Water jet cutter bridge cutting machine

By combining a bridge cutting head and a waterjet cutting head mechanism on a bridge cutting machine, the problems of low efficiency and poor cutting quality when cutting rectangular slabs are solved, achieving efficient and precise rectangular cutting.

CN223617965UActive Publication Date: 2025-12-02FOSHAN YONGSHENGDA MACHINERY
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Patent Information

Application Number
CN202520052548.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-09
Publication Date
2025-12-02
Estimated Expiration
2035-01-09

AI Technical Summary

Technical Problem

In existing technologies, when cutting rectangular slabs, waterjet cutting equipment has good cutting effect but low efficiency, while bridge cutting machine saw blades have difficulty accurately cutting right angles, resulting in poor cutting effect.

Method used

The bridge cutting head mechanism and the water jet cutting head mechanism are set on the main body of the bridge cutting machine. The bridge cutting head mechanism completes most of the cutting process, while the water jet cutting head mechanism performs fine cutting. Combining the advantages of both, high-efficiency cutting is achieved.

Benefits of technology

It enables efficient cutting of stone slabs, especially accurate cutting of rectangular right-angled sections, improving cutting efficiency and results.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model discloses a water jet bridge cutting machine, which belongs to the field of stone processing equipment, and has the advantages of high cutting efficiency of a bridge cutting head mechanism 2 and good cutting effect of a water jet cutting head mechanism 3 by arranging the bridge cutting head mechanism 2 and the water jet cutting head mechanism 3 on a bridge cutting machine main body. Most cutting procedures are completed through the bridge cutter head mechanism 2, fine cutting is conducted through the water jet cutter head mechanism 3, and the problems existing in the prior art can be solved. The water jet cutter bridge cutting machine comprises a bridge cutting machine body, a cross beam 1 capable of moving longitudinally is arranged on the bridge cutting machine body, a bridge cutting tool bit mechanism 2 capable of moving transversely is arranged on the cross beam 1, and the water jet cutter bridge cutting machine further comprises a water jet cutter tool bit mechanism 3. And the water jet cutter head mechanism 3 is arranged on the bridge cutter head mechanism 2 or the cross beam 1.
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Description

Technical Field

[0001] This utility model relates to the field of stone processing equipment, and in particular to a waterjet bridge cutting machine. Background Technology

[0002] Stone materials, such as slate, often need to be cut into a fixed shape during processing, such as cutting rectangles.

[0003] In the existing technology, there are two ways to cut a rectangle on a stone slab. One is to use a water jet cutting device, which has a good cutting effect but low efficiency. The other is to use the saw blade of a bridge cutting machine. Due to the structure of the saw blade, it may either fail to cut to the right angle of the rectangle, resulting in incomplete cutting, or it may cut too much, resulting in poor cutting effect.

[0004] Therefore, in view of the above situation, how to improve the existing processing methods or processing equipment to solve the above problems has become an important technical problem that urgently needs to be solved by those skilled in the art. Utility Model Content

[0005] This utility model discloses a waterjet bridge cutting machine. By setting a bridge cutting head mechanism 2 and a waterjet cutting head mechanism 3 on the main body of the bridge cutting machine, it can take into account the advantages of the high cutting efficiency of the bridge cutting head mechanism 2 and the good cutting effect of the waterjet cutting head mechanism 3. When processing stone, the bridge cutting head mechanism 2 completes most of the cutting process, and the waterjet cutting head mechanism 3 performs fine cutting. This can solve the problems existing in the prior art.

[0006] The water jet bridge cutting machine provided by this utility model includes a bridge cutting machine body, a crossbeam 1 that can move longitudinally is provided on the bridge cutting machine body, a bridge cutting head mechanism 2 that can move laterally is provided on the crossbeam 1, and also includes a water jet cutting head mechanism 3.

[0007] The waterjet cutter head mechanism 3 is mounted on the bridge cutter head mechanism 2 or the crossbeam 1.

