CN108578239B - Paediatrics medicine feed device with improve interest of taking medicine - Google Patents

Paediatrics medicine feed device with improve interest of taking medicine Download PDF

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Publication number
CN108578239B
CN108578239B CN201810236976.7A CN201810236976A CN108578239B CN 108578239 B CN108578239 B CN 108578239B CN 201810236976 A CN201810236976 A CN 201810236976A CN 108578239 B CN108578239 B CN 108578239B
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China
Prior art keywords
embedded
rod
liquid medicine
syrup
same axis
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CN201810236976.7A
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CN108578239A (en
Inventor
韩振靓
谢瑞珠
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Affiliated Hospital of University of Qingdao
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Affiliated Hospital of University of Qingdao
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    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61JCONTAINERS SPECIALLY ADAPTED FOR MEDICAL OR PHARMACEUTICAL PURPOSES; DEVICES OR METHODS SPECIALLY ADAPTED FOR BRINGING PHARMACEUTICAL PRODUCTS INTO PARTICULAR PHYSICAL OR ADMINISTERING FORMS; DEVICES FOR ADMINISTERING FOOD OR MEDICINES ORALLY; BABY COMFORTERS; DEVICES FOR RECEIVING SPITTLE
    • A61J7/00Devices for administering medicines orally, e.g. spoons; Pill counting devices; Arrangements for time indication or reminder for taking medicine
    • A61J7/0015Devices specially adapted for taking medicines
    • A61J7/0053Syringes, pipettes or oral dispensers
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61JCONTAINERS SPECIALLY ADAPTED FOR MEDICAL OR PHARMACEUTICAL PURPOSES; DEVICES OR METHODS SPECIALLY ADAPTED FOR BRINGING PHARMACEUTICAL PRODUCTS INTO PARTICULAR PHYSICAL OR ADMINISTERING FORMS; DEVICES FOR ADMINISTERING FOOD OR MEDICINES ORALLY; BABY COMFORTERS; DEVICES FOR RECEIVING SPITTLE
    • A61J7/00Devices for administering medicines orally, e.g. spoons; Pill counting devices; Arrangements for time indication or reminder for taking medicine
    • A61J7/0015Devices specially adapted for taking medicines
    • A61J7/0038Straws
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01FMIXING, e.g. DISSOLVING, EMULSIFYING OR DISPERSING
    • B01F33/00Other mixers; Mixing plants; Combinations of mixers
    • B01F33/50Movable or transportable mixing devices or plants
    • B01F33/501Movable mixing devices, i.e. readily shifted or displaced from one place to another, e.g. portable during use
    • B01F33/5011Movable mixing devices, i.e. readily shifted or displaced from one place to another, e.g. portable during use portable during use, e.g. hand-held
    • B01F33/50113Movable mixing devices, i.e. readily shifted or displaced from one place to another, e.g. portable during use portable during use, e.g. hand-held of the pipette type
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61JCONTAINERS SPECIALLY ADAPTED FOR MEDICAL OR PHARMACEUTICAL PURPOSES; DEVICES OR METHODS SPECIALLY ADAPTED FOR BRINGING PHARMACEUTICAL PRODUCTS INTO PARTICULAR PHYSICAL OR ADMINISTERING FORMS; DEVICES FOR ADMINISTERING FOOD OR MEDICINES ORALLY; BABY COMFORTERS; DEVICES FOR RECEIVING SPITTLE
    • A61J2200/00General characteristics or adaptations
    • A61J2200/40Heating or cooling means; Combinations thereof
    • A61J2200/42Heating means
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01FMIXING, e.g. DISSOLVING, EMULSIFYING OR DISPERSING
    • B01F2101/00Mixing characterised by the nature of the mixed materials or by the application field
    • B01F2101/22Mixing of ingredients for pharmaceutical or medical compositions

Abstract

The invention discloses a pediatric medicine feeding device capable of improving medicine taking interest, which structurally comprises a bionic nursing mechanism, a mixing medicine cylinder device, a hand-held groove and a rubber sleeve, wherein the right end of the bionic nursing mechanism is embedded and arranged at the left end of the mixing medicine cylinder device and is positioned at the same axis, the right end of the mixing medicine cylinder device is embedded and arranged at the left end of the rubber sleeve and is positioned at the same axis, the rubber sleeve is connected with the bionic nursing mechanism through the mixing medicine cylinder device, the mixing medicine cylinder device and the hand-held groove are of an integrated structure, and the mixing medicine cylinder device comprises a hand-controlled mechanism, a shell, a liquid medicine storage mechanism, a positioning ring and a heating mechanism. The medicine can be taken by oneself to achieve the best treatment effect.

