CN211307068U - Feeding device of non-woven fabric feeding machine - Google Patents

Feeding device of non-woven fabric feeding machine Download PDF

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Publication number
CN211307068U
CN211307068U CN201921863401.4U CN201921863401U CN211307068U CN 211307068 U CN211307068 U CN 211307068U CN 201921863401 U CN201921863401 U CN 201921863401U CN 211307068 U CN211307068 U CN 211307068U
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China
Prior art keywords
storage vat
groove
worm
feed inlet
feeding device
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CN201921863401.4U
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Chinese (zh)
Inventor
陈进钱
严新文
陈子森
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Guangdong junqian Industrial Co.,Ltd.
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Guangzhou Junqian Non Woven Co ltd
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Abstract

The utility model relates to a non-woven fabrics manufacture equipment technical field, aim at providing a feed arrangement of non-woven fabrics feeding machine, its technical scheme main points are including the storage vat and with the tubing pump of storage vat intercommunication, the feed inlet has been seted up to the side of storage vat, the storage vat outside is provided with the frame, rotate the initiative cylinder and the driven cylinder that are connected with the level setting on the frame respectively, the round joint has the conveyer belt between initiative cylinder and the driven cylinder, the direction rotation towards the feed inlet on the frame is connected with the worm, the worm passes through motor drive, the worm meshing has two worm wheels, two vertical settings of worm wheel just rotate respectively and connect on initiative cylinder and driven cylinder, the raw materials is in the conveyer belt gets into the storage vat from the feed inlet. The utility model is suitable for a carry the raw materials to in the feeder.

