Double-supporting-plate tool arranging machine

By designing a double-pallet gantry milling machine, multi-station, multi-directional, and multi-functional processing has been achieved, solving the problems of complex tool replacement and difficult switching between multiple processes in existing gantry milling machines. This has improved processing efficiency and accuracy, and met the needs of high-efficiency and precision machining of complex workpieces.

CN223876602UActive Publication Date: 2026-02-06江南数控机床有限公司
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Patent Information

Application Number
CN202520249941.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-17
Publication Date
2026-02-06
Estimated Expiration
2035-02-17

AI Technical Summary

Technical Problem

Existing sectional cutting machines are complex and time-consuming in the tool changing process, cannot quickly respond to the needs of multi-variety, small-batch production, lack the ability to switch between multiple processes, have poor processing flexibility, and are difficult to adapt to high-precision and diversified processing needs.

Method used

A double-pallet rotary tool machine was designed, comprising a working bed, a drive rail base, a large translational slide, a first small working slide, a supporting bridge, a bridge rail, a drive slide, a second small working slide, and a rotary spindle. It enables multi-station, multi-directional, and multi-functional machining. Through the cooperation of the rotary spindle and the chuck, it can flexibly switch between workpieces and cutting tools, integrating multiple machining methods such as milling, turning, and drilling.

Benefits of technology

It improves processing efficiency and accuracy, reduces clamping time, speeds up production, has the ability to flexibly switch between multiple workstations, supports composite processing, adapts to the efficient and precise processing of complex workpieces, and enhances the automation level and space utilization efficiency of the equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a double-supporting-plate tool arranging machine which comprises a working base, a driving rail line pedestal, a large translation dragging plate, a small dragging plate, a main shaft portal frame, a telescopic arm, a working table and a rotating main shaft. The driving rail line pedestal is fixedly installed at one end of the surface of the working base, and the large translation dragging plate is installed on the driving rail line pedestal in a sliding mode; the small carriage is mounted on the translation large carriage in a sliding manner; the main shaft portal frame is fixedly mounted at the other end of the surface of the working base, the portal frame rail line is fixedly mounted at the top of the main shaft portal frame, and the telescopic arm is slidably mounted on the portal frame rail line; the workbench is installed at one end of the telescopic arm in a sliding mode. The rotating main shaft is mounted in the main shaft portal frame; due to the arrangement of the small dragging plate and the working table, flexibility is high, cutters can be rapidly replaced, and various machining technologies can be carried out on one machine.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of arranging cutter machine, especially to a double supporting plate arranging cutter machine. BACKGROUND

[0002] In modern manufacturing industry, with the continuous improvement of workpiece machining precision requirements, the traditional machining equipment has been unable to meet the complex workpiece machining demand, especially in the processing scene involving multiple machining processes and high precision requirements. In order to improve the machining efficiency, precision and production capacity, more and more equipment begins to develop towards the direction of multi-function, multi-station and multi-tool switching. The existing machining equipment generally relies on single machining module, which needs to frequently change tools and workpieces, and the movement mode of the equipment is relatively limited, which cannot flexibly adapt to different process requirements. Therefore, improving the comprehensive performance of the machining equipment, especially the flexibility and automation level in the machining process, has become a problem to be solved in current manufacturing industry.

[0003] As an important type of numerical control machine tool, the arranging cutter machine is mainly applied to machining tasks requiring multiple tools, such as milling, drilling, tapping, etc. However, the existing arranging cutter machine has some significant defects in actual application, which restricts its performance in efficient production.

[0004] Firstly, the tool changing process of the arranging cutter machine is relatively complex and time-consuming. The existing arranging cutter machine usually adopts manual or semi-automatic tool changing mode, which needs a long time when switching tools. This not only increases the production downtime and reduces the machining efficiency, especially when facing multi-variety and small-batch production, it cannot quickly respond to the machining requirements of different products. In addition, manual operation is often required during tool changing, which increases the workload of the operators and also increases the probability of errors.

