Rapid circulating cooling device for metallurgical engineering

By using a motor-driven screw and sleeve structure, along with a limiting plate and support column, the problem of uneven wastewater filtration in the circulating cooling device is solved, achieving uniform spraying and stable filtration of wastewater.

CN224034102UActive Publication Date: 2026-03-24CHENGDU KUNYOU EQUIP INSTALLATION ENG CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-21
Publication Date
2026-03-24

AI Technical Summary

Technical Problem

The existing circulating cooling device cannot spray evenly during sewage filtration, resulting in poor filtration effect.

Method used

A screw and sleeve structure driven by a motor was designed. The screw drives the sleeve and moving block to move, and with the help of the slide and slider, uniform spraying of the nozzle is achieved. Combined with the limiting plate and support column, the diversion pipe and the bearing plate are stabilized to ensure uniform filtration and cooling of sewage.

Benefits of technology

It achieves uniform spraying of wastewater during filtration and cooling, improves filtration efficiency, and avoids instability caused by component jamming and shaking.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224034102U_ABST
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Abstract

The utility model relates to the technical field of metallurgical engineering, in particular to a rapid circulating cooling device for metallurgical engineering, which comprises a bearing plate, a cooling box is arranged at the top of the bearing plate, placing plates are arranged on two sides of an inner cavity of the cooling box, and filter screens are arranged at the tops of the two placing plates. A movable water spraying assembly is arranged at the top of an inner cavity of the cooling box and comprises a connecting plate, and the two sides of the connecting plate are fixedly connected with the tops of the two sides of the inner cavity of the cooling box. Sewage is firstly poured into the cooling box and filtered through the filter screen in the cooling box, the filtered sewage falls to the bottom of the inner cavity of the cooling box to be cooled, at the moment, the water pump operates, the sewage at the bottom of the cooling box is conveyed into the water pump through the water suction pipe, and the sewage is conveyed into the hose through the water pump; sewage is conveyed into the flow dividing pipe through the hose, is conveyed to the spray head through the flow dividing pipe, and is sprayed to the filter screen through the spray head.
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Description

TECHNICAL FIELD

[0001] The utility model relates to metallurgical engineering technical field, concretely is a kind of quick circulating cooling device for metallurgical engineering. BACKGROUND

[0002] Metallurgy is the process and technology that metal or metal compound is extracted from mineral, and metal is made into metal material with certain performance by various processing methods, and metallurgy has long development history, from stone age to subsequent bronze age, to modern large-scale development of steel smelting.The history of human development is integrated with the development of metallurgy.

[0003] When sewage is circulated and cooled, circulating cooling device needs to be used to cool, but circulating cooling device does not have the effect of uniformly spraying sewage on filter screen when sewage is filtered, thereby leading to the condition that sewage filtering effect is poor. CONTENT OF UTILITY MODEL

[0004] In view of the deficiency of prior art, the utility model provides a kind of quick circulating cooling device for metallurgical engineering, with the advantages that sewage filtering effect is good, solve the problem of poor sewage filtering effect.

