CN202319072U - Multi-platform efficient energy-saving slot cutting machine - Google Patents

Multi-platform efficient energy-saving slot cutting machine Download PDF

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Publication number
CN202319072U
CN202319072U CN2011205327492U CN201120532749U CN202319072U CN 202319072 U CN202319072 U CN 202319072U CN 2011205327492 U CN2011205327492 U CN 2011205327492U CN 201120532749 U CN201120532749 U CN 201120532749U CN 202319072 U CN202319072 U CN 202319072U
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China
Prior art keywords
cutter
platform
cutting machine
groove cutting
chip removal
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Expired - Fee Related
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CN2011205327492U
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Chinese (zh)
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孔令柱
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Individual
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Individual
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Priority to CN2011205327492U priority Critical patent/CN202319072U/en
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Abstract

The utility model discloses a multi-platform efficient energy-saving slot cutting machine, belonging to a machine for processing box folding slots on paper box sections and wood plates. The machine comprises a body, a cutter, platforms, platform moving devices, vacuum adsorption devices, cutter up-down adjusting devices, cutter transverse moving devices and electric control devices, and is characterized in that: the body is provided with multiple slot cutting mechanisms which are arranged and combined in parallel on the body; each slot cutting mechanism is correspondingly provided with a platform, a platform moving device, a vacuum adsorption device, a cutter up-down adjusting device, a cutter transverse moving device and an electric control device; the cutter up-down adjusting devices and the cutter transverse moving devices are mounted on a cross beam; and each slot cutting mechanism is provided with a chip blowing removal device and a vacuum adsorption device and an electric control device to form the multi-platform efficient energy-saving slot cutting machine. The multi-platform efficient energy-saving slot cutting machine disclosed by the utility model has the beneficial effects that: the yield is increased by over 4 times, the whole volume is reduced by 3/5, the time and labor are sufficiently used, clean production is realized, and the energy saving effect is obvious that the electricity more than 20,000 kilowatt hours is saved annually.