[0005] Secondly, the arranging cutter machine can usually only complete single machining process and lacks multi-process switching capability. Due to the design of the equipment and the limitation of the tool magazine, the existing arranging cutter machine is difficult to flexibly switch different machining processes on the same equipment. This means that when milling, drilling or tapping processes are needed at the same time, it must be switched between different equipment, which leads to waste of space and equipment utilization, and increases the management complexity and equipment maintenance cost. For those workpieces that need to complete multiple processes in the same work flow, the existing arranging cutter machine often cannot meet the requirements of efficient integrated machining.

[0006] Finally, the existing gang tool machine has poor processing flexibility. Gang tool machines are usually configured for specific tools and processing techniques, making it difficult to quickly adapt to different materials, complex shapes, or special processing needs. When the processing technique or workpiece type changes, the device must undergo tedious adjustments, which not only prolongs the adjustment time, but also can cause fluctuations in processing precision, affecting the quality of the final product. In modern manufacturing, which requires high precision and diversified processing, the limitations of gang tool machines make it difficult to adapt to changing production needs.

[0007] Therefore, it is necessary to invent a double pallet gang tool machine. Invention content

[0008] To solve the above technical problems, the utility model provides a double pallet gang tool machine to solve the problems that the existing gang tool machine structure still has poor flexibility, cannot quickly replace tools, and cannot perform multiple processing techniques on one machine. A double pallet gang tool machine includes a work bed foot, a drive rail seat, a translation large pallet, a first work small pallet, a support bridge door, a bridge door rail, a drive slide, a second work small pallet, and a rotating main shaft. The drive rail seat is fixedly installed at one end of the surface of the work bed foot, and the translation large pallet is slidably installed on the drive rail seat. The first work small pallet is slidably installed on the translation large pallet. The support bridge door is fixedly installed at the other end of the surface of the work bed foot, and the bridge door rail is fixedly installed on the top of the support bridge door. The drive slide is slidably installed on the bridge door rail. The second work small pallet is slidably installed at one end of the drive slide. The rotating main shaft is installed inside the support bridge door.

[0009] The first work small pallet includes a first pallet, a gear shaft box, a chuck, a drive structure, and a drive motor. The first pallet is slidably installed on the translation large pallet. The gear shaft box is fixedly installed on the surface of the first pallet. The chuck is installed at one end of the gear shaft box, and the drive structure is installed at the other end of the gear shaft box. The drive motor is fixedly installed above the gear shaft box and is engaged with the gear shaft box through the drive structure.

[0010] The second work small pallet includes a second pallet, a gear box, a control motor, a milling cutter seat, and a machining turning tool. The second pallet is slidably installed at one end of the drive slide. The control motor is fixedly installed above the gear box. The milling cutter seat is rotatably installed below the gear box, and the machining turning tool is fixedly installed on one side of the gear box.

[0011] The rotating main shaft and the chuck can both install tools or workpieces, and the rotating main shaft and the chuck cannot install tools or workpieces simultaneously; when the front end of the rotating main shaft is installed with a workpiece, the inside of the chuck is installed with a tool, and the milling cutter seat and the machining turning tool are matched to process the workpiece at the front end of the rotating main shaft; when the chuck is installed with a workpiece, the front end of the rotating main shaft is installed with a tool, and the milling cutter seat and the machining turning tool are matched to process the workpiece installed on the chuck.

[0012] The first working small drag plate can move in multiple directions through the driving of the translation large drag plate, and the chuck adopts a multi-paw chuck which is driven by a driving motor and rotates at high speed through a gear box; the inside of the chuck can install workpieces or machining tools according to needs; one side of the chuck is provided with an emergency brake device.

[0013] The second working small drag plate can move in multiple directions and vertically through the driving of the bridge door rail line and the driving slide table; the milling cutter seat adopts at least one group of tool sleeves, and the milling cutter seat can install different tools according to needs, and the machining turning tool is located on one side of the gear box and cannot move.

[0014] Compared with the prior art, the utility model has the advantages of the following beneficial effects:

[0015] The double support plate row tool machine is a high-precision machine tool device integrating milling, turning, drilling and other processing methods, and has the processing capacity of multiple stations, multiple directions and multiple functions, and is suitable for efficient and precise processing of complex parts.

[0016] 1. Multi-station processing, flexible switching:

[0017] The device is provided with a rotating main shaft and a chuck, and the workpiece installation position can be flexibly switched according to processing needs, so as to ensure the rapid response of different processing needs.

