CN211842362U - Multi-spindle synchronous machining sliding table component - Google Patents
Multi-spindle synchronous machining sliding table component Download PDFInfo
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- CN211842362U CN211842362U CN201921892842.7U CN201921892842U CN211842362U CN 211842362 U CN211842362 U CN 211842362U CN 201921892842 U CN201921892842 U CN 201921892842U CN 211842362 U CN211842362 U CN 211842362U
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- carriage
- linear rail
- pair
- spindle
- component
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Abstract
The utility model discloses a multi-spindle synchronous processing sliding table component, which is connected on the rear end surface of a lathe bed and comprises an upper planker, a lower planker, a front planker, a rear planker, a fourth track pair and a third ball screw component; the front carriage and the rear carriage are arranged above the upper end surfaces of the upper carriage and the lower carriage and are connected to a fourth linear rail pair between the upper end surfaces of the front carriage, the rear carriage and the upper carriage; more than 2 pairs of fifth linear rail pairs in the front-back direction are arranged on the upper end surfaces of the front-back dragging plate, and each pair of fifth linear rail pairs is provided with 1 horizontal motor spindle part; a cylinder for driving the horizontal motor spindle part to move back and forth on the fifth linear rail pair is arranged between the linear rails of each pair of fifth linear rail pairs; the further improvement lies in that: two side surfaces of the front and rear plankers are respectively provided with a vertical motor spindle part; the front end of the 1 horizontal motor spindle part is provided with a right-angle saw motor part. The utility model discloses can accomplish multiple cutter synchronous processing simultaneously, show and reduce administrative cost, potential safety hazard, processing accumulative error saves, and the machining precision is high.
Description
Technical Field
The utility model relates to a wood working machine technical field, specifically say, relate to a carpenter processing equipment slip table part.
Background
The existing stile and tenon mortise processing equipment is generally provided with a sliding table component, and the sliding table component is fed by a cutter of the sliding table component to complete processing. The existing stile and tenon mortise processing machine is generally provided with 1 sliding table part to finish single and single-step operation, different devices with single function are arranged in a larger space to finish the processing equipment of the wood components with different processes, the production efficiency is low, the management cost is high, the potential safety hazard is large, and the accumulated error of processing on different devices is large.
Disclosure of Invention
The utility model discloses to prior art's not enough, provide one kind and can accomplish the synchronous processing slip table part of many main shafts of multiple cutter processing simultaneously.
The utility model discloses a technical goal is realized to following technical scheme.
The multi-spindle synchronous machining sliding table component is connected to the rear end face of the lathe bed and comprises an upper dragging plate, a lower dragging plate, a front dragging plate, a rear dragging plate, a fourth linear rail pair and a third ball screw component; the front carriage and the rear carriage are arranged above the upper end surfaces of the upper carriage and the lower carriage, are connected to a fourth linear rail pair between the upper end surfaces of the front carriage, the rear carriage and the upper end surfaces of the upper carriage and the lower carriage, and are driven by a third ball screw component to move back and forth; the improvement is that: more than 2 fifth linear rail pairs in the front-back direction are arranged on the upper end surfaces of the front-back dragging plate, and each fifth linear rail pair is provided with 1 horizontal motor spindle part; and an air cylinder for driving the horizontal motor spindle part to move back and forth on the fifth linear rail pair is arranged between the linear rails of each pair of fifth linear rail pairs.
In the structure, 1 pair of sixth linear rail pairs in the front and back direction are respectively arranged on two side surfaces of the front and back plankers, and 1 vertical motor spindle component with a spindle axis vertically arranged is arranged on each sixth linear rail pair; a cylinder for driving the vertical motor spindle part to move back and forth on the sixth linear rail pair is arranged between the linear rails of each pair of sixth linear rail pairs; and a first saw-milling cutter with a vertically arranged central axis is arranged on the spindle at the upper end of the vertical motor spindle part.
In the structure, the front end of 1 horizontal motor spindle unit is provided with a right-angle saw motor unit; and a second saw milling cutter with a horizontal central axis is arranged on the spindle of the right-angle saw motor component.
The motor of the vertical motor spindle part is a high-power motor.
Compared with the prior art, the utility model, following positive effect has:
1. more than 2 pairs of fifth linear rail pairs in the front-back direction are arranged on the upper end surfaces of the front-back dragging plate, and each pair of fifth linear rail pairs is provided with 1 horizontal motor spindle part; and an air cylinder for driving the horizontal motor spindle part to move back and forth on the fifth linear rail pair is arranged between the linear rails of each pair of fifth linear rail pairs. Therefore, more than 2 horizontal motor spindle parts can be arranged on the upper end surfaces of the front and rear dragging plates, and synchronous processing of various different cutters can be completed by matching different cutters, so that the production efficiency is remarkably improved, the management cost and potential safety hazards are remarkably reduced, the accumulated error is remarkably reduced, and the processing precision is remarkably improved.
2. Two side surfaces of the front and rear dragging plates are respectively provided with 1 pair of sixth linear rail pairs in the front and rear direction, and the sixth linear rail pairs are provided with 1 vertical motor spindle component with a spindle axis vertically arranged; a cylinder for driving the vertical motor spindle part to move back and forth on the sixth linear rail pair is arranged between the linear rails of each pair of sixth linear rail pairs; the spindle at the upper end of the spindle part of the driving vertical motor is provided with a first saw-milling cutter with a vertically arranged central axis. The motor of the vertical motor spindle component is a high-power motor, so that the sawing motion can be performed by using the first sawing and milling cutter with the central axis vertically arranged to complete the sawing in one direction, and the cutting depth and the rigidity are ensured by the high-power motor.
