CN203529571U - Full-automatic flexible graphite slitting machine - Google Patents
Full-automatic flexible graphite slitting machine Download PDFInfo
- Publication number
- CN203529571U CN203529571U CN201320741643.2U CN201320741643U CN203529571U CN 203529571 U CN203529571 U CN 203529571U CN 201320741643 U CN201320741643 U CN 201320741643U CN 203529571 U CN203529571 U CN 203529571U
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- roller
- graphite
- frame
- boom
- slide block
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02P—CLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
- Y02P70/00—Climate change mitigation technologies in the production process for final industrial or consumer products
- Y02P70/10—Greenhouse gas [GHG] capture, material saving, heat recovery or other energy efficient measures, e.g. motor control, characterised by manufacturing processes, e.g. for rolling metal or metal working
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Abstract
A full-automatic flexible graphite slitting machine comprises a rack, wherein a raw material roller is arranged at the front end of the rack, a plurality of transition shafts are arranged on the rack behind the raw material roller, a flexible graphite cutting hob is arranged behind the transition shafts, a graphite ribbon winding mechanism is arranged behind the flexible graphite cutting hob, the winding mechanism comprises a guide roller located above and a winding roller located below the guide roller, and graphite ribbons are wound on the winding roller after being shaped by the guide roller. According to the slitting machine, graphite sheets are slit into the graphite ribbons, the slit graphite ribbons are in regular bar shapes, and irregular shapes cannot be produced; the graphite ribbons are shaped before winding, so that the graphite ribbons are separated, arranged regularly in advance and then wound, wound graphite ribbon coils are very regular, and large-diameter graphite ribbon coils can be wound.
Description
(1) technical field
The utility model relates to Full-automatic flexible graphite cutting machine.
(2) background technology
Soft graphite tablet raw material need to cut slivering, forms graphite tape rear and can be applicable to various use occasions.In the prior art, the common stage property of employing that flake graphite raw material is cut, the graphite tape shape cutting into is difficult to keep rule, greatly affects using and reeling of graphite tape.
(3) summary of the invention
In order to overcome the deficiency of existing graphite tape cutting tool, the utility model provides a kind of Full-automatic flexible graphite cutting machine that keeps the graphite tape of the graphite tape regular shape that cuts out and can be wound into the major diameter graphite roll coil of strip.
The technical scheme in the invention for solving the technical problem is: a kind of Full-automatic flexible graphite cutting machine, comprise frame, described frame has a delivery platform, described delivery platform is provided with two frame bars consistent with feed direction that be parallel to each other, added several transition axises that is provided with of two described frame bars;
Two frame all-in-one-piece support arms that be parallel to each other and described are located in the place ahead of described delivery platform, and described support arm is positioned at the below of described delivery platform, the added raw material roller that is provided with of two described support arms;
The rear of described delivery platform is provided with a Cutting tool installation manner platform, and the top of described Cutting tool installation manner platform is provided with a knife rest, and described knife rest comprises underframe and upwardly extending the first boom, the second boom at underframe two ends;
Between the first described boom, the second boom, there are the upper roller of metallic material, corresponding with this upper roller lower roller that is positioned at the nylon material under this upper roller, described upper roller is parallel with described lower roller, described upper roller is provided with some circle cutter rings, and the distance between adjacent cutter ring equates;
Described upper roller is located in rotating shaft, described lower roller is located on lower rotary shaft, the two ends of described upper rotating shaft are located in respectively on described the first boom and the second boom, also comprise that a frequency conversion drives cutter motor, and the output shaft that cutter motor is driven in described frequency conversion is connected with described upper rotating shaft;
On the first described boom, offer the first moving window, on the second described boom, offer the second moving window, in the first described moving window, be slidably equipped with first slide block that can slide up and down, in the second described moving window, be slidably equipped with second slide block that can slide up and down, the two ends of described lower rotary shaft are located in respectively on described the first slide block and the second slide block;
On described Cutting tool installation manner platform, be also provided with the first cylinder and the second cylinder, the piston rod of described the first cylinder penetrates in described knife rest and is connected with the first described slide block, and the piston rod of described the second cylinder penetrates in described knife rest and is connected with the second described slide block;
The frame of described Cutting tool installation manner platform rear is provided with an adapter plate, described adapter plate is provided with vertical lifting sliding rail, on described lifting sliding rail, be slidably equipped with erecting frame, described erecting frame comprise transverse slat and at the two ends of transverse slat to starting stave, second riser of downward-extension;
Between described starting stave and the second riser, have guiding roller, described guiding roller is located on a center shaft, and the two ends of described center shaft are located in respectively on described starting stave and the second riser;
Described guiding roller is provided with some circle guide rings, and the distance between adjacent guide ring equates, forms shaping groove between adjacent guide ring;
In described frame, be also provided with vertical lift cylinder, the piston rod of described lift cylinder is connected with described erecting frame;
Under described guiding roller, have winding roller, described winding roller is located on a Scroll, and described Scroll is arranged in described frame, and this Scroll is also connected with the output shaft of a frequency conversion winding motor.
