CN203380971U - Multifunctional numerical control all-in-one machine with woodworking lathe and carving functions - Google Patents

Multifunctional numerical control all-in-one machine with woodworking lathe and carving functions Download PDF

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Publication number
CN203380971U
CN203380971U CN201320362349.0U CN201320362349U CN203380971U CN 203380971 U CN203380971 U CN 203380971U CN 201320362349 U CN201320362349 U CN 201320362349U CN 203380971 U CN203380971 U CN 203380971U
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seat
housed
tool
driven
engraving
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CN201320362349.0U
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Chinese (zh)
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李波
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GAOMISHI RILETT CNC MACHINERY Co Ltd
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GAOMISHI RILETT CNC MACHINERY Co Ltd
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Abstract

The utility model discloses a multifunctional numerical control all-in-one machine with woodworking lathe and carving functions. The all-in-one machine comprises a rack, wherein a front fixed seat and a rear positioning seat are correspondingly arranged on the rack is provided with a front fixed seat and a rear positioning seat which are correspondingly arranged front and back; a front positioning rod is connected to the front fixed seat; a rear rotating rod matched with the front positioning rod is connected to the rear positioning seat; a sliding seat is connected to the rack in a sliding way; two opposite tool aprons are arranged on the sliding seat, and are driven by a transverse driving motor respectively; a lathe tool is connected to the left tool apron, a broaching tool, a milling tool and a carver are connected to the right tool apron, and the milling tool and the carver are driven by a machining motor; a driven gear is also arranged on the rear part of the rear rotating rod; a lifting seat is connected to the rear positioning seat in the sliding way; a driving shaft driven by a carving servo motor is connected to the lifting seat in a rotating way; a driving gear corresponding to the driven gear is arranged on the driving shaft. According to the all-in-one machine, a woodworked workpiece can be positioned once to realize turning, carving, groove milling and broaching, so that the machining accuracy and the machining quality of the woodworked workpiece are greatly improved.