Description

Multi-platform energy-efficient groove cutting machine
Technical field
The utility model relates to is processing the machinery of rolling over the box groove, particularly a kind of multi-platform energy-efficient groove cutting machine on the carton section bar with on the plank.
Background technology
There is following defective in the groove cutting machine of prior art: 1. be general single shaft wood-milling machine processing, production efficiency is low; The a large amount of powdery dusts that produce in the process are existed everywhere; The grievous injury workers'health, the electric energy that high-speed cutting simultaneously consumes is a lot, reaches one of 14.5KW; 2. through retrieval planer-type multiaxis V groove wood craft machines are arranged, but still adopt the disk serrated knife, automaticity is than higher, but it is still very big to add the man-hour dust; 3. again through retrieval, also having application number is 200920119450.7 1 kinds of paper, plank bi-directional energy-saving groove cutting machine, Granted publication CN201385448Y; Though can make workpiece two ends fluting; Increase work efficiency, it is also remarkable to economize on electricity, but can't make full use of manpower and time; Just higher production efficiency can not be arranged, yet not have the way that thoroughly solves for chip removal.
The utility model content
The purpose of the utility model is to above-mentioned defective, and a kind of multi-platform energy-efficient groove cutting machine is provided.
The technical scheme of the utility model is multi-platform energy-efficient groove cutting machine; Comprise that fuselage, cutter, platform and platform mobile device, vacuum absorption device, cutter up-down adjustment device and cutter traverse are to shift unit, electrical control gear; It is characterized in that described fuselage is provided with many groove cutting machine structures and is arranged in parallel aggregate erection on fuselage, every groove cutting machine structure correspondence is provided with platform and platform mobile device, vacuum absorption device, cutter up-down adjustment device and cutter traverse to shift unit, electrical control gear; Described cutter up-down adjustment device and cutter traverse are installed on the crossbeam to shift unit; Configuration is blown chip removal device and vacuum absorption device and electrical control gear are installed are constituted multi-platform energy-efficient groove cutting machine on described every groove cutting machine structure.
The cutter traverse that is provided with on the described crossbeam is mounted on the move left and right screw mandrel to shift unit and is in transmission connection with it, and move left and right screw mandrel layout is front and back two row and 1-6 row up and down on the crossbeam; The described chip removal device that blows blows the chip removal pipeline and is arranged on the outside cutter that contains of cutter to port by blowing the chip removal blower fan, blowing the chip removal pipeline and form, and blows chip removal to conveyer belt, blows the chip removal pipeline and blows the chip removal blower fan and be connected; Described vacuum absorption device is carried out chain belt, vacuum platform interface flange and vacuum fuselage flange by motor vacuum pump, vacuum and is formed; Many groove cutting machine structures are supplied with by a vavuum pump and distributor, and described electrical control gear is set to each one of both sides, every groove cutting machine structure front and back.
It is to be divided into both sides that described cutter is installed on the crossbeam, and every side is that 1-6 is cutter for one group.
Described platform mobile device and cutter traverse dispose servomotor to shift unit, and are the numerical control transmission mechanism with the mcu programming.
Described platform is arranged with stroke switchgear by travel switch, stroke elongated slot with can transfer fixed screw to form soon; Travel switch is installed on the elongate posts each one at both ends; Travel switch is other to be provided with the stroke elongated slot, and the stroke elongated slot is provided with can transfer fixed screw soon.
Described cutter up-down adjustment device is made up of handwheel, concave-convex lead screw, concave-convex staight shank, staight shank, travelling nut, fixed screw, split Tool bil holding device, blade and horizontal planker; The concave-convex staight shank embeds on the staight shank; Staight shank is provided with the inverted T-slot that matches with concave-convex staight shank shape; The middle part is provided with the concave-convex lead screw on the concave-convex staight shank; Have fixed screw to be installed on the horizontal planker on the staight shank, split Tool bil holding device and blade are installed in the bottom of staight shank, and horizontal planker is provided with dovetail groove and is installed on the corresponding crossbeam.
