Fixed-distance cutting machine

By using the mounting mechanism and clamping components of the fixed-distance cutting machine, automatic positioning and continuous cutting of I-beams are achieved, solving the problem of manual measurement and marking required by existing cutting machines, and improving cutting efficiency and functionality.

CN224073530UActive Publication Date: 2026-04-03TONGHAI SOUTHERN STEEL CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-19
Publication Date
2026-04-03

AI Technical Summary

Technical Problem

Existing cutting machines lack a rapid torque setting structure, requiring manual measurement and marking of I-beams, and cannot continuously cut I-beams of different lengths, resulting in inconvenience and incomplete functionality.

Method used

A fixed-distance cutting machine was designed, comprising an installation mechanism, a cutting component, a moving component, and a clamping component. Through the cooperation of guide grooves and slides, the automatic positioning and limiting of the I-beam is achieved by using an electromagnetic block and a clamping rod, simplifying the measurement process and supporting cutting of different lengths.

Benefits of technology

It enables rapid positioning and cutting of I-beams without the need for manual measurement and marking, improving the continuity and functionality of cutting, and allowing for the continuous cutting of I-beams of different lengths.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224073530U_ABST
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Abstract

The utility model provides a fixed-distance cutting machine, relates to the technical field of cutting machines, and aims to solve the problem that the functionality of the cutting machine is imperfect due to the fact that two groups of I-shaped steel with different lengths cannot be continuously cut when the existing cutting machine is used. The mounting mechanism comprises a main body and mounting grooves, the main body is of a rectangular structure, and the rectangular grooves are formed in the two sides of the main body; and the mounting groove is formed in the front side of the main body, and a guide roller is arranged in the mounting groove. In the using process, the connecting plate is taken down from the two sets of top plates, the connecting plate loses limiting on the two sets of top plates, the two sets of top plates can move independently, the two sets of clamping assemblies which can be used independently are arranged, and the two sets of clamping assemblies can be moved to different positions in the guide groove; and the clamping rods can limit the top plate at different positions, so that I-shaped steel of different lengths can be machined, and through the arrangement, the functions of the device can be enriched.
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Description

Technical Field

[0001] This utility model belongs to the field of cutting machine technology, and more specifically, relates to a fixed-distance cutting machine. Background Technology

[0002] I-beams are long steel bars with an I-shaped cross-section, frequently used in building structures. Before use, they need to be cut into the required lengths using cutting equipment.

[0003] Based on existing technology, it has been found that traditional cutting machines lack a rapid torque setting structure. When cutting, users need to measure and mark the I-beams with a marker, which increases the user's workload. Furthermore, existing cutting machines cannot continuously cut two sets of I-beams of different lengths, resulting in imperfect functionality. Utility Model Content

[0004] To address the aforementioned technical problems, this utility model provides a fixed-distance cutting machine. This addresses the lack of a rapid, fixed-torque structure in existing cutting machines, which requires users to measure and mark the I-beams with a marker during cutting. This increases the user's workload. Furthermore, existing cutting machines cannot continuously cut two sets of I-beams of different lengths, resulting in incomplete functionality.

[0005] The purpose and effectiveness of this fixed-distance cutting machine are achieved through the following specific technical means:

[0006] A fixed-distance cutting machine, comprising:

[0007] The installation mechanism includes a main body and a mounting groove. The main body is rectangular with rectangular grooves on both sides. The mounting groove is located inside the front side of the main body and contains a guide roller. The installation mechanism is equipped with a cutting assembly, the mounting bracket of which is located on the front side of the main body, and both ends of the mounting bracket are inserted into the rectangular grooves on both sides of the main body. The installation mechanism is also equipped with a movable assembly, which includes a top plate and a gasket. There are two sets of top plates located inside the main body, and the top plates are slidably connected to the sliding grooves inside the main body via elastic elements. The gasket is located at the front upper end of the top plate. The installation mechanism is equipped with two sets of clamping assemblies, the movable parts of which are located at both ends inside the main body and are slidably connected to the guide grooves inside the main body. The screws on the outside of the movable parts penetrate the upper end of the main body.

[0008] Furthermore, the installation mechanism also includes: a sliding groove and a guide groove; the sliding groove is opened at the inner end of the main body, and two sets of circular rods are provided inside the sliding groove; there are two sets of guide grooves, and the guide grooves are symmetrically arranged at the inner ends of both sides of the main body, and the upper end of the guide groove passes through the main body through a rectangular groove, and the guide groove is connected to the sliding groove.

