CN104325191A - Square pipe inclined cutting device - Google Patents
Square pipe inclined cutting device Download PDFInfo
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- CN104325191A CN104325191A CN201410590789.0A CN201410590789A CN104325191A CN 104325191 A CN104325191 A CN 104325191A CN 201410590789 A CN201410590789 A CN 201410590789A CN 104325191 A CN104325191 A CN 104325191A
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Abstract
The invention discloses a square pipe inclined cutting device which comprises an inclined cutting substrate and cutting holes, wherein the cutting holes are formed in the inclined cutting substrate and are used for accommodating saw wheels to extend from one side of the inclined cutting substrate to the other side; pressure blocks for compressing sections are arranged at the positions, which are close to the cutting holes, at one side of the inclined cutting substrate; the saw wheels for cutting the sections are arranged at the positions, which are close to the cutting hole, at the other side of the inclined cutting substrate; the saw wheels are driven to rotate by a saw wheel driving mechanism and operate back and forth in the cutting holes. By using the matched inclined cutting substrate and cutting holes and the saw wheels which are driven to rotate by the saw wheel driving mechanism and operate back and forth in the cutting holes, of the square pipe inclined cutting device, cutting efficiency and cutting accuracy can be greatly improved. By the unique clamping mode and the special design of two saw wheels of the square pipe inclined cutting device, cutting can be integrally processed; meanwhile, simultaneous processing of a plurality of square pipes can be implemented; accuracy can reach that a short edge has a length of 1 to 2mm; meanwhile, the square pipe inclined cutting device has an automatic feeding function.
Description
Technical field
The present invention relates to a kind of rectangular tube beveller.
Background technology
As everyone knows, in existing iron skill workpiece process, need the inclined-plane end cut of rectangular tube being become different angles, to adapt to the demand of various different mounting structure.The cutting of existing rectangular tube is cut after manually being determined by mis-cut angle, and not only precision is not enough, and operating efficiency is lower, and it is higher that prior art is badly in need of a kind of precision, the rectangular tube beveller that working (machining) efficiency is high.
Summary of the invention
The object of the invention is to overcome the defect existed in prior art, provide a kind of precision higher, the rectangular tube beveller that working (machining) efficiency is high.
For achieving the above object, technical scheme of the present invention there is provided a kind of rectangular tube beveller, comprise and cut sth. askew substrate and be arranged on cut hole substrate of cutting sth. askew held saw wheel and lean out to opposite side from substrate side of cutting sth. askew, described substrate side of cutting sth. askew is provided with the briquetting for compressing section bar near cut hole place, described substrate opposite side of cutting sth. askew is provided with the saw wheel for cutting section bar near cut hole place, described saw wheel drives to rotate and come and go by saw wheel driving mechanism and runs in cut hole.Cutting mechanism described in the application of the invention can improve cutting efficiency and cutting accuracy greatly.
As preferably, described saw wheel driving mechanism comprises saw wheel underframe, saw wheel linking arm, saw wheel motor, Timing Belt, side arm, rotary electric machine, saw wheel leading screw and contiguous block;
Described substrate of cutting sth. askew vertically is arranged, and described cut hole is arranged on cuts sth. askew on substrate plate face rearward;
The longeron connecting saw wheel driving mechanism is provided with below substrate of cutting sth. askew, extend along longeron to the outside of substrate of cutting sth. askew and be provided with horizontally disposed saw wheel underframe, described saw wheel underframe is rotatably connected to saw wheel linking arm near the inner side of substrate of cutting sth. askew, described saw wheel linking arm is vertically arranged, described saw wheel linking arm upper end is provided with saw wheel, described saw wheel linking arm lower end is provided with the saw wheel motor driving saw wheel to rotate, and described saw wheel motor to be driven with saw wheel by Timing Belt and is connected;
Hinged with saw wheel underframe in the middle part of described saw wheel linking arm, described saw wheel linking arm top is provided with the side arm parallel with saw wheel underframe, is rotatably connected to a rotary electric machine outside described saw wheel underframe, and described rotary electric machine upper end is provided with the saw wheel leading screw driven by it; Described side arm outer end is provided with one coordinates transmission contiguous block with saw wheel leading screw, and described contiguous block and side arm outer end are rotationally connected; Saw wheel linking arm, rotary electric machine keep vertical with the pivot center of contiguous block with saw wheel place plane.Such design can realize the surface trimming of saw blade wheel.
