CN214720484U - Pumping rolling type cooling equipment for cooling castings - Google Patents

Pumping rolling type cooling equipment for cooling castings Download PDF

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Publication number
CN214720484U
CN214720484U CN202120454849.1U CN202120454849U CN214720484U CN 214720484 U CN214720484 U CN 214720484U CN 202120454849 U CN202120454849 U CN 202120454849U CN 214720484 U CN214720484 U CN 214720484U
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cooling
pumping mechanism
embedded
pumping
casting
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CN202120454849.1U
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李鄂成
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Hunan Zijing New Material Technology Co ltd
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Hunan Zijing New Material Technology Co ltd
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Abstract

The utility model belongs to the technical field of cooling equipment, in particular to a pumping rolling type cooling equipment for casting cooling, which comprises a cooling equipment main body, a lifting mechanism, a pumping mechanism and a cooling tank, wherein the top of the cooling equipment main body is connected with the lifting mechanism in an embedding way, the bottom of the cooling equipment main body is connected with the pumping mechanism in an embedding way, the inner top of the pumping mechanism is connected with the cooling tank in an embedding way, one side of the lifting mechanism is connected with a support column in an embedding way, the top of the other end of the support column is connected with a top plate in an embedding way, the lifting mechanism is helpful to lift or descend the casting, thereby being convenient for operators to use, further improving the versatility of the device, the pumping mechanism is composed of a corrosion-resistant layer, a fixed base, a fixed block, a cooling tank, a cooler, a pressure sensor, a water pump, a connecting pipe and a control valve, the pumping mechanism is helpful to pump cooling water into the cooling tank to spray water to the casting, the practicability of the device is improved, and the device can have wide development prospect in the future.

