CN117182051A - A cooling device for aluminum alloy casting - Google Patents

A cooling device for aluminum alloy casting Download PDF

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Publication number
CN117182051A
CN117182051A CN202311217337.3A CN202311217337A CN117182051A CN 117182051 A CN117182051 A CN 117182051A CN 202311217337 A CN202311217337 A CN 202311217337A CN 117182051 A CN117182051 A CN 117182051A
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CN
China
Prior art keywords
aluminum alloy
shell
sliding
cooling device
alloy casting
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Pending
Application number
CN202311217337.3A
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Chinese (zh)
Inventor
徐清
张锦华
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SHANGHAI HUAXIN ALLOY CO Ltd
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SHANGHAI HUAXIN ALLOY CO Ltd
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.)
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Application filed by SHANGHAI HUAXIN ALLOY CO Ltd filed Critical SHANGHAI HUAXIN ALLOY CO Ltd
Priority to CN202311217337.3A priority Critical patent/CN117182051A/en
Publication of CN117182051A publication Critical patent/CN117182051A/en
Pending legal-status Critical Current

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Abstract

The invention relates to the technical field of aluminum alloy casting cooling, in particular to a cooling device for aluminum alloy casting, which comprises an operating table; the lifting mechanism is arranged on the operating platform and comprises a sliding shell, the sliding shell is fixed at the bottom of the operating platform, a shell is fixed at the bottom of the sliding shell, a crank is connected onto the shell in a rotating mode, a worm is fixedly connected onto the crank, a worm wheel meshed with the worm is connected onto the shell in a rotating mode, a toothed plate extending to the inside of the sliding shell is connected onto the shell in a sliding mode, the toothed plate is meshed with the worm wheel, and the ice storage mechanism is connected onto the inside of the sliding shell in a sliding mode; be equipped with air cooling mechanism on the operation panel, place circular shape aluminum alloy wheel hub work piece behind the mechanism of placing, can add the ice-cube to the ice storage mechanism inside on the elevating system, along with air cooling mechanism produces wind energy, realized taking away the air conditioning on the ice-cube and blowing to the aluminum alloy wheel hub on the mechanism of placing, realized the rapid cooling to aluminum alloy wheel hub.

