CN205394945U - Dysmorphism injection molding overlap numerical control abate, burnishing machine - Google Patents

Dysmorphism injection molding overlap numerical control abate, burnishing machine Download PDF

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Publication number
CN205394945U
CN205394945U CN201620174913.XU CN201620174913U CN205394945U CN 205394945 U CN205394945 U CN 205394945U CN 201620174913 U CN201620174913 U CN 201620174913U CN 205394945 U CN205394945 U CN 205394945U
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CN
China
Prior art keywords
downside
blunt
rotating shaft
abnormity
driven
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Expired - Fee Related
Application number
CN201620174913.XU
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Chinese (zh)
Inventor
戴飞铭
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Fuzhou Vocational and Technical College
Fuzhou Institute of Technology
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Fuzhou Vocational and Technical College
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Publication date
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Priority to CN201620174913.XU priority Critical patent/CN205394945U/en
Application granted granted Critical
Publication of CN205394945U publication Critical patent/CN205394945U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The utility model relates to a dysmorphism injection molding overlap numerical control abate, burnishing machine, the test platform comprises a support, one side of frame is provided with regularly blanking mechanism of special -shaped injection molding, regularly the blanking mouth downside of blanking mechanism is provided with and is used for vacuum adsorption dysmorphism injection molding and timing pivoted indexing mechanism, frame rear side and the top that lies in the indexing mechanism are provided with special -shaped injection molding abate mechanism, and the opposite side of frame is provided with special -shaped injection molding polishing mechanism, and the front side of frame and the top that lies in the indexing mechanism still are provided with the shedding mechanism. This abate, burnishing machine be compact structure not only, conveniently is used for special -shaped injection molding abate and polishing moreover.

