A rare earth H13 die steel production device

By designing limiting, connecting, and discharging mechanisms on a high-speed circular saw, the problems of material collection box displacement and waste material cleaning were solved, enabling safe and efficient cutting and cleaning of mold steel production.

CN117884705BActive Publication Date: 2026-02-13山东邦巨实业有限公司
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Patent Information

Application Number
CN202410149485.4
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-02-01
Publication Date
2026-02-13
Estimated Expiration
2044-02-01

AI Technical Summary

Technical Problem

When cutting mold steel, the material collection box of the existing high-speed circular saw is prone to displacement, making it difficult to clean up the cutting waste. Replacing the material collection box is laborious and poses a safety hazard.

Method used

A rare earth H13 mold steel production device was designed, which includes a limiting mechanism, a connecting mechanism, a positioning mechanism and a discharging mechanism. The limiting mechanism prevents the material collection box from shifting, the connecting mechanism facilitates the installation and disassembly of the material collection box, the discharging mechanism prevents the steel from falling, and the positioning mechanism facilitates the cleaning of waste.

Benefits of technology

It effectively prevents the material collection box from shifting during the cutting process, simplifies the material collection box replacement process, reduces the labor intensity of operators, improves safety, and facilitates the cleaning of cutting waste.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application relates to the technical field of die steel production, in particular to a rare earth H13 die steel production device, which comprises a circular saw machine body, a limiting mechanism and a discharging mechanism are cooperatively installed on the circular saw machine body; a storage box is arranged on the side of the limiting mechanism away from the circular saw machine body; a collecting box is clamped and installed on the storage box; a connecting mechanism and a positioning mechanism are installed on the collecting box and the storage box; the connecting mechanism on the collecting box is clamped into the limiting mechanism fixed on the circular saw machine body, so that the displacement of the storage box can be prevented when the die steel after cutting is collected in the collecting box; the control switch of the discharging mechanism is opened, so that the operator can replace the collecting box conveniently, and the steel material can also be prevented from falling to the ground due to continuous discharging; the steel material after cutting can be discharged into the collecting box for collection through the discharging mechanism; when the positioning mechanism is stepped on, the collecting box is separated from the storage box, so that the waste collected in the storage box can be cleaned.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of die steel production, in particular to a rare earth H13 die steel production device. BACKGROUND

[0002] Die steel is used to manufacture cold punch die, hot forging die, die casting die and other dies. The die is the main processing tool for manufacturing parts in the mechanical manufacturing, radio instrument, motor, electric appliance and other industrial departments. The quality of the die directly affects the quality of the pressure processing technology, the precision and yield of the product and the production cost, and the quality and service life of the die are mainly affected by the die material and heat treatment in addition to the reasonable structure design and processing precision; in the die steel production process, the steel material needs to be cut by a high-speed circular saw machine.

[0003] However, the existing high-speed circular saw machine, when in use, the operator places the material collecting box at the bottom end of the discharge hopper of the circular saw machine to collect the cut steel material. Since the material collecting box is generally not positioned by a limiting component, when discharging, the heavy steel material generates impact force on the material collecting box, which easily causes the displacement of the material collecting box, which is not conducive to the use effect of the material collecting box; when the steel material is cut by the saw blade, the waste generated by the cutting is easily attached to the steel material or the material collecting box, and when the accumulation is too much, it is not convenient for the subsequent operator to clean the steel material and the material collecting box; when replacing the material collecting box, since the steel material is heavy, it takes time and effort to move the material collecting box, and the circular saw machine continues to cut the steel material, and the cut steel material is not blocked by a component, which may be discharged to the ground during the replacement of the material collecting box, thereby easily injuring the operator. SUMMARY

[0004] In view of the problems in the prior art, the present application provides a rare earth H13 die steel production device.