Description

Feeding device of non-woven fabric feeding machine
Technical Field
The utility model relates to a non-woven fabrics manufacture equipment technical field, more specifically say, it relates to a feed arrangement of non-woven fabrics feeding machine.
Background
The raw material is pumped into the feeder through the feeder of the non-woven fabric feeder, the screw feeder detects the weight of the material passing through the weighing bridge frame to determine the weight of the material on the adhesive tape, meanwhile, the digital speed measuring sensor arranged at the tail part continuously measures the running speed of the feeder, the speed signal and the weight signal are sent to the feeder controller together, the microprocessor in the controller processes the speed signal and the weight signal to generate and display the accumulated amount and the instantaneous flow rate, the accumulated amount and the instantaneous flow rate are compared with the set flow rate according to the flow rate, the control instrument outputs a signal to control the frequency converter to change the driving speed of the feeder, and the material in the feeder is continuously and uniformly fed into the receiving equipment or the transport machinery after being weighed one by one.
However, in the feeding device of the conventional nonwoven fabric feeder, granular raw materials such as polypropylene and coloring materials for dyeing are manually poured into the feeding device by workers to be filled, and the raw materials are separated from the feeding device by a certain distance, so that the workload of conveying the raw materials to the feeding device and pouring the raw materials into the feeding device is large, and the operation is inconvenient.
SUMMERY OF THE UTILITY MODEL
The utility model aims at providing a feed arrangement of non-woven fabrics feeding machine, it is carried the raw materials to feed arrangement inside through mechanical transmission to shorten the distance that the staff carried the raw materials to feed arrangement department, alleviate staff's work load, it is more convenient to operate.
The above technical purpose of the present invention can be achieved by the following technical solutions: the utility model provides a feed arrangement of non-woven fabrics feeding machine, includes storage vat and the tubing pump that communicates with the storage vat, the feed inlet has been seted up to the side of storage vat, the storage vat outside is provided with the frame, rotate respectively on the frame and be connected with initiative cylinder and the driven cylinder that the level set up, initiative cylinder with the wire-wound is connected with the conveyer belt between the driven cylinder, on the frame orientation the direction of feed inlet is rotated and is connected with the worm, the worm passes through motor drive, the worm meshing has two worm wheels, two the vertical setting of worm wheel just rotates respectively to be connected initiative cylinder with on the driven cylinder, the raw materials warp the conveyer belt is followed the feed inlet gets into in the storage vat.
Through adopting above-mentioned technical scheme, the feed arrangement of non-woven fabrics feeding machine is when the feeding, the staff falls the raw materials to the conveyer belt earlier, starter motor, the motor rotates, it rotates to drive the worm, the worm drives the worm wheel and rotates, the worm wheel drives the initiative cylinder and rotates with driven cylinder, and then drive the conveyer belt incessantly transmission of wiring on it, carry the inside to the storage vat through the feed inlet with the raw materials on the conveyer belt, with the distance of shortening staff with raw materials transport to feed arrangement department, alleviate staff's work load, it is more convenient to operate.
Preferably, the machine base is provided with an adjusting mechanism for adjusting the distance between the driving roller and the driven roller.
Through adopting above-mentioned technical scheme, set up adjustment mechanism on the frame and adjust the interval between initiative cylinder and the driven cylinder to play the purpose of adjusting the conveyer belt elasticity degree, with the problem of solving the drive belt at the use lax, be favorable to the conveyer belt to carry the raw materials better.
Preferably, the adjusting mechanism comprises a rotary table and a sliding block, a sliding groove for the driven roller to move towards the direction of the feed inlet is formed in the base, the sliding block is in sliding fit with the sliding groove, the driven roller is fixed on the sliding block, a threaded groove with an opening communicated with the sliding groove is formed in the base, the rotary table is in threaded connection in the threaded groove, and one end of the rotary table is exposed out of the threaded groove and fixed with the sliding block.
Through adopting above-mentioned technical scheme, when the conveyer belt is lax, rotate the carousel for the carousel slides along the depth direction of thread groove, and then the carousel drives the slider and slides along the spout, so that driven cylinder slides along the spout towards the direction of feed inlet, with the interval between regulation initiative cylinder and the driven cylinder, plays the purpose of adjusting conveyer belt elasticity degree.