Description

Abnormity Flash In Injection Molded Plastic Parts numerical control is blunt, buffing machine
Technical field
This utility model relates to that the Flash In Injection Molded Plastic Parts numerical control of a kind of abnormity is blunt, buffing machine.
Background technology
The use in the modern life of the mould of plastics goods is more and more extensive, and the requirement of its moulding and outward appearance is also more and more higher, especially for plastic tableware that domestic some to export and the articles for daily use, graceful moulding and outward appearance just can win the favor of consumer.And the level of production of the outer enterprise of Present Domestic is not well positioned to meet this requirement, many subsequent production of moulding all also rest on the manual stage, and relatively rare Flash In Injection Molded Plastic Parts falls blunt and polishing research.As abnormity moulding (bowls etc. of various moulding) overlap falls blunt and polishing.
Blunt and polishing for abnormity moulding, although the domestic workman having a lot of fine craftsmanship at present, technology by oneself consummation, quickly finish more easy overlap blunt, but home built product is total it cannot be guaranteed that the unification of outward appearance and shape, percent defective is high, it may appear that bigger error, affects product sales volume.Even if website scans for, also substantially can not find and integrate blunt and polishing Numeric Control Technology Digit Control Machine Tool, also without being specifically designed to the lathe that moulding is blunt, polish, need a kind of blunt, buffing machine for abnormity Flash In Injection Molded Plastic Parts for this.
Summary of the invention
The purpose of this utility model is in that to provide that the Flash In Injection Molded Plastic Parts numerical control of a kind of abnormity is blunt, buffing machine, and this is blunt, buffing machine not only compact conformation, and is conveniently used for abnormity moulding and falls blunt and polishing.
The technical solution of the utility model is in that: the Flash In Injection Molded Plastic Parts numerical control of a kind of abnormity is blunt, buffing machine, including support, the side of described support is provided with abnormity moulding timing blanking mechanism, the indexing mechanism for vac sorb abnormity moulding timing rotation it is provided with on the downside of the blanking port of described timing blanking mechanism, on rear side of described support and be positioned at indexing mechanism be provided above abnormity moulding Dao Dun mechanism, the opposite side of support is provided with abnormity moulding polishing mechanism, the front side of support and be positioned at indexing mechanism be arranged above shedding mechanism.
Described timing blanking mechanism includes the cantilever slab being arranged at support side, described cantilever slab is equipped with the first rotating shaft that bottom is driven by driving chain mechanism from bottom to top, the other end of described cantilever slab is provided through cantilever slab the second rotating shaft being connected through the second driving chain mechanism and the first rotating shaft, cantilever slab is provided with the blanking port with guiding mechanism between the first rotating shaft and the second rotating shaft, described first rotating shaft and the second rotating shaft are positioned at the downside of cantilever slab and are correspondingly arranged on the screw pair realizing abnormity moulding blanking after the first rotating shaft drives the second axis of rotation a pair.
Described second driving chain mechanism includes being arranged at the first sprocket wheel that the first rotating shaft passes on the upper end of cantilever slab and the second sprocket wheel being arranged at the second rotating shaft upper end, being positioned at the rear side of charging conduit mouth on described cantilever slab to be provided with upper end and have the 3rd rotating shaft of the 3rd sprocket wheel, described second sprocket wheel driving-chain and the second sprocket wheel through walking around the 3rd sprocket wheel is connected.
Described indexing mechanism includes the horizontal rotating disk driven by Sheave Device with the External Gear, is correspondingly arranged on and passes the horizontal rotating disk adsorption tube for vac sorb abnormity moulding from bottom to top on the downside of four orientation of described horizontal rotating disk perimembranous.
Described polishing mechanism includes the frame being arranged at support opposite side, described upper rack is horizontally arranged with cantilevered guide rail fixed plate, it is provided with on the downside of described guide rail fixed plate and is driven, by driving mechanism, the slide realizing sliding laterally, the second guide rail fixed plate it is vertically arranged with on the downside of described slide, it is provided with on the downside of described second guide rail fixed plate and is driven, by the second driving mechanism, the second slide realizing longitudinal sliding motion, being provided with on the downside of described second slide and driven, by elevating mechanism, the vertical spindle motor realizing lifting, the output shaft lower end of described vertical spindle motor is provided with polishing milling cutter.
Described driving mechanism includes being horizontally set on the downside of guide rail fixed plate and by the ball wire bar pair of driven by servomotor, and the nut seat of described ball wire bar pair is slidably matched with the slide rail being arranged on guide rail fixed plate downside, and described slide is fixing with nut seat to be connected;Described second driving mechanism includes being longitudinally disposed on the downside of the second guide rail fixed plate and by the second ball wire bar pair of driven by servomotor, the nut seat of described second ball wire bar pair is slidably matched with the slide rail being arranged on the second guide rail fixed plate downside, and the nut seat of described second slide and the second ball wire bar pair is fixing to be connected.
