CN106368509B - V-shaped groups of metal filaments at knotting winding mechanism - Google Patents
V-shaped groups of metal filaments at knotting winding mechanism Download PDFInfo
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- CN106368509B CN106368509B CN201610982700.4A CN201610982700A CN106368509B CN 106368509 B CN106368509 B CN 106368509B CN 201610982700 A CN201610982700 A CN 201610982700A CN 106368509 B CN106368509 B CN 106368509B
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- 238000004804 winding Methods 0.000 title claims abstract description 143
- 230000007246 mechanism Effects 0.000 title claims abstract description 98
- 239000002184 metal Substances 0.000 title claims abstract description 16
- 229910052751 metal Inorganic materials 0.000 title claims abstract description 16
- 238000005452 bending Methods 0.000 claims abstract description 67
- 238000009434 installation Methods 0.000 claims description 10
- 239000002131 composite material Substances 0.000 claims description 5
- 239000004677 Nylon Substances 0.000 claims description 4
- 229920001778 nylon Polymers 0.000 claims description 4
- 230000005540 biological transmission Effects 0.000 claims description 3
- 239000000203 mixture Substances 0.000 claims description 3
- 229910000677 High-carbon steel Inorganic materials 0.000 abstract description 4
- 238000010586 diagram Methods 0.000 description 11
- 238000000034 method Methods 0.000 description 4
- XEEYBQQBJWHFJM-UHFFFAOYSA-N Iron Chemical compound [Fe] XEEYBQQBJWHFJM-UHFFFAOYSA-N 0.000 description 2
- 229910052799 carbon Inorganic materials 0.000 description 2
- 239000000463 material Substances 0.000 description 2
- 239000003351 stiffener Substances 0.000 description 2
- 241001416181 Axis axis Species 0.000 description 1
- OKTJSMMVPCPJKN-UHFFFAOYSA-N Carbon Chemical compound [C] OKTJSMMVPCPJKN-UHFFFAOYSA-N 0.000 description 1
- OAICVXFJPJFONN-UHFFFAOYSA-N Phosphorus Chemical compound [P] OAICVXFJPJFONN-UHFFFAOYSA-N 0.000 description 1
- 230000000712 assembly Effects 0.000 description 1
- 238000000429 assembly Methods 0.000 description 1
- 230000015572 biosynthetic process Effects 0.000 description 1
- 239000003575 carbonaceous material Substances 0.000 description 1
- 238000009833 condensation Methods 0.000 description 1
- 230000005494 condensation Effects 0.000 description 1
- 230000007547 defect Effects 0.000 description 1
- 238000005516 engineering process Methods 0.000 description 1
- 229910052742 iron Inorganic materials 0.000 description 1
- 238000002955 isolation Methods 0.000 description 1
- 239000002420 orchard Substances 0.000 description 1
- 229910052698 phosphorus Inorganic materials 0.000 description 1
- 239000011574 phosphorus Substances 0.000 description 1
- 230000000630 rising effect Effects 0.000 description 1
Classifications
-
- E—FIXED CONSTRUCTIONS
- E04—BUILDING
- E04H—BUILDINGS OR LIKE STRUCTURES FOR PARTICULAR PURPOSES; SWIMMING OR SPLASH BATHS OR POOLS; MASTS; FENCING; TENTS OR CANOPIES, IN GENERAL
- E04H17/00—Fencing, e.g. fences, enclosures, corrals
- E04H17/26—Devices for erecting or removing fences
- E04H17/261—Devices for erecting or removing fences for post and wire handling
- E04H17/266—Devices for erecting or removing fences for post and wire handling for stretching or winding wire or wire mesh
Landscapes
- Engineering & Computer Science (AREA)
- Architecture (AREA)
- Civil Engineering (AREA)
- Structural Engineering (AREA)
- Wire Processing (AREA)
- Braiding, Manufacturing Of Bobbin-Net Or Lace, And Manufacturing Of Nets By Knotting (AREA)
Abstract
The invention discloses a kind of V-shaped groups of metal filaments at knotting winding mechanism, including knotting silk bending mechanism, knotting silk cutting mechanism, knotting silk hot reeling machine structure, knotting silk winds organizine mechanism, knotting silk winding tram mechanism, the knotting silk winding organizine mechanism is intermeshed to form a knotting revolute by actively crossing shaft gear by driven gear and knotting shaft gear, and knotting silk winding organizine mechanism is mounted on immediately below hot reeling machine structure and is obliquely installed;Winding head is installed in winding axis one end of the hollow winding axle assembly of knotting silk winding tram mechanism, and the other end installs drive sprocket, the hollow winding axle assembly 90 degree of settings corresponding with knotting silk winding organizine axis.The knotting winding mechanism ensures organizine and the not mutual vibration of tram through netting fence, and wire side is smooth, indeformable, and warp, the tram of high-carbon steel wire can be used to be wound knotting.