The beneficial effect of the utility model is: 1, owing to adopt many groove cutting machine permutation and combination, enhance productivity greatly, also improve the utilization rate of equipment, overall volume reduces 3/5 simultaneously, and output improves 4 times; 2, because personnel operation can be arranged in the complete machine both sides, and be not have the gap operation continuously, practiced thrift blanking time, employ one's time to the best advantage and manpower; 3, owing to blow chip removal automatically, and recyclable utilization, eliminated the situation that dust is existed everywhere, realize cleaner production, the protection workman's is healthy; 4, owing to make full use of equipment, power savings is remarkable, and a year economize on electricity reaches degree more than 20,000.
Description of drawings
Fig. 1 is the schematic top plan view of the utility model.
Fig. 2 is that the master of the utility model looks sketch map.
Fig. 3 is the schematic side view of a groove cutting machine.
Fig. 4 is the cutter structure cutaway view.Fig. 5 is the cutter side sectional view.Fig. 6 is the enlarged drawing in the circle of Fig. 5 middle and upper part.Fig. 7 is an enlarged drawing in the circle of Fig. 5 middle and lower part.Fig. 8 is the travel switch structure sketch map.
Among Fig. 1-Fig. 3: the 1-fuselage; The 2-A group platform moves screw mandrel; 3-A organizes vacuum absorption device; 4-A group chip removal conveyer belt; 5-cutter up-down adjustment assembly; The 6-crossbeam; 7-move left and right screw mandrel; 8-A organizes line slideway; 9-A networking format platform; 10-A organizes electric controlling assembly; 11-A group vacuum is carried out chain belt; 12-B networking format platform; 13-B organizes line slideway; 14-A organizes drive motors; 15-A organizes driving chain; 16-B group range-adjustable device; 17-B organizes drive motors; 18-B group stroke buting iron; The 19-B group is concentrated refueling device; The 20-A group is concentrated refueling device; 21-A organizes distance caging device; 22-A group range-adjustable device; 23-blows the chip removal blower fan; 24-blows the chip removal pipeline; 25-blows the chip removal front and back end ports; 26-screw mandrel supporting seat; 27-vacuum platform interface flange; 28-vacuum fuselage flange; 29-platform screw mandrel jockey; 30-B group chip removal conveyer belt; 31-B group vacuum is carried out chain belt.
Among Fig. 4-Fig. 8: 51-handwheel, 52-concave-convex lead screw, 53-concave-convex staight shank, 54-staight shank, 55-travelling nut, 56-fixed screw, 57-split Tool bil holding device, 58-blade, the horizontal planker of 59-.161-travel switch, 162-stroke elongated slot, 163-can transfer fixed screw soon.
The specific embodiment
Further specify embodiment below in conjunction with accompanying drawing with optimal way.
With reference to Fig. 1-Fig. 3; The main innovate point of the utility model is: fuselage is provided with many groove cutting machine structures and is arranged in parallel aggregate erection on fuselage, and every groove cutting machine structure correspondence is provided with platform and platform mobile device, vacuum absorption device, cutter up-down adjustment device and cutter traverse to shift unit, electrical control gear; Described cutter up-down adjustment device and cutter traverse are installed on the crossbeam to shift unit; Configuration is blown chip removal device and vacuum absorption device and electrical control gear are installed are constituted multi-platform energy-efficient groove cutting machine on described every groove cutting machine structure.Practical implementation is following: existing is example with two groove cutting machines, shows like Fig. 1, is divided into A group and B group, two groups of parallel assembled arrangement, and platform 9 in the A group, platform 12 in the B group all is the grid type platform.With one be example explanation, the mobile of platform 9 is to move on the screw mandrel 2 at platform to carry out, the below that platform moves screw mandrel 2 is provided with A group vacuum absorption device 3 (seeing shown in the frame of broken lines) and organizes chip removal conveyer belt 4 with A; Cutter is installed on the crossbeam 6, sees from top to bottom, and then cutter is divided into two rows; The front row is divided into two groups, and three every group, back row also is divided into two groups; Every group three, laterally moving of cutter has move left and right screw mandrel 7 manually to carry out.Platform 9 is installed on about 8 two of the A group line slideways, and then at the A group platform 9 other A group electrical control gears 10 that are provided with, each one of front and back also are provided with A group vacuum and carry out chain belt 11 below platform 9, be the part of vacuum absorption device 3 for easy to operate.Know that from figure the right side is the setting of corresponding B group platform 12, and is the same with each component layouts of A group platform 9, only the numbering of parts is different.