Further, described lower roller is provided with some circle inner groovies, and described inner groovy is corresponding with the space between adjacent cutter ring on upper roller.
Further, the dual-side of described the first moving window is provided with the first slide rail, and the first described slide block is located on the first described slide rail; The dual-side of described the second moving window is provided with the second slide rail, and the second described slide block is located on the second described slide rail.
Further, the space between described upper roller and lower roller is corresponding with described transition axis.
Further, described raw material roller is located on raw material axle, and two of described raw material axle is provided with block bearing, and described block bearing is bearing on two support arms.
The utility model in use, flake graphite stock roll is on raw material roller, flake graphite raw material rides over forward on transition axis and stretches between upper roller and lower roller, then the first cylinder and the action of the second cylinder, will push up on the first slide block and the second slide block respectively, thereby will on lower roller, push up, graphite raw material sheet is clamped between upper roller and lower roller, then open frequency conversion and drive cutter motor, frequency conversion is driven cutter driven by motor upper roller and is rotated, thereby under the cutting action of cutter ring, flake graphite is cut into graphite tape.When cutting, due to rubbing effect, lower roller also rotates.
The graphite tape of cutting slivering enters in the shaping groove forming between guide ring adjacent on guiding roller first separately, the head of graphite tape first manually part is wrapped on winding roller, then start frequency conversion winding motor, frequency conversion winding motor drives winding roller to rotate, and can complete the auto reeling of graphite tape.Along with the graphite tape coil diameter of reeling is increasing, can erecting frame upwards be pushed up by lift cylinder, to increase space.In addition, along with graphite tape coil diameter is increasing, need to regulate frequency conversion to drive the rotating speed of cutter motor and frequency conversion winding motor, thereby graphite tape can be reeled equably.
The beneficial effects of the utility model are: flake graphite is cut into graphite tape, and the shape of the graphite tape cutting out is regular bar shaped, can not produce irregularly shaped; Before coiling, first graphite tape is carried out to shaping, make graphite tape separate also regular must arranging in advance, and then reel, the graphite roll coil of strip Feicheng winding is regular, therefore can wind the large diameter graphite roll coil of strip.
(4) accompanying drawing explanation
Fig. 1 is structural representation of the present utility model.
Fig. 2 is the scheme of installation of upper roller and lower roller.
Fig. 3 is the lateral plan of knife rest.
Fig. 4 is the cutaway view of upper roller.
Fig. 5 is the cutaway view of lower roller.
Fig. 6 is the partial enlarged drawing of A part in Fig. 4.
Fig. 7 is the partial enlarged drawing of B part in Fig. 5.
Fig. 8 is the scheme of installation of guiding roller and winding roller.
Fig. 9 is the cutaway view of guiding roller.
Figure 10 is the partial enlarged drawing of C part in Fig. 9.
(5) specific embodiment
Below in conjunction with the drawings and specific embodiments, the utility model is described in further detail.
With reference to Fig. 1~Figure 10, a Full-automatic flexible graphite cutting machine, comprises frame 1, and described frame 1 has a delivery platform 2, described delivery platform 2 is provided with two frame bars 3 consistent with feed direction that be parallel to each other, and two described frame bars 3 are added is provided with three transition axises 4.
Two frame all-in-one-piece support arms 5 that be parallel to each other and described are located in the place ahead of described delivery platform 2, and described support arm 5 is positioned at the below of described delivery platform 2, the added raw material roller 6 that is provided with of two described support arms 5.The roller of raw material described in the present embodiment 5 is located on raw material axle 7, and two of described raw material axle 7 is provided with block bearing 8, and described block bearing 8 is bearing on two support arms 5.
The rear of described delivery platform 2 is provided with a Cutting tool installation manner platform 9, and the top of described Cutting tool installation manner platform 9 is provided with a knife rest, and described knife rest comprises underframe 10 and upwardly extending the first boom 11, the second boom 12 at underframe 10 two ends.
Between the first described boom 11, the second boom 12, there are the upper roller 13 of metallic material, corresponding with this upper roller 13 lower roller 14 that is positioned at the nylon material under this upper roller, described upper roller 13 is parallel with described lower roller 14, described upper roller 13 is provided with some circle cutter rings 15, and the distance between adjacent cutter ring 15 equates.In the present embodiment, the space between described upper roller 13 and lower roller 14 is corresponding with described transition axis 4.
Described upper roller 13 is located in rotating shaft 16, described lower roller 14 is located on lower rotary shaft 17, the two ends of described upper rotating shaft 16 are located in respectively on described the first boom 11 and the second boom 12, also comprise that a frequency conversion being arranged in frame drives cutter motor 35, the output shaft that cutter motor 35 is driven in described frequency conversion is connected with described upper rotating shaft 16.
