Pneumatic atomization device capable of preventing oxygen tube from being folded and storing medicine
Technical Field
The utility model belongs to the technical field of medical instrument, concretely relates to is a pneumatic atomizing device that oxygen pipe is discounted and can deposit medicine.
Background
The pneumatic atomizing inhaler is powered by a compressed air source, and sprays and atomizes liquid medicine into inhalable particles, so that various liquid medicine atomization treatments are carried out on respiratory tracts, and the aim of painless, rapid and effective treatment is fulfilled; the atomization inhalation therapy is that an atomization inhaler is adopted to atomize liquid medicine into inhalable particles, and the medicine enters respiratory tract and lung for deposition in a respiratory inhalation mode, so that the aim of painless, rapid and effective therapy is fulfilled.
Most of the currently clinically used atomizers are pneumatic atomizers, and a medicine storage tank is required to be perpendicular to a low-end gas inlet when the atomizer is used, so that the atomizer has requirements on the body position of a patient, the sitting position is optimal, and the lateral lying position is inferior, but when the body position is adopted, an oxygen tube is positioned below the medicine storage tank, so the oxygen tube is easily broken; in addition, with the pace of life becoming faster and faster, more and more families choose to purchase household medical atomizers, so that the waiting time in hospitals is saved, and part of patients need to add medicines during atomization, and patients can easily place the medicines at any place or carefully place the medicines at a certain place after taking the medicines back home in hospitals, and forget the place where the medicines are placed after a long time, so that if the atomizer is provided with a space for storing the medicines, the daily use of the users can be greatly facilitated, and the time and the labor are saved; therefore, a pneumatic atomization device which can effectively prevent the oxygen tube from being broken along with the change of the body position of a patient in the use process and is provided with a medicine storage space is needed.
The utility model discloses the oxygen hose to pneumatic atomizing device among the prior art is located the below of medicine storage tank, leads to the oxygen hose to take place the problem of discounting easily, also can't store the problem of reserve medicine in order to solve current pneumatic atomizing device simultaneously, provides a prevent that the oxygen hose is discounted and can deposit the pneumatic atomizing device of medicine.
SUMMERY OF THE UTILITY MODEL
In order to overcome the below of pneumatic atomizing device among the prior art's oxygen hose setting at medicine storage tank for the problem of the oxygen hose is rolled over easily because of the change of patient's position takes place, also need in time store the demand of reserve medicine in order to satisfy the user in the use simultaneously, the utility model provides a prevent that oxygen hose is rolled over and can deposit the pneumatic atomizing device of medicine.
A pneumatic atomization device capable of preventing an oxygen tube from being broken and storing medicines comprises an atomization main body and a face mask movably connected with the atomization main body; the atomizing device is characterized in that a cover matched with the atomizing main body is arranged above the atomizing main body, and the cover is in threaded connection with the outer side wall of the atomizing main body; a containing structure capable of storing standby medicines is arranged below the atomizing main body, and the containing structure is in threaded connection with the outer side wall of the atomizing main body; the atomizing main body is internally provided with an atomizing component which is used for atomizing the mixed liquid medicine into inhalable particles which can enter respiratory tracts and lungs, and the atomizing component is connected with the inner side wall of the atomizing main body in a combined manner through a connecting structure. When in use, the liquid medicine is atomized into inhalable particles through the atomizing assembly and enters the respiratory tract and the lung for deposition in a respiratory inhalation mode, thereby achieving the target treatment effect; the standby medicine is placed in the containing structure to solve the problem that the standby medicine is frequently lost in daily life.
Furthermore, a first air outlet pipe is fixedly arranged on one side of the outer side wall of the atomization main body, an air inlet pipe is fixedly arranged on the face mask, and the inner diameter of the air inlet pipe is larger than the outer diameter of one end, far away from the atomization main body, of the first air outlet pipe; through this kind of mode with the intake pipe insert the one end that the atomizing main part was kept away from to first outlet duct, realize the swing joint of atomizing main part and face guard.
Further, the atomization assembly comprises a medicine storage tank for placing mixed medicine liquid, a medicine liquid injection pipe, a nozzle and a baffle plate, wherein the medicine liquid injection pipe is positioned above the medicine storage tank and communicated with the interior of the medicine storage tank; a second air outlet pipe which is consistent with the first air outlet pipe in position and size is arranged on the side wall of the medicine storage tank; an oxygen pipe connecting pipe for connecting an oxygen pipe is fixedly arranged at the lower end of the nozzle, and extends out of the symmetrical surface of the atomizing main body, and a first air outlet pipe is arranged on the oxygen pipe connecting pipe; the arrangement ensures that the mixed liquid medicine is atomized into inhalable particles, and simultaneously effectively avoids the situation that the oxygen tube is broken due to posture change of a patient in the using process.
