High titanium slag water quenching granulation mechanism

By designing a high-titanium slag water quenching granulation mechanism, using the water quenching and conveying structure of the inclined plate and conveying belt assembly, and combining the discharge structure of the spiral blade shaft and pulley, the problems of water vapor corrosion and resource waste during the cooling of the titanium slag are solved, and efficient titanium slag treatment is achieved.

CN222872086UInactive Publication Date: 2025-05-16FUXIN HENGLI CASTING CO LTD
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Patent Information

Application Number
CN202421177928.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-05-27
Publication Date
2025-05-16
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

During the cooling process of titanium slag, the water quenching method generates a large amount of water vapor, causing rust in the factory building, and some of the titanium slag is washed away by the water flow, wasting resources.

Method used

A high-titanium slag water quenching granulation mechanism is designed, including a box, a cover and a mounting plate, with a water quenching granulation structure and a discharge structure. The water-quenched granulation structure realizes water quenching and transporting of high titanium slag through inclined plates and conveyor belt components, and the discharge structure realizes uniform output of high titanium slag through spiral blade shafts and pulleys.

Benefits of technology

Water vapor is extracted through the condensation treatment machine to avoid rust; the inclined plate and conveyor belt assembly design reduces the probability of titanium slag being washed away and improves resource utilization.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a high titanium slag water quenching granulation mechanism, relates to titanium slag treatment technical field, the utility model discloses a high titanium slag water quenching granulation mechanism, the utility model discloses a box body, cover body and mounting plate, the box body is uncovered rectangular box, the one end of box body upper side is fixedly connected with the cover body, the other end of box body upper side is fixedly connected with the mounting plate, the mounting plate is fixed in the box body. And a water quenching granulation structure is mounted in the box body. According to the device, high titanium slag is conveyed into the box body through the feeding pipe, the high titanium slag falls into the box body and generates water vapor when encountering water, the cover body is communicated with an external water vapor condensation treatment machine to extract a large amount of water vapor, and the situation that the large amount of water vapor drifts out to rust factory buildings is avoided; water-quenched high titanium slag is conveyed into the material receiving shell along the track of the conveying belt through a set of supporting plates, the high titanium slag is evenly conveyed out through the discharging structure, and due to the fact that the inclined plate and the conveying belt assembly are both arranged on the inner wall of the box body, the gram weight of the high titanium slag falling into the inner bottom of the box body and washed away by water flow is reduced.
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Description

Technical Field

[0001] The utility model relates to the technical field of titanium slag treatment, in particular to a high-titanium slag water quenching granulation mechanism. Background Art

[0002] At present, water quenching is used to cool titanium slag. However, a large amount of water vapor is generated when the titanium slag is cooled. The water vapor floats out of the water quenching pool and corrodes the factory buildings, which requires maintenance of the factory area and is troublesome. At the same time, when the titanium slag is collected, part of the titanium slag is washed away by the water flow, wasting the titanium slag resources. Utility Model Content

[0003] In order to solve the above problems, that is, to solve the problems raised by the above background technology, the utility model proposes a high-titanium slag water quenching granulation mechanism, which includes a box body, a cover body and a mounting plate, the box body is a rectangular box without a cover, one end of the upper side of the box body is fixedly connected to the cover body, and the other end of the upper side of the box body is fixedly connected to the mounting plate, a water quenching granulation structure is installed in the box body, and a discharging structure is installed on the mounting plate;

[0004] The water quenching granulation structure includes an inclined plate and a conveyor belt assembly;

[0005] Both sides of the inclined plate are fixedly connected to one end of the box body, the inclined plate is located below the cover body, one end of the box body is fixedly connected to a feed pipe and a water inlet pipe, the feed pipe is higher than the inclined plate, the water inlet pipe is lower than the inclined plate, the inclined plate is provided with a group of evenly arranged through holes, the lower end of the conveyor belt assembly is arranged in the box body, the conveyor belt assembly is tilted in the box body, the tilt direction of the conveyor belt assembly is opposite to that of the inclined plate, and the other end of the box body is fixedly connected to a water outlet pipe.