Description
Technical field
The present invention relates to the winding mechanisms of netting fence machine, and in particular to a kind of V-shaped groups of metal filaments at knotting wrapping machine
Structure.
Background technology
Metal mesh is usually used in boundary's enclosure from either region division, locality protection.It is widely used in:Industry, agricultural, herding
The isolation in the various places such as industry, forestry, highway, railway, national defence, airport, harbour, municipal guardrail, greening, grassland, orchard
With protection.The canoe of existing woven wire machine is the mode that weft silk is directly wound through filament, and latitude is directly wound through filament
The mode of line has the following disadvantages:The canoe of organizine, the rigidity material that tram can not use phosphorus content high are wound using tram
Matter silk, (weft is easily broken off using high carbon filament when winding organizine) can only use the tram of low-carbon material, knot insecure, resist
Tensile strength is low, be easy vibration, it is whole throw the net be easy bending deformation, and this winding method organizine just as a leaf of hinge, in weft
It can be rotated on silk, not play the role of upright supports as straight line silk.
Therefore, the present invention develops that a kind of winding is secured, and through filament and the not mutual vibration of weft silk, wire side is smooth, constant
The winding mechanism of shape, this winding mechanism ensure, through the not mutual vibration of tram, the latitude and longitude of high-carbon steel wire to can be used to be wound and beat
Knot.Winding intensity has met and exceeded the regulation of JB/T7138-2010 standards.
Invention content
In place of overcoming prior art shortcoming and defect, the present invention, which develops one kind, can produce winding securely, warp
Silk and the not mutual vibration of weft silk, wire side is smooth, indeformable netting fence winding mechanism, this winding mechanism ensure warp, weft it
Between not vibration, the latitude and longitude of high-carbon steel wire can be used to be wound knottings, low-carbon can also be used according to the requirement of the tensile strength of net
Silk.
A kind of V-shaped groups of metal filaments at knotting winding mechanism, including knotting silk bending mechanism, knotting silk cutting mechanism,
Knotting silk hot reeling machine structure, knotting silk wind organizine mechanism, and knotting silk winds tram mechanism;Knotting silk winding organizine mechanism packet
Include knotting silk winding organizine motor, organizine knotting axis, knotting bearing shell cassette holder, knotting spool box seat supports crossbeam, driven gear, master
Moving axis, actively cross axis, knotting tile box base is sequentially arranged on knotting spool box seat supports crossbeam, each organizine knotting axis be mounted on phase
On corresponding tile box base, knotting silk winds organizine motor by chain-driving driving shaft, and driving shaft is driven by driving chain pacifies
Axis is actively crossed on watt box, knotting shaft gear of the knotting axis installation with opening, organizine knotting axis is equipped with transverse concave groove, warp
Silk knotting axis spindle nose has winding head on end face, actively crosses shaft gear and is intermeshed to form one by driven gear and knotting shaft gear
A knotting revolute, knotting silk winding organizine mechanism are mounted on immediately below knotting silk hot reeling machine structure and are obliquely installed;
Knotting silk winding tram mechanism includes knotting silk winding tram motor, hollow winding axle assembly, winding head, latitude
Silk winding axis driven sprocket, driving chain, tram, which knot, winds axis fixed cross beam, the winding axis one of the hollow winding axle assembly
End installation winding head, other end installation winding axis sprocket wheel, the centre bore of winding head are installed with tram, the hollow winding axle assembly and
Organizine knotting axis corresponds to 90 degree of settings, and the hollow winding axle assembly is sequentially fixed at tram and knots on winding axis fixed cross beam.
Further, the organizine knotting axis of knotting silk winding organizine mechanism is equipped with vertical groove, and magnetic is set in transverse concave groove
Iron.
Further, the winding head of knotting silk winding organizine mechanism is made of knotting silk guiding surface, winding groove.
