CN217612231U - Hemodialysis mount - Google Patents

Hemodialysis mount Download PDF

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Publication number
CN217612231U
CN217612231U CN202220937922.5U CN202220937922U CN217612231U CN 217612231 U CN217612231 U CN 217612231U CN 202220937922 U CN202220937922 U CN 202220937922U CN 217612231 U CN217612231 U CN 217612231U
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CN
China
Prior art keywords
sleeve
hemodialysis
clamping
tube
mount
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Active
Application number
CN202220937922.5U
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Chinese (zh)
Inventor
梁铭媚
邓慧
吴立英
邓婉贞
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Guangzhou Women and Childrens Medical Center
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Guangzhou Women and Childrens Medical Center
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Priority to CN202220937922.5U priority Critical patent/CN217612231U/en
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Abstract

The utility model is used in the field of medical equipment, in particular to a hemodialysis fixing frame, which comprises a first supporting tube, wherein a first clamping part is slidably arranged on the first supporting tube; one end of the second supporting pipe is slidably assembled in the first supporting pipe, and a second clamping component is slidably mounted on the second supporting pipe; the position of the first positioning component relative to the second supporting pipe can be fixed through the first positioning component. The fixed hemodialyzer of centre gripping on first clamping part, the fixed hemoperfusion ware of centre gripping on second clamping part, with the height that first clamping part just can adjust hemodialyzer of sliding on first stay tube, with the height that the hemoperfusion ware just can be adjusted to second clamping part of sliding on the second stay tube, slide the second stay tube in first stay tube, just can adjust the distance of hemodialyzer and hemoperfusion ware, the height of hemodialyzer and hemoperfusion ware all can be adjusted in a flexible way like this, application scope is wider.

