling in the ingot casting whereabouts, and the air that the design draught fan cooled off a tower section of thick bamboo with higher speed flows to make the moisture rapid evaporation on ingot casting surface, reach rapid cooling's purpose, design cold water recovery structure simultaneously, make the shower water obtain retrieving and recycle, energy-concerving and environment-protective, be worth using widely on a large scale.
Description of the drawings:
fig. 1 is a perspective view of the present invention;
fig. 2 is a cross-sectional view of the present invention;
in the figure, a cooling tower barrel 1, a central shaft 2, a spiral material plate 3, a draught fan 4, a roller 5, a cooling water pipe 6, a spray head 7, a motor 8, a supporting leg 9, a material receiving groove 10, a water collecting groove 11, a porous plate 12, a hinge rod 13, a water collecting pipe 14, an elastic supporting seat 15 and a material baffle plate 16.
The specific implementation mode is as follows:
as shown in fig. 1 and fig. 2, an efficient ingot casting cooling device includes a vertically arranged cooling tower barrel 1, a plurality of support legs 9 are vertically installed on the cooling tower barrel 1 downward, a feed inlet and a discharge outlet are respectively formed in the top end and the bottom end of the cooling tower barrel 1, a central shaft 2 is coaxially arranged in the cooling tower barrel 1, two ends of the central shaft 2 are respectively rotatably connected with the top end and the bottom end of the cooling tower barrel 1, the central shaft 2 is in transmission connection with a motor 8, a spiral material plate 3 is coaxially installed on the central shaft 2, a cooling water pipe 6 is vertically arranged outside the cooling tower barrel 1, a plurality of cooling water branch pipes are installed on the cooling water pipe 6, the tail ends of the cooling water branch pipes extend into the cooling tower barrel 1, and spray heads 7 are installed at the tail ends of the cooling water branch pipes; a material baffle 16 matched with the spiral material plate 3 in shape is arranged at the outer edge of the spiral material plate 3; a material receiving groove 10 is obliquely arranged right below the cooling tower barrel 1; the included angle between the material receiving groove 10 and the horizontal direction is 10-30 degrees; the top of the material receiving groove 10 is hinged with a hinge rod 13 which is horizontally arranged, two ends of the hinge rod 13 are fixedly connected to the supporting legs 9, an elastic supporting seat 15 is arranged below the material receiving groove 10, the top end of the elastic supporting seat 15 is provided with a roller 5, and the roller 5 is in elastic contact with the bottom plate of the material receiving groove 10; a water collecting tank 11 is arranged on the bottom plate of the material receiving tank 10, a perforated plate 12 is fixedly covered on the water collecting tank 11, a water collecting pipe 14 is downwards arranged on the bottom plate of the material receiving tank 10, and the water collecting pipe 14 is communicated with the water collecting tank 11; and an induced draft fan 4 is installed at the top end of the cooling tower barrel 1.
The working principle is as follows: the during operation, the ingot casting of drawing of patterns passes through on the feed inlet enters into the spiral flitch 3 in the cooling tower section of thick bamboo 1 from the conticaster, because motor 8's effect, the ingot casting constantly falls on spiral flitch 3, meanwhile, 7 blowout cooling waters of shower nozzle cool down the ingot casting, draught fan 4 can accelerate the air flow in the cooling tower section of thick bamboo 1, the evaporation of ingot casting surface moisture with higher speed, thereby the ingot casting cooling with higher speed, the ingot casting after the cooling enters into and connects and discharges on silo 10, spray water can be collected to water catch bowl 11, and discharge through collector pipe 14, elastic support seat 15 can produce elastic vibration, prevent that the ingot casting from blockking up on connecing silo 10.
The above description is only a preferred embodiment of the present invention, and should not be taken as limiting the invention, and any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention should be included in the protection scope of the present invention.

Claims (7)

1. The utility model provides a high-efficient cooling device of ingot casting which characterized in that: it includes the cooling tower section of thick bamboo (1) of vertical setting vertical decurrent installation has a plurality of landing leg (9) on the cooling tower section of thick bamboo (1) feed inlet and discharge gate have been seted up respectively to the top and the bottom of cooling tower section of thick bamboo (1) the coaxial center pin (2) that are provided with in the cooling tower section of thick bamboo (1), the both ends of center pin (2) respectively with the top and the bottom swivelling joint of cooling tower section of thick bamboo (1), center pin (2) are connected with motor (8) transmission the coaxial spiral flitch (3) of installing on center pin (2) the outer vertical condenser tube (6) that is provided with of cooling tower section of thick bamboo (1) install a plurality of cooling water branch pipe on condenser tube (6), the end of cooling water branch pipe extends to in the cooling tower section of thick bamboo (1), shower nozzle (7) are installed to the end of cooling water branch pipe.
2. The efficient ingot casting cooling device of claim 1, wherein: and a material baffle plate (16) matched with the shape of the spiral material plate (3) is arranged at the outer edge of the spiral material plate (3).
3. The efficient ingot cooling device of claim 1, wherein: a material receiving groove (10) is obliquely arranged right below the cooling tower barrel (1).
4. The efficient ingot casting cooling device of claim 3, wherein: the included angle between the material receiving groove (10) and the horizontal direction is 10-30 degrees.
5. The efficient ingot cooling device of claim 3, wherein: connect articulated mast (13) that the top and the level of silo (10) set up articulated, the equal fixed connection in both ends of articulated mast (13) is in on landing leg (9 the below that connects silo (10) is provided with elastic support seat (15), gyro wheel (5) are installed on the top of elastic support seat (15), gyro wheel (5) with connect the bottom plate elastic contact of silo (10).
6. The efficient ingot cooling device of claim 4, wherein: the water collecting device is characterized in that a water collecting tank (11) is formed in the bottom plate of the material receiving tank (10), a perforated plate (12) is fixedly covered on the water collecting tank (11), a water collecting pipe (14) is downwards installed on the bottom plate of the material receiving tank (10), and the water collecting pipe (14) is communicated with the water collecting tank (11).
7. The efficient ingot cooling device according to any one of claims 1 to 6, wherein: and an induced draft fan (4) is installed at the top end of the cooling tower cylinder (1).
CN202221734177.0U 2022-07-05 2022-07-05 High-efficient cooling device of ingot casting Active CN218224616U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202221734177.0U CN218224616U (en) 2022-07-05 2022-07-05 High-efficient cooling device of ingot casting

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202221734177.0U CN218224616U (en) 2022-07-05 2022-07-05 High-efficient cooling device of ingot casting

Publications (1)

Publication Number Publication Date
CN218224616U true CN218224616U (en) 2023-01-06

Family

ID=84674787

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202221734177.0U Active CN218224616U (en) 2022-07-05 2022-07-05 High-efficient cooling device of ingot casting

Country Status (1)

Country Link
CN (1) CN218224616U (en)

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