Sawing machine for anti-seismic support production

Through the design of push positioning components and drive lifting components, the problems of poor burrs and stability of cutting sections in the production of seismic brackets are solved, and the stable fixing position and cutting stability of seismic brackets are achieved, which extends the service life of the saw blade.

CN223264886UActive Publication Date: 2025-08-26HEBEI SENNUO METAL PROD CO LTD
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Patent Information

Application Number
CN202422688970.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-05
Publication Date
2025-08-26
Estimated Expiration
2034-11-05

AI Technical Summary

Technical Problem

During the production process of existing seismic brackets, there is no limit fit in the cutting section, which leads to a large number of burrs on the section after cutting and poor stability effect, resulting in the wear of the saw blade.

Method used

Push positioning components and drive lifting components are designed. Push positioning components achieve rapid positioning and stability of the earthquake-resistant bracket through structures such as chassis, brackets, telescopic cylinders, positioning frames, push wheels, etc. The driving lifting components ensure the stable movement of the cutting motor through structures such as rectangular grooves, slide rails, lifting frames, and vertical lead screws.

Benefits of technology

The seismic support is stable and fixed in the cutting process, reducing the generation of cross-section burrs, avoiding vibration, improving cutting stability and extending the service life of the saw blade.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of sectional material cutting, and provides a sawing machine for anti-seismic support production, which comprises a bed frame and cutting motors, the cutting motors are arranged on the bed frame, stand columns are all arranged on the surface of the bed frame, a driving lifting assembly is arranged between the cutting motors, a pushing positioning assembly is arranged on the bed frame, and the pushing positioning assembly comprises a bottom frame. The underframe is arranged on the surface of the bed frame, a support is arranged on the surface of the bed frame, a pair of telescopic cylinders is arranged on the support, and positioning frames are arranged at the output ends of the telescopic cylinders. By means of the technical scheme, the problems that in the related technology, a cutting section is not matched in a limiting mode, a large number of burrs exist on the cut section, the stability effect is poor, vibration is generated, and a saw blade is abraded are solved.
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Description

Technical Field

[0001] The utility model relates to the technical field of profile cutting, in particular to a sawing machine for producing earthquake-resistant brackets. Background Art

[0002] Seismic supports are functional components used in electromechanical piping systems within building structures to reduce the impact of an earthquake on the structure and ensure the safety of the piping system itself and the fluids within it. During an earthquake, if a building's piping system is not properly supported and secured, the severe vibrations can damage it, leading to serious consequences such as leaks and breakages. This not only impacts the safety of the building but can also pose a threat to personnel.

[0003] At present, the existing production method of earthquake-resistant brackets is to place the profile on the sawing machine, adjust the position of the profile to be sawed, then use the clamp to clamp the profile, and finally control the cutting saw to move downward and cut the profile. After the cutting is completed, the clamp is released and the profile is moved forward, and the position of the profile to be sawed is adjusted again. However, there is no limit fit at the cutting section, and there are a lot of burrs on the section after cutting. In addition, the poor stability effect will cause vibration, resulting in saw blade wear.

[0004] Therefore, improvements are made to address the above problems. Utility Model Content

[0005] The utility model provides a sawing machine for producing earthquake-resistant brackets, which solves the problems in the related art that there is no limit fit at the cutting section, a large number of burrs exist on the section after cutting, and the poor stability will cause vibration and lead to saw blade wear.

[0006] The technical solution of the utility model is as follows:

[0007] A bed frame and a cutting motor, wherein the cutting motor is arranged on the bed frame;

[0008] A pair of columns and a driving lifting assembly, wherein the columns are both arranged on the surface of the bed frame, and the driving lifting assembly is arranged between the cutting motors;

[0009] A pushing and positioning component, the pushing and positioning component is arranged on the bed frame;

[0010] The pushing and positioning assembly includes a base frame, which is arranged on the surface of the bed frame. The surface of the bed frame is provided with a bracket, and a pair of telescopic cylinders are provided on the bracket. The output end of the telescopic cylinder is provided with a positioning bracket.

[0011] As a further technical solution, an upper roller is rotatably connected inside the positioning frame, the upper roller and the positioning frame are both located directly above the base frame, and a pair of pushing wheels are rotatably connected to the surface of the bed frame.

[0012] As a further technical solution, the lower ends of the pushing wheels are each provided with a transmission gear, the transmission gears are meshed with each other, the pushing wheels on one side are controlled to rotate by a motor, and a fixing plate is provided on the surface of the bed frame.