Description

Hemodialysis mount
Technical Field
The utility model is used for the medical equipment field especially relates to a hemodialysis mount.
Background
Hemodialysis fixed part that now clinical use is a clamping component of hemodialysis ware from taking, but if when doing hemodialysis and unite hemoperfusion, hemodialysis ware is difficult to be through the clamping component centre gripping hemoperfusion ware of taking certainly, and it is very inconvenient to use, and even hemodialyzer and hemoperfusion ware centre gripping are fixed moreover, the interval between hemodialysis ware and the hemoperfusion ware often can't be adjusted, and the flexibility ratio is lower.
SUMMERY OF THE UTILITY MODEL
The utility model aims to solve one of the technical problem that exists among the prior art at least, provide a hemodialysis mount, fixed hemodialysis ware and blood perfusion ware that can be fine, and the interval between hemodialysis ware and the blood perfusion ware is adjustable, and the flexibility ratio is higher.
The utility model provides a technical scheme that its technical problem adopted is: a hemodialysis fixing frame comprises
The blood dialyzer comprises a first support tube, at least one first clamping part and a second clamping part, wherein the first support tube is provided with the at least one first clamping part in a sliding manner, and the first clamping part is used for clamping the blood dialyzer;
one end of the second supporting pipe is slidably assembled in the first supporting pipe, at least one second clamping part is slidably installed on the second supporting pipe, and the second clamping part is used for clamping the blood perfusion device;
the position of the second supporting pipe relative to the first supporting pipe can be fixed through the first positioning part.
The technical scheme at least has the following advantages or beneficial effects: in the use, the fixed hemodialyzer of centre gripping on first clamping component, the fixed hemodialyzer of centre gripping on the second clamping component, thereby fix hemodialyzer and hemodialyzer, slide first clamping component on first stay tube and just can adjust the height of the hemodialyzer of centre gripping, slide second clamping component on the second stay tube and just can adjust the height of the hemodialyzer of centre gripping, slide the second stay tube in first stay tube, just can adjust the distance of the hemodialyzer on first stay tube and the hemodialyzer on the second stay tube, after the second stay tube slides and adjusts in place in first stay tube, it can to fix the second stay tube in first stay tube through first locating component, the flexibility of hemodialyzer and hemodialyzer is higher like this, application scope is wider.
Further as the utility model discloses technical scheme's improvement, it is equipped with first sleeve to slide on the first support tube, first clamping part is fixed on the first sleeve.
Further conduct the utility model discloses technical scheme's improvement, install second locating component on the first sleeve, first sleeve is relative the position of first support tube can pass through second locating component is fixed.
Further as the utility model discloses technical scheme's improvement, it is equipped with the second sleeve to slide on the second stay tube, second centre gripping part is fixed on the second sleeve.
Further as the utility model discloses technical scheme's improvement, install third locating component on the second sleeve, the second sleeve is relative the position of second stay tube can pass through third locating component is fixed.
Further conduct the utility model discloses technical scheme's improvement, the top of second stay tube is equipped with the trough.
Further conduct the utility model discloses technical scheme's improvement, the top of second stay tube is equipped with the flange that outwards stretches out.
Further as the utility model discloses technical scheme's improvement, first clamping part includes first ring binder and second ring binder, the one end of first ring binder with first sleeve rotates to be connected, the one end of second ring binder with first sleeve rotates to be connected, first ring binder is kept away from first telescopic one end with the second ring binder is kept away from the connection can be dismantled to first telescopic one end.
As a further improvement of the technical solution of the present invention, the second clamping member includes a third ring clamp and a fourth ring clamp, one end of the third ring clamp is connected to the second sleeve in a rotating manner, one end of the fourth ring clamp is connected to the second sleeve in a rotating manner, the third ring clamp is away from the second sleeve, and one end of the second ring clamp is away from the fourth ring clamp.
Further conduct the utility model discloses technical scheme's improvement still includes the base, the bottom installation gyro wheel of base, the second stay tube is installed on the base.
Drawings
The present invention will be further explained with reference to the accompanying drawings:
fig. 1 is a schematic structural diagram of an embodiment of the present invention.
Detailed Description
This section will describe in detail the embodiments of the present invention, preferred embodiments of the present invention are shown in the attached drawings, which are used to supplement the description of the text part of the specification with figures, so that one can intuitively and vividly understand each technical feature and the whole technical solution of the present invention, but they cannot be understood as the limitation of the protection scope of the present invention.
In the present invention, if there is a description of directions (up, down, left, right, front and back), it is only for convenience of description of the technical solution of the present invention, and it is not intended to indicate or imply that the technical features indicated must have a specific orientation, be constructed and operated in a specific orientation, and thus should not be construed as limiting the present invention.
In the utility model, the meaning of a plurality of is one or more, the meaning of a plurality of is more than two, and the meaning of more than two is understood as not including the number; "above", "below", "within" and the like are understood to include the present numbers. In the description of the present invention, if there is any description of "first" and "second" only for the purpose of distinguishing technical features, it is not to be understood as indicating or implying relative importance or implicitly indicating the number of indicated technical features or implicitly indicating the precedence of the indicated technical features.