Further, the hollow winding axle assembly of knotting silk winding tram mechanism is pinched by strap folder beats in tram
On knot winding axis fixed cross beam, the spacing between bearing block is adjusted by clamping plate fastening bolt.
Further, knotting axis winding tram mechanism further includes double strand chain Composite top plate, and knotting silk winds latitude
Silk all winding axis of mechanism are driven by a double total driving chain, and working face and the tram of double total driving chain wind axis
Driven sprocket engages, and corresponding working face sets double strand chain Composite top plate, and the projection portion of the chain top plate corresponds to chain
Groove.
Further, the knotting silk winds the winding head of tram mechanism for flat winding head, on the end face of flat winding head
Equipped with winding groove and hanging wire groove.
Further, the knotting silk hot reeling machine structure includes falling a cylinder, falling a crossbeam, balance shaft, falls lead screw, knotting silk folding
It is equipped with above bender structure and falls a whippletree, balance shaft, fallen lead screw and fall a whippletree and be connected and through bending axis, fall a whippletree and balance
Axis rack connects, and balance shaft rack is engaged with balance shaft gear, and balance shaft gear is mounted on the both ends of balance shaft, falls a cylinder
Stretching motion forms the pair that moves up and down by balance shaft lead screw is fallen, and falls lead screw and cooperatively forms closing, folding with bending head
Region.
Further, the hot reeling machine structure further includes nylon wheel and spring, falls a whippletree and is equipped with movable nylon wheel, spring
One end is connect with a whippletree is fallen, and the other end is connect with a cylinder is fallen.
Further, the knotting silk bending mechanism include bending fix whippletree, gear, rack, bending cylinder, bending head,
Bending axis, bending axis are mounted on by bearing on the bearing block of bending whippletree, gear are installed on bending axis, wheel and rack is nibbled
It closes, rack connects bending cylinder, and the bending head is used to knotting silk being bent into V-type silk, and bending head is by bending slot, toroidal
Shape wears a guide pin composition, and knotting silk is sent into bending slot through knotting silk cutting mechanism along a guide pin is worn, and bending axis is equipped with
Eccentric orfice falls lead screw and convexes to form a sliding pair with below bending slot across eccentric orfice, rack is pushed by bending cylinder
Band moving gear rotates, and the rotation of bending axis drives folding rotating elbow that knotting silk is converted into V-type.
Further, the knotting silk cutting mechanism by cut-out fixed cross beam, cut-out swing arm, arm shaft, cut-out swing arm push rod,
Bulb bearing, cut-out fixed plate, one-way check device, cut-out cylinder, cylinder fixed seat, hollow knife edge die and cutter composition, cut-out
Cut-out swing arm is installed with arm shaft successively on fixed cross beam, cuts off and processes groove below swing arm, it is hollow to cut in cutter installation groove
Disconnected mould is fixed on cut-out fixed cross beam, and hollow knife edge die forms cut-out kinematic pair with cutter, and knotting silk is worn by wire feeder
Enter the hollow mouth of hollow knife edge die, cut-out cylinder pushes cut-out swing arm push rod to drive cut-out kinematic pair, the hollow hollow mouth of knife edge die
Knotting silk is cut off with the closing motion of cutter.
The advantage of the invention is that:1, the netting fence winding that the knotting winding mechanism is produced is secured, through filament and weft
The not mutual vibration of silk, wire side are smooth, indeformable;2, the latitude and longitude of high-carbon steel wire can be used to be wound knotting for the winding mechanism.
