CN113975036A - Medical stent capable of being recycled in vitro and using method thereof - Google Patents

Medical stent capable of being recycled in vitro and using method thereof Download PDF

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Publication number
CN113975036A
CN113975036A CN202111118661.0A CN202111118661A CN113975036A CN 113975036 A CN113975036 A CN 113975036A CN 202111118661 A CN202111118661 A CN 202111118661A CN 113975036 A CN113975036 A CN 113975036A
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CN
China
Prior art keywords
rotating
fixedly connected
circular plate
handle
medical stent
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Pending
Application number
CN202111118661.0A
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Chinese (zh)
Inventor
赵春宁
邵芝霞
赵群录
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Shaoxing Fuyuan Biotechnology Co ltd
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Shaoxing Fuyuan Biotechnology Co ltd
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Application filed by Shaoxing Fuyuan Biotechnology Co ltd filed Critical Shaoxing Fuyuan Biotechnology Co ltd
Priority to CN202111118661.0A priority Critical patent/CN113975036A/en
Publication of CN113975036A publication Critical patent/CN113975036A/en
Pending legal-status Critical Current

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    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61GTRANSPORT, PERSONAL CONVEYANCES, OR ACCOMMODATION SPECIALLY ADAPTED FOR PATIENTS OR DISABLED PERSONS; OPERATING TABLES OR CHAIRS; CHAIRS FOR DENTISTRY; FUNERAL DEVICES
    • A61G12/00Accommodation for nursing, e.g. in hospitals, not covered by groups A61G1/00 - A61G11/00, e.g. trolleys for transport of medicaments or food; Prescription lists

Abstract

The invention discloses a medical support capable of being recycled in vitro and a using method thereof, the medical support comprises a medical support body, a first circular plate is arranged inside the medical support body, a second circular plate is arranged at the bottom of the first circular plate, a cylinder is fixedly connected to the middle of the top end of the second circular plate, a clamping assembly is arranged at the top of the first circular plate, a moving assembly is arranged at the bottom of the second circular plate, a lifting assembly is arranged at the back of a handle, a limiting assembly is arranged at the back of the handle, and a braking assembly is arranged at two sides of a gear. The invention has the beneficial effects that: according to the invention, by utilizing the design of the clamping assembly, the clamping assembly is matched with each other through the two C-shaped clamping blocks, and under the action of the fixed shaft and the rotating shaft and the transmission of the square connecting rod, the distance between the two C-shaped clamping blocks is convenient to change, so that the clamping effect is achieved, and the medical bracket is convenient to clamp and place the arm of a user.

Description

Medical stent capable of being recycled in vitro and using method thereof
Technical Field
The invention relates to a medical stent, in particular to a medical stent capable of being recycled in vitro and a use method thereof, belonging to the technical field of medical instrument application.
Background
With the development of human science and technology and economy, medical instruments are widely used, which means instruments, equipment, appliances, materials or other articles used for human bodies independently or in combination, including required software and supports, wherein the supports include supports of various medical instruments, upper aligning supports, lower aligning supports and the like, and are used for the body surface and the body, and the means participate and play a certain auxiliary role.
The medical support that can retrieve in vitro of current plays the effect of support usually, can be used for placing user's arm, but does not possess and fix the arm centre gripping, is not convenient for carry out the winding bandage to user's arm, does not fix and probably cause the secondary injury when winding bandage, because the size diverse of user's arm, medical support adopts the size of fixed mode needs according to the arm to the selection accords with centre gripping opening size and conveniently fixes the arm.
Disclosure of Invention
The present invention has been made to solve the above problems, and an object of the present invention is to provide an extracorporeally recyclable medical stent and a method of using the same.