[0018] The rotating main shaft can be used to install a workpiece alone and cooperate with a milling cutter seat and a machining turning tool to perform cutting processing.

[0019] The chuck can be used to install a workpiece, and the rotating main shaft is used to install a tool, so as to realize different processing modes.

[0020] This double-station mode can greatly improve the processing efficiency, reduce the clamping time and improve the production rhythm.

[0021] 2. Compound processing, supporting milling and turning:

[0022] The device integrates a milling cutter seat and a machining turning tool, and can complete milling, turning, drilling and other processing operations, so as to have the compound processing capacity.

[0023] Milling: The milling cutter seat can install different types of milling cutters, suitable for plane milling, bevel milling, groove milling and other machining tasks.

[0024] Turning: The processing turning tool is suitable for turning machining of external circle, end face, inner hole and the like of a rotary body workpiece.

[0025] Composite machining reduces the need for machine change and repositioning, improves machining accuracy and efficiency.

[0026] 3. Multi-directional movement, suitable for complex machining requirements:

[0027] The first working small platform and the second working small platform of the equipment both have multi-directional movement capability, which can adapt to the complex machining requirements of different workpieces.

[0028] The first working small platform is driven by the translation large platform to realize plane movement in front and back, left and right, so that the chuck can be accurately positioned.

[0029] The second working small platform can move in front and back, left and right, and vertically through the bridge door rail line and the driving slide table, ensuring high precision of milling, turning and other machining operations.

[0030] This multi-axis movement design enables the equipment to easily handle complex machining tasks of special-shaped workpieces, avoiding the limitations of single-axis machining.

[0031] 4. High-speed rotation, accurate control:

[0032] The chuck in the first working small platform adopts a multi-jaw chuck design, which is powered by a driving motor and driven through a gear shaft box to realize high-speed rotation.

[0033] The rotating main shaft also has high-speed rotation capability to ensure stable operation of the workpiece or tool.

[0034] High-speed rotation combined with multi-directional movement can complete high-precision cutting and milling, improving machining efficiency and product quality.

[0035] It is safe, and the chuck is equipped with an emergency braking device to ensure the safety and stability of the machining process. BRIEF DESCRIPTION OF DRAWINGS

[0036] Figure 1 is a structural schematic diagram of the utility model.

[0037] Figure 2 is a second perspective view schematic diagram of the utility model.

[0038] Figure 3 is a side view structural schematic diagram of the utility model.

[0039] Figure 4 is a structural schematic diagram of the first working small platform of the utility model.

[0040] Figure 5 It is the structural schematic diagram of the second working small carriage plate of the utility model.

[0041] In the figure:

[0042] Work bed foot 1, drive rail seat 2, translation big carriage plate 3, first working small carriage plate 4, first supporting plate 41, gear shaft box 42, chuck 43, drive structure 44, drive motor 45, support bridge door 5, bridge door rail 6, drive sliding table 7, second working small carriage plate 8, second supporting plate 81, gear box 82, control motor 83, milling cutter seat 84, machining turning tool 85, rotary main shaft 9. DETAILED DESCRIPTION

[0043] In order to make the personnel in the technical field better understand the utility model scheme, the technical scheme in the utility model embodiment will be clearly and completely described below, obviously, the described embodiment is only a part of the embodiment of the utility model, not all the embodiment. Based on the embodiment in the utility model, all other embodiments obtained by the ordinary skill in the art without creative labor should belong to the protection scope of the utility model.

[0044] As shown in the accompanying Figure 1 to the accompanying Figure 5 As shown.

[0045] The utility model provides a kind of double supporting plate row cutter, including work bed foot 1, drive rail seat 2, translation big carriage plate 3, first working small carriage plate 4, support bridge door 5, bridge door rail 6, drive sliding table 7, second working small carriage plate 8 and rotary main shaft 9, wherein: drive rail seat 2 is fixedly installed in the surface one end of work bed foot 1, and translation big carriage plate 3 is slidably installed on drive rail seat 2, and this first working small carriage plate 4 is slidably installed on translation big carriage plate 3;The other end of the surface of support bridge door 5 is fixedly installed in work bed foot 1, and bridge door rail 6 is fixedly installed at the top of support bridge door 5, and the drive sliding table 7 is slidably installed on bridge door rail 6;Second working small carriage plate 8 is slidably installed at one end of drive sliding table 7;Rotary main shaft 9 is installed in the inside of support bridge door 5.