[0005] The technical scheme adopted by the present application to solve the technical problems is: a rare earth H13 die steel production device, comprising a circular saw machine body, a limiting mechanism and a discharging mechanism are cooperatively installed on the circular saw machine body; a storage box is arranged on the side of the limiting mechanism away from the circular saw machine body; a material collecting box is clamped and installed on the storage box; a connecting mechanism and a positioning mechanism are installed on the material collecting box and the storage box.

[0006] The positioning mechanism comprises a mounting block, two mounting blocks are symmetrically and fixedly connected on the storage box, two clamping blocks are symmetrically and fixedly mounted on the aggregate box, the clamping blocks are clamped with the mounting blocks, a pedal is abutted on one of the clamping blocks, a connecting shaft is fixedly mounted on the pedal, the connecting shaft is rotatably connected with the mounting block, a torsion spring is sleeved on the connecting shaft, the pedal is connected with the mounting block through the torsion spring, the positioning mechanism further comprises a hollow groove, the hollow groove is arranged on one of the clamping blocks, the pedal is rotatably arranged in the hollow groove, the pedal is rotatably connected with the mounting block, the positioning mechanism further comprises an insertion block, two insertion blocks are symmetrically and fixedly connected on the mounting block, the insertion blocks are clamped with the clamping blocks, and the top end of the insertion block is provided in a slope structure.

[0007] Specifically, the connecting mechanism comprises a clamping plate, the clamping plate is fixedly installed on one side of the aggregate box close to the circular sawing machine body, two handles are symmetrically and fixedly connected on the aggregate box, the connecting mechanism further comprises a supporting rod, two supporting rods are symmetrically and fixedly connected on the aggregate box, the two ends of the two supporting rods are fixedly connected with the handle, the connecting mechanism further comprises a guide roller, a plurality of guide rollers are equidistantly and rotatably connected on the aggregate box, the plurality of guide rollers are provided in an inclined manner, a discharging groove is arranged on the part of the aggregate box close to the guide roller, the connecting mechanism further comprises a universal wheel, two groups of universal wheels are symmetrically and fixedly installed on the bottom end of the storage box, a through groove is arranged on the top end of the storage box close to the discharging groove, and the through groove is communicated with the discharging groove.

[0008] Specifically, the discharging mechanism comprises a discharging plate and a hydraulic rod, the discharging plate is fixedly installed on the circular sawing machine body, a discharging hopper is rotatably arranged at the bottom end of the discharging plate, the telescopic end of the hydraulic rod is connected with the discharging hopper, the discharging mechanism further comprises a fixed block, the fixed block is fixedly installed on the discharging hopper, a motor is fixedly installed in the fixed block, a rotating shaft is fixedly connected with the output end of the motor through a shaft coupling, the rotating shaft is rotatably connected with the discharging hopper, a baffle is fixedly connected with the top end of the rotating shaft, a gasket is bonded on the baffle, and the gasket and the baffle are rotatably connected with the discharging hopper.

[0009] Specifically, the limiting mechanism comprises a guide plate, the guide plate is fixedly connected with the circular sawing machine body, the guide plate is provided in a slope structure, a fixed frame is fixedly installed at the bottom end of the guide plate, a clamping groove is arranged on the fixed frame, and a plurality of guide wheels are equidistantly and rotatably connected on the fixed frame.

[0010] The beneficial effects of the present application are as follows:

[0011] (1) The rare earth H13 die steel production device can prevent the displacement of the storage box when the die steel is collected in the collecting box. When the operator collects the steel material cut by the circular saw machine body, the storage box can be moved, and two groups of universal wheels are symmetrically fixedly installed at the bottom end of the storage box. The position of the collecting box clamped and installed on the storage box can be adjusted through the universal wheels. The clamping plate is fixedly installed on the side of the collecting box close to the circular saw machine body. The collecting box is moved, and the clamping plate slides in the clamping groove part provided in the fixed frame. Since a plurality of guide wheels are equidistantly rotationally connected on the fixed frame, the side wall of the clamping plate can be in contact with the guide wheels when the clamping plate slides in the clamping groove part, so that the guide wheels are driven to rotate when the clamping plate slides. Since the height of the clamping groove is greater than the height of the clamping plate, the sliding effect of the clamping plate can be improved by the arrangement of the guide wheels, thereby facilitating the replacement of the collecting box by the operator during use. The guide plate is fixedly installed at the top end of the fixed frame. Since the guide plate is arranged in an inclined manner, the discharge hopper arranged at the top end of the guide plate can be conveniently supported.