[0006] The utility model is further configured as follows: the discharging structure comprises a material receiving shell, a motor, a pulley, a spiral blade shaft and a discharging pipe;

[0007] The four corners on the upper side of the mounting plate are fixedly connected to corresponding legs respectively, the upper ends of a group of the legs are fixedly connected to the material receiving shell, the lower end of the material receiving shell is fixedly connected to one end of the discharge pipe, one end of the upper side of the mounting plate is fixedly connected to the motor, the output end of the motor is fixedly connected to one of the pulleys, the other side of one of the pulleys is fixedly connected to a shaft rod, the other end of the shaft rod is connected to a bearing and passes through one end of the discharge pipe, the other end of the shaft rod is fixedly connected to the spiral blade shaft, and the outer side of the spiral blade shaft fits into the inner wall of the discharge pipe.

[0008] The utility model is further configured as follows: the conveyor belt assembly is composed of a pair of connecting plates, a conveyor belt, a set of supporting plates, another pulley and a belt;

[0009] A pair of connecting plates are fixedly connected to the inner wall of the box body at the lower part, and the upper and lower ends of a pair of connecting plates are respectively connected to corresponding rotating shafts by bearings, one rotating shaft passes through the connecting plate and is fixedly connected to another pulley, a pair of pulleys are connected by the belt, a pair of rotating shafts are connected by the conveyor belt, and a group of evenly arranged supporting plates are fixedly connected to the outer side of the conveyor belt, and each of the supporting plates is provided with a group of evenly arranged drainage holes.

[0010] The utility model is further configured as follows: the lower end of the inclined plate is fixedly connected to one side of a pair of connecting plates, and the spacing between the inclined plate and the conveyor belt matches the width of each of the supporting plates.

[0011] The utility model is further configured as follows: the upper portion of the conveyor belt assembly is fixedly connected to one side of the discharge pipe, and the top end of the conveyor belt assembly is located above the opening of the discharge pipe.

[0012] The utility model is further configured as follows: the discharge pipe exceeds one side of the box body.

[0013] The utility model is further configured as follows: the inclination angle of the inclined plate is 5 to 15°.

[0014] The utility model is further configured as follows: the inclination angle of the conveyor belt assembly is -45 to -60 degrees, and the inclination of a group of the support plates matches the inclination of the inclined plate (ie, they are in a parallel relationship).

[0015] The beneficial technical effect of the utility model is as follows: the device transports high-titanium slag into the box through the feed pipe, the high-titanium slag falls into the box and generates water vapor when it meets water, and a large amount of water vapor is extracted through the cover body to connect to the external water vapor condensation treatment machine to prevent a large amount of water vapor from floating out and corroding the factory buildings, the water-quenched high-titanium slag slides to the bottom along the inclined plate, and the water-quenched high-titanium slag is transported to the receiving shell along the track of the conveyor belt through a group of support plates, the excess water in the high-titanium slag flows out through the drain holes of the support plates, and the high-titanium slag is evenly transported out through the discharging structure. Since the inclined plate and the conveyor belt assembly are both arranged on the inner wall of the box, the gram weight of the high-titanium slag that falls into the bottom of the box and is washed away by the water flow is reduced. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 The three-dimensional structure of the utility model is shown Figure 1 .

[0017] Figure 2 The three-dimensional structure of the utility model is shown Figure 2 .

[0018] Figure 3 The figure shows a three-dimensional structural schematic diagram of the box body 6 of the present invention after being cut.

[0019] Figure 4 A three-dimensional structural schematic diagram of a conveyor belt assembly 2 of the utility model is shown.

[0020] Figure numerals 1, cover body, 2, conveyor belt assembly, 3, pulley, 4, belt, 5, motor, 6, box body, 7, material receiving shell, 8, discharge pipe, 9, inclined plate, 10, spiral blade shaft, 11, support plate, 12, drain hole. DETAILED DESCRIPTION

[0021] Please refer to the attached Figure 1-Figure 4 Those skilled in the art should understand that these embodiments are only used to explain the technical principles of the present invention and are not intended to limit the protection scope of the present invention.