As preferably, described saw wheel underframe and longeron are rotationally connected, and the axis that described saw wheel underframe rotates overlaps with extensions under cut hole; The side that described substrate of cutting sth. askew is provided with saw wheel is right side, be provided with on the right side of described substrate of cutting sth. askew and vertically arrange and the connecting plate vertical with substrate of cutting sth. askew, described connecting plate is provided with two pieces in saw wheel driving mechanism both sides, one piece of horizontally disposed saw wheel angle adjustment plate is connected with, described saw wheel angle adjustment plate and the sector region being provided with between substrate and holding saw wheel driving mechanism of cutting sth. askew between described connecting plate; It is the deep-slotted chip breaker in the center of circle that described saw wheel angle adjustment plate is provided with cut hole, and described saw wheel underframe outer end extends laterally and is provided with slide plate, and described slide plate is provided with to coordinate with deep-slotted chip breaker and slides and the locking mechanism locked.Such mechanism can by the cutting angle regulating locking mechanism can change saw wheel.
As preferably, described locking mechanism comprises the locating piece and latch segment that arcuately groove sets gradually, and described locating piece lower end is provided with the first traveller coordinating with deep-slotted chip breaker and slide, and described first traveller lower end is fixed through deep-slotted chip breaker and slide plate; Described latch segment lower end is provided with the second traveller of coordinating with deep-slotted chip breaker and sliding and the clamping screw for locking, and described clamping screw is through deep-slotted chip breaker and be connected with locking nut; Described locating piece is fixedly connected with latch segment or by the adjustable connection of screw rod.Such design is the further optimization to scheme.
As preferably, one end near locating piece on described latch segment is provided with micro-adjusting mechanism, described micro-adjusting mechanism comprises projection and is arranged on fine setting block on latch segment and trimming bolt, described trimming bolt arcuately groove tangential direction successively by screw thread with finely tune block and locating piece is connected.Such structure can by regulating trimming bolt to finely tune saw wheel angle after locking locking nut.
As preferably, described locating piece is provided with angle indicator, and described deep-slotted chip breaker edge is provided with scale; Described cut hole is provided with two successively along substrate fore-and-aft direction of cutting sth. askew, and corresponding saw wheel is corresponding with saw wheel driving mechanism is provided with two, and two saw wheels and saw wheel driving mechanism are symmetrical arranged.Such design improves cutting accuracy, improves cutting efficiency simultaneously.
As preferably, described in substrate front end of cutting sth. askew be provided with one piece vertically and the feedboard vertical with substrate of cutting sth. askew, the front end of described feedboard is provided with two guide rollers be arranged side by side, and described guide roller vertically arranges and forms charging aperture between two guide rollers; Described substrate rear left of cutting sth. askew also is provided with two pieces of guide rod fixing plates, and described guide rod fixing plate and feedboard be arranged in parallel; Described guide rod fixing plate and feedboard are provided with two guide posts, and described guide post is setting up and down; Described conductor rod front portion slidably connects charging slide block, and described charging slide block is provided with the pneumatic gripping device that fore-and-aft direction runs, and described charging slide block drives front and back to slide by the charging leading screw be arranged in parallel with guide post, and described charging leading screw is driven by charging motor.Like this automatic charging realizing section bar is set.
As preferably, described in substrate left surface of cutting sth. askew be provided with the directive wheel coordinating with guide roller and lead, described directive wheel is arranged up and down in pairs along feedstock direction, and section bar is in a row held between directive wheel; Described directive wheel is connected with substrate of cutting sth. askew by guide wheel bracket, described guide wheel bracket is a fan, described fan tip is connected with substrate rotating of cutting sth. askew, be provided with arc regulating tank inside described fan curved edge, in described arc regulating tank, be provided with the fixture be connected with substrate of cutting sth. askew; Described fan near section bar while be provided with directive wheel linking arm, directive wheel is rotationally connected with directive wheel linking arm end.It is more stable that such design makes material loading run.