[0009] Furthermore, the cutting assembly includes: a mounting frame and a driving component; the upper end of the mounting frame is provided with a toothed plate; the driving component is slidably mounted on the mounting frame, the driving gear on the driving component is connected to the toothed plate on the mounting frame, and the bottom of the driving component is provided with a cutting device.

[0010] Furthermore, the movable component also includes: a locking groove and a connecting plate; the locking groove is located on the upper inner side of the top plate; the connecting plate is located on the inner side of the two sets of top plates, and the connecting plate engages with the locking groove.

[0011] Furthermore, the clamping assembly includes a movable component and a screw, wherein the movable component has rectangular grooves on both sides inside; and two sets of screws are provided, with the screws installed on both sides of the upper end of the movable component.

[0012] Furthermore, the clamping assembly also includes: a clamping rod and a solenoid block; the clamping rod is slidably mounted on the inner side of the moving part through an elastic element, and an L-shaped plate is provided at the end of the clamping rod; the solenoid block is provided on the L-shaped plate at the end of the clamping rod, and the solenoid block is electrically connected to the remote control.

[0013] Compared with the prior art, the present invention has the following beneficial effects:

[0014] 1. This device includes an installation mechanism and a clamping assembly. A sliding groove is provided inside the main body, into which the movable component is slidably installed. A guide groove is provided at the inner end of the main body, into which the moving part is slidably installed. Two sets of screws at the upper end of the moving part pass through the main body. Inside the moving part, an elastic element slides onto a clamping rod with an L-shaped rod. A solenoid block connected to a remote control is fixedly installed on the clamping rod. In use, the moving part is moved to the position where the I-beam is to be cut to the required length. The rear end of the I-beam is pushed against the top plate, causing the I-beam to push the top plate backward. When the top plate reaches the predetermined position, the solenoid block is attracted to the top plate and pulls the clamping rod out from the moving part, causing the L-shaped rod on the clamping rod to engage with the top plate. Thus, the top plate is limited by the clamping rod and cannot move further backward. With this design, the length of the I-beam can be quickly determined without the need for measurement marking, and the continuity of processing can be improved.

[0015] 2. This device includes an installation mechanism and movable components. Two sets of guide grooves are provided within the main body, and two sets of clamping components are independently installed into the two sets of guide grooves. Two sets of top plates are slidably installed into the sliding grooves within the main body via elastic elements, and the two sets of top plates are connected and fixed by a connecting plate. In use, the connecting plate is removed from the two sets of top plates, so that the connecting plate no longer limits the two sets of top plates, and the two sets of top plates can move independently. By setting two sets of independently usable clamping components, the two sets of clamping components can be moved to different positions in the guide grooves. In this way, during use, the clamping rod can limit the top plate at different positions, thereby enabling the processing of I-beams of different lengths. This design enriches the functionality of this device. Attached Figure Description

[0016] Figure 1 This is a three-dimensional structural diagram of the present invention.

[0017] Figure 2 This is an exploded structural diagram of the present invention.

[0018] Figure 3 This is an exploded structural diagram of the active component of this utility model.

[0019] Figure 4 This is a three-dimensional structural diagram of the card-holding component of this utility model.

[0020] In the picture:

[0021] 1. Installation mechanism;

[0022] 101. Main body; 1011. Mounting slot;

[0023] 102. Slide groove; 103. Guide groove;

[0024] 2. Cutting components;

[0025] 201. Mounting bracket; 202. Drive component;

[0026] 3. Activity components;

[0027] 301, Top plate; 3011, Gasket;

[0028] 302. Engaging slot; 303. Connecting plate;

[0029] 4. Card holding component;

[0030] 401, Moving part; 4011, Screw;

[0031] 402. Clamping rod; 4021. Electromagnetic block. Detailed Implementation

[0032] The embodiments of this utility model will be described in further detail below with reference to the accompanying drawings and examples.

[0033] As attached Figure 1 To be continued Figure 4 As shown:

[0034] This utility model provides a fixed-distance cutting machine, including: a mounting mechanism 1; the mounting mechanism 1 includes a main body 101 and a mounting groove 1011, the main body 101 has a rectangular structure, and rectangular grooves are provided on both sides of the main body 101; the mounting groove 1011 is opened inside the front side of the main body 101, and a guide roller is provided in the mounting groove 1011; a cutting component 2 is provided on the mounting mechanism 1, and the mounting bracket 201 of the cutting component 2 is located on the front side of the main body 101, and the two ends of the mounting bracket 201 are inserted into the rectangular grooves on both sides of the main body 101; a movable component 3 is provided on the mounting mechanism 1. 3 includes a top plate 301 and a gasket 3011; the top plate 301 is provided in two sets, and the two sets of top plates 301 are located at the inner end of the main body 101, and the top plate 301 is slidably connected to the sliding groove 102 in the main body 101 through an elastic member; the gasket 3011 is located at the front side of the upper end of the top plate 301; the mounting mechanism 1 is provided with two sets of clamping components 4, the moving parts 401 of the clamping components 4 are located at both ends inside the main body 101, and the moving parts 401 are slidably connected to the guide groove 103 in the main body 101, and the screw 4011 on the outside of the moving parts 401 passes through the upper end of the main body 101.