Description

Cooling device for aluminum alloy casting
Technical Field
The invention relates to the technical field of aluminum alloy casting cooling, in particular to a cooling device for aluminum alloy casting.
Background
The aluminum alloy casting is a process of injecting liquid aluminum liquid into a mold cavity for molding by smelting, casting and other means, and generally comprises two basic modes of die casting and gravity casting, wherein the die casting is divided into low-pressure die casting and high-pressure die casting; gravity casting can be divided into sand casting and metal mold or resin mold casting, and aluminum alloy needs to be cooled after casting, and two cooling modes of water cooling and wind cooling exist.
However, the existing round aluminum alloy hub needs to be cooled after casting, when the round aluminum alloy hub is cooled, an air cooling mode is generally adopted according to the production process, and when the aluminum alloy hub is cooled in an air cooling mode, the hub is directly placed at an air outlet of a fan for cooling through a lifting appliance, and the cooling speed is low in a mode of driving air to flow through the fan, so that the cooling time is long, and the time is wasted; and the aluminum alloy wheel hub is generally fed manually after cooling, so that the labor intensity of workers is increased.
Disclosure of Invention
Aiming at the problems in the prior art, the invention provides a cooling device for aluminum alloy casting.
The technical scheme adopted for solving the technical problems is as follows: a cooling device for aluminum alloy casting, comprising:
an operation table;
the lifting mechanism is arranged on the operating platform and comprises a sliding shell, the sliding shell is fixed at the bottom of the operating platform, a shell is fixed at the bottom of the sliding shell, a crank is connected to the shell in a rotating mode, a worm is fixedly connected to the crank, a worm wheel meshed with the worm is connected to the shell in a rotating mode, a toothed plate extending to the inside of the sliding shell is connected to the shell in a sliding mode, the toothed plate is meshed with the worm wheel, and the ice storage mechanism is connected to the inside of the sliding shell in a sliding mode.
Specifically, the lifting mechanism further comprises a top plate, and the top of the toothed plate is fixedly connected with the top plate.
Specifically, sliding connection has the ice storage mechanism that is used for holding the ice-cube on the operation panel, ice storage mechanism includes connects the water tank, sliding connection has the water tank that connects that extends to the smooth shell inside on the operation panel, the inside that connects the water tank is fixed with a plurality of bracing pieces, the workbin that contradicts with the bracing piece has been placed to the inside that connects the water tank, connect the water tank and contradict with the roof.
Specifically, the ice storage mechanism further comprises a water pipe, and the side wall of the water receiving tank is connected with the water pipe.
Specifically, the lifting mechanism further comprises a side groove, the side wall of the sliding shell is provided with the side groove, and the water pipe is connected to the side groove in a sliding mode.
Specifically, install the air cooling mechanism to aluminum alloy work piece on the operation panel, the air cooling mechanism includes the spout, the spout has been seted up on the operation panel, sliding connection has the slide on the spout, threaded connection has the lead screw that changes between with the operation panel on the slide, install the fan on the slide.
Specifically, rotate on the operation panel and be connected with the mechanism of placing that is used for placing circular aluminum alloy work piece, the mechanism of placing includes the pivot, the surface opening part rotation of operation panel is connected with the pivot, rotate in the pivot and be connected with the frame, the inside fixedly connected with of frame places the board, the draw-in groove has been seted up to the lateral wall of frame, sliding connection has the card post on the operation panel, the centre gripping has the spring between card post and the operation panel, the card post block is on the draw-in groove.
Specifically, holes are formed in the surface of the placing plate at equal intervals, and grooves are formed in the surface of the placing plate.
Specifically, a driving mechanism is arranged between the placing mechanism and the operating platform; the driving mechanism comprises two limiting plates, two limiting plates are fixedly connected to the operation table, a pulling frame is connected to the limiting plates in a sliding mode, a rolling shaft is connected to the pulling frame in a rotating mode, pressing grooves are formed in two sides of the outer frame in an inclined mode, the rolling shaft is connected to the pressing grooves in a rolling mode, and pedals are fixed to the pulling frame.
The beneficial effects of the invention are as follows:
(1) According to the cooling device for aluminum alloy casting, the air cooling mechanism is arranged on the operating platform, after the round aluminum alloy wheel hub workpiece is placed on the placing mechanism, ice cubes can be added into the ice storage mechanism on the lifting mechanism, and wind energy is generated along with the air cooling mechanism, so that cool air on the ice cubes is taken away and blown onto the aluminum alloy wheel hub on the placing mechanism, the aluminum alloy wheel hub is rapidly cooled, and time is saved; namely: after placing aluminum alloy wheel hub and accomplishing, add the ice-cube to the inside of workbin, the ice-cube can reduce the temperature of surrounding air, further start the fan, realized that the fan blows cold air to wheel hub's direction, cooling efficiency has been improved, can rotate the lead screw and realize that the slide slides on the spout, the fan is nearer from the workbin, the cold air flow just also faster can improve forced air cooling efficiency, along with the flow of air and the endothermic melting of ice-cube, then the ice water flows to the inside of water receiving tank from the workbin, further open the switch on the water pipe, realize the processing of ice water, avoid cold water to flow to the bottom of operation panel and cause the pollution.
(2) According to the cooling device for aluminum alloy casting, the lifting mechanism is arranged on the operating platform and is in sliding connection with the ice storage mechanism, so that the lifting mechanism can be rotated when the aluminum alloy wheel hub is subjected to air cooling, the cool air is blown through the aluminum alloy wheel hub layer by layer, uniform heat dissipation is realized, and the casting of the aluminum alloy wheel hub is facilitated; namely: when the aluminum alloy wheel hub is cooled through the ice blocks in the feed box, the highest point of the feed box and the highest point of the wheel hub are in the flush state, the further crank is rotated at regular time, the worm is driven to rotate by the crank, the worm wheel is driven to rotate along with the rotation of the worm, the toothed plate can gradually slide downwards along with the rotation of the worm wheel due to the engagement of the worm wheel and the toothed plate, the top plate is further driven to slide downwards, the water receiving tank is further lowered, the aluminum alloy wheel hub is finally cooled layer by layer, the feed box is lifted after the crank is reversely rotated, and the aluminum alloy wheel hub is cooled layer by layer.
