CN2400216Y - Aligning cutting machine - Google Patents

Aligning cutting machine Download PDF

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Publication number
CN2400216Y
CN2400216Y CN 99248460 CN99248460U CN2400216Y CN 2400216 Y CN2400216 Y CN 2400216Y CN 99248460 CN99248460 CN 99248460 CN 99248460 U CN99248460 U CN 99248460U CN 2400216 Y CN2400216 Y CN 2400216Y
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inroller
gear
support
bearing
swage
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Expired - Fee Related
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CN 99248460
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Chinese (zh)
Inventor
孔凡云
崔树文
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Individual
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Individual
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Abstract

The utility model discloses an aligning cutting machine, which belongs to the technical field of construction metal wire processing machinery. The aligning cutting machine comprises a machine seat, a feeder, an aligning device, a cutter, an electromotor, and a driving mechanism, wherein, the feeder, the aligning device, and the cutter are arranged on the machine seat, the feeder is arranged on the feeding end of the machine seat, the aligning device is arranged on the output point of the feeder, and the cutter is arranged on the output point of the aligning device; the electromotor works through the feeder, the aligning device, and the cutter which are driven by the driving mechanism. The aligning and the cutting of binding wires can be carried out by the aligning cutting machine, the lengths of the binding wires can be cut congruously, and therefore, the requirement of reinforcing bar binding can be satisfied, and waste can be avoided.