Show like Fig. 2, show the installation situation of cutter up-down adjustment device 5 on crossbeam 6, A group three is connected cutter with three rhizoid bars, and three rhizoid pole-footing are provided with different length according to the lateral attitude of cutter, and its end disposes the hold-down nut of definite cutter traverse to displacement.Two line slideways 8 that platform 9 belows are provided with are contained on two root posts; Platform has for 9 times platform screw mandrel jockey 29 and platform to move screw mandrel 2 to be connected; Platform moves screw mandrel 2 has screw mandrel supporting seat 26 to support; Screw mandrel has A group driving chain or Belt Drive connection to be connected with A group drive motors or servomotor 14 again, and each parts of two group platforms are installed on the fuselage 1.Platform also is provided with A group vacuum for 9 times and carries out chain belt 11.Be arranged with the A group at platform 9 and concentrate refueling device 20, A group distance caging device 21 and A group range-adjustable device 22.The opposite side of figure is that the right side is each the parts installation situation of platform 12 and the same layout of A group, and only the numbering of each parts is different from the A group.
Show like Fig. 3, show one group the situation of analysing and observe: cutter sees from the side, have in the middle of the cutter up-down adjustment device 5 chip removal of blowing pipeline 24 to the both sides cover to blowing chip removal front and back end ports 25, blow chip removal pipeline 24 and blow chip removal blower fan 23 and be connected.Platform 9 bottoms are installed on the A group line slideway 8; Platform 9 bottoms are also carried out chain belt 11 with vacuum platform interface flange 27 and A group vacuum and are connected, and vacuum is carried out that chain belt 11 the other end are connected with vacuum fuselage flange 28 and connected the vacuum absorption device 3 of motor and vavuum pump formation with pipeline.From figure shown in the dotted line, display platform 9 times moves screw mandrel 2 with A group platform on the screw mandrel supporting seat 26 and is connected, and the A group platform moves screw mandrel 2 and is installed in that A on the fuselage 1 organizes drive motors or servomotor 14 is in transmission connection.The effect of vacuum absorption device 3 is that the groove workpiece to be cut on the platform 9 is held.
Shown in Fig. 4-Fig. 7; Be tool structures: handwheel is installed concave-convex staight shank 53 51 times, and therebetween with concave-convex lead screw 52 movable being fixed on the horizontal planker 59, concave-convex staight shank 53 is to make staight shank 54 move up and down the groove depth of cutting of adjusting cutter with inverted T-shaped groove and 51 on inverted T-shaped projection tabling turn handwheel with staight shank 54; Horizontal planker 59 and crossbeam 6 match with dovetail groove and are connected; Staight shank 54 fixes with screw 56 with horizontal planker 59, and split Tool bil holding device 57 is installed on the staight shank 54, and blade 58 is installed on the split Tool bil holding device 57; Find out that from Fig. 6 and Fig. 7 inverted T-shaped structure and blade are installed in the structure on the anchor clamps 57, two blade unit are provided with forming V-shape.
As shown in Figure 8; Be the structure of range- adjustable device 16,22 during A group is organized with B: by travel switch 161, stroke elongated slot 162 with can transfer fixed screw 163 to form soon; Travel switch 161 is installed on the elongate posts each one at both ends; Travel switch 161 sides are provided with stroke elongated slot 162, and stroke elongated slot 162 is provided with can transfer fixed screw 163 soon.
The utility model is that to replace flow process with two platform bidirectional operations be example; But also Siping City's platform or six platforms; With A group platform 9 cut groove go with toward each one back and forth, simultaneously B group platform 12 cut groove go with toward back and forth each one carry out, so just have 8 seconds and accomplish four; Than 4 times of original unit raising the output, than 2 times of two-way machine raising the output.Making full use of manpower does not have the gap time, and machine volume dwindles, and discarded bits end is in strip the centralized collection on conveyer belt of blowing off.Eliminated the phenomenon that dust is existed everywhere.Not only enhance productivity greatly, and improve the utilization rate of equipment, the resource that employs one's time to the best advantage, the maximization of performance human resource benefit.Automatically blow chip removal device and solved the scrap handling problem when cutting in the past groove production.The range-adjustable device had not only satisfied the needs that cut groove fast but also can be easy to adjust, simple, quick.Manually concentrate refueling device to solve and cut the trouble that constantly to refuel after the groove automation.

