CN205077258U - Old and useless cloth bleaching apparatus's discharge mechanism - Google Patents

Old and useless cloth bleaching apparatus's discharge mechanism Download PDF

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Publication number
CN205077258U
CN205077258U CN201520840606.6U CN201520840606U CN205077258U CN 205077258 U CN205077258 U CN 205077258U CN 201520840606 U CN201520840606 U CN 201520840606U CN 205077258 U CN205077258 U CN 205077258U
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CN
China
Prior art keywords
roller bearing
conveyer belt
discharging
staving
material grasping
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Expired - Fee Related
Application number
CN201520840606.6U
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Chinese (zh)
Inventor
陈雨微
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Jiaxing Vocational and Technical College
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Jiaxing Vocational and Technical College
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Priority to CN201520840606.6U priority Critical patent/CN205077258U/en
Application granted granted Critical
Publication of CN205077258U publication Critical patent/CN205077258U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The utility model provides an old and useless cloth bleaching apparatus's discharge mechanism belongs to garment manufacturing equipment technical field. It has solved the lower problem of current old and useless cloth bleaching efficiency. This old and useless cloth bleaching apparatus's discharge mechanism, bleaching apparatus include the staving, and discharge mechanism includes ejection of compact casing, and this ejection of compact casing links firmly with one side of staving mutually, and ejection of compact casing in -connection has the conveyer belt, and the staving internal rotation is connected with grabs the material roller bearing, grab to form between material roller bearing and the conveyer belt and grab the material passageway, and the discharge gate of ejection of compact casing rotates to be connected with presses the material roller bearing, presses to form discharging channel between material roller bearing and the conveyer belt, is equipped with power spare on the ejection of compact casing. This old and useless cloth bleaching apparatus's discharge mechanism can leave the staving automatically after old and useless cloth rinsing, degree of automation is high.