Description

Pumping rolling type cooling equipment for cooling castings
Technical Field
The utility model relates to a cooling arrangement technical field specifically is a formula cooling arrangement is rolled to pump sending for foundry goods refrigerated.
Background
The casting is a metal molding object obtained by various casting methods, namely, smelted liquid metal is poured into a casting mold prepared in advance by pouring, injecting, sucking or other casting methods, and after the casting mold is cooled and subjected to subsequent processing means such as grinding and the like, the object with certain shape, size and performance is obtained.
At present, the present formula cooling arrangement that rolls is rolled in pumping for foundry goods cooling places the foundry goods at the aquatic when the foundry goods cools off, and the foundry goods is placed and is cooled off at the aquatic, and the foundry goods will deposit the bottom under the effect of gravity, can not see the condition of inside clearly, the taking out of the foundry goods of being not convenient for, and the water-cooling rate of simple in addition is slow, and the cooling effect is poor, is unfavorable for operating personnel to use, and current device function singleness is low in addition intelligent.
Therefore, how to design a pumping rolling type cooling device for casting cooling becomes a problem to be solved at present.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a be used for foundry goods refrigerated pump sending to roll formula cooling arrangement to solve the problem that the cooling effect that proposes among the above-mentioned background art is poor, function singleness and intelligent low.
In order to achieve the above object, the utility model provides a following technical scheme: a pumping rolling type cooling device for cooling castings comprises a cooling device main body, a lifting mechanism, a pumping mechanism and a cooling groove, wherein the lifting mechanism is connected to the top of the cooling device main body in an embedded manner, the pumping mechanism is connected to the bottom of the cooling device main body in an embedded manner, the cooling groove is connected to the top of the inside of the pumping mechanism in an embedded manner, a supporting column is connected to one side of the lifting mechanism in an embedded manner, a top plate is connected to the top of the other end of the supporting column in an embedded manner, a motor is connected to the other side of the bottom end of the top plate in an embedded manner, a winch is connected to one end of the motor in an embedded manner, a connecting belt is movably connected to the middle of the winch, a connector is movably connected to the bottom of the connecting belt in a connected manner, a rotator is connected to the bottom of the rotator in an embedded manner, a casting is movably connected to the bottom of the fixer, the inboard embedding of pumping mechanism is connected with the corrosion resistant layer, pumping mechanism's bottom embedding is connected with unable adjustment base, pumping mechanism's one end bottom embedding is connected with the fixed block, pumping mechanism's inside bottom embedding is connected with the cooler bin, the inside bottom middle part embedding of cooler bin is connected with the cooler, the embedding of inside bottom middle part one side of cooler bin is connected with pressure sensors, the embedding of inside bottom one side of cooler bin is connected with the water pump, the top through connection of water pump has the connecting pipe, the bottom through connection of connecting pipe has the control valve, the inboard one side embedding of cooling bath is connected with the cooling tube, the bottom through connection of cooling bath has the water inlet.
Preferably, the other end of the cooling pipe is connected with a sprayer in a penetrating way.
Preferably, a filter is embedded and connected to the bottom of the inner side of the cooling tank.
Preferably, a temperature sensor is embedded and connected to the other side of the middle part of the bottom inside the cooling box.
Preferably, the lifting mechanism is formed by combining a supporting column on one side of the lifting mechanism, a top plate on the top of the other end of the supporting column, a motor on the other side of the bottom end of the top plate, a winch on one end of the motor, a connecting belt in the middle of the winch, a connector connected with the bottom of the connecting belt, a rotator at the bottom end of the connector, a fixer at the bottom end of the rotator and a casting at the bottom of the fixer together.
Preferably, the pumping mechanism is formed by combining a corrosion-resistant layer on the inner side of the pumping mechanism, a fixed base at the bottom end of the pumping mechanism, a fixed block at the bottom of one end of the pumping mechanism, a cooling tank at the bottom inside the pumping mechanism, a cooler at the middle part of the bottom inside the cooling tank, a pressure sensor at one side of the middle part of the bottom inside the cooling tank, a water pump at one side of the bottom inside the cooling tank, a connecting pipe at the top end of the water pump and a control valve at the bottom of the connecting pipe.
Compared with the prior art, the beneficial effects of the utility model are that:
