CN109925578B - Intracardiac branch of academic or vocational study apparatus of oxygen supply convenient to use - Google Patents
Intracardiac branch of academic or vocational study apparatus of oxygen supply convenient to use Download PDFInfo
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- CN109925578B CN109925578B CN201910258891.3A CN201910258891A CN109925578B CN 109925578 B CN109925578 B CN 109925578B CN 201910258891 A CN201910258891 A CN 201910258891A CN 109925578 B CN109925578 B CN 109925578B
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Abstract
The invention discloses a convenient-to-use oxygen supply device for cardiology department, which comprises an oxygen supply device main body, a protective door, a control panel, a lithium battery, a fan heater, a premixing box, an air supply pipe and a breathing mask, wherein the protective door is arranged on the front side of the oxygen supply device main body, the control panel is arranged on the upper portion of the oxygen supply device main body, the lithium battery is installed inside the oxygen supply device main body, the fan heater is arranged above the lithium battery, an oxygen bottle is arranged on the right side of the fan heater, a second support is welded to the upper end of the first support, a limiting groove is formed in the upper portion of the second support, the lower end of a sliding sleeve is connected with the premixing box through a bolt, the lower end of the premixing box is provided with an air supply pipe connector, the air supply pipe connector is in threaded connection with the air supply pipe, and the lower end of the air supply pipe is provided with the breathing mask. This intracardiac branch of academic or vocational study apparatus of oxygen supply convenient to use, when using, the regulation of the angle of facilitating the use, and can avoid the winding of connecting pipe, improve the convenience of using.
Description
Technical Field
The invention relates to the technical field of cardiology, in particular to a convenient oxygen supply device for cardiology.
Background
With the rapid development of national economy, the living standard of people is improved, the eating quality of people is greatly improved, the intake of various meat foods is also increased, however, part of people have no restriction on diet, and begin to drink overeat too much food to increase redundant burden to the body, and in addition, the living rhythm is accelerated, various diseases of people are increased continuously, and patients in cardiology department are increased year by year. The intracardiac branch of academic or vocational study patient carries out its respiratory function after the operation and can descend to influence patient self oxygen suppliment, and then influenced patient health treatment, consequently, after the intracardiac branch of academic or vocational study patient's operation, often need use the apparatus of oxygen suppliment to breathe the oxygen suppliment training to the patient, guarantee the normal rehabilitation of patient with this.
But current intracardiac branch of academic or vocational study apparatus of oxygen supply when using, the last support of apparatus of oxygen supply often adopts welding or bolt fastening's mode, and the support can not be adjusted, and inconvenient medical personnel adjust according to patient's particular case, and lack the protection to the last connecting pipe of apparatus of oxygen supply, when medical personnel removed apparatus of oxygen supply, easily caused the collision damage of connecting and the winding between the connecting pipe, be unfavorable for medical personnel's daily use.
Disclosure of Invention
The invention aims to provide a convenient-to-use oxygen supply device for department of cardiology, and the convenient-to-use oxygen supply device for department of cardiology solves the problems that when the oxygen supply device for department of cardiology in the prior art is used, a support on the oxygen supply device is often welded or fixed by bolts, the support cannot be adjusted, medical staff cannot conveniently adjust according to specific conditions of patients, a connecting pipe on the oxygen supply device is not protected, when the medical staff moves the oxygen supply device, collision damage to the connection and winding between the connecting pipes are easily caused, and daily use and breeding of the medical staff are not facilitated.