Further, a vertical partition plate for dividing the interior of the medicine storage tank into two parts is arranged in the medicine storage tank, and the top end of the vertical partition plate is provided with a circulation hole for circulating atomized inhalable particles; the inside of the medicine storage tank comprises a particle buffer space positioned on the left side of the vertical partition plate, an atomization space positioned on the right side of the vertical partition plate and used for containing mixed medicine liquid, a nozzle and a baffle plate, and a medicine liquid injection pipe is arranged at the top end of the atomization space; due to the arrangement, when the patient takes the lateral position posture for atomization, the liquid medicine in the atomization space is not easy to flow into the mask, so that potential safety hazards such as blockage of the respiratory tract of the patient occur.
Furthermore, the nozzle is arranged into a conical structure which extends upwards in an axial conical manner, the nozzle comprises an inner layer structure and an outer layer structure, and the bottom end of the inner layer structure is communicated and connected with the oxygen pipe connecting pipe; and 2-4 connecting plates, preferably 3 connecting plates, which are connected with the outer layer structure are arranged around the outer edge of the top end of the inner layer structure. The arrangement accords with the atomization principle of a pneumatic atomizer in the prior art, and effectively ensures the atomization effect of the liquid medicine.
Further, a transverse partition plate is arranged below the bottom end of the outer-layer structure in the atomization space, the bottom edge of the outer-layer structure is not in contact with the top edge of the transverse partition plate, and the transverse partition plate is integrally connected with the outer edge of the inner-layer structure, the inner side wall of the atomization space and the edge of the vertical partition plate; the arrangement effectively ensures that the mixed liquid medicine is smoothly sucked upwards and then impacts the baffle plate to become inhalable particles.
Further, a protective cover capable of sealing the liquid medicine injection pipe is arranged at the top end of the liquid medicine injection pipe, and the protective cover is in threaded connection with the outer side wall of the top end of the liquid medicine injection pipe; the arrangement not only facilitates the filling of the liquid medicine into the medicine storage tank at any time, but also avoids the liquid medicine in the medicine storage tank from being scattered in the using process.
Further, the connecting structure comprises a first thread structure arranged at the upper end of the outer side wall of the medicine storage tank and a second thread structure which is arranged at the upper end of the inner side wall of the atomization main body and is matched with the first thread structure for use; through twisting the medicine storage tank for first helicitic texture and the cooperation of second helicitic texture use, thereby guarantee the built-up connection of medicine storage tank and atomizing main part.
Furthermore, an extension hole for the liquid medicine injection pipe to pass through is arranged at the corresponding position of the cover; during the use, storage tank and atomizing main part threaded connection back are connected lid and atomizing main part again, and the liquid medicine injection pipe stretches out the lid through stretching out the hole, make things convenient for the operator to pass through the liquid medicine injection pipe to the inside liquid medicine that injects of storage tank.
Furthermore, 4-6 air vents are arranged on the face mask, and the diameter of each air vent is 2-3 mm; this kind sets up to provide taking a breath for the patient, has improved patient's comfort level, and effectively alleviates the uncomfortable sense that partial patient wore the face guard.
Furthermore, the face guard is made of PVC materials.
Further, set up the fixed band on the face guard, the side at the face guard is fixed through adjusting the knot to the fixed band for the patient can fix the face guard in mouth and nose department through the fixed band, reduces to hold the sour sense that the face guard caused the hand always.
Compared with the prior art, the technical proposal of the utility model arranges the oxygen tube connecting pipe connected with the oxygen tube on the opposite surface connected with the atomizing mask by specifically arranging the atomizing component, thereby effectively avoiding the phenomenon that the oxygen tube is easy to be folded in the using process; in addition, the problem that a user forgets to place the standby medicine often and even has no place to store the standby medicine in daily life is effectively solved by arranging the detachable accommodating structure at the lower end of the atomizing main body.
