Slicing equipment for refractory material processing

By designing a refractory material cutting device, a belt conveyor, adjustment components, and fixing components are used to fix and cut refractory materials, solving the problem that existing equipment cannot be adjusted and fixed, and achieving a safe and efficient cutting effect.

CN223545302UActive Publication Date: 2025-11-14ZHENGZHOU ZHONGBANG REFRACTORY MATERIALS CO LTD
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Patent Information

Application Number
CN202423162647.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-20
Publication Date
2025-11-14
Estimated Expiration
2034-12-20

AI Technical Summary

Technical Problem

Existing cutting equipment cannot be adjusted and fixed according to the size of refractory materials, posing safety hazards and resulting in low work efficiency.

Method used

A refractory material processing cutting device was designed, which includes a mounting platform, an adjustment component, a fixing component, and a cutting component. The material is transported by a belt conveyor, and the adjustment and fixing components are used to fix the refractory materials of different sizes. The cutting component is used to cut the refractory materials.

Benefits of technology

It enables safe and efficient cutting of refractory materials of different sizes, avoids safety hazards, and improves work efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses dicing equipment for refractory material processing, which relates to the technical field of refractory material processing and comprises a mounting table and an adjusting component. A strip-shaped opening is formed in the middle of the upper side of the mounting table, two corresponding mounting grooves are formed in the upper side of the mounting table, belt conveyors are mounted in the mounting grooves, the strip-shaped opening is located between the two belt conveyors, and two corresponding supports are fixed to the rear end of the upper side of the mounting table. A cutting assembly is mounted in the middle of the mounting table; the adjusting assembly comprises a fixing frame, a first motor, a fixing block, a two-way screw rod, a limiting rod and a moving block, the fixing frame is fixed to the front sides of the two supports, the first motor is installed on the right side of the fixing frame, the fixing block is fixed to the middle of the interior of the fixing frame, and two corresponding openings are formed in the right side of the fixing block; and refractory materials of different sizes can be cut, and meanwhile potential safety hazards during cutting can be avoided.
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Description

Technical Field

[0001] This utility model relates to the field of refractory material processing technology, specifically to a cutting device for refractory material processing. Background Technology

[0002] Refractory materials are materials that are heat-resistant, pressure-resistant, or chemically resistant, maintaining their strength and shape even at high temperatures. They are inorganic non-metallic materials with a porous and heterogeneous structure. They are typically composed of oxides of the following materials: silicon, aluminum, magnesium, calcium, and zirconium. Refractory materials are used in various sectors of the national economy, including steel, non-ferrous metals, glass, cement, ceramics, petrochemicals, machinery, boilers, light industry, power, and military industries. They are essential basic materials for ensuring the production, operation, and technological development of these industries, playing an irreplaceable and vital role in the development of high-temperature industrial production.

[0003] Existing cutting equipment cannot be adjusted and fixed according to the size of refractory materials when it is installed and used. When cutting refractory materials, most of the time it is done by manually pressing and pushing the material to the bottom of the cutting wheel, which poses safety hazards and has low work efficiency, and has a certain adverse effect on the use of the equipment. Therefore, we propose a cutting equipment for refractory material processing. Utility Model Content

[0004] The technical problem to be solved by this utility model is to overcome the existing defects and provide a cutting device for refractory material processing, which can cut refractory materials of different sizes, while avoiding safety hazards during cutting, and can effectively solve the problems in the background art.

[0005] To achieve the above objectives, this utility model provides the following technical solution: a cutting device for refractory material processing, including a mounting platform and an adjustment assembly;

[0006] Mounting platform: A strip-shaped opening is provided in the middle of the upper side of the mounting platform. Two corresponding mounting slots are provided on the upper side of the mounting platform. A belt conveyor is installed inside the mounting slot. The strip-shaped opening is located between the two belt conveyors. Two corresponding brackets are fixed at the rear end of the upper side of the mounting platform. A cutting component is installed in the middle of the mounting platform.