Description

Paediatrics medicine feed device with improve interest of taking medicine
Technical Field
The invention discloses a pediatric medicine feeding device capable of improving medicine taking interest, and belongs to the technical field of pediatrics.
Background
Currently, in pediatric treatment, doctors often administer drugs to patients for treatment, and the drugs assist treatment to accelerate the recovery of pediatric patients.
In the prior art, because pediatric patients are generally younger and have a fear feeling on some medicines, the medicines are refused to be taken, so that the difficulty in medical treatment of doctors is caused.
Disclosure of Invention
Aiming at the defects in the prior art, the invention aims to provide a pediatric medicine feeding device with improved medicine taking interest, and solves the problem that in the prior art, because a pediatric patient is generally younger and has a fear feeling on some medicines, the medicine is refused to be taken, and the doctor is difficult to cure.
In order to achieve the purpose, the invention is realized by the following technical scheme: a pediatric medicine feeding device capable of improving medicine taking interest structurally comprises a bionic feeding mechanism, a mixing medicine cylinder device, a hand holding groove and a glue sleeve, wherein the right end of the bionic feeding mechanism is embedded and installed at the left end of the mixing medicine cylinder device and is located in the same axis, the right end of the mixing medicine cylinder device is embedded and installed at the left end of the glue sleeve and is located in the same axis, the glue sleeve is connected with the bionic feeding mechanism through the mixing medicine cylinder device, the mixing medicine cylinder device and the hand holding groove are of an integrated structure, the mixing medicine cylinder device comprises a manual control mechanism, a shell, a liquid medicine storage mechanism, a syrup output mechanism, a dismounting and replacing mechanism, a positioning ring and a heating mechanism, the upper end of the positioning ring is provided with the lower end of the heating mechanism, the upper end of the syrup output mechanism is embedded and installed at the lower end of the positioning ring and is perpendicular to each other, the liquid medicine storage mechanism is arranged inside the syrup output mechanism and is located in the same axis, the disassembly and replacement mechanism is embedded in the left end and the right end of the shell, the liquid medicine storage mechanism is connected with the positioning ring through the syrup output mechanism, the lower end of the shell is provided with the manual control mechanism, and the upper end of the manual control mechanism is embedded in the lower end of the liquid medicine storage mechanism.
Further, bionical breast-feed mechanism is including preventing countercurrent piece, hose, medical head, output tube of gluing, the hose surface is glued first internal surface laminating and mutually perpendicular with medical, hose internal surface prevents that countercurrent piece is the integral structure, the embedding of output tube upper end is installed at medical first lower extreme of gluing and mutually perpendicular, the laminating of output tube upper end and hose lower extreme is and be in same axle center.
Further, manual control mechanism includes push rod, bearing, smooth tooth pole, first branch, concave gear, moving part, short strut, reset spring, connecting rod, shrouding, connecting rod lower extreme embedding is installed in the shrouding upper end and mutually perpendicular, the connecting rod upper end is connected with short strut through the pin, the upper left end of short strut is fixed at the moving part left end through the pin, moving part left end embedding is installed at smooth tooth pole lower extreme and mutually perpendicular, smooth tooth pole right-hand member meshes and mutually perpendicular with the concave gear left end, the left lower extreme of first branch is connected with concave gear left end through the pin, the upper right end of first branch is connected with the push rod lower extreme through the pin.
Further, the liquid medicine storage mechanism comprises a liquid medicine barrel, a soft rubber sleeve, a pushing block and an ejector rod, the upper end of the ejector rod and the lower end of the pushing block are of an integrated structure and are perpendicular to each other, the upper end of the pushing block is embedded and installed at the lower end of the soft rubber sleeve, the outer ring surface of the soft rubber sleeve and an inner ring surface spring of the liquid medicine barrel are in the same axis, the lower end of the ejector rod is embedded and installed at the lower end of the liquid medicine barrel and is perpendicular to each other, and the pushing block and the liquid medicine barrel are in the same axis.