The invention realizes the purpose through the following technical scheme, and the medical stent capable of being recycled in vitro and the use method thereof comprise the following steps:
the medical stent comprises a medical stent body, wherein a first circular plate is arranged inside the medical stent body, a second circular plate is arranged at the bottom of the first circular plate, and a cylinder is fixedly connected to the middle of the top end of the second circular plate;
the clamping assembly is arranged at the top of the first circular plate and comprises two C-shaped clamping blocks, second fixing shafts are arranged on the front surfaces of the two C-shaped clamping blocks, and second rotating shafts are arranged on the opposite sides of the two second fixing shafts;
the moving assembly is arranged at the bottom of the second circular plate and comprises a box body, a handle is arranged in the box body, a first rotating rod, a second rotating rod and a third rotating rod are arranged on the back of the handle respectively, the first rotating rod and the handle are rotatably connected through a rotating pin, the second rotating rod and the handle are rotatably connected through a rotating pin, and the third rotating rod and the handle are hinged through a rotating pin;
the lifting component is arranged on the back of the handle;
the limiting assembly is arranged on the back of the handle and comprises a connecting column, the back of the connecting column is fixedly connected with a connecting rod, the back of the connecting rod is fixedly connected with a round column, and the back of the round column is fixedly connected with a rotating wheel;
the brake assembly is arranged on two sides of the rotating wheel and comprises a first arc-shaped fixture block, a first fixing column is arranged inside the first arc-shaped fixture block, and a torsion spring is sleeved outside the first fixing column.
Preferably, the two C-shaped clamping blocks are internally provided with square connecting rods, the bottoms of the two square connecting rods are provided with rotating blocks, the front surfaces of the rotating blocks are provided with first fixing shafts, and the opposite sides of the first fixing shafts are provided with first rotating shafts.
Preferably, the back of first dwang rotates and is connected with first rotation post, the back of second dwang rotates and is connected with the second rotation post, the back of third dwang rotates and is connected with the cylinder pole.
Preferably, the lifting assembly comprises an upright rod, the upright rod is fixedly connected with the cylindrical rod, a moving block is fixedly connected to the bottom of the upright rod, and the moving block is connected with the T-shaped groove in a sliding penetrating mode.
Preferably, the external gear of the rotating wheel is engaged with a second arc-shaped fixture block, a second fixing column is arranged inside the second arc-shaped fixture block, and the second fixing column is fixedly connected with the box body.
Preferably, a T-shaped groove is formed in the box body, the T-shaped groove is fixedly connected with the first rotating column, and the T-shaped groove is fixedly connected with the second rotating column.
Preferably, the top end of the cylinder is fixedly connected with a fixing rod, and the cylinder is fixedly connected with the vertical rod.
Preferably, the inside fixedly connected with dwang of running wheel, dwang and box fixed connection.
Preferably, the handle slides in the inside in T-shaped groove, handle and spliced pole fixed connection, one side fixedly connected with C shape connecting rod of torsional spring.
Preferably, the top end of the cylinder is fixedly connected with the bottom end of the second circular plate, and two arc blocks are arranged at the opposite ends of the first circular plate and the second circular plate.
The invention has the beneficial effects that:
firstly, the invention utilizes the design of the clamping component, the clamping component is mutually matched through the two C-shaped clamping blocks, and under the action of the fixed shaft and the rotating shaft, the distance between the two C-shaped clamping blocks is convenient to change through the transmission of the square connecting rod, so that the clamping effect is achieved, and the medical bracket is convenient to clamp the arm of a user.
The invention utilizes the design of the moving assembly, the moving assembly is matched with the three rotating rods through the handle, when the handle is forced to move, the rotating rods can rotate in an arc line under the action of the rotating pins to drive the cylindrical rod to move in the vertical direction, so that the moving effect is achieved, and the handle can conveniently move in the vertical direction in the box body.
Thirdly, the lifting assembly is matched with the moving block through the vertical rod by utilizing the design of the lifting assembly, the moving block slides in the vertical direction in the T-shaped groove under the action of the moving assembly, so that the lifting or descending effect is achieved, and the vertical rod is matched with the cylindrical rod, so that the moving block can drive the two circular plates to perform lifting motion conveniently.
The invention utilizes the design of the limiting assembly, the limiting assembly is matched with the connecting column through the handle, the handle is stressed to drive the round column to move, and under the action of the rotating wheel, the moving range of the handle can be limited through the matching and mutual meshing of the two arc-shaped clamping blocks and the teeth of the rotating wheel, so that the handle is in a fixed state when moving to a certain required position.
