CN114311102A - Equipment is tailor in medical bandage production later stage - Google Patents

Equipment is tailor in medical bandage production later stage Download PDF

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Publication number
CN114311102A
CN114311102A CN202210008954.1A CN202210008954A CN114311102A CN 114311102 A CN114311102 A CN 114311102A CN 202210008954 A CN202210008954 A CN 202210008954A CN 114311102 A CN114311102 A CN 114311102A
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sliding
fixing
rod
plate
spring
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CN202210008954.1A
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CN114311102B (en
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邓月凤
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Sun Bin
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Individual
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Abstract

The invention relates to cutting equipment, in particular to cutting equipment for the later stage of production of medical bandages. The invention provides the later cutting equipment for the production of the medical bandage, which has the advantages of tidy cutting edges, capability of reducing the workload of medical staff and convenience in operation. A medical bandage post-production cutting device, comprising: the base is provided with a main frame; the two sides of the base are symmetrically provided with first fixed rods; the first sliding plate is arranged between the upper parts of the two first fixing rods on the same lateral side in a sliding manner; the four first fixing rods are all wound with first springs, and two ends of each first spring are connected with the first fixing rods and the first sliding plate respectively. According to the invention, the convex part of the third rotating rod is contacted with the bandage, so that the bandage can be hooked by the third rotating rod, and the bandage can be wound on the second rotating rod, and the winding effect is realized.

Description

Equipment is tailor in medical bandage production later stage
Technical Field
The invention relates to cutting equipment, in particular to cutting equipment for the later stage of production of medical bandages.
Background
The bandage is a common medical product and is generally used for wrapping wounds, the bandage has a plurality of different types and a plurality of wrapping methods, a proper type and a wrapping method need to be selected according to the wounded part, the produced bandage needs to be cut in a rehabilitation department, the bandage is generally cut in a manual mode, the length of the cut bandage is different easily due to manual cutting, the cut edge is irregular, the rework phenomenon easily occurs, and the workload of medical workers is increased.
Therefore, according to the situations, the medical bandage post-production cutting equipment which is neat in cutting edge, capable of reducing the workload of medical care personnel and convenient to operate needs to be designed in the market.
Disclosure of Invention
The invention aims to provide a medical bandage later-stage cutting device which is neat in cutting edge, can reduce the workload of medical staff and is convenient to operate, and the medical bandage later-stage cutting device can overcome the defects that the bandage is cut in a manual mode in the background technology, the manual cutting easily causes different cutting lengths of the bandage, the cut edge is not neat, the reworking phenomenon easily occurs, and the workload of the medical staff is increased.
A medical bandage post-production cutting device, comprising:
the base is provided with a main frame;
the two sides of the base are symmetrically provided with first fixed rods;
the first sliding plate is arranged between the upper parts of the two first fixing rods on the same lateral side in a sliding manner;
the four first fixing rods are wound with first springs, and two ends of each first spring are respectively connected with the first fixing rods and the first sliding plate;
the first rotating rod is rotatably arranged between the two first sliding plates;
the winding mechanism is arranged between the lower parts of the two first fixing rods on one side;
the cutting mechanism is arranged among the four first fixing rods;
the second sliding plate and the cutting mechanism are provided with two second sliding plates.
Advantageously, the winding mechanism comprises:
the first fixing plate is arranged between the lower parts of the two first fixing rods on one side;
the middle of the first fixing plate is rotatably provided with a second rotating rod;
the first sliding rod is arranged in the second rotating rod in a sliding manner;
the first sliding rod is provided with a limiting rod;
the second spring is wound on the first sliding rod, and two ends of the second spring are respectively connected with the first sliding rod and the second rotating rod;
six third rotating rods are rotatably arranged on the first sliding rod at intervals and are in contact with the second rotating rod;
and the two sides of the third rotating rod are wound with the torsion springs, and the two ends of each torsion spring are respectively connected with the third rotating rod and the first sliding rod.
Advantageously, the severing mechanism comprises:
the upper parts of the two first fixing rods close to one side of the first rotating rod are respectively provided with a second fixing plate, and the second sliding plate at one side is connected with the two second fixing plates in a sliding manner;
the third fixing plate is arranged between the upper parts of the two first fixing rods on one side far away from the first rotating rod and is connected with the second sliding plate on the other side in a sliding manner;
the two second fixing plates are wound with third springs, and two ends of each third spring are respectively connected with the second fixing plate and the second sliding plate on one side;
the two sides of the third fixing plate are wound with fourth springs, and the two ends of each fourth spring are respectively connected with the second sliding plate and the third fixing plate on the other side;
the upper parts of the two first fixing rods far away from one side of the first rotating rod are respectively provided with a first rotating wheel;
the two sides between the two second sliding plates are connected with the first pull ropes, the first pull ropes are connected with the first rotating wheels on the same side in a sliding mode, and the two sides of the upper portion of the second sliding plate on the other side are connected with the first pull ropes on the same side in a sliding mode respectively.
