CN210991706U - Cardio-pulmonary resuscitation device suitable for different crowds - Google Patents

Cardio-pulmonary resuscitation device suitable for different crowds Download PDF

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Publication number
CN210991706U
CN210991706U CN201921796408.9U CN201921796408U CN210991706U CN 210991706 U CN210991706 U CN 210991706U CN 201921796408 U CN201921796408 U CN 201921796408U CN 210991706 U CN210991706 U CN 210991706U
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pressing
cardiopulmonary resuscitation
resuscitation device
driving motor
rod
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CN201921796408.9U
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潘香宇
魏家鹏
徐庆梅
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Abstract

The utility model discloses a adapt to different crowds ' cardiopulmonary resuscitation device, include support arm pole, position control structure, press the structure and press the drive structure, fixing bolt is installed on the right side of support arm pole lower extreme, and fixing bolt's top installs the backing plate, position control structure installs in the top of backing plate, and the position control structure includes positioning bolt, link block and slide rail, positioning bolt's top is connected with link block, and link block's the outside is provided with the slide rail, press the structure and install on link block's right side, and press the below of structure and be connected with the gasket, press the drive structure and set up in the top of pressing the structure. The cardiopulmonary resuscitation device can conveniently press cardiopulmonary resuscitation on a patient through the arranged pressing structure, the position of the pressing structure can be conveniently adjusted through the arrangement of the position adjusting structure, the length of the projection of the cam is 5-6cm, and control over the pressing depth can be achieved.