The braking assembly is matched with the torsion spring through the arc-shaped clamping blocks, the two arc-shaped clamping blocks move out of the gap between the two teeth under the rotation of the rotating wheel and then move to the gap between the next tooth under the action of the torsion spring, and the arc-shaped clamping blocks are meshed with the teeth to limit the rotation of the rotating wheel, so that the braking effect is achieved.
Drawings
FIG. 1 is a schematic structural view of a medical stent according to the present invention;
FIG. 2 is a schematic view of the overall structure of the medical stent holder of the present invention;
FIG. 3 is a cross-sectional view of a medical stent housing of the present invention;
FIG. 4 is a schematic view of a clamp assembly according to the present invention;
FIG. 5 is a schematic view of a moving assembly according to the present invention;
FIG. 6 is a schematic view of a spacing assembly according to the present invention;
FIG. 7 is an enlarged view of the structure at A in FIG. 6 according to the present invention;
fig. 8 is a schematic structural view of the brake assembly of the present invention.
In the figure: 1. a medical stent body; 2. a first circular plate; 201. a second circular plate; 3. a cylinder; 301. Erecting a rod; 302. a moving block; 303. fixing the rod; 4. rotating the block; 401. an arc block; 402. a first rotating shaft; 403. a first fixed shaft; 5. a square connecting rod; 6. a C-shaped clamping block; 601. a second rotating shaft; 602. a second fixed shaft; 7. a box body; 701. a handle; 702. a first rotating lever; 703. a second rotating lever; 704. a third rotating rod; 705. a cylindrical rod; 706. a first rotating column; 707. a second rotating cylinder; 708. a T-shaped slot; 709. connecting columns; 710. a connecting rod; 711. a circular column; 712. a rotating wheel; 713. a first arc-shaped fixture block; 714. a first fixed column; 715. a second arc-shaped fixture block; 716. a second fixed column; 717. a C-shaped connecting rod; 718. a torsion spring.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. 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. 1-8, an in vitro recoverable medical stent and method of use thereof, comprising:
the medical stent comprises a medical stent body 1, wherein a cylinder body is fixedly connected to the bottom end of the medical stent body 1, a cross block is fixedly connected to the bottom end of the cylinder body, the medical stent body 1 is supported, the stability is improved, a first circular plate 2 is arranged inside the medical stent body 1, the first circular plate 2 is circular, the first circular plate 2 and a second circular plate 201 are matched with each other to fix a rotating block 4 conveniently, so that an arc block 401 can move vertically between the first circular plate and the second circular plate, the second circular plate 201 is arranged at the bottom of the first circular plate 2, the top end of a cylinder 3 is fixedly connected with the bottom end of the second circular plate 201, two arc blocks 401 are arranged at one end, opposite to the first circular plate 2 and the second circular plate 201, the second circular plate 201 and the first circular plate 2 are the same in size, the cylinder 3 penetrates through the middle parts of the two and is fixedly connected with the two, so that an arc groove is formed between the two, and the arc blocks 401 are placed inside the arc groove, the middle part of the top end of the second circular plate 201 is fixedly connected with a cylinder 3, the cylinder 3 is cylindrical, plays a role in connection, conducts when stressed, and facilitates the movement of the first circular plate 2 and the second circular plate 201 under stress;
the clamping assembly is arranged at the top of the first circular plate 2 and comprises two C-shaped clamping blocks 6, square grooves are formed in opposite sides of the two C-shaped clamping blocks 6 and used for placing square connecting rods 5, the two C-shaped clamping blocks 6 are respectively connected with the two square connecting rods 5 through rotation of second rotating shafts 601, when a force is applied, the two C-shaped clamping blocks 6 are convenient to clamp, two round holes are formed in the front faces and the back faces of the two C-shaped clamping blocks 6 and used for installing second fixing shafts 602 and second rotating shafts 601, the second rotating shafts 601 are stressed to rotate inside the round holes, the second fixing shafts 602 are arranged on the front faces of the two C-shaped clamping blocks 6, one corners of the two C-shaped clamping blocks 6 are fixed by the two second fixing shafts 602 and used for facilitating clamping of the two C-shaped clamping blocks 6, the second rotating shafts 601 are arranged on opposite sides of the two second fixing shafts 602, the second rotating shaft 601 is cylindrical, so that the C-shaped fixture block 6 and the square connecting rod 5 can move in a matched manner;