In order to achieve the purpose, the invention provides the following technical scheme: an easy-to-use oxygen supply device for cardiology department comprises an oxygen supply device main body, a protective door, a control panel, a lithium battery, a fan heater, a premixing box, an air supply pipe and a breathing mask, wherein the protective door is arranged on the front side of the oxygen supply device main body, the control panel is arranged on the upper portion of the oxygen supply device main body, the lithium battery is arranged inside the oxygen supply device main body, the fan heater is arranged above the lithium battery, an oxygen bottle is arranged on the right side of the fan heater, connecting pipes are connected with the upper ends of the fan heater and the oxygen bottle respectively and are arranged on a first support through damping rotating shafts, the connecting pipes are connected with the premixing box through fixing blocks simultaneously, a second support is welded on the upper end of the first support, a limiting groove is formed in the upper portion of the second support, a sliding sleeve is sleeved on the outer side of the second support, a limiting block is welded on the right side of the sliding sleeve, and the limiting block is connected with the limiting groove on the second support through a bolt, t type groove has been seted up to the lower extreme of second support, and the inside in T type groove is connected with the top of T type slider to the lower extreme of T type slider is connected with the fixed block, the lower extreme of sliding sleeve is connected with premixing case through the bolt, and premixing case's lower extreme is provided with air supply pipe joint to air supply pipe joint and air supply pipe threaded connection, the lower extreme of air supply pipe is provided with respirator simultaneously.
Preferably, the first bracket includes a first placing groove, a chuck, and a second placing groove, and the first placing groove is located inside the front side of the first bracket, and the chuck is located inside the first placing groove, while the second placing groove is located above the first placing groove.
Preferably, the chucks are arranged in the first placing groove at equal intervals, the chucks are connected with the first placing groove in a screw mode, and the first placing groove is communicated with the second placing groove.
Preferably, the mounting structure of the second support is horizontally mounted, the second support and the first support are vertically mounted, and the first support and the second support both use the vertical center line of the damping rotating shaft as a rotating center.
Preferably, the shape structure of the connecting sleeve is a rectangular structure, and the mounting structure of the connecting sleeve is a sliding structure.
Preferably, the limiting block is located right above the limiting groove, and the height of the lower end face of the limiting block is higher than that of the upper end face of the second support.
Preferably, the height of the upper end face of the premixing box is lower than that of the lower end of the fixing block, and the fixing block is connected with the T-shaped sliding block in a welding mode.
Preferably, the limiting groove and the T-shaped groove are respectively arranged on the upper end face and the lower end face of the second support, and the central lines of the second support, the limiting groove and the T-shaped groove are on the same vertical straight line.
Preferably, the fixed block includes fixed cover, adjust knob and fixed head, and fixed cover is located the fixed block and is close to one side of first support, and adjust knob sets up the upper portion at fixed cover, and adjust knob's lower extreme is connected with the fixed head bearing.
Preferably, the number of the fixing sleeves is twice of the number of the fixing blocks, the fixing sleeves are connected with the fixing blocks in a welding mode, and the fixing heads are of arc-shaped structures in shape and structure.
Compared with the prior art, the invention has the beneficial effects that: the convenient-to-use oxygen supply device for the cardiology department is convenient to adjust the use angle when in use, can avoid the winding of the connecting pipe and improves the use convenience;
1. the first placing groove and the second placing groove are arranged in the first support, and the clamping heads are fixed in the first placing groove and the second placing groove through screws, so that the effect of containing and protecting the connecting pipe is achieved, and the connecting pipe is prevented from being mistakenly touched and damaged when the oxygen supply device main body moves and the first support and the second support rotate;
2. the sliding sleeve is sleeved on the outer side of the second support, so that the sliding sleeve can slide on the second support, the sliding sleeve is provided with a limiting block, a bolt on the limiting block and a limiting groove in the top of the second support are matched and mounted, the sliding sleeve can be fixed conveniently, the distance between the premixing box below the sliding sleeve and the first support can be adjusted, the supporting position of the premixing box can be adjusted, the mounting of a breathing mask below the premixing box can be facilitated, and the dragging of an air supply pipe on the breathing mask can be avoided;
3. be provided with a plurality of fixed blocks in the below of second support, play and carry out the effect of hanging to the connecting pipe, can avoid the winding between the connecting pipe, fixed block accessible T type slider slides on the T type groove of second support lower part, when adjusting the position of premixing the case, the fixed block can be accomodate the connecting pipe.