[0007] Adjustment assembly: includes a fixed frame, a first motor, a fixed block, a bidirectional screw, a limit rod, and a movable block. The fixed frame is fixed to the front of the two supports. The first motor is mounted on the right side of the fixed frame. The fixed block is fixed in the middle of the interior of the fixed frame. Two corresponding openings are formed on the right side of the fixed block. The bidirectional screw is rotatably connected to the rear opening. The output shaft of the first motor is fixed to the right end of the bidirectional screw. The bidirectional screw is welded from two threaded rods with opposite threads. A limit rod is fixed inside the front opening. Two corresponding movable blocks are arranged inside the fixed frame. The block has a threaded hole on its rear side, with two threads of opposite orientation. The two ends of the bidirectional screw are threaded into the two threaded holes respectively. The movable block has a limit hole on its front side, and the two ends of the limit rod are slidably connected into the two limit holes. An adjustment component is installed on the upper side of the fixed frame, and a fixed component is installed on the lower side of the adjustment component. The adjustment component and the fixed component are connected. The input end of the first motor is electrically connected to the output end of an external control switch group. The position of the two fixed bars is adjusted by setting the adjustment component, which facilitates the fixing of refractory materials of different sizes by the two fixed bars.

[0008] Furthermore, the fixing assembly includes a sliding rod, a sliding plate, a fixing strip, a fixing frame, a movable plate, and a guide frame. The upper side of the fixing block and the two movable blocks is provided with four corresponding sliding holes. The sliding rod is slidably connected inside the sliding holes. The upper ends of the left and right sliding rods are fixed with sliding plates, and the lower ends of the left and right sliding rods are fixed with fixing strips. The upper ends of the two middle sliding rods are fixed with movable plates, and the lower ends of the two middle sliding rods are fixed with a fixing frame. The movable plate and the two sliding plates are slidably connected inside the guide frame. The refractory material is fixed by setting the fixing assembly.

[0009] Furthermore, the adjustment assembly includes a support frame, a sliding frame, a gear ring, a connecting rod, a second motor, and a gear plate. Two corresponding support frames are fixed to the upper side of the fixed frame. Sliding frames are slidably connected to the sides of the support frames. Both sliding frames are fixed to the upper side of the guide frame. A connecting hole is opened in the middle of the sliding frame. A connecting rod is rotatably connected inside the two connecting holes. Two corresponding gear rings are fixed to the left and right ends of the circumference of the connecting rod. A gear plate is fixed to the rear side inside the support frame. The gear rings mesh with the gear plate. A second motor is installed on the right side of the right sliding frame. The output shaft of the second motor is fixed to the right end of the connecting rod. The input end of the second motor is electrically connected to the output end of an external control switch group. The height of the fixed assembly can be adjusted by setting the adjustment assembly.

[0010] Furthermore, the cutting assembly includes a mounting slot, an electric telescopic rod, a support frame, a cutting wheel, and a third motor. The mounting platform has a mounting slot on its front side, inside which two corresponding electric telescopic rods are installed. A support frame is fixed to the telescopic arms of the two electric telescopic rods. The cutting wheel is rotatably connected inside the support frame. A third motor is mounted on the left side of the support frame, and its output shaft is fixed to the left end of the cutting wheel. The upper end of the cutting wheel is located inside a strip-shaped opening in the middle of the upper side of the mounting platform. The cutting wheel is situated between two fixed frames. The input end of the third motor is electrically connected to the output end of an external control switch group. The cutting assembly is used to cut refractory materials.

[0011] Furthermore, anti-slip strips are fixed to the lower sides of both the fixing strip and the fixing frame. The lower side of the anti-slip strip has evenly distributed anti-slip grooves. The anti-slip strips improve the firmness of the fixing strip and the fixing frame.

[0012] Compared with the prior art, the beneficial effects of this utility model are as follows: This refractory material processing cutting device has the following advantages:

[0013] The refractory material to be cut into blocks is transported to the middle of the mounting platform by a belt conveyor. Then, the adjustment component is activated according to the size of the refractory material to adjust the position of the two fixing bars. After adjustment, the adjustment component is activated to make the guide frame move downward, driving the two fixing bars and the two fixing frames downward to fix the refractory material. After fixing, the refractory material can be cut into blocks by the cutting component, which is extremely convenient. Attached Figure Description

[0014] Figure 1 This is a schematic diagram of the front structure of this utility model;

[0015] Figure 2 This is a schematic diagram of the adjustment component structure of this utility model;

[0016] Figure 3 This is a schematic diagram of the fixing component structure of this utility model;

[0017] Figure 4 This is a schematic diagram of the cutting component structure of this utility model.