Description

Cardio-pulmonary resuscitation device suitable for different crowds
Technical Field
The utility model relates to the technical field of medical equipment, specifically a cardio-pulmonary resuscitation device that adapts to different crowds.
Background
Once cardiopulmonary resuscitation sudden cardiac arrest occurs, if the sudden cardiac arrest cannot be rescued immediately and timely, irreversible damage to the brain and other important organs and tissues of a patient can be caused after 4-6 min, so the cardiopulmonary resuscitation (CPR) after the sudden cardiac arrest must be performed immediately on site. When cardiopulmonary resuscitation is performed, the compression frequency is 100-. These feedbacks may be relied upon when applied to a human simulator.
However, when the medical staff is rescued on the actual real person, the pressing frequency needs to be ensured to reach 100-120 times per minute, the pressing depth is 5-6cm, the times are counted, and the depth is difficult. The cardiopulmonary resuscitation device cannot be too shallow, has no effect, is too deep, is afraid of crushing fracture of patients, and has the medical requirement of 5-6cm depth, so that the cardiopulmonary resuscitation device is more practical and is suitable for different people.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a cardio-pulmonary resuscitation device who adapts to different crowds to solve above-mentioned problem.
In order to achieve the above object, the utility model provides a following technical scheme:
the utility model provides a adapt to different crowds' cardiopulmonary resuscitation device, includes the support arm pole, the support arm pole lower extreme is equipped with fixing bolt, and the upper end is equipped with the position control structure, the position control structure right side is equipped with presses the structure, and the top is equipped with presses the drive structure.
Preferably, the side view structure of the support arm rod is an inverted 'F' -shaped structure, and a backing plate is arranged above the fixing bolt.
Preferably, the support arm rod is in threaded connection with the fixing bolt, the number of the support arm rod is at least two, and meanwhile, a hand wheel is arranged at the lower end of the fixing bolt.
Preferably, the position adjusting structure comprises a positioning bolt, a hand wheel is arranged at the end of the positioning bolt, the positioning bolt penetrates through the supporting arm rod, a connecting slide block is connected to the front end of the positioning bolt, a pressing structure is fixedly arranged on the right side of the connecting slide block, and a supporting plate is fixedly arranged on the upper end of the connecting slide block.
Preferably, a slide rail is arranged on the side face of the upper end of the supporting arm rod, the connecting slide block is arranged in the slide rail, and the connecting slide block and the slide rail are in sliding connection.
Preferably, the pressing structure comprises a bearing main body, a spring is arranged inside the bearing main body, a connecting pressing rod is arranged inside the spring, and a connecting pressing plate penetrating through the connecting pressing rod is arranged above the connecting pressing rod.
Preferably, the lower end of the spring is limited in the bearing main body, the connecting pressure rod forms an elastic telescopic structure with the bearing main body through the connecting pressure plate and the spring, and the bearing main body is fixedly connected with the connecting sliding block.
Preferably, a gasket is connected to the lower part of the pressing structure, and the gasket is of an elastic rubber structure.
Preferably, press the drive structure and include driving motor, driving motor fixes in the layer board top, and driving motor's output is connected with the connecting axle, the outside of connecting axle is connected with the cam, the cam outside is equipped with the end cover.
Preferably, the driving motor forms a rotating structure through the connecting shaft and the cam, the connecting shaft is in key connection with the cam, and the protruding length of the cam is 5-6 cm.
Preferably, press the drive structure and include driving motor, driving motor fixes in the layer board top, just driving motor's output is connected with the connecting axle, the outside of connecting axle is connected with the crank, the crank other end is articulated with the connecting rod, the connecting rod other end is articulated with being connected the depression bar upper end, the crank outside is equipped with the end cover, simultaneously, driving motor passes through to constitute revolution mechanic between connecting axle and the crank, and is connected for the key-type connection between connecting axle and the crank.
Compared with the prior art, the beneficial effects of the utility model are that:
the cardiopulmonary resuscitation device suitable for different people can be conveniently installed on a sickbed through the supporting arm rod and the fixing bolt, so that the cardiopulmonary resuscitation device can conveniently press the cardiopulmonary resuscitation of a patient lying on the sickbed, and the working stability of the device can be ensured through the arrangement of the double bolts;