the moving assembly is arranged at the bottom of the second circular plate 201 and comprises a box body 7, four corners of the top end of the box body 7 are respectively and fixedly connected with supporting columns, the top ends of the four supporting columns are respectively and fixedly connected with a circular ring plate, the box body 7 is cuboid and convenient to place and increases stability, the box body 7 plays a role of protecting a handle 701 and prevents the joint of the handle 701 from being damaged, so that the moving assembly cannot be used due to failure, the moving distance of the moving handle 701 is limited, a square opening is formed in the top end of the box body 7, the vertical rod 301 is convenient to move under stress, the square opening is communicated with a T-shaped groove 708 and is convenient to move the moving block 302, the vertical rod 301 is matched with the moving block 302 for use and is convenient to push the first circular plate 2 and the second circular plate 201 to move, the handle 701 is arranged inside the box body 7, the handle 701 is cuboid and is convenient to hold, the handle 701 is used as a switch of a started medical support, the handle 701 slides in the T-shaped groove 708, the moving block 302 is conveniently pushed to move by using the handle 701, a first rotating rod 702, a second rotating rod 703 and a third rotating rod 704 are respectively arranged on the back of the handle 701, when the medical support is stressed, the three rotating rods move along with the handle 701, the first rotating rod 702 is rotatably connected with the handle 701 through a rotating pin and is convenient to rotate, the second rotating rod 703 is rotatably connected with the handle 701 through the rotating pin, the third rotating rod 704 is hinged with the handle 701 through the rotating pin, the three rotating rods are matched with the rotating pin and move along with the handle 701 under stress;
the lifting assembly is arranged on the back of the handle 701, and under the action of the moving assembly, the lifting assembly is convenient for lifting or lowering the moving block 302, so that the first circular plate 2 and the second circular plate 201 can move up or down along with the cylinder 3;
the limiting component is arranged on the back of the handle 701 and comprises a connecting column 709, the connecting column 709 is cylindrical, the handle 701 is fixedly connected with the connecting column 709, the back of the connecting column 709 is fixedly connected with a connecting rod 710, when the force is applied, the connecting rod 710 moves along with the connecting column 709 under the force, the back of the connecting rod 710 is fixedly connected with the round column 711, when the force is applied, the circular column 711 moves along with the connecting column 709, the back of the circular column 711 is fixedly connected with the rotating wheel 712, the outer wall of the rotating wheel 712 is provided with a plurality of teeth, the teeth are used for being matched with the first arc-shaped fixture block 713 and the second arc-shaped fixture block 715, the moving distance of the handle 701 is limited through the meshing of the teeth, when a force is applied, the rotating wheel 712 rotates along with the connecting column 709, a rotating rod is fixedly connected inside the rotating wheel 712, so that the rotating wheel 712 rotates under the force, and the rotating rod is fixedly connected with the box body 7;
the braking assembly is arranged on two sides of the rotating wheel 712, the braking assembly comprises a first arc-shaped clamping block 713, the first arc-shaped clamping block 713 is crescent-shaped, the tip of the first arc-shaped clamping block 713 is matched with a gap between two teeth, the movement of the rotating wheel 712 can be limited, a first fixing column 714 is arranged inside the first arc-shaped clamping block 713, the first fixing column 714 is cylindrical and plays a role in supporting the first arc-shaped clamping block 713, the first arc-shaped clamping block 713 is convenient to rotate on the outer wall of the first fixing column 714 under the stress, a torsion spring 718 is sleeved outside the first fixing column 714, one side of the torsion spring 718 is fixedly connected with a C-shaped connecting rod 717, the torsion spring 718 plays a role in resetting, the torsion spring 718 is stressed to contract and loses external force to reset, when the external force is applied, the teeth are mutually meshed with the first arc-shaped clamping block 713, the first arc-shaped clamping block 713 is applied with the rotating acting force of the rotating wheel 712, the first arc-shaped fixture block 713 is driven to rotate on the outer wall of the first fixing column 714, the torsion spring 718 rotates along with the first arc-shaped fixture block 713, the torsion spring 718 contracts under the action of rotating force, when the first arc-shaped fixture block 713 moves out of a gap between two teeth, the torsion spring 718 loses external force, the torsion spring 718 drives the first arc-shaped fixture block 713 to move towards the gap between the next tooth, the first arc-shaped fixture block 713 moves to the inside of the gap under the force, the external gear of the rotating wheel 712 is meshed with the second arc-shaped fixture block 715, the second fixing column 716 is arranged inside the second arc-shaped fixture block 715, and the second fixing column 716 is fixedly connected with the box body 7.
