CN102877209A - Double-needlebar totally-forming 3D (three-dimensional) textile warp knitting machine - Google Patents

Double-needlebar totally-forming 3D (three-dimensional) textile warp knitting machine Download PDF

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Publication number
CN102877209A
CN102877209A CN201210327657XA CN201210327657A CN102877209A CN 102877209 A CN102877209 A CN 102877209A CN 201210327657X A CN201210327657X A CN 201210327657XA CN 201210327657 A CN201210327657 A CN 201210327657A CN 102877209 A CN102877209 A CN 102877209A
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China
Prior art keywords
bar
needle
sley
cam
sley bar
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Pending
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CN201210327657XA
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Chinese (zh)
Inventor
王敏其
王水
赵启
李永年
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Changzhou Wujin Wuyang Textile Machinery Co Ltd
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Changzhou Wujin Wuyang Textile Machinery Co Ltd
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Application filed by Changzhou Wujin Wuyang Textile Machinery Co Ltd filed Critical Changzhou Wujin Wuyang Textile Machinery Co Ltd
Priority to CN201210327657XA priority Critical patent/CN102877209A/en
Publication of CN102877209A publication Critical patent/CN102877209A/en
Pending legal-status Critical Current

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Abstract

The invention relates to a double-needlebar totally-forming 3D (three-dimensional) textile warp knitting machine. The warp knitting machine comprises a rack; a loop-forming device and a guide bar device are arranged on the rack; and a transmission device is arranged on the rack below a front and a rear pendulum shafts; the transmission device comprises a front-needlebar transmission mechanism, a rear-needlebar transmission mechanism, a front sinker bed transmission mechanism, a rear sinker bed transmission mechanism, a front knocking over transmission mechanism, a rear knocking over transmission mechanism and a guide bar cradle upper swinging transmission mechanism; and the components in the loop-forming device are driven to do weaving movement through the transmission mechanisms in the transmission device. The warp knitting machine provided by the invention can weave a textile with the thickness up to 50 mm; and moreover, the woven textile has excellent ventilation, proper resilience force and good acoustic and shock resistances.

Description

A kind of two-needle bar 3D fabric warp knitting machine that entirely is shaped
Technical field
The present invention relates to textile technology field, especially a kind of two-needle bar 3D fabric warp knitting machine that entirely is shaped.
Background technology
Along with the development of science and technology, the improving constantly of people's living standard, the industries such as mattress, seat cushion, back cushion are progressively to the future development of hommization.For a long time, soft foam (usually claiming sponge) mattress, seat cushion with the characteristics such as its cheap, soft plentiful, lightweight, form stable in the industries such as mattress, seat cushion in occupation of consequence.But along with the raising that the enhancing of people's environmental consciousness and people require comfortableness, sponge matress, seat cushion day by day demonstrate its inferior position.Sponge is ventilative, and the defective on the heat dispersion and at the insufficiency of function of long-term deodorizing, antibiotic, anti-sclerosis, antioxidation can't be recycled, and can cause the problems such as environmental pollution.
Summary of the invention
The technical problem to be solved in the present invention is: a kind of two-needle bar 3D fabric warp knitting machine that entirely is shaped is provided, improves the gas permeability of the full shaping 3D fabric of knitting, the thickness of suitable resiliency, sound insulation damping property and fabric.