Drawings
FIG. 1 is a schematic structural diagram of an oxygen supply device for cardiology department, which is convenient to use according to the present invention;
FIG. 2 is a schematic sectional view of part A-A of the portable oxygen supply apparatus for cardiology department of the present invention shown in FIG. 1;
FIG. 3 is a schematic cross-sectional view of part B-B of the portable oxygen supply apparatus for cardiology department of the present invention;
FIG. 4 is a schematic diagram of a side view of a sliding sleeve of an oxygen supply device for cardiology department;
FIG. 5 is a schematic diagram of a sliding sleeve of an oxygen supply apparatus for cardiology department of the present invention;
FIG. 6 is a schematic side view of a first frame of a portable oxygen supply apparatus for cardiology department of the present invention;
FIG. 7 is an enlarged schematic view of the point A in FIG. 1 of a portable oxygen supply apparatus for cardiology department of the present invention;
FIG. 8 is an enlarged schematic view of point B in FIG. 2 of a portable oxygen supply apparatus for cardiology department of the present invention;
fig. 9 is an enlarged schematic structural diagram of point C in fig. 3 of a convenient oxygen supply device for cardiology department of the present invention.
In the figure: 1. an oxygen supply apparatus main body; 2. a protective door; 3. a control panel; 4. a lithium battery; 5. a warm air blower; 6. an oxygen cylinder; 7. a damping rotating shaft; 8. a first bracket; 801. a first placing groove; 802. clamping a head; 803. a second placing groove; 9. a second bracket; 10. a bolt; 11. a connecting pipe; 12. a sliding sleeve; 13. a limiting block; 14. a premix tank; 15. a gas supply pipe; 16. a respiratory mask; 17. a limiting groove; 18. a T-shaped groove; 19. a T-shaped slider; 20. a fixed block; 2001. fixing a sleeve; 2002. adjusting a knob; 2003. a fixed head; 21. the air supply pipe joint.
Detailed Description
All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
Referring to fig. 1-9, the present invention provides a technical solution: a convenient-to-use oxygen supply device for department of cardiology comprises an oxygen supply device main body 1, a protective door 2, a control panel 3, a lithium battery 4, a fan heater 5, an oxygen bottle 6, a damping rotating shaft 7, a first support 8, a first placing groove 801, a clamping head 802, a second placing groove 803, a second support 9, a bolt 10, a connecting pipe 11, a sliding sleeve 12, a limiting block 13, a premixing box 14, an air supply pipe 15, a breathing mask 16, a limiting groove 17, a T-shaped groove 18, a T-shaped sliding block 19, a fixing block 20, a fixing sleeve 2001, an adjusting knob 2002, a fixing head 2003 and an air supply pipe joint 21, wherein the protective door 2 is arranged on the front side of the oxygen supply device main body 1, the control panel 3 is arranged on the upper portion of the oxygen supply device main body 1, the lithium battery 4 is installed inside the oxygen supply device main body 1, the fan heater 5 is arranged above the lithium battery 4, the oxygen bottle 6 is arranged on the right side of the fan heater 5, and the connecting pipes 11 are connected with the upper ends of the fan heater 5 and the oxygen bottle 6, and the connecting pipe 11 is arranged on the first bracket 8 through the damping rotating shaft 7, meanwhile, the connecting pipe 11 is connected with the premixing tank 14 through the fixing block 20, the second bracket 9 is welded at the upper end of the first bracket 8, the upper part of the second bracket 9 is provided with a limit groove 17, and the outer side of the second bracket 9 is sleeved with a sliding sleeve 12, the right side of the sliding sleeve 12 is welded with a limiting block 13, the limiting block 13 is connected with a limiting groove 17 on the second bracket 9 through a bolt 10, the lower end of the second bracket 9 is provided with a T-shaped groove 18, the inside of the T-shaped groove 18 is connected with the top of a T-shaped sliding block 19, and the lower end of the T-shaped slide block 19 is connected with a fixed block 20, the lower end of the sliding sleeve 12 is connected with the premixing box 14 through a bolt 10, the lower end of the premixing box 14 is provided with an air supply pipe joint 21, and a gas supply pipe joint 21 is screwed with the gas supply pipe 15 while the lower end of the gas supply pipe 15 is provided with a breathing mask 16.
