Alloy particle conveyor

By setting up a trapezoidal module adjustment device on the alloy particle conveyor, the problem of conveyor belt running, blocking and stopping is solved, the stable operation and efficient conveying of the equipment are achieved, cost is reduced, and the scope of application is wide.

CN223117280UActive Publication Date: 2025-07-18PANGANG GRP XICHANG VANADIUM PROD TECH CO LTD
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Patent Information

Application Number
CN202422264892.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-14
Publication Date
2025-07-18
Estimated Expiration
2034-09-14

AI Technical Summary

Technical Problem

In the finished product process of ferrovanadium, the conveyor belt of the alloy particle conveyor has a large sliding range of particulate material and elastically extending the lower conveyor belt under the conditions of 65M of the center distance between the transmission wheel and the driven wheel and 12M of the height difference between the transmission wheel and the driven wheel, which causes the conveyor belt to deflect, and problems such as running and locking and material scattering.

Method used

There are no less than two trapezoidal module adjustment devices on the alloy particle conveyor. By combining the adjustment roller and the mounting plate, the deviation of the conveying tape is corrected, the conveying efficiency is improved, and the accident of running off-blocking is eliminated.

Benefits of technology

Effectively correct the skew of the conveyor belt, avoid running and blocking, ensure stable operation of the equipment, improve the operating efficiency of the ferrous ferrous alloy particle conveyor in ferrous vanadium, reduce costs, have wide applicability and good social and economic benefits.

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Abstract

The utility model is suitable for the technical field of metallurgical equipment, and provides an alloy particle conveyor. Comprising a rack, and a transmission wheel and a driven wheel are arranged at the two ends of the rack respectively; the conveying rubber belt is arranged on the driving wheel and the driven wheel in a sleeving manner; and the trapezoidal module adjusting devices are arranged on the rack and are used for correcting the deviation of the conveying rubber belt. According to the utility model, no less than two trapezoidal module adjusting devices are arranged to rectify the deviation of the conveying rubber belt, so that the working efficiency of the medium ferrovanadium finished product alloy particle conveyor is improved, and the accidents of deviation, clamping and stopping of the conveying belt of the conveyor are eliminated; the defects that materials are scattered and a conveying belt is scratched during operation of the conveyor are overcome, equipment performance is optimized, and stable and reliable operation of a finished product crushing line is guaranteed. The device is wide in application range and low in cost, and has good social benefits and economic benefits.
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Description

Technical Field

[0001] The utility model relates to the technical field of metallurgical equipment, in particular to an alloy particle conveyor. Background Art

[0002] During the in-line ferrovanadium finished product process, the center distance between the driving wheel and the driven wheel of the alloy particle conveyor is 65M, and the height difference between the driving wheel and the driven wheel is 12M. During production, the relative sliding range of the granular material on the conveyor belt surface is large, and the dynamic swing range of the conveyor belt is large. The elastic extension of the lower conveyor belt is long, and it is deflected by ±80mm from the central axis of the deflector unit; at the position 2m in front of the driven wheel, the center line of the chute feeding, the obvious trend of the alloy granular material falling and impacting the conveyor belt causes the conveyor belt to deviate and stop at the driven wheel. To solve this technical problem, an alloy particle conveyor is now proposed. Content of the Utility Model

[0003] The purpose of the utility model is to provide an alloy particle conveyor to solve the problems raised in the above background art.

[0004] To achieve the above purpose, the utility model provides the following technical solutions:

[0005] An alloy particle conveyor, comprising: a frame, with a driving wheel and a driven wheel respectively arranged at both ends of the frame;

[0006] A conveyor belt, sleeved on the driving wheel and the driven wheel;

[0007] And at least two trapezoidal module adjustment devices arranged on the frame, the trapezoidal module adjustment devices being used for correcting the deviation of the conveyor belt.

[0008] This solution corrects the deviation of the conveyor belt by arranging at least two trapezoidal module adjustment devices, improves the operation efficiency of the ferrovanadium finished product alloy particle conveyor, eliminates the accident of the conveyor belt deviating and stopping; avoids defects such as material scattering and conveyor belt scratching during the operation of the conveyor, optimizes the equipment performance, and ensures the stable and reliable operation of the finished product crushing line. The utility model has a wide application range and low cost, and has good social and economic benefits.