The technical solution adopted for the present invention to solve the technical problems is: a kind of two-needle bar 3D fabric warp knitting machine that entirely is shaped, comprise frame, be provided with looping device and guide bar assembly on the described frame, described guide bar assembly is arranged on the frame by upper balance staff, described looping device comprises front needle-bar part, rear needle-bar part, front sinker bed part and rear sinker bed part, before described, rear needle-bar part is symmetricly set on the frame by front balance staff and rear balance staff respectively, described before, rear sinker bed part also is symmetricly set on the frame by front balance staff and rear balance staff respectively;
Described guide bar assembly comprises the upper balance staff that is dynamically connected mutually with frame, the sley bar reel cage that is connected with upper balance staff, is provided with sley bar on the described sley bar reel cage and is arranged on sley point on the sley bar;
Before being positioned at, be provided with transmission device on the frame of rear balance staff below, described transmission device comprises front needle-bar transmission mechanism, rear needle-bar transmission mechanism, front sinker bed transmission mechanism, rear sinker bed transmission mechanism, front knocking over transmission mechanism, swing actuation mechanism on rear knocking over transmission mechanism and the sley bar reel cage, before described, rear needle-bar transmission mechanism is symmetricly set on the frame by the first driving shaft and the second driving shaft respectively, before described, rear sinker bed transmission mechanism is also respectively by first, two driving shafts are symmetricly set on the frame, before described, rear knocking over transmission mechanism is equally respectively by first, two driving shafts are symmetricly set on the frame, and the swing actuation mechanism is arranged on the first driving shaft on the described sley bar reel cage;
Described forward and backward needle-bar transmission mechanism partly provides power to forward and backward needle-bar respectively, described forward and backward sinker bed transmission mechanism partly provides power to forward and backward sinker bed respectively, described forward and backward knocking over transmission mechanism provides power transmission to forward and backward balance staff respectively, and the swing actuation mechanism provides power transmission and controls its swing to guide bar assembly on the described sley bar reel cage.
Further, described forward and backward needle-bar part respectively comprises needle-bar reel cage, needle-bar bracket, is connected to the needle-bar on the needle-bar bracket and is installed in groove pin on the needle-bar;
Described forward and backward needle-bar transmission mechanism respectively comprises needle-bar cam swing arm and the needle-bar cam that is separately fixed on first and second driving shaft, be provided with the interior needle-bar roller that is meshed with needle-bar cam inner ring face and the outer needle-bar roller that is meshed with needle-bar cam outer ring face on the described needle-bar cam swing arm, described outer needle-bar roller is connected with the first needle-bar connecting rod, described the first needle-bar connecting-rod bolts are connected with the second needle-bar connecting rod, and described the second needle-bar connecting rod is connected with the needle-bar bracket;
Forward and backward needle-bar transmission mechanism is realized moving up and down of needle-bar by the swing of needle-bar cam, thereby drives moving up and down of latch needles.
Further, described forward and backward sinker bed part respectively comprises the sedimentation swing arm and is fixed on the sinker bed of sedimentation swing arm front end and is installed in sedimentation pin on the sinker bed;
Before described, rear sinker bed transmission mechanism respectively comprises the sedimentation cam swing arm and is separately fixed at first, sedimentation cam on two driving shafts, be provided with the interior sedimentation roller that is meshed with sedimentation cam inner ring face and the outer sedimentation roller that is meshed with sedimentation cam outer ring face on the described sedimentation cam swing arm, described outer sedimentation roller is connected with the first sedimentation connecting rod, described the first sedimentation connecting-rod bolts are connected with the second sedimentation connecting rod, be flexibly connected between described the second sedimentation connecting rod and the sedimentation swing arm, before front and back two sedimentation swing arms are connected to, on the rear balance staff, front, rear sinker bed transmission mechanism drives seesawing of sinker bed by the swing of sedimentation cam.
Further, described forward and backward knocking over transmission mechanism respectively comprises the casting-off cam swing arm and is separately fixed at casting-off cam on first and second driving shaft, be provided with the interior knocking over roller that is meshed with casting-off cam inner ring face and the outer knocking over roller that is meshed with casting-off cam outer ring face in the described casting-off cam swing arm, described outer knocking over roller is connected with the first knocking over connecting rod, described the first knocking over connecting-rod bolts are connected with the second knocking over connecting rod, described the second knocking over bar is connected with the knocking over swing arm, and front and back two knocking over swing arms are connected on the forward and backward balance staff.