Preferably, a guide block is fixed on the sliding block, a guide groove for guiding the driven roller to move towards the direction of the feed port is formed in the machine base, and the guide block is connected in the guide groove in a sliding manner.
Through adopting above-mentioned technical scheme, when driven cylinder rotated, the guide block slided along the guide way, and the guide slider slides to play the purpose of guide driven cylinder along the spout motion, avoid driven cylinder's moving direction skew.
Preferably, a baffle plate for sealing the feeding hole is arranged on the side surface of the storage barrel.
By adopting the technical scheme, the baffle plate seals the feeding hole, so that the storage barrel is enclosed into a closed ferrule after the storage barrel is supplemented with the raw materials, and the effects of enclosing and isolating the raw materials in the storage barrel are achieved.
Preferably, the storage vat includes sleeve and inner panel, the sleeve cup joints the inner panel, the inner panel is in corresponding the position of feed inlet is seted up jaggedly, the area of breach is greater than or equal to the area of feed inlet, be provided with between sleeve and the inner panel and be used for fixing sleeve with the positioning mechanism of inner panel relative position.
Through adopting above-mentioned technical scheme, the relative position between sleeve and the inner panel is fixed through positioning mechanism to reach the effect of adjusting sleeve and inner panel relative position, and then the height-adjustable of storage vat is favorable to increasing the volume of storage vat, makes the storage vat be applicable to the raw materials of saving various volumes, and the suitability is stronger.
Preferably, positioning mechanism includes the edge the direction of height interval of inner panel is seted up card hole on the inner panel side, the opening orientation in card hole the outside of feed inlet, the draw-in groove that the level set up is seted up to telescopic inner wall, there is the fixture block along its degree of depth direction sliding connection in the draw-in groove, the fixture block with be provided with the spring that is in compression state between the draw-in groove, work as the card hole with during the notch intercommunication of draw-in groove, the fixture block with card hole joint cooperation.
Through adopting above-mentioned technical scheme, when needs adjust inner panel and telescopic relative position, make the inner panel slide in sleeve inside, communicate with the card hole of co-altitude position respectively until the notch of draw-in groove, under the elastic force effect of spring, the fixture block slides along the degree of depth direction of draw-in groove and cooperates with card hole joint to reach the purpose of relative position between fixed sleeve and the inner panel.
Preferably, the notch of the clamping groove is arranged in a penetrating manner along the depth direction of the clamping groove, and one end of the clamping block is exposed out of the notch of the clamping groove and located outside the sleeve.
Through adopting above-mentioned technical scheme, the part that the fixture block is located the sleeve outside can supply the staff to operate, when needing the unblock between sleeve and the inner panel, holds the fixture block and makes the fixture block move towards the direction of keeping away from the card hole, makes fixture block and card hole separation, and sleeve and inner panel relative slip promptly, and the relative position of sleeve and inner panel is adjustable, and the spring is in compression state this moment, waits for next promotion fixture block.
Preferably, a limiting block with an area larger than that of the notch of the clamping groove is fixed at one end, facing outwards, of the clamping block.
Through adopting above-mentioned technical scheme, the stopper plays the limiting displacement to the sliding distance of fixture block in the draw-in groove to avoid the fixture block to slide in the draw-in groove completely and can't touch with the hand, the one end of fixture block always is located telescopic outside, the staff's operation of being convenient for.
To sum up, the utility model discloses following beneficial effect has:
1. the raw materials on the conveying belt are conveyed to the interior of the storage barrel through the feeding hole, so that the distance for workers to convey the raw materials to the feeding device is shortened, the workload of the workers is reduced, and the operation is more convenient;
2. the base is provided with an adjusting mechanism for adjusting the distance between the driving roller and the driven roller so as to achieve the purpose of adjusting the tightness degree of the conveying belt, solve the problem that the conveying belt is loose in the using process and be beneficial to better conveying raw materials by the conveying belt;
3. the guide block plays a role in guiding the driven roller to move along the sliding groove, so that the moving direction of the driven roller is prevented from deviating;
4. the baffle plate seals the feeding hole, so that after the storage barrel is supplemented with the raw materials, the raw materials in the storage barrel are protected and isolated from the outside;
5. the height of the storage barrel is adjustable, so that the volume of the storage barrel is increased, the storage barrel is suitable for storing raw materials with various volumes, and the applicability is stronger;
