Cooling device for ferrous metal smelting rolled product
By immersing the ferrous metal smelting calendered product in cooling water, and using the circulating flow of cooling water for cooling and surface erosion, the problems of slow cooling speed and low working efficiency in the prior art are solved, and the cooling speed is improved and the surface cleanliness effect is achieved.
Patent Information
- Application Number
- CN202421634472.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-11
- Publication Date
- 2025-05-30
- Estimated Expiration
- 2034-07-11
AI Technical Summary
The existing ferrous metal smelting and calendered cooling devices have slow cooling speed, low working efficiency, and need to improve the structure.
A cooling device for ferrous metal smelting calenders is designed. By completely immersing the calenders in the cooling water, and using the circulating flow of cooling water for cooling and surface erosion, the surface is ensured to be clean and free of residual metal debris.
The cooling speed and working efficiency are improved. At the same time, the surface of the calendered product is effectively washed through the circulating cooling water to ensure the surface is clean.
Smart Images

Figure CN222919332U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of metal smelting, in particular to a cooling device for rolled products of ferrous metal smelting. Background Art
[0002] The existing patent (publication number: CN 216262734 U) proposes a cooling device for rolled products of ferrous metal smelting, including a cooling device, which includes a cooling box, conveying rollers, a motor, a spray head, a circulation pipe, a pump, a filter, a heat sink and a bracket. The cooling box is fixedly installed with the bracket, the bracket is movably installed with the conveying rollers, the conveying rollers are movably installed with the cooling box, and the heat sink is fixedly installed with the cooling box. The above device cools by spraying cooling water on the surface of the rolled products of ferrous metal smelting. The cooling speed is slow, the working efficiency is low, and the structure needs to be improved. Summary of the Invention
[0003] Aiming at the above deficiencies of the existing technology, the utility model provides a cooling device for rolled products of ferrous metal smelting, in which the rolled products of ferrous metal smelting are completely immersed in the cooling water as a whole, the cooling speed is fast, the working efficiency is high, and the cooling water circulates. While improving the cooling effect of the cooling water, it flushes the surface of the rolled products of ferrous metal smelting to ensure that the surface of the rolled products of ferrous metal smelting is clean and there is no residual metal debris.
[0004] The purpose of the utility model is realized through the following technical solutions:
[0005] A cooling device for rolled products of ferrous metal smelting, including a working box body, a transport trolley and an adjusting swing arm. The upper part of the working box body has an anti-slip baffle. The top of the anti-slip baffle is connected to a motor. The outside of the motor shaft of the motor is connected to a first gear. The outside of the first gear is connected to a second gear through a hinge. The inside of the second gear is connected to a transmission roller shaft. Both ends of the transmission roller shaft are connected to the anti-slip baffle. The transmission roller shaft rotates in the anti-slip baffle. The outside of the transmission roller shaft is connected to two adjusting swing arms. The adjusting swing arms are symmetrically arranged. There are two positioning protrusions on the outside of the transmission roller shaft. The positioning protrusions are symmetrically arranged. The upper part of the adjusting swing arm has a positioning square hole. The positioning square hole cooperates with the positioning protrusion. The inside of the positioning square hole is connected to the positioning protrusion. There is a positioning chute inside the adjusting swing arm. The lower part of the adjusting swing arm is connected to the transport trolley.
[0006] The outside of the transport trolley of the utility model has two fixed connecting shafts, which are adapted to the positioning chute. The outside of the fixed connecting shaft is connected to the positioning chute. The fixed connecting shaft slides in the positioning chute. The bottom of the transport trolley has a plurality of rollers. The inside of the rollers is connected to the rollers through a rotating shaft. There is a positioning groove inside the working box body. The inside of the positioning groove is connected to the transport trolley. The transport trolley slides in the positioning groove.
[0007] The bottom of the positioning groove of the present utility model is provided with a cooling groove. There are two auxiliary supporting plates inside the cooling groove, and the auxiliary supporting plates are symmetrically arranged. A transport trolley is connected to the inside of the cooling groove, and the transport trolley slides in the cooling groove. There are two adjusting sliding grooves inside the positioning groove, and the adjusting sliding grooves are symmetrically arranged. The auxiliary supporting plates are located below the adjusting sliding grooves. The adjusting sliding grooves are adapted to rollers, and the inside of the adjusting sliding grooves is connected to the rollers, and the adjusting sliding grooves roll inside the rollers.
