CN223265287U - Double-row-cutter numerical control lathe - Google Patents
Double-row-cutter numerical control latheInfo
- Publication number
- CN223265287U CN223265287U CN202422356810.2U CN202422356810U CN223265287U CN 223265287 U CN223265287 U CN 223265287U CN 202422356810 U CN202422356810 U CN 202422356810U CN 223265287 U CN223265287 U CN 223265287U
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- CN
- China
- Prior art keywords
- collecting
- frame
- double
- plate
- groove
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- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02P—CLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
- Y02P70/00—Climate change mitigation technologies in the production process for final industrial or consumer products
- Y02P70/10—Greenhouse gas [GHG] capture, material saving, heat recovery or other energy efficient measures, e.g. motor control, characterised by manufacturing processes, e.g. for rolling metal or metal working
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- Turning (AREA)
Abstract
The utility model discloses a double-cutter numerically controlled lathe which comprises a numerically controlled lathe body, a collecting assembly and a moving assembly, wherein the collecting assembly is arranged at the bottom of the numerically controlled lathe body, the moving assembly is arranged at one side of the collecting assembly, the collecting assembly comprises a collecting frame fixedly arranged at the bottom of the numerically controlled lathe body, a collecting groove is formed in the top of the collecting frame, guide plates are fixedly arranged in the collecting groove, a rotating plate and a connecting plate are rotatably arranged in the collecting frame, the connecting plate is fixedly arranged between the rotating plates, and a baffle is rotatably arranged between the rotating plates. According to the utility model, the collection assembly is arranged to temporarily store the scraps while the scraps are taken out from the collection frame, so that the situation that the double-row-cutter numerical control lathe needs to stop continuously processing the workpiece is prevented, and the processing efficiency of the double-row-cutter numerical control lathe on the workpiece is increased.
Description
Technical Field
The utility model relates to the technical field of numerically controlled lathes, in particular to a double-row-cutter numerically controlled lathe.
Background
The turning and milling is an advanced cutting and machining method which utilizes the combined motion of milling cutter rotation and workpiece rotation to realize the cutting and machining of the workpiece, so that the workpiece can meet the use requirements in various aspects such as shape precision, position precision, machined surface integrity and the like. The turning and milling combined machining is not to simply combine two machining means of turning and milling on one machine tool, but to finish machining of various surfaces by using turning and milling combined movement, and is a new cutting theory and cutting technology generated under the condition that the numerical control technology is greatly developed at present.
The common double-row-cutter numerical control lathe is generally provided with two main shafts and two rows of milling cutters to finish twice machining of parts respectively, and a scrap box is arranged at the bottom of the inclined lathe bed and used for collecting and recycling scraps, and the scraps fall into the scrap box along the inclined lathe bed.
However, after the common double-cutter numerically controlled lathe scraps box is filled, the scraps box needs to be taken out from the bottom of the double-cutter numerically controlled lathe, and at the moment, the double-cutter numerically controlled lathe needs to stop continuously processing a workpiece, so that the processing efficiency of the double-cutter numerically controlled lathe on the workpiece is reduced, and the design of the double-cutter numerically controlled lathe is needed to solve the problems.
Disclosure of utility model
The utility model aims to provide a double-row-cutter numerical control lathe which aims to solve the defects in the prior art.
In order to achieve the above object, the present utility model provides the following technical solutions:
Including numerical control lathe body, collection subassembly and removal subassembly, collection subassembly sets up numerical control lathe body bottom, remove the subassembly setting and be in collection subassembly one side:
The collecting assembly comprises a collecting frame fixedly arranged at the bottom of the numerically controlled lathe body, a collecting groove is formed in the top of the collecting frame, and a guide plate is fixedly arranged in the collecting groove;
the rotary plates are rotatably arranged in the collecting frame, and the connecting plates are fixedly arranged between the rotary plates;
The baffle, the baffle rotates to be installed between the rotor plate, the rotor plate bottom is provided with the collection structure, and the collection structure is used for at least to the collection of sweeps and to the support of rotor plate.
The collection assembly can temporarily store the scraps when the scrap boxes are taken out from the collection frame, so that the scraps are prevented from falling to other positions of the numerical control lathe body to damage the numerical control lathe body, and the machining efficiency of the double-row-cutter numerical control lathe to workpieces is improved.
The collection structure comprises movable plate, connecting block and sweeps case, square groove has been seted up to collection frame front side, movable plate slidable mounting is in the square groove, connecting block fixed mounting is in the movable plate top, the connecting block with the baffle rotates to be connected.
The mobile plate top is provided with a placing groove, the scrap box is arranged in the placing groove, one side of the scrap box is provided with a handle groove, and the collecting frame is fixedly arranged at the bottom of the numerically controlled lathe body.