[0012] (2) The rare earth H13 die steel production device can prevent the displacement of the storage box when the die steel is collected in the collecting box. When the operator collects the steel material cut by the circular saw machine body, the storage box can be moved, and two groups of universal wheels are symmetrically fixedly installed at the bottom end of the storage box. The position of the collecting box clamped and installed on the storage box can be adjusted through the universal wheels. The clamping plate is fixedly installed on the side of the collecting box close to the circular saw machine body. The collecting box is moved, and the clamping plate slides in the clamping groove part provided in the fixed frame. Since a plurality of guide wheels are equidistantly rotationally connected on the fixed frame, the side wall of the clamping plate can be in contact with the guide wheels when the clamping plate slides in the clamping groove part, so that the guide wheels are driven to rotate when the clamping plate slides. Since the height of the clamping groove is greater than the height of the clamping plate, the sliding effect of the clamping plate can be improved by the arrangement of the guide wheels, thereby facilitating the replacement of the collecting box by the operator during use. The guide plate is fixedly installed at the top end of the fixed frame. Since the guide plate is arranged in an inclined manner, the discharge hopper arranged at the top end of the guide plate can be conveniently supported.

[0013] (3) The rare earth H13 mold steel production device of the present invention can discharge the cut steel into the collection box for collection through the discharge mechanism. When the positioning mechanism is stepped on, the collection box can be separated from the storage box, which facilitates the cleaning of the waste collected in the storage box. That is, a set of guide rollers is inclinedly arranged in the collection box. Several guide rollers are rotatably connected to the collection box. When the cut steel slides, it contacts the guide rollers, which in turn drives the guide rollers to slide in the collection box. There is a gap between the guide rollers. The cutting debris attached to the steel may fall into the discharge trough in the collection box during the sliding process. Since there is a through groove at the top of the storage box near the discharge trough, some debris can be discharged into the storage box for storage through the through groove. When it is necessary to process the debris in the storage box, it can be done by stepping on the ground. When the pedal is pressed, it rotates within a mounting block fixed to the storage box. The pedal is fixedly connected to a connecting shaft, on which a torsion spring is fitted. The pedal is connected to the mounting block via the torsion spring. When the connecting shaft rotates within the mounting block, the torsion spring deforms, causing the pedal to abut against one end of a locking block and begin to rotate. The locking block is fixed to the collection box. When the end of the pedal rotates within the slot provided in the locking block, the pedal can be separated from the locking block. Since the locking block and the mounting block are interlocked, the collection box without steel material can be detached from the storage box by holding the two symmetrically fixed handles on the collection box. The bottom of the collection box is hollowed out, making it easy for operators to clean the debris adhering to the collection box and guide rollers. After the storage box is separated from the collection box, the debris collected in the storage box can be poured out through a through-slot. Attached Figure Description

[0014] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0015] Figure 1 A schematic diagram of the overall structure of a preferred embodiment of a rare earth H13 mold steel production device provided by the present invention;

[0016] Figure 2 for Figure 1 The diagram shown is an enlarged view of the structure of part A.

[0017] Figure 3 This is a schematic diagram of the connection structure between the baffle and the hopper of the present invention;

[0018] Figure 4 for Figure 3 The diagram shown is an enlarged view of the structure of section B.

[0019] Figure 5 This is a schematic diagram of the connection structure between the fixed frame and the guide wheel of the present invention;

[0020] Figure 6 for Figure 5 The diagram shows an enlarged view of section C.

