Wire drawing and cooling device for steel strand production
By combining a limiting rod, a water spray plate, and a fan, the problem of incomplete cooling in traditional cooling devices is solved, achieving rapid cooling and surface protection of the steel strand, thus ensuring the performance and quality of the steel strand.
Patent Information
- Application Number
- CN202520447138.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-14
- Publication Date
- 2026-01-16
- Estimated Expiration
- 2035-03-14
AI Technical Summary
Traditional steel strand production drawing and cooling devices often fail to cool completely, resulting in residual moisture on the surface of the steel strand. This affects the use of the mold and the performance of the steel wire, and it is also prone to damage due to friction.
Rapid cooling is achieved by combining a limit rod for limiting, a water sprayer for spraying coolant, and a fan for blowing air. Protective rings, filters, and drying sponges are used to prevent friction damage and moisture residue.
This technology enables rapid cooling of steel strands in a short time, preventing rust and friction damage, ensuring stable performance, and improving cooling efficiency and surface quality.
Smart Images

Figure CN223801228U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to steel strand wire drawing cooling technical field, specifically is a kind of steel strand wire production wire drawing cooling device. BACKGROUND
[0002] Steel strand wire is by the same strength steel wire of multiple strand and is twisted, in production process, wire drawing is important link, but there is high strength friction between wire drawing die and running steel wire, can make wire drawing die temperature sharply rise, not in time cooling, it can influence die normal use and steel wire performance.
[0003] Traditional steel strand wire production wire drawing cooling device often uses shower to sprinkle cooling water on steel strand wire, utilizes the heat of water evaporation to take away steel strand wire to cool, this mode is after cooling, and steel strand wire is easy to remain moisture.
[0004] To solve the problems of traditional steel strand wire production wire drawing cooling device, meet the efficient, high quality, intelligent, energy saving and environmental protection needs of modern steel strand wire production, it is of great significance to develop new type steel strand wire production wire drawing cooling device.
[0005] Therefore, the utility model provides a kind of steel strand wire production wire drawing cooling device. INVENTION CONTENTS
[0006] To make up for the deficiencies of the prior art, solve at least one problem raised in the background art, a steel strand wire production wire drawing cooling device is proposed.
[0007] The utility model discloses a technical scheme that solves its technical problem is adopted: a kind of steel strand production wire drawing cooling device described in the utility model, including machine body;The inside one side of the machine body is equipped with cooling bin;The inside of the machine body is equipped with limit bin;The inside of the machine body is equipped with cooling bin;The inside of the machine body is equipped with air cooling bin;Limit bin, cooling bin and air cooling bin are arranged at the side position of cooling bin;Material guiding hole is formed in the side wall of the machine body;Material guiding hole is arranged in limit bin, cooling bin and air cooling bin and is arranged in penetration;Limit rod is fixedly connected in the inside of limit bin;Limit rod is arranged in the inside of limit bin and is limitedly arranged;The top of cooling bin is fixedly connected with bearing frame;Conveying pump is installed on the top of bearing frame;Water inlet end of conveying pump is fixedly connected with conveying pipe;The other end of conveying pipe is arranged at the inside position of cooling bin;Support frame is fixedly connected to the top of cooling bin and air cooling bin;Sprinkler is fixedly connected to the bottom of support frame;Sprinkler is arranged at the inside upper position of cooling bin, and the connection mode of conveying pump is conveying pipe;Driving motor is installed on the top of support frame;Driving motor is arranged at the upper position of air cooling bin;The output end of driving motor is connected with fan;Circulation port is penetrated between cooling bin and cooling bin;It can effectively make the steel strand that temperature rises after wire drawing process rapidly cool down in short time, ensure the performance stability of steel strand, and the effect of wiping and air drying can prevent the rust of steel strand due to surface residual coolant.
[0008] Preferably, a protective snare is installed in the inside of the material guiding hole;The protective snare is arranged in the inside of the machine body and is arranged in linear array, and is arranged at the side wall position of limit bin, cooling bin and air cooling bin;It can effectively provide sufficient protection ability, prevent the direct contact of steel strand and cooling device, avoid the damage of steel strand surface due to friction and collision, so as to ensure the surface quality of steel strand.