[0013] As a further technical solution, a pair of second cylinders are provided on the side surface of the fixed plate, the output ends of the second cylinders are connected to a movable plate, and a pair of stable frames are provided on the surface of the movable plate and the fixed plate.

[0014] As a further technical solution, the driving lifting assembly includes a rectangular groove, which is opened on the side surface of the column. A pair of slide rails are provided in the rectangular groove, and a lifting frame is slidably connected to the slide rails.

[0015] As a further technical solution, the cutting motor is installed in the lifting frame, and a vertical screw is provided in the rectangular groove on one side. The vertical screw is controlled to rotate by the motor, and the vertical screw is connected to the lifting frame through threaded fitting.

[0016] As a further technical solution, correction grooves are provided on the surfaces of the upper roller and the pushing wheel, and the cross section of the correction groove is a V-shaped structure.

[0017] As a further technical solution, a material receiving bracket is provided on the outer end surface of the bed frame, and the upper end of the material receiving bracket and the upper end of the base frame are both V-shaped structures.

[0018] As a further technical solution, a slag discharge port is opened on the surface of the bed frame, a baffle is provided on the surface of the bed frame, and a central bucket is provided at the bottom of the bed frame.

[0019] The working principle and beneficial effects of the utility model are as follows:

[0020] 1. The utility model is provided with a pushing and positioning assembly. Through the interaction of the base frame, bracket, telescopic cylinder, positioning frame, pushing wheel and stable frame, the seismic bracket can maintain the position and angle unchanged when installed, and can be quickly pushed and positioned to the cutting position. The cutting part is tightly attached by two stable frames, which can reduce the burrs generated at the cross section and will not cause vibration.

[0021] 2. The utility model is provided with a driving lifting assembly. Through the interaction of the rectangular slot, the slide rail, the lifting frame and the vertical screw and other structures, the cutting motor can be controlled to maintain a stable cutting state, and the lifting process is highly stable. BRIEF DESCRIPTION OF THE DRAWINGS

[0022] The present invention will be further described in detail below with reference to the accompanying drawings and specific implementation methods.

[0023] Figure 1 This is a schematic diagram of the structure of the utility model;

[0024] Figure 2 This is the axonometric drawing of the utility model;

[0025] Figure 3 This is an axonometric drawing from another perspective of the present invention;

[0026] Figure 4 This is a cross-sectional view of the utility model;

[0027] Figure 5 For this utility model Figure 2 A partial enlarged view of part A;

[0028] In the figure: 1. Bed; 2. Cutting motor; 3. Column; 4. Push positioning assembly; 4-1. Base frame; 4-2. Bracket; 4-3. Telescopic cylinder; 4-4. Positioning frame; 4-5. Upper roller; 4-6. Push wheel; 4-7. Transmission gear; 4-8. Fixed plate; 4-9. Second cylinder; 4-10. Movable plate; 4-11. Stabilizing frame; 5. Driving lifting assembly; 5-1. Rectangular groove; 5-2. Slide rail; 5-3. Lifting frame; 5-4. Vertical screw; 6. Correction groove; 7. Material receiving bracket; 8. Slag discharge port; 9. Baffle; 10. Central bucket. DETAILED DESCRIPTION

[0029] The following will be combined with the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0030] like Figures 1 to 5 As shown, this embodiment provides a sawing machine for producing earthquake-resistant brackets, including

[0031] A bed frame 1 and a cutting motor 2, wherein the cutting motor 2 is arranged on the bed frame 1;

[0032] A pair of columns 3 and a driving lifting assembly 5, the columns 3 are both arranged on the surface of the bed frame 1, and the driving lifting assembly 5 is arranged between the cutting motors 2;

[0033] A push positioning assembly 4 is provided on the bed frame 1;

[0034] The pushing and positioning assembly 4 includes a base frame 4-1, which is arranged on the surface of the bed frame 1, and a bracket 4-2 is arranged on the surface of the bed frame 1. A pair of telescopic cylinders 4-3 are arranged on the bracket 4-2, and a positioning frame 4-4 is arranged at the output end of the telescopic cylinder 4-3. The positioning frame 4-4 is rotatably connected to the upper roller 4-5, and the upper roller 4-5 and the positioning frame 4-4 are both located directly above the base frame 4-1. A pair of pushing wheels 4-6 are rotatably connected to the surface of the bed frame 1, and transmission gears 4-7 are arranged at the lower ends of the pushing wheels 4-6. The transmission gears 4-7 are meshed with each other, and the pushing wheels 4-6 on one side are controlled to rotate by a motor. A fixed plate 4-8 is arranged on the surface of the bed frame 1, and a pair of second cylinders 4-9 are arranged on the side surface of the fixed plate 4-8. The output end of the second cylinder 4-9 is connected to a movable plate 4-10, and a pair of stable frames 4-11 are arranged on the surface of the movable plate 4-10 and the fixed plate 4-8.

