Die steel machining sawing machine

By installing a fixed seat, a sliding seat, and a drive motor on the sawing machine for processing mold steel, the automatic fixing and continuous cutting of raw materials are achieved. This solves the problems of equipment complexity and safety hazards caused by the material feeding method that relies on external force in the existing technology, and improves the automation and practicality of the sawing machine.

CN223557403UActive Publication Date: 2025-11-18DALE METAL PROD (DONGGUAN) CO LTD
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Patent Information

Application Number
CN202423187512.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-23
Publication Date
2025-11-18
Estimated Expiration
2034-12-23

AI Technical Summary

Technical Problem

The current sawing machine for processing mold steel requires continuous external force to feed materials, which leads to high equipment complexity, increased maintenance costs, high requirements for operators' technical skills and physical strength, and potential safety hazards.

Method used

A sawing machine made of mold steel is used. By installing a fixed seat, sliding seat, threaded rod and drive motor on the sawing machine, the raw materials are automatically fixed and cut continuously. The design of the extrusion plate and the movable plate ensures that the saw blade can cut continuously.

Benefits of technology

It improves the automation level of the saw, reduces safety hazards, simplifies the operation process, reduces equipment complexity and maintenance costs, and enhances the practicality of the saw.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a die steel machining sawing machine. The sawing machine aims at solving the technical problem that in the prior art, in the whole feeding process, raw materials need to be continuously pushed to slide through external force so that the raw materials can be continuously cut. The sawing machine comprises a machine tool machining table, a sawing machine body, a saw blade and a feeding table, the sawing machine body is installed on the upper surface of the machine tool machining table, the saw blade is installed in the sawing machine body, the feeding table is installed on one side of the machine tool machining table, and a fixing base is connected to the surface of the feeding table. According to the sawing machine, a second telescopic rod drives a check block to move upwards and then controls a driving motor to operate, the driving motor can drive a threaded rod to rotate during operation, the threaded rod rotates to drive a connecting block to move transversely and drive the check block to move transversely through a sliding base, and the check block can extrude a steel raw material to slide when moving to one side of the steel raw material; and then the first telescopic rod drives the extrusion plate to transversely move and fix the steel raw materials, and the feeding mode can continuously cut the steel raw materials.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to mould steel material processing technical field, concretely relates to a mould steel material processing sawing machine. BACKGROUND

[0002] Mould steel material processing sawing machine is one of indispensable equipment in mould manufacturing and mechanical manufacturing industry, and the band sawing machine realizes the cutting of mould steel material through the continuous movement of sawing band, has the advantages such as high cutting efficiency, narrow sawing seam and small sawing loss, and the processing sawing machine is widely used in mould manufacturing, mechanical manufacturing and other industries, and is suitable for cutting various shapes and specifications of mould steel materials.

[0003] At present, the feeding link of mould steel material processing sawing machine in actual operation process generally adopts a mechanized way: first, the raw material to be processed is accurately placed on a specially designed sliding seat, and the sliding seat is designed with guiding and supporting functions to ensure the stability and accuracy of the raw material during the feeding process. Then, the sliding seat is driven by a motor or other power device to move slowly along the preset track, thereby driving the mould steel raw material placed on it to perform the feeding action. When the heavy raw material is pushed by the sliding seat and moves stably and continuously to the bottom side or directly below the saw blade, the main saw blade of the sawing machine will start the accurate cutting operation at the preset speed and force.

[0004] However, this seemingly mechanized feeding method has obvious shortcomings in actual application. A key problem is that the entire feeding process needs to rely on the continuous pushing of external force, whether through manual or automated devices, and it is necessary to ensure that the raw material is stably and continuously driven during the entire movement process so that the saw blade can continuously cut without interruption or quality decline due to the stagnation or uneven speed of the raw material. This feeding method relying on external force not only increases the complexity and maintenance cost of the equipment, but also requires higher technical level and physical strength of the operator in long-term continuous operation, and may also cause safety hazards due to improper operation or equipment failure. SUMMARY

[0005] (1) Technical problem to be solved

[0006] In view of the deficiencies of the prior art, the utility model discloses a die steel processing sawing machine, which aims to solve the problem that the whole feeding process needs to rely on the continuous pushing of external force under the prior art, and no matter through manual work or automatic device, the stable and continuous driving force of the raw material in the whole movement process must be ensured, so that the saw blade can continuously cut, and the cutting is not interrupted or the quality is not reduced due to the stagnation or uneven speed of the raw material. This feeding mode depending on external force not only increases the complexity and maintenance cost of the equipment, but also puts forward higher requirements for the technical level and physical strength of the operator in long-term continuous operation, and meanwhile, it may cause safety hazards due to improper operation or equipment failure.

