CN219208688U - Automatic gauze medicine applying device - Google Patents

Automatic gauze medicine applying device Download PDF

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Publication number
CN219208688U
CN219208688U CN202223441598.7U CN202223441598U CN219208688U CN 219208688 U CN219208688 U CN 219208688U CN 202223441598 U CN202223441598 U CN 202223441598U CN 219208688 U CN219208688 U CN 219208688U
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dry powder
liquid
upper cover
pump
feed inlet
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CN202223441598.7U
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Chinese (zh)
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祝谦
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Xian No5 Hospital
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Xian No5 Hospital
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02ATECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE
    • Y02A50/00TECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE in human health protection, e.g. against extreme weather
    • Y02A50/30Against vector-borne diseases, e.g. mosquito-borne, fly-borne, tick-borne or waterborne diseases whose impact is exacerbated by climate change

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Abstract

The utility model provides an automatic medicine device that scribbles of gauze, including upper cover and base, the upper cover upper surface is provided with liquid feed inlet and dry powder feed inlet, the upper cover is inside to be located the below of liquid feed inlet and dry powder feed inlet and be provided with dry powder pump and liquid pump, be provided with two output shaft motors between dry powder pump and the liquid pump, dry powder pump and dry powder sealing connection, liquid pump and liquid connection, the inside of upper cover is located dry powder pump and liquid pump lower extreme and is provided with dry powder shower nozzle and liquid shower nozzle, the output of dry powder shower nozzle and liquid shower nozzle is inlayed and is set up the upper cover lower surface, the dry powder pump is connected with the dry powder shower nozzle, the liquid pump is connected with the liquid shower nozzle, the upper cover lower surface is located dry powder shower nozzle and liquid shower nozzle bilateral symmetry and is provided with the drive belt, two output shaft motor output all are equipped with the transfer line, the other end of two transfer lines all are provided with the gear, two gears all are located the drive belt inboard. The utility model designs two spraying devices, which can uniformly spray gauze under the matching of the crawler belt.