[0008] Preferred,

[0009] The bridge cutting head mechanism 2 includes a bridge cutting lifting beam 21 and a bridge cutting head 22, wherein the bridge cutting lifting beam 21 can move laterally on the crossbeam 1, and the bridge cutting head 22 is mounted on the bridge cutting lifting beam 21.

[0010] Preferred,

[0011] The bridge cutting lifting beam 21 is installed on the crossbeam 1 via the bridge cutting X-axis moving slide 23. The bridge cutting X-axis moving slide 23 or the crossbeam 1 is provided with a bridge cutting lateral moving force for driving the bridge cutting X-axis moving slide 23 to move on the crossbeam 1.

[0012] Preferred,

[0013] Bridge cutter head 22 is a five-axis bridge cutter head.

[0014] Preferred,

[0015] The waterjet cutter head mechanism 3 is installed on the bridge cutting lifting beam 21.

[0016] Preferred,

[0017] The water jet cutter head mechanism 3 includes a first water jet cutter head assembly 31 and a first magnetic base 32 disposed on the bridge cutting lifting beam 21;

[0018] An electromagnet 311 is provided on the first waterjet cutter head assembly 31, and is mounted on the bridge cutting lifting beam 21 via the first magnetic base 32.

[0019] Preferred,

[0020] The waterjet cutter head mechanism 3 also includes: a cutter changer 33 disposed on the main body of the bridge cutter and a second magnetic base 34 mounted on the cutter changer 33;

[0021] When the first waterjet cutter head assembly 31 is needed, the bridge cutting head mechanism 2 takes the first waterjet cutter head assembly 31 from the second magnetic base 34 and installs it on the first magnetic base 32; after use, the first waterjet cutter head assembly 31 on the first magnetic base 32 is put back into the second magnetic base 34 of the cutter changer 33.

[0022] Preferred,

[0023] The water jet cutter head mechanism 3 includes a second water jet cutter head assembly 35 and a water jet lifting beam 36. The second water jet cutter head assembly 35 is mounted on the crossbeam 1 via the water jet lifting beam 36, and the water jet lifting beam 36 can move laterally on the crossbeam 1.

[0024] Preferred,

[0025] The water jet cutter head mechanism 3 also includes a water jet X-axis moving slide 37. The water jet lifting beam 36 is mounted on the crossbeam 1 via the water jet X-axis moving slide 37. The water jet X-axis moving slide 37 or the crossbeam 1 is provided with a water jet lateral movement force for driving the water jet X-axis moving slide 37 to move on the crossbeam 1.

[0026] Preferred,

[0027] The second waterjet cutter head assembly 35 is a five-axis waterjet cutter head.

[0028] This utility model of a waterjet bridge cutting machine includes a bridge cutting machine body, on which a longitudinally movable crossbeam 1 is provided, and a transversely movable bridge cutting head mechanism 2 is provided on the crossbeam 1. It also includes a waterjet cutting head mechanism 3; the waterjet cutting head mechanism 3 is mounted on the bridge cutting head mechanism 2 or the crossbeam 1. By providing both the bridge cutting head mechanism 2 and the waterjet cutting head mechanism 3 on the bridge cutting machine body, this utility model of a waterjet bridge cutting machine can combine the advantages of high cutting efficiency of the bridge cutting head mechanism 2 and good cutting effect of the waterjet cutting head mechanism 3. When processing stone, the bridge cutting head mechanism 2 completes most of the cutting process, while the waterjet cutting head mechanism 3 performs the fine cutting, thus solving the problems existing in the prior art. Attached Figure Description

[0029] To more clearly illustrate the technical solutions in the embodiments of this utility model, the drawings used in the description of the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0030] Figure 1 This is a schematic diagram of the structure before the waterjet cutter head mechanism 3 is installed in one embodiment of the waterjet bridge cutting machine of this utility model;

[0031] Figure 2 This is a schematic diagram of the structure of the waterjet bridge cutting machine of this utility model after the waterjet cutter head mechanism 3 is installed in one embodiment;

[0032] Figure 3 This is a schematic diagram of another embodiment of the waterjet bridge cutting machine of this utility model;

[0033] Figure 4 This is a diagram illustrating the cutting effect of using only the bridge cutting head mechanism 2 in the water jet bridge cutting machine of this utility model.

