CN204150286U - A kind of equipment producing wiper - Google Patents

A kind of equipment producing wiper Download PDF

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Publication number
CN204150286U
CN204150286U CN201420478300.6U CN201420478300U CN204150286U CN 204150286 U CN204150286 U CN 204150286U CN 201420478300 U CN201420478300 U CN 201420478300U CN 204150286 U CN204150286 U CN 204150286U
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CN
China
Prior art keywords
blocking district
die frame
tubular container
mould cavity
frame
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CN201420478300.6U
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Chinese (zh)
Inventor
高胜林
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Good Long Pharmaceutical (wuhan) Co Ltd
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Good Long Pharmaceutical (wuhan) Co Ltd
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Filing date
Publication date
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Priority to CN201420478300.6U priority Critical patent/CN204150286U/en
Application granted granted Critical
Publication of CN204150286U publication Critical patent/CN204150286U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The utility model discloses a kind of equipment producing wiper, comprise transmission track, transmit die frame and encapsulating mould frame, transmission track is respectively equipped with the first end-blocking district and the second end-blocking district; Transmit die frame and can drive to the second end-blocking district along transmission track from the first end-blocking district, transmit hollow mould cavity die frame being arranged with and closing several one end, this hollow mould cavity opening up; Encapsulating mould chord position in the second end-blocking district, and can move along vertical direction, encapsulating mould frame is arranged with the hollow mould cavity that several one end are closed, this hollow mould cavity opening down.The equipment of the production wiper that the utility model provides drives to second end-blocking district along transmission track from the first end-blocking district by transmitting die frame, makes end-blocking, filling being integrated on an equipment complete, thus improve the production efficiency of wiper.