Drawings
Fig. 1 is a schematic view of the overall structure of the present invention;
FIG. 2 is a schematic view of the overall structure of the cap, the atomizing body and the receiving structure of the present invention when they are separated from each other;
FIG. 3 is a perspective view of the front view of the cover and the atomizing body, the receiving structure and the atomizing body of the present invention;
fig. 4 is a schematic view of the overall structure of the atomizing assembly of the present invention;
FIG. 5 is a sectional view of a front view of the cover and the atomizing body, the receiving structure and the atomizing body of the present invention;
FIG. 6 is a schematic view of the overall structure of the nozzle of the present invention;
in the figure, 1, an atomizing body; 11. a cover; 111. an outlet hole; 12. a containment structure; 13. a first air outlet pipe; 2. a face mask; 21. an air inlet pipe; 22. a ventilation hole; 23. fixing belts; 31. a medicine storage tank; 32. a liquid medicine injection tube; 321. a protective cover; 33. a nozzle; 331. an inner layer structure; 332. an outer layer structure; 333. a connecting plate; 34. a baffle plate; 35. an oxygen pipe connecting pipe; 36. a second air outlet pipe; 37. a vertical partition plate; 371. a flow-through hole; 38. a particle buffering space; 39. an atomization space; 310. a diaphragm plate.
Detailed Description
The technical solutions in the embodiments of the present invention will be described in detail below with reference to specific embodiments, and it should be understood that the described embodiments are only a part of the embodiments of the present invention, rather than all embodiments, and those skilled in the art can easily understand other advantages and effects of the present invention from the disclosure in the specification. The utility model discloses can also implement or use through other different concrete implementation manners, under the condition of conflict-free, the characteristics in following embodiment and the embodiment can make up each other, based on the embodiment in the utility model, all other embodiments that the ordinary skilled in the art obtained under the prerequisite of not making creative work all belong to the scope of protection of the utility model.
Example 1A pneumatic nebulizer device for preventing a trachea from being broken and storing a medicine
A pneumatic atomization device capable of preventing oxygen tube from being broken and storing medicines comprises an atomization main body 1 and a face mask 2 movably connected with the atomization main body 1; the atomizing device is characterized in that a cover 11 matched with the atomizing main body 1 is arranged above the atomizing main body 1, and the cover 11 is in threaded connection with the outer side wall of the atomizing main body 1; a containing structure 12 capable of storing standby medicines is arranged below the atomizing main body 1, and the containing structure 12 is in threaded connection with the outer side wall of the atomizing main body 1; the atomizing main body 1 is internally provided with an atomizing component which is used for atomizing the mixed liquid medicine into inhalable particles which can enter respiratory tracts and lungs, and the atomizing component is connected with the inner side wall of the atomizing main body 1 in a combined manner through a connecting structure. When in use, the liquid medicine is atomized into inhalable particles through the atomizing assembly and enters the respiratory tract and the lung for deposition in a respiratory inhalation mode, thereby achieving the target treatment effect; the medication is placed in the containment structure 12 to address the problem of frequent loss of medication in daily life.
A first air outlet pipe 13 is fixedly arranged on one side of the outer side wall of the atomization main body 1, an air inlet pipe 21 is fixedly arranged on the face mask 2, and the inner diameter of the air inlet pipe 21 is larger than the outer diameter of one end, far away from the atomization main body 1, of the first air outlet pipe 13; through this kind of mode insert the one end that first outlet duct 13 is kept away from atomizing main part 1 with intake pipe 21, realize atomizing main part 1 and face guard 2's swing joint.
The atomization assembly comprises a medicine storage tank 31 for placing mixed medicine liquid, a medicine liquid injection pipe 32 which is positioned above the medicine storage tank 31 and communicated with the interior of the medicine storage tank 31, a nozzle 33 which is positioned in the medicine storage tank 31, and a baffle 34 which is positioned in the medicine storage tank 31 and aligned with the nozzle 33; a second air outlet pipe 36 which is consistent with the first air outlet pipe 13 in direction and size is arranged on the side wall of the medicine storage tank 31; an oxygen pipe connecting pipe 35 for connecting an oxygen pipe is fixedly arranged at the lower end of the nozzle 33, and the oxygen pipe connecting pipe 35 extends out of the symmetrical surface of the atomizing main body 1, which is provided with the first air outlet pipe 13; the arrangement ensures that the mixed liquid medicine is atomized into inhalable particles, and simultaneously effectively avoids the situation that the oxygen tube is broken due to posture change of a patient in the using process.
A vertical clapboard 37 which divides the medicine storage tank 31 into two parts is arranged in the medicine storage tank 31, and the top end of the vertical clapboard 37 is provided with a circulation hole 371 for the circulation of atomized inhalable particles; the medicine storage tank 31 comprises a particle buffer space 38 positioned on the left side of the vertical partition 37, an atomization space 39 positioned on the right side of the vertical partition 37 and used for containing mixed medicine liquid, a nozzle 33 and a baffle 34, and a medicine liquid injection pipe 32 is arranged at the top end of the atomization space 39; due to the arrangement, when the patient takes the lateral position posture for atomization, the liquid medicine in the atomization space 39 is not easy to flow into the face mask 2, so that potential safety hazards such as blockage of the respiratory tract of the patient occur.
