CN209734549U - continuous paediatrics drenches device - Google Patents

continuous paediatrics drenches device Download PDF

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Publication number
CN209734549U
CN209734549U CN201820957233.4U CN201820957233U CN209734549U CN 209734549 U CN209734549 U CN 209734549U CN 201820957233 U CN201820957233 U CN 201820957233U CN 209734549 U CN209734549 U CN 209734549U
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China
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cavity
medicine
container cavity
holes
continuous
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Expired - Fee Related
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CN201820957233.4U
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Chinese (zh)
Inventor
肖玉
杨丽娟
张昌
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Individual
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Individual
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Abstract

The utility model discloses a continuous paediatrics drenches medicine device, at least including being used for grinding the grinder that large granule medicine ground into powdered medicine and being used for the agitator tank with powdered medicine and liquid intensive mixing, grinder suspends in the upper portion of embedded agitator tank in the medicine bottle of irritating with the detachable mode. The chamber end in inner bag chamber is provided with a plurality of first through-holes that can let the cubic medicine of rolling in advance pass through, and the chamber end in outer bag chamber is provided with a plurality of second through-holes that can let powdered medicine pass through but can not let the cubic medicine of pre-grinding pass through. The diameters of the first through holes on the inner cavity wall plane of the cavity bottom of the inner container cavity are larger than the diameters of the second through holes on the inner cavity wall plane of the cavity bottom of the outer container cavity. The particle medicine is in powder form through pre-grinding and secondary grinding of the grinding device, the powder medicine is fully mixed with liquid in the stirring tank, and the medicine is dissolved and/or suspended in the liquid, so that the mixture of the powder medicine and the liquid is turbid liquid and is convenient for absorption by children.