[0034] Figure 5 This is a diagram showing the cutting effect of the bridge cutting head mechanism 2 when using the water jet bridge cutting machine of this utility model.

[0035] Figure 6 This is a diagram showing the cutting effect of the water jet cutter head mechanism 3 when using the water jet bridge cutter of this utility model.

[0036] The stone slab being processed is designated 001, and the work platform is designated 002. Detailed Implementation

[0037] This utility model discloses a waterjet bridge cutting machine. By setting a bridge cutting head mechanism 2 and a waterjet cutting head mechanism 3 on the main body of the bridge cutting machine, it can take into account the advantages of the high cutting efficiency of the bridge cutting head mechanism 2 and the good cutting effect of the waterjet cutting head mechanism 3. When processing stone, the bridge cutting head mechanism 2 completes most of the cutting process, and the waterjet cutting head mechanism 3 performs fine cutting. This can solve the problems existing in the prior art.

[0038] The technical solutions of the present utility model will be clearly and thoroughly described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only a part of the embodiments of the present utility model, and not all of them. All other embodiments obtained by those skilled in the art based on the embodiments of the present utility model without creative effort are within the scope of protection of the present utility model. Please refer to... Figures 1 to 6 The present invention relates to a water jet bridge cutting machine, comprising a bridge cutting machine body, a crossbeam 1 capable of longitudinal movement on the bridge cutting machine body, a bridge cutting head mechanism 2 capable of lateral movement on the crossbeam 1, and a water jet cutting head mechanism 3.

[0039] The waterjet cutter head mechanism 3 is mounted on the bridge cutter head mechanism 2 or the crossbeam 1.

[0040] This invention incorporates both a bridge-cutting blade mechanism 2 and a waterjet blade mechanism 3, enabling both rapid bridge cutting using the bridge-cutting saw blade and precise cutting using a waterjet. Please refer to [link / reference]. Figures 4 to 6 For example, when a rectangular hole needs to be cut in a slab of stone, the bridge cutting head mechanism 2 is used to cut each side, but the right angles are avoided during cutting. The right angles are then cut using the water jet cutting head mechanism 3, which yields a better rectangular hole and is more efficient than cutting directly using only the water jet cutting head mechanism 3. It should be noted that the cutting order of the bridge cutting head mechanism 2 and the water jet cutting head mechanism 3 can be set according to the actual situation and is generally not sequential.

[0041] Preferred,

[0042] The bridge cutting head mechanism 2 includes a bridge cutting lifting beam 21 and a bridge cutting head 22, wherein the bridge cutting lifting beam 21 can move laterally on the crossbeam 1, and the bridge cutting head 22 is mounted on the bridge cutting lifting beam 21.

[0043] Preferred,

[0044] The bridge cutting lifting beam 21 is installed on the crossbeam 1 via the bridge cutting X-axis moving slide 23. The bridge cutting X-axis moving slide 23 or the crossbeam 1 is provided with a bridge cutting lateral moving force for driving the bridge cutting X-axis moving slide 23 to move on the crossbeam 1.

[0045] Preferred,

[0046] Bridge cutter head 22 is a five-axis bridge cutter head.

[0047] Preferred,

[0048] The waterjet cutter head mechanism 3 is installed on the bridge cutting lifting beam 21.

[0049] Preferred,

[0050] The water jet cutter head mechanism 3 includes a first water jet cutter head assembly 31 and a first magnetic base 32 disposed on the bridge cutting lifting beam 21;

[0051] An electromagnet 311 is provided on the first waterjet cutter head assembly 31, and is mounted on the bridge cutting lifting beam 21 via the first magnetic base 32.