Description

A kind of equipment producing wiper
Technical field
The utility model relates to medicine equipment production technical field, particularly a kind of equipment producing wiper.
Background technology
In medical institutions and daily life place, the wiping body that soft sorptive material is made be placed in body of rod one end to embrocate appliance applications more and more extensive.Such as cotton swab, it is used to the secrete of wiping human body or is used for sampling; After dipping in power fluid such as suction liquid, thimerosal etc. with it, cleaning disinfection is carried out to human body wound or injection site; The materials such as Inhaling Liquid cosmetics, ointment, medicinal powder can also be dipped in it to use; Also can dip purging medium with it and carry out clean article etc.In recent years, the cotton body being wrapped in sign pole one end is soaked in advance the pastille cotton swab of liquid, and more and more extensive without the use containing the product such as absorbent liquor ball, pastille cotton piece of bar; In addition power fluid is poured in advance the products such as the carrier fluid cotton swab in the tubulose body of rod also in succession to occur.
Such as, Chinese Patent Application No. is 200480010343.0 disclose a kind of wiper, and comprise the body of rod, be placed in the wiping body of body of rod one end and overpack thereof, described packing material is that two ends are by the tubular container of permanent closure; Tube wall between tubular container two ends have at least a place be provided with mark of break easy to break; The body of rod has elasticity.
But the production of this wiper at present cannot be integrated on an equipment and complete, thus causes production efficiency lower.
Utility model content
In view of this, the purpose of this utility model is to propose a kind of equipment producing wiper, makes end socket, filling is integrated on an equipment and completes, thus improve the production efficiency of wiper.
Based on above-mentioned purpose, the equipment of the production wiper that the utility model provides comprises transmission track, transmits die frame and encapsulating mould frame, described transmission track is respectively equipped with the first end-blocking district and the second end-blocking district;
Described transmission die frame can drive to the second end-blocking district along transmission track from the first end-blocking district, transmits hollow mould cavity die frame being arranged with and closing several one end, this hollow mould cavity opening up;
Described encapsulating mould chord position in the second end-blocking district, and can move along vertical direction, encapsulating mould frame is arranged with the hollow mould cavity that several one end are closed, this hollow mould cavity opening down.
Described first end-blocking district is for inserting the hollow mould cavity on described transmission die frame during when the tubular container of both ends open, melting encapsulation is carried out to one end of described tubular container; Described encapsulating mould frame is used for when described transmission die frame is sent to the second end-blocking district together with the tubular container that one end melting encapsulates, and moves down, until the hollow mould cavity on encapsulating mould frame inserts the other end of described tubular container along vertical direction; Described second end-blocking district is used for carrying out melting encapsulation to the other end of described tubular container.
Alternatively, described first end-blocking district comprises the first heating arrangements, the first cooling body and the pressing plate along vertical direction movement that are positioned at hollow mould cavity closed end, and described first heating arrangements adopts electromagnetic wave to carry out heating and melting to the closed end of hollow cavity body of mould.
Described first heating arrangements is for inserting the hollow mould cavity on described transmission die frame during when the tubular container of both ends open, heating and melting is carried out to the closed end of this hollow mould cavity; Described pressing plate is used for applying along the downward pressure of vertical direction to tubular container;
Described first cooling body is used for after heating terminates, and carries out instantaneous cooling to hollow cavity body of mould.
Preferably, described first heating arrangements is electromagnetic heating mechanism, is positioned at the spherical cap portion of the closed end of hollow mould cavity, only carries out transient heating to the closed end of hollow cavity body of mould.
Preferably, described second end-blocking district comprises the second heating arrangements and the second cooling body that are positioned at hollow mould cavity closed end, and described second heating arrangements adopts electromagnetic wave to carry out heating and melting to the closed end of hollow cavity body of mould.
Described second heating arrangements, for when the hollow mould cavity on encapsulating mould frame inserts the other end of described tubular container, carries out heating and melting to the closed end of this hollow mould cavity;
Described second cooling body is used for after heating terminates, and carries out instantaneous cooling to hollow cavity body of mould.
Preferably, described second heating arrangements is positioned near the closed end of the hollow mould cavity on encapsulating mould frame, and can move along vertical direction together along with encapsulating mould frame.