Advantageously, a lifting mechanism is also included, the lifting mechanism comprising:
the air cylinder is arranged between the two second fixing plates;
the pressing plate is arranged on the telescopic rod of the air cylinder;
the pulley blocks are arranged between the tops of the two second fixed plates and on the upper part of the inner wall of the main frame;
the two sides between the top of the pressing plate and the second sliding plate on one side are both connected with second pull ropes, and the second pull ropes are connected with the pulley block in a sliding manner;
the base is provided with a second fixed rod;
the upper part of the second fixed rod is provided with a second sliding rod in a sliding way;
the upper part of the second fixed rod is wound with a fifth spring, and two ends of the fifth spring are respectively connected with the second fixed rod and the second sliding rod;
the upper part of the second sliding rod is provided with a third sliding plate in a sliding way, and the third sliding plate is matched with the pressing plate;
and the lower part of the third sliding plate is wound with a sixth spring, and two ends of the sixth spring are respectively connected with the second sliding rod and the third sliding plate.
Advantageously, a rotary dosing mechanism is also included, the rotary dosing mechanism comprising:
the motor is arranged on the base;
a belt pulley assembly is connected between an output shaft at one side of the motor and the second rotating rod;
a first gear is arranged on an output shaft on the other side of the motor;
two fourth fixing plates are arranged on the base at intervals;
a fourth rotating rod is rotatably arranged between the upper parts of the two fourth fixing plates;
the fourth rotating rod is provided with a second gear which is meshed with the first gear;
a third gear is arranged on the fourth rotating rod;
and a fourth gear is rotatably arranged on the upper part of the fourth fixing plate on one side and is matched with the third gear, and the fourth gear is meshed with the third sliding plate.
Beneficially, also including stop gear, stop gear includes:
the third fixing rods are arranged on two sides of the base;
the upper sides of the two third fixing rods are both provided with a fourth sliding plate in a sliding manner, and the two fourth sliding plates are both contacted with the pressing plate;
the upper sides of the two third fixing rods are respectively wound with a seventh spring, and two ends of the seventh spring are respectively connected with the third fixing rods and the fourth sliding plate;
a fourth fixed rod is arranged in the middle of the base;
a fifth sliding plate is slidably arranged on the upper side of the fourth fixed rod and is in contact with the fourth sliding plate on the same side, and the fifth sliding plate is in contact with the limiting rod;
and the upper side of the fourth fixed rod is wound with an eighth spring, and the two ends of the eighth spring are respectively connected with the fifth sliding plate and the fourth fixed rod.
Advantageously, the device further comprises a discharging mechanism, wherein the discharging mechanism comprises:
the lower sides of the two first fixing rods on the other side are provided with fifth fixing plates;
the two fifth fixing plates are respectively provided with a sixth fixing plate, and the two sixth fixing plates are fixedly connected with the first fixing plate;
a third slide bar is arranged between the two sixth fixing plates in a sliding manner and is rotatably connected with the second rotating rod;
ninth springs are wound on the two sixth fixing plates, and two ends of each ninth spring are connected with the sixth fixing plate and the third sliding rod respectively;
the material frame is placed on the base and is in contact with the third sliding rod.
Advantageously, the inward movement of the second sled can sever the bandage.