As preferably, the guide post between two pieces of guide rod fixing plates is fixed with two briquetting connecting plates, described briquetting connecting plate is respectively arranged with one and runs through pneumatic briquetting in left-right direction, described briquetting is pressed in the edge of cut hole.Such design make saw wheel cut time section bar and position between substrate of cutting sth. askew more stable.
As preferably, the right openings of described cut hole is trapezoid-shaped openings.Such design is convenient to avoid interfering with cut hole when cutting feed after saw wheel regulates.
Advantage of the present invention and beneficial effect are: the substrate of cutting sth. askew cooperatively interacted described in the application of the invention, cut hole and by saw wheel driving mechanism drive rotate and come and go the saw wheel run in cut hole and can greatly improve cutting efficiency and cutting accuracy.The particular design of the installation way original by the present invention and 2 saw wheels can make cutting time processing shaping; Can accomplish once to process for many simultaneously simultaneously; Precision can accomplish bond length 1-2 millimeter; Possesses automatic feeding function simultaneously.
Accompanying drawing explanation
Fig. 1 is front left side-looking corner structure schematic diagram of the present invention;
Fig. 2 is rear left side-looking corner structure schematic diagram of the present invention;
Fig. 3 is rear right side-looking corner structure schematic diagram of the present invention;
Fig. 4 is saw wheel driving mechanism structure schematic diagram of the present invention;
Fig. 5 is Fig. 4 A place structure enlarged diagram.
In figure: substrate of 1, cutting sth. askew; 2, cut hole; 3, briquetting; 4, saw wheel; 5, saw wheel underframe; 6, saw wheel linking arm; 7, saw wheel motor; 8, Timing Belt; 9, side arm; 10, rotary electric machine; 11, saw wheel leading screw; 12, contiguous block; 13, longeron; 14, connecting plate; 15, saw wheel angle adjustment plate; 16, sector region; 17, deep-slotted chip breaker; 18, slide plate; 19, locating piece; 20, latch segment; 21, the first traveller; 22, the second traveller; 23, clamping screw; 24, locking nut; 25, block is finely tuned; 26, trimming bolt; 27, angle indicator; 28, scale; 29, feedboard; 30, guide roller; 31, charging aperture; 32, guide rod fixing plate; 33, guide post; 34, charging slide block; 35, pneumatic gripping device; 36, charging leading screw; 37, charging motor; 38, directive wheel; 39, fan; 40, arc regulating tank; 41, fixture; 42, directive wheel linking arm; 43, briquetting connecting plate; 44, section bar.
Detailed description of the invention
Below in conjunction with drawings and Examples, the specific embodiment of the present invention is further described.Following examples only for technical scheme of the present invention is clearly described, and can not limit the scope of the invention with this.
As Figure 1-Figure 5, a kind of rectangular tube beveller, comprise and cut sth. askew substrate 1 and be arranged on the cut hole 2 substrate 1 of cutting sth. askew held saw wheel 4 and lean out to opposite side from substrate 1 side of cutting sth. askew, described substrate 1 side of cutting sth. askew is provided with the briquetting 3 for compressing section bar 44 near cut hole 2 place, described substrate 1 opposite side of cutting sth. askew is provided with the saw wheel 4 for cutting section bar 44 near cut hole 2 place, described saw wheel 4 drives to rotate and come and go by saw wheel driving mechanism and runs in cut hole 2.
