Fixed-length cutting device for iron-chromium-aluminum processing

By designing a fixed-length cutting device with a conveyor belt and pulley system, the problems of adjusting the cutting length and ensuring feeding safety of iron-chromium-aluminum materials were solved, achieving automated cutting and improving processing accuracy and safety.

CN223718396UActive Publication Date: 2025-12-26ANTAI-HEYUAN NUCLEAR ENERGY TECH & MATERIALS CO LTD
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Patent Information

Application Number
CN202520066782.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-13
Publication Date
2025-12-26
Estimated Expiration
2035-01-13

AI Technical Summary

Technical Problem

In existing technologies, the length of iron-chromium-aluminum materials cannot be automatically adjusted during cutting, and feeding requires manual operation, posing safety hazards.

Method used

A fixed-length cutting device was designed, comprising a conveyor belt, a base, a motor, a cutting blade, and a pulley system. The cutting length is adjusted by a slider and a start switch to achieve automatic feeding and fixing. The material is transported by the conveyor belt and cut by the cutting blade.

Benefits of technology

It enables automated fixed-length cutting of iron-chromium-aluminum materials, improving processing accuracy and safety while reducing the dangers of manual operation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of metal processing, in particular to a fixed-length cutting device for iron-chromium-aluminum processing, and solves the problems that in the prior art, the length of an iron-chromium-aluminum material cannot be adjusted in the cutting process of the iron-chromium-aluminum processing material, and manual feeding of cutting personnel is needed for feeding. A fixed-length cutting device for iron-chromium-aluminum machining comprises a conveying belt, machine bases are fixedly connected to the two sides of the conveying belt, first motors are fixedly connected to inner cavities of the machine bases, a second telescopic rod is fixedly connected to one end of a motor shell, a motor box is fixedly connected to the bottom end of the second telescopic rod, and a second motor is arranged in an inner cavity of the motor box; the bottom of an inner cavity of the motor box is fixedly connected with a fixing groove, the fixing groove is fixedly connected with a second motor, and an output shaft of the second motor is fixedly connected with a cutting blade through a coupler. According to the utility model, the required length can be adjusted and automatic feeding can be realized when an iron-chromium-aluminum processing material is cut.
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Description

TECHNICAL FIELD

[0001] The utility model relates to metal processing technical field especially relates to a fixed length cutting device for iron chromium aluminum processing. BACKGROUND

[0002] Iron chromium aluminum is a kind of high-resistance alloy material with great value, it has excellent high-temperature performance, the highest use temperature can reach about 1400 DEG C, its resistivity is high, and the efficiency of electric energy conversion into heat energy is high, and the service life is long, is 2-4 times of nickel-chromium element. Small specific gravity saves material, and the surface load is high, and the temperature rises fast. It is also good in sulfur resistance, and has advantages in sulfur-containing environment. In addition, the price is cheap, and the cost is low because it does not contain scarce nickel. These advantages make it widely used in electric heating element, industrial equipment and other fields, become a kind of high-resistance alloy material with great value. It also has good oxidation resistance, and can still maintain stability in high-temperature environment, and its excellent high-temperature resistance makes it play a key role in many industrial fields, especially in electric heating element manufacturing. But the processing material of iron chromium aluminum often has the characteristics of different size and length requirement, which brings great challenge to cutting processing. In order to meet the higher requirements of processing precision and efficiency with the continuous development of industry, the cutting technology of iron chromium aluminum is continuously innovated.

[0003] In the prior art, when cutting iron chromium aluminum processing material, generally use grinding wheel cutting machine, through the contact of high-speed rotating grinding wheel piece and iron chromium aluminum material, the material is cut off by using the grinding action of grinding wheel piece, the motor drives the grinding wheel piece to rotate at high speed, the workpiece is placed on the cutting table, the workpiece is pushed close to the grinding wheel piece, the heat generated by the friction between the grinding wheel piece and the workpiece makes the material locally melt and be ground off, so as to realize cutting.

[0004] But the traditional grinding wheel cutting device cannot adjust the length of iron chromium aluminum material in the process of cutting iron chromium aluminum processing material, and the cutting personnel need to manually adjust the position of cutting machine, it is difficult to adapt to different needs, and the grinding wheel cutting device also needs the cutting personnel to manually feed in the process of cutting iron chromium aluminum processing material, which is dangerous. UTILITY MODEL CONTENTS

[0005] The utility model aims at providing a fixed length cutting device for iron chromium aluminum processing, solves the problem that the length of iron chromium aluminum material cannot be adjusted in the process of cutting iron chromium aluminum processing material in the prior art, and the feeding needs cutting personnel to manually feed.