The inside of two C shape fixture blocks 6 all is provided with square connecting rod 5, square connecting rod 5 plays driven effect, be convenient for two C shape fixture blocks 6 to receive external force to remove, the bottom of two square connecting rod 5 all is provided with turning block 4, the front of two turning blocks 4 all is provided with first fixed axle 403, first fixed axle 403 plays the one corner of fixed C shape fixture block 6, under square connecting rod 5's effect, be convenient for C shape fixture block 6 to press from both sides tightly, all be provided with first pivot axle 402 of one side that two first fixed axles 403 are opposite, when the atress, be convenient for turning block 4 to follow first plectane 2 and second plectane 201 and move, one side fixedly connected with arc piece 401 that two first pivot axles 402 are opposite, arc piece 401 follows two plectanes and moves, thereby make square connecting rod 5 and arc piece 401 move relatively.
The back of the first rotating rod 702 is connected with a first rotating column 706 in a rotating mode, the first rotating column 706 facilitates the rotation of the first rotating rod 702 under stress, the back of the second rotating rod 703 is connected with a second rotating column 707 in a rotating mode, the T-shaped groove 708 is fixedly connected with the first rotating column 706, the T-shaped groove 708 is fixedly connected with the second rotating column 707, the second rotating column 707 is matched with the first rotating column 706 in a rotating mode, the first rotating rod 702 and the second rotating rod 703 are facilitated to rotate under stress, the back of the third rotating rod 704 is connected with a cylindrical rod 705 in a rotating mode, the cylindrical rod 705 plays a connecting role, and when the handle 701 moves under stress, the cylindrical rod 705 drives the vertical rod 301 to move.
Lifting unit includes pole setting 301, pole setting 301 and cylindric pole 705 fixed connection, the top fixedly connected with dead lever 303 of cylinder 3, be convenient for fix first plectane 2 and second plectane 201, cylinder 3 and pole setting 301 fixed connection, when the atress, cylinder 3 follows pole setting 301 and removes, the bottom fixedly connected with movable block 302 of pole setting 301, movable block 302 is the cuboid, T-slot 708 has been seted up to the inside of box 7, movable block 302 and T-slot 708 slide and alternate and be connected, when the atress, movable block 302 slides in the inside of T-slot 708.