[0009] As a further solution of the utility model: the trapezoidal module adjustment device includes an adjustment roller and two mounting plates, the two mounting plates are respectively mounted on both sides of the frame, and a number of mounting positions are arranged on both mounting plates; the heights of the number of mounting positions are different; the first end of the adjustment roller is mounted in one of the mounting positions on one side mounting plate, and the second end of the adjustment roller is mounted in one of the mounting positions on the other side mounting plate.

[0010] As a further solution of the utility model: a number of mounting positions on the two mounting plates are all arranged in a rectangular tooth nested trapezoidal step structure.

[0011] As a further solution of the present utility model: The upper part of the adjusting roller abuts against the bottom of the upper layer of the conveyor belt.

[0012] As a further solution of the present utility model: There are two trapezoidal module adjusting devices, and the two trapezoidal module adjusting devices are arranged at both ends of the conveyor belt.

[0013] As a further solution of the present utility model: The mounting plate can be mounted on the frame through mounting bolts.

[0014] As a further solution of the present utility model: The mounting plate is provided with positions a, b, c, and d, and the heights of the positions a, b, c, and d are set to gradually increase or gradually decrease.

[0015] As a further solution of the present utility model: The mounting plate is provided with positions a, b, c, and d, and the heights of the positions a, b, c, and d are set to gradually increase or gradually decrease.

[0016] As a further solution of the present utility model: It further includes a driving component, and the driving component is in transmission connection with the transmission wheel.

[0017] As a further solution of the present utility model: The driving component includes a power motor, and the power motor is in transmission connection with the transmission wheel through gears, chains or belts.

[0018] As a further solution of the present utility model: The frame is bent, and an upper pressure roller and a lower supporting wheel are installed at the bent position of the frame. The upper pressure roller abuts against the upper part of the conveyor belt, and the lower supporting wheel is located below the conveyor belt and abuts against the directly below of the conveyor belt; the lower supporting wheel is directly below the upper pressure roller.

[0019] Compared with the prior art, the beneficial effects of the present utility model are: By setting no less than two trapezoidal module adjusting devices to correct the deviation of the conveyor belt, the operation efficiency of the medium ferrovanadium finished alloy particle conveyor is improved, and the accident of the conveyor belt running deviation and jamming is eliminated; It avoids defects such as material scattering and conveyor belt scratching during the operation of the conveyor, optimizes the equipment performance, and ensures the stable and reliable operation of the finished product crushing line. The utility model has a wide application range and low cost, and has good social and economic benefits. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] Figure 1 It is a schematic structural diagram of an alloy particle conveyor according to an embodiment of the present utility model.

[0021] Figure 2 It is a front view installation diagram of a trapezoidal module adjusting device in an alloy particle conveyor according to an embodiment of the present utility model.

[0022] Figure 3 This is the top - view installation drawing of the trapezoidal module adjustment device in an alloy particle conveyor according to an embodiment of the present utility model.

[0023] In the figure: 1 - driving wheel, 2 - front supporting wheel, 3 - mounting plate, 4 - trapezoidal module adjustment device, 5 - upper pressure roller, 6 - lower supporting wheel, 7 - flat supporting wheel, 8 - driven wheel, 9 - frame, 10 - connecting bolt, 11 - position a, 12 - position b, 13 - position c, 14 - position d, 15 - adjusting roller, 16 - conveyor belt. Specific embodiments

[0024] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without making creative efforts belong to the protection scope of the present utility model.

[0025] Embodiment 1

[0026] Please refer to Figures 1 to 3 , a structural diagram of an alloy particle conveyor provided in Embodiment 1 of the present utility model. The alloy particle conveyor includes: a frame 9 and a conveyor belt 16. Driving wheels 1 and driven wheels 8 are respectively arranged at both ends of the frame 9, and the conveyor belt 16 is sleeved on the driving wheel 1 and the driven wheel 8.

[0027] No less than two trapezoidal module adjustment devices 4 are further arranged on the frame 9, and the trapezoidal module adjustment device 4 is used for correcting the deviation of the conveyor belt 16.

[0028] By setting no less than two trapezoidal module adjustment devices 4 to correct the deviation of the conveyor belt 16, the present utility model improves the operation efficiency of the medium - vanadium - iron finished alloy particle conveyor, eliminates the accident of the conveyor belt running off - track and jamming; avoids defects such as material scattering during the operation of the conveyor and scratching the conveyor belt, optimizes the equipment performance, and ensures the stable and reliable operation of the finished product crushing line. This utility model has a wide application range and low cost, and has good social and economic benefits.