[0052] Preferred,

[0053] The waterjet cutter head mechanism 3 also includes: a cutter changer 33 disposed on the main body of the bridge cutter and a second magnetic base 34 mounted on the cutter changer 33;

[0054] When the first waterjet cutter head assembly 31 is needed, the bridge cutting head mechanism 2 takes the first waterjet cutter head assembly 31 from the second magnetic base 34 and installs it on the first magnetic base 32; after use, the first waterjet cutter head assembly 31 on the first magnetic base 32 is put back into the second magnetic base 34 of the cutter changer 33.

[0055] Please see Figure 1 and 2 In one embodiment, the first waterjet cutter head assembly 31 can be mounted on the bridge cutting lifting beam 21 via the first magnetic base 32. This design only requires minor modifications to the existing bridge cutting machine. When the waterjet is not needed, its function is no different from that of the existing bridge cutting machine. When the waterjet is needed, the bridge cutting lifting beam 21 moves to the cutter changer 33, the first waterjet cutter head assembly 31 is taken out from the second magnetic base 34, and then securely installed via the first magnetic base 32. It should be noted that when the first waterjet cutter head assembly 31 is mounted on the bridge cutting lifting beam 21 via the first magnetic base 32, the necessary connections between the first waterjet cutter head assembly 31 and the bridge cutting machine body can be simultaneously connected. For example, communication between the first waterjet cutter head assembly 31 and the bridge cutting machine body can be wireless, or contacts or interfaces can be designed on the first magnetic base 32 and plugged in when the first waterjet cutter head assembly 31 is connected to the first magnetic base 32. No limitation is made here. The function of the electromagnet 311 is to securely mount the first water jet cutter head assembly 31 onto the first magnetic base 32, preventing the first magnetic base 32 from falling or shifting during operation.

[0056] Preferred,

[0057] The water jet cutter head mechanism 3 includes a second water jet cutter head assembly 35 and a water jet lifting beam 36. The second water jet cutter head assembly 35 is mounted on the crossbeam 1 via the water jet lifting beam 36, and the water jet lifting beam 36 can move laterally on the crossbeam 1.

[0058] Preferred,

[0059] The water jet cutter head mechanism 3 also includes a water jet X-axis moving slide 37. The water jet lifting beam 36 is mounted on the crossbeam 1 via the water jet X-axis moving slide 37. The water jet X-axis moving slide 37 or the crossbeam 1 is provided with a water jet lateral movement force for driving the water jet X-axis moving slide 37 to move on the crossbeam 1.

[0060] Preferred,

[0061] The second waterjet cutter head assembly 35 is a five-axis waterjet cutter head.

[0062] Please see Figure 3 In another embodiment, the waterjet head mechanism 3 includes a second waterjet head assembly 35 and a waterjet lifting beam 36. In this case, the waterjet lifting beam 36 and the bridge cutting lifting beam 21 are parallel. This design is more reliable because it allows for the loading and unloading of the waterjet. However, it requires the addition of a waterjet lifting beam 36. The additional waterjet lifting beam 36 will affect the load-bearing capacity of the crossbeam 1, thus requiring an increase in the load-bearing capacity of the crossbeam 1. Furthermore, this design is relatively expensive.

[0063] This utility model of a waterjet bridge cutting machine includes a bridge cutting machine body, on which a longitudinally movable crossbeam 1 is provided, and a transversely movable bridge cutting head mechanism 2 is provided on the crossbeam 1. It also includes a waterjet cutting head mechanism 3; the waterjet cutting head mechanism 3 is mounted on the bridge cutting head mechanism 2 or the crossbeam 1. By providing both the bridge cutting head mechanism 2 and the waterjet cutting head mechanism 3 on the bridge cutting machine body, this utility model of a waterjet bridge cutting machine can combine the advantages of high cutting efficiency of the bridge cutting head mechanism 2 and good cutting effect of the waterjet cutting head mechanism 3. When processing stone, the bridge cutting head mechanism 2 completes most of the cutting process, while the waterjet cutting head mechanism 3 performs the fine cutting, thus solving the problems existing in the prior art.