1. this kind of a formula cooling arrangement is rolled in pumping for foundry goods cooling, hoist mechanism comprises support column, roof, motor, capstan winch, connecting band, connector, circulator, fixer and foundry goods to reach and promote or the effect that descends the foundry goods, hoist mechanism helps promoting or descending the foundry goods, thereby makes things convenient for operating personnel to use, and then has improved the multifunctionality of device.
2. This kind of a formula cooling arrangement is rolled in pump sending for foundry goods is refrigerated, pumping mechanism comprises corrosion resistant layer, unable adjustment base, fixed block, cooler bin, cooler, pressure sensors, water pump, connecting pipe and control valve to reach and carry out water spray cooling's effect to the foundry goods, pumping mechanism helps extracting the cooling water to the cooling bath and carries out water spray cooling to the foundry goods, thereby has improved the practicality of device.
Drawings
Fig. 1 is a schematic view of the overall cross-sectional structure of the present invention;
fig. 2 is a schematic view of a cross-sectional structure of the lifting mechanism of the present invention;
fig. 3 is a schematic sectional structure diagram of the pumping mechanism of the present invention;
fig. 4 is a schematic view of the sectional structure of the cooling tank of the present invention.
The labels in the figure are: 1. the cooling device comprises a cooling device main body, 2, a lifting mechanism, 201, a support column, 202, a top plate, 203, a motor, 204, a winch, 205, a connecting belt, 206, a connector, 207, a rotator, 208, a fixer, 209, a casting, 3, a pumping mechanism, 301, a corrosion-resistant layer, 302, a fixed base, 303, a fixed block, 304, a cooling box, 305, a cooler, 306, a pressure sensor, 307, a temperature sensor, 308, a water pump, 309, a connecting pipe, 3010, a control valve, 4, a cooling tank, 401, a filter, 402, a cooling pipe, 403, a sprayer, 404 and a water inlet.
Detailed Description
The technical solution in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, rather than all embodiments, and all other embodiments obtained by a person of ordinary skill in the art without creative work belong to the protection scope of the present invention based on the embodiments of the present invention.
Referring to fig. 1-4, the present invention provides a technical solution: a pumping tumbling type cooling device for cooling castings comprises a cooling device main body 1, a lifting mechanism 2, a pumping mechanism 3 and a cooling tank 4, wherein the lifting mechanism 2 is connected to the top of the cooling device main body 1 in an embedded manner, the pumping mechanism 3 is connected to the bottom of the cooling device main body 1 in an embedded manner, the cooling tank 4 is connected to the top of the pumping mechanism 3 in an embedded manner, a supporting column 201 is connected to one side of the lifting mechanism 2 in an embedded manner, a top plate 202 is connected to the top of the other end of the supporting column 201 in an embedded manner, a motor 203 is connected to the other side of the bottom end of the top plate 202 in an embedded manner, a winch 204 is connected to one end of the motor 203 in an embedded manner, a connecting belt 205 is movably connected to the middle part of the winch 204, a connector 206 is movably connected to the bottom of the connecting belt 205, a rotator 207 is connected to the bottom end of the connector 206 in an embedded manner, a fixer 208 is connected to the bottom of the rotator 207 in an embedded manner, and a casting 209 is movably connected to the bottom of the fixer 208, the inboard embedding of pumping mechanism 3 is connected with corrosion-resistant layer 301, the bottom embedding of pumping mechanism 3 is connected with unable adjustment base 302, the one end bottom embedding of pumping mechanism 3 is connected with fixed block 303, the inside bottom embedding of pumping mechanism 3 is connected with cooler bin 304, the inside bottom middle part embedding of cooler bin 304 is connected with cooler 305, the inside bottom middle part one side embedding of cooler bin 304 is connected with pressure sensors 306, the inside bottom one side embedding of cooler bin 304 is connected with water pump 308, the top through connection of water pump 308 has connecting pipe 309, the bottom through connection of connecting pipe 309 has control valve 3010, the inboard one side embedding of cooling bath 4 is connected with cooling tube 402, the bottom through connection of cooling bath 4 has water inlet 404.
Preferably, the other end of the cooling pipe 402 is connected with a sprayer 403 in a penetrating manner, when the device is in operation, an operator controls the water pump 308 to start operation through the control panel, so that the water pump 308 pumps cooling water into the cooling pipe 402, and then the cooling water is sprayed out through the sprayer 403 at the other end of the cooling pipe 402, so as to spray water to cool the casting 209, six sprayers 403 are arranged, the sprayers 403 are symmetrically arranged on the inner side of the cooling tank 4, and the sprayers 403 are beneficial to spray water to cool the casting 209, so that the working efficiency of the device is improved.