[0046] First working small carriage plate 4 includes first supporting plate 41, gear shaft box 42, chuck 43, drive structure 44 and drive motor 45, and first supporting plate 41 is slidably installed on translation big carriage plate 3, and gear shaft box 42 is fixedly installed on the surface of first supporting plate 41;Chuck 43 is installed at one end of gear shaft box 42, and drive structure 44 is installed at the other end of gear shaft box 42;Drive motor 45 is fixedly installed above gear shaft box 42, and is engaged with gear shaft box 42 by drive structure 44.

[0047] The second working small carriage 8 includes a second supporting plate 81, a gear box 82, a control motor 83, a milling cutter seat 84, and a machining turning tool 85. The second supporting plate 81 is slidingly installed at one end of the driving sliding table 7, and the control motor 83 is fixedly installed above the gear box 82. The milling cutter seat 84 is rotatably installed below the gear box 82, and the machining turning tool 85 is fixedly installed at one side of the gear box 82.

[0048] The interior of the rotating spindle 9 and the chuck 43 can both be installed with tools or workpieces, but not simultaneously. When the front end of the rotating spindle 9 is installed with a workpiece, the interior of the chuck 43 is installed with a tool, and the milling cutter seat 84 and the machining turning tool 85 are used to process the workpiece at the front end of the rotating spindle 9. When the chuck 43 is installed with a workpiece, the front end of the rotating spindle 9 is installed with a tool, and the milling cutter seat 84 and the machining turning tool 85 are used to process the workpiece installed in the chuck 43.

[0049] The first working small carriage 4 can move in multiple directions by driving the translation of the large carriage 3. The chuck 43 is a multi-jaw chuck, which is driven by the driving motor 45 and rotates at high speed through the gear shaft box 42. The interior of the chuck 43 can be installed with a workpiece or a machining tool as needed. An emergency braking device is provided at one side of the chuck 43.

[0050] The second working small carriage 8 can move in multiple directions and vertically by driving the bridge door rail line 6 and the driving sliding table 7. The milling cutter seat 84 uses at least one set of tool sleeves, and can be installed with different tools as needed. The machining turning tool 85 is located at one side of the gear box 82 and cannot move.

[0051] Compared with the prior art, the device has the following advantages:

[0052] Multifunctional processing capability: The device can perform multiple processing tasks simultaneously through the cooperation of the first working small carriage 4 and the second working small carriage 8. The first working small carriage 4 is responsible for rough or preliminary processing, and the second working small carriage 8 can complete more delicate secondary or precision processing. This division of functions and cooperation can improve production efficiency and processing accuracy, reduce the need for separate equipment, and optimize the overall processing process.

[0053] Flexible switching of workpieces and tools: The cooperation of the second working small carriage 8 with the rotating spindle 9 and the chuck 43 enables the device to flexibly switch workpieces and tools during processing. Specifically, when the rotating spindle 9 is installed with a workpiece, the chuck 43 is installed with a tool, and the workpiece is processed. When the chuck 43 is installed with a workpiece, the rotating spindle 9 is installed with a tool, and the workpiece in the chuck is processed. This switching mechanism greatly improves the flexibility of processing, avoids cumbersome tool replacement, and improves overall processing efficiency.

[0054] Multi-directional movement and vertical movement: The second working small platform 8 of the device can move in multiple directions and vertically through the bridge door rail line 6 and the driving slide 7. This highly flexible movement system enables the device to adapt to various processing angles and positions, ensuring high efficiency and precision of precision machining.

[0055] Optimized space utilization and layout: By integrating the first working small platform 4 and the second working small platform 8 on the same device, the device can complete various machining tasks in limited space, reducing space waste. At the same time, the use of the rotating spindle 9 and the chuck 43 can further improve the space utilization efficiency of the device.