The nozzle 33 is arranged in a conical structure extending upwards in an axial conical manner, the nozzle 33 comprises an inner layer structure 331 and an outer layer structure 332, and the bottom end of the inner layer structure 331 is communicated and connected with the oxygen pipe connecting pipe 35; around the outer edge of the top end of the inner layer 331 there are provided connecting plates 333 to which the outer layer 332 is connected, preferably 3 connecting plates 333. The arrangement accords with the atomization principle of a pneumatic atomizer in the prior art, and effectively ensures the atomization effect of the liquid medicine.
A transverse partition plate 310 is arranged below the bottom end of the outer-layer structure 332 in the atomization space 39, the bottom edge of the outer-layer structure 332 is not in contact with the top edge of the transverse partition plate 310, and the transverse partition plate 310 is integrally connected with the outer edge of the inner-layer structure 331, the inner side wall of the atomization space 39 and the edge of the vertical partition plate 37; the arrangement effectively ensures that the mixed liquid medicine is smoothly sucked upwards and then impacts the baffle 34 to become inhalable particles.
A protective cover 321 capable of sealing the liquid medicine injection pipe 32 is arranged at the top end of the liquid medicine injection pipe 32, and the protective cover 321 is in threaded connection with the outer side wall of the top end of the liquid medicine injection pipe 32; the arrangement not only facilitates the filling of the liquid medicine into the medicine storage tank 31 at any time, but also avoids the liquid medicine in the medicine storage tank 31 from being scattered in the using process.
The connecting structure comprises a first thread structure arranged at the upper end of the outer side wall of the medicine storage tank 31 and a second thread structure which is arranged at the upper end of the inner side wall of the atomizing main body 1 and is matched with the first thread structure for use; by screwing the medicine storage tank 31, the first thread structure and the second thread structure are matched for use, so that the combined connection of the medicine storage tank 31 and the atomization main body 1 is ensured.
An outlet hole 111 through which the chemical solution inlet pipe 32 is inserted is provided at a position corresponding to the cover 11; during the use, medicine storage tank 31 and atomizing main part 1 threaded connection back are connected lid 11 and atomizing main part 1 again, and liquid medicine injection pipe 32 stretches out lid 11 through stretching out hole 111, make things convenient for the operator to pass through liquid medicine injection pipe 32 to the inside liquid medicine that injects of medicine storage tank 31.
Embodiment 2 a pneumatic atomization device for preventing the rupture of an oxygen tube and storing drugs
A pneumatic atomization device capable of preventing oxygen tube from being broken and storing medicines comprises an atomization main body 1 and a face mask 2 movably connected with the atomization main body 1; the atomizing device is characterized in that a cover 11 matched with the atomizing main body 1 is arranged above the atomizing main body 1, and the cover 11 is in threaded connection with the outer side wall of the atomizing main body 1; a containing structure 12 capable of storing standby medicines is arranged below the atomizing main body 1, and the containing structure 12 is in threaded connection with the outer side wall of the atomizing main body 1; the atomizing main body 1 is internally provided with an atomizing component which is used for atomizing the mixed liquid medicine into inhalable particles which can enter respiratory tracts and lungs, and the atomizing component is connected with the inner side wall of the atomizing main body 1 in a combined manner through a connecting structure. When in use, the liquid medicine is atomized into inhalable particles through the atomizing assembly and enters the respiratory tract and the lung for deposition in a respiratory inhalation mode, thereby achieving the target treatment effect; the medication is placed in the containment structure 12 to address the problem of frequent loss of medication in daily life.
A first air outlet pipe 13 is fixedly arranged on one side of the outer side wall of the atomization main body 1, an air inlet pipe 21 is fixedly arranged on the face mask 2, and the inner diameter of the air inlet pipe 21 is larger than the outer diameter of one end, far away from the atomization main body 1, of the first air outlet pipe 13; through this kind of mode insert the one end that first outlet duct 13 is kept away from atomizing main part 1 with intake pipe 21, realize atomizing main part 1 and face guard 2's swing joint.