[0035] like Figure 2 As shown, the installation mechanism 1 further includes: a sliding groove 102 and a guide groove 103; the sliding groove 102 is opened at the inner end of the main body 101, and two sets of circular rods are provided inside the sliding groove 102; two sets of guide grooves 103 are provided, and the guide grooves 103 are symmetrically arranged at the inner ends of both sides of the main body 101, and the upper end of the guide groove 103 passes through the main body 101 through a rectangular groove. The guide groove 103 is connected to the sliding groove 102. By setting the rectangular sliding groove 102, the top plate 301 can be slidably installed into the interior of the main body 101 through the sliding groove 102. By setting the rectangular guide groove 103, the movable part 401 can be slidably installed into both ends of the interior of the main body 101 through the guide groove 103.

[0036] like Figure 2 As shown, the cutting assembly 2 includes a mounting frame 201 and a driving component 202. The upper end of the mounting frame 201 is provided with a toothed plate. The driving component 202 is slidably mounted on the mounting frame 201. The driving gear on the driving component 202 is connected to the toothed plate on the mounting frame 201. The bottom of the driving component 202 is provided with a cutting device. The mounting frame 201 is provided so that the driving component 202 can be mounted on the main body 101. The rectangular driving component 202 is provided so that a flame cutter can be mounted on the driving component 202 and the flame cutter can be moved and cut by moving the driving component 202.

[0037] like Figure 4 As shown, the movable component 3 further includes: a locking groove 302 and a connecting plate 303; the locking groove 302 is located on the upper inner side of the top plate 301; the connecting plate 303 is located on the inner side of the two sets of top plates 301, and the connecting plate 303 engages with the locking groove 302. An L-shaped locking groove 302 is provided, and by engaging both sides of the connecting plate 303 into the locking groove 302 in the top plate 301, the connecting plate 303 can be fixed on the two sets of top plates 301. An N-shaped connecting plate 303 is provided, and by engaging the connecting plate 303 onto the two sets of top plates 301, the two sets of top plates 301 can be spliced ​​and fixed by the connecting plate 303.

[0038] like Figure 3 As shown, the clamping assembly 4 includes: a movable part 401 and a screw 4011. The movable part 401 has rectangular grooves on both sides inside. Two sets of screws 4011 are provided, and the screws 4011 are installed on both sides of the upper end of the movable part 401. An I-shaped movable part 401 is provided, allowing the clamping rod 402 to be movably installed into the guide groove 103. The screw 4011 is provided so that the movable part 401 can be fixed to the main body 101 by passing through the upper end of the main body 101 and threading a nut onto the screw 4011. The clamping rod 402 and the electromagnetic block 4021 are also included. The clamping rod 402 is slidably installed on the main body 101 via an elastic element. The inner side of the movable part 401 and the end of the clamping rod 402 are provided with an L-shaped plate; the electromagnetic block 4021 is provided on the L-shaped plate at the end of the clamping rod 402 and is electrically connected to the remote control. The clamping rod 402 is provided so that the top plate 301 can be limited in the slide groove 102 by engaging the clamping rod 402 with the rear end of the top plate 301. The electromagnetic block 4021 is provided and fixed to the clamping rod 402. After the electromagnetic block 4021 is powered on, when the top plate 301 passes the clamping rod 402, the electromagnetic block 4021 will drive the clamping rod 402 to be attracted to the top plate 301 and limit the top plate 301.

