Cooling device for refractory material manufacturing
By designing a cooling device that includes a sliding shaft and belt drive, the problem of low efficiency in existing refractory material cooling devices is solved, continuous cooling of refractory materials during transportation is achieved, and the operation process is simplified.
Patent Information
- Application Number
- CN202422904150.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-27
- Publication Date
- 2025-10-24
- Estimated Expiration
- 2034-11-27
AI Technical Summary
Existing refractory material cooling devices require step-by-step operation, resulting in low cooling efficiency and cumbersome operation.
A cooling device was designed, comprising a water storage frame, mounting plate, driving wheel, driven wheel, belt, sliding shaft, slide rail, vertical plate, guide rod, carriage, support rod, material frame, hook, concave guide rail, and slider. The device achieves continuous cooling of refractory materials during the conveying process through the transmission of the sliding shaft and belt.
It enables continuous cooling of refractory materials during transportation, improving cooling efficiency and simplifying the operation process.
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Figure CN223470414U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to refractory production technical field especially a cooling device for refractory manufacturing. BACKGROUND
[0002] Refractory refers to a kind of inorganic non-metallic material with refractoriness not less than 1580 DEG C, and the refractoriness refers to the Celsius temperature of refractory cone sample without load, which does not soften and melt under high temperature, and refractory is widely used in steel, non-ferrous metal, glass, cement, ceramic, petrochemical, machinery, boiler, light industry, electric power, military industry and other fields of national economy, and it is essential basic material to ensure the production operation and technical development of the above-mentioned industries, and plays an irreplaceable important role in high-temperature industrial production development.
[0003] According to the patent disclosure number CN218895669U patent disclosure file, a kind of refractory cooling device is proposed, and the patent proposes that refractory is placed on rotating rod, and rotating rod is driven to rotate by first motor installed on the inner wall of protective shell to cool it, and fan blade is also rotated by second motor installed on the outer wall of support frame, so that the refractory can be blown and cooled, but in the actual use process, the patent still has some deficiencies, the refractory needs to be cooled first, and then it needs to be taken out from the device after cooling, and finally it needs to be transported, which divides the cooling process of refractory into multiple steps, and the operation is troublesome and the efficiency is also low. UTILITY MODEL CONTENT
[0004] In order to overcome the shortcomings of the prior art, a cooling device for refractory manufacturing is provided, which can complete cooling during transportation.
[0005] The technical implementation scheme of the utility model is: a cooling device for refractory manufacturing, comprising a water storage frame, a mounting plate, a driving wheel, a driven wheel, a belt, a sliding shaft, a sliding rail, a vertical plate, a guide rod, a sliding frame, a support rod, a material frame, a hook, a concave guide rail and a sliding block, the mounting plate is provided on the top of the water storage frame, the driving wheel is rotatably connected to the left part of the mounting plate, the driven wheel is rotatably connected to the right side of the mounting plate, the belt is wound between the driving wheel and the driven wheel, the sliding shaft is provided on the belt, the sliding rail is fixedly connected to the lower part of the mounting plate, the vertical plate is slidably connected to the sliding rail, the waist hole is formed in the vertical plate, the sliding shaft and the waist hole are in sliding fit, the guide rods are symmetrically slidably connected to the both sides of the vertical plate, the sliding frame is fixedly connected to the bottom of the two guide rods, the support rods are symmetrically fixedly connected in the sliding frame, the hooks are symmetrically provided on the top of the material frame, the material frame is matched with the support rods through the hooks, the concave guide rail is arranged on the bottom of the mounting plate, the sliding block is fixedly connected to the rear end of the sliding frame, and the sliding frame is slidably matched with the concave guide rail through the sliding block.
[0006] Further, the protruding plate is further included, and the protruding plate is symmetrically fixed on both sides of the material frame.
[0007] Further, the spring is further included, and the spring is symmetrically arranged between the vertical plate and the sliding frame.
[0008] Further, the material frame is connected with the supporting rod through the hook, so that the material frame can be conveniently taken down, and the refractory material can be conveniently added or taken out.
[0009] Further, the waist hole is arranged on the vertical plate, the sliding shaft can slide in the waist hole, the sliding shaft can slide in the waist hole along with the rotation of the belt, and the vertical plate can be driven to reciprocatingly slide on the sliding rail.