The movable assembly comprises a movable frame, a movable block, a threaded column, a limiting block and a turntable, and the movable frame is fixedly arranged on one side of the collecting frame.
The movable block is arranged in the connecting groove in a sliding mode, the threaded column is rotatably arranged in the movable frame and is in threaded connection with the movable block, and the movable block is fixedly connected with the movable plate.
The limiting block is fixedly connected with the moving block, the rotary table is rotatably arranged on the front side of the moving frame, and the rotary table is connected with the threaded column.
In the technical scheme, the double-row-cutter numerical control lathe provided by the utility model has the beneficial effects that:
1. The collection assembly can temporarily store scraps when the scrap box is taken out from the collection frame, so that the situation that the double-row-cutter numerical control lathe needs to stop continuously processing a workpiece is prevented, and the processing efficiency of the double-row-cutter numerical control lathe on the workpiece is improved.
2. The collecting structure can support and fix the baffle through the rotating plate and the connecting plate, so that the stability of the baffle during use is improved.
3. The moving assembly can drive the moving plate to move, so that workers can take out the scrap box from the collecting frame conveniently.
Drawings
In order to more clearly illustrate the embodiments of the present utility model or the technical solutions in the prior art, the drawings required for the embodiments will be briefly described below, and it is apparent that the drawings in the following description are only some embodiments described in the present utility model, and other drawings may be obtained according to these drawings for a person having ordinary skill in the art.
Fig. 1 is a schematic structural diagram of a double-cutter numerically controlled lathe provided by an embodiment of the double-cutter numerically controlled lathe.
Fig. 2 is a schematic diagram of a cross-section structure of a double-cutter numerically controlled lathe according to an embodiment of the present utility model.
Fig. 3 is a schematic structural diagram of a collecting assembly provided by an embodiment of a double-row-cutter numerically controlled lathe.
Fig. 4 is a schematic diagram of a moving assembly provided by an embodiment of a double-row-cutter numerically controlled lathe according to the present utility model.
1. A numerically controlled lathe body; 2, a collecting assembly, 3, a moving assembly, 4, a collecting frame, 5, a rotating plate, 6, a connecting plate, 7, a baffle, 8, a square groove, 9, a moving plate, 10, a connecting block, 11, a placing groove, 12, a waste bin, 13, a handle groove, 14, a moving frame, 15, a moving block, 16, a threaded column, 17, a limiting block, 18, a turntable, 19, a connecting groove, 20, a limiting groove, 21, a collecting groove, 22 and a guide plate.
Detailed Description
In order to make the technical scheme of the present utility model better understood by those skilled in the art, the present utility model will be further described in detail with reference to the accompanying drawings.
As shown in fig. 1-4, the embodiment of the utility model provides a double-cutter numerically controlled lathe.
Including numerical control lathe body 1, collection subassembly 2 and remove subassembly 3, collection subassembly 2 sets up in numerical control lathe body 1 bottom, removes the subassembly 3 and sets up in collection subassembly 2 one side:
The collecting assembly 2 comprises a collecting frame 4 fixedly arranged at the bottom of the numerically controlled lathe body 1, a collecting groove 21 is formed in the top of the collecting frame 4, and a guide plate 22 is fixedly arranged in the collecting groove 21;
The collecting frame 4 is rotatably arranged in the collecting frame, and the connecting plates 6 are fixedly arranged between the rotating plates 5;
The baffle 7, the baffle 7 rotates and installs between rotor plate 5, and rotor plate 5 bottom is provided with the collection structure, and the collection structure is used for at least to the collection of sweeps and the support of rotor plate 5.
Specifically, in this embodiment, including numerical control lathe body 1, collection subassembly 2 and removal subassembly 3, collection subassembly 2 sets up in numerical control lathe body 1 bottom, and removal subassembly 3 sets up in collection subassembly 2 one side:
The collecting assembly 2 comprises a collecting frame 4 fixedly arranged at the bottom of the numerically controlled lathe body 1, a collecting groove 21 is formed in the top of the collecting frame 4, and a guide plate 22 is fixedly arranged in the collecting groove 21;
The collecting frame 4 is rotatably arranged in the collecting frame, and the connecting plates 6 are fixedly arranged between the rotating plates 5;
Baffle 7, baffle 7 rotates and installs between rotor plate 5, rotor plate 5 bottom is provided with the collection structure, and collect the structure and be used for at least to the collection of sweeps and the support of rotor plate 5, movable plate 9 drives baffle 7 through connecting block 10 and moves, baffle 7 drives rotor plate 5 and rotates, connecting plate 6 supports spacingly to baffle 7, baffle 7 stops the sweeps and keeps in, take out sweeps case 12 from standing groove 11 and change it through handle groove 13, treat that sweeps case 12 is changed and accomplish the back, refer to above-mentioned step, rotary turntable 18 drives movable plate 9 through screw thread post 16 and movable block 15 and resets, movable plate 9 drives baffle 7 through rotor plate 5 and resets, sweeps of keeping in on the baffle 7 drop to sweeps case 12.