Preferably, described second heating arrangements is electromagnetic heating mechanism, is positioned at the spherical cap portion of the closed end of hollow mould cavity, only carries out transient heating to the closed end of hollow cavity body of mould.
Alternatively, described encapsulating mould frame is for carrying out melting encapsulation during when the end of the second end-blocking district to the hollow mould cavity on encapsulating mould frame, tubular container is applied along the downward pressure of vertical direction.
Alternatively, described equipment also comprises filling mechanism, and described filling mechanism, between the first end-blocking district and the second end-blocking district, carries out filling for the tubular container encapsulated one end melting.
Preferably, described filling mechanism moves up and down along vertical direction, for when transmitting die frame and moving to a certain position between the first end-blocking district and the second end-blocking district, move down along vertical direction, carry out filling to the tubular container of one end melting encapsulation, then moving up along vertical direction returns to original position again.
Alternatively, described transmission track is slide rail, and the both sides of described transmission die frame are separately installed with slide block, and under power drive, described slide block can slide on slide rail, thus transmission die frame is moved back and forth between the first end-blocking district and the second end-blocking district.
Alternatively, described transmission track is screw mandrel, the both sides of described transmission die frame are separately installed with nut seat, described nut seat is connected with screw mandrel by nut, along with the rotation of screw mandrel, described nut seat moves on screw mandrel, thus transmission die frame is moved back and forth between the first end-blocking district and the second end-blocking district.
Alternatively, the tooth bar that described transmission track comprises gear and is meshed with described gear, the both sides of described transmission die frame are connected with tooth bar respectively, along with the rotation of gear, the transmission together with tooth bar of described transmission die frame, thus transmission die frame is moved back and forth between the first end-blocking district and the second end-blocking district.
As can be seen from above, the equipment of the production wiper that the utility model provides drives to second end-blocking district along transmission track from the first end-blocking district by transmitting die frame, make end-blocking, filling being integrated on an equipment complete, thus improve the production efficiency of wiper.And adopt Liang Ge end-blocking district to carry out melting end-blocking respectively to tubular container, package quality and controllability can be improved further.
Accompanying drawing explanation
Fig. 1 is the structural representation of the equipment of the production wiper of the utility model first embodiment;
Fig. 2 is the structural representation of the equipment of the production wiper of the utility model second embodiment;
Fig. 3 is the structural representation of the equipment of the production wiper of the utility model the 3rd embodiment;
Fig. 4 is the structural representation of the first heating arrangements of the utility model embodiment;
Fig. 5 is the structural representation of the transmission track of the utility model first embodiment.
Detailed description of the invention
For making the purpose of this utility model, technical scheme and advantage clearly understand, below in conjunction with specific embodiment, and with reference to accompanying drawing, the utility model is further described.
With reference to figure 1, it is the structural representation of the equipment of the production wiper of the utility model first embodiment.The equipment of described production wiper comprises slide rail 101, transmits die frame 2 and encapsulating mould frame 4, described slide rail 101 is respectively equipped with the first end-blocking district 11 and the second end-blocking district 12.The both sides of described transmission die frame 2 are separately installed with slide block 102, and described slide block 102 can slide on slide rail 101, therefore under power drive, transmit die frame 2 and can slide into the second end-blocking district 12 along slide rail 101 from the first end-blocking district 11.Transmit the hollow mould cavity 3 die frame 2 being arranged with and closing several one end, this hollow mould cavity 3 opening up.Described encapsulating mould frame 4 is positioned at the second end-blocking district 12, and can move along vertical direction, encapsulating mould frame 4 is arranged with the hollow mould cavity 5 that several one end are closed, this hollow mould cavity 5 opening down.Wherein, described transmission die frame 2 should be fixedly connected with slide block 102.
Described slide block 10 slides on slide rail 101 in the driving of power, when changing power operated direction, transmission die frame 2 also can be made to slide into the first end-blocking district 11 along slide rail 101 from the second end-blocking district 12.
Further, described first end-blocking district 11 comprises the first heating arrangements 13, first cooling body 14 and can along the pressing plate 7 of vertical direction movement.Described pressing plate 7 is positioned at the top of transmitting die frame 2, for applying pressure to tubular container 6.Described second end-blocking district 12 comprises the second heating arrangements 15 and the second cooling body 16.The equipment of described production wiper also comprises filling mechanism 8, and described filling mechanism 8, between the first end-blocking district 11 and the second end-blocking district 12, carries out filling for the tubular container 6 encapsulated one end melting.Described filling mechanism 8 can move up and down along vertical direction, when transmitting die frame 2 and moving to a certain position between the first end-blocking district 11 and the second end-blocking district 12, filling mechanism 8 moves down along vertical direction, then carry out filling to the tubular container 6 of one end melting encapsulation, then moving up along vertical direction returns to original position again.