the arranged pressing structure can be used for conveniently pressing the cardiopulmonary resuscitation of the patient, and the position of the pressing structure can be conveniently adjusted through the arrangement of the position adjusting structure, so that the bottom end of the pressing structure can be mutually contacted with the cardiopulmonary part of the patient, and the cardiopulmonary part can be conveniently pressed;
the gasket structure that sets up is elastic construction, and the gasket contacts each other with patient's health, and the travelling comfort when so can improve the device and use can conveniently provide power for the motion of pressing the structure through the drive structure of pressing that sets up to the bellied length of cam is 5-6cm, can realize the control to pressing the degree of depth, has improved the practicality of this kind of cardiopulmonary resuscitation device who adapts to different crowds greatly.
Drawings
FIG. 1 is a schematic side view of the present invention;
fig. 2 is a schematic view of the internal structure of the pressing structure of the present invention;
FIG. 3 is a schematic view of the internal structure of the position adjustment structure of the present invention;
fig. 4 is a schematic front view of the structure of the present invention;
fig. 5 is a schematic view of the four-bar linkage driving structure of the present invention;
in the figure: 1. a support arm; 2. fixing the bolt; 3. a base plate; 4. a position adjustment structure; 401. positioning the bolt; 402. connecting the sliding block; 403. a slide rail; 404. a support plate; 5. a pressing structure; 501. a load bearing body; 502. a spring; 503. connecting a pressure lever; 504. connecting the pressing plate; 6. a gasket; 7. a pressing drive structure; 701. a drive motor; 702. a connecting shaft; 703. a cam; 704. an end cap; 705. a crank; 706. a connecting rod.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Example 1
Referring to fig. 1-4, the present invention provides a technical solution:
the utility model provides a adapt to different crowds' cardiopulmonary resuscitation device, includes support arm pole 1, and 1 lower extreme of support arm pole is equipped with fixing bolt 2, and the upper end of support arm pole 1 is equipped with position control structure 4, and the 4 right sides of position control structure are equipped with presses down structure 5, and the top of position control structure 4 is equipped with presses down drive structure 7.
In this embodiment, the side view configuration of the support arm 1 is an inverted "F" configuration, and a pad 3 is provided above the fixing bolt 2 to facilitate fixing of the device and to facilitate the patient lying on the pad 3.
In this embodiment, the connection between support arm pole 1 and fixing bolt 2 is threaded connection to at least being provided with two, two have been shown in this specification figure, and fixing bolt 2 lower extreme is equipped with the hand wheel, so, can conveniently install whole device on the sick bed, so can be convenient for the device to lie and carry out cardiopulmonary resuscitation to press to the patient on the sick bed.
In this embodiment, position control structure 4 includes positioning bolt 401, and positioning bolt 401 runs through the setting of support arm pole 1, is connected with link block 402 at positioning bolt 401's front end, and link block 402's right side is fixed to be equipped with and presses down structure 5, and its upper end is fixed to be equipped with layer board 404, and like this, can drive through link block 402 and press down structure 5 and layer board 404 and adjust from top to bottom to improve this device to different crowds ' adaptability.
In this embodiment, a slide rail 403 is disposed on a side surface of an upper end of the support arm 1, the connection slider 402 is disposed in the slide rail 403, a sliding connection is formed between the connection slider 402 and the slide rail 403, and meanwhile, a hand wheel is disposed at an end portion of the positioning bolt 401, when the positioning bolt 401 needs to be tightened, the end of the hand wheel is tightly attached to the connection slider 402 by rotating the hand wheel, so as to tightly push the connection slider 402, thereby preventing the connection slider 402 from sliding along the slide rail 403.
In this embodiment, the pressing structure 5 includes a main bearing body 501, a spring 502 is installed inside the main bearing body 501, a connecting pressing rod 503 is installed inside the spring 502, a connecting pressing plate 504 penetrating the connecting pressing rod 503 is installed above the spring 502, the lower end of the spring 502 is limited inside the main bearing body 501, the connecting pressing rod 503 forms an elastic telescopic structure with the main bearing body 501 through the connecting pressing plate 504 and the spring 502, the main bearing body 501 is fixedly connected with the connecting sliding block 402, so when the top end of the connecting pressing rod 503 is pressed, the connecting pressing rod 503 moves downwards, and when the connecting pressing rod 503 is not pressed, the connecting pressing rod 503 moves upwards to reset, so as to conveniently press the cardiopulmonary resuscitation on the.
