Double-head large stone processing center
By using a combination of milling cutters and saw blades in the dual-head design of the stone processing center, the problem of low efficiency in existing stone processing equipment has been solved, enabling efficient drilling, grinding, and cutting of stone, and significantly improving processing efficiency.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- FOSHAN YONGSHENGDA MACHINERY
- Filing Date
- 2025-01-09
- Publication Date
- 2026-05-29
AI Technical Summary
Existing stone processing equipment is inefficient, especially in the processing of large-scale stone materials. The single-axis processing method results in insufficient efficiency, making it difficult to meet the needs of high-efficiency production.
The dual-head large stone processing center adopts a design that installs a milling cutter on the first electric spindle and a saw blade on the second electric spindle, enabling simultaneous drilling, grinding, and cutting of stone. The collaborative work of the two electric spindles improves processing efficiency.
It significantly improves the efficiency of stone processing, especially the production efficiency of large stone products such as bathtubs, and shortens the processing cycle.
Smart Images

Figure CN224296177U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of stone processing equipment, and in particular to a double-headed large stone processing center. Background Technology
[0002] With the growing popularity of stone products in the home furnishing industry, many large-scale stone processing products have emerged, such as bathtubs and washbasins.
[0003] Taking stone bathtubs as an example, the existing technology mainly uses the following two processing methods:
[0004] One method is manual processing, where the shape of the bathtub is first drawn on the stone, usually a square stone, and then holes are drilled using drilling equipment or other equipment. Then, the polishing process is carried out. The entire production cycle of the bathtub is generally 6 to 8 days.
[0005] Another method is to use machine tools for processing. This method is more automated, but the entire process relies on a spindle on the machine tool, which is less efficient. Processing a bathtub is not much different from manual processing. In order to improve the processing efficiency of large stone materials, it is necessary to improve the existing technology.
[0006] 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
[0007] This utility model discloses a double-headed large stone processing center. By installing a milling cutter 4 on the first electric spindle 2 and a saw blade 5 on the second electric spindle 3, it can simultaneously drill holes and grind the stone while cutting it, which can greatly improve the efficiency of stone processing and thus solve the problems existing in the prior art.
[0008] The double-head large stone processing center provided by this utility model includes a frame body, on which a lifting beam 1 capable of lifting and lowering is provided, and on the lifting beam 1 a first electric spindle 2 and a second electric spindle 3 capable of lateral movement are provided.
[0009] A milling cutter 4 is mounted on the first electric spindle 2;
[0010] A saw blade 5 is mounted on the second electric spindle 3.
[0011] Preferred,
[0012] The main frame includes a processing platform 6 and a lifting column 7;
[0013] The lifting columns 7 are arranged as a group, and are respectively set on both sides of the processing platform 6;
[0014] The lifting beam 1 can move up and down the lifting column 7;
[0015] Processing platform 6 is used to transport the stone to be processed.
[0016] Preferred,
[0017] The processing platform 6 includes a bottom longitudinal beam 61, a longitudinal beam guide rail 62 set on the bottom longitudinal beam 61, a working platform 63, and a longitudinal power 64. The bottom of the working platform 63 cooperates with the longitudinal beam guide rail 62, and the longitudinal power 64 is used to drive the working platform 63 to move along the longitudinal beam guide rail 62.
[0018] Preferred,
[0019] The lifting column 7 is connected to the bottom longitudinal beam 61 via the connector 10;
[0020] The lifting column 7 is equipped with a lifting guide rail 71 and a lifting power 72. The lifting beam 1 cooperates with the lifting guide rail 71, and the lifting power 72 is used to drive the lifting beam 1 to move up and down along the lifting guide rail 71.
[0021] Preferred,
[0022] The lifting power 72 includes a lifting motor 721 and a lifting screw 722;
[0023] The lifting column 7 has a groove for accommodating the lifting screw 722, and the lifting beam 1 has a nut that cooperates with the lifting screw 722.
[0024] Preferred,
[0025] The first electric spindle 2 is mounted on the lifting beam 1 via the first slide 8, and the second electric spindle 3 is mounted on the lifting beam 1 via the second slide 9.
[0026] Preferred,
[0027] A transverse guide rail 11 is provided on the lifting beam 1, and the first slide 8 and the second slide 9 cooperate with the transverse guide rail 11.
[0028] The first slide block 8 is provided with a first transverse power 81, which is used to drive the first slide block 8 to move along the transverse guide rail 11.
[0029] The second slide block 9 is provided with a second transverse power 91, which is used to drive the second slide block 9 to move along the transverse guide rail 11.
[0030] Preferred,
[0031] The lifting beam 1 has a square structure;
[0032] The transverse guide rail 11 includes at least two guide rails respectively disposed on adjacent surfaces of the lifting beam 1;
[0033] The cross-sections of the first slide 8 and the second slide 9 are L-shaped.