Alternatively, described first heating arrangements 13 can adopt electromagnetic wave to carry out heating and melting to the closed end of hollow cavity body of mould 3, make tubular container 6 (thermoplastic macromolecule material) reach processing conditions, then make it at in-mold molding by instantaneous cooling.
See Fig. 4, it is the structural representation of the utility model embodiment first heating arrangements.During melting heating, the first heating arrangements 13 is preferably positioned at the spherical cap portion of hollow mould cavity 3 closed end, can not be positioned at the straight portion of hollow mould cavity 3.Namely the closed end of cavity body of mould 3 is placed in the maximum region of flux density by hollow, the closed end cutting magnetic line of hollow mould cavity 3, makes the closed end of hollow mould cavity 3 obtain heat instantaneously, reaches the processing temperature of tubular container 6.
Preferably, the first heating arrangements 13 is 2 ~ 5mm with the distance on hollow mould cavity 3 top, such distance for heating wall thickness be the tubular container 6 of 0.7 ~ 0.8mm, wall thickness is that the mould of 0.3 ~ 0.5mm is most suitable.
Because the wall thickness of hollow mould cavity 3 is very thin, therefore very accurately controlled working temperature and the machining area (spherical cap portion of hollow mould cavity 3 is needed, instead of straight portion), so both can not because of very wide processing temperature scope, make processed tubular container 6 because wider range of temperatures and oad and shape disunity, also will, because of very wide processing temperature scope, make the physical and chemical performance of processed tubular container 6 unstable.Therefore, the utility model carries out melting in Electromagnetic Heating mode, makes the end of tubular container 6 by transient heating, not only increases the forming characteristics of tubular container 6, also improve production efficiency.
In the present embodiment, described second heating arrangements 15 is positioned near the closed end of the hollow mould cavity 5 on encapsulating mould frame 4, and can move along vertical direction together along with encapsulating mould frame 4.
Preferably, described second heating arrangements 15 also can adopt electromagnetism to carry out heating and melting to the closed end of hollow cavity body of mould 5, make tubular container 6 (thermoplastic macromolecule material) reach processing conditions, then make it at in-mold molding by instantaneous cooling.Second heating arrangements 15 is preferably positioned at the spherical cap portion of hollow mould cavity 5 closed end, can not be positioned at the straight portion of hollow mould cavity 5, with the first heating arrangements 13.
First cooling body 14 and/or the second cooling body 16 can be cooling water systems, or other coolant systems.Namely adopt cooling water expansion tank or other refrigerant fluids to carry out instantaneous cooling to hollow cavity body of mould 3,5, thus make the end of tubular container 6 packed.
When the tubular container 6 of both ends open inserts the hollow mould cavity 3 on described transmission die frame 2, the closed end of the first heating arrangements 13 to this hollow mould cavity 3 heats, make one end melted by heating encapsulation of tubular container 6, pressing plate moves down along vertical direction and applies pressure to tubular container simultaneously; After heating terminates, the first cooling body 14 pairs hollow cavity body of mould 3 carries out instantaneous cooling, must arrive the tubular container 6 that one end is melted encapsulation.When transmission die frame 2 slides between the first end-blocking district 11 and the second end-blocking district 12 together with the tubular container 6 that one end melting encapsulates, filling mechanism 8 carries out filling to this tubular container 6.Then, when the tubular container 6 that transmission die frame 2 and one end melting encapsulate continues to slide into the second end-blocking district 12, encapsulating mould frame 4 moves down along vertical direction, hollow mould cavity 5 on encapsulating mould frame 4 inserts the other end of this tubular container 6, the closed end of the second heating arrangements 15 to this hollow mould cavity 5 heats, and makes the also melted by heating encapsulation of tubular container 6 other end; Encapsulating mould frame 4 moves down along vertical direction and applies pressure to tubular container 6 simultaneously; After heating terminates, the second cooling body 16 pairs hollow cavity body of mould 5 carries out instantaneous cooling, and two ends are all melted the tubular container 6 of encapsulation.Described filling mechanism 8 loads required content, as the body of rod, liquid, lotion, powder, gas.
It should be noted that, the equipment of described production wiper not only can be used in the tubular container of processing macro-molecular material, can also be used for the tubular container of processed glass material.