Description

A kind of discharging mechanism of scrap fabric bleaching system
Technical field
The utility model belongs to clothes technical field of processing equipment, relates to a kind of discharging mechanism of scrap fabric bleaching system.
Background technology
Clothing is recovered in utilization usually afterwards threadbare, current common way is that the waste and old clothing meeting material requirement is processed into cotton again, in the process, clothing needs to be cut into cloth, then by the cloth of cloth segmentation in strip, cloth after refinement is undertaken in processing by flowering machine, become cotton semifinished product, cotton is processed into again by scutching fluffer, and needed to bleach it before cloth is bloomed, make the cotton that finally can process white, at present the bleaching of scrap fabric is directly placed on usually in the bucket that bleaching volume is housed, manually carry out rinsing, efficiency is lower.
Summary of the invention
The purpose of this utility model there are the problems referred to above for existing technology, proposes a kind of discharging mechanism of scrap fabric bleaching system, and the discharging mechanism of this scrap fabric bleaching system automatically can leave staving after scrap fabric rinsing, and automaticity is high.
The purpose of this utility model realizes by following technical proposal: a kind of discharging mechanism of scrap fabric bleaching system, bleaching system comprises staving, it is characterized in that, described discharging mechanism comprises discharging housing, this discharging housing is connected mutually with the side of staving, the lower end of described discharging housing is connected with staving lower end, upper end has discharging opening, conveyer belt is connected with in described discharging housing, described conveyer belt is obliquely installed, and the lower end of conveyer belt extends in staving, upper end extends to discharging opening, material grasping roller bearing is rotatably connected in described staving, the top being positioned at conveyer belt lower end of this material grasping roller bearing, and form material grasping passage between material grasping roller bearing and conveyer belt, the discharging opening of described discharging housing is rotatably connected to binder roller bearing, this binder roller bearing is positioned at the top of end, conveyer belt upper end, and form tapping channel between binder roller bearing and conveyer belt, described discharging housing is provided with the force piece that can simultaneously drive conveyer belt and material grasping roller bearing to rotate.
Sink after the bleaching of certain hour at scrap fabric, material grasping roller bearing and conveyer belt are all in rotary state, scrap fabric can by material grasping roller bearing press-in material grasping passage, and transmit by conveyer belt, when scrap fabric is transferred into the discharge outlet of discharging housing, scrap fabric needs to pass from tapping channel, when passing tapping channel, scrap fabric can be rolled by binder roller bearing, bleaching solvent on scrap fabric can be forced out and fall in discharging housing, avoid bleaching solvent to be taken out of staving by too much, whole process automation degree is high.
In the discharging mechanism of above-mentioned scrap fabric bleaching system, described conveyer belt comprises two drive belt rings and some cross bars, length direction and the drive belt ring of described cross bar are perpendicular, and cross bar is arranged along the length direction of drive belt ring, and described cross bar is fixed with some pilot pins along its length.Scrap fabric can hook by the pilot pin on cross bar, avoids scrap fabric to depart from conveyer belt in transport process.
In the discharging mechanism of above-mentioned scrap fabric bleaching system, contact roller on two is rotatably connected in described discharging housing, this on two contact roller be pressed on the lateral surface of two drive belt rings respectively, on two contact roller effect under, driving belt forms tilting section and horizontal segment, the beveled end of conveyer belt is positioned at discharging housing, horizontal segment is positioned at staving, twice contact rollers are also rotatably connected in described discharging housing, these twice contact rollers are pressed on the medial surface of two drive belt rings respectively, under twice contact roller effects, conveyer belt is in tensioning state.Upper contact roller is for changing the direction of transfer of conveyer belt, and lower contact roller, then for tensioning conveyer belt, avoids conveyer belt to skid.