[0034] Preferred,
[0035] The transverse guide rail 11 includes three guide rails, two of which are set on the vertical surface of the lifting beam 1, and the remaining guide rail is set on the horizontal surface of the lifting beam 1.
[0036] This utility model discloses a double-headed large-scale stone processing center, comprising a frame body with a lifting beam 1 capable of vertical movement. A first electric spindle 2 and a second electric spindle 3 capable of lateral movement are mounted on the lifting beam 1. A milling cutter 4 is mounted on the first electric spindle 2, and a saw blade 5 is mounted on the second electric spindle 3. By mounting the milling cutter 4 on the first electric spindle 2 and the saw blade 5 on the second electric spindle 3, this utility model's double-headed large-scale stone processing center can simultaneously perform drilling and grinding on stone and cutting, significantly improving stone processing efficiency and thus solving the problems existing in the prior art. Attached Figure Description
[0037] 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.
[0038] Figure 1 This is a schematic diagram of the structure of the double-headed large stone processing center of this utility model;
[0039] The stone bathtub is designated as 001. Detailed Implementation
[0040] This utility model discloses a double-headed large stone processing center. By installing a milling cutter 4 on the first electric spindle 2 and a saw blade 5 on the second electric spindle 3, it can simultaneously drill holes and grind the stone while cutting it, which can greatly improve the efficiency of stone processing and thus solve the problems existing in the prior art.
[0041] 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... Figure 1The present invention relates to a double-headed large stone processing center, comprising a frame body, wherein a lifting beam 1 capable of lifting and lowering is provided on the frame body, and a first electric spindle 2 and a second electric spindle 3 capable of lateral movement are provided on the lifting beam 1.
[0042] A milling cutter 4 is mounted on the first electric spindle 2;
[0043] A saw blade 5 is mounted on the second electric spindle 3.
[0044] First, it should be noted that the processing of large stone materials mainly includes two parts: internal processing and external processing. In this utility model, the milling cutter 4 on the first electric spindle 2 and the saw blade 5 on the second electric spindle 3 can process the stone simultaneously. Specifically, for example, when processing a stone bathtub, the milling cutter 4 drills holes inside the bathtub, while the saw blade 5 simultaneously cuts the outside of the stone to form the external shape of the bathtub. In other words, the inside and outside of the bathtub are processed simultaneously, which can significantly improve the processing efficiency of the bathtub.
[0045] Preferred,
[0046] The main frame includes a processing platform 6 and a lifting column 7;
[0047] The lifting columns 7 are arranged as a group, and are respectively set on both sides of the processing platform 6;
[0048] The lifting beam 1 can move up and down the lifting column 7;
[0049] Processing platform 6 is used to transport the stone to be processed.
[0050] It should be noted that the stone to be processed is placed on the processing platform 6, and the processing platform 6 controls the longitudinal position of the stone to be processed. The first electric spindle 2 and the second electric spindle 3 can move laterally on the lifting beam 1, and the lifting beam 1 can move up and down on the main body of the frame. Therefore, the milling cutter 4 and the saw blade 5 can process the stone in three directions, namely longitudinal, transverse and vertical.
[0051] Preferred,
[0052] The processing platform 6 includes a bottom longitudinal beam 61, a longitudinal beam guide rail 62 set on the bottom longitudinal beam 61, a working platform 63, and a longitudinal power 64. The bottom of the working platform 63 cooperates with the longitudinal beam guide rail 62, and the longitudinal power 64 is used to drive the working platform 63 to move along the longitudinal beam guide rail 62.
[0053] In this invention, the longitudinal power 64 may include a longitudinal motor and a longitudinal lead screw. A longitudinal nut that cooperates with the longitudinal lead screw may be provided on the working platform 63. By driving the longitudinal lead screw to rotate through the longitudinal motor, the working platform 63 can be controlled to move along the longitudinal beam guide rail 62.
[0054] Preferred,
[0055] The lifting column 7 is connected to the bottom longitudinal beam 61 via the connector 10;
[0056] The lifting column 7 is equipped with a lifting guide rail 71 and a lifting power 72. The lifting beam 1 cooperates with the lifting guide rail 71, and the lifting power 72 is used to drive the lifting beam 1 to move up and down along the lifting guide rail 71.
[0057] Preferred,
[0058] The lifting power 72 includes a lifting motor 721 and a lifting screw 722;
[0059] The lifting column 7 has a groove for accommodating the lifting screw 722, and the lifting beam 1 has a nut that cooperates with the lifting screw 722.
[0060] In this utility model, the lifting motor 721 drives the lifting screw 722 to rotate, thereby controlling the lifting beam 1 to move up and down on the lifting column 7.
[0061] Preferred,
[0062] The first electric spindle 2 is mounted on the lifting beam 1 via the first slide 8, and the second electric spindle 3 is mounted on the lifting beam 1 via the second slide 9.
[0063] Preferred,
[0064] A transverse guide rail 11 is provided on the lifting beam 1, and the first slide 8 and the second slide 9 cooperate with the transverse guide rail 11.