Compared with the prior art, the invention has the following advantages: 1. according to the invention, the convex part of the third rotating rod is contacted with the bandage, so that the third rotating rod can hook the bandage, the bandage can be wound on the second rotating rod, and the winding effect is realized;
2. the second sliding plate on the right side moves inwards through the resetting of the third spring, the second sliding plate on the left side is pulled to move inwards through the first pull rope, the fourth spring resets, and the second sliding plates on the two sides move inwards to cut the bandage, so that the cutting effect is realized;
3. the pressing plate and the first sliding plate are driven to move downwards by the downward movement of the telescopic rod of the air cylinder, and the second sliding plate on the right side can be pulled to move outwards by the second pull rope without manual pulling;
4. the belt pulley assembly is driven to perform anticlockwise transmission through anticlockwise rotation of the output shaft at the rear side of the motor, so that the second rotating rod is driven to rotate, the bandage can be automatically wound, manual rotation is not needed, and labor can be saved;
5. the fifth sliding plate is in contact with the limiting rod, so that the limiting rod moves backwards to drive the first sliding rod to move backwards, the second spring is compressed, the third rotating rod can be prevented from being in contact with a bandage, the bandage can be conveniently pushed out by medical personnel, and the effect of limiting the limiting rod is achieved;
6. through the manual pulling third slide bar of medical personnel and move forward, the ninth spring is compressed, because the third slide bar has magnetic property and makes the material frame move forward, the third slide bar moves forward can release the bandage of winding on the second bull stick, and the bandage that is released then can drop the material frame in, realizes the effect of the ejection of compact.
Drawings
Fig. 1 is a schematic perspective view of a first part of the present invention.
Fig. 2 is a schematic perspective view of a second part of the present invention.
Fig. 3 is a schematic perspective view of a first part of the winding mechanism of the present invention.
Fig. 4 is a schematic perspective view of a second part of the winding mechanism of the present invention.
Fig. 5 is a schematic structural diagram of a third part of the winding mechanism of the invention.
Fig. 6 is a schematic structural diagram of a fourth part of the winding mechanism of the present invention.
Fig. 7 is an enlarged schematic perspective view of the invention at a.
Fig. 8 is a perspective view of a first part of the cutting mechanism of the present invention.
Fig. 9 is a perspective view of a second part of the cutting mechanism of the present invention.
Fig. 10 is a schematic perspective view of a first part of the lifting mechanism of the present invention.
Fig. 11 is a schematic perspective view of a second part of the lifting mechanism of the present invention.
Fig. 12 is an enlarged perspective view of the present invention at B.
Fig. 13 is a perspective view of a first part of the rotary dosing mechanism of the present invention.
Fig. 14 is a perspective view of a second part of the rotary dosing mechanism of the present invention.
Fig. 15 is a schematic perspective view of a first part of the spacing mechanism of the present invention.
Fig. 16 is a schematic perspective view of a second part of the spacing mechanism of the present invention.
Fig. 17 is a schematic perspective view of a third part of the limiting mechanism of the present invention.
Fig. 18 is a schematic perspective view of the discharging mechanism of the present invention.
The meaning of the reference symbols in the figures: 1-base, 2-main frame, 3-first fixed bar, 4-first spring, 5-first slide, 6-first rotating bar, 61-second slide, 7-winding mechanism, 71-first fixed plate, 72-second rotating bar, 73-first sliding bar, 74-limit bar, 75-second spring, 76-third rotating bar, 77-torsion spring, 8-cutting mechanism, 81-second fixed plate, 82-third spring, 84-third fixed plate, 85-fourth spring, 86-first rotating wheel, 87-first pull rope, 9-lifting mechanism, 91-cylinder, 92-press plate, 93-pulley block, 94-second pull rope, 95-second fixed bar, 96-second sliding bar, 97-fifth spring, 98-third sliding plate, 99-sixth spring, 10-rotary quantitative mechanism, 101-motor, 102-pulley assembly, 103-first gear, 104-fourth fixing plate, 105-fourth rotating rod, 106-second gear, 107-third gear, 108-fourth gear, 11-limiting mechanism, 111-third fixing rod, 112-fourth sliding plate, 113-seventh spring, 114-fourth fixing rod, 115-fifth sliding plate, 116-eighth spring, 12-discharging mechanism, 121-fifth fixing plate, 122-sixth fixing plate, 123-ninth spring, 124-third sliding rod, 125-material frame.
Detailed Description
All of the features disclosed in this application, or all of the steps in any method or process so disclosed, may be combined in any combination, except combinations where mutually exclusive features and/or steps are present.
Any feature disclosed in this application (including any accompanying claims, abstract and drawings) may be replaced by alternative features serving equivalent or similar purposes, unless expressly stated otherwise. That is, unless expressly stated otherwise, each feature is only an example of a generic series of equivalent or similar features.
The technical solutions in the novel embodiments will be described clearly and completely with reference to fig. 1 to 18 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 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.