Further, the swing actuation mechanism comprises the sley bar cam swing arm on the described sley bar reel cage, be connected on the sley bar on the first driving shaft and put cam, be connected to swing arm in the middle of the sley bar on the front balance staff and be connected to sley bar top link on the balance staff, be provided with the interior sley bar roller that is meshed with pendulum cam inner ring face on the sley bar and the outer sley bar roller that is meshed with pendulum cam outer ring face on the sley bar on the described sley bar cam swing arm, described outer sley bar roller bearing pin is connected with on the first sley bar puts connecting rod, the pendulum connecting-rod bolts are connected with on the second sley bar and put connecting rod on the first sley bar, swing arm flexible connection in the middle of pendulum connecting rod and the sley bar on described the second sley bar, swing arm is connected with on the 3rd sley bar and puts connecting rod in the middle of the described sley bar, the pendulum connecting rod is connected with the curved swing arm of sley bar on described the 3rd sley bar, the curved swing arm of described sley bar is connected with sley bar top link on being connected to upper balance staff, make balance staff motion on the pendulum cam driven on the sley bar by swing actuation mechanism on the sley bar reel cage, thereby band is automatically connected in the motion of the sley bar reel cage on the balance staff.
Further, described guide bar assembly comprises the upper balance staff that is dynamically connected mutually with frame, the sley bar reel cage that is connected with upper balance staff, is provided with sley bar on the described sley bar reel cage and is arranged on sley point on the sley bar;
Further, be provided with 6 sley bars on the described sley bar reel cage, middle two sley bars be a hair comb sley bar, be positioned at 4 of both sides sley bar combed sley bar for ground.
Further, be provided with on the described frame for the electronic traversing device of controlling each guide bar shogging of guide bar assembly.
The invention has the beneficial effects as follows: warp knitting machine of the present invention can weave the fabric that thickness can reach 50mm, and the fabric that weaves has good gas permeability, suitable rebound power and good sound insulation damping property.
Description of drawings
The present invention is further described below in conjunction with drawings and Examples.
Fig. 1 is structural representation of the present invention.
Fig. 2 is needle-bar part and needle-bar transmission mechanism structural representation.
Fig. 3 is the axonometric projection graph of Fig. 2.
Fig. 4 is sinker bed part and sinker bed transmission mechanism structural representation.
Fig. 5 is the axonometric projection graph of Fig. 4.
Fig. 6 is the structural representation of knocking over transmission mechanism.
Fig. 7 is swing actuation mechanism structural representation on the sley bar reel cage.
Fig. 8 is the guide bar assembly structural representation.
Fig. 9 is the electronic traversing device structural representation.
Among the figure 1, front needle-bar part, 1 ', rear needle-bar part, 1-1, needle-bar, 1-2, groove pin, 1-3, the needle-bar bracket, 1-4, the needle-bar reel cage, 2, front sinker bed part, 2 ', rear sinker bed part, 2-1, the sedimentation swing arm, 2-2, the sinker bed, 2-3, the sedimentation pin, 3, guide bar assembly, 3-1, the sley bar reel cage, 3-2, sley bar, 4, front needle-bar transmission mechanism, 4 ', rear needle-bar transmission mechanism, 4-0, the needle-bar cam, 4-1, the first needle-bar connecting rod, 4-2, the second needle-bar connecting rod, 4-3, interior needle-bar roller, 4-4, the needle-bar cam swing arm, 4-5, outer needle-bar roller, 5, front sinker bed transmission mechanism, 5 ', rear sinker bed transmission mechanism, 5-0, the sedimentation cam, 5-1, the first sedimentation connecting rod, 5-2, the second sedimentation connecting rod, 5-3, interior sedimentation roller, 5-4, the sedimentation cam swing arm, 5-5, outer sedimentation roller, 5-7, the sedimentation connector, 6, front knocking over transmission mechanism, 6 ', rear knocking over transmission mechanism, 6-0, casting-off cam, 6-1, the first knocking over connecting rod, 6-2, the second knocking over connecting rod, 6-3, interior knocking over roller, 6-4, the casting-off cam swing arm, 6-5, outer knocking over roller, 6-7, the knocking over connector, 6-9, the knocking over swing arm, 7, swing actuation mechanism on the sley bar reel cage, 7-0, put cam on the sley bar, 7-1, put connecting rod on the first sley bar, 7-2, put connecting rod on the second sley bar, 7-3, put connecting rod on the 3rd sley bar, 7-4, the sley bar cam swing arm, 7-5, interior sley bar roller, 7-6, outer sley bar roller, 7-8, the sley bar connector, 7-9, swing arm in the middle of the sley bar, 7-10, the curved swing arm of sley bar, 7-11, the sley bar top link, 8, the first driving shaft, 9, the second driving shaft, 10, front balance staff, 10 ', rear balance staff, 11, upper balance staff, 12, electronic traversing device.