Description of the drawings
Fig. 1 is the overall structure diagram of the present invention;
Fig. 2 is the bending of knotting silk and hot reeling machine structure structural schematic diagram;
Fig. 3 is that knotting silk winds organizine mechanism structure schematic diagram;
Fig. 4 is that knotting silk winds organizine mechanism winding head structural schematic diagram;
Fig. 5 is that knotting silk winds tram mechanism front view;
Fig. 6 is that knotting silk winds tram mechanism rearview;
Fig. 7 is that knotting silk winds partial side view of tram mechanism;
Fig. 8 is the structural schematic diagram of knotting silk cutting mechanism;
1- knotting silk bending mechanisms;2- knotting silk cutting mechanisms;3- knotting silk hot reeling machine structures;4- knotting silks wind organizine machine
Structure;5- knotting silks wind tram mechanism;Whippletree is fixed in 6- bendings;7- racks;8- bending axis;9- balance shafts;10- balance shaft teeth
Item;11- balance shaft gears;12- falls lead screw;13- falls a whippletree;14- cutting mechanisms;15- falls a cylinder;16- bending cylinders;
17-V type knotting silks;18,19- dropping process;20- closings, folding region;21- trams;22- organizine;23- bending heads;24- is fallen
Silk crossbeam;25- bearing blocks;26- driving chains;27- knotting spool box seat supports crossbeams;28- actively crosses shaft gear;29- knots
Shaft gear;30- organizine knotting axis;31- organizine slides bar;32- organizine pushes away lead screw;33- keeps off tram spring;34- knotting spool boxs
Seat;35- knotting silks wind organizine motor;36- actively crosses axis;37- driving shafts;C- winding heads;D- winds groove;E- magnet;F-
Transverse concave groove;G- vertical grooves;38- trams, which knot, winds axis fixed cross beam;39- trams, which knot, winds axis;40- trams wind axis
Driven sprocket;41- double strand chain Composite top plates;42- top plate stiffeners;The hollow winding axle assemblies of 43-;44- winds axis axis
Bearing;45- transmission ratio sprocket wheels;46- knotting silks wind tram motor;47- winds tram motor drive chain;The double total biographies of 48-
Dynamic chain;49- clamping plate fastening bolts;The projection portion of 50- chain top plates;51- chain grooves;52- winding grooves;53- centre bores;
54- hanging wire grooves;The flat winding heads of 55-;56- cuts off fixed cross beam;57- cuts off fixed plate;58- bulb bearings;59- cut-out pendulum
Arm;60- cuts off swing arm push rod;61- cylinder fixed seats;62- cuts off cylinder;63- one-way check devices;64- arm shafts;65- is hollow
Knife edge die;66- cutters;67- trams side winding head.
Specific implementation mode
Fig. 1 is the overall structure diagram of the present invention.
The knotting winding mechanism is mainly made of following five branches:Knotting silk bending mechanism 1, knotting silk cutting machine
Structure 2, knotting silk hot reeling machine structure 3, knotting silk wind organizine mechanism 4, and knotting silk winds tram mechanism 5.
Referring to the structural schematic diagram that Fig. 2 is the bending of knotting silk and hot reeling machine structure.
The knotting silk bending mechanism 1 is mainly by bending cylinder 16, the rack 7 of connection bending cylinder 16, bending axis 8, folding
Elbow 23, bending are fixed whippletree 6 and are formed.The bending head 23 is used to knotting silk being converted into V-type silk, bending cylinder 16 and rack 7
Straight reciprocating motion pair, bending head 23 is transformed by engaging for rack 7 and gear by the secondary (rotation angle of crankmotion
140-170 degree is adjustable).Bending head 23 is made of a guide pin of wearing for bending slot, bell shape, and knotting wire threading machine structure passes through
The guide pin of wearing that cutting mechanism prolongs knotting silk on bending head 23 penetrates in bending slot, and the rotation of bending head is cut off by knotting silk
Knotting silk is converted into inverted V-shape by mechanism 2 with the cooperation of lead screw 12 is fallen, and is hung on bending head 23, falling a crossbeam 24 prevents V-type silk or so
It shakes.
The hot reeling machine structure is mainly by falling a cylinder 15, falling a whippletree 13, fall lead screw 12, balance shaft 9, balance shaft gear 11
It is formed with balance shaft rack 10.The stretching motion for falling a cylinder 15 falls one up and down motion of the formation of lead screw 12 for 9 by balance shaft
Pair falls lead screw 12 and cooperatively forms closing, folding region 20 with bending head 23, falls the rising of lead screw 12, the whereabouts of V-type knotting silk 17 rides over
On tram 21 (tram is obliquely installed), it is snapped down to knotting mechanism, organizine 22, tram 21, V-type knotting silk 17 realize three combinations
(dropping process referring to), knotting mechanism is wound into V-type knotting silk 17 on organizine 22 and tram 21 respectively after combination.