Description

Automatic gauze medicine applying device
Technical Field
The utility model relates to the field of medical treatment, in particular to an automatic gauze coating device.
Background
The gauze is a cotton fabric with sparse warp and weft, belongs to textile raw materials and cloth, and is characterized by being sparse and having obvious grids, is commonly used for binding, hemostasis, wiping, pus drainage and other functions in medicine, is widely applied in medicine, is used for better hemostasis effect under the hemostasis condition, and a doctor can often smear some liquid medicine on the bound gauze to assist hemostasis or disinfection, but the process is high in repeatability, time-wasting and easy to cause waste due to non-uniformity during smearing.
Disclosure of Invention
The utility model aims to provide an automatic gauze coating device which solves the problems in the background technology.
In order to achieve the above purpose, the present utility model provides the following technical solutions:
the utility model provides an automatic medicine device that scribbles of gauze, includes the upper cover and sets up the base at upper cover lower surface, its characterized in that, the symmetry is provided with liquid feed inlet and dry powder feed inlet in the middle of the upper cover upper surface, the inside below that is located liquid feed inlet and dry powder feed inlet of upper cover is provided with dry powder pump and liquid pump, be provided with dual output shaft motor between dry powder pump and the liquid pump, dry powder pump's input and dry powder feed inlet lower extreme sealing connection, liquid pump's input and liquid feed inlet lower extreme sealing connection, the inside of upper cover is located dry powder pump and liquid pump lower extreme and is provided with dry powder shower nozzle and liquid shower nozzle, the output of dry powder shower nozzle and liquid shower nozzle is inlayed and is set up the upper cover lower surface, the output of dry powder pump is connected with the liquid shower nozzle input, the upper cover lower surface is located dry powder shower nozzle and liquid shower nozzle both sides symmetry and is provided with the drive belt, dual output shaft motor output all is equipped with the transfer line, two output shaft motor lower extreme sealing connection, two are located dual output shaft motor lower extreme is provided with dry powder shower nozzle and liquid shower nozzle's input, two inner side and two drive belt teeth are all are located two and are all in the same way and are provided with the tooth and are all meshed.
As a preferable scheme of the utility model, a dry powder tank and a liquid tank are arranged on the upper surface of the upper cover above the liquid feed inlet () and the dry powder feed inlet, the tank opening of the dry powder tank is in threaded connection with the dry powder feed inlet, and the tank opening of the liquid tank is in threaded connection with the liquid feed inlet ().
As a preferable scheme of the utility model, one ends of two sides of the upper cover are symmetrically provided with the abdication grooves, the inside of each abdication groove is provided with the fixing rod, and the two fixing rods are symmetrically fixed on the outer wall of the upper cover.
As the preferable scheme of the utility model, the double-output shaft motor is fixed on the inner wall of the upper cover, the centers of one sides of the two gears are fixedly connected with the transmission rod, the output surfaces of the two transmission belts extend out of the lower surface of the upper cover, and the surfaces of the two transmission belts far away from the inner track teeth are provided with friction particles which are orderly arranged.
As a preferable scheme of the utility model, one surface of the base, which is positioned on the upper cover, is provided with a feeding channel, two ends of the feeding channel are opened, a movable groove is arranged below the base, which is positioned on the fixed rod, the two movable grooves are fixed on the upper surface of the base, the two movable grooves are connected on the fixed rod in a penetrating way, and one end of the feeding channel, which is far away from the movable groove, is an outlet.
As a preferred embodiment of the present utility model, each of the friction particles extends beyond the lower surface of the upper cover to contact the gauze.
As a preferable scheme of the utility model, an auxiliary ramp is arranged below the feeding channel on one side of the base close to the movable groove, and the auxiliary ramp is connected with the base through a bayonet.
Compared with the prior art, the utility model has the beneficial effects that:
the automatic gauze coating device is designed to be more convenient to spray the medicament on the gauze, a user firstly connects the automatic gauze coating device with an external power supply, loads the powdery or liquid medicament into a corresponding dry powder tank or a liquid tank according to the requirement, then screws the dry powder tank at a corresponding dry powder feeding port or screws the liquid tank at a corresponding liquid feeding port, lifts the upper cover of the automatic gauze coating device, slowly pushes the prepared gauze into the feeding channel from an auxiliary ramp until the gauze fills the whole feeding channel, then starts a switch, pumps liquid in the liquid tank to uniformly spray the liquid medicament on the gauze through a liquid spray head arranged at the output end of a liquid pump, simultaneously starts rotating a double-output shaft motor in the upper cover, drives a transmission rod connected to an output shaft, further enables a gear to continuously rotate, enables the gauze to be continuously taken out of the device through friction particles arranged on the transmission belt, realizes automatic gauze coating on the gauze, and can wipe the surface of the gauze after the uniform spraying of the gauze through the dry powder. The utility model designs two spraying devices with different material structures, which can realize the uniform spraying of gauze under the matching of the crawler belt.
Drawings
Fig. 1 is an overall exterior perspective view of the present utility model.
Fig. 2 is an axial side view of the overall appearance of the present utility model in operation.
Fig. 3 is a perspective view of the interior of the present utility model.
Fig. 4 is a detailed view of the transfer mechanism of the present utility model.
In the figure: 1. an upper cover; 101. a dry powder spray head; 102. a liquid ejection head; 103. a dry powder pump; 104. a liquid pump; 105. a transmission belt; 106. friction particles; 107. inner track teeth; 108. a gear; 109. a transmission rod; 110. a double output shaft motor; 112. a liquid feed port; 113. a dry powder feed inlet; 2. a base; 201. a movable groove; 202. a feeding channel; 3. a dry powder tank; 4. a liquid tank; 5. a fixed rod; 501. a relief groove; 6. an auxiliary ramp; 7. and an outlet.
Detailed Description