[0018] In the diagram: 1. Mounting platform, 2. Belt conveyor, 3. Support bracket, 4. Adjustment assembly, 41. Fixed frame, 42. First motor, 43. Fixed block, 44. Bidirectional screw, 45. Limiting rod, 46. Moving block, 5. Fixed assembly, 51. Slide rod, 52. Slide plate, 53. Fixed strip, 54. Fixed frame, 55. Moving plate, 56. Guide frame, 6. Adjustment assembly, 61. Support frame, 62. Slide frame, 63. Gear ring, 64. Connecting rod, 65. Second motor, 66. Tooth plate, 7. Cutting assembly, 71. Mounting groove, 72. Electric telescopic rod, 73. Support frame, 74. Cutting wheel, 75. Third motor, 8. Anti-slip strip. Detailed Implementation

[0019] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0020] Please see Figure 1-4 This embodiment provides a technical solution: a refractory material processing cutting device, including a mounting platform 1 and an adjustment component 4;

[0021] Mounting platform 1: A strip-shaped opening is provided in the middle of the upper side. Two corresponding mounting slots are provided on the upper side of mounting platform 1. Belt conveyors 2 are installed inside the mounting slots. The strip-shaped opening is located between the two belt conveyors 2. Two corresponding brackets 3 are fixed at the rear end of the upper side of mounting platform 1. A cutting assembly 7 is installed in the middle of mounting platform 1. The cutting assembly 7 includes a mounting slot 71, an electric telescopic rod 72, a support frame 73, a cutting wheel 74, and a third motor 75. A mounting slot 71 is provided on the front side of mounting platform 1. Two corresponding... Electric telescopic rods 72, with support frames 73 fixed on the telescopic arms of the two electric telescopic rods 72. Cutting wheels 74 are rotatably connected inside the support frames 73. A third motor 75 is installed on the left side of the support frames 73. The output shaft of the third motor 75 is fixed to the left end of the cutting wheel 74. The upper end of the cutting wheel 74 is located inside the strip-shaped opening in the middle of the upper side of the mounting platform 1. The cutting wheel 74 is located between two fixed frames 54. The input end of the third motor 75 is electrically connected to the output end of an external control switch group. The refractory material is cut by setting the cutting assembly 7.

[0022] Adjustment component 4 includes a fixed frame 41, a first motor 42, a fixed block 43, a bidirectional screw 44, a limit rod 45, and a moving block 46. The fixed frame 41 is fixed to the front of the two brackets 3. The first motor 42 is installed on the right side of the fixed frame 41. The fixed block 43 is fixed to the middle of the interior of the fixed frame 41. Two corresponding openings are opened on the right side of the fixed block 43. The bidirectional screw 44 is rotatably connected to the rear opening. The output shaft of the first motor 42 is fixed to the right end of the bidirectional screw 44. The bidirectional screw 44 is welded from two threaded rods with opposite threads. The limit rod 45 is fixed inside the front opening. Two corresponding moving blocks 46 are arranged inside the fixed frame 41. The rear side of the moving block 46... The first motor 42 has two threaded holes with opposite threads. The two ends of the bidirectional screw 44 are threaded into the two threaded holes respectively. The front side of the moving block 46 has limit holes, and the two ends of the limit rod 45 are slidably connected into the two limit holes. The upper side of the fixed frame 41 is equipped with an adjustment component 6, and the lower side of the adjustment component 6 is equipped with a fixed component 5. The adjustment component 6 and the fixed component 5 are connected. The input end of the first motor 42 is electrically connected to the output end of an external control switch group. The fixed component 5 includes a slide rod 51, a slide plate 52, a fixing bar 53, a fixing frame 54, a moving plate 55, and a guide frame 56. The upper side of the fixed block 43 and the two moving blocks 46 has four corresponding sliding holes, and the sliding holes are slidably connected to the sliding components. The upper ends of the two left and right sliding rods 51 are fixed with sliding plates 52, and the lower ends of the two left and right sliding rods 51 are fixed with fixing strips 53. The upper ends of the two middle sliding rods 51 are fixed with moving plates 55, and the lower ends of the two middle sliding rods 51 are fixed with fixing frames 54. The moving plates 55 and the two sliding plates 52 are slidably connected inside the guide frame 56. The adjustment assembly 6 includes a support frame 61, a sliding frame 62, a gear ring 63, a connecting rod 64, a second motor 65, and a gear plate 66. Two corresponding support frames 61 are fixed on the upper side of the fixing frame 41. Sliding frames 62 are slidably connected to the side of the support frame 61. Both sliding frames 62 are fixed on the upper side of the guide frame 56. A connecting hole is opened in the middle of the sliding frame 62. A connecting rod 64 is rotatably connected inside the connecting hole. Two corresponding gear rings 63 are fixed at the left and right ends of the circumference of the connecting rod 64. A toothed plate 66 is fixed inside the rear side of the support frame 61. The gear rings 63 mesh with the toothed plate 66. A second motor 65 is installed on the right side of the sliding frame 62 on the right side. The output shaft of the second motor 65 is fixed at the right end of the connecting rod 64. The input end of the second motor 65 is electrically connected to the output end of the external control switch group. The height of the fixing component 5 is adjusted by setting the adjustment component 6. The refractory material is fixed by setting the fixing component 5. The position of the two fixing bars 53 is adjusted by setting the adjustment component 4, so that the two fixing bars 53 can fix refractory materials of different sizes.