When the medical stent body 1 is used, the handle 701 is firstly held by hands, the handle 701 vertically moves downwards in the direction away from the cylinder 3, the first rotating rod 702 moves along with the handle 701, the second rotating rod 703 moves along with the handle 701, and the third rotating rod 704 moves along with the handle 701;
the vertical rod 301 vertically moves upwards along with the third rotating rod 704 in the direction far away from the moving block 302, the moving block 302 vertically moves upwards along with the vertical rod 301, the cylinder 3 vertically moves upwards along with the vertical rod 301, the second circular plate 201 vertically moves upwards along with the cylinder 3, the first circular plate 2 vertically moves upwards along with the cylinder 3, the two circular arc blocks 401 vertically move upwards along with the first circular plate 2, the two rotating blocks 4 vertically move downwards along with the two circular arc blocks 401, the two square connecting rods 5 vertically move downwards along with the two rotating blocks 4, the two C-shaped clamping blocks 6 vertically move upwards along with the two square connecting rods 5, and the distance between the two C-shaped clamping blocks 6 is increased;
the connecting column 709 vertically moves downwards along with the handle 701, the connecting column 710 vertically moves downwards along with the connecting column 709, the circular column 711 vertically moves downwards along with the connecting column 710, the rotating wheel 712 rotates anticlockwise along with the circular column 711, the first arc-shaped fixture block 713 rotates anticlockwise along with the rotating wheel 712, the second arc-shaped fixture block 715 rotates anticlockwise along with the rotating wheel 712, the torsion spring 718 contracts under the action of the rotation of the rotating wheel 712, when the first arc-shaped fixture block 713 and the second arc-shaped fixture block 715 rotate to the outside of the teeth of the rotating wheel 712, the torsion spring 718 loses external force and performs reset motion, and the torsion spring 718 drives the first arc-shaped fixture block 713 and the second arc-shaped fixture block 715 to move to the inside of the teeth of the rotating wheel 712, so that the rotation of the rotating wheel 712 is limited;
after the distance between the two C-shaped clamping blocks 6 is increased, the arm of a user is placed between the two C-shaped clamping blocks 6, the handle 701 is held by hand with force to move vertically upwards, the first rotating rod 702 moves along with the handle 701, the second rotating rod 703 moves along with the handle 701, the third rotating rod 704 moves along with the handle 701, the vertical rod 301 moves vertically downwards along with the third rotating rod 704 towards the direction close to the moving block 302, the moving block 302 moves vertically downwards along with the vertical rod 301, the cylinder 3 moves vertically downwards along with the vertical rod 301, the second circular plate 201 moves vertically downwards along with the cylinder 3, the first circular plate 2 moves vertically downwards along with the cylinder 3, the two circular arc blocks 401 move vertically downwards along with the first circular arc block 2, the two rotating blocks 4 move vertically upwards along with the two circular arc blocks 401, the two square connecting rods 5 move vertically upwards along with the two rotating blocks 4, and the two C-shaped clamping blocks 6 move vertically downwards along with the two square connecting rods 5, the distance between the two C-shaped clamping blocks 6 is reduced, the connecting column 709 vertically moves upwards along with the handle 701, the connecting rod 710 vertically moves upwards along with the connecting column 709, the circular column 711 vertically moves upwards along with the connecting rod 710, the rotating wheel 712 rotates clockwise along with the circular column 711, the torsion spring 718 contracts under the action of the rotation of the rotating wheel 712, the first arc-shaped clamping block 713 rotates clockwise along with the rotating wheel 712, the second arc-shaped clamping block 715 rotates clockwise along with the rotating wheel 712, when the first arc-shaped clamping block 713 and the second arc-shaped clamping block 715 rotate to the outside of the teeth of the rotating wheel 712, the torsion spring 718 loses external force and performs reset motion, the torsion spring 718 drives the first arc-shaped clamping block 713 and the second arc-shaped clamping block 715 to move to the inside of the teeth of the rotating wheel 712, so that the rotation of the rotating wheel 712 is limited, and the arms of a user are clamped by the two C-shaped clamping blocks 6.
Furthermore, it should be understood that although the present description refers to embodiments, not every embodiment may contain only a single embodiment, and such description is for clarity only, and those skilled in the art should integrate the description, and the embodiments may be combined as appropriate to form other embodiments understood by those skilled in the art.