In the present invention, unless otherwise explicitly defined, the terms "setting," "installing," "connecting," and the like are to be understood in a broad sense, and may be directly connected or indirectly connected through an intermediate medium, for example; can be fixedly connected, can also be detachably connected and can also be integrally formed; may be mechanically connected, may be electrically connected or may be capable of communicating with each other; either internal to the two elements or in an interactive relationship of the two elements. The technical skill in the art can reasonably determine the specific meaning of the above words in the present invention by combining the specific contents of the technical solution.
Hemodialysis fixed part that now uses clinically is a clamping component of hemodialysis ware from taking, but just need fix a plurality of cerini dialysers simultaneously when the operation that needs to use a plurality of cerini dialysers such as the combined hemoperfusion of hemodialysis, at this moment fixes very inconveniently through the clamping component from taking, and after clamping component fixed hemodialyzer in addition, interval between each hemodialyzer often can't be adjusted, and the flexibility ratio is lower.
In order to solve the technical problem, the utility model provides a hemodialysis mount.
Referring to fig. 1, the hemodialysis fixture includes a first support tube 1, a second support tube 2, and a first positioning member 3.
At least one first clamping part 10 is arranged on the first supporting tube 1 in a sliding way, and the first clamping part 10 is used for clamping a hemodialyzer.
Specifically, the first supporting tube 1 is a square tube structure, and can be a circular tube or other polygonal tube structures according to actual requirements.
In some embodiments, a first clamping member 10 is mounted on the first support tube 1.
Of course, two or more first holding members 10 may be attached to the first support tube 1 as required, so that more hemodialyzers can be held.
One end of the second support tube 2 is slidably fitted in the first support tube 1, and at least one second clamping part 20 is slidably mounted on the second support tube 2, and the second clamping part 20 is used for clamping the blood perfusion device.
Specifically, the second supporting tube 2 is a square tube structure, and can be configured to be a round tube or other polygonal tube structure adapted to the first supporting tube 1 according to actual requirements.
In some embodiments, a second clamping member 20 is mounted on the second support tube 2.
Of course, two or more second clamping members 20 may be mounted on the second support tube 2 as required, so that more hemoperfusion cartridges may be clamped.
The position of the second support tube 2 relative to the first support tube 1 can be fixed by means of a first positioning element 3.
Specifically, first locating part 3 is positioning bolt, is equipped with the screw hole on the first stay tube 1, and first locating part 3 wears to establish and connects in the screw hole, through rotating first locating part 3 for the tip of first locating part 3 supports the pipe wall of tightly to second stay tube 2, makes second stay tube 2 fix in first stay tube 1, thereby plays the effect of fixing a position second stay tube 2.
In the use, the hemodialyzer is clamped and fixed on the first clamping component 10, the hemodialyzer is clamped and fixed on the second clamping component 20, so that the hemodialyzer and the hemodialyzer are fixed, the height of the hemodialyzer clamped by the first clamping component 10 can be adjusted by sliding the first clamping component 10 on the first supporting tube 1, the height of the hemodialyzer clamped by the second clamping component 20 can be adjusted by sliding the second clamping component 20 on the second supporting tube 2, the second supporting tube 2 slides in the first supporting tube 1, the distance between the hemodialyzer on the first supporting tube 1 and the hemodialyzer on the second supporting tube 2 can be adjusted, after the second supporting tube 2 is slid in place in the first supporting tube 1, the second supporting tube 2 is fixed in the first supporting tube 1 through the first positioning component 3, so that the distance between the hemodialyzer and the hemodialyzer can be adjusted flexibly, and the application range is wider.
In some embodiments, the first support tube 1 is slidably fitted with a first sleeve 11, and the first clamping member 10 is fixed to the first sleeve 11.
Specifically, first sleeve 11 is the square sleeve structure of the first supporting tube 1 of adaptation, and of course first sleeve 11 also can set up to the circular sleeve or the polygon sleeve structure of the first supporting tube 1 of adaptation, and first sleeve 11 overlaps on first supporting tube 1 and can slide on first supporting tube 1, and first clamping component 10 transversely fixes on first sleeve 11, can drive first clamping component 10 through sliding first sleeve 11 and slide.
In order to position the first clamping member 10 on the first support tube 1, in some embodiments, the position of the first sleeve 11 relative to the first support tube 1 can be fixed by the second positioning member 12.
Specifically, the second positioning component 12 is a positioning bolt, a threaded hole is formed in the first sleeve 11, the second positioning component 12 is arranged in the threaded hole of the first sleeve 11 in a penetrating mode and is in threaded connection, and the end portion of the second positioning component 12 is abutted to the pipe wall of the first supporting pipe 1 by rotating the second positioning component 12, so that the first sleeve 11 and the first supporting pipe 1 are fixed through the second positioning component 12, and the first clamping component 10 is positioned on the first supporting pipe 1.
In other embodiments, the second support tube 2 is slidably fitted with a second sleeve 21, and the second clamping member 20 is fixed to the second sleeve 21.
Specifically, the second sleeve 21 is a square sleeve structure adapted to the second support tube 2, although the second sleeve 21 may also be a circular sleeve or a polygonal sleeve structure adapted to the second support tube 2, the second sleeve 21 is sleeved on the second support tube 2 and can slide on the second support tube 2, the second clamping part 20 is transversely fixed on the second sleeve 21, and the second clamping part 20 can be driven to slide by sliding the second sleeve 21.
In order to position the second holding part 20 on the second support tube 2, a third positioning part 22 is attached to the second sleeve 21, and the position of the second sleeve 12 relative to the second support tube 2 can be fixed by means of the third positioning part 22.