Further, the syrup output mechanism comprises a syrup cylinder, a second soft rubber sleeve, a second pushing block and a sealing sleeve ring, wherein the inner ring surface of the syrup cylinder is attached to the outer ring surface of the second soft rubber sleeve and is positioned at the same axis, the upper end of the second pushing block is embedded into the lower end of the second soft rubber sleeve, the lower end of the sealing sleeve ring is embedded into the lower end of the syrup cylinder and is positioned at the same axis, the second pushing block and the syrup cylinder are positioned at the same axis, and the upper surface of the sealing sleeve ring is parallel to the lower surface of the second pushing block.
Furthermore, the dismounting and replacing mechanism comprises a fixed block, a folding rod, a key sleeve, a rotatable mounting key, an ejection spring and an inner cylinder reverse buckling groove, wherein the folding rod is connected with the fixed block through a pin, the rotatable mounting key is embedded and mounted on the inner cylinder reverse buckling groove, the right end of the ejection spring is embedded and mounted on the inner cylinder reverse buckling groove and is perpendicular to the inner cylinder reverse buckling groove, the left end of the ejection spring is embedded and mounted at the right end of the rotatable mounting key and is perpendicular to the inner cylinder reverse buckling groove, and the left end of the rotatable mounting key is embedded and mounted at the right end of the key sleeve.
Further, the heating mechanism comprises a heating sheet, a converter, a small electric storage battery, a charging port and a power connection wire, the lower end of the heating sheet is welded with the upper end of the converter, the lower end of the converter is electrically connected with the upper end of the small electric storage battery, the left end of the small electric storage battery is welded with the right end of the power connection wire, and the left end of the power connection wire is welded with the right end of the charging port.
Further, ejector pin lower extreme embedding is installed in the push rod upper end and is in same axle center, push rod upper end embedding is installed at a syrup section of thick bamboo lower extreme and mutually perpendicular, push rod upper end embedding is installed at a liquid medicine section of thick bamboo lower extreme and mutually perpendicular, the embedding of charging mouth right-hand member is installed at the shell left end.
Furthermore, the sliding gear rods are two and are attached to the left side and the right side of the inner surface of the rubber sleeve, the outer ring surface of the sealing plate is embedded in the lower end of the rubber sleeve and is located in the same axis, the connecting rod and the rubber sleeve are located in the same axis, the lower end of the output pipe is embedded in the upper end of the mixed cartridge device and is perpendicular to each other, the lower surface of the medical rubber head is attached to the upper end of the mixed cartridge device and is located in the same axis, and the bearing is embedded in the rubber sleeve.
Advantageous effects
The invention relates to a paediatrics medicine feeding device with improved medicine taking interest, a key sleeve in a dismounting and replacing mechanism is pressed down and drives a rotatable mounting key to rotate for a certain angle, an ejection spring is compressed, when a clamping jaw at the right end of the rotatable mounting key is separated from a clamping groove, the key sleeve is loosened, the ejection spring pushes the key sleeve outwards through self elastic potential energy, the ejection spring drives a folding rod to stretch while driving the ejection spring to be separated from a cylinder body, the folding rod is pulled to be fixed when the ejection spring is pulled to a rated distance, a medicine liquid storage mechanism is mounted in a syrup output mechanism, the syrup output mechanism is placed in a mixed medicine cylinder device through the dismounting and replacing mechanism, the ejection spring is reset and fixed through the same movement of the dismounting and replacing mechanism, a sealing plate in a manual control mechanism is lightly pressed, a connecting rod is pushed to move upwards, a short supporting rod is connected with the reset spring through a pin at the lower end and is fixed on a moving part, the short supporting rod is driven when the connecting rod is pushed, the displacement of the short supporting rod is limited by the moving part when reaching the maximum value, so as to drive the moving part to move upwards, the moving part is embedded at the lower end of the sliding tooth rod and is transmitted by the sliding tooth rod to move, when the push rod moves upwards, the ejection rod in the liquid medicine storage mechanism is pushed, so that the liquid medicine is pushed out by the push block connected with the ejection rod, when the liquid medicine is filled in the output port, the medical rubber head in the bionic nursing mechanism is sucked by children, the syrup liquid in the syrup cylinder in the syrup output mechanism flows out before the liquid medicine, the liquid medicine is mixed with the syrup and then flows out, after the liquid medicine is used, the syrup output mechanism is taken out and cleaned by the dismounting mechanism, the liquid medicine storage mechanism is replaced for reuse, the appearance of the design takes the feeding bottle as reference, the sucking type medicine outlet is adopted, the micro heating piece is arranged in the sucking type medicine outlet, the temperature of breast milk is simulated, and the syrup is mixed with the sense of astringency of the liquid medicine, the infant can take the medicine by himself by eliminating the fear of the infant to the medicine, and the optimal treatment effect is achieved.