As shown in fig. 1 to 18, a cutting device for the later stage of medical bandage production comprises a base 1, a main frame 2, a first fixing rod 3 and a first spring 4, first slide 5, first rotor 6, second slide 61, winding mechanism 7 and shutdown mechanism 8, be equipped with main frame 2 on the base 1, the equal front and back symmetry of the left and right sides is equipped with first dead lever 3 on the base 1, the slidingtype is equipped with first slide 5 between 3 upper portions of two first dead levers of horizontal homonymy, all around having first spring 4 on four first dead levers 3, 4 both ends of first spring are connected with first dead lever 3 and first slide 5 respectively, the rotary type is equipped with first rotor 6 between 5 right parts of two first slides, be equipped with winding mechanism 7 between 3 lower parts of two first dead levers of rear side, be equipped with shutdown mechanism 8 between four first dead levers 3, be equipped with two second slides 61 on the shutdown mechanism 8.
The winding mechanism 7 comprises a first fixing plate 71, a second rotating rod 72, a first sliding rod 73, a limiting rod 74, a second spring 75, a third rotating rod 76 and a torsion spring 77, wherein a first fixing plate 71 is arranged between the lower parts of two first fixing rods 3 on the rear side, the second rotating rod 72 is rotatably arranged in the middle of the first fixing plate 71, a first sliding rod 73 is slidably arranged in the second rotating rod 72, the limiting rod 74 is arranged on the rear side of the first sliding rod 73, a second spring 75 is wound on the rear side of the first sliding rod 73, two ends of the second spring 75 are respectively connected with the first sliding rod 73 and the second rotating rod 72, six third rotating rods 76 are rotatably arranged on the first sliding rod 73, the six third rotating rods 76 are all in contact with the second rotating rod 72, the torsion springs 77 are wound on the left side and the right side of the third rotating rod 76, and two ends of the torsion spring 77 are respectively connected with the third rotating rods 76 and the first sliding rod 73.
The cutting mechanism 8 comprises a second fixing plate 81, a third spring 82, a third fixing plate 84, a fourth spring 85, a first rotating wheel 86 and a first pull rope 87, wherein the second fixing plate 81 is arranged on the upper parts of two first fixing rods 3 close to the right side of the first rotating rod 6, the second sliding plate 61 on the right side is connected with the two second fixing plates 81 in a sliding manner, the third fixing plate 84 is arranged between the upper parts of the two first fixing rods 3 far away from the right side of the first rotating rod 6, the third fixing plate 84 is connected with the second sliding plate 61 on the left side in a sliding manner, the third spring 82 is wound on the two second fixing plates 81, the two ends of the third spring 82 are respectively connected with the second fixing plate 81 and the second sliding plate 61 on the right side, the fourth spring 85 is wound on the front and back sides of the third fixing plate 84, the two ends of the fourth spring 85 are respectively connected with the second sliding plate 61 on the left side and the third fixing plate 84, the upper parts of the two first fixing rods 3 far away from the first rotating rod 6 are respectively provided with the first rotating wheel 86, first pull ropes 87 are connected to the front side and the rear side of the space between the two second sliding plates 61, the first pull ropes 87 are connected with the first rotating wheels 86 on the same side in a sliding mode, and the front side and the rear side of the upper portion of the left second sliding plate 61 are connected with the first pull ropes 87 on the same side in a sliding mode.
The lifting mechanism 9 comprises an air cylinder 91, a pressing plate 92, a pulley block 93, a second pull rope 94, a second fixing rod 95, a second sliding rod 96, a fifth spring 97, a third sliding plate 98 and a sixth spring 99, the air cylinder 91 is arranged between the right parts of two second fixing plates 81, the pressing plate 92 is arranged on a telescopic rod of the air cylinder 91, the pulley block 93 is arranged between the right sides of the tops of the two second fixing plates 81 and the right upper part of the inner wall of the main frame 2, the pulley block 93 consists of three fixing rods and six pulleys, one fixing rod is connected between the right sides of the tops of the two second fixing plates 81, one fixing rod is connected to the front side of the right upper part of the inner wall of the main frame 2, one fixing rod is connected to the rear side of the right upper part of the inner wall of the main frame 2, the three fixing rods are connected with two rollers, the front side and the rear side between the second sliding plate 61 on the tops of the pressing plate 92 and the right side are connected with the second pull rope 94, and the second pull rope 94 is connected with the pulley block 93 in a sliding way, the right rear side is equipped with second dead lever 95 on base 1, second dead lever 95 upper portion right side slidingtype is equipped with second slide bar 96, second dead lever 95 upper portion is around having fifth spring 97, fifth spring 97 both ends are connected with second dead lever 95 and second slide bar 96 respectively, second slide bar 96 upper portion slidingtype is equipped with third slide 98, third slide 98 and clamp plate 92 cooperation, third slide 98 right lower part front side is around having sixth spring 99, sixth spring 99 both ends are connected with second slide bar 96 and third slide 98 respectively.