It is that knotting silk winds organizine mechanism structure schematic diagram referring to Fig. 3, Fig. 4 is the winding head that knotting silk winds organizine mechanism
Structural schematic diagram;
Knotting silk winding organizine mechanism includes knotting silk winding organizine motor 35, bearing block 25, driving chain 26, warp
Silk knotting axis 30, knotting bearing shell cassette holder 34, knotting spool box seat supports crossbeam 27, driven gear 28, gear tram spring 33, organizine
It slides bar 31, actively cross axis 36 and knotting axis rollback position block, knotting silk winding organizine mechanism 4 is obliquely installed to ensure V-type
Knotting silk 17 accurately slides to organizine 22, and knotting silk winding organizine motor 35 passes through chain-driving driving shaft 37, driving shaft
37 actively cross axis 36 by the drive of driving chain 26 on watt box, actively cross axis 36 by gear organizine knotting axis 36
Form a knotting revolute, gear of the installation of organizine knotting axis 30 with opening.The knotting axis is referring to the enlarging section in Fig. 4
Point, knotting axis is equipped with transverse concave groove F and vertical groove G, sets magnet E in transverse concave groove F, knotting axis spindle nose has winding head on end face
C, the winding head are made of knotting silk guiding surface, winding groove D.
The knotting silk winds organizine operation principle:Step 1:Organizine pushes away lead screw 32 and organizine is knotted axis by organizine
In 30 transverse concave groove F push-in organizine knottings axis 30, magnet E sucks organizine 22 admittedly, and organizine pushes away lead screw 32 and organizine knotting axis
30 vertical groove G match with ensure knotting silk be pushed into the center of knotting axis and magnet E inhale and.Step 2:Knotting silk falls silk
V-type knotting silk 17 is fallen to 22 position of organizine by mechanism 3, and organizine 22, tram 21, V-type knotting silk 17 are grouped together (such as Fig. 4
It is shown).Step 3:The rotation of organizine knotting axis 30 is wound into knotting silk on organizine by winding head C and groove D, one circle of winding
Stop to V-type knotting silk 17 and 21 parallel position of tram.Step 4:Organizine knotting axis 30 is inverted to start bit after winding
It sets.Wait for knotting silk winding tram mechanism 5 that V-type knotting silk 17 is wound on tram 21.
It is the structural schematic diagram that knotting silk winds tram mechanism referring to Fig. 5 (forward sight), Fig. 6 (backsight), Fig. 7 is that knotting silk twines
Around partial side view of tram mechanism;
Knotting silk winding tram mechanism includes knotting silk winding tram motor 46, winding tram motor drive chain
47, transmission ratio sprocket wheel 45, hollow winding axle assembly 43, tram wind axis driven sprocket 40, tram knotting winds axis 39, double total
Driving chain 48, tram knotting winding axis fixed cross beam 38, winding bearing housing 44, clamping plate fastening bolt 49, double strand chain are multiple
Condensation material top plate 41, top plate stiffener 42 are twined with upper-part by the way that the 46 rotation drive one of knotting silk winding tram motor is all
The revolute group being pivoted.
Chain is driven with sprocket wheel generally can only be such as the wrapping kind of drive of the 47/46/18 of Fig. 5, cannot a biography of chain 48
Dynamic multiple winding axis driven sprockets 40 (chain 48 and sprocket wheel 40 can take off tooth) are corresponded to by the projection portion 50 of the chain top plate
Chain groove 51 and sprocket wheel 40 press, and efficiently solve the problems, such as the de- tooth of chain and sprocket wheel, and 44 spacing (i.e. net of knotting bearing block
The size of lattice) size of spacing can be arbitrarily adjusted by clamping plate fastening bolt 55.
The hollow winding axle assembly by outer watt of box, bearing, winding axis, winding axis sprocket wheel 40, flat winding head 55 (referring to
It Fig. 5) forms, tram knots, and flat winding head 55 is installed in 39 one end of winding axis, the other end installs winding axis sprocket wheel 40.It is described flat
The end face of winding head 55 is equipped with winding groove 52 and hanging wire groove 54.The hollow winding axle assembly 43 is mounted on tram knotting and twines
It on axis fixed cross beam 38, and is obliquely installed, 43 90 degree corresponding with organizine knotting axis 30 settings of the hollow winding axle assembly are flat
The centre bore 53 of flat winding head 55 is installed with tram 21, is rotated by flat winding head 55 and V-type knotting silk 17 is wound into tram 21
On, organizine 22 is wound on tram 21 by two tram side winding heads 67 respectively.