Description

continuous paediatrics drenches device
Technical Field
The invention relates to the field of medical instruments, in particular to a continuous pediatric medicine filling device.
Background
Pediatrics belongs to the secondary discipline of clinical medicine, and the study subjects are children from fetus to puberty. It is a medical science for researching the growth and development rule of children, improving the physical and mental health level of children and improving the quality of disease prevention and treatment. The task of pediatrics is to continuously explore the pediatric medical theory, reduce morbidity and mortality on the basis of practice, enhance the constitution of children, and improve the health care and disease prevention and treatment levels of children.
The medication route and the method for children are important for ensuring the absorption of the medicine and playing the pharmacological action. Because of the particularity of children, the medicine is difficult to be taken by oral administration and then taken with water, and the mode easily causes suffocation of children, so that the children need to take the medicine by means of some means, such as preparing the medicine into water, emulsion or syrup. The administration mode is discontinuous, and the problems of dregs sinking, excessive water taking, crying and the like of the infant patient exist. Therefore, there is an urgent need for a continuous pediatric drenching device.
For example, chinese utility model publication No. 205626518U discloses a continuous paediatrics is with irritating medicine device. The device includes the spoon head, spoon handle and a plurality of liquid reserve pipe, spoon head top fixed connection spoon handle bottom, the inside fixed liquid groove that is provided with of spoon head, the fixed a plurality of clamping holders that are provided with on the spoon handle, every clamping holder includes clamping holder and lower clamping holder, the liquid reserve pipe is the cylinder, go up the clamping holder and encircle the form with lower clamping holder and be used for cliping the liquid reserve pipe, the liquid reserve pipe bottom mounting is provided with the liquid outlet, the liquid outlet passes through threaded connection switching mouth fixed connection drain pipe, drain pipe fixed connection liquid groove, clamping holder and liquid reserve pipe have certain elasticity. The utility model discloses a continuous paediatrics is with irritating medicine device has realized giving paediatrics children's swift convenient function of medicine feed through setting up two liquid storage pipes and clamp holder, very big reduction nursing staff's working strength, reduced the misery that children took medicine, avoid children to produce the fear of taking medicine.
The utility model discloses a irritate medicine device that provides needs head of a family or nurse in succession switching between two liquid storage pipes, does not realize to a certain extent using medicine in succession, and does not solve the dregs of a decoction end and the too much technical problem of water yet.
For example, chinese patent CN207478102U (2018, 06, 12) discloses a traditional Chinese medicine residue filtering device, which comprises a filter cartridge, wherein a through hole is formed in the top of the filter cartridge, an inner cavity of the through hole is provided with an electric telescopic rod, the tops of two sides of the electric telescopic rod are fixedly connected with a connecting rod, one end of the connecting rod, which is far away from the electric telescopic rod, is fixedly connected with the top of the filter cartridge, the bottom of the electric telescopic rod extends to the inner cavity of the filter cartridge and is fixedly connected with a squeezing plate, and the tops of two sides of the inner cavity of the filter cartridge are fixedly connected with. The utility model discloses a cartridge filter, electric telescopic handle, stripper plate, first filter, second filter, third filter, liquid inlet hopper, play liquid tap, waste pipe and the cooperation of sprue are used, can directly pour traditional chinese medicine juice into the inner chamber of cartridge filter and filter, very big improvement filterable effect, also need not use the gauze in the time of system of enduring moreover, have avoided the waste of resource.
Chinese patent CN 108293379A (application published as 2018, 07, 20) discloses a full-automatic mechanical household small seedling separating device, which comprises a box body, wherein the left side of the top of the box body is communicated with a filling pipe, and the left side of the bottom of the box body is communicated with a discharging pipe; the bottom fixedly connected with electric telescopic handle on box inner chamber right side, electric telescopic handle's left side fixedly connected with cutting piece, the right side fixedly connected with battery at box inner chamber top. That is, the prior art discloses the fixed connection of the electric telescopic rod with the bottoms of the inner cavities of other devices.
Disclosure of Invention