Description

Aligning cutting-off device
The utility model discloses a kind of aligning cutting-off device, belong to structural metal wire rod processing technique field.
In building operation, steel bar in reinforced concrete will be carried out colligation with the colligation silk in advance and fixed, then could pouring cement.The used colligation silk of assembling reinforcement is that rolling is transported to the building site, in use, the colligation silk of rolling is cut on demand the colligation silk section of certain-length.Be time saving and energy saving at present on-site, the mode of blocking commonly used be with the colligation silk of rolling not unreel directly be cut into several sections, like this, the colligation filament length degree that cuts out is inconsistent, colligation filament length degree on colligation silk volume outer ring is long, and the colligation filament length degree on colligation silk volume inner ring is short, and too short colligation silk can not use, the redundance of long colligation silk does not have use yet, causes the waste of colligation silk like this.It is reported that the colligation silk quantity of using on the construction site is bigger, the quantity of the colligation silk of wasting on hence one can see that the annual national construction site is very big, causes the waste of human, financial, and material resources.But colligation silk unreel be cut off, time-consuming, general building site is reluctant to do like this.
The purpose of this utility model is a kind of aligning cutting-off device of design, can be with the straightening of colligation silk, and length is cut off on demand, the colligation silk avoids waste.
The designed aligning cutting-off device of the utility model comprises support, feed appliance, swage, cutter, motor and transmission mechanism, feed appliance, swage and cutter are installed on the support, feed appliance is installed in the feed end of support, swage is installed in the exit of feed appliance, cutter is installed in the exit of swage, and motor drives feed appliance, swage and cutter action by transmission mechanism.
Described feed appliance comprises a pair of drawing-inroller, axle, support, movable axis bearing and spring, a drawing-inroller is the active drawing-inroller, initiatively on the axle in the bearing block on the drawing-inroller mounting bracket, initiatively drawing-inroller passes through the transmission mechanism driven rotary by motor, the another one drawing-inroller is passive drawing-inroller, on the axle in the passive drawing-inroller installation movable axis bearing, the movable axis bearing is installed on the guide rail of support, the movable axis bearing can move up and down along the guide rail on the support, between movable axis bearing and support spring is housed.
Described swage is a shaft-type part, and the swage two ends are installed on the bearing block, and swage passes through the belt driven rotary by motor, the swage middle part has groove, and the adjustment bolt is equipped with in the groove both sides, and spring guide is housed in the groove, spring guide joins with the adjustment bolt, and the swage two ends have through hole.
Described cutter comprises feeding mouth, cutting knife and bearing, and the feeding mouth is installed on the bearing, and the feeding mouth is a dead knife, and cutting knife is installed on the bearing, and cutting knife is as moving knife, and cutting knife is driven by transmission mechanism by motor.
Described transmission mechanism comprises decelerator, cam, push rod, connecting rod and intermittent drive mechanism, motor and decelerator link, reducer output shaft is equipped with cam, cam contacts with push rod, the connecting rod two ends link with push rod and cutting knife respectively, reducer output shaft also is equipped with sprocket wheel, links by chain and intermittent drive mechanism, and clearance transmission mechanism drives initiatively drawing-inroller rotation.
Described intermittent drive mechanism comprises two bevel gears, cam, push rod, spring, driving shaft, driven shaft, a pair of gear and the support of bearing, driving shaft, driven shaft are installed on the support of bearing, driving shaft one end is equipped with sprocket wheel, link by chain and the sprocket wheel that is contained on the decelerator, the other end of driving shaft is equipped with bevel gear, on the axle that the active drawing-inroller is installed, another bevel gear is housed, two bevel gears engagements; Gear is housed on the driving shaft, another gear is housed on the driven shaft, two gears engaged; Driven axle head is equipped with cam, and push rod is installed in the support that drawing-inroller is installed and installs between the movable axis bearing of passive drawing-inroller, and push rod one end contacts with cam, and the other end has the inclined-plane, and push rod one end is equipped with spring.
Described intermittent drive mechanism comprises two bevel gears and incomplete gear mechanism, incomplete gear mechanism comprises driving shaft, driven shaft, driving gear, driven gear, protruding locking wheel, the recessed locking wheel and the support of bearing, driving gear is a partial gear, driving shaft and driven shaft are installed on the support of bearing, driving shaft one end is equipped with sprocket wheel, link by the sprocket wheel on chain and the decelerator, driving gear and protruding locking wheel is housed on the driving shaft, driven gear and recessed locking wheel is housed on the driven shaft, driving gear and driven gear engagement, protruding locking wheel cooperates with recessed locking wheel, one end of driven shaft is equipped with bevel gear, on the axle head that the active drawing-inroller is installed, the another one bevel gear is housed, two bevel gears engagements.