Specifically, the third positioning component 22 is a positioning bolt, a threaded hole is formed in the second sleeve 21, the third positioning component 22 is arranged in the threaded hole of the second sleeve 21 in a penetrating manner and is in threaded connection, and the end of the third positioning component 22 abuts against the pipe wall of the second support pipe 2 by rotating the third positioning component 22, so that the second sleeve 21 and the second support pipe 2 are fixed through the third positioning component 22, and the second clamping component 20 is positioned on the second support pipe 2.
In some embodiments, the first clamping member 10 includes a first ring clamp 100 and a second ring clamp 110, one end of the first ring clamp 100 is rotatably connected to the first sleeve 11, one end of the second ring clamp 110 is rotatably connected to the first sleeve 11, and one end of the first ring clamp 100 remote from the first sleeve 11 is detachably connected to one end of the second ring clamp 110 remote from the first sleeve 11.
Specifically, first ring clamp 100 and second ring clamp 110 are semi-annular structures, the right side at first sleeve 11 is installed through pivot or hinge horizontal rotation to the one end of first ring clamp 100, the left side at first sleeve 11 is installed through pivot or hinge horizontal rotation to the one end of second ring clamp 110, the one end that first sleeve 11 was kept away from to first ring clamp 100 is equipped with first connecting plate 101, the vertical setting of first connecting plate 101, be equipped with first through-hole on first connecting plate 101, the one end that first sleeve 11 was kept away from to second ring clamp 110 is equipped with second connecting plate 111, the vertical setting of second connecting plate 111, be equipped with the second through-hole on second connecting plate 111, wear to establish first connecting bolt 13 then through nut locking in first through-hole and the second through-hole.
When it is desired to clamp a hemodialyzer, the first and second ring clamps 100, 110 are rotated open, the hemodialyzer is placed between the first and second ring clamps 100, 110, the first and second ring clamps 100, 110 are then rotated closed so that the first through holes in the first connecting plate 101 align with the second through holes in the second connecting plate 111, and the first connecting bolts 13 are then screwed through the first and second through holes so that the hemodialyzer is clamped between the first and second ring clamps 100, 110.
In some embodiments, the second clamping member 20 includes a third ring clamp 200 and a fourth ring clamp 210, one end of the third ring clamp 200 is rotatably coupled to the second sleeve 21, one end of the fourth ring clamp 210 is rotatably coupled to the second sleeve 21, and one end of the third ring clamp 200 remote from the second sleeve 21 is detachably coupled to one end of the fourth ring clamp 210 remote from the second sleeve 21.
Specifically, third ring clamp 200 and fourth ring clamp 210 are semi-annular structure, the one end of third ring clamp 200 is installed on the right side of second sleeve 21 through pivot or hinge horizontal rotation, the one end of fourth ring clamp 210 is installed on the left side of second sleeve 21 through pivot or hinge horizontal rotation, the one end that third ring clamp 200 kept away from second sleeve 21 is equipped with third connecting plate 201, the vertical setting of third connecting plate 201, be equipped with the third through-hole on third connecting plate 201, the one end that second sleeve 21 was kept away from to fourth ring clamp 210 is equipped with fourth connecting plate 211, the vertical setting of fourth connecting plate 211, be equipped with the fourth through-hole on fourth connecting plate 211, wear to establish second connecting bolt 23 then through nut locking in third through-hole and the fourth through-hole.
When it is desired to clamp the blood perfusion apparatus, the third ring clamp 200 and the fourth ring clamp 210 are rotated open, the blood perfusion apparatus is placed between the third ring clamp 200 and the fourth ring clamp 210, then the third ring clamp 200 and the fourth ring clamp 210 are rotated closed, the third through hole on the third connecting plate 201 is aligned with the fourth through hole on the fourth connecting plate 211, and then the second connecting bolt 23 is screwed through the third through hole and the fourth through hole, so that the blood perfusion apparatus is clamped between the third ring clamp 200 and the fourth ring clamp 210.
It should be noted that the first positioning member 3 is disposed above the first supporting tube 1, so that the first positioning member 3 can limit the first sleeve 11, and prevent the first sleeve 11 from sliding out of the top of the first supporting tube 1.
In order to prevent the second sleeve 21 from slipping out of the top of the second support tube 2, in some embodiments the top of the second support tube 2 is provided with an outwardly extending rib 24.
Specifically, the flange 24 is a horizontal plate structure extending out of the left side and the right side of the top of the first support tube 1, and the second sleeve 21 can be limited by the flange 24, so that the second sleeve 21 is prevented from sliding out of the top of the second support tube 2.
In order to facilitate the movement of the device, in some embodiments, the hemodialysis fixture further includes a base 4, rollers 40 are mounted on the bottom of the base 4, and the second support tube 2 is mounted on the base 4.
Specifically, the second supporting tube 2 is vertically arranged in the middle of the base 4, and the whole device can be driven to move by moving the base 4.
In order to facilitate the clamping of the lines connecting the hemodialyzer and the hemoperfusion device, in some embodiments, a wiring groove 25 is formed at the top of the second support tube 2, and the lines connecting the hemodialyzer and the hemoperfusion device can be clamped in the wiring groove 25 and fixed by means of an adhesive tape or the like, so as to prevent the lines connecting the hemodialyzer and the hemoperfusion device from scattering.
It should be noted that, in the present application, the first clamping member 10 clamps the hemodialyzer, and the second clamping member 20 clamps the hemodialyzer, and those skilled in the art can still change the clamping sequence without violating the spirit of the present invention, wherein the first clamping member 10 clamps the hemodialyzer, and the second clamping member 20 clamps the hemodialyzer.
The present invention is not limited to the above embodiments, and those skilled in the art can make equivalent modifications or substitutions without departing from the spirit of the present invention, and such equivalent modifications or substitutions are included in the scope of the present invention defined by the claims.