Claims (10)

1. An extracorporeal recyclable medical stent and a method of using the same, characterized by comprising:
the medical stent comprises a medical stent body (1), wherein a first circular plate (2) is arranged inside the medical stent body (1), a second circular plate (201) is arranged at the bottom of the first circular plate (2), and a cylinder (3) is fixedly connected to the middle of the top end of the second circular plate (201);
the clamping assembly is arranged at the top of the first circular plate (2) and comprises two C-shaped clamping blocks (6), second fixing shafts (602) are arranged on the front surfaces of the two C-shaped clamping blocks (6), and second rotating shafts (601) are arranged on opposite sides of the two second fixing shafts (602);
the moving assembly is arranged at the bottom of the second circular plate (201) and comprises a box body (7), a handle (701) is arranged inside the box body (7), a first rotating rod (702), a second rotating rod (703) and a third rotating rod (704) are arranged on the back face of the handle (701) respectively, the first rotating rod (702) is rotatably connected with the handle (701) through a rotating pin, the second rotating rod (703) is rotatably connected with the handle (701) through a rotating pin, and the third rotating rod (704) is hinged with the handle (701) through a rotating pin;
a lifting assembly disposed on a back side of the handle (701);
the limiting component is arranged on the back of the handle (701), the limiting component comprises a connecting column (709), the back of the connecting column (709) is fixedly connected with a connecting rod (710), the back of the connecting rod (710) is fixedly connected with a round column (711), and the back of the round column (711) is fixedly connected with a rotating wheel (712);
the brake assembly is arranged on two sides of the rotating wheel (712), the brake assembly comprises a first arc-shaped fixture block (713), a first fixing column (714) is arranged inside the first arc-shaped fixture block (713), and a torsion spring (718) is sleeved outside the first fixing column (714).
2. The in vitro recoverable medical stent and method of use thereof of claim 1, wherein: the two C-shaped clamping blocks (6) are internally provided with square connecting rods (5), the bottoms of the square connecting rods (5) are provided with rotating blocks (4), the front faces of the rotating blocks (4) are provided with first fixing shafts (403), and the opposite sides of the first fixing shafts (403) are provided with first rotating shafts (402).
3. The in vitro recoverable medical stent and method of use thereof of claim 1, wherein: the back of first dwang (702) is rotated and is connected with first rotation post (706), the back of second dwang (703) is rotated and is connected with second rotation post (707), the back of third dwang (704) is rotated and is connected with cylinder pole (705).
4. The in vitro recoverable medical stent and method of use thereof of claim 1, wherein: the lifting assembly comprises a vertical rod (301), the vertical rod (301) is fixedly connected with a cylindrical rod (705), the bottom of the vertical rod (301) is fixedly connected with a moving block (302), and the moving block (302) is connected with a T-shaped groove (708) in a sliding penetrating mode.
5. The in vitro recoverable medical stent and method of use thereof of claim 1, wherein: the external gear of the rotating wheel (712) is engaged with a second arc-shaped fixture block (715), a second fixing column (716) is arranged inside the second arc-shaped fixture block (715), and the second fixing column (716) is fixedly connected with the box body (7).
6. The in vitro recoverable medical stent and method of use thereof of claim 1, wherein: a T-shaped groove (708) is formed in the box body (7), the T-shaped groove (708) is fixedly connected with the first rotating column (706), and the T-shaped groove (708) is fixedly connected with the second rotating column (707).
7. The in vitro recoverable medical stent and method of use thereof of claim 1, wherein: the top end fixedly connected with dead lever (303) of cylinder (3), cylinder (3) and pole setting (301) fixed connection.
8. The in vitro recoverable medical stent and method of use thereof of claim 1, wherein: the inside fixedly connected with dwang of turning wheel (712), dwang and box (7) fixed connection.
9. The in vitro recoverable medical stent and method of use thereof of claim 1, wherein: the handle (701) slides in the T-shaped groove (708), the handle (701) is fixedly connected with the connecting column (709), and one side of the torsion spring (718) is fixedly connected with a C-shaped connecting rod (717).
10. The in vitro recoverable medical stent and method of use thereof of claim 1, wherein: the top end of the cylinder (3) is fixedly connected with the bottom end of the second circular plate (201), and two arc blocks (401) are arranged at one end, opposite to the second circular plate (201), of the first circular plate (2).
CN202111118661.0A 2021-09-24 2021-09-24 Medical stent capable of being recycled in vitro and using method thereof Pending CN113975036A (en)

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CN202111118661.0A CN113975036A (en) 2021-09-24 2021-09-24 Medical stent capable of being recycled in vitro and using method thereof

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Application publication date: 20220128