Turnover bunker is housed behind cutter.
The designed aligning cutting-off device of the utility model has following advantage:
1. the colligation silk that avoids waste reduces construction cost.The colligation silk of rolling is through entering the feed appliance in the aligning cutting-off device after the uncoiling, by feed appliance the colligation silk is sent in the swage, the colligation silk will be delivered in the cutter through the colligation silk of alignment then by alignment in swage, press predetermined length by cutting knife the colligation silk is cut off.Through these processing, the colligation silk of rolling becomes the colligation silk section of certain-length, and the length neat and consistent has been eliminated because of the inconsistent waste that brings of colligation filament length degree, has reduced the construction cost of reinforcing bar binding.
2. raising work efficiency is saved manpower.Cut with straightening and to be afraid of that machined colligation silk speed is fast, the work efficiency height does not need to cut off with manpower the colligation silk of rolling, thereby compares with manually-operated, has improved work efficiency, has saved manpower.
3. through the colligation filament length degree unanimity of processing, easy to use, be convenient to the workmen and use.Can reduce workmen's the preparation of construction time, improve work efficiency, reduce the loss in the construction.
4. aligning cutting-off device is simple in structure, the production efficiency height, and low cost of manufacture is adapted at using in the construction enterprises.
Fig. 1 is a kind of structural representation front view of aligning cutting-off device.
Fig. 2 is the vertical view of Fig. 1.
Fig. 3 is the A-A cutaway view of Fig. 1.
Fig. 4 is the B-B cutaway view of Fig. 3.
Fig. 5 is the structural representation front view of second kind of aligning cutting-off device.
Fig. 6 is the vertical view of Fig. 5.
Fig. 7 is the C-C cutaway view of Fig. 5.
Fig. 8 is the D-D cutaway view of Fig. 7.
Fig. 9 is the E-E cutaway view of Fig. 8.
Below in conjunction with drawings and Examples the utility model is described in detail.
Embodiment 1
The structural representation of the described aligning cutting-off device of present embodiment is seen Fig. 1, Fig. 2, Fig. 3 and shown in Figure 4.
Aligning cutting-off device comprises support 1, feed appliance 2, swage 3, cutter 4, motor and transmission mechanism, feed appliance 2, swage 3 and cutter 4 are installed on the support 1, feed appliance 2 is installed in the feed end of support 1, swage 3 is installed in the port of export of feed appliance 2, cutter 4 is installed in the exit of swage 3, and motor drives feed appliance 2, swage 3 and cutter 4 work by transmission mechanism.
Feed appliance 2 includes a pair of drawing- inroller 5 and 6, axle 7 and 8, support 9, movable axis bearing 10, spring 11, drawing-inroller 5 is the active drawing-inroller, initiatively drawing-inroller 5 is installed in an end of axle 7, axle 7 is installed in the bearing block of support 9 bottoms, the other end of axle 7 is equipped with bevel gear 29, bevel gear 29 passes through the transmission mechanism driven rotary by motor, another drawing-inroller 6 is passive drawing-inrollers, passive drawing-inroller 6 is installed in an end of axle 8, axle 8 is installed in the movable axis bearing 10, movable axis bearing 10 is installed on the guide rail of support 9, and movable axis bearing 10 can move up and down along guide rail, between movable axis bearing 10 and support 9 spring 11 is housed.
Swage 3 is a shaft-type part, and the two ends of swage 3 are installed in respectively in bearing block 12 and 13.Swage 3 passes through belt 15 driven rotary by motor 14.The middle part of swage 3 has groove 16, and groove 16 both sides are equipped with and are adjusted bolt 17, and every side has 3 to adjust bolt 17.Spring guide 18 is housed in the groove 16, and spring guide 18 joins with adjustment bolt 17, adjusts the fixing spring conduits by adjusting bolt 17, and the two ends of swage 3 have through hole, so that the colligation silk passes swage 3.
Cutter 4 comprises feeding mouth 19, cutting knife 20 and bearing 21, on feeding mouth 19 erection supports 21, the exit of feeding mouth 19 is as dead knife, cutting knife 20 also is installed on the bearing pin on the bearing 21, cutting knife 20 is as moving knife, can rotate around bearing pin, cutting knife 20 and feeding mouth 19 are worked in coordination, finish cut-out work.Cutting knife 20 is driven by transmission mechanism by motor.
Transmission mechanism comprises decelerator 22, cam 23, push rod 24, connecting rod 25 and intermittent drive mechanism, motor 49 links with decelerator 22, cam 23 is housed on the output shaft of decelerator 22, cam 23 contacts with push rod 24, one end of push rod 24 is installed on the movable free bearing, one end and the push rod 24 of connecting rod 25 link, and the other end and cutting knife 20 link.The output shaft of decelerator 22 also is equipped with sprocket wheel 26, links by chain 27 and intermittent drive mechanism, and intermittent drive mechanism drives initiatively drawing-inroller 5 rotations.Intermittent drive mechanism comprises two bevel gears 28 and 29, cam 30, push rod 31, spring 32, driving shaft 33, driven shaft 34, a pair of gear 35 and 36 and the support of bearing 37 and 38, driving shaft 33 and driven shaft 34 are installed on the support of bearing 37 and 38, driving shaft 33 1 ends are equipped with sprocket wheel 39, link by chain 27 and the sprocket wheel 26 that is equipped with on the reducer output shaft, the other end of driving shaft 33 is equipped with bevel gear 28, initiatively other end installation bevel gear 29, bevel gear 28 and 29 engagements of the axle 7 of drawing-inroller 5 are being installed.Gear 35 is housed on the driving shaft 33, gear 36 is housed on the driven shaft 34, gear 35 and 36 engagements.One end of driven shaft 34 is equipped with cam 30, on support 9, between support 9 and movable axis bearing 10 push rod 31 is housed, end at push rod 31 is equipped with spring 32, one end of push rod 31 contacts with cam, and the other end has the inclined-plane, and the inclined-plane contacts with movable axis bearing 10.