[0022] The utility model proposes a high-titanium slag water quenching granulation mechanism. When using the device, the feed component is connected to the feed pipe, water is introduced through the water inlet pipe, the water submerges the upper side of the inclined plate and is lower than the lower end of the feed pipe, the upper end of the cover body 1 is connected to the external water vapor condensation processing machine, the motor 5, the water vapor condensation processing machine and the feed component are started, the feed component transports the high-titanium slag into the box body 6, the high-titanium slag contacts the water to generate a large amount of steam, a large amount of water vapor is extracted through the water vapor condensation processing machine, and a large amount of water vapor is prevented from floating out and corroding the factory area buildings, the water-quenched high-titanium slag slides along the inclined plate 9 to the position at the bottom of the inclined plate, and at the same time, the motor 5 drives the corresponding pulley 3 to rotate, one pulley 3 drives another pulley 3 to rotate through the belt 4, one pulley 3 drives the spiral blade shaft 10 to rotate along the discharge pipe 8 through the shaft, and the other pulley 3 drives the conveyor belt of the conveyor belt assembly 2 to slide through the rotating shaft, and the conveyor belt drives a group of supporting plates 11 to slide along the track of the conveyor belt, the water-quenched high-titanium slag slides to the corresponding supporting plate 11, and drives the water-quenched high-titanium slag to the corresponding supporting plate 11 through a group of supporting plates 11 The high-titanium slag after quenching slides upward, and the excess water in the high-titanium slag flows out through the drain holes 12 of the support plate 11. When the support plate 11 loaded with high-titanium slag slides to the highest point of the conveyor belt assembly 2, the high-titanium slag after water quenching falls into the receiving shell 7, and the high-titanium slag in the receiving shell 7 is evenly transported out along the discharge pipe 8 through the spiral blade shaft 10. Since both sides of the inclined plate 9 and a pair of connecting plates of the conveyor belt assembly 2 are fixedly connected to the inner wall of the box body 6, there is no gap between them and the inner wall of the box body 6. The high-titanium slag at the bottom of the inclined plate 9 passes through a group of The support plate 11 continuously slides and transports upward, reducing the gram weight of the high-titanium slag that falls to the bottom of the box and is washed away by the water flow (small slag will inevitably fall to the bottom of the box 6). After a group of high-titanium slag is water quenched, the water temperature rises, the feed component is closed, and the waste water is discharged through the outlet pipe. New water is injected into the box 6 and then the next batch of high-titanium slag is water quenched. The operation process is the same and will not be repeated. After the water quenching is completed, the motor 5, the water vapor condensation treatment machine and the feed component are turned off, and the waste water can be discharged.

[0023] Although the present invention has been described with reference to preferred embodiments, various modifications may be made thereto and parts thereof may be replaced with equivalents without departing from the scope of the present invention. In particular, the various technical features mentioned in the various embodiments may be combined in any manner as long as there is no structural conflict. The present invention is not limited to the specific embodiments disclosed herein, but includes all technical solutions falling within the scope of the claims.

[0024] In the description of the present invention, the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer" and the like indicating directions or positional relationships are based on the directions or positional relationships shown in the drawings, which are only for the convenience of description, and do not indicate or imply that the device or element must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as limiting the present invention. In addition, the terms "first", "second", and "third" are used for descriptive purposes only, and cannot be understood as indicating or implying relative importance.

[0025] In addition, it should be noted that in the description of the present invention, unless otherwise clearly specified and limited, the terms "installation", "connection" and "connection" should be understood in a broad sense, for example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be a direct connection, or it can be indirectly connected through an intermediate medium, or it can be the internal communication of two components. For those skilled in the art, the specific meanings of the above terms in the present invention can be understood according to the specific circumstances.

[0026] The term "comprise" or any other similar term is intended to cover a non-exclusive inclusion, such that a process, article, or apparatus / device that includes a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such process, article, or apparatus / device.