Description

A kind of numerical-control wood processing lathe, engraving all-in-one multifunctional machine
Technical field
The utility model relates to a kind of numerical-control wood processing lathe, engraving all-in-one multifunctional machine.
Background technology
The revolving body parts that arrange on the Rome column of using on stair, engraving handrail and various top-grade furniture all adopt existing wood-turning machine and wood-worker engraving machine to complete.In the prior art, wood-turning machine comprises frame, on frame, correspondence is provided with the front and back clamping column, carpenter's workpiece is placed between the clamping column of front and back and clamps by clamping positioning mechanism, drive the rotation of carpenter's workpiece by actuating unit, a side at carpenter's workpiece arranges lathe tool, can realize the carrousel processing of this carpenter's workpiece, after machining, place it in again on wood-worker engraving machine, wood-worker engraving machine is provided with two clamping columns by driven by servomotor, after carpenter's workpiece is placed between two clamping columns, by the engraving member that is arranged on this engraving machine top, this carpenter's workpiece is carved.By said process, can find out, processing to this carpenter's workpiece need to be carried out twice location, thereby produce deviation while easily causing twice of carpenter's workpiece location, decentraction while being Vehicle Processing and engraving, thereby affect the crudy of carpenter's workpiece, and processing this carpenter's workpiece needs wood-turning machine and two machines of engraving machine and two cover operation sequences, thereby has increased operating cost and production cost.
The utility model content
The utility model for the problems referred to above provide that a kind of one-time positioning can machine carpenter's workpiece, numerical-control wood processing lathe, the engraving all-in-one multifunctional machine of engraving and garland.
In order to solve the problems of the technologies described above, the utility model provides a kind of numerical-control wood processing lathe of following structure, the engraving all-in-one multifunctional machine, it comprises frame, corresponding front holder and the rear positioning seat arranged before and after being equipped with on frame, on front holder, longitudinal sliding motion is connected with the prelocalization bar driven by the clamping power set, be rotatably connected to the rear dwang that coordinates clamping work pieces with the prelocalization bar on rear positioning seat, the actuating unit that after driving, dwang rotates is housed on rear positioning seat, slidably connect on frame by Longitudinal mechanism and drive the slide slided along stands longitudinal, its design feature is: be equipped with on slide respectively and drive by horizontal drive motor two tool rests that relatively arrange that laterally slide along slide, wherein on the tool rest in left side, be connected with lathe tool, be connected with broaching tool on the tool rest on right side and by processing motor-driven milling cutter and graver, driven gear also is equipped with at the rear portion of rear dwang, slidably connect the elevating bracket driven by elevating mechanism on rear positioning seat, be rotatably connected to the driving shaft by the engraving driven by servomotor on elevating bracket, the driving gear corresponding with driven gear is housed on driving shaft.
After adopting said structure, when elevating bracket falls, the right side tool rest under the driving of horizontal drive motor away from workpiece, lathe tool on the tool rest of left side can form turner to workpiece, by horizontal drive motor, drive the left side tool rest advance or retreat the depth of cut that can determine lathe tool, after actuating unit drives, dwang rotates, and cooperation Longitudinal mechanism driving slide drives tool rest and advances, thereby realizes the Vehicle Processing of workpiece, when drive elevating bracket to rise by elevating mechanism, thereby the driving gear on the engraving servomotor and the engagement of the driven gear on rear dwang can accurately drive rear dwang to turn an angle, drive tool rest to advance or retreat by horizontal drive motor and can determine broaching tool, the depth of cut of milling cutter or graver, broaching tool, each is driven milling cutter and graver and is carried out garland or engraving operation by the processing motor power, coordinate broaching tool, milling cutter and graver carry out garland, groove milling and engraving operation, and Longitudinal mechanism drives slide to move forward and backward, driving tool rest moves forward and backward, broaching tool like this, milling cutter and graver can carry out the movement of portraitlandscape when self rotates, by rear dwang turning of work piece, realize meticulous garland and engraving operation, the utility model just can machine workpiece by one-time positioning, garland, groove milling and engraving, thereby simple in structure and improved the machining accuracy of carpenter's workpiece.
The gripper shoe slidably connected by the lifting of transposition air cylinder driven is housed on the tool rest on described right side, slidably connect the vertical sliding seat by vertical air cylinder driven on gripper shoe, on vertical sliding seat, the slip tool rest that can connect broaching tool is housed, the bottom of gripper shoe also slidably connects by lateral cylinder and drives the horizontal sliding seat laterally slided, laterally on sliding seat, be connected with two processing tool rests of vertically arranging, described milling cutter and graver are arranged on respectively on two processing tool rests.
Anti-shake bearing is housed on described slide, and anti-shake bearing is provided with the through hole passed for workpiece, and anti-shake bearing is housed on through hole.
Automatic feed mechanism also is housed on described frame.