In addition, can be close completely to the encapsulation at tubular container 6 two ends, also can leave aperture, namely reducing be carried out to tubular container 6, but not exclusively closed.This displacement that can be moved down by control pressing plate 7 and encapsulating mould frame 4 is controlled, thus controls it to tubular container 6 applied pressure sizes.If tubular container 6 needs to close completely, then increase pressing plate 7 and encapsulating mould frame 4 pairs of tubular container 6 applied pressures; Such as tubular container 6 needs to leave aperture, then reduce pressing plate 7 and encapsulating mould frame 4 pairs of tubular container 6 applied pressures.The shape at tubular container 6 two ends also can be changed by the shape changing hollow mould cavity 3,5, makes it form difform end-blocking.Such as, circular, oval, conical, triangle etc.
The Linear transmission mode (the moving along vertical direction such as encapsulating mould frame 4, pressing plate 7, second heating arrangements 15) described in the present embodiment that it is pointed out that can adopt the linear drive such as linear block, linear module, linear bearing, plain bearing, even manipulator to realize.
With reference to figure 2, it is the structural representation of the equipment of the production wiper of the utility model second embodiment.In the present embodiment, described transmission track is screw mandrel 103, the both sides of described transmission die frame 2 are separately installed with nut seat 104, described nut seat 104 is connected with screw mandrel 103 by nut, along with the rotation of screw mandrel 103, described nut seat 104 moves on screw mandrel 103, thus drives transmission die frame 2 to slide into the second end-blocking district 12 along screw mandrel 103 from the first end-blocking district 11.Need installation two rhizoid bar 103 in the present embodiment, drive the nut seat 104 transmitting die frame 2 both sides to move simultaneously.Described screw mandrel 103 can be driven to rotate by motor.Wherein, described transmission die frame 2 should be fixedly connected with nut seat 104.
Miscellaneous part is identical with first embodiment.
With reference to figure 3, it is the structural representation of the equipment of the production wiper of the utility model the 3rd embodiment.In the present embodiment, the tooth bar 112 that described transmission track comprises gear 111 and is meshed with described gear 111, the both sides of described transmission die frame 2 are connected with tooth bar 112 respectively, along with the rotation of gear 111, ring chain 110 does horizontal motion, thus drives transmission die frame 2 to move to the second end-blocking district 12 from the first end-blocking district 11.Need installation two toothed rack 112 in the present embodiment, drive transmission die frame 2 both sides to move together simultaneously.Wherein, described transmission die frame 2 should be fixedly connected with tooth bar 112.
Miscellaneous part is identical with first embodiment.
It is to be noted, in first, second, and third embodiment, transmission die frame 2 can be made to slide into the first end-blocking district 11 from the second end-blocking district 12 again along transmission track by changing power operated direction, thus realize transmitting die frame 2 moving back and forth between the first end-blocking district 11 and the second end-blocking district 12.
Further, in first embodiment, transmission track 17 (i.e. slide rail 101) used can be Long Circle, as shown in Figure 5, the both sides of this transmission track 17 are rectilinear form, and the end on both sides is connected by arc, thus form oblong transmission track.In order to enhance productivity, first end-blocking district 11 and the second end-blocking district 12 all can be installed on the both sides of this transmission track 17, so after transmission die frame 2 moves to the second end-blocking district 12 along transmission track from the first end-blocking district 11, transmit die frame 2 through arc-shaped track, enter the first end-blocking district 11 of another side, again move to the second end-blocking district 12 from the first end-blocking district 11, transmit the arc-shaped track of die frame 2 through the other end, finally again get back to the first end-blocking district 11, continue the circulation gone round and begun again.
Preferably, Long Circle transmission track 17 in described Fig. 5 can also improve further, the arc-shaped track at its two ends is become rectilinear form track, article four, the end of rectilinear form track is all connected by arc, so transmit every the completing in orbit of die frame 2 once to circulate, just can complete four complete melting encapsulation, thus the production efficiency of this equipment can be improved further.
This shows, the equipment of the production wiper that the utility model provides drives to second end-blocking district along transmission track from the first end-blocking district by transmitting die frame, make end-blocking, filling being integrated on an equipment complete, thus improve the production efficiency of wiper.And adopt Liang Ge end-blocking district to carry out melting end-blocking respectively to tubular container, package quality and controllability can be improved further.The equipment that the utility model provides also can refer to other field, such as the application of medicine bottle, apothecary jar, Drinking bottle, bottled military compressed foods.
Those of ordinary skill in the field are to be understood that: the foregoing is only specific embodiment of the utility model; be not limited to the utility model; all within spirit of the present utility model and principle; any amendment of making, equivalent replacement, improvement etc., all should be included within protection domain of the present utility model.

