CN215348995U - Automatic accomodate arrangement box of ECG guardianship line of leading - Google Patents

Automatic accomodate arrangement box of ECG guardianship line of leading Download PDF

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Publication number
CN215348995U
CN215348995U CN202120273991.6U CN202120273991U CN215348995U CN 215348995 U CN215348995 U CN 215348995U CN 202120273991 U CN202120273991 U CN 202120273991U CN 215348995 U CN215348995 U CN 215348995U
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gear
sliding
ring gear
area
clamping
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CN202120273991.6U
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孙雪平
丁芬娟
顾华芬
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FIRST PEOPLE'S HOSPITAL OF YUHANG DISTRICT HANGZHOU
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FIRST PEOPLE'S HOSPITAL OF YUHANG DISTRICT HANGZHOU
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Abstract

The utility model discloses an arrangement box for automatically accommodating an electrocardiogram monitoring lead wire, which comprises a box body, wherein a partition plate (1) is arranged in the box body, a plurality of first sliding grooves (11) which are distributed in a left-right staggered manner are formed in the partition plate (1) along the wire inlet direction, and each first sliding groove (11) is connected with a sliding wheel (2) in a sliding manner; still be equipped with first ring gear area (3) and a plurality of transverse distribution's second ring gear area (4) of longitudinal distribution in the box body, first ring gear area (3) are through driving gear (32) and driven gear (33) and second ring gear area (4) linkage, and the outside border and upper and lower two adjacent movable pulley (2) fixed connection of second ring gear area (4). The utility model has the characteristics of automatic storage and arrangement, simple and convenient processing and real-time storage.