(3) According to the cooling device for aluminum alloy casting, the driving mechanism is arranged on the placing mechanism, after the aluminum alloy wheel hub is cooled, the clamping column is pulled, and meanwhile, the driving mechanism is pressed to enable the placing plate to incline, so that the aluminum alloy wheel hub rolls and is fed, and the conveying device is arranged at the bottom of the placing plate to enable the aluminum alloy wheel hub to be fed rapidly, and labor intensity of workers is reduced; namely: the aluminum alloy wheel hub is placed on the placing plate through the lifting appliance after casting, the placing plate is provided with the grooves which are beneficial to placing of the wheel hub, at the moment, the clamping columns and the clamping grooves are in a buckling state, the aluminum alloy wheel hub cannot roll, after cooling of the aluminum alloy wheel hub is completed, the clamping columns are pulled away from the direction of the operation table, the spring is contracted, the further clamping columns are separated from the clamping grooves, meanwhile, the pedal is trampled, the pulling frame slides up and down on the limiting plate, further, due to the fact that the inclined pressing grooves are formed in the side wall of the outer frame, rolling of the rolling shaft in the pressing grooves is achieved when the pulling frame slides down, the placing plate is rotated by taking the rotating shaft as a supporting point, rapid unloading is achieved, labor is saved, and conveying equipment is installed at the bottom of the placing plate to transport the cooled aluminum alloy wheel hub.
Drawings
The invention will be further described with reference to the drawings and examples.
FIG. 1 is a schematic view showing the overall structure of a cooling device for casting aluminum alloy according to a preferred embodiment of the present invention;
FIG. 2 is a schematic diagram of a connection structure between the limiting plate and the pull frame shown in FIG. 1;
FIG. 3 is an enlarged schematic view of the portion A shown in FIG. 2;
FIG. 4 is an enlarged schematic view of the structure of the portion B shown in FIG. 2;
FIG. 5 is an enlarged schematic view of the structure of the portion C shown in FIG. 2;
FIG. 6 is a schematic view of a connection structure between a rotating shaft and a placement plate according to the present invention;
FIG. 7 is an enlarged schematic view of the structure of the portion D shown in FIG. 6;
fig. 8 is an enlarged schematic view of the E-section structure shown in fig. 6.
In the figure: 1. an operation table; 2. an air cooling mechanism; 201. a chute; 202. a fan; 203. a screw rod; 204. a slide; 3. an ice storage mechanism; 301. a feed box; 302. a water receiving tank; 303. a water pipe; 304. a support rod; 4. a lifting mechanism; 401. a housing; 402. a crank; 403. a slide shell; 404. a side groove; 405. a toothed plate; 406. a top plate; 407. a worm; 408. a worm wheel; 5. a placement mechanism; 501. an outer frame; 502. placing a plate; 503. a rotating shaft; 504. a clamping groove; 505. a clamping column; 506. a spring; 6. a driving mechanism; 601. a limiting plate; 602. drawing a frame; 603. a pedal; 604. pressing a groove; 605. and a roller.
Detailed Description
The invention is further described in connection with the following detailed description in order to make the technical means, the creation characteristics, the achievement of the purpose and the effect of the invention easy to understand.
As shown in fig. 1-8, the cooling device for aluminum alloy casting according to the invention comprises an operation table 1, wherein an air cooling mechanism 2 for cooling an aluminum alloy workpiece is arranged on the operation table 1, a lifting mechanism 4 is arranged on the operation table 1, an ice storage mechanism 3 for containing ice cubes is connected onto the operation table 1 in a sliding manner, the ice storage mechanism 3 is connected into the lifting mechanism 4 in a sliding manner, a placing mechanism 5 for placing a round aluminum alloy workpiece is connected onto the operation table 1 in a rotating manner, and a driving mechanism 6 is arranged between the placing mechanism 5 and the operation table 1;
the lifting mechanism 4 comprises a sliding shell 403, the sliding shell 403 is fixed at the bottom of the operating platform 1, a shell 401 is fixed at the bottom of the sliding shell 403, a crank 402 is rotatably connected to the shell 401, a worm 407 is fixedly connected to the crank 402, a worm wheel 408 meshed with the worm 407 is rotatably connected to the interior of the shell 401, a toothed plate 405 extending to the interior of the sliding shell 403 is slidably connected to the shell 401, the toothed plate 405 is meshed with the worm wheel 408, the ice storage mechanism 3 is slidably connected to the interior of the sliding shell 403, the lifting mechanism 4 further comprises a top plate 406, and the top of the toothed plate 405 is fixedly connected with the top plate 406; when the aluminum alloy wheel hub is cooled by the ice blocks in the bin 301, the highest point of the bin 301 and the highest point of the wheel hub are in an flush state, the crank 402 is further rotated at regular time, the crank 402 drives the worm 407 to rotate, the worm wheel 408 is driven to rotate along with the rotation of the worm 407, the toothed plate 405 can gradually slide downwards along with the rotation of the worm wheel 408 due to the engagement of the worm wheel 408 and the toothed plate 405, the top plate 406 is further driven to slide downwards, the water receiving tank 302 is further lowered, the aluminum alloy wheel hub is finally cooled layer by layer, the bin 301 is lifted up after the crank 402 is reversely rotated, and the aluminum alloy wheel hub is cooled layer by layer.
The ice storage mechanism 3 comprises a water receiving tank 302, the operation table 1 is connected with a water receiving tank 302 extending to the inside of a sliding shell 403 in a sliding manner, a plurality of supporting rods 304 are fixed in the water receiving tank 302, a material box 301 which is in contact with the supporting rods 304 is arranged in the water receiving tank 302, the water receiving tank 302 is in contact with a top plate 406, the ice storage mechanism 3 further comprises a water pipe 303, the side wall of the water receiving tank 302 is connected with the water pipe 303, the lifting mechanism 4 further comprises a side groove 404, the side wall of the sliding shell 403 is provided with the side groove 404, and the water pipe 303 is connected to the side groove 404 in a sliding manner; the air cooling mechanism 2 comprises a chute 201, the operation table 1 is provided with the chute 201, the chute 201 is connected with a sliding seat 204 in a sliding way, the sliding seat 204 is connected with a screw rod 203 rotating with the operation table 1 in a threaded way, and the sliding seat 204 is provided with a fan 202; after the aluminum alloy wheel hub is placed, ice cubes are added into the bin 301, the temperature of ambient air can be reduced by the ice cubes, the fan 202 is further started, the effect that the fan 202 blows cold air to the direction of the wheel hub is achieved, cooling efficiency is improved, the screw rod 203 can be rotated to enable the sliding seat 204 to slide on the sliding groove 201, the closer the fan 202 is to the bin 301, air cooling efficiency can be improved, along with the air flow and the ice cubes heat absorption melting, ice water flows from the bin 301 to the inside of the water receiving tank 302, the switch on the water pipe 303 is further opened, the ice water treatment is achieved, and pollution caused by the cold water flowing to the bottom of the operating console 1 is avoided.