Described elevating mechanism includes the fixing plate being vertically arranged on the downside of the second slide, described fixing plate and the fixing seat being fixed on vertical spindle motor sidepiece are slidably matched, described fixing plate top is additionally provided with horizontal machine, on the output shaft of described horizontal machine, Eccentric-hinge is connected to bearing pin, and described bearing pin and the connecting rod being articulated with fixing seat upper end are hinged.
Described Dao Dun mechanism includes the base being arranged on rear side of support, described base is horizontally arranged with by the 3rd ball screw assembly, of driven by servomotor, the nut seat of described 3rd ball screw assembly, is vertically arranged with by the 4th ball screw assembly, of driven by servomotor, the nut seat of described 4th ball screw assembly, is provided with and turns shape frame, described turning is provided with the vertical machine being driven lifting by the second elevating mechanism in shape frame, the output shaft of described vertical machine is provided with blunt milling cutter.
Described second elevating mechanism includes the hand screw being vertically arranged to turn shape upper rack, described hand screw lower end is connected to and the seat board of portion of the turning snug engagement turning shape frame, is connected to for fixing the fixed frame being connected with vertical machine on the downside of described seat board.
Compared with prior art, this utility model has the advantage that this blunt, buffing machine not only compact conformation, and is conveniently used for abnormity moulding and falls blunt and polish, and automaticity is high simultaneously, be conducive to the quickly blunt and special-shaped moulding of polishing, blunt and polishing efficiency is high;Blunt and polishing special-shaped moulding quality is good, and percent defective is low.Additionally this is blunt, the mode of operation of buffing machine simple, reduces operation easier.
Accompanying drawing explanation
Fig. 1 is structural representation of the present utility model;
Fig. 2 is right view of the present utility model;
Fig. 3 is the structural representation of timing blanking mechanism of the present utility model;
Fig. 4 is the top view of Fig. 3 of the present utility model;
Fig. 5 is the structural representation of polishing mechanism of the present utility model;
Fig. 6 is the right view of Fig. 5 of the present utility model;
Fig. 7 is the structural representation of Dao Dun mechanism of the present utility model;
Fig. 8 is the right view of figure Fig. 7 of the present utility model;
The structural representation of Fig. 9 position one of which abnormity moulding of the present utility model.
Detailed description of the invention
For features described above of the present utility model and advantage can be become apparent, special embodiment below, and coordinate accompanying drawing, it is described in detail below, but this utility model is not limited to this.
Referring to figs. 1 to Fig. 9
The Flash In Injection Molded Plastic Parts numerical control of a kind of abnormity is blunt, buffing machine, including support 100, the side of described support is provided with abnormity moulding 10 timing blanking mechanism 200, the indexing mechanism 300 for vac sorb abnormity moulding timing rotation it is provided with on the downside of the blanking port of described timing blanking mechanism, on rear side of described support and be positioned at indexing mechanism be provided above abnormity moulding Dao Dun mechanism 400, the opposite side of support is provided with abnormity moulding polishing mechanism 500, the front side of support and be positioned at indexing mechanism be arranged above shedding mechanism 600.
Above-mentioned timing blanking mechanism includes the cantilever slab 220 being arranged at support side, described cantilever slab is equipped with the first rotating shaft 230 that bottom is driven by driving chain mechanism from bottom to top, first rotating shaft bottom is provided with drive sprocket 231, the other end of described cantilever slab is provided through cantilever slab the second rotating shaft 240 being connected through the second driving chain mechanism and the first rotating shaft, cantilever slab is provided with the blanking port 221 with guiding mechanism between the first rotating shaft and the second rotating shaft, described first rotating shaft and the second rotating shaft are positioned at the downside of cantilever slab and are correspondingly arranged on the screw pair 250 realizing abnormity moulding blanking after the first rotating shaft drives the second axis of rotation a pair, coordinated by the protuberance 11 of screw pair with abnormity moulding, the rotary motion making screw pair becomes the elevating movement of abnormity moulding.
Above-mentioned second driving chain mechanism includes being arranged at the first sprocket wheel 261 that the first rotating shaft passes on the upper end of cantilever slab and the second sprocket wheel 262 being arranged at the second rotating shaft upper end, described cantilever slab is positioned at the rear side of charging conduit mouth be provided with upper end there is the 3rd rotating shaft 264 of the 3rd sprocket wheel 263, described second sprocket wheel is connected with the second sprocket wheel through the driving-chain 265 walking around the 3rd sprocket wheel, thus driving the second axis of rotation, make screw pair routing motion completion timing blanking.
Above-mentioned guiding mechanism is made up of four leads 271 being arranged at side, blanking notch both sides, the protuberance by abnormity moulding is coordinated to be embedded between four leads by four leads, lead reaches on the downside of cantilever slab through cantilever slab, one screw rod of described screw pair is positioned at the side of four leads, and another screw rod of screw pair is positioned at the opposite side of four leads.
Above-mentioned indexing mechanism includes the horizontal rotating disk 310 driven by Sheave Device with the External Gear, is correspondingly arranged on and passes the horizontal rotating disk adsorption tube 320 for vac sorb abnormity moulding from bottom to top on the downside of four orientation of described horizontal rotating disk perimembranous.