Description

Automatic accomodate arrangement box of ECG guardianship line of leading
Technical Field
The utility model relates to a lead wire storage technology, in particular to an arrangement box for automatically storing an electrocardiogram monitoring lead wire.
Background
The ECG monitor is a basic and common monitoring means in Intensive Care Units (ICU), and is required to be rapid and accurate when in use. When the ECG monitor is used for monitoring, due to the fact that line connection exists, various lead wires are numerous and long, the lead wires are prone to intertwining and folding, cables are messy, the ECG monitor is not only inconvenient to use and low in detection and treatment efficiency, but also prone to being broken, affecting service life, increasing equipment cost and affecting judgment of illness states.
The arrangement is all accomodate to current ECG guardianship line and carry out the manual work after using before using, and the nurse often can spend more time arrange in order various pipelines, handles troublesome, time-consuming, has increased nurse's work load to a certain extent.
Therefore, the existing ECG monitoring lead wire is stored, and has the problems that manual arrangement is troublesome and time-consuming, the treatment can be carried out before or after the use, and the real-time treatment cannot be carried out during the use.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide an arrangement box for automatically accommodating an electrocardiogram monitoring lead wire. The utility model has the characteristics of automatic storage and arrangement, simple and convenient processing and real-time storage.
The technical scheme of the utility model is as follows: an arrangement box for automatically accommodating an electrocardiogram monitoring lead wire comprises a box body, wherein a partition plate is arranged in the box body, a plurality of first sliding grooves which are distributed in a left-right staggered mode are formed in the partition plate along the wire inlet direction, and each first sliding groove is connected with a sliding wheel in a sliding mode; still be equipped with the first ring gear area of vertical distribution and the second ring gear area of a plurality of horizontal distributions in the box body, first ring gear area is through driving gear and driven gear and the linkage of second ring gear area, and the outside border and upper and lower two adjacent movable pulley fixed connection in the second ring gear area.
In the arrangement box capable of automatically accommodating the electrocardiograph monitoring lead wire, the inner side of the first annular gear belt is uniformly provided with first clamping teeth, the inner side of the second annular gear belt is uniformly provided with second clamping teeth, the driving gear and the driven gear are respectively meshed with the first clamping teeth and the second clamping teeth, and the driving gear is connected with the electric motor.
In the arrangement box capable of automatically accommodating the electrocardiograph monitoring lead wire, the driving gear and the driven gear respectively comprise a first gear and a second gear which are coaxially distributed, the first gear is meshed with the first latch, and the second gear is meshed with the second latch.
In the arrangement box for automatically accommodating the ECG monitoring lead wire, the sliding wheel is connected in the first sliding groove through the rotating shaft in a sliding mode, a frosting area is arranged on the rotating shaft, the upper outer edge and the lower outer edge of the second ring gear belt are both provided with connecting pieces, clamping holes are formed in the connecting pieces, the rotating shaft penetrates through the clamping holes and is fixed with the clamping holes in the frosting area, and damping gaskets are arranged on the two sides of the clamping holes in the frosting area.
In the arrangement box for automatically accommodating the electrocardiograph monitoring lead wire, a plurality of fixed racks are circumferentially distributed on the rotating shaft, and the center of the sliding wheel is provided with a clamping groove corresponding to the fixed racks on the rotating shaft.
In the arrangement box for automatically accommodating the electrocardiograph monitoring lead wire, the peripheral surface of the sliding wheel is provided with the wire slot, and the wire slot is W-shaped or U-shaped.
In the arrangement box capable of automatically accommodating the electrocardiograph monitoring lead wire, the driven gear comprises a first gear and a second gear which are coaxially distributed, the first gear is meshed with the first clamping teeth, and the second gear is meshed with the second clamping teeth.
In the arrangement box for automatically accommodating the electrocardiograph monitoring lead wire, one end of the partition plate is provided with a wire inlet, the other end of the partition plate is provided with a wire outlet, a buckle is arranged on the wire inlet, and a pair of rollers is arranged on the wire outlet.
In the arrangement box for automatically accommodating the ECG monitoring lead wire, the buckle comprises a pair of mutually matched clamping blocks, a limiting groove is formed in the wire inlet of the partition plate, the inner end of each clamping block extends into the limiting groove and is connected with the inner wall of the limiting groove through a spring, the outer end of each clamping block is provided with an occlusion tooth, the occlusion teeth of the two clamping blocks correspond to occlusion, and the lower end of each clamping block forms an arc-shaped guide part protruding downwards.