[0035] In this embodiment, in order to achieve the effect of quickly positioning the anti-seismic bracket and keeping it tight, a push positioning component 4 is designed. A base frame 4-1 and a bracket 4-2 are provided on the surface of the platform. The base frame 4-1 is used to place the anti-seismic bracket. Two telescopic cylinders 4-3 are provided on the bracket 4-2 and a positioning frame 4-4 is connected to the output end. The telescopic cylinder 4-3 can control the positioning frame 4-4 to press the anti-seismic bracket on the base frame 4-1 and keep it fixed. The bracket 4-2 is also rotatably connected to an upper roller 4-5 for pressing on the top of the anti-seismic bracket and moving by rotating. A pair of rollers are also rotatably connected to the bed frame 1. The pushing wheel 4-6 is provided with a transmission gear 4-7 at the lower end. The pushing wheel 4-6 can be clamped on both sides of the anti-seismic bracket. One of the pushing wheels 4-6 is controlled to rotate by a motor, and the two pushing wheels 4-6 can be controlled to rotate synchronously to drive the anti-seismic bracket to move, which is used to adjust the cutting position. A rectangular fixed plate 4-8 is fixed on the surface of the bed frame 1, and two second cylinders 4-9 are provided on the side surface of the fixed plate 4-8 and are connected to a movable plate 4-10. The surfaces of the fixed plate 4-8 and the movable plate 4-10 are both provided with a stable frame 4-11, which is used to pass through the anti-seismic bracket and keep it in fit, so as to avoid vibration of the anti-seismic bracket during cutting.

[0036] Furthermore, the driving lifting assembly 5 includes a rectangular groove 5-1, which is opened on the side surface of the column 3. A pair of slide rails 5-2 are provided in the rectangular groove 5-1, and a lifting frame 5-3 is slidably connected to the slide rails 5-2. The cutting motor 2 is installed in the lifting frame 5-3. A vertical screw 5-4 is provided in the rectangular groove 5-1 on one side. The vertical screw 5-4 is controlled to rotate by the motor, and the vertical screw 5-4 is connected to the lifting frame 5-3 by threaded matching.

[0037] In this embodiment, in order to achieve the effect of controlling the stable up and down movement of the cutting motor 2, a driving lifting component 5 is designed. A rectangular groove 5-1 is opened on the inner side of the column 3 and two slide rails 5-2 are arranged inside. A lifting frame 5-3 is slidably connected to the slide rail 5-2. The cutting motor 2 is installed in the lifting frame 5-3, and a vertical screw 5-4 is provided in the rectangular groove 5-1 on one side. The vertical screw 5-4 is connected to the lifting frame 5-3, and the lifting frame 5-3 can be controlled to move up and down to enable the cutting motor 2 to achieve the cutting effect.

[0038] Furthermore, a correction groove 6 is provided on the surface of the upper roller 4-5 and the pushing wheel 4-6, and the cross section of the correction groove 6 is a V-shaped structure.

[0039] In this embodiment, a V-shaped correction groove 6 is provided to enable the upper roller 4-5 and the pushing wheel 4-6.

[0040] Furthermore, a material receiving bracket 7 is provided on the outer end surface of the bed frame 1, and the upper end of the material receiving bracket 7 and the upper end of the base frame 4-1 are both V-shaped structures.

[0041] In this embodiment, a material receiving bracket 7 is provided to support the anti-seismic bracket to be cut.

[0042] Furthermore, a slag discharge port 8 is opened on the surface of the bed frame 1, a baffle 9 is provided on the surface of the bed frame 1, and a central bucket 10 is provided at the bottom of the bed frame 1.

[0043] In this embodiment, a slag discharge port 8 is provided to discharge the waste slag generated during cutting downward, and a baffle 9 is provided to collect the waste slag at the slag discharge port 8. A collecting bucket 10 is provided at the bottom to discharge the waste slag downward for easy collection.