Above-mentioned Sheave Device with the External Gear includes the active driver plate 340 driven by pulley transmission mechanism 330, described active driver plate is provided with convex Locking arc and straight pin, the vertical rotating shaft bottom of described rotating disk is provided with the sheave 350 matching and having four recessed Locking arc with active driver plate, described recessed Locking arc is provided with the radial slot matched with straight pin, thus driving horizontal rotating disk timing rotation.
Above-mentioned polishing mechanism includes the frame 510 being arranged at support opposite side, described upper rack is horizontally arranged with cantilevered guide rail fixed plate 520, it is provided with on the downside of described guide rail fixed plate and is driven, by driving mechanism, the slide 530 realizing sliding laterally, the second guide rail fixed plate 540 it is vertically arranged with on the downside of described slide, it is provided with on the downside of described second guide rail fixed plate and is driven, by the second driving mechanism, the second slide 550 realizing longitudinal sliding motion, it is provided with on the downside of described second slide and is driven, by elevating mechanism, the vertical spindle motor 560 realizing lifting, the output shaft lower end of described vertical spindle motor is provided with polishing milling cutter 570, so as the surface finish by abnormity moulding.
Above-mentioned driving mechanism includes being horizontally set at the ball wire bar pair 582 driven on the downside of guide rail fixed plate and by servomotor 581, the nut seat of described ball wire bar pair is slidably matched with the slide rail being arranged on guide rail fixed plate downside, described slide is fixing with nut seat to be connected, thus driving slide transverse shifting.The bearing block 583 being placed on ball-screw two ends it is respectively arranged with on the downside of the two side ends of described guide rail fixed plate.
Above-mentioned second driving mechanism includes being longitudinally disposed at the second ball wire bar pair 592 driven on the downside of the second guide rail fixed plate and by servomotor 591, the nut seat of described second ball wire bar pair is slidably matched with the slide rail being arranged on the second guide rail fixed plate downside, the nut seat of described second slide and the second ball wire bar pair is fixing to be connected, to realize vertically moving.The bearing block 593 being placed on ball-screw two ends it is respectively arranged with on the downside of the two ends of described second guide rail fixed plate.
Above-mentioned elevating mechanism includes the fixing plate 511 being vertically arranged on the downside of the second slide, described fixing plate and the fixing seat 561 being fixed on vertical spindle motor sidepiece are slidably matched, and the dovetail skid that fixing plate is vertically provided with dovetail groove vertically arranged with on fixing seat coordinates.Described fixing plate top is additionally provided with horizontal machine 512, and on the output shaft of described horizontal machine, Eccentric-hinge is connected to bearing pin 513, and described bearing pin and the connecting rod 514 being articulated with fixing seat upper end are hinged, thus driving vertical spindle motor to lift.
Above-mentioned Dao Dun mechanism includes the base 410 being arranged on rear side of support, described base is horizontally arranged with the 3rd ball screw assembly, 422 driven by servomotor 421, the nut seat of described 3rd ball screw assembly, can transverse shifting, the nut seat of the 3rd ball screw assembly, is vertically arranged with installing plate 423, installing plate is provided with the 4th ball screw assembly, 431 driven by servomotor 433, the nut seat of described 4th ball screw assembly, is longitudinally movable, the nut seat of the 4th ball screw assembly, is provided be slidably matched with installing plate turn shape frame 432, described turning is provided with the vertical machine 440 being driven lifting by the second elevating mechanism in shape frame, the output shaft of described vertical machine is provided with blunt milling cutter 441, from completing the blunt of abnormity moulding.
Above-mentioned second elevating mechanism includes the hand screw 451 being vertically arranged to turn shape upper rack, described hand screw lower end is connected to and the seat board 452 of portion of the turning snug engagement turning shape frame, it is connected on the downside of described seat board for fixing the fixed frame 453 being connected with vertical machine, thus completing the fixing of vertical machine.
Above-mentioned shedding mechanism includes being arranged on front side of support and stretches into for from the baffle plate 610 ticked rotating disk and being positioned at abnormity moulding on the downside of baffle plate to be used for the belt conveyor 620 transferred out by the special-shaped moulding ticked above horizontal rotating disk, thus completing the discharging of abnormity moulding.
This is blunt, buffing machine is additionally provided with the digital control system for controlling timing blanking mechanism, indexing mechanism, Dao Dun mechanism, polishing mechanism and shedding mechanism.
This abnormity Flash In Injection Molded Plastic Parts numerical control is blunt, buffing machine and operation principle:
1) stacked special-shaped moulding is put into the blanking port of timing blanking mechanism, and by the effect of the screw pair of timing blanking mechanism, abnormity moulding timing one by one is dropped on the rotating disk of indexing mechanism;
2) by the adsorption tube on the horizontal rotating disk of indexing mechanism, abnormity moulding is adsorbed, and turn to below the Dao Dun mechanism on rear side of support, and undertaken blunt by Dao Dun mechanism;
3) by indexing mechanism, the special-shaped moulding after blunt is turned on the downside of the polishing mechanism of frame opposite side, and be polished by polishing mechanism;
4) by indexing mechanism, the special-shaped moulding after polishing is turned on front side of frame, and have shedding mechanism to be sent by abnormity moulding;
5) indexing mechanism often rotates once, and timing blanking mechanism then blanking is once.
The foregoing is only preferred embodiment of the present utility model, all equalizations done according to this utility model claim change and modify, and all should belong to covering scope of the present utility model.