The first bracket 8 of this example includes the first placement groove 801, the chucking head 802, and the second placement groove 803, and the first placement groove 801 is located inside the front side of the first bracket 8, and the chucking head 802 is located inside the first placement groove 801, while the second placement groove 803 is located above the first placement groove 801, and the first bracket 8 includes the first placement groove 801 and the second placement groove 803, which function to fix the connection pipe 11 inside the first placement groove 801 and the second placement groove 803 by the chucking head 802, and is advantageous for protecting the connection pipe 11.
The dop 802 is arranged in the first placing groove 801 at equal intervals, the dop 802 is connected with the first placing groove 801 in a screw mode, the first placing groove 801 is communicated with the second placing groove 803, the effect that the dop 802 is fixed in the first placing groove 801 and the second placing groove 803 is achieved, and a user can replace the dop 802 conveniently.
The mounting structure of second support 9 is horizontal installation, and each other is perpendicular installation between second support 9 and the first support 8 to first support 8 all uses the vertical center line of damping pivot 7 as the rotation center with second support 9, sets up like this and plays the effect of carrying out the steady support to premixing case 14, and conveniently rotates the position of premixing case 14 and adjusts convenience of customers's use.
The connecting sleeve 12 is rectangular in shape and structure, and the mounting structure of the connecting sleeve 12 is a sliding structure, so that the connecting sleeve 12 can slide on the second support 9, and then the distance between the premixing tank 14 and the first support 8 can be adjusted, and a user can adjust the connecting sleeve according to the position of a patient conveniently.
The limiting block 13 is located right above the limiting groove 17, the height of the lower end face of the limiting block 13 is higher than that of the upper end face of the second support 9, the limiting block is arranged to fix the connecting sleeve 12, and accidental sliding of the connecting sleeve 12 is avoided.
The height of the upper end surface of the premixing box 14 is lower than that of the lower end of the fixed block 20, and the fixed block 20 is connected with the T-shaped slide block 19 in a welding mode, so that when the premixing box 14 is moved, the premixing box 14 is prevented from being directly contacted with the fixed block 20, and the protection of the connecting pipe 11 on the fixed block 20 is facilitated.
The limiting groove 17 and the T-shaped groove 18 are respectively arranged on the upper end face and the lower end face of the second support 9, and the center lines of the second support 9, the limiting groove 17 and the T-shaped groove 18 are on the same vertical straight line, so that the T-shaped sliding block 19 can slide in the T-shaped groove 18, and further the fixing block 20 can be conveniently moved.
The fixing block 20 comprises a fixing sleeve 2001, an adjusting knob 2002 and a fixing head 2003, the fixing sleeve 2001 is positioned on one side of the fixing block 20 close to the first support 8, the adjusting knob 2002 is arranged on the upper portion of the fixing sleeve 2001, the lower end of the adjusting knob 2002 is in bearing connection with the fixing head 2003, the adjusting knob 2002 is arranged to support the connecting pipe 11, and the connecting pipe 11 can be accommodated in the moving process of the fixing block 20.
The number of the fixing sleeve 2001 is twice of the number of the fixing blocks 20, the fixing sleeve 2001 is in welded connection with the fixing blocks 20, and the fixing head 2003 is in an arc-shaped structure, so that the fixing function of the fixing sleeve 2001 on the connecting pipe 11 is achieved, and relative movement between the connecting pipe 11 and the fixing blocks 20 is avoided.