6. the part of the clamping block positioned outside the sleeve can be operated by a worker to unlock the sleeve and the inner plate, so that the relative positions of the sleeve and the inner plate can be adjusted;
7. the limiting block has a limiting effect on the sliding distance of the clamping block in the clamping groove, so that one end of the clamping block is always positioned outside the sleeve, and the clamping block is convenient for a worker to operate.
Drawings
FIG. 1 is a schematic view showing the connection between a feeding device and a nonwoven fabric feeder;
FIG. 2 is a schematic structural diagram of the machine base, the driving roller, the driven roller, the worm wheel, the worm and the turntable;
FIG. 3 is a schematic diagram showing the positional relationship among the base, the guide groove, the slide block, and the guide block;
FIG. 4 is a schematic illustration of the positional relationship of the accumulator and the channel pump;
FIG. 5 is a cross-sectional view of the storage vat.
In the figure: 1. a storage barrel; 101. a sleeve; 102. an inner plate; 2. a pipeline pump; 3. a material pumping pipe; 4. a discharge pipe; 5. a feeder; 6. a feed inlet; 7. a machine base; 8. a driving roller; 9. a driven drum; 10. a conveyor belt; 11. a motor; 12. a worm; 13. a worm gear; 14. a turntable; 15. a chute; 16. a thread groove; 17. a guide block; 18. a baffle plate; 19. a spring; 20. a clamping hole; 21. a card slot; 22. a clamping block; 23. a limiting block; 24. a guide plate; 25. a communicating pipe; 26. a guide groove; 27. a slider; 28. a fixed block; 29. a through groove; 30. mounting blocks; 31. and (4) a notch.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings.
Referring to fig. 1, for the utility model discloses a feed arrangement of non-woven fabrics feeding machine, including opening columniform storage vat 1 up, 1 in-connection of storage vat has two communicating pipes 25, sets up on 25 slant communicating pipes, and 1 next door of storage vat is provided with tubing pump 2, and the entry end of tubing pump 2 is connected with two pumping pipes 3 that communicate with 25 communicating pipes, and the exit end of tubing pump 2 is connected with two discharging pipes 4, discharging pipe 4 and feeding machine 5's feed end intercommunication.
The side of storage vat 1 is seted up highly equals the feed inlet 6 of storage vat 1 height, and the side of storage vat 1 articulates along its direction of height is provided with the baffle 18 that seals feed inlet 6, and baffle 18 is vertical to be set up.
Referring to fig. 1 and 2, a base 7 is arranged outside the storage vat 1, the base 7 is fixed on the ground, two ends of the base 7 are respectively connected with a driving roller 8 and a driven roller 9 in a rotating mode, the driven roller 9 is located at one end close to the feed inlet 6, the driving roller 8 and the driven roller 9 are horizontally arranged, a conveyor belt 10 is connected between the driving roller 8 and the driven roller 9 in a rotating mode, raw materials enter the storage vat 1 from the feed inlet 6 through the conveyor belt 10, a guide plate 24 which inclines downwards is fixed at one end, close to the feed inlet 6, of the base 7, and the raw materials conveyed by the conveyor belt 10 are guided into the storage vat 1 through the guide plate.
One side of the base 7 is rotatably connected with a worm 12 along the direction towards the feeding hole 6, the worm 12 is driven by a motor 11, the motor 11 is fixedly installed at the side position of the base 7 (see figure 1) and the output shaft of the motor 11 is fixed with the end part of the worm 12, the thread at the side of the worm 12 is provided with two sections, the worm 12 is engaged with two worm wheels 13, and the two worm wheels 13 are vertically arranged and respectively rotatably connected with the axial positions of the driving roller 8 and the driven roller 9.
Referring to fig. 2 and 3, the two sides of the base 7 are fixed with vertically arranged installation blocks 30, the installation blocks 30 are all provided with through grooves 29 and sliding grooves 15 along the direction towards the feed inlet 6, the through grooves 29 and the two sliding grooves 15 are oppositely arranged, the sliding grooves 15 are located at the lower positions of the through grooves 29, and the notches of the through grooves 29 and the notches of the sliding grooves 15 are arranged in a penetrating manner along the horizontal direction.
The upper surface of the machine base 7 is provided with a chute 15 with an upward notch for the driven roller 9 to move towards the direction of the feed inlet 6, a sliding block 27 is fixed below the driven roller 9, the sliding block 27 is connected between the two chutes 15 in a sliding way, the machine base 7 is provided with a thread groove 16 with an opening penetrating towards the length direction of the chute 15, and the rotary disc 14 is connected in the thread groove 16 in a threaded way, and one end of the rotary disc is exposed out of the thread groove 16 and fixed on the sliding block 27.
The turntable 14 and the slider 27 constitute an adjustment mechanism for adjusting the spacing between the driving roller 8 and the driven roller 9.