The collection assembly 2 can temporarily store scraps when the scrap box 12 is taken out from the collection frame 4, so that the situation that the double-row-cutter numerical control lathe needs to stop continuously processing a workpiece is prevented, and the processing efficiency of the double-row-cutter numerical control lathe on the workpiece is improved.
Referring to fig. 3, the collecting structure of the present embodiment is composed of a moving plate 9, a connecting block 10 and a scrap box 12, a square groove 8 is formed in the front side of the collecting frame 4, the moving plate 9 is slidably mounted in the square groove 8, the connecting block 10 is fixedly mounted on the top of the moving plate 9, and the connecting block 10 is rotatably connected with the baffle 7.
The collecting structure can support and fix the baffle 7 through the rotating plate 5 and the connecting plate 6, so that the stability of the baffle 7 during use is improved.
The standing groove 11 has been seted up at movable plate 9 top, and sweeps case 12 sets up in standing groove 11, and handle groove 13 has been seted up to sweeps case 12 one side, and collection frame 4 fixed mounting is in the bottom of numerical control lathe body 1.
The scrap box 12 is capable of collecting scrap, thereby facilitating the handling of scrap by workers.
Referring to fig. 4, the moving assembly 3 of the present embodiment includes a moving frame 14, a moving block 15, a threaded post 16, a limiting block 17 and a turntable 18, where the moving frame 14 is fixedly installed on one side of the collecting frame 4, the turntable 18 is rotated by hand, the turntable 18 drives the moving block 15 through the threaded post 16, the moving block 15 drives the moving plate 9 to move, and the moving plate 9 drives the scrap box 12 to move.
The moving assembly 3 can drive the moving plate 9 to move, so that workers can conveniently take the scrap box 12 out of the collecting frame 4.
A connecting groove 19 is formed between the moving frame 14 and the collecting frame 4, the moving block 15 is slidably arranged in the connecting groove 19, a threaded column 16 is rotatably arranged in the moving frame 14, the threaded column 16 is in threaded connection with the moving block 15, and the moving block 15 is fixedly connected with the moving plate 9.
A limiting groove 20 is formed in the moving frame 14, a limiting block 17 is slidably mounted in the limiting groove 20, the limiting block 17 is fixedly connected with the moving block 15, a rotary table 18 is rotatably mounted on the front side of the moving frame 14, and the rotary table 18 is connected with the threaded column 16.
The limiting block 17 can conduct guiding limiting on the moving block 15, so that stability of the moving block 15 during moving is improved.
The working principle is that scraps are guided to fall into the scraps box 12 by the guide plate 22 through the collecting groove 21 from the numerically controlled lathe body 1, after the scraps in the scraps box 12 are collected, the rotating disc 18 is held to rotate, the rotating disc 18 drives the moving block 15 to move through the threaded column 16, the moving block 15 drives the moving plate 9 to move, the moving plate 9 drives the scraps box 12 to move, the moving plate 9 drives the baffle 7 to move through the connecting block 10, the baffle 7 drives the rotating plate 5 to rotate, the connecting plate 6 supports and limits the baffle 7, the baffle 7 blocks and temporarily stores the scraps, the scraps box 12 is taken out of the placing groove 11 through the handle groove 13 and is replaced, after the scraps box 12 is replaced, the rotating disc 18 drives the moving plate 9 to reset through the threaded column 16 and the moving block 15, the moving plate 9 drives the baffle 7 to reset through the rotating plate 5, and the scraps temporarily stored on the baffle 7 fall into the scraps box 12.
While certain exemplary embodiments of the present utility model have been described above by way of illustration only, it will be apparent to those of ordinary skill in the art that modifications may be made to the described embodiments in various different ways without departing from the spirit and scope of the utility model. Accordingly, the drawings and description are to be regarded as illustrative in nature and not as restrictive of the scope of the utility model, which is defined by the appended claims.
Claims (6)
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202422356810.2U CN223265287U (en) | 2024-09-26 | 2024-09-26 | Double-row-cutter numerical control lathe |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202422356810.2U CN223265287U (en) | 2024-09-26 | 2024-09-26 | Double-row-cutter numerical control lathe |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| CN223265287U true CN223265287U (en) | 2025-08-26 |
Family
ID=96804363
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| CN202422356810.2U Active CN223265287U (en) | 2024-09-26 | 2024-09-26 | Double-row-cutter numerical control lathe |
Country Status (1)
| Country | Link |
|---|---|
| CN (1) | CN223265287U (en) |
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2024
- 2024-09-26 CN CN202422356810.2U patent/CN223265287U/en active Active
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