The working principle is as follows: when the convenient-to-use oxygen supply device for cardiology department is used, as shown in fig. 1-9, a user firstly pushes the oxygen supply device main body 1 to a position to be used, then the user rotates the second support 9 by hand, the second support 9 rotates through the damping rotating shaft 7 at the lower end of the first support 8, after the premixing box 14 below the second support 9 rotates to a proper position, the bolt 10 on the limiting block 13 is unscrewed, the premixing box 14 is pushed, the premixing box 14 drives the sliding sleeve 12 to move on the second support 9, while the premixing box 14 is pushed, the premixing box 14 drives the fixing block 20 at the lower part of the second support 9 through the connecting pipe 11 to move inside the T-shaped groove 18 through the T-shaped sliding block 19, the connecting pipe 11 is further driven to be retracted, after the premixing box 14 rotates to a proper position, the bolt 10 on the limiting block 13 is screwed again, so that the bolt 10 tightly pushes the limiting groove 17 on the second support 9 through the limiting block 13, further fixing the sliding sleeve 12 is completed, finally, an air supply pipe 15 on a medical disposable breathing mask 16 is screwed on an air supply pipe joint 21 at the lower end of the premixing box 14, and the breathing mask 16 is fixed on the face of a patient, at the moment, two valves at the left side of the premixing box 14 are opened firstly, then the oxygen supply device main body 1 is started through the control panel 3, the air heater 5 and the oxygen bottle 6 add air and oxygen into the premixing box 14 through the connecting pipe 11, then the air and the oxygen enter the air supply pipe 15 through the air supply pipe joint 21 at the lower end of the premixing box 14, and the patient can inhale the oxygen through the breathing mask 16;
when the connecting pipes 11 need to be replaced, the two connecting pipes 11 are taken out from the chucks 802 inside the first and second placing grooves 801 and 803, the adjusting knob 2002 is unscrewed, after the fixing head 2003 below the adjusting knob 2002 is separated from the connecting pipes 11, the two connecting pipes 11 can be pulled out from the fixing block 20, one ends of the two connecting pipes 11 are respectively filled with the warm air blower 5 and the oxygen bottle 6, the other ends of the two connecting pipes 11 are taken out from the premixing box 14, the two new connecting pipes 11 are clamped on the chucks 802 inside the first and second placing grooves 801 and 803, the two new connecting pipes 11 pass through the fixing sleeves 2001 on the fixing block 20, the adjusting knob 2002 is screwed, after the fixing head 2003 below the adjusting knob 2002 presses the connecting pipes 11 to 1/3, the lower part of the fixing head 2003 is glued with a silica gel layer, the adjusting knob 2002 is stopped being screwed, finally, two new connecting pipes 11 are respectively installed at the two ends of the air charging and heating unit 5, the oxygen cylinder 6 and the pre-mixing tank 14, so as to complete a series of operations of the convenient-to-use oxygen supply apparatus for cardiology department, which are well known to those skilled in the art and not described in detail in this specification.
Although the present invention has been described in detail with reference to the foregoing embodiments, it will be apparent to those skilled in the art that various changes, modifications, equivalents, and improvements may be made without departing from the spirit and scope of the invention.
Claims (7)
1. The utility model provides a intracardiac branch of academic or vocational study apparatus of oxygen supply convenient to use, includes apparatus of oxygen supply main part (1), guard gate (2), control panel (3), lithium cell (4), electric fan heater (5), mixes case (14), air supply pipe (15) and respirator (16) in advance, its characterized in that: the front side of the oxygen supply device main body (1) is provided with a protective door (2), the upper part of the oxygen supply device main body (1) is provided with a control panel (3), a lithium battery (4) is arranged inside the oxygen supply device main body (1), a fan heater (5) is arranged above the lithium battery (4), an oxygen bottle (6) is arranged on the right side of the fan heater (5), connecting pipes (11) are connected to the upper ends of the fan heater (5) and the oxygen bottle (6), the connecting pipes (11) are arranged on a first support (8) through damping rotating shafts (7), the connecting pipes (11) are connected with a premixing box (14) through fixing blocks (20), a second support (9) is welded to the upper end of the first support (8), a limiting groove (17) is formed in the upper part of the second support (9), and a sliding sleeve (12) is sleeved outside the second support (9), a limiting block (13) is welded on the right side of the sliding sleeve (12), the limiting block (13) is connected with a limiting groove (17) in the second support (9) through a bolt (10), a T-shaped groove (18) is formed in the lower end of the second support (9), the interior of the T-shaped groove (18) is connected with the top of a T-shaped sliding block (19), the lower end of the T-shaped sliding block (19) is connected with a fixing block (20), the lower end of the sliding sleeve (12) is connected with the premixing box (14) through the bolt (10), an air supply pipe connector (21) is arranged at the lower end of the premixing box (14), the air supply pipe connector (21) is in threaded connection with an air supply pipe (15), and a breathing mask (16) is arranged at the lower end of the air supply pipe (15); the height of the upper end surface of the premixing box (14) is lower than that of the lower end of the fixed block (20), and the fixed block (20) is connected with the T-shaped sliding block (19) in a welding mode;
the first bracket (8) comprises a first placing groove (801), a clamping head (802) and a second placing groove (803), the first placing groove (801) is positioned in the front side of the first bracket (8), the clamping head (802) is positioned in the first placing groove (801), and the second placing groove (803) is positioned above the first placing groove (801);
the clamping heads (802) are arranged in the first placing groove (801) at equal intervals, the clamping heads (802) are connected with the first placing groove (801) in a screw mode, and the first placing groove (801) is communicated with the second placing groove (803).