Fig. 8 is the structural schematic diagram of knotting silk cutting mechanism;
The knotting silk cutting mechanism is by cut-out fixed cross beam 56, cut-out swing arm 59, arm shaft 64, cut-out swing arm push rod
60, bulb bearing 58, cut-out fixed plate 57, one-way check device 63, cut-out cylinder 62, cylinder fixed seat, 65 and of hollow knife edge die
Cutter 66 forms.Hollow knife edge die 65 forms a kinematic pair with cutter 66, and knotting silk penetrates hollow cut-out by wire feeder
The hollow mouth of mould 65, cut-out cylinder push cut-out swing arm push rod 60 to drive cut-out kinematic pair, the hollow mouth of hollow knife edge die 65 with
The closing motion of cutter 66 cuts off knotting silk.
The action step of five branches
Action step 1:Knotting silk is converted into V-shape by knotting silk bending mechanism 1.
Action step 2:Knotting silk cutting mechanism 2 cuts off knotting silk, and knotting silk bending mechanism 1 retracts and passes through knotting silk
Hot reeling machine structure 3 is transformed into knotting silk the knotting silk of the downward shape of V word mouths.
Action step 3:V-type knotting silk 17 is fallen to winding mechanism by knotting silk hot reeling machine structure 3.
Action step 4:Knotting silk winding organizine mechanism 4 is wound into knotting silk on organizine 22.
Action step 5:Knotting silk winding tram mechanism 5 is wound into remaining knotting silk on tram 21, and completing to knot twines
Around step.
Claims (10)
1. a kind of V-shaped groups of metal filaments at knotting winding mechanism, including knotting silk bending mechanism (1), knotting silk cutting mechanism
(2), knotting silk hot reeling machine structure (3), knotting silk wind organizine mechanism (4), and knotting silk winds tram mechanism (5), it is characterised in that:
Knotting silk winding organizine mechanism includes knotting silk winding organizine motor (35), organizine knotting axis (30), knotting bearing shell
Cassette holder (34), driven gear (28), driving shaft (37), actively crosses axis (36), knotting watt at knotting spool box seat supports crossbeam (27)
Cassette holder (34) is sequentially arranged on knotting spool box seat supports crossbeam (27), and each organizine knotting axis (30) is mounted on corresponding watt
On cassette holder, knotting silk winds organizine motor (35) by chain-driving driving shaft (37), and driving shaft (37) passes through driving chain
(26) it drives to be mounted on watt box and actively crosses axis (36), knotting shaft gear (29) of the knotting axis installation with opening, organizine is beaten
It ties axis (30) and is equipped with transverse concave groove (F), organizine knotting axis spindle nose has winding head on end face, actively crosses shaft gear (28) by driven
Gear forms a knotting revolute with knotting shaft gear (29) intermeshing, and knotting silk winding organizine mechanism (4) is mounted on and beats
Immediately below knot silk hot reeling machine structure (3) and it is obliquely installed;
Knotting silk winding tram mechanism includes knotting silk winding tram motor (46), hollow winding axle assembly (43), winding
Head, tram winding axis driven sprocket (40), driving chain, tram, which knot, winds axis fixed cross beam (38), the hollow winding axis
Winding axis one end installation winding head, the other end installation winding axis sprocket wheel (40) of assembly (43), the centre bore (53) of winding head are worn
There are tram, hollow winding axle assembly (43) 90 degree of settings corresponding with organizine knotting axis (30), the hollow winding axle assembly
(43) tram is sequentially fixed to knot on winding axis fixed cross beam (38).
2. V-shaped groups of metal filaments according to claim 1 at knotting winding mechanism, it is characterised in that:The knotting silk
The organizine knotting axis (30) for winding organizine mechanism (4) is equipped with vertical groove (G), and magnet (E) is set in transverse concave groove (F).
3. V-shaped groups of metal filaments according to claim 1 at knotting winding mechanism, it is characterised in that:The knotting silk
The winding head of winding organizine mechanism (4) is made of knotting silk guiding surface, winding groove.
4. V-shaped groups of metal filaments according to claim 1 at knotting winding mechanism, it is characterised in that:The knotting silk
The hollow winding axle assembly (43) for winding tram mechanism (5) is pinched by strap folder in tram knotting winding axis fixed cross beam
(38) on, the spacing between bearing block is adjusted by clamping plate fastening bolt (49).