Claims (10)

1. A hemodialysis mount which characterized in that: comprises that
The blood dialyzer comprises a first support tube, at least one first clamping component and a second clamping component, wherein the first support tube is provided with the at least one first clamping component in a sliding mode and is used for clamping the blood dialyzer;
one end of the second supporting pipe is slidably assembled in the first supporting pipe, at least one second clamping part is slidably installed on the second supporting pipe, and the second clamping part is used for clamping the blood perfusion device;
the position of the second supporting pipe relative to the first supporting pipe can be fixed through the first positioning part.
2. The hemodialysis mount of claim 1, wherein: the first supporting tube is slidably assembled with a first sleeve, and the first clamping part is fixed on the first sleeve.
3. The hemodialysis mount of claim 2, wherein: and a second positioning part is arranged on the first sleeve, and the position of the first sleeve relative to the first supporting pipe can be fixed by the second positioning part.
4. The hemodialysis mount of claim 1, wherein: and a second sleeve is slidably assembled on the second supporting pipe, and the second clamping part is fixed on the second sleeve.
5. The hemodialysis mount of claim 4, wherein: and a third positioning part is arranged on the second sleeve, and the position of the second sleeve relative to the second supporting tube can be fixed through the third positioning part.
6. The hemodialysis mount of claim 1, wherein: and a wiring groove is formed in the top of the second supporting tube.
7. The hemodialysis mount of claim 4, wherein: and the top of the second supporting pipe is provided with a flange extending outwards.
8. The hemodialysis mount of claim 2, wherein: first centre gripping part includes first ring binder and second ring binder, the one end of first ring binder with first sleeve rotates to be connected, the one end of second ring binder with first sleeve rotates to be connected, first ring binder is kept away from first sleeve's one end with the second ring binder is kept away from first sleeve's one end can be dismantled and connect.
9. The hemodialysis mount of claim 4, wherein: the second clamping part comprises a third annular clamp and a fourth annular clamp, one end of the third annular clamp is rotatably connected with the second sleeve, one end of the fourth annular clamp is rotatably connected with the second sleeve, and one end of the third annular clamp far away from the second sleeve is detachably connected with one end of the fourth annular clamp far away from the second sleeve.
10. The hemodialysis mount of claim 1, wherein: the roller is installed at the bottom of the base, and the second supporting tube is installed on the base.
CN202220937922.5U 2022-04-21 2022-04-21 Hemodialysis mount Active CN217612231U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202220937922.5U CN217612231U (en) 2022-04-21 2022-04-21 Hemodialysis mount

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202220937922.5U CN217612231U (en) 2022-04-21 2022-04-21 Hemodialysis mount

Publications (1)

Publication Number Publication Date
CN217612231U true CN217612231U (en) 2022-10-21

Family

ID=83647947

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202220937922.5U Active CN217612231U (en) 2022-04-21 2022-04-21 Hemodialysis mount

Country Status (1)

Country Link
CN (1) CN217612231U (en)

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