[0021] Figure 7 The connecting structure diagram of the aggregate box and the storage box of the application;

[0022] Figure 8 The structure of D part shown in the enlarged schematic view; Figure 7

[0023] Figure 9 The structure of E part shown in the enlarged schematic view; Figure 7

[0024] Figure 10 The connecting structure diagram of the mounting block and the storage box of the application;

[0025] Figure 11 The structure of F part shown in the enlarged schematic view; Figure 10

[0026] Figure 12 The structure of G part shown in the enlarged schematic view. Figure 10

[0027] In the figure: 1, circular saw machine body; 2, limiting mechanism; 201, guide plate; 202, fixed frame; 203, guide wheel; 204, clamping groove; 3, aggregate box; 4, connecting mechanism; 401, clamping plate; 402, handle; 403, guide roller; 404, support rod; 405, grip rod; 406, universal wheel; 407, through groove; 408, discharge chute; 5, positioning mechanism; 501, mounting block; 502, clamping block; 503, pedal; 504, empty slot; 505, plug-in block; 506, connecting shaft; 507, torsional spring; 6, storage box; 7, discharge mechanism; 701, discharge plate; 702, gasket; 703, baffle; 704, hydraulic rod; 705, hopper; 706, rotating shaft; 707, fixed block; 708, motor. DETAILED DESCRIPTION

[0028] In order to make the technical means, creative features, purposes and effects realized by the application easy to understand, the application will be further described below in combination with specific embodiments.

[0029] As Figures 1-12 shown, the rare earth H13 die steel production device provided by the application comprises a circular saw machine body 1, a limiting mechanism 2 and a discharge mechanism 7 are cooperatively installed on the circular saw machine body 1; the limiting mechanism 2 is provided with a storage box 6 on the side away from the circular saw machine body 1; the storage box 6 is clamped and installed with an aggregate box 3; the aggregate box 3 and the storage box 6 are installed with a connecting mechanism 4 and a positioning mechanism 5;

[0030] ​​​​The positioning mechanism 5 comprises a mounting block 501, two mounting blocks 501 are fixedly connected on the storage box 6 in symmetry, two clamping blocks 502 are fixedly mounted on the aggregate box 3 in symmetry, the clamping blocks 502 and the mounting blocks 501 are clampedly connected, a footboard 503 abuts on one clamping block 502, a connecting shaft 506 is fixedly mounted on the footboard 503, the connecting shaft 506 is rotatably connected with the mounting block 501, a torsion spring 507 is sleeved on the connecting shaft 506, the footboard 503 is connected with the mounting block 501 through the torsion spring 507, the positioning mechanism 5 further comprises a hollow groove 504, one clamping block 502 is provided with the hollow groove 504, the footboard 503 is rotatably arranged at the hollow groove 504, the footboard 503 is rotatably connected with the mounting block 501, the positioning mechanism 5 further comprises an insertion block 505, two insertion blocks 505 are fixedly connected on the mounting block 501 in symmetry, the insertion blocks 505 and the clamping blocks 502 are clampedly connected, the top end of the insertion block 505 is provided in a slope structure.