[0006] In order to realize the above-mentioned purpose, the utility model adopts the following technical scheme:

[0007] The utility model provides a kind of iron-chromium-aluminum processing fixed-length cutting device, including conveyer belt, both sides of conveyer belt are fixedly connected with machine base, the inner chamber of machine base is fixedly connected with first motor, the side of machine base adjacent with conveyer belt is provided with two pedestals, the top of two pedestals is fixedly connected with second fixed column, second fixed column is fixedly connected between motor shell, one end of motor shell is fixedly connected with second telescopic link, the bottom of second telescopic link is fixedly connected with motor box, the inner chamber of motor box is provided with second motor, the bottom of motor box inner chamber is fixedly connected with fixed groove, and fixed groove is fixedly connected with second motor, the output shaft of second motor is fixedly connected with cutting blade by coupling.

[0008] Preferably, the opposite sides of the two machine bases are each provided with two fixing frames, the top of each fixing frame is movably connected with a first telescopic link, one end of each first telescopic link penetrates through the machine base and is fixedly connected with a pulley groove, a plurality of pulleys are rotatably connected in the groove of each pulley groove by a rotating shaft, and each pulley is located at the top of the conveyer belt.

[0009] Preferably, the opposite sides of each pedestal are each provided with a sliding groove, a sliding block corresponding to each sliding groove is movably connected in the groove of the sliding groove, a first fixed column is arranged in the groove of each sliding groove, and the two ends of each first fixed column are each fixedly connected with a second compression spring, one end of each second compression spring away from the first fixed column is fixedly connected with a second fixed block, and each second fixed block is in transition fit with the sliding groove.

[0010] Preferably, the inner chamber of the motor shell away from the second telescopic link is movably connected with a third telescopic link, the bottom of the third telescopic link is fixedly connected with a start switch, and one side of the start switch is fixedly connected with a sliding block.

[0011] Preferably, the outer wall of the motor box is fixedly connected with a fixed box on both sides, the inner chamber of each fixed box is fixedly connected with a first compression spring at the top, and the bottom of each first compression spring is fixedly connected with a first fixed block.

[0012] Preferably, the outer wall of one pedestal is engraved with a scale line.

[0013] The utility model has the following beneficial effects: in the scheme, the position of the start switch can be adjusted by the sliding block to adjust the cutting length of the iron-chromium-aluminum processing material, which can meet the different length requirements of the cutting personnel, when the top of the processing material hits the start switch, the first fixed block can fix the processing material during cutting to ensure the stability and safety during cutting, and the first fixed block can also better fix different sizes of processing materials, the position of the first telescopic link can be moved to move the pulley to limit the running track of the iron-chromium-aluminum processing material on the conveyer belt, and the friction of the pulley on the processing material is small, and the position of the first telescopic link can also be adjusted to adapt to different sizes of iron-chromium-aluminum processing materials. BRIEF DESCRIPTION OF DRAWINGS

[0014] In order to make the purpose, technical scheme and advantages of the utility model clearer, the following will make a further detailed description of the utility model by combining with the drawings and examples. It should be understood that the specific examples described here are only used to explain the utility model, and are not used to limit the utility model.

[0015] Figure 1 It is the main body structure schematic diagram of the utility model cutting device;

[0016] Figure 2 It is the position relation schematic diagram of the utility model pulley and conveyer belt;

[0017] Figure 3 It is the internal structure section view of the utility model fixed box and motor box;

[0018] Figure 4 It is the structure schematic diagram of the utility model first compression spring and first fixed block;

[0019] Figure 5 It is the structure schematic diagram of the utility model sliding block and first fixed column.

[0020] In the drawing: 1, base; 2, conveyer belt; 3, fixed frame; 4, first telescopic rod; 5, base; 6, first fixed block; 7, fixed box; 8, second telescopic rod; 9, third telescopic rod; 10, starting switch; 11, first compression spring; 12, second motor; 13, scale line; 14, cutting blade; 15, first motor; 16, motor box; 17, sliding block; 18, sliding slot; 19, first fixed column; 20, second fixed block; 21, second compression spring; 22, pulley slot; 23, pulley; 24, fixed slot; 25, second fixed column; 26, motor shell. Specific implementation

[0021] In order to make the purpose, technical scheme and advantages of the utility model clearer, the following will make a further detailed description of the utility model by combining with the drawings and examples. It should be understood that the specific examples described here are only used to explain the utility model, and are not used to limit the utility model.