[0064] The waterjet bridge cutting machine provided by this utility model has been described in detail above. For those skilled in the art, there will be changes in the specific implementation method and application scope based on the idea of ​​the embodiments of this utility model. Therefore, the content of this specification should not be construed as a limitation of this utility model.

Claims

1. A waterjet bridge cutting machine, comprising a bridge cutting machine body, wherein a longitudinally movable crossbeam (1) is provided on the bridge cutting machine body, and a transversely movable bridge cutting head mechanism (2) is provided on the crossbeam (1), characterized in that, Also includes: Water jet cutter head mechanism (3); The water jet cutter head mechanism (3) is installed on the bridge cutter head mechanism (2) or the crossbeam (1).

2. The waterjet bridge cutting machine according to claim 1, characterized in that, The bridge cutting head mechanism (2) includes a bridge cutting lifting beam (21) and a bridge cutting head (22), wherein the bridge cutting lifting beam (21) can move laterally on the crossbeam (1), and the bridge cutting head (22) is installed on the bridge cutting lifting beam (21).

3. The waterjet bridge cutting machine according to claim 2, characterized in that, The bridge cutting lifting beam (21) is installed on the crossbeam (1) via the bridge cutting X-axis moving slide (23). The bridge cutting X-axis moving slide (23) or the crossbeam (1) is provided with a bridge cutting lateral moving force for driving the bridge cutting X-axis moving slide (23) to move on the crossbeam (1).

4. The waterjet bridge cutting machine according to claim 2, characterized in that, The bridge cutter head (22) is a five-axis bridge cutter head.

5. The waterjet bridge cutting machine according to any one of claims 2 to 4, characterized in that, The water jet cutter head mechanism (3) is installed on the bridge cutting lifting beam (21).

6. The waterjet bridge cutting machine according to claim 5, characterized in that, The water jet cutter head mechanism (3) includes a first water jet cutter head assembly (31) and a first magnetic base (32) disposed on the bridge cutting lifting beam (21); An electromagnet (311) is provided on the first water jet cutter head assembly (31), which is mounted on the bridge cutting lifting beam (21) via the first magnetic base (32).

7. The waterjet bridge cutting machine according to claim 6, characterized in that, The waterjet cutter head mechanism (3) also includes: a cutter changer (33) disposed on the main body of the bridge cutter and a second magnetic base (34) mounted on the cutter changer (33); When the first waterjet cutter head assembly (31) is needed, the bridge cutting head mechanism (2) takes the first waterjet cutter head assembly (31) from the second magnetic base (34) and installs it on the first magnetic base (32); after use, the first waterjet cutter head assembly (31) on the first magnetic base (32) is put back on the second magnetic base (34) of the cutter changer (33).

8. The waterjet bridge cutting machine according to any one of claims 2 to 4, characterized in that, The water jet head mechanism (3) includes a second water jet head assembly (35) and a water jet lifting beam (36), wherein the second water jet head assembly (35) is mounted on the crossbeam (1) via the water jet lifting beam (36), and the water jet lifting beam (36) can move laterally on the crossbeam (1).

9. The waterjet bridge cutting machine according to claim 8, characterized in that, The water jet head mechanism (3) also includes a water jet X-axis moving slide (37). The water jet lifting beam (36) is mounted on the crossbeam (1) via the water jet X-axis moving slide (37). The water jet X-axis moving slide (37) or the crossbeam (1) is provided with a water jet lateral movement force for driving the water jet X-axis moving slide (37) to move on the crossbeam (1).

10. The waterjet bridge cutting machine according to claim 8, characterized in that, The second waterjet cutter head assembly (35) is a five-axis waterjet cutter head.