In the discharging mechanism of above-mentioned scrap fabric bleaching system, the discharging opening edge of described housing is fixed with two contiguous blocks, the opposite flank of contiguous block described in two all vertically offers bar-shaped trough, all buffer stopper is slidably connected in described bar-shaped trough, the two ends of above-mentioned binder roller bearing are rotatably connected on two buffer stoppers respectively, buffer spring is equipped with in described bar-shaped trough, the upper end of this buffer spring is pressed on the upper end of bar-shaped trough, lower end is pressed on the upper side of buffer stopper, described binder roller bearing periphery wall offers some escape groove vertically, each escape groove is all arranged along binder roller bearing circumference, when binder roller bearing rotates, above-mentioned pilot pin can pass escape groove.Binder roller bearing is pressed on scrap fabric by buffer spring, scrap fabric local too much can compress buffer spring on move, avoid occurring clamping stagnation, and escape groove is used for pilot pin and passes through, and makes to have rational gap between binder roller bearing and conveyer belt.
In the discharging mechanism of above-mentioned scrap fabric bleaching system, described force piece comprises power motor, described in two, upper contact roller is connected mutually by connecting axle, discharging housing is all stretched out in one end of described connecting axle and material grasping roller bearing, and be all fixed with driven pulley two at external part, the output shaft of described power motor is fixed with driving pulley two, described driving pulley two is connected by belt with driven pulley two.Namely drive upper contact roller and material grasping roller bearing to rotate by a power motor, structure is compacter simultaneously.
In the discharging mechanism of above-mentioned scrap fabric bleaching system, on the periphery wall of described material grasping roller bearing, circumference has some material grasping convex edges, and the length direction of described material grasping convex edge is consistent with the length direction of material grasping roller bearing.Material grasping convex edge can increase the frictional force with scrap fabric, avoids occurring skidding and idle running phenomenon.
Compared with prior art, the discharging mechanism of this scrap fabric bleaching system has the following advantages:
1, because material grasping roller bearing and conveyer belt are all in rotary state, scrap fabric can by material grasping roller bearing press-in material grasping passage, and transmit by conveyer belt, scrap fabric is sent to the discharging opening of discharging housing, automaticity is high.
2, because binder roller bearing is pressed on scrap fabric by buffer spring, scrap fabric local too much can compress buffer spring on move, avoid occurring clamping stagnation, and escape groove is passed through for pilot pin, makes to have rational gap between binder roller bearing and conveyer belt.
Accompanying drawing explanation
Fig. 1 is the perspective view of the bleaching system of this scrap fabric.
Fig. 2 is the structure sectional view of the bleaching system of this scrap fabric.
Fig. 3 is the schematic enlarged-scale view at A place in Fig. 2.
Fig. 4 is the schematic enlarged-scale view at B place in Fig. 2.
Fig. 5 is the schematic enlarged-scale view at C place in Fig. 1.
In figure, 1, staving; 11, binder cylinder; 12, binder passage; 13, material grasping passage; 14, relief portion; 141, scraper plate; 142, cavity is dodged; 15, retainer ring; 151, link slot; 152, ball; 2, swivel becket; 21, blade; 22, gathering sill; 23, Connection Block; 24, torsion spring; 25, bearing pin; 3, discharging housing; 31, discharging opening; 32, tapping channel; 4, conveyer belt; 41, drive belt ring; 42, cross bar; 43, pilot pin; 44, upper contact roller; 45, lower contact roller; 5, actuator; 51, drive motors; 52, power transmission shaft; 53, driving rack; 54, driving gear; 55, idler gear; 56, driven gear; 57, driving pulley one; 58, driven pulley one; 6, material grasping roller bearing; 61, material grasping convex edge; 7, binder roller bearing; 71, buffer stopper; 72, escape groove; 8, force piece; 81, power motor; 82, driving pulley two; 83, driven pulley two; 9, contiguous block; 91, bar-shaped trough; 92, buffer spring.
Detailed description of the invention
Be below specific embodiment of the utility model and by reference to the accompanying drawings, the technical solution of the utility model is further described, but the utility model be not limited to these embodiments.