[0009] Preferably, placing hole is formed in the side wall of the machine body;Filter screen is placed in the inside of placing hole;Filter screen is arranged at the inside position of cooling bin and is arranged in filtration;It can effectively filter the impurities carried by the surface of steel strand, effectively intercept these impurities, prevent them from entering the pipeline of cooling system, avoid causing blockage, ensure the smooth flow of coolant and the stability of cooling effect.
[0010] Preferably, bearing column is fixedly connected to the bottom of the machine body;The bearing column is arranged at the bottom of the machine body;Shock pad is fixedly connected to the bottom of the bearing column;It can effectively have good damping effect, in order to enhance its stability and damping performance, increase the friction force and buffering capacity of contact surface at bottom.
[0011] Preferably, the water inlet end of the conveying pipe is provided with a filter; the filter is arranged at an internal position of the cooling bin; the filter can effectively filter the impurities in the liquid when conveying the cooling liquid, so as to ensure the stable cooling effect.
[0012] Preferably, the internal side wall of the cooling bin is fixedly connected with a drying sponge; the drying sponge is symmetrically arranged at an internal position of the cooling bin and is arranged at a position on one side of the material guiding hole; the drying sponge can effectively absorb the residual moisture on the surface of the steel strand after the steel strand is cooled, and the drying sponge can quickly absorb the moisture by virtue of the strong water absorption, so that the steel strand reaches a certain drying degree.
[0013] Preferably, the top of the cooling bin is fixedly connected with a sealing plate; the sealing plate is arranged in a surrounding manner at the top of the cooling bin; the top of the machine body is provided with a sealing cover; the sealing cover is arranged at a position on one side of the top of the limiting bin; the sealing cover can effectively isolate the inside of the cooling bin from the outside air, prevent the dust and impurities in the outside air from entering the cooling bin, pollute the cooling liquid, affect the cooling effect and surface quality of the steel strand, and also can avoid volatilization and leakage.
[0014] The steel strand production wire drawing cooling device has the following beneficial effects:
[0015] 1. The steel strand production wire drawing cooling device, through the limiting treatment of the limiting rod in the limiting bin, the cooling liquid is cooled by the water tray when the steel strand passes through the cooling bin, the steel strand is air-cooled by the fan driven by the driving motor, and the residual moisture on the surface of the steel strand is blown off, so that the steel strand with a temperature increased after the wire drawing process can be quickly cooled in a short time, the performance of the steel strand is stable, and the wiping and air-drying functions can prevent the steel strand from rusting due to the residual cooling liquid on the surface.
[0016] 2. The steel strand production wire drawing cooling device, when the steel strand passes through the device, the protective ring on the material guiding hole can be used for protection, so that the steel strand is prevented from being abraded and damaged by contacting the device, the quality of the steel strand is ensured, sufficient protection capability can be provided, the steel strand is prevented from directly contacting the cooling device, the surface of the steel strand is prevented from being damaged due to friction and collision, and therefore the surface quality of the steel strand is ensured. ACCURATE DRAWINGS
[0017] The steel strand production wire drawing cooling device will be further described below with reference to the accompanying drawings.
[0018] Figure 1 is a perspective view of the steel strand production wire drawing cooling device;
[0019] Figure 2 is a structural schematic view of the steel strand production wire drawing cooling device;
[0020] Figure 3 is the structure schematic view in the utility model;
[0021] Figure 4 is the structure schematic view in the utility model.
[0022] In the drawing: 11, machine body;12, cooling bin;13, limiting bin;14, cooling bin;15, air cooling bin;16, guide hole;17, limiting rod;18, bearing frame;19, conveying pump;110, conveying pipe;111, support frame;112, sprinkling tray;113, driving motor;114, fan;115, circulating port;21, protective snare;31, placing port;32, filter screen;41, bearing column;42, shock pad;51, filter;61, dry sponge;71, sealing plate;72, sealing cover. DETAILED DESCRIPTION
[0023] In order to make the technical means, creation features, purposes and effects realized by the utility model easy to understand, the utility model is further described below in combination with specific embodiments.
[0024] The specific embodiments are given below.