A fixed block 28 is fixed below the driving roller 8, and two sides of the fixed block 28 are clamped and fixed between the two sliding grooves 15.
Referring to fig. 3, a guide block 17 is fixed to the bottom of the slide block 27, a guide groove 26 for guiding the driven roller 9 to move toward the feed port 6 is formed in the base 7, and the guide block 17 is slidably coupled in the guide groove 26.
Referring to fig. 4, the storage vat 1 includes a sleeve 101 and an inner plate 102, the side of the sleeve 101 is upwardly open along the height direction thereof, the inner plate 102 is sleeved in the opening, the inner plate 102 is arc-shaped, the inner plate 102 is provided with a notch 31 at a position corresponding to the feed port 6, and the area of the notch 31 is equal to the area of the feed port 6.
Referring to fig. 5, a plurality of card holes 20 are formed in the side surface of the inner plate 102 at intervals along the height direction of the inner plate, in this embodiment, five card holes 20 are formed in two rows and are symmetrically formed in the side surface of the inner plate 102, the opening of each card hole 20 faces the outside direction of the sleeve 101, the inner wall of the sleeve 101 is provided with two horizontally arranged card slots 21, the two card slots 21 are respectively aligned with the two rows of card holes 20, the notches of the card slots 21 are arranged in a penetrating manner along the depth direction of the notches, the inside of each card slot 21 is slidably connected with a fixture block 22 along the depth direction, springs 19 in a compressed state are arranged between the fixture blocks 22 and the card slots 21, one ends of the springs 19 are fixed on the card slots 21, the other ends of the springs are fixed on the fixture blocks 22, and when the card holes.
The locking hole 20, the locking groove 21, the locking block 22 and the spring 19 constitute a positioning mechanism for fixing the relative positions of the sleeve 101 and the inner plate 102.
One end of the latch 22 is exposed to the notch of the latch slot 21 and is located outside the sleeve 101.
A stop block 23 with an area larger than the notch of the slot 21 is fixed at the outward end of the clamping block 22.
The implementation principle of the embodiment is as follows:
in operation, the baffle 18 is opened to completely expose the feed port 6 of the storage tank 1.
Starter motor 11, worm 12 rotates, drives two worm wheel 13 and rotates, and worm wheel 13 drives initiative cylinder 8 and driven cylinder 9 rotation respectively, and then drives the transmission of conveyer belt 10, and the staff transports the raw materials to conveyer belt 10 on, transports to the one end that is close to feed inlet 6 through conveyer belt 10, and the raw materials is in guide board 24 landing to storage vat 1 under the action of gravity.
And then shortened the staff and carried the distance of raw materials to feed arrangement department, alleviateed staff's work load, it is more convenient to operate.
Starting the pipeline pump 2, sucking the raw materials into the material pumping pipe 3 through the communicating pipe 25, pumping the raw materials into the feeding machine 5 through the material discharging pipe 4, and continuously and uniformly feeding the materials into the receiving equipment or the transportation machinery after the materials are successively weighed by the feeding machine 5.
When the conveyer belt 10 is lax, rotate carousel 14 for carousel 14 slides along the depth direction of thread groove 16, and carousel 14 drives slider 27 and slides along spout 15, so that driven cylinder 9 slides along the length direction of frame 7 upper surface, reaches the purpose of adjusting the interval between initiative cylinder 8 and the driven cylinder 9, with the elasticity degree of adjustment conveyer belt 10, and then solves the problem that the conveyer belt is lax in the use, is favorable to conveyer belt 10 to carry the raw materials better.
When the volume of the storage vat 1 needs to be adjusted, the two limiting blocks 23 are held by hands, so that the two clamping blocks 22 move towards the outside of the storage vat 1, the clamping blocks 22 are separated from the clamping holes 20, and the spring 19 is in a compressed state.
At the same time, the inner plate 102 is pulled in the height direction of the sleeve 101, and the relative position of the inner plate 102 and the sleeve 101 is adjusted.
When the notch of the clamping groove 21 is communicated with the clamping hole 20, the two clamping blocks 22 move towards the two clamping holes 20 at the same height respectively and are clamped and matched with the clamping holes 20 under the action of the elastic force of the spring 19 so as to fix the relative positions of the inner plate 102 and the sleeve 101.
The operation is repeated until the height of the storage vat 1 meets the requirement.
And then the height-adjustable of storage vat 1 is favorable to increasing storage vat 1's volume, makes storage vat 1 be applicable to the raw materials of the various volumes of storage, and the suitability is stronger.
The embodiment of this specific implementation mode is the preferred embodiment of the present invention, not limit according to this the utility model discloses a protection scope, so: all equivalent changes made according to the structure, shape and principle of the utility model are covered within the protection scope of the utility model.