As Fig. 1, shown in Fig. 2, a kind of discharging mechanism of scrap fabric bleaching system, bleaching system comprises staving 1, two binder cylinders 11 are rotatably connected in staving 1, the axis of this two binders cylinder 11 parallels and is horizontally disposed with, binder passage 12 is formed between two binder cylinders 11, swivel becket 2 is also rotatably connected in staving 1, this swivel becket 2 is horizontally disposed with and is positioned at the below of two binder cylinders 11, on the internal perisporium of swivel becket 2, circumference is connected with some blades 21, the side vertical of blade 21, staving 1 is provided with the actuator 5 that can simultaneously drive swivel becket 2 and two binder cylinders 11 to rotate, discharging mechanism comprises discharging housing 3, discharging housing 3 is connected mutually with the side of staving 1, the lower end of discharging housing 3 is connected with staving 1 lower end, upper end has discharging opening 31, conveyer belt 4 is connected with in discharging housing 3, conveyer belt 4 is obliquely installed, and the lower end of conveyer belt 4 extends in staving 1, upper end extends to discharging opening 31, material grasping roller bearing 6 is rotatably connected in staving 1, the top being positioned at conveyer belt 4 lower end of this material grasping roller bearing 6, and form material grasping passage 13 between material grasping roller bearing 6 and conveyer belt 4, the discharging opening 31 of discharging housing 3 is rotatably connected to binder roller bearing 7, this binder roller bearing 7 is positioned at the top of end, conveyer belt 4 upper end, and form tapping channel 32 between binder roller bearing 7 and conveyer belt 4, discharging housing 3 is provided with the force piece 8 that can simultaneously drive conveyer belt 4 and material grasping roller bearing 6 to rotate.In staving 1 and discharging housing 3, all there is bleaching solvent, scrap fabric has the upper end of staving 1 to put into and is immersed in bleaching solvent, in immersion process, actuator 5 can drive two binder cylinders 11 to rotate, can be rolled by two binder cylinders 11 when scrap fabric is passed downwardly through by binder passage 12, roller compaction process can make bleaching solvent enter fully in scrap fabric, when scrap fabric is by after binder passage 12, swivel becket 2 rotates under the drive of actuator 5, blade 21 on swivel becket 2 can make the scrap fabric in staving 1 and bleach solvent circumferential flow, make that scrap fabric is equally distributed increases bleaching efficiency simultaneously, sink after the bleaching of certain hour at scrap fabric, material grasping roller bearing 6 and conveyer belt 4 are all in rotary state, scrap fabric can be pressed into material grasping passage 13 by material grasping roller bearing 6, and transmit by conveyer belt 4, when scrap fabric is transferred into discharging opening 31 place of discharging housing 3, scrap fabric needs to pass from tapping channel 32, when passing tapping channel 32, scrap fabric can be rolled by binder roller bearing 7, bleaching solvent on scrap fabric can be forced out and fall in discharging housing 3, bleaching solvent is avoided to be taken out of staving 1 by too much, whole process automation degree is high.
Specifically, shown in composition graphs 3, the both sides of staving 1 sidewall all have the relief portion 14 of rectangle, this relief portion 14 has dodges cavity 142, two binder cylinders 11 are rotatably connected on two respectively and dodge in cavity 142, and two edges up and down of dodging cavity 142 are all fixed with scraper plate 141, and long edge and binder cylinder 11 lateral wall of scraper plate 141 lean, dodge the installation of cavity 142 for binder cylinder 11, scraper plate 141 then can be avoided scrap fabric to enter and dodge the rotation interfering binder cylinder 11 in cavity 142.On staving 1 madial wall, circumference is fixed with retainer ring 15, on retainer ring 15 internal perisporium, circumference offers link slot 151, the equal circumference of cell wall up and down of link slot 151 is connected with some balls 152, the equal circumference of top and bottom sidewall of swivel becket 2 offers gathering sill 22, the outer ring rotating of swivel becket 2 is connected in link slot 151, and ball 152 is connected in gathering sill 22, coordinated with gathering sill 22 by ball 152, namely guide effect is played to the rotation of swivel becket 2, make its stability of rotation, and frictional force when swivel becket 2 rotates can be reduced.Actuator 5 comprises drive motors 51, staving 1 is radially rotatably connected to power transmission shaft 52, staving 1 is stretched in one end of this power transmission shaft 52, the other end stretches out staving 1, on swivel becket 2 upper side, circumference is fixed with the driving rack 53 of annular, the inserting end of power transmission shaft 52 is fixed with driven gear 56, this driven gear 56 is meshed with driving rack 53, the external part of power transmission shaft 52 is fixed with idler gear 55, the output shaft of drive motors 51 is fixed with driving gear 54, driving gear 54 is meshed with driven gear 56, the output shaft of drive motors 51 and power transmission shaft 52 are all fixed with driving pulley 1, two binder cylinders 11 are all connected on staving 