Drawings
Other features, objects and advantages of the invention will become more apparent upon reading of the detailed description of non-limiting embodiments with reference to the following drawings:
FIG. 1 is a schematic diagram of a pediatric drug delivery device having enhanced drug administration interest in accordance with the present invention;
FIG. 2 is a schematic diagram of the internal structure of a pediatric drug delivery device with enhanced drug administration interest in accordance with the present invention;
FIG. 3 is a schematic diagram showing the details of the internal structure of a pediatric drug delivery device with enhanced drug administration interest in accordance with the present invention;
FIG. 4 is an enlarged view of a portion of FIG. 3;
fig. 5 is a partially enlarged view of fig. 3.
In the figure: bionic lactation mechanism-1, mixed medicine cylinder device-2, hand holding groove-3, rubber sleeve-4, hand control mechanism-21, shell-22, liquid medicine storage mechanism-23, syrup output mechanism-24, dismounting and replacing mechanism-25, positioning ring-26, heating mechanism-27, anti-backflow sheet-11, hose-12, medical rubber head-13, output pipe-14, push rod-211, bearing-212, sliding tooth rod-213, first support rod-214, concave gear-215, moving part-216, short support rod-217, reset spring-218, connecting rod-219, sealing plate-2110, liquid medicine cylinder-231, soft rubber sleeve-232, pushing block-233, ejection rod-234, syrup cylinder-241, second soft rubber sleeve-242, A second pushing block-243, a sealing ring-244, a fixed block-251, a folding rod-252, a key sleeve-253, a rotatable mounting key-254, an ejection spring-255, an inner cylinder reverse buckling groove-256, a heating sheet-271, a converter-272, a small storage battery-273, a charging port-274 and a power connection wire-275.
Detailed Description
In order to make the technical means, the creation characteristics, the achievement purposes and the effects of the invention easy to understand, the invention is further described with the specific embodiments.
Referring to fig. 1-5, the present invention provides a pediatric drug feeding device with enhanced interest in taking drugs: the structure of the bionic breast-feed device comprises a bionic breast-feed mechanism 1, a mixing cartridge device 2, a hand-held groove 3 and a rubber sleeve 4, wherein the right end of the bionic breast-feed mechanism 1 is embedded in the left end of the mixing cartridge device 2 and is positioned in the same axis, the right end of the mixing cartridge device 2 is embedded in the left end of the rubber sleeve 4 and is positioned in the same axis, the rubber sleeve 4 is connected with the bionic breast-feed mechanism 1 through the mixing cartridge device 2, the mixing cartridge device 2 and the hand-held groove 3 are of an integrated structure, the mixing cartridge device 2 comprises a manual control mechanism 21, a shell 22, a liquid medicine storage mechanism 23, a syrup output mechanism 24, a replacing mechanism 25, a positioning ring 26 and a heating mechanism 27, the upper end of the positioning ring 26 is provided with the lower end of the heating mechanism 27, the upper end of the syrup output mechanism 24 is embedded in the lower end of the positioning ring 26 and is vertical to each other, the liquid medicine storage mechanism 23 is arranged in the syrup output mechanism 24 and is positioned in the same axis, the utility model discloses a bionic nursing device, including shell 22, tear mechanism 25 open and trade, liquid medicine storage mechanism 23 is connected with locating ring 26 through syrup output mechanism 24, shell 22 lower extreme is equipped with manual control mechanism 21, manual control mechanism 21 upper end embedding is installed at liquid medicine storage mechanism 23 lower extreme, bionic nursing mechanism 1 includes anti-reflux piece 11, hose 12, medical rubber head 13, output tube 14, hose 12 surface and medical rubber head 13 internal surface laminating and mutually perpendicular, hose 12 internal surface anti-reflux piece 11 is the integrated structure, output tube 14 upper end embedding is installed at medical rubber head 13 lower extreme and mutually perpendicular, output tube 14 upper end and hose 12 lower extreme laminating and be in same axle center, manual control mechanism 21 includes push rod 211, bearing 212, sliding tooth pole 213, first branch 214, concave gear 215, 216 moving part, short branch 217, The lower end of the connecting rod 219 is embedded in the upper end of the sealing plate 2110 and is perpendicular to the upper end of the connecting rod 219, the upper end of the connecting rod 219 is connected with the short support rod 217 through a pin, the upper left end of the short support rod 217 is fixed at the left end of the movable member 216 through a pin, the left end of the movable member 216 is embedded in the lower end of the sliding-tooth rod 213 and is perpendicular to the lower end of the sliding-tooth rod 213, the right end of the sliding-tooth rod 213 is meshed with the left end of the concave gear 215 and is perpendicular to the left end of the concave gear 215, the lower left end of the first support rod 214 is connected with the lower left end of the concave gear 215 through a pin, and the upper right end of the first support rod 214 is connected with the lower end of the push rod 211 through a pin.