On the first described boom 11, offer the first moving window 18, on the second described boom, offer the second moving window, in the first described moving window 18, be slidably equipped with first slide block 19 that can slide up and down, in the second described moving window, be slidably equipped with second slide block that can slide up and down, the two ends of described lower rotary shaft 17 are located in respectively on described the first slide block 19 and the second slide block.Described in the present embodiment, the dual-side of the first moving window 18 is provided with the first slide rail, and the first described slide block 19 is located on the first described slide rail; The dual-side of described the second moving window is provided with the second slide rail, and the second described slide block is located on the second described slide rail.
On described Cutting tool installation manner platform 9, be also provided with the first cylinder 20 and the second cylinder 21, the piston rod of described the first cylinder 20 penetrates in described knife rest and is connected with the first described slide block 19, and the piston rod of described the second cylinder 21 penetrates in described knife rest and is connected with the second described slide block.
The frame at described Cutting tool installation manner platform 9 rears is provided with an adapter plate 22, described adapter plate is provided with vertical lifting sliding rail 23, on described lifting sliding rail 23, be slidably equipped with erecting frame, described erecting frame comprise transverse slat 24 and at the two ends of transverse slat 24 to starting stave 25, second riser 26 of downward-extension.
Between described starting stave 25 and the second riser 26, have guiding roller 27, described guiding roller 27 is located on a center shaft 28, and the two ends of described center shaft 28 are located in respectively on described starting stave 25 and the second riser 26.
Described guiding roller 27 is provided with some circle guide rings 29, and the distance between adjacent guide ring 29 equates, between adjacent guide ring 29, forms shaping groove 30.
In described frame, be also provided with vertical lift cylinder 31, the piston rod of described lift cylinder 31 is connected with described erecting frame.
Under described guiding roller 27, have winding roller 32, described winding roller 32 is located on a Scroll, and described Scroll is arranged in described frame, and this Scroll is also connected with the output shaft of a frequency conversion winding motor 34.
In use, flake graphite stock roll is on raw material roller 6, flake graphite raw material ride over forward on transition axis 4 and stretch to upper roller 13 and lower roller 14 between, then the first cylinder 20 and the second cylinder 21 actions, to on the first slide block 19 and the second slide block, push up respectively, thereby by top on lower roller 14, graphite raw material sheet is clamped between upper roller 13 and lower roller 14, then open frequency conversion and drive cutter motor 35, frequency conversion is driven cutter motor 35 and is driven upper roller 13 to rotate, thereby under the cutting action of cutter ring 15, flake graphite is cut into graphite tape.On lower roller 14, establish the inner groovy 33 corresponding with the space between adjacent cutter ring 15 on upper roller, the graphite tape shape cutting out is more regular.
When cutting, due to rubbing effect, lower roller 14 also rotates.
The graphite tape of cutting slivering enters in the shaping groove 30 forming between guide ring adjacent on guiding roller first separately, the head of graphite tape first manually part is wrapped on winding roller 32, then start frequency conversion winding motor 34, frequency conversion winding motor drives winding roller 32 to rotate, and can complete the auto reeling of graphite tape.Along with the graphite tape coil diameter of reeling is increasing, can erecting frame upwards be pushed up by lift cylinder 31, to increase space.In addition, along with graphite tape coil diameter is increasing, need to regulate frequency conversion to drive the rotating speed of cutter motor 35 and frequency conversion winding motor 34, thereby graphite tape can be reeled equably.