5. V-shaped groups of metal filaments according to claim 1 at knotting winding mechanism, it is characterised in that:The knotting axis
Winding tram mechanism further includes double strand chain Composite top plate, and it is double by one that knotting silk winds all winding axis of tram mechanism
Total driving chain (48) transmission is arranged, the working face of double total driving chain (48) is engaged with tram winding axis driven sprocket (40),
Corresponding working face sets double strand chain Composite top plate (41), the corresponding chain groove of projection portion (50) of the chain top plate
(51)。
6. V-shaped groups of metal filaments according to claim 1 at knotting winding mechanism, it is characterised in that:The knotting silk
The winding head for winding tram mechanism (5) is flat winding head (55), and the end face of flat winding head (55) is equipped with winding groove (52)
With hanging wire groove (54).
7. V-shaped groups of metal filaments according to claim 1 at knotting winding mechanism, it is characterised in that:The knotting silk
Hot reeling machine structure (3) includes falling a cylinder (15), falling a crossbeam (24), and balance shaft (9) falls lead screw (12), knotting silk bending mechanism
(1) top is equipped with and falls a whippletree (13), balance shaft (9), falls lead screw (12) and falls a whippletree (13) and be connected and through bending axis
(8), it falls a whippletree (13) to connect with balance shaft rack (10), balance shaft rack (10) is engaged with balance shaft gear (11), balance
Shaft gear (11) is mounted on the both ends of balance shaft (9), falls the stretching motion of a cylinder (15) by balance shaft (9) falling lead screw
(12) pair that moves up and down is formed, lead screw (12) is fallen and cooperatively forms closing, folding region (20) with bending head (23).
8. V-shaped groups of metal filaments according to claim 1 at knotting winding mechanism, it is characterised in that:The hot reeling machine
Structure further includes nylon wheel and spring, falls a whippletree (13) and is equipped with movable nylon wheel, spring one end connects with a whippletree (13) is fallen
It connects, the other end is connect with a cylinder (15) is fallen.
9. V-shaped groups of metal filaments according to claim 1 at knotting winding mechanism, it is characterised in that:The knotting silk
Bending mechanism includes that whippletree (6), gear, rack (7), bending cylinder (16), bending head (23), bending axis (8), folding are fixed in bending
Cambered axle (8) is mounted on by bearing on the bearing block of bending whippletree, gear is installed on bending axis (8), wheel and rack (7) is nibbled
It closes, rack (7) connects bending cylinder (16), and the bending head is used to knotting silk being bent into V-type silk, and bending head (23) is by bending
Slot, bell shape wear thread guide pin composition, and knotting silk is sent into a bending slot, folding through knotting silk cutting mechanism along a guide pin is worn
Cambered axle (8) is equipped with eccentric orfice, falls lead screw (12) and convexes to form a sliding pair with below bending slot across eccentric orfice, passes through
Bending cylinder (16) pushes rack (7) band moving gear to rotate, and bending axis (8) rotation drive bending head (23), which rotates, rolls over knotting silk
At V-type.
10. V-shaped groups of metal filaments according to claim 1 at knotting winding mechanism, it is characterised in that:The knotting silk
Cutting mechanism is by cut-out fixed cross beam (56), cut-out swing arm (59), arm shaft (64), cut-out swing arm push rod (60), bulb bearing
(58), fixed plate (57), one-way check device (63), cut-out cylinder (62), cylinder fixed seat, hollow knife edge die (65) are cut off and is cut
Knife (66) forms, and arm shaft (64) installation cut-out swing arm (59) is used on cut-out fixed cross beam (56) successively, under cut-out swing arm (59)
Fang Jiagong grooves, in cutter installation groove, hollow knife edge die (65) is fixed on cut-out fixed cross beam (56), hollow knife edge die
(65) cut-out kinematic pair is formed with cutter (66), knotting silk is penetrated the hollow mouth of hollow knife edge die (65) by wire feeder, cut
Cylinder (62) of dying pushes cut-out swing arm push rod (60) to drive cut-out kinematic pair, the closing motion of hollow knife edge die hollow mouth and cutter
Cut off knotting silk.
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Denomination of invention: A knotting and winding mechanism composed of V-shaped metal wires Granted publication date: 20180921 Pledgee: Bank of China Chifeng Branch Pledgor: Chifeng Zhuofeng CNC Machinery Co.,Ltd.|Wang Zhuzi Registration number: Y2024980008714 |
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