Described automatic feed mechanism comprises the prelocalization seat be connected on slide, the front picking-up cylinder of stretching is housed on the prelocalization seat, on the piston rod of stretching on front picking-up cylinder, front rack is housed, the rear portion of frame slidably connects the lower skateboard by the material loading air cylinder driven, rear picking-up cylinder is housed on lower skateboard, on the piston rod of stretching on rear picking-up cylinder, tail-bracket is housed.
Described clamping power dress comprises the handle that is hinged on front holder front portion, and the rear portion power of prelocalization bar is hinged on handle, and the reach out positioning cylinder at backstay rear portion of piston rod also is housed on described prelocalization seat.
The rearward end of described prelocalization bar is provided with that to be positioned at its supercentral prelocalization cone protruding, and the leading section of rear dwang also is provided with that to be positioned at its supercentral rear locating cone protruding, and the leading section of the rear dwang projection that also has been periphery hooks pawl.
In sum, the utility model integrates numerical-control wood processing lathe and numerical controlled solid carving machine, by being carried out to one-time positioning, carpenter's workpiece can realize Vehicle Processing, engraving, groove milling and garland, greatly improve machining accuracy and the crudy of carpenter's workpiece, reduced equipment cost and the human cost of enterprise; And no longer need the workpiece turnover between Vehicle Processing and engraving by this machine, saved the factory building land used and improved efficiency.
The accompanying drawing explanation
Fig. 1 is the structural representation of a kind of embodiment of the present utility model;
Fig. 2 is the structural representation that Fig. 1 overlooks direction;
Fig. 3 is the schematic diagram along in Fig. 1, the A-A line is analysed and observe;
Fig. 4 analyses and observe along B-B line in Fig. 1 the schematic diagram that removes anti-shake bearing.
The specific embodiment
Below in conjunction with accompanying drawing, the specific embodiment of the present utility model is described in further detail:
As shown in drawings, numerical-control wood processing lathe provided by the utility model, the engraving all-in-one multifunctional machine comprises frame 1, corresponding front holder 2 and the rear positioning seat 3 arranged before and after being equipped with on frame 1, on front holder 2, longitudinal sliding motion is connected with the prelocalization bar 4 driven by the clamping power set, be rotatably connected to the rear dwang 5 that coordinates clamping work pieces with prelocalization bar 4 on rear positioning seat 3, these clamping power set comprise the handle 23 that is hinged on front holder 2 front portions, the rear portion power of prelocalization bar 4 is hinged on handle 23, the reach out positioning cylinder 24 at backstay 4 rear portions of piston rod also is housed on described prelocalization seat 2, when carpenter's workpiece is between prelocalization bar 4 and rear dwang 5, first by handle 23, driving prelocalization bar 4 to rely on backward carpenter's workpiece clamps in advance, by positioning cylinder 24, it is held out against again, also can be according to operation requirement, directly adopt positioning cylinder 24 that it is held out against, adopting the pre-benefit clamped to be can manual observation and adjust in the clamping process of carpenter's workpiece, prevent prelocalization bar 4 and rear dwang 5 decentraction, thereby avoided carpenter's workpiece clinoid in rotary course, thereby improve Vehicle Processing and engraving, groove milling, the machining accuracy of garland.Slidably connect on frame 1 by Longitudinal mechanism and drive the slide 6 slided along stands longitudinal, this Longitudinal mechanism is the servo longitudinal motor 28 be arranged on frame 1, slide 6 is slidably connected on frame by the matching mechanism of guide rail slide block, also be rotatably connected to the longitudinal leadscrew 30 of vertical setting on frame, be rotatably connected to the vertical nut 31 be screwed onto on longitudinal leadscrew 30 on slide, be equipped with on slide 6 respectively and drive by horizontal drive motor 29 two tool rests 8 that relatively arrange that laterally slide along slide 6, tool rest 8 laterally is slidably connected on slide by the syndeton of slide block guide rail, also be rotatably connected to the horizontal leading screw 32 of horizontally set on slide, the horizontal screw 33 be screwed onto on horizontal leading screw 32 is housed respectively on two tool rests, wherein on the tool rest 8 of left side, be connected with lathe tool, the milling cutter and the graver that are connected with broaching tool on right side tool rest 8 and are driven by processing motor 42, horizontal drive motor 29 is equipped with respectively on left side and right side, drive respectively tool rest 8 motions on left side and right side.
As depicted in figs. 1 and 2, the rearward end of prelocalization bar 4 is provided with and is positioned at its supercentral prelocalization and bores protruding 25, the leading section of rear dwang 5 also is provided with and is positioned at its supercentral rear locating cone protruding 26, the leading section of rear dwang 5 projection that also has been periphery hooks pawl 27, locating cone protruding arranging in front and back can make location more accurate, location coaxial line before and after guaranteeing, effectively guarantee the stationarity that carpenter's workpiece rotates, after carpenter's workpiece is clamped, projection hooks pawl 27 can catch carpenter's workpiece firmly, make carpenter's workpiece subsequently dwang 5 rotation and rotate.Anti-shake bearing 14 is housed on slide 6, anti-shake bearing 14 is provided with the through hole 15 passed for workpiece, anti-shake bearing 16 is housed on through hole 15, carpenter's workpiece of installing is being added man-hour, advancing or retreating along with slide 6, carpenter's workpiece can be in the interior rotation of anti-shake bearing 16 of through hole, thereby avoids, because adding carpenter's workpiece fracture in man-hour or clamping the phenomenon that the not firm carpenter's of causing workpiece throws away, effectively having guaranteed operator's safety.