Described saw wheel driving mechanism comprises saw wheel underframe 5, saw wheel linking arm 6, saw wheel motor 7, Timing Belt 8, side arm 9, rotary electric machine 10, saw wheel leading screw 11 and contiguous block 12;
Described substrate 1 of cutting sth. askew vertically is arranged, and the fore-and-aft direction substrate 1 of cutting sth. askew carried according to section bar 44 is divided into front and rear; Described cut hole 2 is arranged on cuts sth. askew on substrate 1 plate face rearward;
The longeron 13 connecting saw wheel driving mechanism is provided with below substrate 1 of cutting sth. askew, extend along longeron 13 to the outside of substrate 1 of cutting sth. askew and be provided with horizontally disposed saw wheel underframe 5, described saw wheel underframe 5 is rotatably connected to saw wheel linking arm 6 near the inner side of substrate 1 of cutting sth. askew, described saw wheel linking arm 6 is vertically arranged, described saw wheel linking arm 6 upper end is provided with saw wheel 4, described saw wheel linking arm 6 lower end is provided with the saw wheel motor 7 driving saw wheel 4 to rotate, and described saw wheel motor 7 is driven with saw wheel 4 by Timing Belt 8 and is connected;
Hinged with saw wheel underframe 5 in the middle part of described saw wheel linking arm 6, described saw wheel linking arm 6 top is provided with the side arm 9 parallel with saw wheel underframe 5, and side arm 9 is fixedly connected with saw wheel linking arm 6; Be rotatably connected to a rotary electric machine 10 outside described saw wheel underframe 5, described rotary electric machine 10 upper end is provided with the saw wheel leading screw 11 driven by it; Described side arm 9 outer end is provided with one coordinates transmission contiguous block 12 with saw wheel leading screw 11, and described contiguous block 12 is rotationally connected with side arm 9 outer end; Saw wheel linking arm 6, rotary electric machine 10 keep vertical with the pivot center of contiguous block 12 with saw wheel 4 place plane.
Described saw wheel underframe 5 is rotationally connected with longeron 13, and axis and cut hole 2 times extensions that described saw wheel underframe 5 rotates overlap; The side that described substrate 1 of cutting sth. askew is provided with saw wheel 4 is right side, be provided with on the right side of described substrate 1 of cutting sth. askew and vertically arrange and the connecting plate 14 vertical with substrate 1 of cutting sth. askew, described connecting plate 14 is provided with two pieces in saw wheel driving mechanism both sides, one piece of horizontally disposed saw wheel angle adjustment plate 15 is connected with, described saw wheel angle adjustment plate 15 and the sector region 16 being provided with between substrate 1 and holding saw wheel driving mechanism of cutting sth. askew between described connecting plate 14; The deep-slotted chip breaker 17 that it is the center of circle that described saw wheel angle adjustment plate 15 is provided with cut hole 2, described saw wheel underframe 5 outer end extends laterally and is provided with slide plate 18, and described slide plate 18 is provided with to coordinate with deep-slotted chip breaker 17 and slides and the locking mechanism locked.
Described locking mechanism comprises the locating piece 19 and latch segment 20 that arcuately groove 17 sets gradually, and described locating piece 19 lower end is provided with the first traveller 21 coordinating with deep-slotted chip breaker 17 and slide, and described first traveller 21 lower end is fixed through deep-slotted chip breaker 17 and slide plate 18; Described latch segment 20 lower end is provided with the second traveller 22 of coordinating with deep-slotted chip breaker 17 and sliding and the clamping screw 23 for locking, and described clamping screw 23 is through deep-slotted chip breaker 17 and be connected with locking nut 24; Described locating piece 19 is fixedly connected with latch segment 20 or by the adjustable connection of screw rod.
One end near locating piece 19 on described latch segment 20 is provided with micro-adjusting mechanism, described micro-adjusting mechanism comprises projection and is arranged on fine setting block 25 on latch segment 20 and trimming bolt 26, described trimming bolt 26 arcuately groove 17 tangential direction successively by screw thread with finely tune block 25 and locating piece 19 is connected.
Described locating piece 19 is provided with angle indicator 27, and described deep-slotted chip breaker 17 edge is provided with scale 28; Described cut hole 2 is provided with two successively along substrate 1 fore-and-aft direction of cutting sth. askew, and corresponding saw wheel 4 is corresponding with saw wheel driving mechanism is provided with two, and two saw wheels 4 and saw wheel driving mechanism are symmetrical arranged.