In the sorting box for automatically storing the electrocardiograph monitoring lead wire, the partition plate is further provided with an electromechanical switch, and the electromechanical switch is electrically connected with the electric motor; and both ends of the first sliding groove are provided with limit switches, and the limit switches are electrically connected with the electric motor.
In the arrangement box capable of automatically accommodating the ECG monitoring lead wire, the box body comprises an upper cover and a lower cover, and second sliding grooves corresponding to the first sliding grooves are formed in the upper cover and the lower cover.
Compared with the prior art, the utility model can automatically realize the storage and the arrangement of the lead wires, the lead wires are sequentially wound on the up-and-down staggered sliding wheels in sequence, and the first annular gear belt and the second annular gear belt are utilized to drive the two adjacent sliding wheels to simultaneously move transversely in opposite directions or move backwards, so that the lead wires are stretched and shortened, the effective use length of the lead wires is freely adjusted, the phenomena of distortion, winding, folding and even breakage of the electrocardiograph monitoring lead wires are effectively avoided, the equipment cost is reduced, and the service life is prolonged; and need not artifical manual adjustment, easy operation, convenient, the arrangement is convenient, reduces nurse's work load, and can not influence the normal work of leading the line when accomodating, can arrange in real time, improves guardianship efficiency.
Therefore, the utility model has the characteristics of automatic storage and arrangement, simple and convenient processing and real-time storage.
Drawings
FIG. 1 is a schematic structural view of the present invention;
FIG. 2 is a schematic view of the structure of the slide wheel located at the outermost end of the first slide groove;
FIG. 3 is a schematic view of the slide wheel at the innermost end of the first slide groove;
FIG. 4 is a schematic structural view of a first endless gear belt;
FIG. 5 is a schematic structural view of a second endless gear belt;
FIG. 6 is a schematic view of the structure of the rotating shaft;
FIG. 7 is a top view of the sliding wheel;
in fig. 8, a is a W-shaped wire groove diagram of the sliding wheel;
in fig. 8, B is a U-shaped wire groove diagram of the sliding wheel;
FIG. 9 is a schematic view of the construction of the driven gear;
FIG. 10 is a schematic view of the buckle;
fig. 11 is a schematic structural view of the upper cover.
The labels in the figures are: 1. a partition plate; 11. a first sliding groove; 12. a wire inlet; 13. an outlet; 14. buckling; 141. a clamping block; 142. engaging teeth; 143. a spring; 144. an arc-shaped guide part; 15. a roller; 16. a limiting groove; 17. an electromechanical switch; 18. a limit switch; 2. a sliding wheel; 21. a rotating shaft; 22. a sanding area; 23. a shock-absorbing pad; 24. fixing a rack; 25. a card slot; 26. a wire slot; 3. a first endless gear belt; 31. a first latch; 32. a driving gear; 33. a driven gear; 34. a first gear; 35. a second gear; 4. a second endless gear belt; 41. a second latch; 42. connecting sheets; 43. a clamping hole; 5. an upper cover; 51. a second sliding groove; 6. and (6) conducting wires.
Detailed Description
The present invention is further illustrated by the following examples, which are not to be construed as limiting the utility model.
Example (b):
as shown in fig. 1-11, an arrangement box for automatically accommodating an electrocardiograph monitoring lead wire comprises a box body, wherein a partition plate 1 is arranged in the box body, a plurality of first sliding grooves 11 which are distributed in a left-right staggered manner are formed in the partition plate 1 along a wire inlet direction, and a sliding wheel 2 is connected to each first sliding groove 11 in a sliding manner; still be equipped with the first ring gear area 3 of longitudinal distribution and a plurality of transverse distribution's second ring gear area 4 in the box body, first ring gear area 3 is taken 4 linkages with the second ring gear through driving gear 32 and driven gear 33, and the outside border and two adjacent movable pulley 2 fixed connection from top to bottom of second ring gear area 4.
The inboard of first ring gear area 3 evenly is equipped with first latch 31, and the inboard of second ring gear area 4 evenly is equipped with second latch 41, and driving gear 32 and driven gear 33 mesh with first latch 31 and second latch 41 respectively, are connected with electric motor on the driving gear 32.
The driving gear 32 and the driven gear 33 both include a first gear 34 and a second gear 35 which are coaxially distributed, the first gear 34 is engaged with the first latch 31, and the second gear 35 is engaged with the second latch 41.
The movable pulley 2 is connected in the first sliding groove 11 in a sliding mode through the rotating shaft 21, the rotating shaft 21 is provided with a grinding area 22, the upper outer edge and the lower outer edge of the second annular gear belt 4 are respectively provided with a connecting piece 42, a clamping hole 43 is formed in the connecting piece 42, the rotating shaft 21 penetrates through the clamping hole 43 and is fixed with the clamping hole 43 in the grinding area 22, and damping gaskets 23 are arranged on the two sides, located on the clamping hole 43, of the grinding area 22. The frosting area 22 surface on the pivot 21 is comparatively crude, is connected more firmly, stable with second ring gear area 4, through shock attenuation gasket 23 for second ring gear area 4 is more steady, level and smooth to the motion transmission of movable pulley 2, reduces the vibration.