not enough to prior art, the utility model provides a continuous paediatrics drencher. The medicine filling device at least comprises a grinding device for grinding large-particle medicines into powdery medicines and a stirring tank for fully mixing the powdery medicines with liquid, and the grinding device is detachably suspended at the upper part of the stirring tank embedded in the medicine filling bottle body; the grinding device is divided into an outer liner cavity and an inner liner cavity which is suspended in the outer liner cavity and the axis of the cavity is coincident with the axis of the outer liner cavity through the inner liner wall; the inner container cavity and the outer container cavity are communicated with each other through the through holes of the first through holes; the chamber bottom in outer courage chamber is provided with and lets powdered medicine passes through but can not let a plurality of second through-holes that cubic medicine of pre-grinding passed through to make outer courage chamber with the agitator tank warp a plurality of second through-holes are the through-state each other.
According to a preferred embodiment, in the vector direction of the minimum distance from the cavity bottom inner cavity wall plane of the inner container cavity to the outer cavity wall plane of the inner container cavity, the diameters of the first through holes are in a trend of changing from small to large; in the vector direction of the minimum distance from the plane of the inner cavity wall at the bottom of the outer container cavity to the plane of the outer cavity wall of the outer container cavity, the diameters of the plurality of second through holes are in a trend of changing from small to large; the diameters of the first through holes on the inner cavity wall plane at the bottom of the inner container cavity are larger than the diameters of the second through holes on the inner cavity wall plane at the bottom of the outer container cavity.
According to a preferred embodiment, a first cutting device taking a first hollow cylinder as a first cutting body is detachably fixed at the bottom of the inner container cavity; a second cutting device taking a second hollow cylinder with the cavity axis coincident with the first hollow cylinder axis as a second cutting body is detachably fixed at the cavity bottom of the outer container cavity; the inner wall and the outer wall of the first cutting body are respectively provided with a plurality of first blades which do not interfere with each other along the circumferential direction; the inner wall and the outer wall of the second cutting body are respectively provided with a plurality of second blades which do not interfere with each other along the circumferential direction; the distribution density of the first blade is less than the distribution density of the second blade.
According to a preferred embodiment, a first sweeper used for sweeping the pre-ground bulk drug into the first through holes is arranged at the bottom of the inner container cavity; and a second sweeper used for sweeping the powdery medicine into the plurality of second through holes is arranged at the bottom of the outer container cavity.
According to a preferred embodiment, the agitator is detachably fixed to the bottom of the agitator tank.
According to a preferred embodiment, the inner container cavity is provided with a first drug feeding port with a cavity axis coinciding with the axis of the first hollow cylindrical shaft in an expansion joint or threaded manner; the outer liner cavity is provided with a second medicine feeding port in an expansion connection or thread mode; the stirring tank is provided with a stock solution port in an expansion joint or thread mode.
According to a preferred embodiment, the stirring tank is provided with a liquid outlet which is connected with one end of the liquid outlet pipe in an interference fit, integral mode or threaded mode in an expansion or threaded mode.
According to a preferred embodiment, a one-way valve for adjusting the opening degree of the valve body is nested in the middle section of the liquid outlet pipe.
According to a preferred embodiment, the other end of the liquid outlet pipe is provided with a concave medicine groove for inserting the spoon head, and the spoon head is inserted into the concave medicine groove in a rotating connection mode through the rotating movable joint.
According to a preferred embodiment, the bottle wall of the medicine filling bottle body is provided with an anti-slip layer composed of at least one anti-slip block, wherein at least one of the anti-slip blocks is distributed on the bottle wall of the medicine filling bottle body in an array manner, or at least one of the anti-slip blocks is symmetrically distributed on the bottle wall of the medicine filling bottle body by taking the central axis of the medicine filling bottle body as a center.
According to a preferred embodiment, the drug filling device further comprises a power supply unit and a switch button electrically connected with the power supply unit.
The invention provides a continuous paediatrics drenching device, which has the following advantages:
(1) The grinding device is arranged and is used for grinding the blocky medicine grinding device into powdery medicine through pre-grinding and secondary grinding, the powdery medicine can fall into the stirring tank automatically or through a sweeper, the powdery medicine is fully mixed with liquid in the stirring tank, and the medicine is dissolved and/or suspended in the liquid, so that the mixture of the powdery medicine and the liquid is a suspension, the technical problems of bottom sinking of medicine dregs and excessive water are solved, and the powdery medicine is convenient for children to absorb;
(2) Compared with the traditional drug crushing method for pharmacists or nurses, the drug crushing device saves more physical and labor for crushing the drug;
(3) The diameters of the first through hole and the second through hole are in the vector direction of the minimum distance from the inner cavity wall plane to the outer cavity wall plane along the cavity bottom, and the change trend from small to large is adopted, so that the holes are prevented from being blocked in the falling process of the medicine;
(4) The one-way valve with the adjustable opening is arranged, so that the flow speed of the pharmaceutical suspension is controlled when the child cries, and the waste of the medicine and the choking of the child into the medicine are prevented when the child cries.
Drawings
fig. 1 is a schematic view of a continuous pediatric drenching device provided by the present invention;
Fig. 2 is a schematic diagram of a preferred structure of a continuous grinding device for a pediatric drug filling apparatus provided by the present invention; and
fig. 3 is a schematic diagram of a preferred structure of the first cutting device of the continuous pediatric drug filling device provided by the present invention.
List of reference numerals
1: the polishing device 104: second cutting device
2: the stirring tank 105: a second medicine feeding port
3: the medicine filling bottle body 106: a first medicine feeding port
4: an outlet pipe 107: first sweeper
5: one-way valve 108: second sweeper
6: rotating joint 201: stirrer
7: a spoon head 202: stock solution port
101: inner bladder chamber 1031: first blade
102: outer bladder lumen 1032: first cutting body
103: first cutting device
Detailed Description
The following detailed description is made with reference to fig. 1 and 2.
In the description of the present invention, the terms "first", "second", "third" and "third" are used for descriptive purposes only and are not to be construed as indicating or implying relative importance or implying any number of technical features indicated. Thus, features defined as "first," "second," "third," and so forth may explicitly or implicitly include one or more of such features. In the description of the present invention, "a plurality" means two or more unless specifically limited otherwise.
In the description of the present invention, it is to be understood that the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "inner", etc., indicate orientations or positional relationships based on those shown in the drawings, and are used only for convenience of description and for simplicity of description, but do not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and thus, are not to be construed as limiting the present invention.
In the present invention, unless otherwise expressly specified or limited, the terms "mounted," "connected," and "fixed" are to be construed broadly and may, for example, be fixedly connected, detachably connected, or integrally connected; can be mechanically or electrically connected; they may be connected directly or indirectly through intervening media, or they may be interconnected between two elements. The specific meaning of the above terms in the present invention can be understood according to specific situations by those skilled in the art.
In the present invention, the term "in a detachable manner" is one of bonding, key connection, screw connection, pin connection, snap connection, or hinge connection. The specific meaning of the above terms in the present invention can be understood according to specific situations by those skilled in the art.
Example 1
The embodiment provides a continuous paediatrics drenches device, at least including being used for grinding into the grinder 1 of powdered medicine with the large granule medicine and being used for agitator tank 2 with powdered medicine and liquid intensive mixing, grinder 1 suspends in the upper portion of embedded agitator tank 2 who irritates medicine bottle 3 with detachable mode. For example, the grinding device 1 is suspended in the upper part of the stirring tank 2 by means of a snap fit.
The grinding device 1 is divided into an outer liner cavity 102 and an inner liner cavity 101 which is suspended in the outer liner cavity 102 and the axis of the cavity coincides with the axis of the outer liner cavity 102 through the inner liner wall. Wherein, the chamber bottom of inner bag chamber 101 is provided with a plurality of first through-holes that can let the cubic medicine of pre-grinding pass through to make inner bag chamber 101 and outer bag chamber 102 be the through-hole of a plurality of first through-holes and be the link-up state each other. The chamber bottom of outer courage chamber 102 is provided with and can lets powdered medicine pass through but can not let a plurality of second through-holes that the cubic medicine of pre-grinding passed through to make outer courage chamber 102 and agitator tank 2 be the through-going state each other through a plurality of second through-holes.