As depicted in figs. 1 and 2, the actuating unit that after driving, dwang 5 rotates is housed on rear positioning seat 3, this actuating unit is rack-mounted drive motors 34, rear dwang 5 passes through belt with the power output shaft of drive motors 34, belt pulley is in transmission connection, driven gear 36 also is equipped with at the rear portion of rear dwang 5, slidably connect the elevating bracket 9 driven by elevating mechanism on rear positioning seat 3, be rotatably connected to the driving shaft driven by engraving servomotor 41 on elevating bracket 9, the driving gear corresponding with driven gear 37 is housed on driving shaft, this elevating mechanism is rack-mounted lift cylinder 35.
As shown in Figure 1, Figure 3 and Figure 4, be equipped with on the tool rest 8 on right side and slidably connect the gripper shoe 10 that is driven lifting by transposition cylinder 40, slidably connect the vertical sliding seat 11 driven by vertical cylinder 38 on gripper shoe 10, on vertical sliding seat 11, the slip tool rest 12 that can connect broaching tool is housed, the bottom of gripper shoe 10 also slidably connects by lateral cylinder 39 and drives the horizontal sliding seat 13 laterally slided, laterally on sliding seat 13, be connected with two processing tool rests of vertically arranging, described milling cutter and graver are arranged on respectively on two processing tool rests, when the utility model carries out the machined of carpenter's workpiece again, the tool rest 8 in left side first inwardly relies on carpenter's workpiece under the driving of horizontal drive motor, drive the rotation of carpenter's workpiece by drive motors 34, thereby machine, after Vehicle Processing completes, horizontal drive motor drives the tool rest 8 in left side outwards to exit, the tool rest 8 on right side inwardly relies on carpenter's workpiece under the driving of its horizontal drive motor, when vertical sliding seat 11 falls under the driving of vertical cylinder, the broaching tool that makes to slide on tool rest 12 is aimed at carpenter's workpiece, now lateral cylinder 39 drives horizontal sliding seat 13 away from carpenter's workpiece, be that graver or milling cutter are away from carpenter's workpiece, thereby can carry out the garland operation, when driving horizontal sliding seat 13, lateral cylinder 39 relies on carpenter's workpiece, vertical sliding seat 11 rises under the driving of vertical cylinder, the broaching tool slided on tool rest 12 is away from carpenter's workpiece, graver or milling cutter can be carved operation to carpenter's workpiece, drive whole gripper shoe 10 liftings by transposition cylinder 40, can make milling cutter or graver respectively carpenter's workpiece be carved or groove milling, in like manner, can a plurality of processing tool rests of vertically arranging be set at horizontal sliding seat 13, on each processing tool rest, different gravers or milling cutter are set, can realize difform artistic carving, above-mentioned broaching tool, the amount of feeding of milling cutter and graver all comes in accurately to determine before the tool rest 8 by horizontal drive motor 29 driving right sides.
As shown in Figure 2 and Figure 4, on the tool rest 8 in left side, lower bottom base 81 and upper connecting base 82 can also be installed, lower bottom base 81 can weld or adopt the mode of being spirally connected and tool rest 8 to fix as one, the central part of upper connecting base 82 is connected on lower bottom base 81 by bolt, also be provided with a plurality of slotted holes on lower bottom base 81, upper connecting base 82 links together by connecting bolt and lower bottom base 81, be connected with the mount pad that lathe tool can be installed on upper connecting base 82, the benefit of this syndeton is, after unclamping connecting bolt, can make upper connecting base 82 rotate around bolt, adjust the angle of lathe tool, so that better machine.
As depicted in figs. 1 and 2, automatic feed mechanism also is housed on frame 1, this automatic feed mechanism comprises the prelocalization seat 17 be connected on slide 6, the front picking-up cylinder 18 of stretching is housed on prelocalization seat 17, on the piston rod of stretching on front picking-up cylinder 18, front rack 19 is housed, the rear portion of frame 1 slidably connects the lower skateboard 20 driven by material loading cylinder 43, rear picking-up cylinder 22 is housed on lower skateboard 20, on the piston rod of stretching on rear picking-up cylinder 22, tail-bracket 21 is housed, front rack 19 and tail-bracket 21 all are the V font of opening upwards, thereby can better hold up carpenter's workpiece, the rear portion that material loading cylinder 43 drives lower skateboards 20 to advance can to make carpenter's workpiece is positioned at the below of rear dwang 5 front portions accurately, after picking-up completes, material loading cylinder 43 drives lower skateboard 20 to retreat, can effectively prevent when carrying out the machined of carpenter's workpiece process tool and should after hold up between cylinder 22 and interfere.
The action of above-mentioned each servomotor and cylinder is all by the PLC electrical control, and its control structure and principle are all prior art, do not repeat them here.
The above is specific constructive form of the present utility model; the utility model is not restricted to the described embodiments; the art personnel, the equivalent variations based on concrete structure on the utility model and parts are replaced all in protection domain of the present utility model.