Described substrate 1 front end of cutting sth. askew is provided with one piece of vertical and vertical with substrate 1 of cutting sth. askew feedboard 29, and the front end of described feedboard 29 is provided with two guide rollers be arranged side by side 30, and described guide roller 30 vertically arranges and forms charging aperture 31 between two guide rollers 30; Described substrate 1 rear left of cutting sth. askew also is provided with two pieces of guide rod fixing plates 32, and described guide rod fixing plate 32 be arranged in parallel with feedboard 29; Described guide rod fixing plate 32 and feedboard 29 are provided with two guide posts 33, and described guide post 33 is setting up and down; Described conductor rod front portion slidably connects charging slide block 34, described charging slide block 34 is provided with the pneumatic gripping device 35 that fore-and-aft direction runs, described charging slide block 34 is slided before and after being driven by the charging leading screw 36 be arranged in parallel with guide post 33, and described charging leading screw 36 is driven by charging motor 37.
Described substrate 1 left surface of cutting sth. askew is provided with the directive wheel 38 coordinating with guide roller 30 and lead, and described directive wheel 38 is arranged up and down in pairs along feedstock direction, and section bar 44 is in a row held between directive wheel 38; Described directive wheel 38 is connected with substrate 1 of cutting sth. askew by directive wheel 38 support, described directive wheel 38 support is a fan 39, described fan 39 tip is rotationally connected with substrate 1 of cutting sth. askew, be provided with arc regulating tank 40 inside described fan 39 curved edge, in described arc regulating tank 40, be provided with the fixture 41 be connected with substrate 1 of cutting sth. askew; Described fan 39 near section bar 44 while be provided with directive wheel linking arm 42, directive wheel 38 is rotationally connected with directive wheel linking arm 42 end.
Guide post 33 between two pieces of guide rod fixing plates 32 is fixed with two briquetting connecting plates 43, described briquetting connecting plate 43 is respectively arranged with one and runs through pneumatic briquetting 3 in left-right direction, described briquetting 3 is pressed in the edge of cut hole 2.
The right openings of described cut hole 2 is trapezoid-shaped openings.Above-mentioned each mechanism of the present invention also can be controlled by PLC by rational programming by Artificial Control, realizes intellectualized operation.
Operationally, first the guiding mechanism input formed by the charging aperture 31 between guide roller 30 and directive wheel 38 by row's rectangular tube is needed, guide roller 30 is for limiting the movement of section bar 44 left and right directions, directive wheel 38 is for limiting the movement of section bar 44 above-below direction, guide roller 30 and directive wheel 38 are all provided with bearing, ensure its fluency run; The rectangular tube set in a row can arrange 1 to 10 any radicals, and the width according to rectangular tube radical can, by the angle between adjustment fan 39 and section bar 44, be that both are adaptive;
After section bar 44 inputs, by rational programming, pneumatic gripping device 35 brings into operation, by section bar 44 promptly, charging motor 37 drives charging leading screw 36 to rotate, leading screw drives charging slide block 34 to run backward, and charging slide block 34 drives pneumatic gripping device 35 and section bar 44 to run backward, owing to there being the effect of directive wheel 38, section bar 44 even running, when arrival commitment positions, charging motor 37 is out of service, and section bar 44 arrives cut hole 2 place;
Then, pneumatic briquetting 3 runs section bar 44 to be pressed on to the right cuts sth. askew on substrate 1, starts briquetting 3 position and is close to pore position by rational design but can not be interfered with saw wheel 4;
By the adjustment position of retaining mechanism on deep-slotted chip breaker 17, control the angle that saw wheel 4 is cut sth. askew, saw wheel motor 7 drives saw wheel 4 to rotate by Timing Belt 8, rotary electric machine 10 forward drive screw turns, leading screw drives contiguous block 12 upwards to run, meanwhile, saw wheel linking arm 6, rotary electric machine 10 and contiguous block 12 are respectively along respective pivot axis, saw wheel 4 is driven to run to the left through cut hole 2 on the right side of substrate 1 of cutting sth. askew, saw wheel 4 contacts with section bar 44 and is cut, cut complete after, rotary electric machine 10 rotates backward, drive saw wheel 4 regain; During cutting, at least one saw wheel driving mechanism runs; Preferably two saw wheel driving mechanism colleagues run; When the length that section bar 44 cuts is less than the width of pore, two saw wheel driving mechanisms are needed to hocket, certainly the cooperation of feeding guide mechanism is also needed, again section bar 44 is fed forward after first section bar 44 being delivered to the saw wheel driving mechanism cutting of rear end, is then cut by the saw wheel driving mechanism that position is relatively forward;
After cutting, pneumatic gripping device 35 and charging motor 37 continue circular flow, until section bar 44 cuts complete.