[0005] The utility model discloses a metallurgical engineering is with quick cycle cooling device, including the bearing plate, the top of bearing plate is equipped with the cooling box, both sides of cooling box inner chamber all are equipped with the placing plate, the top of two placing plates is equipped with the filter screen, the top of cooling box inner chamber is equipped with the mobile water spraying subassembly, mobile water spraying subassembly includes the connecting plate, and the both sides of connecting plate are fixedly connected with the top of cooling box inner chamber both sides, the left side of connecting plate top is equipped with the motor, the output of motor is equipped with the screw rod, the surface screw thread connection of screw rod has the screw bush, the bottom fixed connection of screw bush has the moving block, the inner chamber of connecting plate is opened with the movable slot of moving block adaptation, both ends of movable slot inner chamber all are opened with the sliding slot, both ends of moving block all are equipped with the sliding block of sliding slot adaptation, the bottom fixed connection of moving block has the moving plate, the bottom of moving plate is equipped with the shunt pipe, the bottom equidistance intercommunication shower nozzle of shunt pipe, one end penetration of shunt pipe top has the hose, the one end of hose away from shunt pipe is equipped with the water pump, the input of water pump intercommunication has the water suction pipe, and the one end of water suction pipe away from water pump is in communication with cooling box, the bottom of cooling box right side is equipped with the drain, the utility model discloses first sewage pours into cooling box, filters sewage through the filter screen in cooling box, and the sewage after filtering falls in the bottom cooling of cooling box inner chamber, at this moment, the water pump runs, and the sewage at the bottom of cooling box is transmitted to the water pump through the water suction pipe, and the sewage is transmitted to the hose through the water pump, and the sewage is transmitted to the shunt pipe through the hose, and the sewage is transmitted to the shower nozzle through the shunt pipe, and the sewage is sprayed to the filter screen through the shower nozzle, at this moment, the motor runs, and the screw rod is rotated through the motor, and the screw bush is moved through the screw rod, and the moving block is moved through the screw bush, and the moving block is moved through the cooperation of the sliding slot and the sliding block in the movable slot, and the moving plate is moved through the moving block, and the shunt pipe and the shower nozzle are moved through the moving plate, at this moment, the shower nozzle evenly sprays the sewage on the filter screen and filters, and the sewage in the cooling box is better in filtering and cooling.

[0006] The utility model discloses a metallurgical engineering is with quick cycle cooling device, wherein one end of the screw rod surface is rotatably connected with the movable plate, and the bottom of the movable plate is fixedly connected with the connecting plate, the utility model discloses through movable plate, can when the screw rod rotates, can play the effect of stable rotation to the screw rod, avoid the situation that the screw rod appears to jam when rotating.

[0007] The utility model discloses a metallurgical engineering is with quick cycle cooling device, wherein both ends of the shunt pipe surface are fixedly provided with the limit board, and the top of the limit board is fixedly connected with the moving plate, through the limit board, the shunt pipe can be fixed, so that the shunt pipe is better in use, avoids the situation that the shunt pipe shakes when using, and further causes the unstable situation of shunt pipe water guide.

[0008] The utility model discloses a quick circulating cooling device for metallurgical engineering, wherein the number of the spray heads is seven, and the seven spray heads are connected to the bottom of the shunt pipe at equal distances.

[0009] The utility model discloses a quick circulating cooling device for metallurgical engineering, wherein the bottom of the screw sleeve is fixedly connected to the connecting part of the moving block by welding, and the bottom of the screw sleeve is located at the center of the top of the moving block.

[0010] The utility model discloses a quick circulating cooling device for metallurgical engineering, wherein the four corners of the bottom of the bearing plate are provided with support columns, and the bottom of the support column is provided with an antiskid pad. The support column and the antiskid pad can fix the bearing plate, so that the bearing plate has better effect in use, and the bearing plate does not shake in use, so that the components on the bearing plate are not unstable in use.

[0011] Compared with the prior art, the utility model has the following beneficial effects:

[0012] 1. First, the sewage is poured into the cooling box, and the sewage is filtered through the filter screen in the cooling box. The filtered sewage falls to the bottom of the inner cavity of the cooling box for cooling. At this time, the water pump operates, and the sewage at the bottom of the cooling box is transmitted to the water pump through the water suction pipe. The sewage is transmitted to the hose through the water pump, and then transmitted to the shunt pipe through the hose. The sewage is transmitted to the spray head through the shunt pipe, and then sprayed to the filter screen through the spray head. At this time, the motor operates, and the screw rotates through the motor. The screw sleeve moves through the screw, and the moving block moves through the screw sleeve. The moving block moves through the cooperation of the sliding groove and the sliding block in the movable slot. The moving plate moves through the moving block, and the shunt pipe and the spray head move through the moving plate. At this time, the spray head uniformly sprays the sewage on the filter screen for filtering. In this way, the sewage in the cooling box has better filtering and cooling effect.