[0008] The upper part of the auxiliary supporting plate of the present utility model is connected to a transport trolley, and the transport trolley slides on the auxiliary supporting plate. There is cooling water inside the cooling groove. There is a cooling cavity below the working box body, and the cooling cavity is located directly below the cooling groove. There is a filter screen below the cooling groove. There is a water pump inside the filter screen. The water outlet of the water pump is connected to an auxiliary connecting tee, and the other end of the auxiliary connecting tee is connected to a drain pipe. The lower part of the auxiliary connecting tee is connected to a first water pipe, and the other end of the first water pipe passes through the cooling cavity and is connected to a second water pipe. The upper part of the second water pipe is connected to the cooling groove. There are two refrigerators inside the cooling cavity, and the refrigerators are symmetrically arranged. The inside of the cooling cavity is connected to the first water pipe. Beneficial effects
[0009] In the present utility model, the rolled products of ferrous metals are completely immersed in the cooling water, with a fast cooling speed and high working efficiency.
[0010] The filter screen of the present utility model filters the cooling water, effectively preventing metal residues inside the cooling water from entering the water pump and blocking the water pump, while ensuring the smoothness of the water pump and extending the service life of the water pump.
[0011] The cooling water in the present utility model circulates, and the cooling cavity cools and cools the cooling water. While improving the cooling effect of the cooling water, it flushes the surface of the rolled products of ferrous metals to ensure that the surface of the rolled products of ferrous metals is clean and there are no residual metal chips. Description of the drawings
[0012] Figure 1 It is a schematic structural diagram of a cooling device for rolled products of ferrous metals according to the present utility model.
[0013] Figure 2 It is a cross-sectional view of the structure of a cooling device for rolled products of ferrous metals according to the present utility model.
[0014] Figure 3 It is a schematic structural diagram of the combination of a transport trolley and an adjusting swing arm of a cooling device for rolled products of ferrous metals according to the present utility model.
[0015] Figure 4 It is a schematic structural diagram of an adjusting swing arm of a cooling device for rolled products of ferrous metals according to the present utility model.
[0016] Figure 5Schematic diagram of the combination structure of the transmission roller shaft and the second gear of a cooling device for ferrous metal smelting and rolling products according to the present utility model. Specific embodiments
[0017] The present utility model will be further described in detail below with reference to the drawings and embodiments:
[0018] Embodiment 1:
[0019] A cooling device for ferrous metal smelting and rolling products includes a working box body 01, a transport trolley 02, and an adjusting swing arm 03. The upper part of the working box body 01 has an anti-slip baffle 04. The top end of the anti-slip baffle 04 is connected to a motor 09. The outer side of the motor shaft of the motor 09 is connected to a first gear 10. The outer side of the first gear 10 is connected to a second gear 12 through a hinge. The inner side of the second gear 12 is connected to a transmission roller shaft 11. Both ends of the transmission roller shaft 11 are connected to the anti-slip baffle 04. The transmission roller shaft 11 rotates within the anti-slip baffle 04. The outer side of the transmission roller shaft 11 is connected to two adjusting swing arms 03. The adjusting swing arms 03 are symmetrically arranged. The outer side of the transmission roller shaft 11 has two positioning protrusions 23. The positioning protrusions 23 are symmetrically arranged. The upper part of the adjusting swing arm 03 has a positioning square hole 24. The positioning square hole 24 cooperates with the positioning protrusion 23. The inner side of the positioning square hole 24 is connected to the positioning protrusion 23. The inside of the adjusting swing arm 03 has a positioning chute 25. The lower part of the adjusting swing arm 03 is connected to the transport trolley 02.
[0020] Embodiment 2:
[0021] The transport trolley 02 of the present utility model has two fixed connection shafts 13 on the outer side. The fixed connection shafts 13 are adapted to the positioning chutes 25. The outer side of the fixed connection shafts 13 is connected to the positioning chutes 25. The fixed connection shafts 13 slide within the positioning chutes 25. The bottom of the transport trolley 02 has a plurality of rollers 22. The inside of the rollers 22 is connected to the rollers 22 through a rotating shaft. The working box body 01 has a positioning groove 05 inside. The inner side of the positioning groove 05 is connected to the transport trolley 02. The transport trolley 02 slides within the positioning groove 05.