Specifically, the placement mechanism 5 includes a rotating shaft 503, a surface opening of the operation platform 1 is rotationally connected with the rotating shaft 503, an outer frame 501 is rotationally connected on the rotating shaft 503, a placement plate 502 is fixedly connected on the inner portion of the outer frame 501, a clamping groove 504 is formed in the side wall of the outer frame 501, a clamping post 505 is slidingly connected on the operation platform 1, a spring 506 is clamped between the clamping post 505 and the operation platform 1, the clamping post 505 is clamped on the clamping groove 504, holes are formed in the surface of the placement plate 502 at equal intervals, grooves are formed in the surface of the placement plate 502, the driving mechanism 6 includes two limiting plates 601, two limiting plates 601 are fixedly connected on the operation platform 1, a pulling frame 602 is slidingly connected on the limiting plates 601, a roller 605 is rotationally connected on the pulling frame 602, pressing grooves 604 are obliquely formed in two sides of the outer frame 501, the roller 605 is in rolling connection with the pressing grooves 604, and a pedal 603 is fixedly arranged on the pulling frame 602; the aluminum alloy wheel hub is placed on the placing plate 502 through the lifting tool after casting, the placing plate 502 is provided with the grooves for placing the wheel hub, at the moment, the clamping columns 505 and the clamping grooves 504 are in a buckling state, the aluminum alloy wheel hub cannot roll, after cooling of the aluminum alloy wheel hub is completed, the clamping columns 505 are pulled away from the direction of the operation table 1, the springs 506 shrink, the clamping columns 505 are further separated from the clamping grooves 504, meanwhile, the pedals 603 are stepped on, the pulling frame 602 is enabled to slide up and down on the limiting plate 601, further, due to the fact that the inclined pressing grooves 604 are formed in the side walls of the outer frame 501, the rolling shafts 605 roll inside the pressing grooves 604 when the pulling frame 602 slides down, and therefore the placing plate 502 rotates by taking the rotating shafts 503 as supporting points, rapid unloading is achieved, labor is saved, and the cooled aluminum alloy wheel hub can be transported by installing conveying equipment at the bottom of the placing plate 502.
When the aluminum alloy hub casting device is used, firstly, the aluminum alloy hub is placed on the placing plate 502 through the lifting appliance after casting, the placing plate 502 is provided with the grooves which are beneficial to placing the hub, the clamping columns 505 and the clamping grooves 504 are in a buckling state at the moment, the aluminum alloy hub cannot roll, after cooling of the aluminum alloy hub is finished, the clamping columns 505 are pulled in the direction deviating from the operation table 1, the springs 506 are contracted, the further clamping columns 505 are separated from the clamping grooves 504, meanwhile, the pedal 603 is stepped on, the pulling frame 602 slides up and down on the limiting plate 601, further, due to the fact that the inclined pressing grooves 604 are arranged on the side wall of the outer frame 501, the rolling of the rolling shafts 605 in the pressing grooves 604 is realized when the pulling frame 602 slides down, the placing plate 502 is further realized to rotate by taking the rotating shafts 503 as supporting points, the rapid unloading is realized, labor is saved, and the conveying equipment is arranged at the bottom of the placing plate 502, so that the cooled aluminum alloy hub can be transported;
then, after the aluminum alloy wheel hub is placed, ice cubes are added into the bin 301, the temperature of surrounding air can be reduced by the ice cubes, the fan 202 is further started, the fan 202 blows cold air to the direction of the wheel hub, the cooling efficiency is improved, the screw 203 can be rotated to enable the sliding seat 204 to slide on the sliding groove 201, the closer the fan 202 is to the bin 301, the faster the cold air flows, the air cooling efficiency can be improved, along with the flow of the air and the heat absorption melting of the ice cubes, ice water flows into the water receiving tank 302 from the bin 301, the switch on the water pipe 303 is further opened, the treatment of the ice water is realized, and pollution caused by the cold water flowing to the bottom of the operating table 1 is avoided;
finally, when the aluminum alloy wheel hub is cooled through the ice blocks in the material box 301, the highest point of the material box 301 and the highest point of the wheel hub are in the flush state, the crank 402 is further rotated at regular time, the crank 402 drives the worm 407 to rotate, the worm wheel 408 is driven to rotate along with the rotation of the worm 407, the worm wheel 408 is meshed with the toothed plate 405, the toothed plate 405 can gradually slide downwards along with the rotation of the worm wheel 408, the top plate 406 is further driven to slide downwards, the water receiving tank 302 is further lowered, the aluminum alloy wheel hub is finally cooled layer by layer, the material box 301 is raised after the crank 402 is reversely rotated, and the aluminum alloy wheel hub can be cooled layer by layer.
It will be evident to those skilled in the art that the invention is not limited to the details of the foregoing illustrative embodiments, and that the present invention may be embodied in other specific forms without departing from the spirit or essential characteristics thereof. The present embodiments are, therefore, to be considered in all respects as illustrative and not restrictive, the scope of the invention being indicated by the appended claims rather than by the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. Any reference sign in a claim should not be construed as limiting the claim concerned.
Furthermore, it should be understood that although the present disclosure describes embodiments, not every embodiment is provided with a separate embodiment, and that this description is provided for clarity only, and that the disclosure is not limited to the embodiments described in detail below, and that the embodiments described in the examples may be combined as appropriate to form other embodiments that will be apparent to those skilled in the art.