[0013] 2. The movable plate can stabilize the rotation of the screw when the screw rotates, so that the screw does not jam.

[0014] The limiting plate can fix the shunt pipe, so that the shunt pipe has better effect in use, and does not shake in use, so that the shunt pipe does not guide water unstably.

[0015] The support column and the antiskid pad can fix the bearing plate, so that the bearing plate has better effect in use, and does not shake in use, so that the components on the bearing plate are not unstable in use. DRAWINGS

[0016] The accompanying drawings, which are included to provide a further understanding of the application and are incorporated in and constitute a part of this application, illustrate embodiments of the application and together with the description serve to explain the application. In the drawings:

[0017] Figure 1 The utility model structural schematic diagram is provided with the bearing plate 1, the support column 2, the anti -skidding pad 3, the drainage 4, the cooling box 5, the mobile water spraying subassembly 6, the filter screen 7 and the placement plate 8.

[0018] Figure 2 The utility model filter screen and placement plate structural schematic diagram is provided with the bearing plate 1, the support column 2, the anti -skidding pad 3, the drainage 4, the cooling box 5, the mobile water spraying subassembly 6, the filter screen 7 and the placement plate 8.

[0019] Figure 3 The utility model mobile block structural schematic diagram is provided with the bearing plate 1, the support column 2, the anti -skidding pad 3, the drainage 4, the cooling box 5, the mobile water spraying subassembly 6, the filter screen 7 and the placement plate 8.

[0020] Figure 4 The utility model mobile block structural schematic diagram is provided with the bearing plate 1, the support column 2, the anti -skidding pad 3, the drainage 4, the cooling box 5, the mobile water spraying subassembly 6, the filter screen 7 and the placement plate 8.

[0021] In the drawings: 1, bearing plate; 2, support column; 3, non-slip pad; 4, drain; 5, cooling box; 6, mobile water spraying subassembly; 601, connecting plate; 602, chute; 603, movable slot; 604, hose; 605, water pump; 606, water suction pipe; 607, movable plate; 608, screw sleeve; 609, screw rod; 6010, motor; 6011, moving plate; 6012, limit plate; 6013, spray head; 6014, moving block; 6015, shunt pipe; 6016, sliding block; 7, filter screen; 8, placement plate. DETAILED DESCRIPTION

[0022] Several embodiments of the present application will be described hereinafter with reference to drawings. Numerous specific details will be set forth in connection with the drawings, apparent to those skilled in the art, in order to provide a full and comprehensive understanding of the application. It will be appreciated that the application is not limited to the specifics outlined with reference to the accompanying drawings. That is, in some embodiments of the present application, not all of the specific details described below are required to practice the present application. In addition, for simplicity and clarity of illustration, the drawing figures depict the same or similar functional arrangements and steps with the same or similar reference numerals in the various drawings.