[0039] The specific usage and function of this embodiment are as follows:

[0040] In this utility model, such as Figure 1-4As shown, the drive component 202 is movably mounted on the mounting bracket 201, and the flame cutter is fixed to the bottom of the drive component 202. A sliding groove 102 is opened in the main body 101, and two sets of top plates 301 are slidably installed into the sliding groove 102 through elastic members. Connecting plates 303 are fastened to the two sets of top plates 301 to assemble and fix the two sets of top plates 301. Guide grooves 103 are opened on both sides of the main body 101, and the moving component 401 is slidably installed into the guide groove 103. The clamping rod 402 is slidably installed into the inner end of the moving component 401 through elastic members, and the electromagnetic block 4021 connected to the remote control is fixed. Position the moving part 401 on the corresponding position on the main body 101, so that the position of the moving part 401 on the mounting bracket 201 is equal to the length of the cut I-beam. Push the rear end of the I-beam onto the top plate 301. Push the I-beam to retract the top plate 301 to the rear. When the top plate 301 reaches the predetermined position, the electromagnetic block 4021 is attracted to the top plate 301 and pulls the holding rod 402 out from the moving part 401, so that the L-shaped rod on the holding rod 402 engages with the top plate 301. At this time, the I-beam can be cut by the flame cutter on the drive part 202.

[0041] The above description is merely a preferred embodiment of this utility model, but the protection scope of this utility model is not limited thereto. Any variations or substitutions that can be easily conceived by those skilled in the art within the technical scope disclosed in this utility model should be included within the protection scope of this utility model. Therefore, the protection scope of this utility model should be determined by the scope of the claims.

Claims

1. A fixed distance cutting machine characterized by, The application relates to a cutting device for a glass curtain wall. The cutting device comprises a mounting mechanism (1) and a cutting assembly (2); the mounting mechanism (1) comprises a main body (101) and a mounting groove (1011); the main body (101) is in a rectangular structure, and rectangular grooves are arranged on the two sides of the main body (101); the mounting groove (1011) is arranged on the front side of the main body (101), and a guide roller is arranged in the mounting groove (1011); the cutting assembly (2) is arranged on the mounting mechanism (1); the mounting frame (201) of the cutting assembly (2) is arranged on the front side of the main body (101), and the mounting frame (201) is inserted into the rectangular grooves arranged on the two sides of the main body (101); a movable assembly (3) is arranged on the mounting mechanism (1); the movable assembly (3) comprises a top plate (301) and a gasket (3011); two groups of the top plate (301) are arranged on the inner end of the main body (101), and the top plate (301) is slidably connected with a sliding groove (102) in the main body (101) through an elastic element; the gasket (3011) is arranged on the front side of the upper end of the top plate (301); two groups of clamping assemblies (4) are arranged on the mounting mechanism (1); the moving part (401) of the clamping assembly (4) is arranged at the inner ends of the main body (101); the moving part (401) is slidably connected with a guide groove (103) in the main body (101), and a screw rod (4011) arranged on the outer side of the moving part (401) penetrates the upper end of the main body (101).

2. A fixed distance cutting machine as claimed in claim 1 wherein, The mounting mechanism (1) further comprises the sliding groove (102) and the guide groove (103); the sliding groove (102) is arranged on the inner end of the main body (101), and two groups of circular rods are arranged in the sliding groove (102); the guide groove (103) is arranged on the inner ends of the two sides of the main body (101), and the upper ends of the guide grooves (103) penetrate the main body (101) through the rectangular grooves; the guide grooves (103) are connected with the sliding groove (102).

3. A fixed distance cutter as claimed in claim 1 wherein, The cutting assembly (2) comprises the mounting frame (201) and a driving part (202); the upper end of the mounting frame (201) is provided with a toothed plate; the driving part (202) is slidably arranged on the mounting frame (201); a driving gear on the driving part (202) is in transmission connection with the toothed plate on the mounting frame (201); and a cutting device is arranged on the bottom of the driving part (202).

4. A fixed distance cutter as in claim 1, wherein, The movable assembly (3) further comprises a clamping groove (302) and a connecting plate (303); the clamping groove (302) is arranged on the inner side of the upper end of the top plate (301); and the connecting plate (303) is arranged on the inner sides of the two groups of top plates (301) and is clamped with the clamping groove (302).

5. A fixed distance cutting machine as claimed in claim 4 wherein, The clamping assembly (4) comprises the moving part (401) and the screw rod (4011); the inner sides of the moving part (401) are provided with rectangular grooves; and two groups of the screw rods (4011) are arranged on the two side positions of the upper end of the moving part (401).

6. A fixed distance cutting machine as claimed in claim 5 wherein, The card holding assembly (4) further comprises a card holding rod (402) and a power-on electromagnetic block (4021); the card holding rod (402) is slidingly installed on the inner side of the moving piece (401) through an elastic member, and the card holding rod (402) is provided with an L-shaped plate at the end; the power-on electromagnetic block (4021) is arranged on the L-shaped plate at the end of the card holding rod (402), and the power-on electromagnetic block (4021) is electrically connected with the remote controller.