The specific embodiment
In conjunction with the accompanying drawings, the present invention is further detailed explanation.These accompanying drawings are the schematic diagram of simplification, basic structure of the present invention only is described in a schematic way, so it only show the formation relevant with the present invention.
Such as Fig. 1 to a kind of two-needle bar shown in Figure 9 3D fabric warp knitting machine that entirely is shaped, comprise frame, be provided with looping device and guide bar assembly 3 on the frame, guide bar assembly 3 is arranged on the frame by upper balance staff 11, looping device comprises front needle-bar part 1, rear needle-bar part 1 ', front sinker bed part 2 and rear sinker bed part 2 ', forward and backward needle-bar part 1,1 ' is symmetricly set on the frame by front balance staff 10 and rear balance staff 10 ' respectively, and forward and backward sinker bed part 2,2 ' also is symmetricly set on the frame by front balance staff 10 and rear balance staff 10 ' respectively;
Guide bar assembly 3 comprises the upper balance staff 11 that is dynamically connected mutually with frame, the sley bar reel cage 3-1 that is connected with upper balance staff 11, is provided with sley bar 3-2 on the sley bar reel cage 3-1 and is arranged on sley point on the sley bar 3-2;
Before being positioned at, rear balance staff 10, be provided with transmission device on the frame of 10 ' below, transmission device comprises front needle-bar transmission mechanism 4, rear needle-bar transmission mechanism 4 ', front sinker bed transmission mechanism 5, rear sinker bed transmission mechanism 5 ', front knocking over transmission mechanism 6, swing actuation mechanism 7 on rear knocking over transmission mechanism 6 ' and the sley bar reel cage, before, rear needle-bar transmission mechanism 4,4 ' is symmetricly set on the frame by the first driving shaft 8 and the second driving shaft 9 respectively, before, rear sinker bed transmission mechanism 5,5 ' also respectively by first, two driving shafts 8,9 are symmetricly set on the frame, before, rear knocking over transmission mechanism 6,6 ' equally respectively by first, two driving shafts 8,9 are symmetricly set on the frame, and swing actuation mechanism 7 is arranged on the first driving shaft 8 on the sley bar reel cage;
Forward and backward needle-bar part 1,1 ' respectively comprises needle-bar reel cage 1-4, needle-bar bracket 1-3, be connected to the needle-bar 1-1 on the needle-bar bracket 1-3 and be installed in groove pin 1-2 on the needle-bar 1-1; Before, rear needle-bar transmission mechanism 4,4 ' respectively comprises needle-bar cam swing arm 4-4 and is separately fixed at first, two driving shafts 8, needle-bar cam 4-0 on 9, be provided with the interior needle-bar roller 4-3 that is meshed with needle-bar cam 4-0 inner ring face and the outer needle-bar roller 4-5 that is meshed with needle-bar cam 4-0 outer ring face on the needle-bar cam swing arm 4-4, interior needle-bar roller 4-3 and outer needle-bar roller 4-5 are connected on the needle-bar cam swing arm 4-4 by bearing pin, and outer needle-bar roller 4-5 is connected with the first needle-bar connecting rod 4-1, the first needle-bar connecting rod 4-1 bolt is connected with the second needle-bar connecting rod 4-2, the second needle-bar connecting rod 4-2 is connected with needle-bar bracket 1-3, before, rear needle-bar transmission mechanism 4,4 ' the swing by needle-bar cam 4-0 realizes moving up and down of needle-bar 1-1, thereby drive moving up and down of latch needles, finish the action of braiding.