[0007] (2) Technical scheme

[0008] In order to solve the above technical problems, the utility model provides a die steel processing sawing machine, which comprises a machine tool processing table, a sawing machine main body, a saw blade and a feeding table, the upper surface of the machine tool processing table is provided with the sawing machine main body, the inside of the sawing machine main body is provided with the saw blade, one side of the machine tool processing table is provided with the feeding table, the surface of the feeding table is connected with a fixing seat, the upper surface of the machine tool processing table is provided with a first telescopic rod, the telescopic end of the first telescopic rod is connected with a pressing plate, the upper surface of the feeding table is connected with a guide rail, the surface of the guide rail is slidingly connected with a sliding sleeve, the surface of the sliding sleeve is connected with a sliding seat, the bottom side of the sliding seat is connected with a connecting block, the inside of the connecting block penetrates a threaded rod, the end of the threaded rod is connected with a driving motor, a bearing seat is arranged between the threaded rod and the sawing machine main body, the inside of the sliding seat is provided with a second telescopic rod, and the telescopic end of the second telescopic rod is connected with a stop block.

[0009] Preferably, the sliding seat can drive the sliding sleeve to slide on the surface of the guide rail when the sliding seat is subjected to the action force, so that the movement direction of the sliding seat can be limited.

[0010] Preferably, the pressing plate and the first telescopic rod form a telescopic structure, the first telescopic rod can drive the pressing plate to move transversely when the first telescopic rod extends, and the pressing plate can fix the position of the steel raw material when the pressing plate moves to the side surface of the steel raw material.

[0011] Further, the threaded rod and the connecting block are threadedly connected, the threaded rod and the bearing seat form a rotating structure, the threaded rod can drive the connecting block to move transversely when the threaded rod rotates, and the connecting block can drive the sliding seat to move transversely when the connecting block moves transversely.

[0012] Still further, the stop block and the second telescopic rod form a lifting structure, the second telescopic rod can drive the stop block to move upwardly when the second telescopic rod extends, and then the stop block can extrude the steel raw material to slide through the movement of the stop block.

[0013] Further, the sliding seat comprises a base, a hinge, a movable plate, a first rotating shaft, a second rotating shaft and a third telescopic rod, the side surface of the base is connected with the hinge, the side surface of the hinge is connected with the movable plate, the inner wall of the movable plate is installed with the first rotating shaft, the inner wall of the movable plate is installed with the second rotating shaft, and the first rotating shaft and the second rotating shaft are connected with the third telescopic rod.

[0014] Further, the movable plate is connected with the base through the hinge to form a rotating structure, the movable plate rotates around the center axis of the hinge under the action of force, and the steel raw material placed on the surface of the movable plate becomes in an inclined state after the movable plate rotates.

[0015] Further, the third telescopic rod is connected with the base through the first rotating shaft to form a rotating structure, the third telescopic rod is connected with the movable plate through the second rotating shaft to form a rotating structure, and the movable plate can be extruded by the second rotating shaft when the third telescopic rod extends.

[0016] (3) Beneficial effects

[0017] Compared with the prior art, the beneficial effects of the utility model lie in that:

[0018] 1. The mold steel raw material rack is controlled to run on the surface of the fixed seat and the sliding seat, the second telescopic rod can drive the blocking block to move upward when the second telescopic rod extends, the threaded rod can be driven to rotate when the driving motor runs, the threaded rod can drive the connecting block to move transversely, the connecting block drives the blocking block to move transversely through the sliding seat, the blocking block can extrude the steel raw material to slide on the surface of the fixed seat when the blocking block moves to one side of the steel raw material, then the first telescopic rod drives the extrusion plate to move transversely and fix the position of the steel raw material, and then the sawing machine main body drives the saw blade to move downward and cut, the steel raw material can be continuously cut through the feeding mode, so that the automation of the device can be improved, and the safety hidden danger can be reduced.