Claims (9)

1. a special-shaped Flash In Injection Molded Plastic Parts numerical control is blunt, buffing machine, including support, it is characterized in that, the side of described support is provided with abnormity moulding timing blanking mechanism, the indexing mechanism for vac sorb abnormity moulding timing rotation it is provided with on the downside of the blanking port of described timing blanking mechanism, on rear side of described support and be positioned at indexing mechanism be provided above abnormity moulding Dao Dun mechanism, the opposite side of support is provided with abnormity moulding polishing mechanism, the front side of support and be positioned at indexing mechanism be arranged above shedding mechanism.
2. abnormity according to claim 1 Flash In Injection Molded Plastic Parts numerical control is blunt, buffing machine, it is characterized in that, described timing blanking mechanism includes the cantilever slab being arranged at support side, described cantilever slab is equipped with the first rotating shaft that bottom is driven by driving chain mechanism from bottom to top, the other end of described cantilever slab is provided through cantilever slab the second rotating shaft being connected through the second driving chain mechanism and the first rotating shaft, cantilever slab is provided with the blanking port with guiding mechanism between the first rotating shaft and the second rotating shaft, described first rotating shaft and the second rotating shaft are positioned at the downside of cantilever slab and are correspondingly arranged on the screw pair realizing abnormity moulding blanking after the first rotating shaft drives the second axis of rotation a pair.
3. Flash In Injection Molded Plastic Parts numerical control is blunt, buffing machine for abnormity according to claim 2, it is characterized in that, described second driving chain mechanism includes being arranged at the first sprocket wheel that the first rotating shaft passes on the upper end of cantilever slab and the second sprocket wheel being arranged at the second rotating shaft upper end, being positioned at the rear side of charging conduit mouth on described cantilever slab to be provided with upper end and have the 3rd rotating shaft of the 3rd sprocket wheel, described second sprocket wheel driving-chain and the second sprocket wheel through walking around the 3rd sprocket wheel is connected.
4. the special-shaped Flash In Injection Molded Plastic Parts numerical control according to Claims 2 or 3 is blunt, buffing machine, it is characterized in that, described indexing mechanism includes the horizontal rotating disk driven by Sheave Device with the External Gear, is correspondingly arranged on and passes the horizontal rotating disk adsorption tube for vac sorb abnormity moulding from bottom to top on the downside of four orientation of described horizontal rotating disk perimembranous.
5. according to claim 1, special-shaped Flash In Injection Molded Plastic Parts numerical control described in 2 or 3 is blunt, buffing machine, it is characterized in that, described polishing mechanism includes the frame being arranged at support opposite side, described upper rack is horizontally arranged with cantilevered guide rail fixed plate, it is provided with on the downside of described guide rail fixed plate and is driven, by driving mechanism, the slide realizing sliding laterally, the second guide rail fixed plate it is vertically arranged with on the downside of described slide, it is provided with on the downside of described second guide rail fixed plate and is driven, by the second driving mechanism, the second slide realizing longitudinal sliding motion, it is provided with on the downside of described second slide and is driven, by elevating mechanism, the vertical spindle motor realizing lifting, the output shaft lower end of described vertical spindle motor is provided with polishing milling cutter.
6. Flash In Injection Molded Plastic Parts numerical control is blunt, buffing machine for abnormity according to claim 5, it is characterized in that, described driving mechanism includes being horizontally set on the downside of guide rail fixed plate and by the ball wire bar pair of driven by servomotor, the nut seat of described ball wire bar pair is slidably matched with the slide rail being arranged on guide rail fixed plate downside, and described slide is fixing with nut seat to be connected;Described second driving mechanism includes being longitudinally disposed on the downside of the second guide rail fixed plate and by the second ball wire bar pair of driven by servomotor, the nut seat of described second ball wire bar pair is slidably matched with the slide rail being arranged on the second guide rail fixed plate downside, and the nut seat of described second slide and the second ball wire bar pair is fixing to be connected.
7. Flash In Injection Molded Plastic Parts numerical control is blunt, buffing machine for abnormity according to claim 5, it is characterized in that, described elevating mechanism includes the fixing plate being vertically arranged on the downside of the second slide, described fixing plate and the fixing seat being fixed on vertical spindle motor sidepiece are slidably matched, described fixing plate top is additionally provided with horizontal machine, on the output shaft of described horizontal machine, Eccentric-hinge is connected to bearing pin, and described bearing pin and the connecting rod being articulated with fixing seat upper end are hinged.
8. according to claim 1, 2, 3, special-shaped Flash In Injection Molded Plastic Parts numerical control described in 6 or 7 is blunt, buffing machine, it is characterized in that, described Dao Dun mechanism includes the base being arranged on rear side of support, described base is horizontally arranged with by the 3rd ball screw assembly, of driven by servomotor, the nut seat of described 3rd ball screw assembly, is vertically arranged with by the 4th ball screw assembly, of driven by servomotor, the nut seat of described 4th ball screw assembly, is provided with and turns shape frame, described turning is provided with the vertical machine being driven lifting by the second elevating mechanism in shape frame, the output shaft of described vertical machine is provided with blunt milling cutter.
9. Flash In Injection Molded Plastic Parts numerical control is blunt, buffing machine for abnormity according to claim 8, it is characterized in that, described second elevating mechanism includes the hand screw being vertically arranged to turn shape upper rack, described hand screw lower end is connected to and the seat board of portion of the turning snug engagement turning shape frame, is connected to for fixing the fixed frame being connected with vertical machine on the downside of described seat board.
CN201620174913.XU 2016-03-09 2016-03-09 Dysmorphism injection molding overlap numerical control abate, burnishing machine Expired - Fee Related CN205394945U (en)