Claims (5)
1. a Full-automatic flexible graphite cutting machine, comprise frame, it is characterized in that: described frame has a delivery platform, described delivery platform is provided with two frame bars consistent with feed direction that be parallel to each other, added several transition axises that is provided with of two described frame bars;
Two frame all-in-one-piece support arms that be parallel to each other and described are located in the place ahead of described delivery platform, and described support arm is positioned at the below of described delivery platform, the added raw material roller that is provided with of two described support arms;
The rear of described delivery platform is provided with a Cutting tool installation manner platform, and the top of described Cutting tool installation manner platform is provided with a knife rest, and described knife rest comprises underframe and upwardly extending the first boom, the second boom at underframe two ends;
Between the first described boom, the second boom, there are the upper roller of metallic material, corresponding with this upper roller lower roller that is positioned at the nylon material under this upper roller, described upper roller is parallel with described lower roller, described upper roller is provided with some circle cutter rings, and the distance between adjacent cutter ring equates;
Described upper roller is located in rotating shaft, described lower roller is located on lower rotary shaft, the two ends of described upper rotating shaft are located in respectively on described the first boom and the second boom, also comprise that a frequency conversion drives cutter motor, and the output shaft that cutter motor is driven in described frequency conversion is connected with described upper rotating shaft;
On the first described boom, offer the first moving window, on the second described boom, offer the second moving window, in the first described moving window, be slidably equipped with first slide block that can slide up and down, in the second described moving window, be slidably equipped with second slide block that can slide up and down, the two ends of described lower rotary shaft are located in respectively on described the first slide block and the second slide block;
On described Cutting tool installation manner platform, be also provided with the first cylinder and the second cylinder, the piston rod of described the first cylinder penetrates in described knife rest and is connected with the first described slide block, and the piston rod of described the second cylinder penetrates in described knife rest and is connected with the second described slide block;
The frame of described Cutting tool installation manner platform rear is provided with an adapter plate, described adapter plate is provided with vertical lifting sliding rail, on described lifting sliding rail, be slidably equipped with erecting frame, described erecting frame comprise transverse slat and at the two ends of transverse slat to starting stave, second riser of downward-extension;
Between described starting stave and the second riser, have guiding roller, described guiding roller is located on a center shaft, and the two ends of described center shaft are located in respectively on described starting stave and the second riser;
Described guiding roller is provided with some circle guide rings, and the distance between adjacent guide ring equates, forms shaping groove between adjacent guide ring;
In described frame, be also provided with vertical lift cylinder, the piston rod of described lift cylinder is connected with described erecting frame;
Under described guiding roller, have winding roller, described winding roller is located on a Scroll, and described Scroll is arranged in described frame, and this Scroll is also connected with the output shaft of a frequency conversion winding motor.
2. Full-automatic flexible graphite cutting machine as claimed in claim 1, is characterized in that: described lower roller is provided with some circle inner groovies, and described inner groovy is corresponding with the space between adjacent cutter ring on upper roller.
3. Full-automatic flexible graphite cutting machine as claimed in claim 1 or 2, is characterized in that: the dual-side of described the first moving window is provided with the first slide rail, and the first described slide block is located on the first described slide rail; The dual-side of described the second moving window is provided with the second slide rail, and the second described slide block is located on the second described slide rail.
4. Full-automatic flexible graphite cutting machine as claimed in claim 1 or 2, is characterized in that: the space between described upper roller and lower roller is corresponding with described transition axis.
5. Full-automatic flexible graphite cutting machine as claimed in claim 1 or 2, is characterized in that: described raw material roller is located on raw material axle, and two of described raw material axle is provided with block bearing, and described block bearing is bearing on two support arms.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201320741643.2U CN203529571U (en) | 2013-11-11 | 2013-11-11 | Full-automatic flexible graphite slitting machine |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN201320741643.2U CN203529571U (en) | 2013-11-11 | 2013-11-11 | Full-automatic flexible graphite slitting machine |
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CN203529571U true CN203529571U (en) | 2014-04-09 |
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ID=50415807
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CN201320741643.2U Withdrawn - After Issue CN203529571U (en) | 2013-11-11 | 2013-11-11 | Full-automatic flexible graphite slitting machine |
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Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN103612936A (en) * | 2013-11-11 | 2014-03-05 | 慈溪市恒立密封材料有限公司 | Full-automatic flexible graphite dividing and cutting machine |
CN103991748A (en) * | 2014-05-30 | 2014-08-20 | 德清县新市镇铭达胶带加工厂 | Slitting machine for manufacturing of foam heat preservation strips |
CN109822640A (en) * | 2019-03-28 | 2019-05-31 | 豪德机械(上海)有限公司 | A kind of floor back fluting apparatus having roller transmission mechanism |
-
2013
- 2013-11-11 CN CN201320741643.2U patent/CN203529571U/en not_active Withdrawn - After Issue
Cited By (5)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN103612936A (en) * | 2013-11-11 | 2014-03-05 | 慈溪市恒立密封材料有限公司 | Full-automatic flexible graphite dividing and cutting machine |
CN103612936B (en) * | 2013-11-11 | 2016-03-02 | 慈溪市恒立密封材料有限公司 | A kind of Full-automatic flexible graphite cutting machine |
CN103991748A (en) * | 2014-05-30 | 2014-08-20 | 德清县新市镇铭达胶带加工厂 | Slitting machine for manufacturing of foam heat preservation strips |
CN109822640A (en) * | 2019-03-28 | 2019-05-31 | 豪德机械(上海)有限公司 | A kind of floor back fluting apparatus having roller transmission mechanism |
CN109822640B (en) * | 2019-03-28 | 2023-12-15 | 豪德机械(上海)有限公司 | Floor back slotting equipment with roller transmission mechanism |
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Legal Events
Date | Code | Title | Description |
---|---|---|---|
C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
AV01 | Patent right actively abandoned |
Granted publication date: 20140409 Effective date of abandoning: 20160302 |
|
C25 | Abandonment of patent right or utility model to avoid double patenting |