[0056] Improved automation and ease of operation: Each machining structure in the device can be precisely controlled by the driving system, reducing manual intervention and improving automation. In particular, the coordinated work of the first working small platform 4 and the second working small platform 8 not only improves machining precision, but also reduces the burden on operators and improves the overall ease of operation of the device.

[0057] In summary, the device has higher efficiency, precision and ease of operation compared to existing technology, especially in high-precision and multi-functional machining requirements, thanks to its flexible workpiece and tool switching, multi-directional and vertical movement, high automation and optimized space layout.

[0058] Any similar technical solution that achieves the above technical effects falls within the scope of protection of the present application.

Claims

1. Double stripper bar slitter, characterized in that: The utility model provides a workbed, which comprises a workbed leg (1), a driving track base (2), a translation large drag plate (3), a first work small drag plate (4), a support bridge door (5), a bridge door track (6), a driving slide table (7), a second work small drag plate (8) and a rotating main shaft (9), wherein: the driving track base (2) is fixedly installed on one end of the surface of the workbed leg (1), and the translation large drag plate (3) is slidably installed on the driving track base (2); the first work small drag plate (4) is slidably installed on the translation large drag plate (3); the support bridge door (5) is fixedly installed on the other end of the surface of the workbed leg (1), and the bridge door track (6) is fixedly installed on the top of the support bridge door (5); the driving slide table (7) is slidably installed on the bridge door track (6); the second work small drag plate (8) is slidably installed on one end of the driving slide table (7); and the rotating main shaft (9) is installed in the interior of the support bridge door (5).

2. The double blanket row slitter as claimed in claim 1 wherein: The first work small drag plate (4) comprises a first supporting plate (41), a pinion shaft box (42), a chuck (43), a driving structure (44) and a driving motor (45), the first supporting plate (41) is slidably installed on the translation large drag plate (3), the pinion shaft box (42) is fixedly installed on the surface of the first supporting plate (41), the chuck (43) is installed on one end of the pinion shaft box (42), the driving structure (44) is installed on the other end of the pinion shaft box (42), and the driving motor (45) is fixedly installed above the pinion shaft box (42) and is engaged with the pinion shaft box (42) through the driving structure (44).

3. The double blanket row slitter as recited in claim 1 wherein: The second work small drag plate (8) comprises a second supporting plate (81), a gear box (82), a control motor (83), a milling cutter seat (84) and a machining turning tool (85), the second supporting plate (81) is slidably installed on one end of the driving slide table (7), the control motor (83) is fixedly installed above the gear box (82), the milling cutter seat (84) is rotatably installed below the gear box (82), and the machining turning tool (85) is fixedly installed on one side of the gear box (82).

4. The double blanket row slitter as recited in claim 1 wherein: The interior of the rotating main shaft (9) and the chuck (43) can be installed with a tool or a workpiece, and the rotating main shaft (9) and the chuck (43) cannot be simultaneously installed with a tool or a workpiece; when the front end of the rotating main shaft (9) is installed with a workpiece, the interior of the chuck (43) is installed with a tool, and the milling cutter seat (84) and the machining turning tool (85) are used to process the workpiece at the front end of the rotating main shaft (9); when the chuck (43) is installed with a workpiece, the front end of the rotating main shaft (9) is installed with a tool, and the milling cutter seat (84) and the machining turning tool (85) are used to process the workpiece installed on the chuck (43).

5. The double blanket row slitter as recited in claim 2 wherein: The first work small drag plate (4) can be moved in multiple directions through the driving of the translation large drag plate (3), the chuck (43) is a multi-jaw chuck, the chuck (43) is driven by the driving motor (45) and rotates at high speed through the driving of the pinion shaft box (42), the interior of the chuck (43) can be installed with a workpiece or a machining tool as required, and an emergency braking device is arranged on one side of the chuck (43).

6. The double blanket row slitter as recited in claim 3 wherein: The second working small carriage (8) can move in multiple directions and vertically through the drive of the bridge portal track line (6) and the driving slide table (7); the milling cutter seat (84) adopts at least one set of cutter sleeve, and the milling cutter seat (84) can install different cutters according to needs, and the machining cutter (85) is located on one side of the gear box (82) and cannot move.