The liquid medicine storage mechanism 23 comprises a liquid medicine barrel 231, a soft rubber sleeve 232, a pushing block 233 and an ejector rod 234, the upper end of the ejector rod 234 and the lower end of the pushing block 233 are of an integrated structure and are perpendicular to each other, the upper end of the pushing block 233 is embedded and mounted at the lower end of the soft rubber sleeve 232, the outer annular surface of the soft rubber sleeve 232 and an inner annular surface spring of the liquid medicine barrel 231 are in the same axis, the lower end of the ejector rod 234 is embedded and mounted at the lower end of the liquid medicine barrel 231 and is perpendicular to each other, the pushing block 233 and the liquid medicine barrel 231 are in the same axis, the syrup output mechanism 24 comprises a syrup barrel 241, a second soft rubber sleeve 242, a second pushing block 243 and a sealing collar 244, the inner annular surface of the syrup barrel 241 and the outer annular surface of the second soft rubber sleeve 242 are attached and are in the same axis, the upper end of the second pushing block 243 is embedded and mounted at the lower end of the second soft rubber sleeve 242, the lower end of the sealing collar 244 is embedded and mounted at the lower end of the syrup barrel 241 and is in the same axis, the second pushing block 243 and the syrup cylinder 241 are positioned at the same axis, the upper surface of the sealing ring 244 is parallel to the lower surface of the second pushing block 243, the replacing mechanism 25 comprises a fixed block 251, a folding rod 252, a key sleeve 253, a rotatable mounting key 254, an ejection spring 255 and an inner cylinder reverse buckling groove 256, the folding rod 252 is connected with the fixed block 251 through a pin in a rotating way, the rotatable mounting key 254 is embedded and mounted on the inner cylinder reverse buckling groove 256, the right end of the ejection spring 255 is embedded and mounted on the inner cylinder reverse buckling groove 256 and is vertical to each other, the left end of the ejection spring 255 is embedded and mounted on the right end of the rotatable mounting key 254 and is vertical to each other, the left end of the rotatable mounting key 254 is embedded and mounted on the right end of the key sleeve 253, the heating mechanism 27 comprises a heating plate 271, a converter 272, a small storage battery 273, a charging port 274 and a power line 275, the lower end of the heating plate 271 is welded with the upper end of the converter 272, the lower end of the converter 272 is electrically connected with the upper end of a small electric storage battery 273, the left end of the small electric storage battery 273 is welded with the right end of a power connection wire 275, the left end of the power connection wire 275 is welded with the right end of a charging port 274, the lower end of the ejection rod 234 is embedded in and mounted on the upper end of the push rod 211 and is positioned at the same axis, the upper end of the push rod 211 is embedded in and mounted on the lower end of the syrup cylinder 241 and is perpendicular to each other, the upper end of the push rod 211 is embedded in and mounted on the lower end of the syrup cylinder 231 and is perpendicular to each other, the right end of the charging port 274 is embedded in and mounted on the left end of the shell 22, the sliding gear rods 213 are embedded in two and are attached to the left and right sides of the inner surface of the rubber sleeve 4, the outer ring surface of the sealing plate 2110 is embedded in and mounted on the lower end of the rubber sleeve 4 and is positioned at the same axis, the connecting rod 219 and the rubber sleeve 4 are embedded in and mounted on the upper end of the mixing cartridge device 2 and are perpendicular to each other, the lower surface of the medical rubber head 13 is attached to the upper end of the mixing cartridge device 2 and is positioned at the same axis, and the bearing 212 is embedded and installed on the rubber sleeve 4.