[0019] 2. The third telescopic rod can extrude the movable plate through the second rotating shaft when the third telescopic rod extends, the movable plate rotates around the center axis of the hinge under the action of force, and the steel raw material placed on the surface of the movable plate becomes in an inclined state after the movable plate rotates, so that a bevel can be formed when the saw blade cuts, thereby improving the practicability of the sawing machine cutting. DRAWINGS

[0020] Figure 1 It is a front view structural schematic diagram of one specific embodiment of the device of the utility model;

[0021] Figure 2 It is a rear view structural schematic diagram of one specific embodiment of the device of the utility model;

[0022] Figure 3The utility model discloses a specific implementation mode of the device loading table structure schematic diagram,

[0023] Figure 4 The utility model discloses a specific implementation mode of the device sliding seat connecting structure schematic diagram,

[0024] Figure 5 The utility model discloses a specific implementation mode of the device sliding seat structure cross section view,

[0025] Figure 6 The utility model discloses a specific implementation mode of the device sliding seat structure rear view,

[0026] Figure 7 The utility model discloses a specific implementation mode of the device sliding seat side view structure cross section view.

[0027] The marks in the drawing are: 1, machine tool processing table, 2, sawing machine main body, 3, saw blade, 4, loading table, 5, fixed seat, 6, first telescopic rod, 7, extrusion plate, 8, guide rail, 9, sliding sleeve, 10, sliding seat, 101, base, 102, hinge, 103, movable plate, 104, first rotating shaft, 105, second rotating shaft, 106, third telescopic rod, 11, connecting block, 12, threaded rod, 13, drive motor, 14, bearing seat, 15, second telescopic rod, 16, stop block. Specific implementation

[0028] The specific implementation is a die steel processing sawing machine, and a structure schematic diagram is shown in the drawing, Figures 1-7 The sawing machine comprises a machine tool processing table 1, a sawing machine main body 2, a saw blade 3 and a loading table 4, the upper surface of the machine tool processing table 1 is provided with the sawing machine main body 2, the inside of the sawing machine main body 2 is provided with the saw blade 3, one side of the machine tool processing table 1 is provided with the loading table 4, the surface of the loading table 4 is connected with a fixed seat 5, the upper surface of the machine tool processing table 1 is provided with a first telescopic rod 6, the telescopic end of the first telescopic rod 6 is connected with an extrusion plate 7, the upper surface of the loading table 4 is connected with a guide rail 8, the surface of the guide rail 8 is slidably connected with a sliding sleeve 9, the surface of the sliding sleeve 9 is connected with a sliding seat 10, the bottom side of the sliding seat 10 is connected with a connecting block 11, the inside of the connecting block 11 penetrates a threaded rod 12, the end of the threaded rod 12 is connected with a drive motor 13, the threaded rod 12 and the sawing machine main body 2 are provided with a bearing seat 14, the inside of the sliding seat 10 is provided with a second telescopic rod 15, and the telescopic end of the second telescopic rod 15 is connected with a stop block 16.

[0029] The extrusion plate 7 and the first telescopic rod 6 constitute a telescopic structure, the threaded rod 12 and the connecting block 11 are screw-connected, the threaded rod 12 and the bearing seat 14 constitute a rotating structure, and the stop block 16 and the second telescopic rod 15 constitute a lifting structure.

[0030] In addition, the sliding seat 10 comprises a base 101, a hinge 102, a movable plate 103, a first rotating shaft 104, a second rotating shaft 105 and a third telescopic rod 106, the side surface of the base 101 is connected with the hinge 102, the side surface of the hinge 102 is connected with the movable plate 103, the inner wall of the movable plate 103 is installed with the first rotating shaft 104, the inner wall of the movable plate 103 is installed with the second rotating shaft 105, the first rotating shaft 104 and the second rotating shaft 105 are connected with the third telescopic rod 106, the movable plate 103 and the base 101 form a rotating structure through the hinge 102, the third telescopic rod 106 and the base 101 form a rotating structure through the first rotating shaft 104, and the third telescopic rod 106 and the movable plate 103 form a rotating structure through the second rotating shaft 105.