The atomization assembly comprises a medicine storage tank 31 for placing mixed medicine liquid, a medicine liquid injection pipe 32 which is positioned above the medicine storage tank 31 and communicated with the interior of the medicine storage tank 31, a nozzle 33 which is positioned in the medicine storage tank 31, and a baffle 34 which is positioned in the medicine storage tank 31 and aligned with the nozzle 33; a second air outlet pipe 36 which is consistent with the first air outlet pipe 13 in direction and size is arranged on the side wall of the medicine storage tank 31; an oxygen pipe connecting pipe 35 for connecting an oxygen pipe is fixedly arranged at the lower end of the nozzle 33, and the oxygen pipe connecting pipe 35 extends out of the symmetrical surface of the atomizing main body 1, which is provided with the first air outlet pipe 13; the arrangement ensures that the mixed liquid medicine is atomized into inhalable particles, and simultaneously effectively avoids the situation that the oxygen tube is broken due to posture change of a patient in the using process.
A vertical clapboard 37 which divides the medicine storage tank 31 into two parts is arranged in the medicine storage tank 31, and the top end of the vertical clapboard 37 is provided with a circulation hole 371 for the circulation of atomized inhalable particles; the medicine storage tank 31 comprises a particle buffer space 38 positioned on the left side of the vertical partition 37, an atomization space 39 positioned on the right side of the vertical partition 37 and used for containing mixed medicine liquid, a nozzle 33 and a baffle 34, and a medicine liquid injection pipe 32 is arranged at the top end of the atomization space 39; due to the arrangement, when the patient takes the lateral position posture for atomization, the liquid medicine in the atomization space 39 is not easy to flow into the face mask 2, so that potential safety hazards such as blockage of the respiratory tract of the patient occur.
The nozzle 33 is arranged in a conical structure extending upwards in an axial conical manner, the nozzle 33 comprises an inner layer structure 331 and an outer layer structure 332, and the bottom end of the inner layer structure 331 is communicated and connected with the oxygen pipe connecting pipe 35; around the outer edge of the top end of the inner layer 331 there are provided connecting plates 333 to which the outer layer 332 is connected, preferably 3 connecting plates 333. The arrangement accords with the atomization principle of a pneumatic atomizer in the prior art, and effectively ensures the atomization effect of the liquid medicine.
A transverse partition plate 310 is arranged below the bottom end of the outer-layer structure 332 in the atomization space 39, the bottom edge of the outer-layer structure 332 is not in contact with the top edge of the transverse partition plate 310, and the transverse partition plate 310 is integrally connected with the outer edge of the inner-layer structure 331, the inner side wall of the atomization space 39 and the edge of the vertical partition plate 37; the arrangement effectively ensures that the mixed liquid medicine is smoothly sucked upwards and then impacts the baffle 34 to become inhalable particles.
A protective cover 321 capable of sealing the liquid medicine injection pipe 32 is arranged at the top end of the liquid medicine injection pipe 32, and the protective cover 321 is in threaded connection with the outer side wall of the top end of the liquid medicine injection pipe 32; the arrangement not only facilitates the filling of the liquid medicine into the medicine storage tank 31 at any time, but also avoids the liquid medicine in the medicine storage tank 31 from being scattered in the using process.
The connecting structure comprises a first thread structure arranged at the upper end of the outer side wall of the medicine storage tank 31 and a second thread structure which is arranged at the upper end of the inner side wall of the atomizing main body 1 and is matched with the first thread structure for use; by screwing the medicine storage tank 31, the first thread structure and the second thread structure are matched for use, so that the combined connection of the medicine storage tank 31 and the atomization main body 1 is ensured.
An outlet hole 111 through which the chemical solution inlet pipe 32 is inserted is provided at a position corresponding to the cover 11; during the use, medicine storage tank 31 and atomizing main part 1 threaded connection back are connected lid 11 and atomizing main part 1 again, and liquid medicine injection pipe 32 stretches out lid 11 through stretching out hole 111, make things convenient for the operator to pass through liquid medicine injection pipe 32 to the inside liquid medicine that injects of medicine storage tank 31.
The face mask 2 is provided with 4-6 ventilating holes 22, and the diameter of each ventilating hole 22 is 2-3 mm; this kind of setting provides taking a breath for the patient, has improved patient's comfort level, and effectively alleviates some patients and wears the uncomfortable sense of face guard 2.
The face mask 2 is made of PVC materials.
Set up fixed band 23 on the face guard 2, fixed band 23 is fixed at the side of face guard 2 through adjusting the knot for the patient can fix face guard 2 in mouth and nose department through fixed band 23, reduces to hold face guard 2 always and causes the ache of hand and feel.
The above description of the embodiments is only intended to illustrate the present invention. It should be noted that, for those skilled in the art, without departing from the principle of the present invention, several modifications can be made to the present invention, and these modifications will fall within the protection scope of the claims of the present invention.