The return spring 218 is a mechanical part that works by elasticity, the part made of elastic material deforms under the action of external force and recovers to the original shape after the external force is removed, and is also used as a 'spring', generally made of spring steel, the types of springs are complex and various and are divided into different shapes, mainly comprising a coil spring, a volute spring, a plate spring, a special-shaped spring and the like, the heating plate 271 is a sheet-shaped electric heating element capable of generating heat, the heating plate utilizes the good insulating property and the high temperature resistance of mica plates, the mica plates are used as a framework and an insulating layer, a galvanized plate or a stainless steel plate is used as support protection, and the heating device can be made into various sheet-shaped heating devices such as a plate shape, a sheet shape, a cylinder shape, a cone shape, a cylinder shape, a circle shape and the like.
When in use, the key sleeve 253 in the replacing mechanism 25 is pressed down and drives the rotatable mounting key 254 to rotate for a certain angle, so that the ejection spring 255 is compressed, when a jaw at the right end of the rotatable mounting key 254 is separated from a clamping groove, the key sleeve 253 is loosened, the ejection spring 255 pushes the key sleeve 253 outwards through self elastic potential energy, the ejection spring is driven to be separated from the barrel body and simultaneously takes out the folding rod 252 to stretch so that the ejection spring is pulled to be fixed when the ejection spring is pulled to a rated distance, the liquid medicine storage mechanism 23 is installed in the syrup output mechanism 24, the syrup output mechanism 24 is placed in the mixing cartridge device 2 through the replacing mechanism 25 and is reset and fixed through the same movement of the replacing mechanism 25, at the moment, the sealing plate 2110 in the manual control mechanism 21 is lightly pressed, the connecting rod 219 is pushed to move upwards, the lower end of the short supporting rod 217 is connected with the reset spring 218 through a pin and is fixed on the movable piece 216, and the short supporting rod 217 is driven when the connecting rod 219 is pushed, when the displacement of the short supporting rod 217 reaches the maximum value, the short supporting rod 217 is limited by the movable part 216, so that the movable part 216 is driven to move upwards, the movable part 216 is embedded into the lower end of the sliding tooth rod 213 and is transmitted to move by the sliding tooth rod 213, when the push rod 211 moves upwards, the ejector rod 234 in the liquid medicine storage mechanism 23 is pushed, so that liquid medicine is pushed out by the push block 233 connected with the ejector rod 234, when the output port is full of liquid medicine, the medical rubber head 13 in the bionic nursing mechanism 1 is sucked by children, the syrup in the syrup cylinder 241 in the syrup output mechanism 24 flows out before the liquid medicine is sucked, the liquid medicine is mixed with the syrup and then flows out, after the liquid medicine is used, the syrup output mechanism 24 is taken out and cleaned by the replacing mechanism 25, and the liquid medicine storage mechanism 23 can be used again after being replaced.
The invention solves the problem that in the prior art, because paediatric patients are generally younger and have a fear feeling on some medicines, the medicines are refused to take the medicines, so that the treatment difficulty of doctors is caused.
While there have been shown and described what are at present considered the fundamental principles and essential features of the invention and its advantages, it will be apparent to those skilled in the art that the invention is not limited to the details of the foregoing exemplary embodiments, but is capable of other specific forms without departing from the spirit or essential characteristics thereof. The present embodiments are therefore to be considered in all respects as illustrative and not restrictive, the scope of the invention being indicated by the appended claims rather than by the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. Any reference sign in a claim should not be construed as limiting the claim concerned.
Furthermore, it should be understood that although the present description refers to embodiments, not every embodiment may contain only a single embodiment, and such description is for clarity only, and those skilled in the art should integrate the description, and the embodiments may be combined as appropriate to form other embodiments understood by those skilled in the art.