Referring to fig. 1-4, the present utility model provides a technical solution: the automatic gauze medicine applying device comprises an upper cover 1 and a base 2 arranged on the lower surface of the upper cover 1, and is characterized in that a liquid feed inlet 112 and a dry powder feed inlet 113 are symmetrically arranged in the middle of the upper surface of the upper cover 1, a dry powder tank 3 and a liquid tank 4 are arranged above the liquid feed inlet 112 and the dry powder feed inlet 113, the tank opening of the dry powder tank 3 is in threaded connection with the dry powder feed inlet 113, the tank opening of the liquid tank 4 is in threaded connection with the liquid feed inlet 112, a dry powder pump 103 and a liquid pump 104 are arranged below the liquid feed inlet 112 and the dry powder feed inlet 113 in the upper cover 1, a double-output-shaft motor 110 is arranged between the dry powder pump 103 and the liquid pump 104, the double-output-shaft motor 110 is fixed on the inner wall of the upper cover 1, the input end of the dry powder pump 103 is in sealed connection with the lower end of the dry powder feed inlet 113, the input end of the liquid pump 104 is in sealed connection with the lower end of the liquid feed inlet 112, the inside of the upper cover 1 is provided with a dry powder spray head 101 and a liquid spray head 102 at the lower ends of a dry powder pump 103 and a liquid pump 104, the output ends of the dry powder spray head 101 and the liquid spray head 102 are embedded and arranged on the lower surface of the upper cover 1, the output end of the dry powder pump 103 is connected with the input end of the dry powder spray head 101, the output end of the liquid pump 104 is connected with the input end of the liquid spray head 102, the two sides of the lower surface of the upper cover 1, which are positioned on the dry powder spray head 101 and the liquid spray head 102, are symmetrically provided with a driving belt 105, the output ends of a double output shaft motor 110 are respectively provided with a driving rod 109, one end of each driving rod 109 far away from the double output shaft motor 110 is respectively provided with a gear 108, the centers of one side of each gear 108 are fixedly connected with the driving rod 109, each gear 108 is respectively positioned on the inner sides of the driving belt 105, the centers of the inner sides of each driving belt 105 are respectively provided with an inner track tooth 107, each gear 108 is respectively meshed with the inner track tooth 107, the output face of two conveyer belts 105 all extends the lower surface of upper cover 1, the one side that two conveyer belts 105 kept away from interior daylighting 107 all sets up neatly arranged friction particle 106, every friction particle 106 all extends upper cover 1 lower surface and gauze contact, upper cover 1 both sides one end symmetry is provided with the groove 501 that gives up, two groove 501 inside of giving up all are provided with dead lever 5, two dead levers 5 all symmetry are fixed at upper cover 1 outer wall, feeding channel 202 has been seted up to the one side that base 2 is located upper cover 1, feeding channel 202 both ends opening, base 2 is located the below of dead lever 5 and is provided with movable groove 201, two movable grooves 201 all fix at base 2 upper surface, two movable grooves 201 alternate connection on dead lever 5, the one end that movable groove 201 was kept away from to the feeding channel 202 is export 7, base 2 is close to movable groove 201 one side and is provided with supplementary ramp 6 below being provided with supplementary ramp 6, supplementary ramp 6 and base 2 bayonet coupling. In order to more conveniently spray the medicament on the gauze, a user connects the automatic gauze coating device with an external power supply, loads the powdery or liquid medicament into the corresponding dry powder tank 3 or liquid tank 4 according to the requirement, then screws the dry powder tank 3 at the corresponding dry powder feed port 113 or screws the liquid tank 4 at the corresponding liquid feed port 112, lifts the upper cover 1 of the automatic gauze coating device, slowly pushes the prepared gauze from the auxiliary ramp 6 into the feeding channel 202 until the whole feeding channel 202 is filled with the gauze, then starts a switch, pumps the liquid in the liquid tank 4 by the liquid pump 104, uniformly sprays the liquid medicament on the gauze through the liquid spray head 102 arranged at the output end of the liquid pump 104, simultaneously starts to rotate the double-output shaft motor 110 inside the upper cover 1, drives the transmission rod 109 connected to the output shaft, further continuously rotates the gear 108, continuously rotates the transmission belt 105 meshed with the gear 108 under the action of the continuous rotation of the gear 108, and continuously drives the gauze to be carried out of the device through the friction particles 106 arranged on the transmission belt 105 until the gauze is filled with the whole feeding channel 202, and then the liquid pump 104 pumps the liquid medicament into the gauze, and the liquid medicament is uniformly sprayed on the surface of the gauze through the automatic gauze coating device, and the gauze can be uniformly lifted by the alcohol spraying device, and the surface of the gauze can be uniformly sprayed on the surface like 1. The utility model designs the spraying device with two different material structures, realizes uniform spraying of gauze under the matching of the crawler belt, is more convenient to maintain and clean due to the open-close design, and is convenient to transport or carry due to the integration of the design.
The working flow of the utility model is as follows: in order to more conveniently spray the medicament on the gauze, a user connects the automatic gauze coating device with an external power supply, loads the powdery or liquid medicament into the corresponding dry powder tank 3 or liquid tank 4 according to the requirement, then screws the dry powder tank 3 at the corresponding dry powder feed port 113 or screws the liquid tank 4 at the corresponding liquid feed port 112, lifts the upper cover 1 of the automatic gauze coating device, slowly pushes the prepared gauze from the auxiliary ramp 6 into the feeding channel 202 until the whole feeding channel 202 is filled with the gauze, then starts a switch, pumps the liquid in the liquid tank 4 by the liquid pump 104, uniformly sprays the liquid medicament on the gauze through the liquid spray head 102 arranged at the output end of the liquid pump 104, simultaneously starts to rotate the double-output shaft motor 110 inside the upper cover 1, drives the transmission rod 109 connected to the output shaft, further continuously rotates the gear 108, continuously rotates the transmission belt 105 meshed with the gear 108 under the action of the continuous rotation of the gear 108, and continuously drives the gauze to be carried out of the device through the friction particles 106 arranged on the transmission belt 105 until the gauze is filled with the whole feeding channel 202, and then the liquid pump 104 pumps the liquid medicament into the gauze, and the liquid medicament is uniformly sprayed on the surface of the gauze through the automatic gauze coating device, and the gauze can be uniformly lifted by the alcohol spraying device, and the surface of the gauze can be uniformly sprayed on the surface like 1.