Preferably, the diameters of the first through holes tend to change from small to large in the vector direction along the minimum distance from the inner cavity wall plane of the cavity bottom of the inner container cavity 101 to the outer cavity wall plane of the inner container cavity 101. In the vector direction of the minimum distance from the plane of the inner cavity wall at the bottom of the outer container cavity 102 to the plane of the outer cavity wall of the outer container cavity 102, the diameters of the second through holes tend to change from small to large. For example, the trend of change may be one of a linear change, a parabolic change, a sine change, or a cosine change. The diameters of the first through holes on the inner cavity wall plane at the bottom of the inner container cavity 101 are larger than the diameters of the second through holes on the inner cavity wall plane at the bottom of the outer container cavity 102. Through setting up inner bag chamber and outer courage chamber, more be favorable to the formation of powdered medicine, make things convenient for the intensive mixing of medicine and liquid.
Preferably, the first cutting device 103 having a first hollow cylinder as the first cutting body 1032 is detachably fixed to the bottom of the inner container cavity 101. For example, the first cutting device 103 having a first hollow cylinder as the first cutting body 1032 is fixed to the bottom of the inner container cavity 101 in a snap-fit manner. A second cutting device 104 which takes a second hollow cylinder with the axis coincident with the axis of the first hollow cylinder as a second cutting body is detachably fixed at the bottom of the outer container cavity 102. For example, a second cutting device 104, which is a second cutting body made of a second hollow cylinder with an axis coinciding with the axis of the first hollow cylinder, is fixed to the bottom of the outer container cavity 102 in a clamping manner. Wherein the inner wall and the outer wall of the first cutting body are provided with a plurality of first blades 1031 which do not interfere with each other in the circumferential direction. The inner wall and the outer wall of the second cutting body are circumferentially provided with a plurality of second blades which do not interfere with each other. The distribution density of the first blade is less than the distribution density of the second blade. As shown in fig. 3, the first cutting device 103 is provided with 4 first blades along the inner and outer walls of the first cutting body, respectively. The second cutting device is of the same construction as the first cutting device 103 except that the second blades are larger than 4, such as 5, 6 or more. For another example, the number of the first cutting devices 103 arranged along the inner wall and the outer wall of the first cutting body may also be 1, 2, 3, 5 or more, and the number of the second blades is greater than that of the first blades.
First cutting body 1032 is connected with the output shaft of first motor or first motor through first connecting rod, drives first cutting body by first motor or first motor and carries out the pre-grinding to the medicine, when the cubic medicine of pre-grinding can be completely through first through-hole, stops the work of first cutting body. The second cutting body is connected with an output shaft of a second motor or a second motor through a second connecting rod, the second cutting body is driven by the second motor or the second motor to carry out secondary grinding on the medicine, and when the secondarily-ground powdery medicine can completely pass through the second through hole, the second cutting body stops working. The first motor or the first motor is arranged at the bottom of the inner container cavity 101 in a stud mode, and the second motor or the second motor is arranged at the bottom of the outer container cavity 101 in a stud mode. Preferably, the rotational speed of the first cutting body 1032 is lower than the rotational speed of the second cutting body.
Preferably, the bottom of the inner container cavity 101 is provided with a first sweeper 107 for sweeping the pre-ground bulk drug into the first through holes. The bottom of the outer container cavity 101 is provided with a second sweeper 108 for sweeping the powdered medicine into the second through holes. The first sweeper 107 and the second sweeper 108 adopt the same structural form and respectively comprise a telescopic shaft and an arc-shaped sweeping handle connected with the telescopic shaft. After rolling, the first electric telescopic push rod drives the first telescopic shaft to push the first arc-shaped sweeping handle, and the pre-ground blocky medicine is pushed into the first through hole. After rolling, the second electric telescopic push rod drives the second telescopic shaft to push the second arc-shaped sweeping handle, and the pre-ground blocky medicine is pushed into the second through hole, so that the accuracy of the dosage is ensured. The first electric telescopic push rod is arranged on the cavity wall of the inner container cavity 101 close to the cavity bottom, and the second electric telescopic push rod is arranged on the cavity wall of the outer container cavity 102 close to the cavity bottom.