[0010] Further, when the sliding frame is on the concave guide rail, the left and right parts of the concave guide rail are higher than the middle part, so that workers can conveniently place high-temperature refractory material into the material frame and take out the cooled refractory material.
[0011] The utility model has the advantages that: when the refractory material is placed into the material frame or the cooled refractory material is taken out, the worker can easily take up the material frame with the protruding plate as a force point, and the spring can buffer and absorb the shock when the vertical plate and the sliding frame slide, so that the sliding frame can stably rise or fall on the slope of the concave guide rail. BRIEF DESCRIPTION OF DRAWINGS
[0012] Figure 1 It is a whole structure schematic view of the utility model.
[0013] Figure 2 It is a structure schematic view of the driving wheel, the driven wheel and the belt of the utility model.
[0014] Figure 3 It is a partial structure schematic view of the utility model.
[0015] Figure 4 It is a structure schematic view of another part of the utility model.
[0016] In the above drawings, 1 is a water storage frame, 2 is a mounting plate, 3 is a driving wheel, 4 is a driven wheel, 5 is a belt, 6 is a sliding shaft, 7 is a sliding rail, 8 is a vertical plate, 9 is a guide rod, 10 is a sliding frame, 11 is a spring, 12 is a supporting rod, 13 is a material frame, 14 is a hook, 15 is a concave guide rail, 16 is a sliding block, and 17 is a protruding plate. DETAILED DESCRIPTION
[0017] Reference herein to an embodiment means that a particular feature, structure, or characteristic described in connection with the embodiment can be included in at least one embodiment of the application. The appearances of the phrase in various places in the specification are not necessarily all referring to the same embodiment, nor are they necessarily mutually exclusive of one another. As will be apparent to those of ordinary skill in the art, embodiments described herein can be combined with other embodiments. Embodiment 1
[0018] A cooling device for refractory material manufacturing, as shown in Figures 1-4 It comprises a water storage frame 1, a mounting plate 2, a driving wheel 3, a driven wheel 4, a belt 5, a sliding shaft 6, a sliding rail 7, a vertical plate 8, a guide rod 9, a sliding frame 10, a support rod 12, a material frame 13, a hook 14, a concave guide rail 15 and a sliding block 16. The mounting plate 2 is bolted on the top of the water storage frame 1. The driving wheel 3 is rotatably connected to the left part of the mounting plate 2 to provide power for the device. The driven wheel 4 is rotatably connected to the right side of the mounting plate 2. The belt 5 is wound between the driving wheel 3 and the driven wheel 4. Under the transmission of the belt 5, the driving wheel 3 and the driven wheel 4 can rotate synchronously. The sliding shaft 6 is arranged on the belt 5. The sliding rail 7 is bolted to the lower part of the mounting plate 2. The vertical plate 8 is slidably connected to the sliding rail 7. The vertical plate 8 can reciprocate on the sliding rail 7 under the pressure of the sliding shaft 6. A waist hole is formed in the vertical plate 8. The sliding shaft 6 can slide in the waist hole under the rotation of the belt 5, thereby driving the vertical plate 8 to reciprocate on the sliding rail 7. The guide rods 9 are symmetrically and slidably connected to the both sides of the vertical plate 8. The sliding frame 10 is commonly fixed to the bottom of the two guide rods 9 and can be lifted under the guidance of the guide rods 9. The support rods 12 are symmetrically welded in the sliding frame 10. The hooks 14 are symmetrically arranged on the top of the material frame 13. The material frame 13 can be conveniently taken off from the support rods 12 through the cooperation of the hooks 14 and the support rods 12, so as to add or take out refractory materials. The concave guide rail 15 is arranged on the bottom of the mounting plate 2. When the sliding frame 10 is on the concave guide rail 15, the left and right parts of the concave guide rail 15 are higher than the middle part, so as to conveniently place high-temperature refractory materials into the material frame 13 and take out the cooled refractory materials. The sliding block 16 is welded on the rear end of the sliding frame 10. The sliding frame 10 is slidably connected to the concave guide rail 15 through the sliding block 16.
[0019] As shown in Figure 3 and Figure 4 It further comprises the protruding plates 17. The protruding plates 17 are symmetrically welded on the both sides of the material frame 13. The protruding plates 17 are used to provide a force point for workers to carry the material frame 13, so as to better complete the delivery of the refractory materials.
[0020] As shown in Figure 3 and Figure 4 It further comprises the springs 11. The springs 11 are symmetrically arranged between the vertical plate 8 and the sliding frame 10. The springs 11 can make the sliding frame 10 smoothly slide through the slope of the concave guide rail 15.