[0029] Such as Figure 1 and 3As shown, in some embodiments, the trapezoidal module adjusting device 4 includes an adjusting roller 15 and two mounting plates 3. The two mounting plates 3 are respectively mounted on both sides of the frame 9. A plurality of mounting positions are provided on both mounting plates 3, and the heights of the plurality of mounting positions are set differently. The first end of the adjusting roller 15 is mounted in one of the mounting positions on one side mounting plate 3, and the second end of the adjusting roller 15 is mounted in one of the mounting positions on the other side mounting plate 3. By adjusting the two ends of the adjusting roller 15 in different mounting positions, the mounting position of the adjusting roller 15 is adjusted, and the mounting angle of the adjusting roller 15 is realized, so as to be able to correct the deviation of the conveyor belt 16.

[0030] In some embodiments, the trapezoidal module adjusting device 4 can be installed at a position of ±60 mm from the center line of the skew unit on the lower layer of the frame 9.

[0031] In some embodiments, a plurality of mounting positions on the two mounting plates 3 can be set into a rectangular tooth nested trapezoidal step structure.

[0032] In some embodiments, the adjustment range of the adjusting roller 15 can be ±15° horizontally and ±20 mm in elevation, improving the operation efficiency of the medium ferrovanadium finished alloy particle conveyor, eliminating the accidents of the conveyor belt running deviation and jamming and stopping; avoiding the defects such as material scattering and conveyor belt scratching during the operation of the conveyor, optimizing the equipment performance, and ensuring the stable and reliable operation of the finished product crushing line.

[0033] In some embodiments of the present invention, the upper part of the adjusting roller 15 abuts against the bottom of the upper layer of the conveyor belt 16, so as to correct the deviation of the conveyor belt 16.

[0034] In some embodiments of the present invention, there can be two trapezoidal module adjusting devices 4, and the two trapezoidal module adjusting devices 4 are arranged at both ends of the conveyor belt 16.

[0035] In some embodiments of the present invention, the mounting plate 3 can be mounted on the frame 9 through mounting bolts 10.

[0036] In some embodiments of the present invention, the mounting plate 3 is provided with a position 11, a position 12, a position 13 and a position 14, and the heights of the position 11, the position 12, the position 13 and the position 14 are set to increase or decrease gradually.

[0037] In some embodiments of the present invention, in order to drive the conveyor belt 16 to move, the present invention further includes a driving component, and the driving component is in transmission connection with the driving wheel 1, providing power for the rotation of the driving wheel 1, so that the driving wheel 1 can drive the conveyor belt 16 to move.

[0038] In some embodiments of the present utility model, the driving component may include a power motor, and the power motor and the transmission wheel 1 may be connected by a gear, a chain or a belt.

[0039] In some embodiments of the present utility model, the frame 9 is bent, and an upper pressing roller 5 and a lower supporting wheel 6 are installed at the bent position of the frame 9. The upper pressing roller 5 abuts against the upper part of the conveyor belt 16, and the lower supporting wheel 6 is located below the conveyor belt 16 and abuts against the lower part of the conveyor belt 16; the lower supporting wheel 6 is directly below the upper pressing roller 5. By providing the upper pressing roller 5 and the lower supporting wheel 6, it is convenient to guide the conveyor belt 16.

[0040] In the description of the present utility model, it should be understood that the terms "center", "longitudinal", "transverse", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "axial", "radial", "circumferential", etc. indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings. It is only for the convenience of describing the present utility model and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and thus should not be construed as a limitation to the present utility model.

[0041] In addition, the terms "first" and "second" are only used for descriptive purposes and cannot be construed as indicating or implying relative importance or implicitly specifying the quantity of the indicated technical features. Thus, the features defined with "first" and "second" may explicitly or implicitly include at least one of such features. In the description of the present utility model, "a plurality of" means at least two, such as two, three, etc., unless otherwise specifically and clearly defined.