2. A portable intracardiac oxygen supply apparatus according to claim 1, wherein: the mounting structure of the second support (9) is horizontally mounted, the second support (9) and the first support (8) are vertically mounted, and the first support (8) and the second support (9) both use the vertical central line of the damping rotating shaft (7) as a rotating center.
3. A portable intracardiac oxygen supply apparatus according to claim 1, wherein: the connecting sleeve (12) is rectangular in shape and structure, and the mounting structure of the connecting sleeve (12) is a sliding structure.
4. A portable intracardiac oxygen supply apparatus according to claim 1, wherein: the limiting block (13) is located right above the limiting groove (17), and the height of the lower end face of the limiting block (13) is higher than that of the upper end face of the second support (9).
5. A portable intracardiac oxygen supply apparatus according to claim 1, wherein: the limiting groove (17) and the T-shaped groove (18) are respectively arranged on the upper end face and the lower end face of the second support (9), and the central lines of the second support (9), the limiting groove (17) and the T-shaped groove (18) are on the same vertical straight line.
6. A portable intracardiac oxygen supply apparatus according to claim 1, wherein: the fixing block (20) comprises a fixing sleeve (2001), an adjusting knob (2002) and a fixing head (2003), the fixing sleeve (2001) is located on one side, close to the first support (8), of the fixing block (20), the adjusting knob (2002) is arranged on the upper portion of the fixing sleeve (2001), and the lower end of the adjusting knob (2002) is connected with the fixing head (2003) in a bearing mode.
7. A portable intracardiac oxygen supply apparatus of claim 6, wherein: the number of the fixing sleeves (2001) is twice that of the fixing blocks (20), the fixing sleeves (2001) are connected with the fixing blocks (20) in a welding mode, and the shape structure of the fixing heads (2003) is of an arc-shaped structure.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201910258891.3A CN109925578B (en) | 2019-04-02 | 2019-04-02 | Intracardiac branch of academic or vocational study apparatus of oxygen supply convenient to use |
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CN201910258891.3A CN109925578B (en) | 2019-04-02 | 2019-04-02 | Intracardiac branch of academic or vocational study apparatus of oxygen supply convenient to use |
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CN109925578A CN109925578A (en) | 2019-06-25 |
CN109925578B true CN109925578B (en) | 2021-07-20 |
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CN201910258891.3A Expired - Fee Related CN109925578B (en) | 2019-04-02 | 2019-04-02 | Intracardiac branch of academic or vocational study apparatus of oxygen supply convenient to use |
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JP2001129087A (en) * | 1999-11-08 | 2001-05-15 | Sky Net:Kk | Respiration circuit holder for respirator |
CN207137001U (en) * | 2017-03-14 | 2018-03-27 | 黄河 | Multifunction expanding security header frame is used in operation |
CN108853670B (en) * | 2018-05-21 | 2020-11-20 | 崔英坤 | Inhalation type anesthesia device for anesthesia department |
CN109107111A (en) * | 2018-09-19 | 2019-01-01 | 杨菲灵 | A kind of Cardiological respiratory training device |
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