Claims (9)

1. The utility model provides a feed arrangement of non-woven fabrics feeding machine, includes storage vat (1) and tubing pump (2) with storage vat (1) intercommunication, characterized by: feed inlet (6) have been seted up to the side of storage vat (1), storage vat (1) outside is provided with frame (7), rotate respectively on frame (7) and be connected with initiative cylinder (8) and driven roll (9) that the level set up, initiative cylinder (8) with round joint has conveyer belt (10) between driven roll (9), move towards on frame (7) the direction of feed inlet (6) is rotated and is connected with worm (12), worm (12) are through motor (11) drive, worm (12) meshing has two worm wheel (13), two worm wheel (13) vertical setting and rotate respectively and be connected initiative cylinder (8) with on driven roll (9), the raw materials warp conveyer belt (10) are followed feed inlet (6) get into in storage vat (1).
2. The feeding device of a nonwoven fabric feeder according to claim 1, wherein: and the machine base (7) is provided with an adjusting mechanism for adjusting the distance between the driving roller (8) and the driven roller (9).
3. The feeding device of a nonwoven fabric feeder according to claim 2, wherein: adjustment mechanism includes carousel (14) and slider (27), set up the confession on frame (7) driven drum (9) court spout (15) of the direction removal of feed inlet (6), slider (27) with spout (15) sliding fit, driven drum (9) are fixed on slider (27), set up the opening court on frame (7) thread groove (16) that spout (15) link up, carousel (14) threaded connection in thread groove (16) and its one end expose thread groove (16) with slider (27) are fixed.
4. The feeding device of a nonwoven fabric feeder according to claim 3, wherein: a guide block (17) is fixed on the sliding block (27), a guide groove (26) for guiding the driven roller (9) to move towards the direction of the feed port (6) is formed in the machine base (7), and the guide block (17) is connected in the guide groove (26) in a sliding mode.
5. The feeding device of a nonwoven fabric feeder according to claim 1, wherein: and a baffle (18) for sealing the feed inlet (6) is arranged on the side surface of the storage barrel (1).
6. The feeding device of a nonwoven fabric feeder according to claim 1, wherein: the storage vat (1) comprises a sleeve (101) and an inner plate (102), the sleeve (101) is sleeved with the inner plate (102), a notch (31) is formed in the position, corresponding to the feed port (6), of the inner plate (102), the area of the notch (31) is larger than or equal to that of the feed port (6), and a positioning mechanism used for fixing the relative position of the sleeve (101) and the inner plate (102) is arranged between the sleeve (101) and the inner plate (102).
7. The feeding device of a nonwoven fabric feeder according to claim 6, wherein: positioning mechanism includes the edge the direction of height interval of inner panel (102) is seted up card hole (20) on inner panel (102) side, the opening orientation of card hole (20) the outside of feed inlet (6), draw-in groove (21) that the level set up are seted up to the inner wall of sleeve (101), there is fixture block (22) along its degree of depth direction sliding connection in draw-in groove (21), fixture block (22) with be provided with between draw-in groove (21) spring (19) that are in compression state, work as card hole (20) with during the notch intercommunication of draw-in groove (21), fixture block (22) with card hole (20) joint cooperation.
8. The feeding device of a nonwoven fabric feeder according to claim 7, wherein: the notch of the clamping groove (21) is arranged in a penetrating mode along the depth direction of the clamping groove, and one end of the clamping block (22) is exposed out of the notch of the clamping groove (21) and located outside the sleeve (101).
9. The feeding device of a nonwoven fabric feeder according to claim 8, wherein: and a limiting block (23) with the area larger than that of the notch of the clamping groove (21) is fixed at one outward end of the clamping block (22).
CN201921863401.4U 2019-10-31 2019-10-31 Feeding device of non-woven fabric feeding machine Active CN211307068U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921863401.4U CN211307068U (en) 2019-10-31 2019-10-31 Feeding device of non-woven fabric feeding machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921863401.4U CN211307068U (en) 2019-10-31 2019-10-31 Feeding device of non-woven fabric feeding machine

Publications (1)

Publication Number Publication Date
CN211307068U true CN211307068U (en) 2020-08-21

Family

ID=72076672

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201921863401.4U Active CN211307068U (en) 2019-10-31 2019-10-31 Feeding device of non-woven fabric feeding machine

Country Status (1)

Country Link
CN (1) CN211307068U (en)

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GR01 Patent grant
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TR01 Transfer of patent right

Effective date of registration: 20211207

Address after: 513042 No. 8, Yijing Road, Yinghong Town, Yingde City, Qingyuan City, Guangdong Province

Patentee after: Guangdong junqian Industrial Co.,Ltd.

Address before: 510000 beside National Highway 106, group 7, Donghua village, Huashan Town, Huadu District, Guangzhou City, Guangdong Province

Patentee before: Guangzhou junqian non woven Co.,Ltd.