Claims (6)

1. multi-platform energy-efficient groove cutting machine; Comprise that fuselage, cutter, platform and platform mobile device, vacuum absorption device, cutter up-down adjustment device and cutter traverse are to shift unit, electrical control gear; It is characterized in that described fuselage is provided with many groove cutting machine structures and is arranged in parallel aggregate erection on fuselage, every groove cutting machine structure correspondence is provided with platform and platform mobile device, vacuum absorption device, cutter up-down adjustment device and cutter traverse to shift unit, electrical control gear; Described cutter up-down adjustment device and cutter traverse are installed on the crossbeam to shift unit; Configuration is blown chip removal device and vacuum absorption device and electrical control gear are installed are constituted multi-platform energy-efficient groove cutting machine on described every groove cutting machine structure.
2. by the described multi-platform energy-efficient groove cutting machine of claim 1; It is characterized in that the cutter traverse that is provided with on the described crossbeam is mounted on the move left and right screw mandrel to shift unit is in transmission connection with it, and move left and right screw mandrel layout is front and back two rows and 1-6 row up and down on the crossbeam; The described chip removal device that blows blows the chip removal pipeline and is arranged on the outside cutter that contains of cutter to port by blowing the chip removal blower fan, blowing the chip removal pipeline and form, and blows chip removal to conveyer belt, blows the chip removal pipeline and blows the chip removal blower fan and be connected; Described vacuum absorption device is carried out chain belt, vacuum platform interface flange and vacuum fuselage flange by motor vacuum pump, vacuum and is formed; Many groove cutting machine structures are supplied with by a vavuum pump and distributor, and described electrical control gear is set to each one of both sides, every groove cutting machine structure front and back.
3. by claim 1 or 2 described multi-platform energy-efficient groove cutting machines, it is characterized in that it is to be divided into both sides that described cutter is installed on the crossbeam, every side is that 1-6 is cutter for one group.
4. by the described multi-platform energy-efficient groove cutting machine of claim 1, it is characterized in that described platform mobile device and cutter traverse dispose servomotor to shift unit, and be the numerical control transmission mechanism with the mcu programming.
5. by the described multi-platform energy-efficient groove cutting machine of claim 1; It is characterized in that described platform is arranged with stroke switchgear by travel switch, stroke elongated slot with can transfer fixed screw to form soon; Travel switch is installed on the elongate posts each one at both ends; Travel switch is other to be provided with the stroke elongated slot, and the stroke elongated slot is provided with can transfer fixed screw soon.
6. by the described multi-platform energy-efficient groove cutting machine of claim 1; It is characterized in that described cutter up-down adjustment device is made up of handwheel, concave-convex lead screw, concave-convex staight shank, staight shank, travelling nut, fixed screw, split Tool bil holding device, blade and horizontal planker; The concave-convex staight shank embeds on the staight shank; Staight shank is provided with the inverted T-slot that matches with concave-convex staight shank shape, and the middle part is provided with the concave-convex lead screw on the concave-convex staight shank, has fixed screw to be installed on the horizontal planker on the staight shank; Split Tool bil holding device and blade are installed in the bottom of staight shank, and horizontal planker is provided with dovetail groove and is installed on the corresponding crossbeam.
CN2011205327492U 2011-12-02 2011-12-02 Multi-platform efficient energy-saving slot cutting machine Expired - Fee Related CN202319072U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN2011205327492U CN202319072U (en) 2011-12-02 2011-12-02 Multi-platform efficient energy-saving slot cutting machine

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Application Number Priority Date Filing Date Title
CN2011205327492U CN202319072U (en) 2011-12-02 2011-12-02 Multi-platform efficient energy-saving slot cutting machine

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102490393A (en) * 2011-12-02 2012-06-13 孔令柱 Multi-platform efficient energy-saving groove cutting machine
CN103448104A (en) * 2013-09-11 2013-12-18 滨州市虎森数控设备科技有限公司 Numerically controlled wood engraving and milling machine with universal regulating function

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102490393A (en) * 2011-12-02 2012-06-13 孔令柱 Multi-platform efficient energy-saving groove cutting machine
CN103448104A (en) * 2013-09-11 2013-12-18 滨州市虎森数控设备科技有限公司 Numerically controlled wood engraving and milling machine with universal regulating function
CN103448104B (en) * 2013-09-11 2015-07-01 滨州市虎森数控设备科技有限公司 Numerically controlled wood engraving and milling machine with universal regulating function

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C14 Grant of patent or utility model
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20120711

Termination date: 20151202

EXPY Termination of patent right or utility model