A plurality of fixed racks 24 are circumferentially distributed on the rotating shaft 21, and a clamping groove 25 corresponding to the fixed racks 24 on the rotating shaft 21 is arranged at the center of the sliding wheel 2. The rotating shaft 21 is fixedly connected with the sliding wheel 2 through the fixed rack 24, and the connection is stable and firm and is not easy to separate.
A wire groove 26 is formed in the outer peripheral surface of the sliding wheel 2, and the wire groove 26 is W-shaped or U-shaped. The wire casing can be adjusted according to actual winding line type, is convenient for twine the lead wire 6 of different grade type and quantity. In this embodiment, both ends of the rotating shaft 21 are provided with the fixed rack 24, and after the rotating shaft 21 passes through the first sliding groove 11, one end of the rotating shaft is fixedly connected with the sliding wheel 2 of the W-shaped wire casing, and the other end of the rotating shaft is fixedly connected with the sliding wheel 2 of the U-shaped wire casing. The two sliding wheels 2 are respectively positioned on the sliding wheels 2 and move along the first sliding groove 11, so that the storage number of the lead wires 6 is increased.
The driving gear 32 and the driven gear 33 both include a first gear 34 and a second gear 35 which are coaxially distributed, the first gear 34 is engaged with the first latch 31, and the second gear 35 is engaged with the second latch 41. Through the design of the driven gear 33, the first ring gear belt 3 synchronously drives the second ring gear belt 4 to move.
One end of the partition board 1 is provided with a wire inlet 12, the other end of the partition board 1 is provided with a wire outlet 13, the wire inlet 12 is provided with a buckle 14, and the wire outlet 13 is provided with a pair of rollers 15.
The buckle 14 includes a pair of mutually matched latch blocks 141, a limiting groove 16 is arranged at the wire inlet 12 of the partition board 1, the inner end of the latch block 141 extends into the limiting groove 16 and is connected with the inner wall of the limiting groove 16 through a spring 143, the outer end of the latch block 141 is provided with engaging teeth 142, the engaging teeth 142 of the two latch blocks 141 are correspondingly engaged, and the lower end of the latch block 141 forms an arc-shaped guide part 144 protruding downwards. The lead wire 6 at the wire inlet 12 is firmly fixed by the engagement of a pair of clamping blocks 141 with springs 143, so as to prevent the lead wire 6 from disengaging, loosening, misplacing and the like, and the slide wheel 2 always keeps the correct position of the lead wire 6 in the moving process; the arc-shaped guide portion 144 provided on the latch 141 serves to guide the lead wire 6 to be properly wound around the pulley 2 and to prevent the lead wire 6 from being broken.
The partition board 1 is also provided with an electromechanical switch 17 extending out of the box body, and the electromechanical switch 17 is electrically connected with the electric motor. The operation and stop of the electric motor is controlled by an electromechanical switch 17.
Both ends of the first sliding groove 11 are provided with limit switches 18, and the limit switches 18 are electrically connected with the electric motor. The limit switch 18 is connected to the electric motor through a wire, and when the rotating shaft 21 sliding along the first sliding groove 11 contacts the limit switch 18, the electric motor is powered off and automatically stops working.
The box body comprises an upper cover 5 and a lower cover, wherein the upper cover 5 and the lower cover are respectively provided with a second sliding groove 51 corresponding to the first sliding groove 11 and openings corresponding to the wire inlet 12 and the wire outlet 13. When the sliding wheel 2 is installed, the rotating shaft 21 passes through the first sliding groove 11, and both ends of the rotating shaft 21 are in the second sliding grooves 51.
The working principle is as follows: the electrocardio lead wire, the oxyhemoglobin saturation lead wire, the blood pressure cuff lead wire and the like enter the box body from the wire inlet 12, are wound on the wire groove 26 of the sliding wheel 2 from top to bottom in sequence, and are finally led out from the wire outlet 13; accomodate when leading line 6, electric motor drives driving gear 32 and rotates, thereby it rotates with driving gear 32 meshed first ring gear area 3 to drive, first ring gear area 3 drives driven gear 33 simultaneously and rotates, driven gear 33 and driving gear 32 are owing to all take 4 meshing with the second ring gear, consequently still drive second ring gear area 4 simultaneously and rotate, second ring gear area 4 and first sliding tray 11 parallel distribution, second ring gear takes 4 pivoted while to drive two adjacent pulleys 2 along first sliding tray 11 dorsad removal simultaneously or simultaneously move in opposite directions through pivot 21, thereby realize leading the accomodating and the expansion of line 6.
When the sliding wheel 2 moves to the outermost end of the first sliding groove 11, the rotating shaft 21 contacts with the limit switch 18, so that the electric motor stops working, the lead wire 6 stored in the storage box is longest, and the lead wire 6 is folded; when the sliding wheel 2 moves to the innermost end of the first sliding groove 11, the rotating shaft 21 contacts with the limit switch 18, so that the electric motor stops working, the lead wire 6 stored in the storage box is shortest and is in a straight line, and the outer lead wire 6 is lengthened. Because the lead wire 6 is fixed by the buckle 14 at the wire inlet 12 and moves at the wire outlet 13, the lead wire 6 at the wire outlet 13 is only affected during storage, so that the lead wire 6 can not affect the normal use of the lead wire 6 during storage, and can be stored in real time, and the operation is convenient.