Claims (10)

1. produce an equipment for wiper, it is characterized in that, comprise transmission track, transmit die frame and encapsulating mould frame, described transmission track is respectively equipped with the first end-blocking district and the second end-blocking district;
Described transmission die frame can drive to the second end-blocking district along transmission track from the first end-blocking district, transmits hollow mould cavity die frame being arranged with and closing several one end, this hollow mould cavity opening up;
Described encapsulating mould chord position in the second end-blocking district, and can move along vertical direction, encapsulating mould frame is arranged with the hollow mould cavity that several one end are closed, this hollow mould cavity opening down;
Described first end-blocking district is for inserting the hollow mould cavity on described transmission die frame during when the tubular container of both ends open, melting encapsulation is carried out to one end of described tubular container; Described encapsulating mould frame is used for when described transmission die frame is sent to the second end-blocking district together with the tubular container that one end melting encapsulates, and moves down, until the hollow mould cavity on encapsulating mould frame inserts the other end of described tubular container along vertical direction; Described second end-blocking district is used for carrying out melting encapsulation to the other end of described tubular container.
2. the equipment of production wiper according to claim 1, it is characterized in that, described first end-blocking district comprises the first heating arrangements, the first cooling body and the pressing plate along vertical direction movement that are positioned at hollow mould cavity closed end, described first heating arrangements is electromagnetic heating mechanism, be positioned at the spherical cap portion of the closed end of hollow mould cavity
Described first heating arrangements is for inserting the hollow mould cavity on described transmission die frame during when the tubular container of both ends open, heating and melting is carried out to the closed end of this hollow mould cavity; Described pressing plate is used for applying along the downward pressure of vertical direction to tubular container;
Described first cooling body is used for after heating terminates, and carries out instantaneous cooling to hollow cavity body of mould.
3. the equipment of production wiper according to claim 1, it is characterized in that, described second end-blocking district comprises the second heating arrangements and the second cooling body that are positioned at hollow mould cavity closed end, described second heating arrangements is electromagnetic heating mechanism, for carrying out heating and melting to the closed end of hollow cavity body of mould;
Described second heating arrangements, for when the hollow mould cavity on encapsulating mould frame inserts the other end of described tubular container, carries out heating and melting to the closed end of this hollow mould cavity;
Described second cooling body is used for after heating terminates, and carries out instantaneous cooling to hollow cavity body of mould.
4. the equipment of production wiper according to claim 3, is characterized in that, described second heating arrangements is positioned at the spherical cap portion of the closed end of hollow mould cavity, and can move along vertical direction together along with encapsulating mould frame.
5. the equipment of production wiper according to claim 1, it is characterized in that, described encapsulating mould frame is for carrying out melting encapsulation during when the end of the second end-blocking district to the hollow mould cavity on encapsulating mould frame, tubular container is applied along the downward pressure of vertical direction.
6. the equipment of production wiper according to claim 1, is characterized in that, described equipment also comprises filling mechanism, and described filling mechanism, between the first end-blocking district and the second end-blocking district, carries out filling for the tubular container encapsulated one end melting.
7. the equipment of production wiper according to claim 6, it is characterized in that, described filling mechanism moves up and down along vertical direction, for when transmitting die frame and moving to a certain position between the first end-blocking district and the second end-blocking district, move down along vertical direction, carry out filling to the tubular container of one end melting encapsulation, then moving up along vertical direction returns to original position again.
8. the equipment of production wiper according to claim 1, it is characterized in that, described transmission track is slide rail, the both sides of described transmission die frame are separately installed with slide block, under power drive, described slide block can slide on slide rail, thus transmission die frame is moved back and forth between the first end-blocking district and the second end-blocking district.
9. the equipment of production wiper according to claim 1, it is characterized in that, described transmission track is screw mandrel, the both sides of described transmission die frame are separately installed with nut seat, described nut seat is connected with screw mandrel by nut, along with the rotation of screw mandrel, described nut seat moves on screw mandrel, thus transmission die frame is moved back and forth between the first end-blocking district and the second end-blocking district.
10. the equipment of production wiper according to claim 1, it is characterized in that, the tooth bar that described transmission track comprises gear and is meshed with described gear, the both sides of described transmission die frame are fixedly connected with tooth bar respectively, along with the rotation of gear, the transmission together with tooth bar of described transmission die frame, thus transmission die frame is moved back and forth between the first end-blocking district and the second end-blocking district.
CN201420478300.6U 2014-08-22 2014-08-22 A kind of equipment producing wiper Expired - Fee Related CN204150286U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201420478300.6U CN204150286U (en) 2014-08-22 2014-08-22 A kind of equipment producing wiper

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Application Number Priority Date Filing Date Title
CN201420478300.6U CN204150286U (en) 2014-08-22 2014-08-22 A kind of equipment producing wiper

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CN204150286U true CN204150286U (en) 2015-02-11

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104192364A (en) * 2014-08-22 2014-12-10 朗古德药业(武汉)有限公司 Device used for producing wipers
CN107253052A (en) * 2017-06-15 2017-10-17 龙泉市鸿达汽车空调配件有限公司 Drying bottle bottoming machine and its technique

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104192364A (en) * 2014-08-22 2014-12-10 朗古德药业(武汉)有限公司 Device used for producing wipers
CN107253052A (en) * 2017-06-15 2017-10-17 龙泉市鸿达汽车空调配件有限公司 Drying bottle bottoming machine and its technique
CN107253052B (en) * 2017-06-15 2018-06-19 龙泉市鸿达汽车空调配件有限公司 Drying bottle bottoming machine and its technique

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

Granted publication date: 20150211

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