The above is only the preferred embodiment of the present invention; it should be pointed out that for those skilled in the art, under the prerequisite not departing from the technology of the present invention principle; can also make some improvements and modifications, these improvements and modifications also should be considered as the protection domain invented.
Claims (10)
1. a rectangular tube beveller, it is characterized in that: comprise and cut sth. askew substrate and be arranged on cut hole substrate of cutting sth. askew held saw wheel and lean out to opposite side from substrate side of cutting sth. askew, described substrate side of cutting sth. askew is provided with the briquetting for compressing section bar near cut hole place, described substrate opposite side of cutting sth. askew is provided with the saw wheel for cutting section bar near cut hole place, described saw wheel drives to rotate and come and go by saw wheel driving mechanism and runs in cut hole.
2. rectangular tube beveller as claimed in claim 1, is characterized in that: described saw wheel driving mechanism comprises saw wheel underframe, saw wheel linking arm, saw wheel motor, Timing Belt, side arm, rotary electric machine, saw wheel leading screw and contiguous block;
Described substrate of cutting sth. askew vertically is arranged, and described cut hole is arranged on cuts sth. askew on substrate plate face rearward;
The longeron connecting saw wheel driving mechanism is provided with below substrate of cutting sth. askew, extend along longeron to the outside of substrate of cutting sth. askew and be provided with horizontally disposed saw wheel underframe, described saw wheel underframe is rotatably connected to saw wheel linking arm near the inner side of substrate of cutting sth. askew, described saw wheel linking arm is vertically arranged, described saw wheel linking arm upper end is provided with saw wheel, described saw wheel linking arm lower end is provided with the saw wheel motor driving saw wheel to rotate, and described saw wheel motor to be driven with saw wheel by Timing Belt and is connected;
Hinged with saw wheel underframe in the middle part of described saw wheel linking arm, described saw wheel linking arm top is provided with the side arm parallel with saw wheel underframe, is rotatably connected to a rotary electric machine outside described saw wheel underframe, and described rotary electric machine upper end is provided with the saw wheel leading screw driven by it; Described side arm outer end is provided with one coordinates transmission contiguous block with saw wheel leading screw, and described contiguous block and side arm outer end are rotationally connected; Saw wheel linking arm, rotary electric machine keep vertical with the pivot center of contiguous block with saw wheel place plane.
3. rectangular tube beveller as claimed in claim 2, is characterized in that: described saw wheel underframe and longeron are rotationally connected, and the axis that described saw wheel underframe rotates overlaps with extensions under cut hole; The side that described substrate of cutting sth. askew is provided with saw wheel is right side, be provided with on the right side of described substrate of cutting sth. askew and vertically arrange and the connecting plate vertical with substrate of cutting sth. askew, described connecting plate is provided with two pieces in saw wheel driving mechanism both sides, one piece of horizontally disposed saw wheel angle adjustment plate is connected with, described saw wheel angle adjustment plate and the sector region being provided with between substrate and holding saw wheel driving mechanism of cutting sth. askew between described connecting plate; It is the deep-slotted chip breaker in the center of circle that described saw wheel angle adjustment plate is provided with cut hole, and described saw wheel underframe outer end extends laterally and is provided with slide plate, and described slide plate is provided with to coordinate with deep-slotted chip breaker and slides and the locking mechanism locked.