[0023] Among them, anti-slip strips 8 are fixed on the lower side of both the fixing strip 53 and the fixing frame 54. The lower side of the anti-slip strip 8 is provided with evenly distributed anti-slip grooves. The anti-slip strips 8 are used to improve the firmness of the fixing strip 53 and the fixing frame 54.

[0024] The working principle of the refractory material cutting device provided by this utility model is as follows: First, the refractory material to be cut is placed on the belt conveyor 2 on one side. After placement, the belt conveyor 2 is started to move the refractory material, which will transport the refractory material to be cut to the middle of the mounting platform 1. Then, according to the size of the refractory material, the first motor 42 is started to make the bidirectional screw 44 rotate. The rotation of the bidirectional screw 44 drives the two moving blocks 46 to move. The movement of the two moving blocks 46 can adjust the position of the two fixed bars 53. After adjustment, the second motor 65 is started to move the two fixed bars 53. The gear ring 63 rotates, and during the rotation of the two gear rings 63, the two sliding frames 62 move downward under the action of the two toothed plates 66. The downward movement of the two sliding frames 62 causes the guide frame 56 to move downward, which in turn causes the two fixing bars 53 and the two fixing frames 54 to fix the refractory material downward. After fixing, the third motor 75 is started to make the cutting wheel 74 rotate. During the rotation of the cutting wheel 74, the two electric telescopic rods 72 are controlled to retract, so that the rotating cutting wheel 74 moves backward, which can cut the refractory material into blocks. This is extremely convenient. After cutting, the two belt conveyors 2 are started to unload the cut refractory material.

[0025] It is worth noting that the external control switch group disclosed in the above embodiments is equipped with buttons that correspond one-to-one with the belt conveyor 2, the first motor 42, the second motor 65, the third motor 75 and the electric telescopic rod 72. The belt conveyor 2 can be freely configured according to the actual situation. The first motor 42, the second motor 65 and the third motor 75 can be 1LE0003 three-phase asynchronous motors, and the electric telescopic rod 72 can be a TGC-A high-thrust electric telescopic rod.

[0026] The above description is merely an embodiment of this utility model and does not limit the patent scope of this utility model. Any equivalent structural or procedural transformations made based on the content of this utility model specification and drawings, or direct or indirect applications in other related technical fields, are similarly included within the patent protection scope of this utility model.