[0022] Embodiment 3:
[0023] The bottom of the positioning groove 05 of the present utility model has a cooling groove 07. The inside of the cooling groove 07 has two auxiliary support plates 08. The auxiliary support plates 08 are symmetrically arranged. The inner side of the cooling groove 07 is connected to the transport trolley 02. The transport trolley 02 slides within the cooling groove 07. The inner side of the positioning groove 05 has two adjusting chutes 06. The adjusting chutes 06 are symmetrically arranged. The auxiliary support plates 08 are located below the adjusting chutes 06. The adjusting chutes 06 are adapted to the rollers 22. The inner side of the adjusting chutes 06 is connected to the rollers 22. The adjusting chutes 06 roll within the rollers 22. The whole ferrous metal smelting and rolling product is completely immersed in the cooling water, with a fast cooling speed and high working efficiency.
[0024] Embodiment 4:
[0025] The upper part of the auxiliary pallet 08 of the utility model is connected to the transport trolley 02, and the transport trolley 02 slides on the auxiliary pallet 08. The cooling tank 07 contains cooling water inside. The lower part of the working box body 01 has a cooling chamber 19, and the cooling chamber 19 is located directly below the cooling tank 07. The lower part of the cooling tank 07 has a filter screen 15, and the inside of the filter screen 15 has a water pump 17. The water outlet of the water pump 17 is connected to an auxiliary connecting tee 16, the other end of the auxiliary connecting tee 16 is connected to a drain pipe 14, and the lower part of the auxiliary connecting tee 16 is connected to a first water pipe 18. The other end of the first water pipe 18 passes through the cooling chamber 19 and is connected to a second water pipe 26. The upper part of the second water pipe 26 is connected to the cooling tank 07. The inside of the cooling chamber 19 has two refrigerators 20, and the refrigerators 20 are symmetrically arranged. The inside of the cooling chamber 19 is connected to the first water pipe 18. The filter screen 15 filters the cooling water, effectively preventing metal residues inside the cooling water from entering the water pump 17 and blocking the water pump 17. While ensuring the smoothness of the water pump 17, the service life of the water pump 17 is extended. The cooling water circulates, and the cooling chamber 19 cools the cooling water. While improving the cooling effect of the cooling water, the surface of the ferrous metal smelting and rolling product is washed, ensuring that the surface of the ferrous metal smelting and rolling product is clean without residual metal chips.
[0026] Example 5:
[0027] Installation steps: When in use, first pour cooling water to fill the inside of the cooling tank 07, and then place the black metal smelting and rolling product into the transport trolley 02. The motor 09 starts to work, and the motor 09 drives the first gear 10 to rotate. During the rotation of the first gear 10, the second gear 12 is driven to rotate through the hinge. During the rotation of the second gear 12, the transmission roller shaft 11 is driven to rotate together. When the transmission roller shaft 11 rotates, it drives the adjusting swing arm 03 to swing within the anti-slip baffle 04. When the adjusting swing arm 03 swings, it drives the transport trolley 02 to slide within the positioning groove 05. When the transport trolley 02 enters the cooling tank 07, the cooling water inside the cooling tank 07 cools down the black metal smelting and rolling product inside the transport trolley 02. The entire black metal smelting and rolling product is completely immersed in the cooling water, with a fast cooling speed and high working efficiency. During the cooling process of the black metal smelting and rolling product, the water pump 17 starts to work together, so that the cooling water inside the cooling tank 07 passes through the filter screen 15, enters the water pump 17 through the water inlet of the water pump 17, and is discharged from the water outlet of the water pump 17 into the auxiliary connection tee 16. The filter screen 15 filters the cooling water, effectively preventing the metal residues inside the cooling water from entering the water pump 17 and blocking the water pump 17. While ensuring the smoothness of the water pump 17, the service life of the water pump 17 is extended. After the cooling water enters the auxiliary connection tee 16, it flows through the first water pipe 18 and the second water pipe 26 in sequence and then enters the cooling tank 07, so that the cooling water forms a circulating flow inside the cooling tank 07. When flowing through the first water pipe 18, the cooling water is cooled down by the cooling chamber 19. The cooling water circulates, and the cooling chamber 19 cools down the cooling water. While improving the cooling effect of the cooling water, it flushes the surface of the black metal smelting and rolling product to ensure that the surface of the black metal smelting and rolling product is clean without residual metal chips.