Preferably, the filter 401 is connected to the inboard bottom embedding of cooling bath 4, when operating personnel is using the device, operating personnel control sprinkler 403 carries out water spray cooling to foundry goods 209, the cooling water drops into on the filter 401 of the inboard bottom of cooling bath 4 after cooling to foundry goods 209 to filter 401 filters the cooling water that drops, and then filters the impurity in the cooling water, the cooling water after the filtration gets into in the cooler bin 304 from water inlet 404, with this reciprocal, filter 401 helps filtering the impurity in the cooling water.
Preferably, the inside bottom middle part opposite side embedding of cooler bin 304 is connected with temperature-sensing ware 307, when operating personnel is using the device, operating personnel begins the operation through the temperature-sensing ware 307 of the inside bottom middle part opposite side of control panel control cooler bin 304, thereby temperature-sensing ware 307 monitors the temperature of the inside cooling water of cooler bin 304, and then send information to control panel, thereby make things convenient for operating personnel to look over, temperature-sensing ware 307 helps monitoring the temperature of the inside cooling water of cooler bin 304, thereby the intelligence of device has been improved.
Preferably, the lifting mechanism 2 is formed by combining a supporting column 201 at one side of the lifting mechanism 2, a top plate 202 at the top of the other end of the supporting column 201, a motor 203 at the other side of the bottom end of the top plate 202, a winch 204 at one end of the motor 203, a connecting belt 205 at the middle part of the winch 204, a connector 206 at the bottom of the connecting belt 205, a rotator 207 at the bottom end of the connector 206, a fixer 208 at the bottom end of the rotator 207 and a casting 209 at the bottom end of the fixer 208, when an operator needs to use the device, the operator places the casting 209 between the fixers 208 at the bottom end of the rotator 207, so that the operator fixes the casting 209 through the fixer 208, further controls the motor 203 at the other side of the bottom end of the top plate 202 to start to operate through a control panel, so that the motor 203 drives the winch 204 to rotate, and further places the connector 206 connected with the connecting belt 205 at the middle part of the winch 204 into the device, thereby put into device inside to cast 209 and cool off, in the cooling process, the circulator 207 of connector 206 bottom rotates, thereby drive fixer 208 and rotate, and then cool off cast 209, the cooling is accomplished the back, operating personnel promotes cast 209 through connecting band 205, thereby make things convenient for operating personnel to take off cast 209, hoist mechanism 2 helps promoting or descending cast 209, thereby make things convenient for operating personnel to use, and then the multifunctionality of device has been improved.
Preferably, the pumping mechanism 3 is formed by combining a corrosion-resistant layer 301 inside the pumping mechanism 3, a fixed base 302 at the bottom end of the pumping mechanism 3, a fixed block 303 at the bottom of one end of the pumping mechanism 3, a cooling tank 304 at the bottom inside the pumping mechanism 3, a cooler 305 at the middle part of the bottom inside the cooling tank 304, a pressure sensor 306 at the middle part of the bottom inside the cooling tank 304, a water pump 308 at one side of the bottom inside the cooling tank 304, a connecting pipe 309 at the top end of the water pump 308 and a control valve 3010 at the bottom of the connecting pipe 309, when an operator puts the casting 209 into the device, the operator controls the water pump 308 at the bottom inside the cooling tank 304 to start running through a control panel, so that the water pump 308 pumps cooling water inside the cooling tank 304 at the bottom inside the pumping mechanism 3 into the cooling tank 4 through the connecting pipe 309 at the top end of the water pump 308 to cool the casting 209, the cooling water that has cooled down enters the cooling box 304 again through the water inlet 404, thereby the operating personnel starts to operate through the cooler 305 of the inside bottom middle part of the investment target control cooling box 304, and then cool down the inside cooling water of the cooling box 304, reciprocate with this, accelerate the device and cool down the foundry goods 209, the control valve 3010 of connecting pipe 309 bottom helps controlling the outflow of cooling water, the pressure sensor 306 of the inside bottom middle part one side of the cooling box 304 helps sensing how much of the inside cooling water of cooling box 304, and then make things convenient for the operating personnel to add the cooling water, the pumping mechanism 3 helps extracting the cooling water to the cooling bath 4 and carries out water spray cooling to the foundry goods 209, thereby the practicality of the device has been improved.