[0044] When processing is required, the anti-seismic bracket is placed into the base frame 4-1 and pushed between the pushing wheels 4-6. The pushing wheels 4-6 are started to drive the anti-seismic bracket to move and position to the cutting position. After positioning, the telescopic cylinder 4-3 is started to press the positioning frame 4-4 against the top of the anti-seismic bracket. The vertical screw 5-4 is started to control the cutting motor 2 to move downward. The saw blade of the cutting motor 2 enters between the fixed plate 4-8 and the movable plate 4-10, resets after cutting, and continues to push the anti-seismic bracket to push the cut part outward. The waste slag generated during the cutting process is discharged downward through the slag discharge port 8.

[0045] The above are only preferred embodiments of the present invention and are not intended to limit the present invention. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.

Claims

1. A sawing machine for producing earthquake-resistant brackets, characterized in that: include A bed frame (1) and a cutting motor (2), wherein the cutting motor (2) is arranged on the bed frame (1); A pair of columns (3) and a driving lifting assembly (5), wherein the columns (3) are both arranged on the surface of the bed frame (1), and the driving lifting assembly (5) is arranged between the cutting motors (2); A push positioning component (4), the push positioning component (4) being arranged on the bed frame (1); The pushing and positioning assembly (4) comprises a base frame (4-1), the base frame (4-1) being arranged on the surface of the bed frame (1), the surface of the bed frame (1) being provided with a bracket (4-2), a pair of telescopic cylinders (4-3) being arranged on the bracket (4-2), and a positioning bracket (4-4) being arranged at the output end of the telescopic cylinder (4-3).

2. A sawing machine for producing earthquake-resistant brackets according to claim 1, characterized in that: An upper roller (4-5) is rotatably connected inside the positioning frame (4-4), and both the upper roller (4-5) and the positioning frame (4-4) are located directly above the base frame (4-1). A pair of pushing wheels (4-6) are rotatably connected to the surface of the bed frame (1).

3. A sawing machine for producing earthquake-resistant brackets according to claim 2, characterized in that: The lower ends of the pushing wheels (4-6) are each provided with a transmission gear (4-7), and the transmission gears (4-7) are meshed with each other. The pushing wheel (4-6) on one side is controlled to rotate by a motor, and a fixing plate (4-8) is provided on the surface of the bed frame (1).

4. A sawing machine for producing earthquake-resistant brackets according to claim 3, characterized in that: A pair of second cylinders (4-9) are provided on the side surface of the fixed plate (4-8), the output end of the second cylinder (4-9) is connected to a movable plate (4-10), and a pair of stable frames (4-11) are provided on the surface of the movable plate (4-10) and the fixed plate (4-8).

5. The sawing machine for producing earthquake-resistant brackets according to claim 1, characterized in that: The driving lifting assembly (5) comprises a rectangular groove (5-1), the rectangular groove (5-1) being opened on the side surface of the column (3), a pair of slide rails (5-2) being arranged in the rectangular groove (5-1), and a lifting frame (5-3) being slidably connected to the slide rails (5-2).

6. A sawing machine for producing earthquake-resistant supports according to claim 5, characterized in that: The cutting motor (2) is installed in the lifting frame (5-3), wherein a vertical lead screw (5-4) is provided in the rectangular slot (5-1) on one side thereof, the vertical lead screw (5-4) is controlled to rotate by the motor, and the vertical lead screw (5-4) is connected to the lifting frame (5-3) through threaded matching.

7. The sawing machine for producing earthquake-resistant brackets according to claim 2, characterized in that: The upper roller (4-5) and the pushing wheel (4-6) are both provided with a correction groove (6) on their surfaces, and the cross section of the correction groove (6) is in a V-shaped structure.

8. The sawing machine for producing earthquake-resistant brackets according to claim 1, characterized in that: A material receiving bracket (7) is provided on the outer end surface of the bed frame (1), and the upper end of the material receiving bracket (7) and the upper end of the base frame (4-1) are both V-shaped structures.

9. The sawing machine for producing earthquake-resistant brackets according to claim 1, characterized in that: A slag discharge port (8) is provided on the surface of the bed frame (1), a baffle (9) is provided on the surface of the bed frame (1), and a centralizing bucket (10) is provided at the bottom of the bed frame (1).