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Application Number Priority Date Filing Date Title
CN201620174913.XU CN205394945U (en) 2016-03-09 2016-03-09 Dysmorphism injection molding overlap numerical control abate, burnishing machine

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Application Number Priority Date Filing Date Title
CN201620174913.XU CN205394945U (en) 2016-03-09 2016-03-09 Dysmorphism injection molding overlap numerical control abate, burnishing machine

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Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105599194A (en) * 2016-03-09 2016-05-25 福州职业技术学院 Special-shaped injection part flash numerical control rounding and polishing machine and manipulation method thereof
CN106891236A (en) * 2017-04-01 2017-06-27 浙江工业职业技术学院 A kind of process equipment of auto parts and components
CN106994643A (en) * 2017-04-01 2017-08-01 浙江工业职业技术学院 A kind of automatic production line processed for car light part
CN107116750A (en) * 2017-04-01 2017-09-01 浙江工业职业技术学院 A kind of system of processing of taillight lampshade
CN107984377A (en) * 2017-11-27 2018-05-04 郑丽凤 A kind of lifting rotation burnishing device for plastic processing

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105599194A (en) * 2016-03-09 2016-05-25 福州职业技术学院 Special-shaped injection part flash numerical control rounding and polishing machine and manipulation method thereof
CN106891236A (en) * 2017-04-01 2017-06-27 浙江工业职业技术学院 A kind of process equipment of auto parts and components
CN106994643A (en) * 2017-04-01 2017-08-01 浙江工业职业技术学院 A kind of automatic production line processed for car light part
CN107116750A (en) * 2017-04-01 2017-09-01 浙江工业职业技术学院 A kind of system of processing of taillight lampshade
CN107984377A (en) * 2017-11-27 2018-05-04 郑丽凤 A kind of lifting rotation burnishing device for plastic processing
CN107984377B (en) * 2017-11-27 2019-05-03 昆山兴宝塑料制品有限公司 A kind of lifting rotation burnishing device for plastic processing

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