The operation principle of aligning cutting-off device is: motor 49 is by decelerator 22, sprocket wheel 26, chain 27, sprocket wheel 39, driving shaft 33, bevel gear 28 and 29, driving initiatively, drawing-inroller 5 rotates, passive drawing-inroller 6 is pressed on the active drawing-inroller 5 by spring 11, rotates thereupon.Drive cutting knife 20 and rotate by cam 23, push rod 24, the connecting rod 25 that subtracts on the device 22 in addition, make cutting knife 20 can finish cut-out work.Motor 14 drives swage 3 by belt 15 and rotates.
During aligning cutting-off device work, the colligation silk is introduced between two drawing- inrollers 5 and 6 in the feed appliance 2, travel forward by 5 drives of active drawing-inroller, the colligation silk enters in the swage 3, the colligation silk is by spring guide 18 in swage 3, spring guide 18 is adjusted by adjusting bolt 17, make spring guide 18 form the wave curve, colligation silk process spring guide 18 backs are by alignment, colligation silk through alignment is admitted in the feeding mouth 19 of cutter 4, when the length of the colligation silk that comes out from feeding mouth 19 exits reaches predetermined length, cam 30 in the transmission mechanism promotes push rod 31 motions, the movable axis bearing 10 that inclined-plane on the push rod 31 promotes in the support 9 moves up, the driven drawing-inroller 6 that is installed in movable axis bearing 10 is moved up, make to be clipped in colligation silk stop motion between two drawing- inrollers 5 and 6, cutting knife 20 is at cam 23, push rod 24, the transmission of connecting rod 25 is rotated down, and the colligation silk that is parked in feeding mouth 19 exits is cut off.After the colligation silk cut off, cutting knife 20 resetted, and passive drawing-inroller 6 descends, and the colligation silk is moved on, carry out alignment, reach predetermined length after, cut off next time, so periodic duty makes the progressively alignment of colligation silk, the cut-out of rolling, forms the colligation silk section of length unanimity.
Embodiment 2
The structural representation of the described aligning cutting-off device of present embodiment is seen Fig. 5, Fig. 6, Fig. 7 and shown in Figure 9.
The structure of the described aligning cutting-off device of present embodiment and embodiment 1 are described basic identical, and difference is that intermittent drive mechanism in the transmission mechanism is with different described in the embodiment 1.Intermittent drive mechanism in the present embodiment is the partial gear intermittent drive mechanism, comprise two bevel gears 28 and 29, driving shaft 33, driven shaft 34, driving gear 40, driven gear 41, protruding locking wheel 42, recessed locking wheel 43 and support 37,38,44 and 45, driving gear 40 is a partial gear.Driving shaft 33 is installed on support 44 and 45, driven shaft 34 is installed on support 37 and 38, driving shaft one end is equipped with sprocket wheel 39, link by the sprocket wheel 26 on chain 27 and the decelerator 22, driving gear 40 and protruding locking wheel 42 are installed on the driving shaft 33, and driven gear 41, recessed locking wheel 43 are installed on the driven shaft 34, and an end of driven shaft 34 is equipped with bevel gear 28, installing initiatively, the other end of the axle 7 of drawing-inroller 5 is equipped with 29, two bevel gears 28 of bevel gear and 29 engagements.Gearing is played in driving gear 40 and driven gear 41 engagements, and protruding only lock wheel 42 and recessed locking wheel 43 cooperate, play intermittently failing, on protruding locking wheel 42, driving lever 46 is housed, on recessed locking wheel 43, shifting block 47 is housed, driving lever 46 and shifting block 47 are worked in coordination, and play the transition buffer effect.The partial gear indexing mechanism can make driving shaft 33 rotate continuously, and driven shaft 34 intermittently rotates, realize intermittently rotating thereby make by the active drawing-inroller 5 of intermittent drive mechanism transmission, time is intermittently designed as required, when active drawing-inroller 5 stops operating, cutting knife 20 cuts off the colligation silk, when active drawing-inroller 5 rotates, transport the colligation silk forward, make the colligation silk through swage 3 alignments, enter feeding mouth 19 again, and send the colligation silk of predetermined length from the exit of feeding mouth 19, cut off by cutting knife 20 then.So alignment, the cut-out work of colligation silk are finished in circulation, form the colligation silk section of length unanimity.
Another difference is in the exit of feeding mouth 19 Turnover bunker 48 to be housed, and an end and the cutting knife 20 of Turnover bunker 48 link, and the other end is installed on the bearing 47.Turnover bunker 48 can together rotate with cutting knife 20, and Turnover bunker 48 is accepted the colligation silk section that cutting knife 20 cuts off, and the upset of colligation silk section is poured on the support 1, and it is neat that colligation silk section is stacked, and is not deposited in the exit of feeding mouth 19.
The operation principle of the described aligning cutting-off device of present embodiment and process and embodiment 1 are described basic identical, and difference is that the mode of intermittently-driving is different different with the stacking mode of colligation silk section.