1 by axis of rotation, and staving 1 is stretched out in one end of rotating shaft, driven pulley 1 is all fixed with at the external part of rotating shaft, driving pulley 1 is connected by belt with driven pulley 1, drive motors 51 drives power transmission shaft 52 to rotate, power transmission shaft 52 to be coordinated with driving rack 53 by driven gear 56 and drives swivel becket 2 to rotate, a binder cylinder 11 is connected with power transmission shaft 52 by belt wheel transmission, another binder cylinder 11 is connected by the output shaft of belt wheel transmission with drive motors 51, and power transmission shaft 52 coordinates transmission by driving gear 54 with idler gear 55 with the output shaft of drive motors 51, two binder cylinders 11 can reverse sync be rotated.Blade 21 is all rectangular, the inner ring circumference of swivel becket 2 has some Connection Blocks 23, blade 21 is hinged on Connection Block 23 by bearing pin 25, bearing pin 25 is arranged with torsion spring 24, one end of torsion spring 24 is connected on Connection Block 23, the other end is connected on blade 21, under the effect of torsion spring 24, the side of blade 21 is consistent with the radial direction of swivel becket 2, blade 21 is hinged on Connection Block 23, the resistance that blade 21 is subject to when blade 21 is hooked to scrap fabric becomes large, now blade 21 can overcome the torsion of torsion spring 24 and swing, make scrap fabric can depart from blade 21, depart from rear blade 21 at scrap fabric to reset under torsion spring 24 acts on.
Shown in composition graphs 4, Fig. 5, conveyer belt 4 comprises two drive belt rings 41 and some cross bars 42, length direction and the drive belt ring 41 of cross bar 42 are perpendicular, and cross bar 42 is arranged along the length direction of drive belt ring 41, cross bar 42 is fixed with along its length some pilot pins 43, scrap fabric can hook by the pilot pin 43 on cross bar 42, avoids scrap fabric in transport process, depart from conveyer belt 4.Contact roller 44 on two is rotatably connected in discharging housing 3, this on two contact roller 44 be pressed on the lateral surface of two drive belt rings 41 respectively, on two contact roller 44 effect under, driving belt forms tilting section and horizontal segment, the beveled end of conveyer belt 4 is positioned at discharging housing 3, horizontal segment is positioned at staving 1, twice contact rollers 45 are also rotatably connected in discharging housing 3, these twice contact rollers 45 are pressed on the medial surface of two drive belt rings 41 respectively, under twice contact rollers 45 act on, conveyer belt 4 is in tensioning state, upper contact roller 44 is for changing the direction of transfer of conveyer belt 4, lower contact roller 45 is then for tensioning conveyer belt 4, conveyer belt 4 is avoided to skid.Discharging opening 31 edge of housing is fixed with two contiguous blocks 9, the opposite flank of two contiguous blocks 9 all vertically offers bar-shaped trough 91, buffer stopper 71 is all slidably connected in bar-shaped trough 91, the two ends of binder roller bearing 7 are rotatably connected on two buffer stoppers 71 respectively, buffer spring 92 is equipped with in bar-shaped trough 91, the upper end of this buffer spring 92 is pressed on the upper end of bar-shaped trough 91, lower end is pressed on the upper side of buffer stopper 71, binder roller bearing 7 periphery wall offers some escape groove 72 vertically, each escape groove 72 is all arranged along binder roller bearing 7 circumference, when binder roller bearing 7 rotates, pilot pin 43 can pass escape groove 72, binder roller bearing 7 is pressed on scrap fabric by buffer spring 92, scrap fabric local too much can compress buffer spring 92 on move, avoid occurring clamping stagnation, and escape groove 72 is passed through for pilot pin 43, make, between binder roller bearing 7 and conveyer belt 4, there is rational gap.Force piece 8 comprises power motor 81, on two, contact roller 44 is connected mutually by connecting axle, discharging housing 3 is all stretched out in one end of connecting axle and material grasping roller bearing 6, and be all fixed with driven pulley 2 83 at external part, the output shaft of power motor 81 is fixed with driving pulley 2 82, driving pulley 2 82 is connected by belt with driven pulley 2 83, and namely drive contact roller 44 and material grasping roller bearing 6 to rotate by a power motor 81, structure is compacter simultaneously.On the periphery wall of material grasping roller bearing 6, circumference has some material grasping convex edges 61, and the length direction of material grasping convex edge 61 is consistent with the length direction of material grasping roller bearing 6, and material grasping convex edge 61 can increase the frictional force with scrap fabric, avoids occurring skidding and idle running phenomenon.