Claims (1)

1. A paediatric drug feeding device with improve take medicine interest, its characterized in that: its structure includes bionical breast-feed mechanism (1), mixes cartridge case device (2), holds groove (3), gluey sleeve (4), its characterized in that:
the bionic lactation mechanism is characterized in that the right end of the bionic lactation mechanism (1) is embedded into and arranged at the left end of a mixing cartridge case device (2) and is arranged at the same axis, the right end of the mixing cartridge case device (2) is embedded into and arranged at the left end of a rubber sleeve (4) and is arranged at the same axis, the rubber sleeve (4) is connected with the bionic lactation mechanism (1) through the mixing cartridge case device (2), the mixing cartridge case device (2) and a hand holding groove (3) are of an integrated structure, the mixing cartridge case device (2) comprises a manual control mechanism (21), a shell (22), a liquid medicine storage mechanism (23), a syrup output mechanism (24), a dismounting mechanism (25), a positioning ring (26) and a heating mechanism (27), the upper end of the positioning ring (26) is provided with a heating mechanism (27) lower end, the upper end of the syrup output mechanism (24) is embedded into and arranged at the lower end of the positioning ring (26) and is mutually vertical, the liquid medicine storage mechanism (23) is arranged inside the syrup output mechanism (24) and is arranged at the same axis, the disassembly and replacement mechanism (25) is embedded in the left end and the right end of the shell (22), the liquid medicine storage mechanism (23) is connected with the positioning ring (26) through the syrup output mechanism (24), the lower end of the shell (22) is provided with the manual control mechanism (21), and the upper end of the manual control mechanism (21) is embedded in the lower end of the liquid medicine storage mechanism (23);
the bionic lactation mechanism (1) comprises an anti-reflux sheet (11), a hose (12), a medical adhesive head (13) and an output pipe (14), wherein the outer surface of the hose (12) is attached to the inner surface of the medical adhesive head (13) and is vertical to the inner surface of the hose (12), the anti-reflux sheet (11) on the inner surface of the hose (12) is of an integrated structure, the upper end of the output pipe (14) is embedded into the lower end of the medical adhesive head (13) and is vertical to the lower end of the medical adhesive head (13), and the upper end of the output pipe (14) is attached to the lower end of the hose (12) and is positioned on the same axis;
the manual control mechanism (21) comprises a push rod (211), a bearing (212), a sliding tooth rod (213), a first support rod (214), a concave gear (215), a movable piece (216), a short support rod (217), a return spring (218), a connecting rod (219) and a sealing plate (2110), the lower ends of the connecting rods (219) are embedded and arranged at the upper end of the sealing plate (2110) and are vertical to each other, the upper end of the connecting rod (219) is connected with the short supporting rod (217) through a pin, the left upper end of the short supporting rod (217) is fixed at the left end of the movable piece (216) through a pin, the left ends of the movable pieces (216) are embedded and arranged at the lower ends of the sliding gear rods (213) and are vertical to each other, the right end of the sliding gear rod (213) is meshed with the left end of the concave gear (215) and is vertical to each other, the left lower end of the first supporting rod (214) is connected with the left lower end of the concave gear (215) through a pin, the right upper end of the first supporting rod (214) is connected with the lower end of the push rod (211) through a pin;
the liquid medicine storage mechanism (23) comprises a liquid medicine barrel (231), a soft rubber sleeve (232), a pushing block (233) and an ejector rod (234), the upper end of the ejector rod (234) and the lower end of the pushing block (233) are of an integrated structure and are perpendicular to each other, the upper end of the pushing block (233) is embedded and installed at the lower end of the soft rubber sleeve (232), the outer ring surface of the soft rubber sleeve (232) and an inner ring surface spring of the liquid medicine barrel (231) are located in the same axis, the lower end of the ejector rod (234) is embedded and installed at the lower end of the liquid medicine barrel (231) and is perpendicular to each other, and the pushing block (233) and the liquid medicine barrel (231) are located in the same axis;
the syrup output mechanism (24) comprises a syrup barrel (241), a second soft rubber sleeve (242), a second pushing block (243) and a sealing lantern ring (244), wherein the inner annular surface of the syrup barrel (241) is attached to the outer annular surface of the second soft rubber sleeve (242) and is positioned at the same axis, the upper end of the second pushing block (243) is embedded into the lower end of the second soft rubber sleeve (242), the lower end of the sealing lantern ring (244) is embedded into the lower end of the syrup barrel (241) and is positioned at the same axis, the second pushing block (243) and the syrup barrel (241) are positioned at the same axis, and the upper surface of the sealing lantern ring (244) is parallel to the lower surface of the second pushing block (243);