Forward and backward sinker bed part 2,2 ' respectively comprises sedimentation swing arm 2-1 and is fixed on the sinker bed 2-2 of sedimentation swing arm 2-1 front end and is installed in sedimentation pin 2-3 on the sinker bed 2-2; Before, rear sinker bed transmission mechanism 5,5 ' respectively comprises sedimentation cam swing arm 5-4 and is separately fixed at first, two driving shafts 8, sedimentation cam 5-0 on 9, sedimentation cam swing arm 5-4 upper pin is connected with the interior sedimentation roller 5-3 that is meshed with sedimentation cam 5-0 inner ring face and the outer sedimentation roller 5-5 that is meshed with sedimentation cam 5-0 outer ring face, and, outer sedimentation roller 5-5 is connected with the first sedimentation connecting rod 5-1, the first sedimentation connecting rod 5-1 bolt is connected with the second sedimentation connecting rod 5-2, the second sedimentation connecting rod 5-2 is flexibly connected by sedimentation connector 5-7 and sedimentation swing arm 2-1, before front and back two sedimentation swing arm 2-1 are connected to, rear balance staff 8, on 9, front, rear sinker bed transmission mechanism 5, what 5 ' swing by sedimentation cam 5-0 drove sinker bed 2-2 seesaws to finish braid movement.
Before, rear knocking over transmission mechanism 6,6 ' respectively comprises casting-off cam swing arm 6-4 and is separately fixed at first, two driving shafts 8, casting-off cam 6-0 on 9, be provided with the interior knocking over roller 6-3 that is meshed with casting-off cam 6-0 inner ring face and the outer knocking over roller 6-5 that is meshed with casting-off cam 6-0 outer ring face on the casting-off cam swing arm 6-4, outer knocking over roller 6-5 is connected with the first knocking over connecting rod 6-1, the first knocking over connecting rod 6-1 bolt is connected with the second knocking over connecting rod 6-2, the second knocking over bar 6-2 is flexibly connected by knocking over connector 6-7 and knocking over swing arm 6-9, before front and back two knocking over swing arm 6-9 are connected to, rear balance staff 8, on 9, by front, rear knocking over transmission mechanism 6,6 ' drive before, rear balance staff 8,9 swing, thereby before band is automatically connected in, rear balance staff 8, braiding is helped in the motion of other mechanism components on 9.
Swing actuation mechanism 7 comprises sley bar cam swing arm 7-4 on the sley bar reel cage, be connected to pendulum cam 7-0 on the sley bar on the first driving shaft 8, be connected to the middle swing arm 7-9 of sley bar and the sley bar top link 7-11 that is connected on the balance staff 11 on the front balance staff 10, sley bar cam swing arm 7-4 upper pin is connected with the interior sley bar roller 7-5 that is meshed with pendulum cam 7-0 inner ring face on the sley bar and the outer sley bar roller 7-6 that is meshed with pendulum cam 7-0 outer ring face on the sley bar, outer sley bar roller 7-6 bearing pin is connected with pendulum connecting rod 7-1 on the first sley bar, pendulum connecting rod 7-1 bolt is connected with pendulum connecting rod 7-2 on the second sley bar on the first sley bar, pendulum connecting rod 7-2 is flexibly connected by swing arm 7-9 in the middle of a sley bar connector 7-8 and the sley bar on the second sley bar, and swing arm 7-9 is connected with pendulum connecting rod 7-3 on the 3rd sley bar by another sley bar connector 7-8 in the middle of the sley bar, pendulum connecting rod 7-3 is connected with the curved swing arm 7-10 of sley bar on the 3rd sley bar, the curved swing arm 7-10 of sley bar is connected with sley bar top link 7-11 on being connected to upper balance staff 11, by swing actuation mechanism 7 on the sley bar reel cage the upper balance staff 11 of pendulum cam 7-0 drives is moved, thereby the sley bar 3-2 that is with the motion that is automatically connected in the sley bar reel cage 3-1 on the balance staff 11 to help on the sley bar reel cage 3-1 finish braid movement.