The working principle is as follows: firstly, the lifting mechanism 2 is formed by combining a supporting column 201 at one side of the lifting mechanism 2, a top plate 202 at the top of the other end of the supporting column 201, a motor 203 at the other side of the bottom end of the top plate 202, a winch 204 at one end of the motor 203, a connecting belt 205 at the middle part of the winch 204, a connector 206 at the bottom of the connecting belt 205, a rotator 207 at the bottom end of the connector 206, a fixer 208 at the bottom end of the rotator 207 and a casting 209 at the bottom end of the fixer 208, when an operator needs to use the device, the operator places the casting 209 between the fixers 208 at the bottom end of the rotator 207, so that the operator fixes the casting 209 through the fixer 208, further controls the motor 203 at the other side of the bottom end of the top plate 202 to start to operate through a control panel, so that the motor 203 drives the winch 204 to rotate, and further places the connector 206 connected with the connecting belt 205 at the middle part of the winch 204 into the device, thereby put into device inside to cast 209 and cool off, in the cooling process, the circulator 207 of connector 206 bottom rotates, thereby drive fixer 208 and rotate, and then cool off cast 209, the cooling is accomplished the back, operating personnel promotes cast 209 through connecting band 205, thereby make things convenient for operating personnel to take off cast 209, hoist mechanism 2 helps promoting or descending cast 209, thereby make things convenient for operating personnel to use, and then the multifunctionality of device has been improved.
Then, the pumping mechanism 3 is formed by combining the corrosion-resistant layer 301 inside the pumping mechanism 3, the fixed base 302 at the bottom end of the pumping mechanism 3, the fixed block 303 at the bottom of one end of the pumping mechanism 3, the cooling box 304 at the bottom inside the pumping mechanism 3, the cooler 305 at the middle part of the bottom inside the cooling box 304, the pressure sensor 306 at the middle part of the bottom inside the cooling box 304, the water pump 308 at one side of the bottom inside the cooling box 304, the connecting pipe 309 at the top end of the water pump 308 and the control valve 3010 at the bottom of the connecting pipe 309, when the casting 209 is put into the device, the operator controls the water pump 308 at one side of the bottom inside the cooling box 304 to start to operate through the control panel, so that the water pump 308 pumps the cooling water inside the cooling box 304 at the bottom inside the pumping mechanism 3 into the cooling tank 4 through the connecting pipe 309 at the top end of the water pump 308 to cool the casting 209, the cooling water that has cooled down enters the cooling box 304 again through the water inlet 404, thereby the operating personnel starts to operate through the cooler 305 of the inside bottom middle part of the investment target control cooling box 304, and then cool down the inside cooling water of the cooling box 304, reciprocate with this, accelerate the device and cool down the foundry goods 209, the control valve 3010 of connecting pipe 309 bottom helps controlling the outflow of cooling water, the pressure sensor 306 of the inside bottom middle part one side of the cooling box 304 helps sensing how much of the inside cooling water of cooling box 304, and then make things convenient for the operating personnel to add the cooling water, the pumping mechanism 3 helps extracting the cooling water to the cooling bath 4 and carries out water spray cooling to the foundry goods 209, thereby the practicality of the device has been improved.
Next, the other end of the cooling pipe 402 is connected with a sprinkler 403 in a penetrating manner, when the device is in operation, an operator controls the water pump 308 to start operation through the control panel, so that the water pump 308 pumps cooling water into the cooling pipe 402, and the cooling water is sprayed out through the sprinkler 403 at the other end of the cooling pipe 402, so as to spray water on the casting 209 for cooling, six sprinklers 403 are arranged, the sprinklers 403 are symmetrically arranged at the inner side of the cooling tank 4, and the sprinklers 403 are helpful for spraying water on the casting 209 for cooling, so that the working efficiency of the device is improved.
Next, the inboard bottom embedding of cooling bath 4 is connected with filter 401, when operating personnel when using the device, operating personnel control sprinkler 403 carries out water spray cooling to foundry goods 209, the cooling water drops into on the filter 401 of the inboard bottom of cooling bath 4 after cooling to foundry goods 209, thereby filter 401 filters the cooling water that drops, and then filters the impurity in the cooling water, the cooling water after the filtration gets into in cooler bin 304 from water inlet 404, reciprocal with this, filter 401 helps filtering the impurity in the cooling water.
Finally, the inside bottom middle part opposite side embedding of cooler bin 304 is connected with temperature-sensing ware 307, when operating personnel is using the device, operating personnel begins the operation through the temperature-sensing ware 307 of the inside bottom middle part opposite side of control panel control cooler bin 304, thereby temperature-sensing ware 307 monitors the temperature of the inside cooling water of cooler bin 304, and then send information to control panel, thereby make things convenient for operating personnel to look over, temperature-sensing ware 307 helps monitoring the temperature of the inside cooling water of cooler bin 304, thereby the intelligence of device has been improved, this kind of theory of operation that is used for the refrigerated pumping roll formula cooling arrangement of foundry goods.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.