4. rectangular tube beveller as claimed in claim 3, it is characterized in that: described locking mechanism comprises the locating piece and latch segment that arcuately groove sets gradually, described locating piece lower end is provided with the first traveller coordinating with deep-slotted chip breaker and slide, and described first traveller lower end is fixed through deep-slotted chip breaker and slide plate; Described latch segment lower end is provided with the second traveller of coordinating with deep-slotted chip breaker and sliding and the clamping screw for locking, and described clamping screw is through deep-slotted chip breaker and be connected with locking nut; Described locating piece is fixedly connected with latch segment or by the adjustable connection of screw rod.
5. rectangular tube beveller as claimed in claim 4, it is characterized in that: the one end near locating piece on described latch segment is provided with micro-adjusting mechanism, described micro-adjusting mechanism comprises projection and is arranged on fine setting block on latch segment and trimming bolt, described trimming bolt arcuately groove tangential direction successively by screw thread with finely tune block and locating piece is connected.
6. rectangular tube beveller as claimed in claim 5, it is characterized in that: described locating piece is provided with angle indicator, described deep-slotted chip breaker edge is provided with scale; Described cut hole is provided with two successively along substrate fore-and-aft direction of cutting sth. askew, and corresponding saw wheel is corresponding with saw wheel driving mechanism is provided with two, and two saw wheels and saw wheel driving mechanism are symmetrical arranged.
7. rectangular tube beveller as claimed in claim 6, it is characterized in that: described in substrate front end of cutting sth. askew be provided with one piece vertically and the feedboard vertical with substrate of cutting sth. askew, the front end of described feedboard is provided with two guide rollers be arranged side by side, and described guide roller vertically arranges and forms charging aperture between two guide rollers; Described substrate rear left of cutting sth. askew also is provided with two pieces of guide rod fixing plates, and described guide rod fixing plate and feedboard be arranged in parallel; Described guide rod fixing plate and feedboard are provided with two guide posts, and described guide post is setting up and down; Described conductor rod front portion slidably connects charging slide block, and described charging slide block is provided with the pneumatic gripping device that fore-and-aft direction runs, and described charging slide block drives front and back to slide by the charging leading screw be arranged in parallel with guide post, and described charging leading screw is driven by charging motor.
8. rectangular tube beveller as claimed in claim 7, is characterized in that: described in substrate left surface of cutting sth. askew be provided with the directive wheel coordinating with guide roller and lead, described directive wheel is arranged up and down in pairs along feedstock direction, and section bar is in a row held between directive wheel; Described directive wheel is connected with substrate of cutting sth. askew by guide wheel bracket, described guide wheel bracket is a fan, described fan tip is connected with substrate rotating of cutting sth. askew, be provided with arc regulating tank inside described fan curved edge, in described arc regulating tank, be provided with the fixture be connected with substrate of cutting sth. askew; Described fan near section bar while be provided with directive wheel linking arm, directive wheel is rotationally connected with directive wheel linking arm end.
9. rectangular tube beveller as claimed in claim 8, it is characterized in that: the guide post between two pieces of guide rod fixing plates is fixed with two briquetting connecting plates, described briquetting connecting plate is respectively arranged with one and runs through pneumatic briquetting in left-right direction, described briquetting is pressed in the edge of cut hole.
10. rectangular tube beveller as claimed in claim 9, is characterized in that: the right openings of described cut hole is trapezoid-shaped openings.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201410590789.0A CN104325191B (en) | 2014-10-29 | Square pipe beveling device |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN201410590789.0A CN104325191B (en) | 2014-10-29 | Square pipe beveling device |
Publications (2)
Publication Number | Publication Date |
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CN104325191A true CN104325191A (en) | 2015-02-04 |
CN104325191B CN104325191B (en) | 2017-01-04 |
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Effective date of registration: 20170315 Address after: 214400, Wuxi, Jiangyin, Lingang street, West Shiqiao people's road, No. 113-115 Patentee after: JIANGYIN GREAT MASTER IRON ART ENGINEERING CO., LTD. Address before: 214400 Pujiang Road, Jiangsu city of Wuxi province Jiangyin Lingang New City Central Business District No. 99 Patentee before: JIANGYIN JUJIANG CULTURAL CREATIVE DEVELOPMENT CO., LTD. |