[0065] The first slide block 8 is provided with a first transverse power 81, which is used to drive the first slide block 8 to move along the transverse guide rail 11.
[0066] The second slide block 9 is provided with a second transverse power 91, which is used to drive the second slide block 9 to move along the transverse guide rail 11.
[0067] It should be noted that the first electric spindle 2 and the second electric spindle 3 move freely on the lifting beam 1, rather than moving in tandem.
[0068] Preferred,
[0069] The lifting beam 1 has a square structure;
[0070] The transverse guide rail 11 includes at least two guide rails respectively disposed on adjacent surfaces of the lifting beam 1;
[0071] The cross-sections of the first slide 8 and the second slide 9 are L-shaped.
[0072] Preferred,
[0073] The transverse guide rail 11 includes three guide rails, two of which are set on the vertical surface of the lifting beam 1, and the remaining guide rail is set on the horizontal surface of the lifting beam 1.
[0074] This utility model discloses a double-headed large-scale stone processing center, comprising a frame body with a lifting beam 1 capable of vertical movement. A first electric spindle 2 and a second electric spindle 3 capable of lateral movement are mounted on the lifting beam 1. A milling cutter 4 is mounted on the first electric spindle 2, and a saw blade 5 is mounted on the second electric spindle 3. By mounting the milling cutter 4 on the first electric spindle 2 and the saw blade 5 on the second electric spindle 3, this utility model's double-headed large-scale stone processing center can simultaneously perform drilling and grinding on stone and cutting, significantly improving stone processing efficiency and thus solving the problems existing in the prior art.
[0075] The above provides a detailed description of the double-headed large stone processing center provided by this utility model. For those skilled in the art, based on the ideas of the embodiments of this utility model, there will be changes in the specific implementation methods and application scope. Therefore, the content of this specification should not be construed as a limitation of this utility model.
Claims
1. A double-headed large stone processing center, comprising a frame body, wherein a lifting beam (1) capable of vertical movement is provided on the frame body, characterized in that, include: A first electric spindle (2) and a second electric spindle (3) capable of lateral movement are provided on the lifting beam (1); A milling cutter (4) is mounted on the first electric spindle (2); A saw blade (5) is mounted on the second electric spindle (3).
2. The dual-head large-scale stone processing center according to claim 1, characterized in that, The main body of the frame includes a processing platform (6) and a lifting column (7); The lifting columns (7) are set up as a group and are respectively set on both sides of the processing platform (6); The lifting beam (1) can move up and down with the lifting column (7); The processing platform (6) is used to transport the stone to be processed.
3. The dual-head large-scale stone processing center according to claim 2, characterized in that, The processing platform (6) includes a bottom longitudinal beam (61), a longitudinal beam guide rail (62) set on the bottom longitudinal beam (61), a working platform (63) and a longitudinal power source (64), wherein the bottom of the working platform (63) is engaged with the longitudinal beam guide rail (62), and the longitudinal power source (64) is used to drive the working platform (63) to move along the longitudinal beam guide rail (62).
4. The dual-head large-scale stone processing center according to claim 3, characterized in that, The lifting column (7) is connected to the bottom longitudinal beam (61) via a connector (10); The lifting column (7) is equipped with a lifting guide rail (71) and a lifting power (72). The lifting beam (1) cooperates with the lifting guide rail (71), and the lifting power (72) is used to drive the lifting beam (1) to move up and down along the lifting guide rail (71).
5. The dual-head large-scale stone processing center according to claim 3, characterized in that, The lifting power (72) includes a lifting motor (721) and a lifting screw (722); The lifting column (7) has a groove for accommodating the lifting screw (722), and the lifting beam (1) has a nut that matches the lifting screw (722).
6. The double-headed large stone processing center according to any one of claims 1 to 5, characterized in that, The first electric spindle (2) is mounted on the lifting beam (1) via the first slide (8), and the second electric spindle (3) is mounted on the lifting beam (1) via the second slide (9).
7. The dual-head large stone processing center according to claim 6, characterized in that, A transverse guide rail (11) is provided on the lifting beam (1), and the first slide (8) and the second slide (9) cooperate with the transverse guide rail (11); The first slide (8) is provided with a first transverse power (81) for driving the first slide (8) to move along the transverse guide rail (11); The second slide (9) is provided with a second transverse power (91) for driving the second slide (9) to move along the transverse guide rail (11).
8. The dual-head large stone processing center according to claim 7, characterized in that, The lifting beam (1) has a square structure; The transverse guide rail (11) includes at least two guide rails respectively disposed on adjacent surfaces of the lifting beam (1); The cross-sections of the first slide (8) and the second slide (9) are L-shaped.
9. The dual-head large stone processing center according to claim 7, characterized in that, The transverse guide rail (11) includes three guide rails, two of which are set on the vertical surface of the lifting beam (1), and the remaining guide rail is set on the horizontal surface of the lifting beam (1).