[0025] For example, Figures 1 to 4As shown, the utility model discloses a kind of steel strand production wire drawing cooling devices, including body 11;The inside one side of body 11 is equipped with cooling bin 12;The inside of body 11 is equipped with limiting bin 13;The inside of body 11 is equipped with cooling bin 14;The inside of body 11 is equipped with air cooling bin 15;Limiting bin 13, cooling bin 14 and air cooling bin 15 are equipped in the side position of cooling bin 12;Material guiding hole 16 is set on the side wall of body 11;Material guiding hole 16 is set in limiting bin 13, cooling bin 14 and air cooling bin 15 and is set in through;Limiting rod 17 is fixedly connected in the inside of limiting bin 13;Limiting rod 17 is set in the inside of limiting bin 13 and is set in limiting;The top of cooling bin 12 is fixedly connected with bearing frame 18;Bearing frame 18 is installed with delivery pump 19 on the top;Delivery pump 19 is fixedly connected with delivery pipe 110 on water inlet end;The other end of delivery pipe 110 is equipped in the inside position of cooling bin 12;Bearing frame 111 is fixedly connected with the top of cooling bin 14 and air cooling bin 15;Sprinkling tray 112 is fixedly connected with the bottom of bearing frame 111;Sprinkling tray 112 is equipped in the inside upper position of cooling bin 14, and with delivery pump 19 Connection mode is delivery pipe 110;Driving motor 113 is installed on the top of bearing frame 111;Driving motor 113 is equipped in the upper position of air cooling bin 15;Fan 114 is connected on the output end of driving motor 113;Circulation port 115 is through between cooling bin 12 and cooling bin 14;When working, when needing to cool the steel strand, when steel strand is passed through material guiding hole 16, limiting and guiding treatment are carried out through limiting rod 17 on the inside of limiting bin 13, when passing through cooling bin 14, delivery pump 19 can extract cooling liquid in the inside of cooling bin 12, when spraying through sprinkling tray 112, steel strand can be rapidly cooled, when steel strand cooling ends, when passing through air cooling bin 15, fan 114 can be rotated by driving motor 113, and residual temperature and moisture on steel strand can be blown off at high speed, and when delivery pump 19 delivers cooling liquid, because circulation port 115 is set in cooling bin 12 and cooling bin 14, cooling liquid can be recycled;Through the above structure, steel strand that temperature rises after wire drawing process can be rapidly cooled in short time, ensure the performance stability of steel strand, and the effect of wiping and air drying, can prevent steel strand from rusting due to surface residual cooling liquid.
[0026] As Figure 1 With Figure 2As shown, the inside of the material guide hole 16 is provided with a protective snare 21; the protective snare 21 is arranged in a linear array inside the body 11, and is arranged at the side wall position of the limiting bin 13, the cooling bin 14 and the air cooling bin 15; during work, when the steel strand passes through the cooling device, the protective snare 21 on the material guide hole 16 can be used for protection treatment, which can prevent the steel strand from being damaged by long-term contact with the device and unable to use; through the above structure, sufficient protection capability can be effectively provided to prevent the steel strand from directly contacting the cooling device, avoid damage to the surface of the steel strand due to friction and collision, and thus ensure the surface quality of the steel strand.
[0027] As shown in the figure, Figure 1 With Figure 2 As shown, the side wall of the body 11 is provided with a placing opening 31; the inside of the placing opening 31 is placed with a filter screen 32; the filter screen 32 is arranged at the inside position of the cooling bin 14, and is arranged in a filtering manner; during work, when the cooling bin 14 cools the steel strand with cooling liquid, the filter screen 32 can be used for filtering to prevent impurities on the surface of the steel strand from entering the inside of the cooling liquid during spraying, causing blockage and accumulation, and the placing opening 31 can make the filter screen 32 be taken out and put in, which is convenient for the operator to clean the filtered impurities; through the above structure, these impurities can be effectively intercepted to prevent them from entering the pipeline of the cooling system, avoid causing blockage, and ensure the smooth flow of the cooling liquid and the stability of the cooling effect.