Claims (10)

1. The utility model provides an automatic accomodate arrangement box of ECG guardianship line of leading which characterized in that: the box comprises a box body, wherein a partition plate (1) is arranged in the box body, a plurality of first sliding grooves (11) which are distributed in a left-right staggered mode are formed in the partition plate (1) along the wire inlet direction, and each first sliding groove (11) is connected with a sliding wheel (2) in a sliding mode; still be equipped with first ring gear area (3) and a plurality of transverse distribution's second ring gear area (4) of longitudinal distribution in the box body, first ring gear area (3) are through driving gear (32) and driven gear (33) and second ring gear area (4) linkage, and the outside border and upper and lower two adjacent movable pulley (2) fixed connection of second ring gear area (4).
2. The automatic accomodate arrangement box of ECG guardianship line of leading according to claim 1, characterized in that: the inboard of first ring gear area (3) evenly is equipped with first latch (31), and the inboard of second ring gear area (4) evenly is equipped with second latch (41), and driving gear (32) and driven gear (33) are connected with electric motor with first latch (31) and second latch (41) meshing respectively on driving gear (32).
3. The automatic accomodate arrangement box of ECG guardianship line of leading according to claim 2, characterized in that: the driving gear (32) and the driven gear (33) both comprise a first gear (34) and a second gear (35) which are coaxially distributed, the first gear (34) is meshed with the first clamping teeth (31), and the second gear (35) is meshed with the second clamping teeth (41).
4. The automatic accomodate arrangement box of ECG guardianship line of leading according to claim 1, characterized in that: the sliding wheel (2) is connected in the first sliding groove (11) in a sliding mode through the rotating shaft (21), a grinding area (22) is arranged on the rotating shaft (21), connecting pieces (42) are arranged on the upper outer edge and the lower outer edge of the second ring-shaped gear belt (4), clamping holes (43) are formed in the connecting pieces (42), the rotating shaft (21) penetrates through the clamping holes (43) and is fixed with the clamping holes (43) in the grinding area (22), and damping gaskets (23) are arranged on two sides, located on the grinding area (22), of the clamping holes (43).
5. The automatic accomodate arrangement box of ECG guardianship line of leading according to claim 4, characterized in that: a plurality of fixed racks (24) are circumferentially distributed on the rotating shaft (21), and clamping grooves (25) corresponding to the fixed racks (24) are formed in the center of the sliding wheel (2).
6. The automatic accomodate arrangement box of ECG guardianship line of leading according to claim 1, characterized in that: the peripheral surface of the sliding wheel (2) is provided with a wire groove (26), and the wire groove (26) is W-shaped or U-shaped.
7. The automatic accomodate arrangement box of ECG guardianship line of leading according to claim 1, characterized in that: one end of the partition board (1) is provided with a wire inlet (12), the other end of the partition board (1) is provided with a wire outlet (13), the wire inlet (12) is provided with a buckle (14), and the wire outlet (13) is provided with a pair of rollers (15).
8. The automatic accomodate arrangement box of ECG guardianship line of leading according to claim 7, characterized in that: the buckle (14) comprises a pair of mutually matched clamping blocks (141), a limiting groove (16) is formed in the wire inlet (12) of the partition plate (1), the inner end of each clamping block (141) extends into the limiting groove (16) and is connected with the inner wall of the limiting groove (16) through a spring (143), meshing teeth (142) are arranged at the outer end of each clamping block (141), the meshing teeth (142) of the two clamping blocks (141) are correspondingly meshed, and downward convex arc-shaped guide parts (144) are formed at the lower ends of the clamping blocks (141).
9. The automatic accomodate arrangement box of ECG guardianship line of leading according to claim 2, characterized in that: the partition board (1) is also provided with an electromechanical switch (17), and the electromechanical switch (17) is electrically connected with the electric motor; both ends of the first sliding groove (11) are provided with limit switches (18), and the limit switches (18) are electrically connected with the electric motor.
10. The automatic accomodate arrangement box of ECG guardianship line of leading according to claim 1, characterized in that: the box body comprises an upper cover (5) and a lower cover, wherein the upper cover (5) and the lower cover are respectively provided with a second sliding groove (51) corresponding to the first sliding groove (11).
CN202120273991.6U 2021-02-01 2021-02-01 Automatic accomodate arrangement box of ECG guardianship line of leading Active CN215348995U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202120273991.6U CN215348995U (en) 2021-02-01 2021-02-01 Automatic accomodate arrangement box of ECG guardianship line of leading

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202120273991.6U CN215348995U (en) 2021-02-01 2021-02-01 Automatic accomodate arrangement box of ECG guardianship line of leading

Publications (1)

Publication Number Publication Date
CN215348995U true CN215348995U (en) 2021-12-31

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Application Number Title Priority Date Filing Date
CN202120273991.6U Active CN215348995U (en) 2021-02-01 2021-02-01 Automatic accomodate arrangement box of ECG guardianship line of leading

Country Status (1)

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CN (1) CN215348995U (en)

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