The quantitative grinding machine further comprises a rotary quantitative mechanism 10, the rotary quantitative mechanism 10 comprises a motor 101, a belt pulley assembly 102, a first gear 103, a fourth fixing plate 104, a fourth rotating rod 105, a second gear 106, a third gear 107 and a fourth gear 108, the motor 101 is installed on the left rear side of the base 1, the belt pulley assembly 102 is connected between an output shaft on the rear side of the motor 101 and the rear part of the second rotating rod 72, the belt pulley assembly 102 comprises two belt pulleys and a belt, one belt pulley is connected to the output shaft on the rear side of the motor 101, the other belt pulley is connected to the rear part of the second rotating rod 72, the belt is wound between the two belt pulleys, the first gear 103 is arranged on the output shaft on the front side of the motor 101, the two fourth fixing plates 104 are arranged on the left rear side of the base 1 at intervals, the fourth rotating rod 105 is arranged between the upper parts of the two fourth fixing plates 104, the second gear 106 is arranged on the rear side of the fourth rotating rod 105, the second gear 106 is engaged with the first gear 103, a third gear 107 is disposed at the front side of the fourth rotating rod 105, a fourth gear 108 is rotatably disposed at the upper right portion of the fourth fixing plate 104 at the front side, the fourth gear 108 is engaged with the third gear 107, and the fourth gear 108 is engaged with the third sliding plate 98.
Also comprises a limiting mechanism 11, the limiting mechanism 11 comprises a third fixed rod 111, a fourth sliding plate 112 and a seventh spring 113, the upper middle part of the base 1 is provided with a fourth fixing rod 114, a fifth sliding plate 115 and an eighth spring 116, the upper sides of the two third fixing rods 111 are provided with a seventh spring 113 in a sliding manner, the two third fixing rods 111 are provided with fourth sliding plates 112 in a sliding manner, the two fourth sliding plates 112 are in contact with the pressing plate 92, the upper sides of the two third fixing rods 111 are provided with seventh springs 113 in a winding manner, two ends of each seventh spring 113 are respectively connected with the third fixing rods 111 and the fourth sliding plates 112, the middle part of the upper rear part of the base 1 is provided with the fourth fixing rod 114, the upper side of the fourth fixing rod 114 is provided with the fifth sliding plate 115 in a sliding manner, the fifth sliding plate 115 is in contact with the fourth sliding plate 112 on the same side, the fifth sliding plate 115 is in contact with the limiting rod 74, the upper side of the fourth fixing rod 114 is provided with the eighth spring 116 in a winding manner, and two ends of the eighth spring 116 are respectively connected with the fifth sliding plate 115 and the fourth fixing rod 114.
Still including discharge mechanism 12, discharge mechanism 12 is including fifth fixed plate 121, sixth fixed plate 122, ninth spring 123, third slide bar 124 and material frame 125, two first dead lever 3 downside of front side all are equipped with fifth fixed plate 121, two fifth fixed plate 121 fronts all are equipped with sixth fixed plate 122, two sixth fixed plate 122 rear portions all with first fixed plate 71 fixed connection, slidingtype is equipped with third slide bar 124 between two sixth fixed plate 122 rear portions, third slide bar 124 is connected with second bull stick 72 rotary type, all around there being ninth spring 123 on two sixth fixed plates 122, ninth spring 123 both ends are connected with sixth fixed plate 122 and third slide bar 124 respectively, material frame 125 has been placed on the base 1, material frame 125 and third slide bar 124 contact.
When medical staff needs to cut the bandage, the medical bandage later-stage cutting equipment can be used, firstly, the medical staff needs to wind the bandage on the first rotating rod 6, then the medical staff pushes the cutting mechanism 8 to operate, so that the second sliding plates 61 on the two sides move outwards, the medical staff can push the first sliding plate 5 to move downwards, the first spring 4 is compressed, so that the first rotating rod 6 and the bandage are driven to move downwards, then the medical staff manually rotates the winding mechanism 7 to operate, so that the winding mechanism 7 can wind the bandage, so that the first rotating rod 6 rotates, when the medical staff looses the hands on the cutting mechanism 8, the cutting mechanism 8 resets, so that the second sliding plates 61 on the two sides move inwards, so that the bandage can be cut, when the medical staff looses the hands on the first sliding plate 5, the first spring 4 resets to drive the first sliding plate 5 to move upwards, thereby drive bandage and first bull stick 6 upward movement and reset, the bandage of being tailor then twines on winding mechanism 7 part, and medical personnel take off the bandage on winding mechanism 7 again can.