Preferably, the bottom of the stirring tank 2 is detachably fixed with a stirrer 201. The stirrer 201 is driven by a third motor or a third motor, and the third motor or the third motor is detachably arranged at the bottom of the stirring tank 2.
Preferably, the inner container cavity 101 is provided with a first drug-administering opening 106 with a cavity axis coinciding with the axis of the first hollow cylindrical shaft in an expansion or threaded manner. The outer bladder cavity 102 is provided with a second drug administration port 105 in an expansion or screw manner. The agitation tank 2 is provided with a stock solution port 202 in an expanded or threaded manner. For example, the inner container cavity 101 is provided with a first administration port 106 whose axis coincides with the axis of the first hollow cylindrical shaft in an expanding manner. The outer bladder cavity 102 is provided with a second drug administration port 105 in an expansion joint manner. The agitation tank 2 is provided with a stock solution port 202 in an expanded manner.
preferably, the stirring tank 2 is provided with a liquid outlet connected with one end of the liquid outlet pipe 4 in an interference fit, integral mode or threaded mode in an expansion connection or threaded mode. For example, the stirring tank 2 is provided with a liquid outlet in an expansion joint manner, and the liquid outlet is connected with one end of the liquid outlet pipe 4 in an interference fit manner.
preferably, the middle section of the liquid outlet pipe 4 is nested with a one-way valve 5 for adjusting the opening degree of the valve body. According to children to the adaptability of medicine, through the flow of adjusting the control medicine turbid liquid of valve body aperture, be favorable to reducing children to the fear of using medicine. The drug suspension may be delivered by an electric pump. The electric pump is connected with the liquid outlet in a stud mode.
Preferably, the other end of the liquid outlet pipe 4 is provided with a concave medicine groove for inserting the spoon head 7, and the spoon head 7 is inserted into the concave medicine groove in a rotating connection mode through the rotating movable joint 6. Under the condition that the child cries and scries when taking medicine, the movable joint 6 rotates to avoid the spoon head 7 from damaging the mouth of the child.
Preferably, the bottle wall of the medicine filling bottle body 3 is provided with an anti-slip layer composed of at least one anti-slip block, wherein the at least one anti-slip block is distributed on the bottle wall of the medicine filling bottle body 3 in an array manner, or the at least one anti-slip block is symmetrically distributed on the bottle wall of the medicine filling bottle body 3 by taking the central axis of the medicine filling bottle body 3 as the center. For example, the anti-slip block is one or more of a rubber sleeve, a silica gel sleeve, an anti-slip spike and an anti-slip spiral thread. For example, 1 anti-slip helical thread is distributed in a circumferential array on the wall of the irrigation bottle body 3. For another example, 1 anti-slip spiral line is symmetrically distributed on the wall of the medicine filling bottle body 3 by taking the central axis of the medicine filling bottle body 3 as the center. The number of the anti-skid blocks can be 2, 3 or more.
Preferably, the pediatric medicine filling device is provided with a power supply unit and a switch button. Specifically, the power supply unit is used for supplying power to a first motor or a first motor for driving the first cutting body, a second motor or a second motor for driving the second cutting body, a third motor or a third motor for the stirrer, a first electric telescopic push rod for the first sweeper, a second electric telescopic push rod for the second sweeper and an electric pump for conveying medicine suspension. The power supply unit can be one or more of a storage battery, an external power socket and a solar battery. The switch button is electrically connected with the power supply unit and is used for controlling the starting, stopping or rotating speed of a first motor or a first motor of the first cutting body, a second motor or a second motor of the second cutting body, a third motor or a third motor of the stirrer, a first electric telescopic push rod of the first sweeper, a second electric telescopic push rod of the second sweeper and an electric pump for conveying medicine turbid liquid.
it should be noted that the above-mentioned embodiments are exemplary, and that those skilled in the art, having benefit of the present disclosure, may devise various arrangements that are within the scope of the present disclosure and that fall within the scope of the invention. It should be understood by those skilled in the art that the present specification and figures are illustrative only and are not limiting upon the claims. The scope of the invention is defined by the claims and their equivalents.