[0022] Refer to Figures 1-5The utility model provides a kind of iron-chromium-aluminum processing fixed-length cutting device, including conveyor belt 2, both sides of conveyor belt 2 are fixedly connected with machine base 1, the effect of conveyor belt 2 is to transport iron-chromium-aluminum material to realize automatic feeding, the effect of machine base 1 is to fix the position of conveyor belt 2 to prevent the position of conveyor belt 2 from deviating, the inner cavity of machine base 1 is fixedly connected with first motor 15, the effect of first motor 15 is to start conveyor belt 2, transport iron-chromium-aluminum material, the side adjacent to conveyor belt 2 of machine base 1 is provided with two pedestals 5, the top of two pedestals 5 is fixedly connected with second fixed column 25, second fixed column 25 is fixedly connected between motor shell 26, one end of motor shell 26 is fixedly connected with second telescopic rod 8, the effect of pedestal 5 is to stabilize second fixed column 25, the effect of second fixed column 25 is to ensure that the position of motor shell 26 does not deviate, the bottom of second telescopic rod 8 is fixedly connected with motor box 16, the inner cavity of motor box 16 is provided with second motor 12, the bottom of motor box 16 inner cavity is fixedly connected with fixed groove 24, and fixed groove 24 is fixedly connected with second motor 12, the effect of fixed groove 24 is to fix the position of second motor 12 to ensure that the position of second motor 12 does not deviate to affect equipment, the output shaft of second motor 12 is fixedly connected with cutting blade 14 by coupling, and second motor 12 can drive cutting blade 14 to rotate, second telescopic rod 8 can move up and down motor box 16, and finally the position of cutting blade 14 can be moved to realize the cutting of iron-chromium-aluminum processing material.

[0023] Further, the opposite sides of two machine bases 1 are provided with two fixed frames 3, the top of fixed frame 3 is movably connected with first telescopic rod 4, the effect of fixed frame 3 is to limit the movement direction of first telescopic rod 4, one end of first telescopic rod 4 is fixedly connected with pulley groove 22 penetrating machine base 1, and first telescopic rod 4 can move pulley groove 22, a plurality of pulleys 23 are rotatably connected in the slot of pulley groove 22 through rotating shaft, the effect of pulley groove 22 is to limit the position of pulley 23, and pulley 23 is located at the top of conveyor belt 2, pulley 23 can limit the left and right running track of iron-chromium-aluminum processing material on conveyor belt 2, and the friction of pulley 23 to processing material is small, and the position of first telescopic rod 4 can be adjusted to adapt to different sizes of iron-chromium-aluminum processing material.

[0024] Further, the base 5 corresponding to both sides are provided with a sliding groove 18, the notch of the sliding groove 18 is movably connected with the corresponding sliding block 17, the sliding groove 18 is used to limit the range of movement of the sliding block 17, the notch of the sliding groove 18 is provided with a first fixed column 19, the first fixed column 19 is used to limit the displacement of the sliding block 17, and the two ends of the first fixed column 19 are fixedly connected with the second compression spring 21, the end of the second compression spring 21 away from the first fixed column 19 is fixedly connected with the second fixed block 20, wherein the second fixed block 20 is in transition with the sliding groove 18, and the cooperation of the second fixed block 20 and the second compression spring 21 can make the first fixed column 19 fixed and movable.

[0025] Further, the inner cavity of the motor shell 26 away from the second telescopic rod 8 is movably connected with the third telescopic rod 9, the third telescopic rod 9 can move left and right, the bottom end of the third telescopic rod 9 is fixedly connected with the starting switch 10, the starting switch 10 is used to control the start and stop of the second telescopic rod 8, and one side of the starting switch 10 is fixedly connected with the sliding block 17, the movement of the third telescopic rod 9 and the sliding block 17 can drive the starting switch 10 to move.

[0026] Further, the outer wall of the motor box 16 is fixedly connected with the fixed box 7 on both sides, the inner cavity of the fixed box 7 is fixedly connected with the first compression spring 11 on the top, the bottom end of the first compression spring 11 is fixedly connected with the first fixed block 6, the material of the first fixed block 6 is rubber, and the bottom of the first fixed block 6 can adapt to different sizes of iron-chromium-aluminum machining materials to be extruded and fixed.

[0027] Further, the outer wall of one base 5 is engraved with a scale line 13, the scale line 13 is used to control the distance of the starting switch 10 for a reference, so as to determine the length of the cutting iron-chromium-aluminum machining material.