[0027] So far, the technical solution of the present invention has been described in conjunction with the preferred embodiments shown in the accompanying drawings. However, it is easy for those skilled in the art to understand that the protection scope of the present invention is obviously not limited to these specific embodiments. Without departing from the principle of the present invention, those skilled in the art can make equivalent changes or substitutions to the relevant technical features, and the technical solutions after these changes or substitutions will fall within the protection scope of the present invention.

Claims

1. A high-titanium slag water quenching granulation mechanism, comprising a box body (6), a cover body (1) and a mounting plate, characterized in that: The box body (6) is a rectangular box without a cover, one end of the upper side of the box body (6) is fixedly connected to the cover body (1), and the other end of the upper side of the box body (6) is fixedly connected to the mounting plate, a water quenching granulation structure is installed in the box body (6), and a discharge structure is installed on the mounting plate; The water quenching granulation structure comprises an inclined plate (9) and a conveyor belt assembly (2); The two sides of the inclined plate (9) are fixedly connected to one end of the box body (6); the inclined plate (9) is located below the cover body (1); one end of the box body (6) is fixedly connected to a feed pipe and a water inlet pipe respectively; the feed pipe is higher than the inclined plate (9); the water inlet pipe is lower than the inclined plate (9); the inclined plate (9) is provided with a group of evenly arranged through holes; the lower end of the conveyor belt assembly (2) is arranged in the box body (6); the conveyor belt assembly (2) is tiltedly arranged in the box body (6); the tilting direction of the conveyor belt assembly (2) is opposite to that of the inclined plate (9); the other end of the box body (6) is fixedly connected to the water outlet pipe.

2. A high titanium slag water quenching granulation mechanism according to claim 1, characterized in that: The discharging structure comprises a material receiving shell (7), a motor (5), a pulley (3), a spiral blade shaft (10) and a discharging pipe (8); The four corners of the upper side of the mounting plate are respectively fixedly connected to corresponding legs, the upper ends of a group of the legs are fixedly connected to the material receiving shell (7), the lower end of the material receiving shell (7) is fixedly connected to one end of the discharge pipe (8), one end of the upper side of the mounting plate is fixedly connected to the motor (5), the output end of the motor (5) is fixedly connected to one of the pulleys (3), the other side of one of the pulleys (3) is fixedly connected to a shaft, the other end of the shaft is connected to a bearing and passes through one end of the discharge pipe (8), the other end of the shaft is fixedly connected to the spiral blade shaft (10), and the outer side of the spiral blade shaft (10) fits the inner wall of the discharge pipe (8).

3. A high titanium slag water quenching granulation mechanism according to claim 2, characterized in that: The conveyor belt assembly (2) is composed of a pair of connecting plates, a conveyor belt, a set of supporting plates (11), another pulley (3) and a belt (4); The lower parts of a pair of connecting plates are fixedly connected to the inner wall of the box body (6), the upper and lower ends of a pair of connecting plates are respectively connected to corresponding rotating shafts by bearings, one rotating shaft passes through the connecting plate and is fixedly connected to another pulley (3), the pair of pulleys (3) are connected by the belt (4), the pair of rotating shafts are connected by the conveyor belt, and the outer side of the conveyor belt is fixedly connected to a group of evenly arranged supporting plates (11), and each of the supporting plates (11) is provided with a group of evenly arranged drainage holes (12).

4. A high titanium slag water quenching granulation mechanism according to claim 3, characterized in that: The lower end of the inclined plate (9) is fixedly connected to one side of a pair of connecting plates, and the spacing between the inclined plate (9) and the conveyor belt matches the width of each of the supporting plates (11).

5. A high titanium slag water quenching granulation mechanism according to claim 4, characterized in that: The upper portion of the conveyor belt assembly (2) is fixedly connected to one side of the discharge pipe (8), and the top end of the conveyor belt assembly (2) is located above the opening of the discharge pipe (8).

6. The high titanium slag water quenching granulation mechanism according to claim 2, characterized in that: The discharge pipe (8) exceeds one side of the box body (6).