Claims

1. A cutting device for refractory material processing, characterized in that: Includes a mounting platform (1) and an adjustment assembly (4); Mounting platform (1): A strip-shaped opening is provided in the middle of the upper side. Two corresponding mounting slots are provided on the upper side of the mounting platform (1). A belt conveyor (2) is installed inside the mounting slot. The strip-shaped opening is located between the two belt conveyors (2). Two corresponding brackets (3) are fixed at the rear end of the upper side of the mounting platform (1). A cutting assembly (7) is installed in the middle of the mounting platform (1). Adjustment component (4): includes a fixed frame (41), a first motor (42), a fixed block (43), a bidirectional screw (44), a limiting rod (45), and a moving block (46). The fixed frame (41) is fixed to the front side of the two brackets (3). The first motor (42) is installed on the right side of the fixed frame (41). The fixed block (43) is fixed in the middle of the interior of the fixed frame (41). The right side of the fixed block (43) has two corresponding openings. The bidirectional screw (44) is rotatably connected inside the rear opening. The output shaft of the first motor (42) is fixed to the right end of the bidirectional screw (44). The bidirectional screw (44) is welded from two threaded rods with opposite threads. The interior of the front opening... A fixed limit rod (45) is fixed. Two corresponding moving blocks (46) are provided inside the fixed frame (41). The rear side of the moving block (46) is provided with a threaded hole. The two threaded holes have opposite threads. The two ends of the bidirectional screw (44) are respectively threaded into the two threaded holes. The front side of the moving block (46) is provided with a limit hole. The two ends of the limit rod (45) are slidably connected into the two limit holes. An adjustment component (6) is installed on the upper side of the fixed frame (41). A fixed component (5) is installed on the lower side of the adjustment component (6). The adjustment component (6) and the fixed component (5) are connected. The input end of the first motor (42) is electrically connected to the output end of an external control switch group.

2. The refractory material cutting device according to claim 1, characterized in that: The fixing component (5) includes a slide rod (51), a slide plate (52), a fixing strip (53), a fixing frame (54), a moving plate (55), and a guide frame (56). The upper side of the fixing block (43) and the two moving blocks (46) is provided with four corresponding sliding holes. The slide rod (51) is slidably connected inside the sliding holes. The upper ends of the left and right slide rods (51) are fixed with slide plates (52), and the lower ends of the left and right slide rods (51) are fixed with fixing strips (53). The upper ends of the two middle slide rods (51) are fixed with moving plates (55), and the lower ends of the two middle slide rods (51) are fixed with a fixing frame (54). The moving plate (55) and the two slide plates (52) are slidably connected inside the guide frame (56).

3. The refractory material cutting device according to claim 2, characterized in that: The adjusting assembly (6) includes a support frame (61), a sliding frame (62), a gear ring (63), a connecting rod (64), a second motor (65), and a gear plate (66). Two corresponding support frames (61) are fixed to the upper side of the fixed frame (41). Sliding frames (62) are slidably connected to the sides of the support frames (61). Both sliding frames (62) are fixed to the upper side of the guide frame (56). A connecting hole is provided in the middle of each sliding frame (62), and the two connecting holes are rotatably connected to... A connecting rod (64) has two corresponding gear rings (63) fixed at its left and right ends on its circumference. A toothed plate (66) is fixed inside the rear side of the support frame (61). The gear rings (63) mesh with the toothed plate (66). A second motor (65) is installed on the right side of the sliding frame (62) on the right side. The output shaft of the second motor (65) is fixed at the right end of the connecting rod (64). The input end of the second motor (65) is electrically connected to the output end of an external control switch group.

4. The refractory material cutting device according to claim 2, characterized in that: The cutting assembly (7) includes a mounting slot (71), an electric telescopic rod (72), a support frame (73), a cutting wheel (74), and a third motor (75). The mounting platform (1) has a mounting slot (71) on its front side. Two corresponding electric telescopic rods (72) are installed inside the mounting slot (71). The support frame (73) is fixed on the telescopic arms of the two electric telescopic rods (72). The cutting wheel (74) is rotatably connected inside the support frame (73). The third motor (75) is installed on the left side of the support frame (73). The output shaft of the third motor (75) is fixed to the left end of the cutting wheel (74). The upper end of the cutting wheel (74) is located inside the strip-shaped opening in the middle of the upper side of the mounting platform (1). The cutting wheel (74) is located between two fixed frames (54). The input end of the third motor (75) is electrically connected to the output end of an external control switch group.

5. The refractory material cutting device according to claim 2, characterized in that: The lower sides of the fixing strip (53) and the fixing frame (54) are both fixed with anti-slip strips (8), and the lower sides of the anti-slip strips (8) are provided with uniformly distributed anti-slip grooves.