Claims (7)

1. a numerical-control wood processing lathe, the engraving all-in-one multifunctional machine, comprise frame (1), corresponding front holder (2) and the rear positioning seat (3) arranged before and after being equipped with on frame (1), the upper longitudinal sliding motion of front holder (2) is connected with the prelocalization bar (4) driven by the clamping power set, be rotatably connected to the rear dwang (5) that coordinates clamping work pieces with prelocalization bar (4) on rear positioning seat (3), the actuating unit that after driving, dwang (5) rotates is housed on rear positioning seat (3), slidably connect on frame (1) by Longitudinal mechanism and drive the slide (6) slided along stands longitudinal, it is characterized in that: be equipped with on slide (6) respectively and drive by horizontal drive motor two tool rests (8) that relatively arrange that laterally slide along slide (6), wherein on the tool rest (8) in left side, be connected with lathe tool, the upper broaching tool of the tool rest on right side (8) and by the motor-driven milling cutter of processing and graver, driven gear also is equipped with at the rear portion of rear dwang (5), slidably connect the elevating bracket (9) driven by elevating mechanism on rear positioning seat (3), be rotatably connected to the driving shaft by the engraving driven by servomotor on elevating bracket (9), the driving gear corresponding with driven gear is housed on driving shaft.
2. numerical-control wood processing lathe as claimed in claim 1, the engraving all-in-one multifunctional machine, it is characterized in that: the gripper shoe (10) slidably connected by the lifting of transposition air cylinder driven is housed on the tool rest on described right side (8), slidably connect the vertical sliding seat (11) by vertical air cylinder driven on gripper shoe (10), on vertical sliding seat (11), the slip tool rest (12) that can connect broaching tool is housed, the bottom of gripper shoe (10) also slidably connects by lateral cylinder and drives the horizontal sliding seat (13) laterally slided, laterally on sliding seat (13), be connected with two processing tool rests of vertically arranging, described milling cutter and graver are arranged on respectively on two processing tool rests.
Numerical-control wood processing lathe as claimed in claim 1, the engraving all-in-one multifunctional machine, it is characterized in that: anti-shake bearing (14) is housed on described slide (6), anti-shake bearing (14) is provided with the through hole (15) passed for workpiece, and anti-shake bearing (16) is housed on through hole (15).
Numerical-control wood processing lathe as described as any one in claim 1-3, the engraving all-in-one multifunctional machine, it is characterized in that: described frame also is equipped with automatic feed mechanism on (1).
5. numerical-control wood processing lathe as claimed in claim 4, the engraving all-in-one multifunctional machine, it is characterized in that: described automatic feed mechanism comprises the prelocalization seat (17) be connected on slide (6), the front picking-up cylinder (18) of stretching is housed on prelocalization seat (17), front rack (19) is housed on the piston rod of stretching on front picking-up cylinder (18), the rear portion of frame (1) slidably connects the lower skateboard (20) by the material loading air cylinder driven, rear picking-up cylinder (22) is housed on lower skateboard (20), tail-bracket (21) is housed on the piston rod of stretching on rear picking-up cylinder (22).
Numerical-control wood processing lathe as claimed in claim 4, the engraving all-in-one multifunctional machine, it is characterized in that: described clamping power dress comprises the handle (23) that is hinged on front holder (2) front portion, it is upper that the rear portion power of prelocalization bar (4) is hinged on handle (23), and the reach out positioning cylinder (24) at backstay (4) rear portion of piston rod also is housed on described prelocalization seat (2).
Numerical-control wood processing lathe as claimed in claim 1, the engraving all-in-one multifunctional machine, it is characterized in that: the rearward end of described prelocalization bar (4) is provided with and is positioned at its supercentral prelocalization cone protruding (25), the leading section of rear dwang (5) also is provided with and is positioned at its supercentral rear locating cone protruding (26), and the leading section of rear dwang (5) projection that also has been periphery hooks pawl (27).
CN201320362349.0U 2013-06-24 2013-06-24 Multifunctional numerical control all-in-one machine with woodworking lathe and carving functions Withdrawn - After Issue CN203380971U (en)

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CN201320362349.0U CN203380971U (en) 2013-06-24 2013-06-24 Multifunctional numerical control all-in-one machine with woodworking lathe and carving functions

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Application Number Priority Date Filing Date Title
CN201320362349.0U CN203380971U (en) 2013-06-24 2013-06-24 Multifunctional numerical control all-in-one machine with woodworking lathe and carving functions

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CN201320362349.0U Withdrawn - After Issue CN203380971U (en) 2013-06-24 2013-06-24 Multifunctional numerical control all-in-one machine with woodworking lathe and carving functions

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103286831A (en) * 2013-06-24 2013-09-11 高密市瑞力特数控设备有限公司 Numerical control woodworking lathe and carving multifunctional all-in-one machine
CN107009792A (en) * 2017-05-19 2017-08-04 温州上欣科技有限公司 Full-automatic engraving machine

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103286831A (en) * 2013-06-24 2013-09-11 高密市瑞力特数控设备有限公司 Numerical control woodworking lathe and carving multifunctional all-in-one machine
CN103286831B (en) * 2013-06-24 2015-02-04 高密市瑞力特数控设备有限公司 Numerical control woodworking lathe and carving multifunctional all-in-one machine
CN107009792A (en) * 2017-05-19 2017-08-04 温州上欣科技有限公司 Full-automatic engraving machine
CN107009792B (en) * 2017-05-19 2024-01-09 之宝(中国)户外产品有限公司 Full-automatic engraving machine

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AV01 Patent right actively abandoned

Granted publication date: 20140108

Effective date of abandoning: 20150204

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