Claims (9)

1. A cooling device for aluminum alloy casting, comprising:
an operation table (1);
lifting mechanism (4), install lifting mechanism (4) on operation panel (1), lifting mechanism (4) include smooth shell (403), the bottom of operation panel (1) is fixed with smooth shell (403), the bottom of smooth shell (403) is fixed with shell (401), rotate on shell (401) and be connected with crank (402), fixedly connected with worm (407) on crank (402), the inside rotation of shell (401) is connected with worm wheel (408) with worm (407) meshing, sliding connection has pinion rack (405) that extend to the inside of smooth shell (403) on shell (401), pinion rack (405) and worm wheel (408) meshing, ice storage mechanism (3) sliding connection is in the inside of smooth shell (403).
2. The cooling device for aluminum alloy casting according to claim 1, wherein: the lifting mechanism (4) further comprises a top plate (406), and the top of the toothed plate (405) is fixedly connected with the top plate (406).
3. The cooling device for aluminum alloy casting according to claim 2, wherein: the ice storage device is characterized in that an ice storage mechanism (3) for containing ice cubes is connected to the operation table (1) in a sliding mode, the ice storage mechanism (3) comprises a water receiving tank (302), the water receiving tank (302) extending to the inside of the sliding shell (403) is connected to the operation table (1) in a sliding mode, a plurality of support rods (304) are fixed to the inside of the water receiving tank (302), a material box (301) which is in interference with the support rods (304) is placed in the water receiving tank (302), and the water receiving tank (302) is in interference with the top plate (406).
4. A cooling device for aluminum alloy casting according to claim 3, wherein: the ice storage mechanism (3) further comprises a water pipe (303), and the side wall of the water receiving tank (302) is connected with the water pipe (303).
5. The cooling device for aluminum alloy casting according to claim 4, wherein: the lifting mechanism (4) further comprises a side groove (404), the side wall of the sliding shell (403) is provided with the side groove (404), and the water pipe (303) is connected to the side groove (404) in a sliding mode.
6. The cooling device for aluminum alloy casting according to claim 1, wherein: install air cooling mechanism (2) on operation panel (1) to cool off aluminum alloy work piece, air cooling mechanism (2) include spout (201), spout (201) have been seted up on operation panel (1), sliding connection has slide (204) on spout (201), threaded connection has screw rod (203) with change between operation panel (1) on slide (204), install fan (202) on slide (204).
7. The cooling device for aluminum alloy casting according to claim 1, wherein: the rotary aluminum alloy clamping device is characterized in that a placing mechanism (5) for placing a round aluminum alloy workpiece is rotationally connected to the operation table (1), the placing mechanism (5) comprises a rotating shaft (503), the rotating shaft (503) is rotationally connected to the surface opening of the operation table (1), an outer frame (501) is rotationally connected to the rotating shaft (503), a placing plate (502) is fixedly connected to the inner portion of the outer frame (501), a clamping groove (504) is formed in the side wall of the outer frame (501), a clamping column (505) is slidingly connected to the operation table (1), a spring (506) is clamped between the clamping column (505) and the operation table (1), and the clamping column (505) is clamped on the clamping groove (504).
8. The cooling device for aluminum alloy casting according to claim 7, wherein: holes are formed in the surface of the placing plate (502) at equal intervals, and grooves are formed in the surface of the placing plate (502).
9. The cooling device for aluminum alloy casting according to claim 7, wherein: a driving mechanism (6) is arranged between the placing mechanism (5) and the operating platform (1); the driving mechanism (6) comprises two limiting plates (601), two limiting plates (601) are fixedly connected to the operation table (1), a pull frame (602) is connected to the limiting plates (601) in a sliding mode, a roller (605) is connected to the pull frame (602) in a rotating mode, pressing grooves (604) are obliquely formed in two sides of the outer frame (501), the roller (605) is connected to the pressing grooves (604) in a rolling mode, and a pedal (603) is fixed to the pull frame (602).
CN202311217337.3A 2023-09-20 2023-09-20 A cooling device for aluminum alloy casting Pending CN117182051A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202311217337.3A CN117182051A (en) 2023-09-20 2023-09-20 A cooling device for aluminum alloy casting