[0031] Specific, the connecting mechanism 4 includes the clamping plate 401, the aggregate box 3 is fixedly installed with the clamping plate 401 on one side of the circular sawing machine body 1, the aggregate box 3 is fixedly connected with two handles 402 on the symmetry, the connecting mechanism 4 further includes the support rod 404, the aggregate box 3 is fixedly connected with two support rods 404 on the symmetry, two support rods 404 are fixedly connected between two ends of the handle 405, the connecting mechanism 4 further includes the guide roller 403, a plurality of guide rollers 403 are rotatably connected on the aggregate box 3 at equal intervals, a plurality of guide rollers 403 are arranged obliquely, the part of the aggregate box 3 close to the guide roller 403 is provided with the discharge chute 408, the connecting mechanism 4 further includes the universal wheel 406, the bottom end of the storage box 6 is fixedly installed with two groups of universal wheels 406 on the symmetry, the top end of the storage box 6 close to the discharge chute 408 is provided with the through slot 407, the through slot 407 is communicated with the discharge chute 408, the cut steel can be discharged into the aggregate box 3 for collection through the discharging mechanism 7, when the positioning mechanism 5 is stepped by foot, the aggregate box 3 can be separated from the storage box 6, and then the collected waste chips in the storage box 6 can be cleaned, that is, a group of guide rollers 403 are arranged obliquely in the aggregate box 3, a plurality of guide rollers 403 are rotatably connected between the aggregate box 3, the cut steel slides and contacts the guide roller 403, and then drives the guide roller 403 to slide in the aggregate box 3, gaps are formed between the guide rollers 403, and the cutting chips attached to the steel can fall into the discharge chute 408 in the aggregate box 3 through the gaps during the sliding process, since the through slot 407 is arranged on the top end of the storage box 6 close to the discharge chute 408, part of the chips can be discharged into the storage box 6 for storage through the through slot 407, when the chips in the storage box 6 need to be treated, the pedal 503 can be stepped by foot, the pedal 503 is rotatable in the mounting block 501 fixed on the storage box 6, the pedal 503 is fixedly connected with the connecting shaft 506, the connecting shaft 506 is sleeved with the torsional spring 507, the pedal 503 is connected with the mounting block 501 through the torsional spring 507, when the connecting shaft 506 rotates in the mounting block 501, the torsional spring 507 can be deformed, and then the pedal 503 is in contact with one end of the clamping block 502 and starts to rotate, the clamping block 502 is fixed on the aggregate box 3, when the end of the pedal 503 rotates in the gap 504 arranged in the clamping block 502, the pedal 503 can be separated from the clamping block 502, since the clamping block 502 is clamped and connected with the mounting block 501, two handles 402 fixedly arranged on the symmetry of the aggregate box 3 can be held by hand, and the aggregate box 3 without storing steel can be disassembled from the storage box 6, and the bottom end of the aggregate box 3 is in a hollow state, and then the chips attached to the aggregate box 3 and the guide roller 403 can be cleaned by the operator, the storage box 6 is separated from the aggregate box 3, and the chips collected in the storage box 6 can be poured out through the through slot 407.

[0032] Specifically, the discharge mechanism 7 includes a discharge plate 701. The discharge plate 701 and a hydraulic rod 704 are fixedly installed on the circular saw body 1. A hopper 705 is rotatably mounted on the bottom end of the discharge plate 701. The telescopic end of the hydraulic rod 704 is connected to the hopper 705. The discharge mechanism 7 also includes a fixing block 707. A fixing block 707 is fixedly installed on the hopper 705. A motor 708 is installed inside the fixing block 707. The output end of the motor 708 is fixedly connected to a rotating shaft 706 via a coupling. The rotating shaft 706 is connected to the hopper 705. A rotatable connection is made, with a baffle 703 fixedly connected to the top of the rotating shaft 706. A gasket 702 is adhered to the baffle 703. Both the gasket 702 and the baffle 703 are rotatably connected to the discharge hopper 705. When the circular saw body 1 cuts steel, the control switch of the discharge mechanism 7 can be turned on. This facilitates the operator in changing the collection box 3 and also prevents the steel from falling to the ground due to continued discharge. That is, when the control switch of the circular saw body 1 is turned on, the steel moves to the vicinity of the saw blade via the conveying component. The rotating saw blade cuts the steel, and the cut steel passes through the circular saw body 705. The discharge plate 701 on the body 1 discharges material to the top of the hopper 705. Since the hopper 705 is connected to the telescopic end of the hydraulic rod 704 installed on the circular saw body 1, when the hydraulic rod 704 is activated, the discharge angle of the hopper 705 can be adjusted, thus improving the efficiency of the circular saw body 1. When the operator replaces the collection box 3, they can turn on the control switch of the motor 708. The motor 708 is installed in the fixing block 707 at the bottom of the hopper 705, and the output end of the motor 708 is fixedly connected to the rotating shaft 706 via a coupling. The top of the rotating shaft 706... A baffle 703 is fixedly installed. When the motor 708 starts, the rotating shaft 706 drives the baffle 703 to rotate at the top of the feeding hopper 705. When the baffle 703 rotates and is close to the higher side of the feeding hopper 705, it can block the continuously discharged steel material. When the steel material slides, it abuts against the gasket 702 that is bonded to the side wall of the baffle 703, thereby protecting the baffle 703. After the collection box 3 is replaced, the motor 708 is started again, and the rotating shaft 706 drives the baffle 703 to reset, thereby allowing the cut steel material to be discharged through the feeding hopper 705 into the collection box 3 for storage.