Claims (7)

1. The utility model provides an automatic medicine applying device of gauze, includes upper cover (1) and base (2) of setting up upper cover (1) lower surface, its characterized in that, the symmetry is provided with liquid feed inlet (112) and dry powder feed inlet (113) in the middle of upper cover (1) upper surface, the below that upper cover (1) inside is located liquid feed inlet (112) and dry powder feed inlet (113) is provided with dry powder pump (103) and liquid pump (104), be provided with dual output shaft motor (110) between dry powder pump (103) and liquid pump (104), the input of dry powder pump (103) and dry powder feed inlet (113) lower extreme sealing connection, the input of liquid pump (104) and liquid feed inlet (112) lower extreme sealing connection, the inside of upper cover (1) is located dry powder pump (103) and liquid pump (104) lower extreme and is provided with shower nozzle (101) and liquid shower nozzle (102), the output of dry powder shower nozzle (101) and liquid shower nozzle (102) inlays and sets up on upper cover (1) lower surface, the output of dry powder pump (103) and liquid shower nozzle (102) are located the both sides of being connected with dry powder pump (101) lower extreme sealing connection, the double-output-shaft motor (110) is characterized in that transmission rods (109) are arranged at the output ends of the double-output-shaft motor (110), gears (108) are arranged at one ends, far away from the double-output-shaft motor (110), of the transmission rods (109), the gears (108) are located on the inner sides of the transmission belts (105), inner-channel teeth (107) are arranged at the inner centers of the transmission belts (105), and the gears (108) are meshed with the inner-channel teeth (107).
2. The automatic gauze coating device according to claim 1, wherein the upper surface of the upper cover (1) is provided with a dry powder tank (3) and a liquid tank (4) above the liquid feed inlet (112) and the dry powder feed inlet (113), the tank opening of the dry powder tank (3) is in threaded connection with the dry powder feed inlet (113), and the tank opening of the liquid tank (4) is in threaded connection with the liquid feed inlet (112).
3. The automatic gauze coating device according to claim 1, wherein two sides of the upper cover (1) are symmetrically provided with a yielding groove (501), two yielding grooves (501) are internally provided with fixing rods (5), and the two fixing rods (5) are symmetrically fixed on the outer wall of the upper cover (1).
4. The automatic gauze coating device according to claim 1, wherein the double-output shaft motor (110) is fixed on the inner wall of the upper cover (1), one side centers of the two gears (108) are fixedly connected with the transmission rod (109), the output surfaces of the two transmission belts (105) extend out of the lower surface of the upper cover (1), and the surfaces, far away from the inner channel teeth (107), of the two transmission belts (105) are provided with friction particles (106) which are in regular arrangement.
5. The automatic gauze coating device according to claim 1, wherein a feeding channel (202) is formed in one surface of the base (2) located on the upper cover (1), two ends of the feeding channel (202) are open, a movable groove (201) is formed in the lower portion of the base (2) located on the fixed rod (5), two movable grooves (201) are fixed on the upper surface of the base (2), the two movable grooves (201) are connected to the fixed rod (5) in a penetrating mode, and one end, far away from the movable grooves (201), of the feeding channel (202) is an outlet (7).
6. An automatic gauze applicator device according to claim 4, wherein each of said friction particles (106) extends beyond the lower surface of the upper cover (1) to contact the gauze.
7. An automatic gauze coating device according to claim 1, characterized in that an auxiliary ramp (6) is arranged below the feeding channel (202) on one side of the base (2) close to the movable groove (201), and the auxiliary ramp (6) is in bayonet connection with the base (2).
CN202223441598.7U 2022-12-22 2022-12-22 Automatic gauze medicine applying device Active CN219208688U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202223441598.7U CN219208688U (en) 2022-12-22 2022-12-22 Automatic gauze medicine applying device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202223441598.7U CN219208688U (en) 2022-12-22 2022-12-22 Automatic gauze medicine applying device

Publications (1)

Publication Number Publication Date
CN219208688U true CN219208688U (en) 2023-06-20

Family

ID=86734950

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202223441598.7U Active CN219208688U (en) 2022-12-22 2022-12-22 Automatic gauze medicine applying device

Country Status (1)

Country Link
CN (1) CN219208688U (en)

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