Claims (7)

1. A pumping roll-over cooling device for casting cooling, which comprises a cooling device main body (1), a lifting mechanism (2), a pumping mechanism (3) and a cooling tank (4), and is characterized in that: the top of the cooling equipment main body (1) is connected with a lifting mechanism (2) in an embedded manner, the bottom of the cooling equipment main body (1) is connected with a pumping mechanism (3) in an embedded manner, the top of the interior of the pumping mechanism (3) is connected with a cooling tank (4) in an embedded manner, one side of the lifting mechanism (2) is connected with a supporting column (201) in an embedded manner, the top of the other end of the supporting column (201) is connected with a top plate (202) in an embedded manner, the other side of the bottom end of the top plate (202) is connected with a motor (203) in an embedded manner, one end of the motor (203) is connected with a winch (204) in an embedded manner, the middle part of the winch (204) is movably connected with a connecting belt (205), the bottom of the connecting belt (205) is movably connected with a connector (206), the bottom of the connector (206) is connected with a rotator (207) in an embedded manner, and the bottom of the rotator (207) is connected with a fixer (208) in an embedded manner, the bottom of the fixer (208) is movably connected with a casting (209), the inner side of the pumping mechanism (3) is embedded and connected with a corrosion-resistant layer (301), the bottom end of the pumping mechanism (3) is embedded and connected with a fixed base (302), the bottom of one end of the pumping mechanism (3) is embedded and connected with a fixed block (303), the bottom of the interior of the pumping mechanism (3) is embedded and connected with a cooling box (304), a cooler (305) is embedded and connected in the middle part of the bottom in the cooling box (304), a pressure sensor (306) is embedded and connected at one side of the middle part of the bottom in the cooling box (304), a water pump (308) is embedded and connected at one side of the bottom inside the cooling box (304), the top end of the water pump (308) is connected with a connecting pipe (309) in a penetrating manner, and the bottom of the connecting pipe (309) is connected with a control valve (3010) in a penetrating manner.
2. A pump tumble cooling apparatus for cooling castings according to claim 1, characterised in that: a cooling pipe (402) is embedded and connected to one side of the inner side of the cooling tank (4), and a water inlet (404) is connected to the bottom end of the cooling tank (4) in a penetrating mode.
3. A pump tumble cooling apparatus for cooling castings according to claim 2, characterised in that: the other end of the cooling pipe (402) is connected with a sprayer (403) in a penetrating way.
4. A pump tumble cooling apparatus for cooling castings according to claim 1, characterised in that: and a filter (401) is embedded and connected at the bottom of the inner side of the cooling tank (4).
5. A pump tumble cooling apparatus for cooling castings according to claim 1, characterised in that: and a temperature sensor (307) is embedded and connected to the other side of the middle part of the bottom in the cooling box (304).
6. A pump tumble cooling apparatus for cooling castings according to claim 1, characterised in that: the lifting mechanism (2) is formed by jointly combining a supporting column (201) on one side of the lifting mechanism (2), a top plate (202) at the top of the other end of the supporting column (201), a motor (203) on the other side of the bottom end of the top plate (202), a winch (204) at one end of the motor (203), a connecting belt (205) in the middle of the winch (204), a connector (206) at the bottom of the connecting belt (205), a rotator (207) at the bottom end of the connector (206), a fixer (208) at the bottom end of the rotator (207) and a casting (209) at the bottom of the fixer (208).
7. A pump tumble cooling apparatus for cooling castings according to claim 1, characterised in that: the pumping mechanism (3) is formed by combining an anti-corrosion layer (301) on the inner side of the pumping mechanism (3), a fixed base (302) at the bottom end of the pumping mechanism (3), a fixed block (303) at the bottom of one end of the pumping mechanism (3), a cooling box (304) at the bottom inside the pumping mechanism (3), a cooler (305) at the middle part of the bottom inside the cooling box (304), a pressure sensor (306) at one side of the middle part of the bottom inside the cooling box (304), a water pump (308) at one side of the bottom inside the cooling box (304), a connecting pipe (309) at the top end of the water pump (308) and a control valve (3010) at the bottom of the connecting pipe (309).
CN202120454849.1U 2021-03-03 2021-03-03 Pumping rolling type cooling equipment for cooling castings Active CN214720484U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202120454849.1U CN214720484U (en) 2021-03-03 2021-03-03 Pumping rolling type cooling equipment for cooling castings

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202120454849.1U CN214720484U (en) 2021-03-03 2021-03-03 Pumping rolling type cooling equipment for cooling castings

Publications (1)

Publication Number Publication Date
CN214720484U true CN214720484U (en) 2021-11-16

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Application Number Title Priority Date Filing Date
CN202120454849.1U Active CN214720484U (en) 2021-03-03 2021-03-03 Pumping rolling type cooling equipment for cooling castings

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN116174681A (en) * 2023-04-25 2023-05-30 宁波海威汽车零件股份有限公司 Water cooling equipment for die-casting cooling of integrated rear vehicle body structure of vehicle

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN116174681A (en) * 2023-04-25 2023-05-30 宁波海威汽车零件股份有限公司 Water cooling equipment for die-casting cooling of integrated rear vehicle body structure of vehicle

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