[0021] When the cooling treatment of the refractory material is carried out by using the utility model, the worker needs to start the driving wheel 3, and through the cooperation of the belt 5 and the driven wheel 4, the sliding shaft 6 can reciprocate with the belt 5, and the vertical plate 8 can reciprocate on the slide rail 7 along with the movement of the sliding shaft 6. When the sliding shaft 6 moves with the belt 5, the height of the position will change, the waist hole on the vertical plate 8 can slide up and down, and the driving of the vertical plate 8 will not stop due to the change of the height. The slide 10 at the bottom of the vertical plate 8 will slide on the concave guide rail 15, and through the setting of the guide rod 9 and the buffering and damping of the spring 11, the slide 10 can smoothly pass through the slope on the concave guide rail 15. The worker only needs to pour the refractory material into the material frame 13, and when the slide 10 slides to the two ends of the concave guide rail 15, the material frame 13 can be hung on the supporting rod 12 through the hook 14. When the slide 10 slides into the recess of the concave guide rail 15, the material frame 13 will be immersed in the cooling liquid in the water storage frame 1 to cool the refractory material, and when it slides to the other end of the concave guide rail 15, it can be taken off after cooling, so as to achieve the purpose of cooling during conveying, and the cooling efficiency is greatly improved.
[0022] The above is only a specific embodiment of the utility model, but the protection scope of the utility model is not limited to this. Any skilled person in the technical field can easily think of changes or replacements within the technical range disclosed by the utility model, which should be covered within the protection scope of the utility model. Therefore, the protection scope of the utility model should be subject to the protection scope of the claims.
Claims
1. A cooling device for manufacturing refractory materials, comprising a water storage frame (1), a mounting plate (2), a driving wheel (3), a driven wheel (4), a belt (5), a sliding shaft (6), a slide rail (7), a vertical plate (8) and a material frame (13), wherein the right side of the mounting plate (2) is rotatably connected to the driven wheel (4), a belt (5) is wound between the driving wheel (3) and the driven wheel (4), a sliding shaft (6) is provided on the belt (5), a slide rail (7) is fixed to the lower part of the mounting plate (2), a vertical plate (8) is slidably connected to the slide rail (7), a waist hole is opened on the vertical plate (8), and the sliding shaft (6) is slidably matched with the waist hole, wherein: It also includes guide rod (9), slide (10), support rod (12), hook (14), concave guide rail (15) and sliding block (16), water storage frame (1) top is provided with mounting plate (2), mounting plate (2) left part is rotatably connected with driving wheel (3), vertical plate (8) both sides are symmetrically connected with guide rod (9), two guide rods (9) bottom are fixedly connected with slide (10), slide (10) is symmetrically fixed with support rod (12) in, material frame (13) top is symmetrically provided with hook (14), material frame (13) is matched with support rod (12) through hook (14), mounting plate (2) bottom is provided with concave guide rail (15), slide (10) rear end is fixedly connected with sliding block (16), slide (10) is slidably connected with concave guide rail (15) through sliding block (16).
2. A cooling device for the production of refractory materials according to claim 1, characterized in that: It also includes convex plate (17), material frame (13) both sides are symmetrically fixed with convex plate (17).
3. A cooling device for the manufacture of refractory materials according to claim 2, characterised in that: It also includes spring (11), spring (11) is symmetrically arranged between vertical plate (8) and slide (10).
4. A cooling device for the manufacture of refractory materials according to claim 3, characterized in that: The material frame (13) is connected with the support rod (12) through the hook (14), which can be conveniently taken down, and the refractory material can be added or taken out.
5. A cooling device for refractory material manufacturing according to claim 4, characterized in that: The waist hole in the vertical plate (8) can make the sliding shaft (6) slide in it, and the sliding shaft (6) can slide in the waist hole with the rotation of the belt (5), so as to drive the vertical plate (8) to slide left and right on the slide rail (7).
6. A cooling device for the manufacture of refractory materials according to claim 5, characterized in that: When the slide (10) is on the concave guide rail (15), the left and right parts of the concave guide rail (15) are higher than the middle part, so that workers can conveniently place high-temperature refractory materials in the material frame (13) and take out the cooled refractory materials.
Citation Information
Patent Citations
Refractory material cooling device
CN218895669U