Claims (9)

1. A continuous pediatric drenching device at least comprises a grinding device (1) for grinding large-particle medicines into powdery medicines and a stirring tank (2) for fully mixing the powdery medicines with liquid, wherein the grinding device (1) is detachably suspended at the upper part of the stirring tank (2) embedded in a drenching bottle body (3); it is characterized in that the preparation method is characterized in that,
The grinding device (1) is divided into an outer container cavity (102) and an inner container cavity (101) which is suspended in the outer container cavity (102) and the axis of the cavity is coincident with the axis of the outer container cavity (102) through the inner container wall;
The bottom of the inner container cavity (101) is provided with a plurality of first through holes through which pre-rolled massive medicines can pass, so that the inner container cavity (101) and the outer container cavity (102) are communicated with each other through the through holes of the first through holes;
The bottom of the outer container cavity (102) is provided with a plurality of second through holes which can allow the powdery medicine to pass through but cannot allow the pre-ground blocky medicine to pass through, so that the outer container cavity (102) and the stirring tank (2) are communicated with each other through the second through holes.
2. The continuous pediatric drug infusion device according to claim 1, wherein the diameters of the first through holes are changed from small to large in a vector direction along a minimum distance from a cavity bottom inner cavity wall plane of the inner container cavity (101) to an outer cavity wall plane of the inner container cavity (101);
In the vector direction of the minimum distance from the plane of the inner cavity wall at the bottom of the outer container cavity (102) to the plane of the outer cavity wall of the outer container cavity (102), the diameters of the second through holes are in a trend of changing from small to large;
The diameters of the first through holes on the inner cavity wall plane at the cavity bottom of the inner container cavity (101) are larger than the diameters of the second through holes on the inner cavity wall plane at the cavity bottom of the outer container cavity (102).
3. A continuous pediatric drenching device as defined in claim 2, wherein the bottom of the inner container cavity (101) is detachably fixed with a first cutting device (103) having a first hollow cylinder as the first cutting body (1032); a second cutting device (104) which takes a second hollow cylinder with the cavity axis coincident with the first hollow cylinder axis as a second cutting body is detachably fixed at the bottom of the outer container cavity (102); wherein,
The inner wall and the outer wall of the first cutting body are respectively provided with a plurality of first blades (1031) which do not interfere with each other along the circumferential direction; the inner wall and the outer wall of the second cutting body are respectively provided with a plurality of second blades which do not interfere with each other along the circumferential direction;
the distribution density of the first blade is less than the distribution density of the second blade.
4. The continuous pediatric drenching device according to claim 3, wherein the bottom of the inner container cavity (101) is provided with a first sweeper (107) for sweeping the pre-ground block-shaped medicament into the first through holes; and a second sweeper (108) for sweeping the powdery medicine into the plurality of second through holes is arranged at the bottom of the outer container cavity (102).
5. a continuous pediatric drenching device as defined in claim 4, wherein the agitator (201) is removably fixed to the bottom of the agitator tank (2).
6. The continuous pediatric drenching device according to claim 5, wherein the inner container cavity (101) is provided with a first dosing port (106) having a cavity axis coinciding with the first hollow cylinder axis in an expanded or threaded manner;
the outer liner cavity (102) is provided with a second medicine feeding port (105) in an expansion connection or thread mode; the stirring tank (2) is provided with a stock solution port (202) in an expansion connection or thread mode.
7. A continuous pediatric drenching device as defined in claim 6, wherein the agitator tank (2) is provided with a liquid outlet in an expanded or threaded manner, which is connected with one end of the liquid outlet tube (4) in an interference fit, integral or threaded manner.
8. The continuous pediatric drug filling apparatus according to claim 7, wherein a check valve (5) for adjusting the opening degree of the valve body is nested in the middle section of the liquid outlet pipe (4).
9. continuous pediatric drenching device according to claim 8, characterized in that the other end of the outlet duct (4) is provided with a concave housing for inserting a spoon head (7) and in that the spoon head (7) is inserted in a rotationally coupled manner into the concave housing by means of a rotary joint (6).
CN201820957233.4U 2018-06-21 2018-06-21 continuous paediatrics drenches device Expired - Fee Related CN209734549U (en)

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CN201820957233.4U CN209734549U (en) 2018-06-21 2018-06-21 continuous paediatrics drenches device

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Application Number Priority Date Filing Date Title
CN201820957233.4U CN209734549U (en) 2018-06-21 2018-06-21 continuous paediatrics drenches device

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CN209734549U true CN209734549U (en) 2019-12-06

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115517968A (en) * 2022-10-13 2022-12-27 中国人民解放军西部战区总医院 Integrated form medicine feed ware

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115517968A (en) * 2022-10-13 2022-12-27 中国人民解放军西部战区总医院 Integrated form medicine feed ware

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Granted publication date: 20191206

Termination date: 20210621