[0028] In summary: when the cutting personnel need to cut the iron-chromium-aluminum processing material, first confirm the length required by the iron-chromium-aluminum processing material, confirm the position of the starting switch 10 by moving the sliding block 17, confirm the position of the starting switch 10 by the scale line 13, confirm the position by moving the first fixed column 19 to make the second compression spring 21 disengage from the notch of the sliding groove 18, finally make the first fixed column 19 disengage from the notch of the sliding groove 18, place the first fixed column 19 behind the sliding block 17, control the position of the second fixed block 20 by the second compression spring 21 to make the second fixed block 20 adhere to the top of the notch of the sliding groove 18 to fix the position of the first fixed column 19, and finally fix the position of the starting switch 10. After fixing the position of the starting switch 10, the cutting personnel place the iron-chromium-aluminum processing material to be cut on the conveying belt 2, move the pulley groove 22 by moving the first telescopic rod 4, finally move the pulley 23, move the pulley 23 to the both sides of the iron-chromium-aluminum processing material to fix the running track of the processing material, start the conveying belt 2 by starting the first motor 15 to transport the iron-chromium-aluminum processing material, when the top of the processing material touches the starting switch 10 by the transportation of the conveying belt 2, the starting switch 10 drives the second telescopic rod 8 to move downward, finally drives the cutting blade 14 and the first fixed block 6 to move, when moving downward, the first fixed block 6 will first touch the processing material to fix it to prevent the processing material from separating during cutting, when the cutting blade 14 moves to the position where it can cut the processing material, start the second motor 12 to drive the cutting blade 14 to rotate and cut the processing material, after cutting, the processing material will fall down, at this time, the top of the processing material will leave the starting switch 10, finally the starting switch 10 drives the second telescopic rod 8 to move upward, at this time, the cutting of one iron-chromium-aluminum processing material is completed, and the cycle is repeated until all the iron-chromium-aluminum processing materials to be cut are cut.

[0029] The basic principle, 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 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 required by the present application is defined by the appended claims and their equivalents.

Claims

1. A cutting-to-length device for ferrochrome-aluminium processing, comprising a conveyor belt (2), characterised in that, The conveyor belt (2) is fixedly connected with the base (1) on both sides, the inner cavity of the base (1) is fixedly connected with the first motor (15), one side of the base (1) adjacent to the conveyor belt (2) is provided with two bases (5), the top of the two bases (5) is fixedly connected with the second fixed column (25), the second fixed column (25) is fixedly connected through the motor shell (26), one end of the motor shell (26) is fixedly connected with the second telescopic rod (8), the bottom of the second telescopic rod (8) is fixedly connected with the motor box (16), the inner cavity of the motor box (16) is provided with the second motor (12), the bottom of the inner cavity of the motor box (16) is fixedly connected with the fixed groove (24), and the fixed groove (24) is fixedly connected with the second motor (12), the output shaft of the second motor (12) is fixedly connected with the cutting blade (14) through the shaft coupling.

2. The apparatus according to claim 1, wherein The opposite sides of the two bases (1) are provided with two fixed frames (3), the top of the fixed frame (3) is movably connected with the first telescopic rod (4), one end of the first telescopic rod (4) penetrates the base (1) and is fixedly connected with the pulley groove (22), a plurality of pulleys (23) are rotatably connected in the groove of the pulley groove (22) through the rotating shaft, and the pulleys (23) are located on the top of the conveyor belt (2).

3. The apparatus according to claim 1, wherein the apparatus is characterized by: The opposite sides of the base (5) are provided with the sliding groove (18), the sliding groove (18) is movably connected with the sliding block (17) corresponding thereto in the groove, the sliding groove (18) is provided with the first fixed column (19) in the groove, and the two ends of the first fixed column (19) are fixedly connected with the second compression spring (21), one end of the second compression spring (21) away from the first fixed column (19) is fixedly connected with the second fixed block (20), and the second fixed block (20) is in transition fit with the sliding groove (18).

4. The apparatus according to claim 1, wherein The inner cavity of the motor shell (26) is movably connected with the third telescopic rod (9) away from the second telescopic rod (8), the bottom of the third telescopic rod (9) is fixedly connected with the starting switch (10), and one side of the starting switch (10) is fixedly connected with the sliding block (17).

5. The apparatus according to claim 1, wherein The outer wall of the motor box (16) is fixedly connected with the fixed box (7) on both sides, the inner cavity of the fixed box (7) is fixedly connected with the first compression spring (11) on the top, and the bottom of the first compression spring (11) is fixedly connected with the first fixed block (6).

6. The apparatus according to claim 1, wherein The outer wall of one base (5) is engraved with a scale line (13).