Claims (8)

1. aligning cutting-off device, it is characterized in that: comprise support, feed appliance, swage, cutter, motor and transmission mechanism, feed appliance, swage and cutter are installed on the support, feed appliance is installed in the feed end of support, swage is installed in the exit of feed appliance, cutter is installed in the exit of swage, and motor drives feed appliance, swage and cutter action by transmission mechanism.
2. aligning cutting-off device according to claim 1, it is characterized in that: described feed appliance comprises a pair of drawing-inroller, axle, support, movable axis bearing and spring, a drawing-inroller is the active drawing-inroller, initiatively on the axle in the bearing block on the drawing-inroller mounting bracket, initiatively drawing-inroller passes through the transmission mechanism driven rotary by motor, the another one drawing-inroller is passive drawing-inroller, on the axle in the passive drawing-inroller installation movable axis bearing, the movable axis bearing is installed on the guide rail of support, the movable axis bearing can move up and down along the guide rail on the support, between movable axis bearing and support spring is housed.
3. aligning cutting-off device according to claim 1, it is characterized in that: described swage is a shaft-type part, the swage two ends are installed on the bearing block, swage passes through the belt driven rotary by motor, the swage middle part has groove, and the adjustment bolt is equipped with in the groove both sides, and spring guide is housed in the groove, spring guide joins with the adjustment bolt, and the swage two ends have through hole.
4. aligning cutting-off device according to claim 1 is characterized in that: described cutter comprises feeding mouth, cutting knife and bearing, and the feeding mouth is installed on the bearing, the feeding mouth is as dead knife, cutting knife is installed on the bearing, and cutting knife is as moving knife, and cutting knife is driven by transmission mechanism by motor.
5. aligning cutting-off device according to claim 1, it is characterized in that: described transmission mechanism comprises decelerator, cam, push rod, connecting rod and intermittent drive mechanism, motor and decelerator link, reducer output shaft is equipped with cam, cam contacts with push rod, and the connecting rod two ends link with push rod and cutting knife respectively, and reducer output shaft also is equipped with sprocket wheel, link by chain and intermittent drive mechanism, intermittent drive mechanism drives initiatively drawing-inroller rotation.
6. aligning cutting-off device according to claim 5, it is characterized in that: described intermittent drive mechanism comprises two bevel gears, cam, push rod, spring, driving shaft, driven shaft, a pair of gear and the support of bearing, driving shaft, driven shaft are installed on the support of bearing, driving shaft one end is equipped with sprocket wheel, link by chain and the sprocket wheel that is contained on the decelerator, the other end of driving shaft is equipped with bevel gear, on the axle that the active drawing-inroller is installed another bevel gear is housed, two bevel gears engagements; Gear is housed on the driving shaft, another gear is housed on the driven shaft, two gears engaged; Driven axle head is equipped with cam, and push rod is installed in the support that drawing-inroller is installed and installs between the movable axis bearing of passive drawing-inroller, and push rod one end contacts with cam, and the other end has the inclined-plane, and push rod one end is equipped with spring.
7. aligning cutting-off device according to claim 5, it is characterized in that: described intermittent drive mechanism comprises two bevel gears and incomplete gear mechanism, incomplete gear mechanism comprises driving shaft, driven shaft, driving gear, driven gear, protruding locking wheel, the recessed locking wheel and the support of bearing, driving gear is a partial gear, driving shaft and driven shaft are installed on the support of bearing, driving shaft one end is equipped with sprocket wheel, link by the sprocket wheel on chain and the decelerator, driving gear and protruding locking wheel is housed on the driving shaft, driven gear and recessed locking wheel is housed on the driven shaft, driving gear and driven gear engagement, protruding locking wheel cooperates with recessed locking wheel, one end of driven shaft is equipped with bevel gear, on the axle head that the active drawing-inroller is installed the another one bevel gear is housed, two bevel gears engagements.
8. aligning cutting-off device according to claim 1 is characterized in that: Turnover bunker is housed behind cutter.
CN 99248460 1999-10-14 1999-10-14 Aligning cutting machine Expired - Fee Related CN2400216Y (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN 99248460 CN2400216Y (en) 1999-10-14 1999-10-14 Aligning cutting machine