[0028] As shown in the figure, Figure 1 With Figure 2 As shown, the bottom of the body 11 is fixedly connected with a bearing column 41; the bearing column 41 is arranged around the bottom of the body 11; the bottom of the bearing column 41 is fixedly connected with a shock pad 42; during work, when the cooling device is running, the bearing column 41 can be used for supporting, and the shock pad 42 at the bottom can reduce the vibration occurring during the running of the device, and the anti-skid treatment can make the device stably fixed at the specified position to prevent shaking from causing self-moving; through the above structure, the device can effectively have good shock absorption effect, and the friction force and buffering capacity of the bottom are increased to enhance the stability and shock absorption performance.
[0029] As shown in the figure, Figure 3 As shown, the inlet end of the conveying pipe 110 is provided with a filter 51; the filter 51 is arranged at the inside position of the cooling bin 12; during work, when the conveying pump 19 conveys the cooling liquid in the cooling bin 12, the filter 51 can be used for more detailed filtering to prevent the small impurities in the cooling liquid from causing damage to the machine due to long-term accumulation; through the above structure, when the cooling liquid is conveyed, the impurities in the liquid can be better filtered to ensure the stable cooling effect.
[0030] As shown in the figure, Figure 1 With Figure 2As shown, a drying sponge 61 is fixed to the inner side wall of the cooling chamber 12. The drying sponge 61 is symmetrically arranged inside the cooling chamber 12 and located on one side of the feed hole 16. During operation, when the steel strand enters the air-cooling chamber 15, the drying sponge 61 can absorb the coolant and moisture on the surface of the steel strand, achieving a dry surface and preventing moisture from corroding the steel strand and causing damage. Through the above structure, the residual moisture on the surface of the steel strand after cooling can be effectively absorbed. The drying sponge 61, with its strong water absorption, can quickly absorb moisture, allowing the steel strand to reach a certain degree of dryness.
[0031] like Figure 1 As shown, a sealing plate 71 is fixed to the top of the cooling chamber 12; the sealing plate 71 is arranged in a surrounding manner on the top of the cooling chamber 12; a sealing cover 72 is placed on the top of the body 11; the sealing cover 72 is located on one side of the top of the limiting chamber 13; during operation, when there is coolant inside the cooling chamber 12, it can be sealed by the sealing plate 71, and the sealing cover 72 makes it easy for operators to inspect and handle. Long-term exposure of coolant will affect the cooling effect and it is easy to evaporate; through the above structure, the interior of the cooling chamber 12 can be effectively isolated from the outside air, preventing dust and impurities from entering the cooling chamber 12, contaminating the coolant, affecting the cooling effect and surface quality of the steel strand, and also preventing evaporation and leakage.
[0032] When the steel strand needs to be cooled during operation, the steel strand can be guided and limited by the limiting rod 17 on the inside of the limiting bin 13 when passing through the material guiding hole 16, the cooling liquid in the cooling bin 12 can be extracted by the conveying pump 19 when passing through the cooling bin 14, and the steel strand can be quickly cooled by spraying through the water tray 112. When the cooling of the steel strand is completed, the residual heat and moisture on the steel strand can be blown off at high speed by rotating the fan 114 driven by the driving motor 113 when passing through the air cooling bin 15, and the cooling liquid can be recycled because the cooling bin 12 and the cooling bin 14 are provided with the circulation port 115; when the steel strand passes through the cooling device, the protection ring 21 on the material guiding hole 16 can be used for protection, which can prevent the steel strand from being damaged by long-term contact with the device and cannot be used; when the cooling liquid in the cooling bin 14 cools the steel strand, the filter screen 32 can be used for filtering to prevent impurities on the surface of the steel strand from entering the inside of the cooling liquid during spraying, causing blockage and accumulation, and the placing port 31 can make the filter screen 32 be taken out and put in, so that the operator can clean the filtered impurities; when the cooling device operates, the load-bearing column 41 can be used for supporting, the shock pad 42 at the bottom can reduce the vibration of the device during operation, and the anti-skid treatment can stably fix the device at the specified position and prevent shaking from causing self-moving; when the conveying pump 19 conveys the cooling liquid in the cooling bin 12, the filter 51 can be used for more detailed filtering to prevent the small impurities in the cooling liquid from causing damage to the machine due to long-term accumulation; when the steel strand passes through the air cooling bin 15, the dry sponge 61 can be used for absorbing the cooling liquid and moisture on the surface of the steel strand, so that the surface can be dried to prevent moisture from eroding the steel strand; when there is cooling liquid in the cooling bin 12, the sealing plate 71 can be used for sealing treatment, and the sealing cover 72 can be convenient for the operator to check and handle. The cooling effect can be affected by long-term exposure of the cooling liquid, and the cooling liquid is easy to evaporate.