Claims (6)

1. the discharging mechanism of a scrap fabric bleaching system, bleaching system comprises staving (1), it is characterized in that, described discharging mechanism comprises discharging housing (3), this discharging housing (3) is connected mutually with the side of staving (1), the lower end of described discharging housing (3) is connected with staving (1) lower end, upper end has discharging opening (31), conveyer belt (4) is connected with in described discharging housing (3), described conveyer belt (4) is obliquely installed, and the lower end of conveyer belt (4) extends in staving (1), upper end extends to discharging opening (31), material grasping roller bearing (6) is rotatably connected in described staving (1), the top being positioned at conveyer belt (4) lower end of this material grasping roller bearing (6), and form material grasping passage (13) between material grasping roller bearing (6) and conveyer belt (4), the discharging opening (31) of described discharging housing (3) is rotatably connected to binder roller bearing (7), this binder roller bearing (7) is positioned at the top of conveyer belt (4) end, upper end, and form tapping channel (32) between binder roller bearing (7) and conveyer belt (4), described discharging housing (3) is provided with the force piece (8) that can simultaneously drive conveyer belt (4) and material grasping roller bearing (6) to rotate.
2. the discharging mechanism of scrap fabric bleaching system according to claim 1, it is characterized in that, described conveyer belt (4) comprises two drive belt rings (41) and some cross bars (42), length direction and the drive belt ring (41) of described cross bar (42) are perpendicular, and cross bar (42) is arranged along the length direction of drive belt ring (41), described cross bar (42) is fixed with along its length some pilot pins (43).
3. the discharging mechanism of scrap fabric bleaching system according to claim 2, it is characterized in that, contact roller on two (44) is rotatably connected in described discharging housing (3), this on two contact roller (44) be pressed on the lateral surface of two drive belt rings (41) respectively, on two contact roller (44) effect under, driving belt forms tilting section and horizontal segment, the beveled end of conveyer belt (4) is positioned at discharging housing (3), horizontal segment is positioned at staving (1), twice contact rollers (45) are also rotatably connected in described discharging housing (3), these twice contact rollers (45) are pressed on the medial surface of two drive belt rings (41) respectively, under twice contact roller (45) effects, conveyer belt (4) is in tensioning state.
4. the discharging mechanism of scrap fabric bleaching system according to claim 3, it is characterized in that, discharging opening (31) edge of described housing is fixed with two contiguous blocks (9), the opposite flank of contiguous block described in two (9) all vertically offers bar-shaped trough (91), buffer stopper (71) is all slidably connected in described bar-shaped trough (91), the two ends of above-mentioned binder roller bearing (7) are rotatably connected on two buffer stoppers (71) respectively, buffer spring (92) is equipped with in described bar-shaped trough (91), the upper end of this buffer spring (92) is pressed on the upper end of bar-shaped trough (91), lower end is pressed on the upper side of buffer stopper (71), described binder roller bearing (7) periphery wall offers some escape groove (72) vertically, each escape groove (72) is all arranged along binder roller bearing (7) circumference, when binder roller bearing (7) rotates, above-mentioned pilot pin (43) can pass escape groove (72).
5. the discharging mechanism of the scrap fabric bleaching system according to claim 3 or 4, it is characterized in that, described force piece (8) comprises power motor (81), described in two, upper contact roller (44) is connected mutually by connecting axle, discharging housing (3) is all stretched out in one end of described connecting axle and material grasping roller bearing (6), and be all fixed with driven pulley two (83) at external part, the output shaft of described power motor (81) is fixed with driving pulley two (82), described driving pulley two (82) is connected by belt with driven pulley two (83).
6. the discharging mechanism of scrap fabric bleaching system according to claim 5, it is characterized in that, on the periphery wall of described material grasping roller bearing (6), circumference has some material grasping convex edges (61), and the length direction of described material grasping convex edge (61) is consistent with the length direction of material grasping roller bearing (6).
CN201520840606.6U 2015-10-27 2015-10-27 Old and useless cloth bleaching apparatus's discharge mechanism Expired - Fee Related CN205077258U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201520840606.6U CN205077258U (en) 2015-10-27 2015-10-27 Old and useless cloth bleaching apparatus's discharge mechanism

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201520840606.6U CN205077258U (en) 2015-10-27 2015-10-27 Old and useless cloth bleaching apparatus's discharge mechanism

Publications (1)

Publication Number Publication Date
CN205077258U true CN205077258U (en) 2016-03-09

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CN201520840606.6U Expired - Fee Related CN205077258U (en) 2015-10-27 2015-10-27 Old and useless cloth bleaching apparatus's discharge mechanism

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107095197A (en) * 2017-04-13 2017-08-29 宋亚斌 A kind of mixing device of fish ball machining production line

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107095197A (en) * 2017-04-13 2017-08-29 宋亚斌 A kind of mixing device of fish ball machining production line
CN107095197B (en) * 2017-04-13 2020-05-12 温州海蓝工业设计有限公司 Fish ball processing lines's compounding device

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GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20160309

Termination date: 20161027