[0033] Specific, the limiting mechanism 2 includes a guide plate 201, the circular saw machine body 1 is fixedly connected with guide plate 201, the guide plate 201 is inclinedly arranged, the bottom end of the guide plate 201 is fixedly installed with a fixed frame 202, the fixed frame 202 is provided with a clamping groove 204, a plurality of guide wheels 203 are equidistantly rotatably connected on the fixed frame 202, when cutting the die steel, the connecting mechanism 4 on the material collecting box 3 can be clamped into the limiting mechanism 2 fixed on the circular saw machine body 1, and then the displacement of the storage box 6 can be prevented when the die steel after cutting is collected by the material collecting box 3, that is, the operator can move the storage box 6 when collecting the steel material cut by the circular saw machine body 1, the bottom end of the storage box 6 is symmetrically fixedly installed with two groups of universal wheels 406, the position of the material collecting box 3 clamped and installed on the storage box 6 can be adjusted through the universal wheels 406, the material collecting box 3 is fixedly installed with a clamping plate 401 on the side close to the circular saw machine body 1, the clamping plate 401 is moved to slide in the clamping groove 204 part provided in the fixed frame 202, since a plurality of guide wheels 203 are equidistantly rotatably connected on the fixed frame 202, when the clamping plate 401 slides in the clamping groove 204 part, the side wall thereof can be in contact with the guide wheels 203, and then the guide wheels 203 are driven to rotate when sliding, since the height of the clamping groove 204 is greater than the height of the clamping plate 401, the sliding effect of the clamping plate 401 can be improved by the arrangement of the guide wheels 203, and then the operator can conveniently replace the material collecting box 3 during use, the guide plate 201 is fixedly installed on the top end of the fixed frame 202, since the guide plate 201 is inclinedly arranged, the lower hopper 705 arranged on the top end of the guide plate 201 can be conveniently supported.

[0034] When the present application is used, first, the operator can move the storage box 6 when collecting the steel material cut by the circular saw machine body 1, the bottom end of the storage box 6 is symmetrically fixedly installed with two groups of universal wheels 406, the position of the material collecting box 3 clamped and installed on the storage box 6 can be adjusted through the universal wheels 406, the material collecting box 3 is fixedly installed with a clamping plate 401 on the side close to the circular saw machine body 1, the clamping plate 401 is moved to slide in the clamping groove 204 part provided in the fixed frame 202, since a plurality of guide wheels 203 are equidistantly rotatably connected on the fixed frame 202, when the clamping plate 401 slides in the clamping groove 204 part, the side wall thereof can be in contact with the guide wheels 203, and then the guide wheels 203 are driven to rotate when sliding, since the height of the clamping groove 204 is greater than the height of the clamping plate 401, the sliding effect of the clamping plate 401 can be improved by the arrangement of the guide wheels 203, and then the operator can conveniently replace the material collecting box 3 during use, the guide plate 201 is fixedly installed on the top end of the fixed frame 202, since the guide plate 201 is inclinedly arranged, the lower hopper 705 arranged on the top end of the guide plate 201 can be conveniently supported;