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202311217337.3A CN117182051A (en) 2023-09-20 2023-09-20 A cooling device for aluminum alloy casting

Publications (1)

Publication Number Publication Date
CN117182051A true CN117182051A (en) 2023-12-08

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Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN211798918U (en) * 2019-11-20 2020-10-30 丽水腾创新材料有限公司 Material extraction element that cooling is rapid and even
CN212217043U (en) * 2020-04-20 2020-12-25 上海生惠仪表电器有限公司 Cooling device for die casting die
CN112918078A (en) * 2021-01-22 2021-06-08 张四民 Printing roller cooling device for printing
CN214212191U (en) * 2020-11-10 2021-09-17 苏州创泰合金材料有限公司 High-efficient type cooling device is used in aluminum component casting
CN216065500U (en) * 2021-09-02 2022-03-18 襄阳襄车铁达缸套铸业有限公司 Blast cooling device

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN211798918U (en) * 2019-11-20 2020-10-30 丽水腾创新材料有限公司 Material extraction element that cooling is rapid and even
CN212217043U (en) * 2020-04-20 2020-12-25 上海生惠仪表电器有限公司 Cooling device for die casting die
CN214212191U (en) * 2020-11-10 2021-09-17 苏州创泰合金材料有限公司 High-efficient type cooling device is used in aluminum component casting
CN112918078A (en) * 2021-01-22 2021-06-08 张四民 Printing roller cooling device for printing
CN216065500U (en) * 2021-09-02 2022-03-18 襄阳襄车铁达缸套铸业有限公司 Blast cooling device

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