[0031] Principle: when using the device of the technical scheme, first, the mold steel raw material is placed on the surface of the fixed seat 5 and the sliding seat 10, then the second telescopic rod 15 can be controlled to operate, when the second telescopic rod 15 extends, the stop block 16 can be driven to move upwards, then the driving motor 13 can be operated, when the driving motor 13 operates, the threaded rod 12 can be driven to rotate in the bearing seat 14, the threaded rod 12 rotating can drive the connecting block 11 to move horizontally, the connecting block 11 moving horizontally can drive the sliding seat 10 to move horizontally, the sliding seat 10 moving horizontally can drive the stop block 16 to move horizontally, when the stop block 16 moves to one side of the steel raw material, the steel raw material can be extruded by the stop block 16 at this time, the steel raw material can slide on the surface of the fixed seat 5 after being extruded, the position of the steel raw material can be fixed after the first telescopic rod 6 is controlled to operate, when the first telescopic rod 6 extends, the extrusion plate 7 can be driven to move horizontally, when the extrusion plate 7 moves to the side surface of the steel raw material, the position of the steel raw material can be fixed, then the sawing machine main body 2 drives the saw blade 3 to move downwards and cut, when the steel raw material needs to be continuously cut, the first telescopic rod 6 can be continuously operated, when the first telescopic rod 6 retracts, the extrusion plate 7 can be driven to move away from the steel raw material, then the driving motor 13 can be operated, so that the steel raw material can be continuously cut;

[0032] When the third telescopic rod 106 extends, the movable plate 103 can be extruded by the second rotating shaft 105, the movable plate 103 is rotated around the center axis of the hinge 102 as the center, after the movable plate 103 is rotated, the steel raw material placed on the surface of the movable plate 103 becomes in an inclined state, so that when cutting by the saw blade 3, a bevel can be formed, thereby improving the practicability of the sawing machine cutting.

[0033] All the technical features in the embodiment can be freely combined according to actual needs.

[0034] The above embodiment is a preferred implementation scheme of the present application, in addition to this, the present application can be implemented in other ways, and any obvious replacement without departing from the technical scheme concept is within the protection scope of the present application.

Claims

1. A sawing machine for processing mold steel, the sawing machine comprising a machine tool processing table (1), a sawing machine body (2), a saw blade (3), and a loading table (4), characterized in that, A saw body (2) is mounted on the upper surface of the machine tool processing table (1). A saw blade (3) is installed inside the saw body (2). A loading platform (4) is mounted on one side of the machine tool processing table (1). A fixed seat (5) is connected to the surface of the loading platform (4). A first telescopic rod (6) is mounted on the upper surface of the machine tool processing table (1). An extrusion plate (7) is connected to the telescopic end of the first telescopic rod (6). A guide rail (8) is connected to the upper surface of the loading platform (4). A sliding connection is made to the surface of the guide rail (8). A sliding sleeve (9) is provided, and a sliding seat (10) is connected to the surface of the sliding sleeve (9). A connecting block (11) is connected to the bottom side of the sliding seat (10). A threaded rod (12) passes through the interior of the connecting block (11). A drive motor (13) is connected to the end of the threaded rod (12). A bearing seat (14) is installed between the threaded rod (12) and the saw body (2). A second telescopic rod (15) is installed inside the sliding seat (10). A stop block (16) is connected to the telescopic end of the second telescopic rod (15).

2. The sawing machine for processing mold steel according to claim 1, characterized in that, The extrusion plate (7) and the first telescopic rod (6) form a telescopic structure.

3. The sawing machine for processing mold steel according to claim 2, characterized in that, The threaded rod (12) and the connecting block (11) are connected by a thread, and the threaded rod (12) and the bearing seat (14) form a rotating structure.

4. The sawing machine for processing mold steel according to claim 3, characterized in that, The stop block (16) and the second telescopic rod (15) form a lifting structure.

5. A sawing machine for processing mold steel according to claim 1, characterized in that, The sliding seat (10) includes a base (101), a hinge (102), a movable plate (103), a first rotating shaft (104), a second rotating shaft (105), and a third telescopic rod (106). The side surface of the base (101) is connected to the hinge (102), the side surface of the hinge (102) is connected to the movable plate (103), the inner wall of the movable plate (103) is equipped with the first rotating shaft (104), the inner wall of the movable plate (103) is equipped with the second rotating shaft (105), and the third telescopic rod (106) is connected between the first rotating shaft (104) and the second rotating shaft (105).

6. A sawing machine for processing mold steel according to claim 5, characterized in that, The movable plate (103) forms a rotating structure with the base (101) via a hinge (102).

7. A sawing machine for processing mold steel according to claim 6, characterized in that, The third telescopic rod (106) forms a rotating structure with the base (101) through the first rotating shaft (104), and the third telescopic rod (106) forms a rotating structure with the movable plate (103) through the second rotating shaft (105).