[0033] The basic principles, main features and advantages of the present application are shown and described above. Those skilled in the art should understand that the present application is not limited by the above examples, and the above examples and descriptions in the specification are only to illustrate the principles of the present application. Without departing from the spirit and scope of the present application, various changes and improvements can be made to the present application, and these changes and improvements all fall within the scope of the claimed present application. The scope of protection of the present application is defined by the appended claims and their equivalents.
Claims
1. A steel strand production wire drawing cooling device comprising a machine body (11); characterized in that: The inside of the body (11) is provided with a cooling bin (12); the inside of the body (11) is provided with a limiting bin (13); the inside of the body (11) is provided with a cooling bin (14); the inside of the body (11) is provided with a wind cooling bin (15); the limiting bin (13), the cooling bin (14) and the wind cooling bin (15) are provided at one side of the cooling bin (12); the side wall of the body (11) is provided with a guide hole (16); the guide hole (16) is provided in the limiting bin (13), the cooling bin (14) and the wind cooling bin (15) in a penetrating manner; the inside of the limiting bin (13) is fixedly connected with a limiting rod (17); the limiting rod (17) is provided in the limiting bin (13) in a limiting manner; the top of the cooling bin (12) is fixedly connected with a bearing frame (18); the top of the bearing frame (18) is provided with a conveying pump (19); the water inlet end of the conveying pump (19) is fixedly connected with a conveying pipe (110); the other end of the conveying pipe (110) is provided at the inside of the cooling bin (12); the top of the cooling bin (14) and the wind cooling bin (15) is fixedly connected with a support frame (111); the bottom of the support frame (111) is fixedly connected with a sprinkler (112); the sprinkler (112) is provided above the inside of the cooling bin (14) and connected with the conveying pump (19) in a conveying pipe (110) manner; the top of the support frame (111) is provided with a driving motor (113); the driving motor (113) is provided above the wind cooling bin (15); the output end of the driving motor (113) is connected with a fan (114); the cooling bin (12) and the cooling bin (14) are provided with a circulating port (115).
2. A wire strand production drawing and cooling device according to claim 1, characterized in that: The inside of the guide hole (16) is provided with a protective snare (21); the protective snare (21) is provided in the body (11) in a linear array and at the side wall of the limiting bin (13), the cooling bin (14) and the wind cooling bin (15).
3. A wire strand production drawing and cooling device according to claim 2, characterized in that: The side wall of the body (11) is provided with a placing port (31); the inside of the placing port (31) is provided with a filter screen (32); the filter screen (32) is provided at the inside of the cooling bin (14) in a filtering manner.
4. A wire strand production drawing and cooling device according to claim 3, characterized in that: The bottom of the body (11) is fixedly connected with a bearing column (41); the bearing column (41) is provided around the bottom of the body (11); the bottom of the bearing column (41) is fixedly connected with a damping pad (42).
5. A wire strand production drawing and cooling device according to claim 4, characterized in that: The water inlet end of the conveying pipe (110) is provided with a filter (51); the filter (51) is provided at the inside of the cooling bin (12).
6. A wire strand production drawing and cooling device according to claim 5, characterized in that: The inside of the cooling bin (12) is fixedly connected with a drying sponge (61); the drying sponge (61) is provided in the cooling bin (12) in a symmetrical manner and at one side of the guide hole (16).
7. A wire strand production drawing and cooling device according to claim 6, characterized in that: The top of the cooling bin (12) is fixedly connected with a sealing plate (71); the sealing plate (71) is arranged in a surrounding manner on the top of the cooling bin (12); the top of the machine body (11) is provided with a sealing cover (72); the sealing cover (72) is arranged at the top of the limiting bin (13) on one side.