[0035] The control switch of the circular saw machine body 1 is started, the steel material is moved to the vicinity of the saw blade through the conveying assembly, the steel material is cut through the rotating saw blade, the cut steel material is discharged to the top end of the lower hopper 705 through the discharge plate 701 arranged on the circular saw machine body 1, and since the lower hopper 705 is connected with the telescopic end of the hydraulic rod 704 installed on the circular saw machine body 1, when the hydraulic rod 704 is started, the discharge angle of the lower hopper 705 can be adjusted, thereby facilitating the use effect of the circular saw machine body 1; when the operator replaces the material collecting box 3, the control switch of the motor 708 can be opened, the motor 708 is installed in the fixed block 707 installed at the bottom end of the lower hopper 705, and the output end of the motor 708 is fixedly connected with the rotating shaft 706 through the shaft coupling, the top end of the rotating shaft 706 is fixedly installed with the baffle 703, when the motor 708 is started, the rotating shaft 706 can drive the baffle 703 to rotate at the top end of the lower hopper 705, when the baffle 703 rotates and is close to the higher side of the lower hopper 705, the continuously discharged steel material can be blocked, the gasket 702 adhered to the sidewall of the baffle 703 is resisted when the steel material slides, thereby protecting the baffle 703 through the gasket 702; after the material collecting box 3 is replaced, the motor 708 is started again, the rotating shaft 706 drives the baffle 703 to reset, thereby making the cut steel material discharged through the lower hopper 705 to the material collecting box 3 for storage;

[0036] A group of guide rollers 403 are arranged in an inclined manner in the aggregate box 3, a plurality of guide rollers 403 are rotatably connected between the aggregate box 3, the cut steel slides and contacts the guide rollers 403, and then drives the guide rollers 403 to slide in the aggregate box 3, gaps are provided between the guide rollers 403, and the cutting debris attached to the steel may fall into the discharge chute 408 provided in the aggregate box 3 during the sliding process, and a part of the debris can be discharged into the storage box 6 through the through groove 407 provided at the top of the storage box 6. When it is necessary to process the debris in the storage box 6, the pedal 503 can be stepped, the pedal 503 is rotatable in the mounting block 501 fixed on the storage box 6, the pedal 503 is fixedly connected with the connecting shaft 506, the connecting shaft 506 is sleeved with the torsional spring 507, the pedal 503 is connected with the mounting block 501 through the torsional spring 507, and when the connecting shaft 506 rotates in the mounting block 501, the torsional spring 507 can be deformed, so that the pedal 503 rotates at one end of the clamping block 502, and the pedal 503 is separated from the clamping block 502 when the end of the pedal 503 rotates in the gap 504 provided in the clamping block 502. Since the clamping block 502 is clamped and connected with the mounting block 501, the two handles 402 fixed symmetrically on the aggregate box 3 can be held by hand, and the aggregate box 3 without storing steel can be disassembled from the storage box 6, and the bottom end of the aggregate box 3 is in a hollow state, so that the operator can clean the debris attached to the aggregate box 3 and the guide rollers 403. When the storage box 6 is separated from the aggregate box 3, the debris collected in the storage box 6 can be poured out through the through groove 407.

[0037] It will be obvious to a person skilled in the art that, without departing from the spirit or essential characteristics of the application, the present application can be implemented in other specific forms. The present embodiments are therefore to be considered in all respects as illustrative and not restrictive, the scope of the application being indicated by the appended claims rather than by the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. Any reference signs in the claims should not be construed as limiting the scope of the claims.

[0038] In addition, it should be understood that although the present specification is described in terms of embodiments, not every embodiment contains only one independent technical solution, and the description of the specification is only for the sake of clarity, and those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can be combined appropriately to form other embodiments that those skilled in the art can understand.