[0042] In the present utility model, unless otherwise clearly specified and defined, the terms "installed", "connected", "connected to", "fixed", etc. shall be understood in a broad sense. For example, it may be a fixed connection, a detachable connection, or integrated; it may be a mechanical connection, an electrical connection or communication with each other; it may be directly connected, or indirectly connected through an intermediate medium, and it may be the internal communication of two elements or the interaction relationship between two elements, unless otherwise clearly defined. For those of ordinary skill in the art, the specific meanings of the above terms in the present utility model can be understood according to specific circumstances.

[0043] In the present utility model, unless otherwise clearly stipulated and defined, the first feature being "on" or "under" the second feature may mean that the first and second features are in direct contact, or the first and second features are indirectly in contact through an intermediate medium. Moreover, the first feature being "above", "over" and "on top of" the second feature may mean that the first feature is directly above or obliquely above the second feature, or merely indicates that the horizontal height of the first feature is higher than that of the second feature. The first feature being "under", "below" and "beneath" the second feature may mean that the first feature is directly below or obliquely below the second feature, or merely indicates that the horizontal height of the first feature is less than that of the second feature.

[0044] In the description of this specification, the description with reference to terms such as "an embodiment", "some embodiments", "examples", "specific examples", or "some examples", etc. means that the specific features, structures, materials or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the present utility model. In this specification, the schematic expressions of the above terms do not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described may be combined in a suitable manner in any one or more embodiments or examples. In addition, without contradiction, those skilled in the art can combine and combine the different embodiments or examples described in this specification and the features of different embodiments or examples.

[0045] Although the embodiments of the present utility model have been shown and described above, it can be understood that the above embodiments are exemplary and should not be construed as limiting the present utility model. Those of ordinary skill in the art can make changes, modifications, substitutions and variations to the above embodiments within the scope of the present utility model.

Claims

1. An alloy particle conveyor, characterized in that, Including: A frame (9) with a driving wheel (1) and a driven wheel (8) respectively arranged at both ends of the frame (9); A conveyor belt (16) sleeved on the driving wheel (1) and the driven wheel (8); And not less than two trapezoidal module adjusting devices (4) arranged on the frame (9), and the trapezoidal module adjusting devices (4) are used for correcting the deviation of the conveyor belt (16).

2. The alloy particle conveyor according to claim 1, wherein The trapezoidal module adjusting device (4) includes an adjusting roller (15) and two mounting plates (3). The two mounting plates (3) are respectively mounted on both sides of the frame (9). A number of mounting positions are arranged on both mounting plates (3), and the heights of the number of mounting positions are arranged differently; the first end of the adjusting roller (15) is mounted in one of the mounting positions on one side mounting plate (3), and the second end of the adjusting roller (15) is mounted in one of the mounting positions on the other side mounting plate (3).

3. The alloy particle conveyor according to claim 2, characterized in that, A number of mounting positions on the two mounting plates (3) are all arranged in a rectangular tooth nested trapezoidal step structure.

4. The alloy particle conveyor according to claim 2, wherein The upper part of the adjusting roller (15) abuts against the bottom of the upper layer of the conveyor belt (16).

5. The alloy particle conveyor according to claim 2, wherein, There are two trapezoidal module adjusting devices (4), and the two trapezoidal module adjusting devices (4) are arranged at both ends of the conveyor belt (16).

6. The alloy particle conveyor according to claim 2, characterized in that, The mounting plate (3) is mounted on the frame (9) through mounting bolts (10).

7. The alloy particle conveyor according to claim 2, characterized in that, The mounting plate (3) is provided with a position (11), b position (12), c position (13) and d position (14), and the heights of the a position (11), b position (12), c position (13) and d position (14) are arranged to gradually increase or gradually decrease.

8. A kind of alloy particle conveyor according to claim 1, characterized in that, It further includes a driving component, and the driving component is in transmission connection with the driving wheel (1).

9. The alloy particle conveyor according to claim 8, characterized in that, The driving component includes a power motor, and the power motor is in transmission connection with the driving wheel (1) through gears, chains or belts.

10. A kind of alloy particle conveyor according to any one of claims 1-9, characterized in that, The frame (9) is bent, and an upper pressing roller (5) and a lower supporting roller (6) are mounted at the bent position of the frame (9). The upper pressing roller (5) abuts against the upper part of the conveyor belt (16), and the lower supporting roller (6) is below the conveyor belt (16) and abuts against directly below the conveyor belt (16); the lower supporting roller (6) is directly below the upper pressing roller (5).