Be provided with sley bar 3-2 on the sley bar reel cage 3-1 and be arranged on sley point on the sley bar 3-2, be provided with 6 sley bar 3-2 at sley bar reel cage 3-1, two sley bar 3-2 are a hair comb sley bar in the middle of need to prove, be positioned at 4 of both sides sley bar 3-2 combed sley bar for ground.
Be provided with the traversing electronic traversing device 12 for each sley bar 3-2 of control on the frame, electronic traversing device 12 is connected with guide bar assembly 3, electronic traversing device 12 transverse movement precision are high, speed is fast, noise is little, and the space that takies is little, production cost is low, can weave various complex patterns, one-shot forming, can satisfy how fast multistage warp let-off requirement, it is reliable to operate steadily.
Take above-mentioned foundation desirable embodiment of the present invention as enlightenment, by above-mentioned description, the relevant staff can in the scope that does not depart from this invention technological thought, carry out various change and modification fully.The technical scope of this invention is not limited to the content on the specification, must determine its technical scope according to the claim scope.

Claims (8)

1. two-needle bar 3D fabric warp knitting machine that entirely is shaped, comprise frame, it is characterized in that: be provided with looping device and guide bar assembly (3) on the described frame, described guide bar assembly (3) is arranged on the frame by upper balance staff (11), described looping device comprises front needle-bar part (1), rear needle-bar part (1 '), front sinker bed part (2) and rear sinker bed part (2 '), before described, rear needle-bar part (1,1 ') be symmetricly set on the frame by front balance staff (10) and rear balance staff (10 ') respectively, described before, rear sinker bed part (2,2 ') also be symmetricly set on the frame by front balance staff (10) and rear balance staff (10 ') respectively;
Before being positioned at, rear balance staff (10,10 ') be provided with transmission device on the frame of below, described transmission device comprises front needle-bar transmission mechanism (4), rear needle-bar transmission mechanism (4 '), front sinker bed transmission mechanism (5), rear sinker bed transmission mechanism (5 '), front knocking over transmission mechanism (6), swing actuation mechanism (7) on rear knocking over transmission mechanism (6 ') and the sley bar reel cage, before described, rear needle-bar transmission mechanism (4,4 ') be symmetricly set on the frame by the first driving shaft (8) and the second driving shaft (9) respectively, before described, rear sinker bed transmission mechanism (5,5 ') also respectively by first, two driving shafts (8,9) be symmetricly set on the frame, before described, rear knocking over transmission mechanism (6,6 ') equally respectively by first, two driving shafts (8,9) be symmetricly set on the frame, swing actuation mechanism (7) is arranged on the first driving shaft (8) on the described sley bar reel cage;
Described forward and backward needle-bar transmission mechanism (4,4 ') provides power to forward and backward needle-bar part (1,1 ') respectively, described forward and backward sinker bed transmission mechanism (5,5 ') provides power to forward and backward sinker bed part (2,2 ') respectively, described forward and backward knocking over transmission mechanism (6,6 ') provides power transmission to forward and backward balance staff (10,10 ') respectively, and swing actuation mechanism (7) provides power transmission and controls its swing to guide bar assembly (3) on the described sley bar reel cage.
2. a kind of two-needle bar according to claim 1 3D fabric warp knitting machine that entirely is shaped is characterized in that: described forward and backward needle-bar part (1,1 ') respectively comprises needle-bar reel cage (1-4), needle-bar bracket (1-3), be connected to the needle-bar (1-1) on the needle-bar bracket (1-3) and be installed in groove pin (1-2) on the needle-bar (1-1);
Before described, rear needle-bar transmission mechanism (4,4 ') respectively comprise needle-bar cam swing arm (4-4) and be separately fixed at first, two driving shafts (8,9) the needle-bar cam (4-0) on, be provided with the interior needle-bar roller (4-3) that is meshed with needle-bar cam (4-0) inner ring face and the outer needle-bar roller (4-5) that is meshed with needle-bar cam (4-0) outer ring face on the described needle-bar cam swing arm (4-4), described outer needle-bar roller (4-5) is connected with the first needle-bar connecting rod (4-1), described the first needle-bar connecting rod (4-1) bolt is connected with the second needle-bar connecting rod (4-2), described the second needle-bar connecting rod (4-2) is connected with needle-bar bracket (1-3), before, rear needle-bar transmission mechanism (4,4 ') swing by needle-bar cam (4-0) realizes moving up and down of needle-bar (1-1), thereby drives moving up and down of latch needles.