In this embodiment, the lower part of pressing structure 5 is connected with gasket 6, connect depression bar 503 lower extreme to be connected with gasket 6 in detail, and the structure of gasket 6 is the elastic rubber structure, and can conveniently adjust pressing structure 5's position through the setting of position control structure 4, so can make pressing structure 5's bottom and patient's cardiopulmonary position contact each other, so be convenient for press cardiopulmonary position, gasket 6 structure is elastic construction, when gasket 6 and patient's health contact each other, travelling comfort when the device uses can be improved.
In this embodiment, press drive structure 7 to include driving motor 701, driving motor 701 fixes in the layer board 404 top, driving motor 701's output is connected with connecting axle 702, the outside of connecting axle 702 is connected with cam 703, the cam 703 outside is equipped with end cover 704, and simultaneously, driving motor 701 passes through to constitute revolution mechanic between connecting axle 702 and the cam 703, and be connected between connecting axle 702 and the cam 703 for the key-type connection, the protruding length of cam 703 is 5-6cm, so, can conveniently provide power for pressing structure 5's motion through the press drive structure 7 that sets up, driving motor 701 drives connecting axle 702 and rotates, in order to drive cam 703 and rotate, and, the protruding length of cam 703 is 5-6cm, can satisfy the medical demand of carrying out cardiopulmonary compression, can increase the practicality of this device like this.
The working principle and the using process are as follows:
for the cardiopulmonary resuscitation device, firstly, the whole device can be conveniently installed at the edge of a sickbed through the arranged support arm rod 1, so that the base plate 3 can be attached to the upper end surface of the sickbed, a patient can lie on the base plate 3, meanwhile, the pressing structure 5 is opposite to the cardiopulmonary part of the patient, the groove between the fixing bolt 2 and the base plate 3 is inserted into the outer edge of the sickbed, and the fixing bolt 2 is screwed, so that the top end of the fixing bolt 2 can be closely attached to the sickbed, and the whole device can be fixed;
the adjusting position adjusting structure 4 can adjust the distance between the pressing structure 5 and the patient, so that the cardiopulmonary resuscitation of patients of different body types can be conveniently pressed, the positioning bolt 401 is screwed, the connecting slide block 402 can slide in the slide rail 403, the gasket 6 and the cardiopulmonary part of the patient can be attached to each other, when the gasket 6 is in a proper position, the positioning bolt 401 is screwed, the connecting slide block 402 can be tightly and immovably abutted by the tail end of the positioning bolt 401, and the position stability of the connecting slide block 402 is ensured;
the pressing driving structure 7 is started, the driving motor 701 can drive the connecting shaft 702 to rotate when working, the connecting shaft 702 can drive the cam 703 to rotate, so that the connecting pressing rod 503 can be extruded when rotating, the length of the connecting pressing rod is 5-6cm, so that the compression distance of the connecting pressing rod 503 is 5-6cm each time, the connecting pressing rod 503 can be pressed downwards to compress the spring 502 through the connecting pressing plate 504, the connecting pressing rod 503 can move downwards to drive the gasket 6 to move downwards by 5-6cm, so that the pressing effect of 5-6cm on the cardio-pulmonary resuscitation part of a patient can be realized, the bearing main body 501 can play a limiting effect on the spring 502, the spring 502 needs to be limited by the bearing main body 501 to move on the connecting pressing rod 503, the connecting pressing plate 504 needs to be limited by the bearing main body 501 to move upwards, when the connecting pressing rod 503 is not extruded, the connecting pressing plate 504 and the connecting pressing rod 503 can be pushed to contract, therefore, the stretching and contraction processes in the pressing process can be realized, and the using process of the whole cardio-pulmonary resuscitation device is completed.
Example 2
As shown in fig. 1 to 5, the present embodiment is different from embodiment 1 in that the cam 703 is replaced with a crank 705 and a connecting rod 706, and the connecting slider 402 and the slide rail 403 are arranged in bilateral symmetry and are both fixed to the load bearing body 501.
Namely: the pressing driving structure 7 comprises a driving motor 701, the driving motor 701 is fixed above the supporting plate 404, the output end of the driving motor 701 is connected with a connecting shaft 702, the outer side of the connecting shaft 702 is connected with a crank 705, the other end of the crank 705 is hinged with a connecting rod 706, the other end of the connecting rod 706 is hinged with the upper end of a connecting pressing rod 503, an end cover 704 is arranged on the outer side of the crank 705, meanwhile, the driving motor 701 forms a rotating structure through the connecting shaft 702 and the crank 705, and the connecting shaft 702 and the crank 705 are connected through a.
Meanwhile, the driving motor 701 drives the crank 705 to rotate, and the connecting rod 706 rotates, so that the connecting pressure rod 503 is driven to do linear reciprocating motion, and the stroke of the linear reciprocating motion is 5-6 cm.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.