the dismounting and replacing mechanism (25) comprises a fixed block (251), a folding rod (252), a key sleeve (253), a rotatable mounting key (254), an ejection spring (255) and an inner cylinder reverse buckling groove (256), wherein the folding rod (252) is rotatably connected with the fixed block (251) through a pin, the rotatable mounting key (254) is embedded and mounted on the inner cylinder reverse buckling groove (256), the right end of the ejection spring (255) is embedded and mounted on the inner cylinder reverse buckling groove (256) and is vertical to each other, the left end of the ejection spring (255) is embedded and mounted at the right end of the rotatable mounting key (254) and is vertical to each other, and the left end of the rotatable mounting key (254) is embedded and mounted at the right end of the key sleeve (253);
the heating mechanism (27) comprises a heating sheet (271), a converter (272), a small electric storage battery (273), a charging port (274) and a power connection wire (275), the lower end of the heating sheet (271) is welded with the upper end of the converter (272), the lower end of the converter (272) is electrically connected with the upper end of the small electric storage battery (273), the left end of the small electric storage battery (273) is welded with the right end of a power connection wire (275), and the left end of the power connection wire (275) is welded with the right end of the charging port (274);
the lower end of the ejection rod (234) is embedded in the upper end of a push rod (211) and is positioned at the same axis, the upper end of the push rod (211) is embedded in the lower end of a syrup barrel (241) and is vertical to the lower end of the syrup barrel, the upper end of the push rod (211) is embedded in the lower end of a liquid medicine barrel (231) and is vertical to the lower end of the liquid medicine barrel, and the right end of the charging port (274) is embedded in the left end of the shell (22);
the medical glue head comprises a glue cylinder device (2), a plurality of sliding gear rods (213) and a bearing (212), wherein the sliding gear rods (213) are two in number and are attached to the left side and the right side of the inner surface of the glue cylinder (4), the outer ring surface of a sealing plate (2110) is embedded in the lower end of the glue cylinder (4) and is located in the same axis, a connecting rod (219) and the glue cylinder (4) are located in the same axis, the lower end of an output tube (14) is embedded in the upper end of the mix cylinder device (2) and is perpendicular to each other, the lower surface of the medical glue head (13) is attached to the upper end of the mix cylinder device (2) and is located in the same axis, and the bearing (212) is embedded in the glue cylinder (4);
when the device is used, the key sleeve in the dismounting mechanism is pressed down and drives the rotatable mounting key to rotate for a certain angle, so that the ejection spring is compressed, when a clamping jaw at the right end of the rotatable mounting key is separated from the clamping groove, the key sleeve is loosened, the ejection spring pushes the key sleeve outwards through self elastic potential energy, the ejection spring drives the ejection spring to separate from the barrel body and simultaneously drives the ejection spring to stretch out the folding rod so as to enable the ejection spring to be fixed when the ejection spring is pulled out to a rated distance, the liquid medicine storage mechanism is installed in the syrup output mechanism, the syrup output mechanism is placed in the mixed medicine barrel device through the dismounting mechanism and is reset and fixed through the same movement of the dismounting mechanism, at the moment, the closing plate in the manual control mechanism is lightly pressed to push the connecting rod to move upwards, the short supporting rod is connected with the reset spring through a pin at the lower end and is fixed on the mixing medicine barrel device, the short supporting rod is driven when the connecting rod is pushed, the short supporting rod is limited by the moving part when the displacement of the short supporting rod reaches the maximum value, thereby drive the moving part upward movement, because the moving part embedding is at smooth tooth pole lower extreme, by smooth tooth pole transmission motion, promote the knockout rod in the liquid medicine storage mechanism when the push rod upward movement, make liquid medicine pushed out by the promotion piece that is connected with the knockout rod, let children suck with the medical head of glue in the bionical feeding mechanism when the liquid medicine is full of the delivery outlet, inhale and allow to make the interior syrup liquid of syrup section of thick bamboo in the syrup output mechanism can flow out before the liquid medicine, the liquid medicine flows after mixing with the syrup afterwards, after the liquid medicine finishes using, take out syrup output mechanism through removing the mechanism and wash, it can reuse to change liquid medicine storage mechanism.
CN201810236976.7A 2018-03-21 2018-03-21 Paediatrics medicine feed device with improve interest of taking medicine Active CN108578239B (en)

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