3. a kind of two-needle bar according to claim 1 3D fabric warp knitting machine that entirely is shaped is characterized in that: described forward and backward sinker bed part (2,2 ') respectively comprises sedimentation swing arm (2-1) and is fixed on the sinker bed (2-2) of sedimentation swing arm (2-1) front end and is installed in sedimentation pin (2-3) on the sinker bed (2-2);
Before described, rear sinker bed transmission mechanism (5,5 ') respectively comprise sedimentation cam swing arm (5-4) and be separately fixed at first, two driving shafts (8,9) the sedimentation cam (5-0) on, be provided with the interior sedimentation roller (5-3) that is meshed with sedimentation cam (5-0) inner ring face and the outer sedimentation roller (5-5) that is meshed with sedimentation cam (5-0) outer ring face on the described sedimentation cam swing arm (5-4), described outer sedimentation roller (5-5) is connected with the first sedimentation connecting rod (5-1), described the first sedimentation connecting rod (5-1) bolt is connected with the second sedimentation connecting rod (5-2), be flexibly connected between described the second sedimentation connecting rod (5-2) and the sedimentation swing arm (2-1), before front and back two sedimentation swing arms (2-1) are connected to, rear balance staff (8,9) on, front, rear sinker bed transmission mechanism (5,5 ') swing by sedimentation cam (5-0) drives seesawing of sinker bed (2-2).
4. a kind of two-needle bar according to claim 1 3D fabric warp knitting machine that entirely is shaped, it is characterized in that: before described, rear knocking over transmission mechanism (6,6 ') respectively comprise casting-off cam swing arm (6-4) and be separately fixed at first, two driving shafts (8,9) casting-off cam on (6-0), be provided with the interior knocking over roller (6-3) that is meshed with casting-off cam (6-0) inner ring face and the outer knocking over roller (6-5) that is meshed with casting-off cam (6-0) outer ring face in the described casting-off cam swing arm (6-4), described outer knocking over roller (6-5) is connected with the first knocking over connecting rod (6-1), described the first knocking over connecting rod (6-1) bolt is connected with the second knocking over connecting rod (6-2), described the second knocking over bar (6-2) is connected with knocking over swing arm (6-9), before front and back two knocking over swing arms (6-9) are connected to, rear balance staff (8,9) on.
5. a kind of two-needle bar according to claim 1 3D fabric warp knitting machine that entirely is shaped, it is characterized in that: swing actuation mechanism (7) comprises sley bar cam swing arm (7-4) on the described sley bar reel cage, be connected to and put cam (7-0) on the sley bar on the first driving shaft (8), be connected to swing arm (7-9) in the middle of the sley bar on the front balance staff (10) and be connected to sley bar top link (7-11) on the balance staff (11), be provided with on the described sley bar cam swing arm (7-4) with sley bar on put interior sley bar roller (7-5) that cam (7-0) inner ring face is meshed and with sley bar on put the outer sley bar roller (7-6) that cam (7-0) outer ring face is meshed, described outer sley bar roller (7-6) bearing pin is connected with and puts connecting rod (7-1) on the first sley bar, putting connecting rod (7-1) bolt on the first sley bar is connected with and puts connecting rod (7-2) on the second sley bar, putting connecting rod (7-2) on described the second sley bar is flexibly connected with the middle swing arm of sley bar (7-9), swing arm (7-9) is connected with and puts connecting rod (7-3) on the 3rd sley bar in the middle of the described sley bar, putting connecting rod (7-3) on described the 3rd sley bar is connected with the curved swing arm of sley bar (7-10), the curved swing arm of described sley bar (7-10) is connected with sley bar top link (7-11) on being connected to upper balance staff (11), make by swing actuation mechanism (7) on the sley bar reel cage and to put in cam (7-0) drive balance staff (11) motion on the sley bar, thereby band is automatically connected in the motion of the sley bar reel cage (3-1) on the balance staff (11).