Claims (10)

1. The utility model provides a cardiopulmonary resuscitation device that adapts to different crowds, includes support arm lever (1), its characterized in that: support armed lever (1) lower extreme and be equipped with fixing bolt (2), and the upper end is equipped with position control structure (4), position control structure (4) right side is equipped with presses down structure (5), and the top is equipped with presses down drive structure (7).
2. The cardiopulmonary resuscitation device of claim 1, adapted for different populations, comprising: the side view structure of the support arm rod (1) is an inverted F-shaped structure, and a backing plate (3) is arranged above the fixing bolt (2); the support arm rod (1) is connected with the fixing bolt (2) through threads, at least two support arm rods are arranged, and meanwhile, a hand wheel is arranged at the lower end of the fixing bolt (2).
3. The cardiopulmonary resuscitation device of claim 1, adapted for different populations, comprising: the position adjusting structure (4) comprises a positioning bolt (401), a hand wheel is arranged at the end of the positioning bolt (401), the positioning bolt (401) penetrates through the supporting arm rod (1) and is arranged, the front end of the positioning bolt (401) is connected with a connecting sliding block (402), a pressing structure (5) is fixedly arranged on the right side of the connecting sliding block (402), and a supporting plate (404) is fixedly arranged at the upper end of the connecting sliding block.
4. A cardiopulmonary resuscitation device adapted for different populations, according to claim 3, wherein: the side surface of the upper end of the support arm rod (1) is provided with a slide rail (403), the connecting slide block (402) is arranged in the slide rail (403), and the connecting slide block (402) and the slide rail (403) are in sliding connection.
5. The cardiopulmonary resuscitation device of claim 4, wherein: the pressing structure (5) comprises a bearing main body (501), a spring (502) is installed inside the bearing main body (501), a connecting pressing rod (503) is installed inside the spring (502), and a connecting pressing plate (504) penetrating through the connecting pressing rod (503) is installed above the spring.
6. The cardiopulmonary resuscitation device of claim 5, wherein: the lower end of the spring (502) is limited in the bearing main body (501), the connecting pressure rod (503) forms an elastic telescopic structure with the bearing main body (501) through the connecting pressure plate (504) and the spring (502), and the bearing main body (501) is fixedly connected with the connecting sliding block (402).
7. A cardiopulmonary resuscitation device adapted for different populations, according to claim 1, 2, 3, 4, 5 or 6, comprising: a gasket (6) is connected to the lower portion of the pressing structure (5), and the gasket (6) is of an elastic rubber structure.
8. The cardiopulmonary resuscitation device of claim 6, adapted for different populations, comprising: the pressing driving structure (7) comprises a driving motor (701), the driving motor (701) is fixed above the supporting plate (404), the output end of the driving motor (701) is connected with a connecting shaft (702), the outer side of the connecting shaft (702) is connected with a cam (703), and the outer side of the cam (703) is provided with an end cover (704).
9. The cardiopulmonary resuscitation device of claim 8, wherein: the driving motor (701) forms a rotating structure through a connecting shaft (702) and the cam (703), the connecting shaft (702) is connected with the cam (703) in a key connection mode, and the protruding length of the cam (703) is 5-6 cm.
10. The cardiopulmonary resuscitation device of claim 1, adapted for different populations, comprising: the pressing driving structure (7) comprises a driving motor (701), the driving motor (701) is fixed above the supporting plate (404), the output end of the driving motor (701) is connected with a connecting shaft (702), the outer side of the connecting shaft (702) is connected with a crank (705), the other end of the crank (705) is hinged to a connecting rod (706), the other end of the connecting rod (706) is hinged to the upper end of a connecting pressing rod (503), an end cover (704) is arranged on the outer side of the crank (705), meanwhile, the driving motor (701) forms a rotating structure between the connecting shaft (702) and the crank (705), and the connecting shaft (702) and the crank (705) are connected through a key.
CN201921796408.9U 2019-10-24 2019-10-24 Cardio-pulmonary resuscitation device suitable for different crowds Active CN210991706U (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114210798A (en) * 2021-10-25 2022-03-22 芜湖普威技研有限公司 Dovetail slide block side surface shaping structure

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114210798A (en) * 2021-10-25 2022-03-22 芜湖普威技研有限公司 Dovetail slide block side surface shaping structure

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