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Application Number Priority Date Filing Date Title
CN 99248460 CN2400216Y (en) 1999-10-14 1999-10-14 Aligning cutting machine

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CN2400216Y true CN2400216Y (en) 2000-10-11

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CN 99248460 Expired - Fee Related CN2400216Y (en) 1999-10-14 1999-10-14 Aligning cutting machine

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Cited By (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101034630B (en) * 2006-07-06 2010-05-12 上海思源电力电容器有限公司 Internal fuse maker for high-voltage capacitor and its making method
CN101947732A (en) * 2010-08-10 2011-01-19 宁波永信钢管有限公司 Steel bar cutter
CN102688961A (en) * 2012-06-19 2012-09-26 曲海涛 Pre-stressed steel bar shearing machine
CN102848254A (en) * 2012-08-10 2013-01-02 浙江腾云制冷科技有限公司 Pipe conveying shaft driving device for pipe chamfering machine
CN102848279A (en) * 2012-08-10 2013-01-02 浙江腾云制冷科技有限公司 Full-automatic bidirectional pipe interior-exterior angle chamfering machine
CN108907033A (en) * 2018-08-28 2018-11-30 德州市八骏焊割设备附件有限公司 High speed low noise steel wire twists off machine
CN116079546A (en) * 2022-11-26 2023-05-09 佛山市南海区里水合盈机械厂 Full-automatic all-in-one machine for straightening, cutting off, sharpening and U-shaped forming

Cited By (10)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101034630B (en) * 2006-07-06 2010-05-12 上海思源电力电容器有限公司 Internal fuse maker for high-voltage capacitor and its making method
CN101947732A (en) * 2010-08-10 2011-01-19 宁波永信钢管有限公司 Steel bar cutter
CN102688961A (en) * 2012-06-19 2012-09-26 曲海涛 Pre-stressed steel bar shearing machine
CN102688961B (en) * 2012-06-19 2015-07-29 曲海涛 Deformed bar cutting machine
CN102848254A (en) * 2012-08-10 2013-01-02 浙江腾云制冷科技有限公司 Pipe conveying shaft driving device for pipe chamfering machine
CN102848279A (en) * 2012-08-10 2013-01-02 浙江腾云制冷科技有限公司 Full-automatic bidirectional pipe interior-exterior angle chamfering machine
CN102848279B (en) * 2012-08-10 2015-05-20 浙江腾云制冷科技有限公司 Full-automatic bidirectional pipe interior-exterior angle chamfering machine
CN108907033A (en) * 2018-08-28 2018-11-30 德州市八骏焊割设备附件有限公司 High speed low noise steel wire twists off machine
CN116079546A (en) * 2022-11-26 2023-05-09 佛山市南海区里水合盈机械厂 Full-automatic all-in-one machine for straightening, cutting off, sharpening and U-shaped forming
CN116079546B (en) * 2022-11-26 2023-11-07 佛山市南海区里水合盈机械厂 Full-automatic all-in-one machine for straightening, cutting off, sharpening and U-shaped forming

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