6. a kind of two-needle bar according to claim 1 3D fabric warp knitting machine that entirely is shaped, it is characterized in that: described guide bar assembly comprises the upper balance staff (11) that is dynamically connected mutually with frame, the sley bar reel cage (3-1) that is connected with upper balance staff (11), is provided with sley bar (3-2) on the described sley bar reel cage (3-1) and is arranged on sley point on the sley bar (3-2).
7. a kind of two-needle bar according to claim 6 3D fabric warp knitting machine that entirely is shaped, it is characterized in that: be provided with 6 sley bars (3-2) on the described sley bar reel cage (3-1), middle two sley bars (3-2) be a hair comb sley bar, be positioned at both sides 4 sley bar (3-2) for comb sley bar.
8. a kind of two-needle bar according to claim 6 3D fabric warp knitting machine that entirely is shaped is characterized in that: be provided with on the described frame for the traversing electronic traversing device (12) of control each sley bar of guide bar assembly (3) (3-2).
CN201210327657XA 2012-09-06 2012-09-06 Double-needlebar totally-forming 3D (three-dimensional) textile warp knitting machine Pending CN102877209A (en)

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CN201210327657XA CN102877209A (en) 2012-09-06 2012-09-06 Double-needlebar totally-forming 3D (three-dimensional) textile warp knitting machine

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CN201210327657XA CN102877209A (en) 2012-09-06 2012-09-06 Double-needlebar totally-forming 3D (three-dimensional) textile warp knitting machine

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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104911805A (en) * 2015-06-26 2015-09-16 江苏润源控股集团有限公司 Groove pin motion device of warp knitting machine
CN105220352A (en) * 2015-10-27 2016-01-06 江苏润源控股集团有限公司 A kind of knitting mechanism of double rib warp loom
WO2016090793A1 (en) * 2014-12-09 2016-06-16 常州市武进五洋纺织机械有限公司 Two-needle bed warp knitting machine
CN109527681A (en) * 2018-11-13 2019-03-29 中原工学院 Bionical hair products preparation equipment and method

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CN202898726U (en) * 2012-09-06 2013-04-24 常州市武进五洋纺织机械有限公司 Two-needle bar forming three dimensional (3D) fabric warp knitting machine

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GB892689A (en) * 1959-03-21 1962-03-28 Karl Mayer Erste Hessische Wir Warp knitting machine
CN2507878Y (en) * 2001-11-23 2002-08-28 王敏其 Double bar swing shaft mechanism of warp knitting machine
CN101338483A (en) * 2008-08-11 2009-01-07 孙嘉良 Two-needle bar electronic Jacquard warp knitting machine
JP2010111963A (en) * 2008-11-05 2010-05-20 Nippon Mayer Ltd Reed-swinging device in double raschel machine
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WO2016090793A1 (en) * 2014-12-09 2016-06-16 常州市武进五洋纺织机械有限公司 Two-needle bed warp knitting machine
CN104911805A (en) * 2015-06-26 2015-09-16 江苏润源控股集团有限公司 Groove pin motion device of warp knitting machine
CN105220352A (en) * 2015-10-27 2016-01-06 江苏润源控股集团有限公司 A kind of knitting mechanism of double rib warp loom
CN105220352B (en) * 2015-10-27 2017-04-19 江苏润源控股集团有限公司 Knitting mechanism of two-needle bar warp knitting machine
CN109527681A (en) * 2018-11-13 2019-03-29 中原工学院 Bionical hair products preparation equipment and method

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Application publication date: 20130116