[0023] Please refer to Figures 1-4The utility model discloses a metallurgical engineering is with quick circulating cooling device, including bearing plate 1, the top of bearing plate 1 is equipped with cooling box 5, both sides of cooling box 5 inner chamber are equipped with the placing plate 8, the top of two placing plates 8 is equipped with filter screen 7, the top of cooling box 5 inner chamber is equipped with mobile water spraying subassembly 6, mobile water spraying subassembly 6 includes connecting plate 601, and the both sides of connecting plate 601 are fixedly connected with the top of cooling box 5 inner chamber both sides, the left side of connecting plate 601 top is equipped with motor 6010, the output of motor 6010 is equipped with screw rod 609, the surface screw thread connection of screw rod 609 has screw bush 608, and the bottom fixed connection of screw bush 608 has moving block 6014, and the inner chamber of connecting plate 601 is equipped with the movable slot 603 of adaptation with moving block 6014, and both ends of movable slot 603 inner chamber all are equipped with the sliding slot 602 of adaptation with moving block 6014, and both ends of moving block 6014 all are equipped with the sliding block 6016 of adaptation with sliding slot 602, and the bottom fixed connection of moving block 6014 has moving plate 6011, and the bottom of moving plate 6011 is equipped with shunt pipe 6015, and the bottom of shunt pipe 6015 equidistantly communicates with the spray head 6013, and one end of shunt pipe 6015 top communicates with hose 604, and the one end of hose 604 away from shunt pipe 6015 is equipped with water pump 605, and the input of water pump 605 communicates with water suction pipe 606, and one end of water suction pipe 606 away from water pump 605 communicates with cooling box 5, and the bottom of cooling box 5 right side is equipped with the drain 4, the utility model discloses first sewage pours into cooling box 5, filters sewage through filter screen 7 in cooling box 5, and the sewage after filtering falls in the bottom cooling in the inner chamber of cooling box 5, at this moment, water pump 605 operates, and the sewage in the bottom of cooling box 5 is transmitted to water pump 605 through water suction pipe 606, and the sewage is transmitted to hose 604 through water pump 605, and the sewage is transmitted to shunt pipe 6015 through hose 604, and the sewage is transmitted to spray head 6013 through shunt pipe 6015, and the sewage is sprayed to filter screen 7 through spray head 6013, at this moment, motor 6010 operates, and screw rod 609 is rotated by motor 6010, and screw bush 608 is moved by screw rod 609, and moving block 6014 is moved by screw bush 608, and moving block 6014 is moved by the cooperation of sliding slot 602 and sliding block 6016 in movable slot 603, and moving plate 6011 is moved by moving block 6014, and shunt pipe 6015 and spray head 6013 are moved by moving plate 6011, at this moment, spray head 6013 evenly sprays sewage on filter screen 7 and filters, and the sewage in cooling box 5 is better in filtering and cooling.

[0024] One end of the surface of screw rod 609 is rotatably connected with movable plate 607, and the bottom of movable plate 607 is fixedly connected with connecting plate 601, the utility model discloses through movable plate 607, can when screw rod 609 rotates, can play the effect of stable rotation to screw rod 609, avoided the situation that screw rod 609 appears to jam when rotating.

[0025] The two ends of the surface of the shunt pipe 6015 are fixedly sleeved with limiting plates 6012, and the top of the limiting plate 6012 is fixedly connected with the moving plate 6011. The limiting plate 6012 can fix the shunt pipe 6015, so that the shunt pipe 6015 has better effect in use, and the shunt pipe 6015 is prevented from shaking in use, thereby preventing the unstable water guiding of the shunt pipe 6015.

[0026] The number of the spray heads 6013 is seven, and the seven spray heads 6013 are communicated at the bottom of the shunt pipe 6015 at equal intervals.

[0027] The bottom of the screw sleeve 608 is fixedly connected with the connecting position of the moving block 6014 in a welding mode, and the bottom of the screw sleeve 608 is located at the center of the top of the moving block 6014.

[0028] The four corners of the bottom of the bearing plate 1 are provided with supporting columns 2, and the bottom of the supporting column 2 is provided with a non-slip pad 3. The supporting column 2 and the non-slip pad 3 can fix the bearing plate 1, so that the bearing plate 1 has better effect in use, and the bearing plate 1 is prevented from shaking in use, thereby preventing the unstable use of the components on the bearing plate 1.