3. The front end of 1 horizontal motor spindle part is provided with a right-angle saw motor part; and a second saw milling cutter with a horizontal central axis is arranged on the spindle of the right-angle saw motor component. Therefore, the second saw milling cutter with the central axis transversely arranged can be used for carrying out sawing movement, and sawing in the other direction is completed.
Drawings
Fig. 1 is a schematic structural diagram of the present invention.
Fig. 2 is a left side view of fig. 1.
Fig. 3 is a top view of fig. 1.
Detailed Description
The invention will be further explained with reference to the following embodiments according to the attached drawings.
The multi-spindle synchronous processing sliding table component shown in the attached drawing is connected to the rear end face of a machine body and comprises an upper carriage 41, a lower carriage 41, a front carriage 42, a rear carriage 42, a fourth linear rail pair 43 and a third ball screw component 44; the front and rear carriages 42 are disposed above the upper end surfaces of the upper and lower carriages 41, connected to a fourth linear rail pair 43 between the upper end surfaces of the front and rear carriages 42 and the upper and lower carriages 41, and are driven to move forward and backward by a third ball screw member 44.
4 pairs of fifth linear rail pairs 45 in the front-back direction are arranged on the upper end surface of the front-back dragging plate 42 (in other embodiments, 2-3 or more than 4 pairs of fifth linear rail pairs 45 in the front-back direction are arranged on the upper end surface of the front-back dragging plate 42), and 1 horizontal motor spindle part 46 is arranged on each pair of fifth linear rail pairs 45; and an air cylinder for driving the horizontal motor spindle part 46 to move back and forth on the fifth linear rail pair 45 is arranged between the linear rails of each pair of fifth linear rail pairs 45.
Two side surfaces of the front and rear dragging plate 42 are respectively provided with 1 pair of sixth linear rail pairs 48 in the front and rear direction, the sixth linear rail pairs 48 are provided with 1 vertical motor spindle part 47 with a spindle axis vertically arranged, in the embodiment, the motor of the vertical motor spindle part 47 is a high-power motor; an air cylinder for driving the vertical motor spindle component 47 to move back and forth on the sixth linear rail pair 48 is arranged between the linear rails of each pair of sixth linear rail pairs 48; the spindle at the upper end of the vertical motor spindle component 47 is provided with a first saw-milling cutter 49 with a vertical central axis.
The front end of the 1 horizontal motor spindle part 46 is provided with a right-angle saw motor part 50; the main shaft of the right-angle saw motor part 50 is provided with a second saw milling cutter 50.1 with a horizontal central axis.
Claims (4)
1. A multi-spindle synchronous processing sliding table component is connected to the rear end face of a machine body and comprises an upper carriage, a lower carriage, a front carriage, a rear carriage, a fourth track pair and a third ball screw component, wherein the upper carriage is (41), the rear carriage is (42), the fourth track pair is (43), and the third ball screw component is (44); the front carriage and the rear carriage (42) are arranged above the upper end surfaces of the upper carriage and the lower carriage (41), are connected to a fourth linear rail pair (43) between the upper end surfaces of the front carriage and the rear carriage (42) and the upper end surfaces of the upper carriage and the lower carriage (41), and are driven by a third ball screw component (44) to move back and forth; the method is characterized in that: more than 2 fifth linear rail pairs (45) in the front-back direction are arranged on the upper end surface of the front-back dragging plate (42), and 1 horizontal motor spindle part (46) is arranged on each fifth linear rail pair (45); and an air cylinder for driving the horizontal motor spindle part (46) to move back and forth on the fifth linear rail pair (45) is arranged between the linear rails of each pair of fifth linear rail pairs (45).
2. The multi-spindle synchronous processing slide table component of claim 1, wherein: two side surfaces of the front and rear dragging plates (42) are respectively provided with 1 pair of sixth linear rail pairs (48) in the front and rear direction, and the sixth linear rail pairs (48) are provided with 1 vertical motor spindle component (47) with a spindle axis vertically arranged; an air cylinder for driving the vertical motor spindle part (47) to move back and forth on the sixth linear rail pair (48) is arranged between the linear rails of each pair of sixth linear rail pairs (48); and a first saw milling cutter (49) with a vertical central axis is arranged on the spindle at the upper end of the vertical motor spindle component (47).
3. The multi-spindle synchronous processing slide table component according to claim 1 or 2, wherein: the front end of 1 horizontal motor spindle part (46) is provided with a right-angle saw motor part (50); and a second saw milling cutter (50.1) with a horizontal central axis is arranged on a main shaft of the right-angle saw motor component (50).
4. The multi-spindle synchronous processing slide table component of claim 2, wherein: the motor of the vertical motor spindle part (47) is a high-power motor.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201921892842.7U CN211842362U (en) | 2019-11-05 | 2019-11-05 | Multi-spindle synchronous machining sliding table component |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201921892842.7U CN211842362U (en) | 2019-11-05 | 2019-11-05 | Multi-spindle synchronous machining sliding table component |
Publications (1)
Publication Number | Publication Date |
---|---|
CN211842362U true CN211842362U (en) | 2020-11-03 |
Family
ID=73218307
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
CN201921892842.7U Expired - Fee Related CN211842362U (en) | 2019-11-05 | 2019-11-05 | Multi-spindle synchronous machining sliding table component |
Country Status (1)
Country | Link |
---|---|
CN (1) | CN211842362U (en) |
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2019
- 2019-11-05 CN CN201921892842.7U patent/CN211842362U/en not_active Expired - Fee Related
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Legal Events
Date | Code | Title | Description |
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GR01 | Patent grant | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20201103 Termination date: 20211105 |