Claims

1. A rare earth H13 die steel production device, characterized by, Including circular saw machine body (1), the limit mechanism (2) and the material discharge mechanism (7) are installed on the circular saw machine body (1) in cooperation, the limit mechanism (2) is provided with a storage box (6) on the side away from the circular saw machine body (1), the storage box (6) is installed with the material collecting box (3) in cooperation, the material collecting box (3) and the storage box (6) are installed with the connecting mechanism (4) and the positioning mechanism (5); The positioning mechanism (5) includes a mounting block (501), two mounting blocks (501) are fixedly connected on the storage box (6), two clamping blocks (502) are fixedly installed on the material collecting box (3), the clamping block (502) and the mounting block (501) are connected in cooperation, one clamping block (502) is in contact with a pedal (503), the pedal (503) is fixedly installed with a connecting shaft (506), the connecting shaft (506) is rotatably connected with the mounting block (501), the connecting shaft (506) is sleeved with a torsion spring (507), the pedal (503) is connected with the mounting block (501) through the torsion spring (507) in cooperation; The connecting mechanism (4) includes a guide roller (403), a plurality of guide rollers (403) are rotatably connected on the material collecting box (3) at equal intervals, a plurality of guide rollers (403) are arranged obliquely, the part of the material collecting box (3) close to the guide roller (403) is provided with a discharge chute (408), the connecting mechanism (4) further includes a universal wheel (406), two groups of universal wheels (406) are fixedly installed on the bottom end of the storage box (6), the top end of the storage box (6) close to the discharge chute (408) is provided with a through groove (407), the through groove (407) is communicated with the discharge chute (408). The discharging mechanism (7) comprises a discharging plate (701), the discharging plate (701) and a hydraulic rod (704) are fixedly installed on the circular saw machine body (1), a lower hopper (705) is rotatably arranged at the bottom end of the discharging plate (701), and the telescopic end of the hydraulic rod (704) is connected with the lower hopper (705); the discharging mechanism (7) further comprises a fixed block (707), the fixed block (707) is fixedly installed on the lower hopper (705), a motor (708) is rotatably installed in the fixed block (707), a rotating shaft (706) is fixedly connected to the output end of the motor (708) through a shaft coupling, the rotating shaft (706) is rotatably connected with the lower hopper (705), a baffle (703) is fixedly connected to the top end of the rotating shaft (706), a gasket (702) is attached to the baffle (703), and the gasket (702) and the baffle (703) are rotatably connected with the lower hopper (705); the limiting mechanism (2) comprises a guide plate (201), the guide plate (201) is fixedly connected to the circular saw machine body (1), the guide plate (201) is arranged in a slope manner, a fixed frame (202) is fixedly installed at the bottom end of the guide plate (201), a clamping groove (204) is arranged on the fixed frame (202), and a plurality of guide wheels (203) are rotatably connected to the fixed frame (202) at equal intervals.

2. The device for producing a rare earth H13 die steel according to claim 1, characterized in that: The positioning mechanism (5) further comprises a hollow groove (504), the hollow groove (504) is arranged on one clamping block (502), and a pedal (503) is rotatably arranged at the hollow groove (504).

3. The device for producing a rare earth H13 die steel according to claim 1, characterized in that: The positioning mechanism (5) further comprises an insertion block (505), two insertion blocks (505) are fixedly connected to the mounting block (501) in a symmetrical manner, the insertion blocks (505) are clampedly connected with the clamping blocks (502), and the top end of the insertion block (505) is arranged in a slope structure.

4. The device for producing a rare earth H13 die steel according to claim 1, characterized in that: The connecting mechanism (4) further comprises a clamping plate (401), the clamping plate (401) is fixedly installed on one side of the material collecting box (3) close to the circular saw machine body (1), and two handles (402) are fixedly connected to the material collecting box (3) in a symmetrical manner.

5. The device for producing a rare earth H13 die steel according to claim 4, characterized in that: The connecting mechanism (4) further comprises a supporting rod (404), two supporting rods (404) are fixedly connected to the material collecting box (3) in a symmetrical manner, and the two ends of the holding rod (405) are fixedly connected with the two supporting rods (404).

Citation Information

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