[0029] When the utility model is used: first, the sewage is poured into the cooling box 5, and the sewage is filtered through the filter screen 7 in the cooling box 5. The filtered sewage falls at the bottom of the inner cavity of the cooling box 5 for cooling. At this time, the water pump 605 operates, the sewage at the bottom of the cooling box 5 is transmitted to the water pump 605 through the water suction pipe 606, the sewage is transmitted to the hose 604 through the water pump 605, the sewage is transmitted to the shunt pipe 6015 through the hose 604, the sewage is transmitted to the spray head 6013 through the shunt pipe 6015, and the sewage is sprayed to the filter screen 7 through the spray head 6013. At this time, the motor 6010 operates, the screw rod 609 is driven to rotate through the motor 6010, the screw sleeve 608 is driven to move through the screw rod 609, the moving block 6014 is driven to move through the screw sleeve 608, the sliding groove 602 and the sliding block 6016 in the movable slot 603 are driven to move through the moving block 6014, the moving plate 6011 is driven to move through the moving block 6014, and the shunt pipe 6015 and the spray head 6013 are driven to move through the moving plate 6011. At this time, the spray head 6013 will uniformly spray the sewage on the filter screen 7 for filtering. In this way, the sewage in the cooling box 5 has better effect in filtering and cooling.

[0030] The above only describes the embodiments of the utility model and is not used to limit the utility model. The utility model can be variously changed and varied for those skilled in the art. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the utility model should be included in the claim range of the utility model.

Claims

1. A rapid circulating cooling device for metallurgical engineering, comprising a support plate (1), characterized in that: A cooling box (5) is provided on the top of the support plate (1). Placement plates (8) are provided on both sides of the inner cavity of the cooling box (5). A filter screen (7) is provided on the top of the two placement plates (8). A movable water spray assembly (6) is provided on the top of the inner cavity of the cooling box (5). The movable water spray assembly (6) includes a connecting plate (601), and both sides of the connecting plate (601) are fixedly connected to the top of both sides of the inner cavity of the cooling box (5). A motor (6010) is provided on the left side of the top of the connecting plate (601). A screw (609) is provided at the output end of the motor (6010). A threaded sleeve (608) is threaded onto the surface of the screw (609). A movable block (6014) is fixedly connected to the bottom of the threaded sleeve (608). A movable groove (603) adapted to the movable block (6014) is opened in the inner cavity of the connecting plate (601). Both ends of the inner cavity of the movable groove (603) are provided with sliding grooves (602), and both ends of the movable block (6014) are provided with sliders (6016) that are adapted to the sliding grooves (602). The bottom of the movable block (6014) is fixedly connected to a movable plate (6011). The bottom of the movable plate (6011) is provided with a diversion pipe (6015). The bottom of the diversion pipe (6015) is connected to the nozzles (6013) at equal distances. One end of the top of the diversion pipe (6015) is connected to a hose (604). The end of the hose (604) away from the diversion pipe (6015) is provided with a water pump (605). The input end of the water pump (605) is connected to a suction pipe (606), and the end of the suction pipe (606) away from the water pump (605) is connected to the cooling box (5). The bottom right side of the cooling box (5) is provided with a drain outlet (4).

2. The rapid circulating cooling device for metallurgical engineering according to claim 1, characterized in that: One end of the screw (609) is rotatably connected to a movable plate (607), and the bottom of the movable plate (607) is fixedly connected to the connecting plate (601).

3. The rapid circulating cooling device for metallurgical engineering according to claim 1, characterized in that: Both ends of the surface of the diversion pipe (6015) are fixedly fitted with limiting plates (6012), and the top of the limiting plates (6012) is fixedly connected to the moving plate (6011).

4. The rapid circulating cooling device for metallurgical engineering according to claim 1, characterized in that: The number of nozzles (6013) is seven, and the seven nozzles (6013) are connected at equal intervals at the bottom of the diversion pipe (6015).

5. The rapid circulating cooling device for metallurgical engineering according to claim 1, characterized in that: The bottom of the threaded sleeve (608) is fixedly connected to the movable block (6014) by welding, and the bottom of the threaded sleeve (608) is located at the center of the top of the movable block (6014).

6. The rapid circulating cooling device for metallurgical engineering according to claim 1, characterized in that: The support plate (1) has support columns (2) at the four corners of its bottom, and the bottom of the support columns (2) is provided with anti-slip pads (3).