[0028] The above are only the preferred embodiments of the present invention and are not used to limit the present invention. It should be noted that for those of ordinary skill in the art in this technical field, without departing from the technical principle of the present invention, several improvements and modifications can still be made, and these improvements and modifications should also be regarded as the protection scope of the present invention.
Claims
1. A cooling device for ferrous metal smelting rolled products, characterized in that : It comprises a working box (01), a transport trolley (02), and an adjusting swing arm (03). The working box (01) has an anti-skid baffle (04) on the top. The top of the anti-skid baffle (04) is connected to a motor (09). The outer side of the motor shaft of the motor (09) is connected to a first gear (10). The outer side of the first gear (10) is connected to a second gear (12) through a hinge. The inner side of the second gear (12) is connected to a transmission roller shaft (11). Both ends of the transmission roller shaft (11) are connected to the anti-skid baffle (04). The transmission roller shaft (11) rotates in the anti-skid baffle (04). The outer side of the transmission roller shaft (11) is connected to two adjusting swing arms (03). The adjusting swing arms (03) are symmetrically arranged. The outer side of the transmission roller shaft (11) has two positioning protrusions (23). The positioning protrusions ( The adjusting swing arm (03) is symmetrically arranged, the upper part of the adjusting swing arm (03) has a positioning square hole (24), the positioning square hole (24) matches the positioning protrusion (23), the inner side of the positioning square hole (24) is connected to the positioning protrusion (23), the inner side of the adjusting swing arm (03) has a positioning slide groove (25), and the lower part of the adjusting swing arm (03) is connected to the transport trolley (02); the outer side of the transport trolley (02) has two fixed connecting shafts (13), the fixed connecting shafts (13) are adapted to the positioning slide groove (25), the outer side of the fixed connecting shaft (13) is connected to the positioning slide groove (25), the fixed connecting shaft (13) slides in the positioning slide groove (25), and the bottom of the transport trolley (02) has a plurality of rollers (22), and the inner side of the rollers (22) is connected to the rollers (22) through a rotating shaft.
2. A cooling device for ferrous metal smelting rolled products according to claim 1, characterized in that The working box (01) has a positioning groove (05) inside, the inner side of the positioning groove (05) is connected to the transport trolley (02), and the transport trolley (02) slides in the positioning groove (05).
3. A cooling device for ferrous metal smelting rolled products according to claim 2, characterized in that The bottom of the positioning groove (05) is provided with a cooling groove (07), the inner side of the cooling groove (07) is provided with two auxiliary support plates (08), the auxiliary support plates (08) are symmetrically arranged, the inner side of the cooling groove (07) is connected to the transport trolley (02), the transport trolley (02) slides in the cooling groove (07), the inner side of the positioning groove (05) is provided with two adjustment grooves (06), the adjustment grooves (06) are symmetrically arranged, the auxiliary support plates (08) are located below the adjustment grooves (06), the adjustment grooves (06) are adapted to the roller (22), the inner side of the adjustment grooves (06) is connected to the roller (22), and the adjustment grooves (06) roll in the roller (22).
4. A cooling device for ferrous metal smelting rolled products according to claim 3, characterized in that The auxiliary support plate (08) is connected to the transport trolley (02) at the upper part, and the transport trolley (02) slides on the auxiliary support plate (08). The cooling trough (07) has cooling water inside. The working box (01) has a cooling chamber (19) at the lower part, and the cooling chamber (19) is located directly below the cooling trough (07). The cooling trough (07) has a filter screen (15) at the lower part, and a water pump (17) is provided inside the filter screen (15). The water outlet of the water pump (17) is connected to the auxiliary connecting three-way pipe. (16), the other end of the auxiliary connecting three-way pipe (16) is connected to the drain pipe (14), the lower part of the auxiliary connecting three-way pipe (16) is connected to the first water pipe (18), the other end of the first water pipe (18) passes through the cooling chamber (19) and is connected to the second water pipe (26), the upper part of the second water pipe (26) is connected to the cooling tank (07), the inner side of the cooling chamber (19) is provided with two refrigerators (20), the refrigerators (20) are symmetrically arranged, and the inner side of the cooling chamber (19) is connected to the first water pipe (18).
Citation Information
Patent Citations
Cooling device for ferrous metal smelting rolled product
CN216262734U