When the bandage moves downwards to the side of the third rotating rod 76, the medical staff can manually rotate the second rotating rod 72 to drive the first sliding rod 73, the limiting rod 74, the second spring 75, the third rotating rod 76 and the torsion spring 77 to rotate, when the convex part of the third rotating rod 76 is contacted with the bandage, the third rotating rod 76 can hook the bandage, so that the bandage can be wound on the second rotating rod 72 to achieve the winding effect, when the wound bandage is cut off and needs to be taken out, the limiting rod 74 can be manually pulled to move backwards, the second spring 75 is compressed, so that the first sliding rod 73, the third rotating rod 76 and the torsion spring 77 are driven to move backwards, the small hole on the second rotating rod 72 enables the third rotating rod 76 to rotate clockwise, the torsion spring 77 is deformed, so that the third rotating rod 76 is not in contact with the bandage, the bandage can be conveniently pushed out from the second rotating rod 72 by medical staff, after the hands of the medical staff are loosened, the second spring 75 is reset to drive the first sliding rod 73 to move forwards, so that the limiting rod 74, the third rotating rod 76 and the torsion spring 77 are driven to move forwards, and the torsion spring 77 is reset to enable the third rotating rod 76 to rotate anticlockwise to reset.
When the bandage needs the downstream, medical personnel need stimulate the outside motion of second slide 61 on right side earlier, third spring 82 is compressed, and through the outside motion of first stay cord 87 pulling left second slide 61, fourth spring 85 is compressed, if the bandage is twined to the certain degree and need to tailor, medical personnel loose hand can, because third spring 82 resets and makes the inside motion of second slide 61 on right side, and through the inside motion of first stay cord 87 pulling left second slide 61, fourth spring 85 resets, the inside motion of second slide 61 of both sides can be tailor to the bandage, realize the effect of cutting off.
The medical staff can start the air cylinder 91, after the air cylinder 91 is started, the telescopic rod of the air cylinder 91 moves downwards to drive the pressing plate 92 and the first sliding plate 5 to move downwards, the second sliding plate 61 on the right side can be pulled to move outwards through the second pull rope 94 without manual pulling, when the pressing plate 92 moves downwards to be in contact with the third sliding plate 98, the third sliding plate 98 moves forwards, the sixth spring 99 is compressed, when the pressing plate 92 moves downwards to pass through the third sliding plate 98, the third sliding plate 98 is driven to move backwards due to the resetting of the sixth spring 99, so that the pressing plate 92 can be clamped by the third sliding plate 98, at the moment, the telescopic rod of the air cylinder 91 can be controlled to stop moving downwards, when the wound bandage needs to be cut, the medical staff manually pulls the third sliding plate 98 to move leftwards to drive the sixth spring 99 to move leftwards, the fifth spring 97 is compressed, so that the pressing plate 92 cannot be clamped by the third sliding plate 98, and then the telescopic rod of the air cylinder 91 is controlled to move upwards, thereby drive clamp plate 92 and the equal upward movement of first slide 5 for second stay cord 94 is relaxed, and after medical personnel loosened the hand, fifth spring 97 resets and drives third slide 98 and move right, makes the second slide 61 inward movement on right side under the effect that third spring 82 resets, and the inward movement of second slide 61 can cut off the bandage, when need not use cylinder 91, close cylinder 91 can.
When the bandage moves downwards to the side of the third rotating rod 76, the motor 101 can be started, after the motor 101 is started, the output shaft at the rear side of the motor 101 rotates anticlockwise to drive the belt pulley assembly 102 to transmit anticlockwise, so as to drive the second rotating rod 72 to rotate, the bandage can be automatically wound, when the pressing plate 92 moves downwards and is clamped by the third sliding plate 98, then the pressing plate 92 needs to move upwards, the output shaft at the front side of the motor 101 can be controlled to rotate anticlockwise, so that the first gear 103 rotates anticlockwise, so as to drive the second gear 106 to rotate clockwise, so as to drive the fourth rotating rod 105 and the third gear 107 to rotate clockwise, when the third gear 107 rotates clockwise and is meshed with the fourth gear 108, the fourth gear 108 rotates anticlockwise, so that the third sliding plate 98 and the sixth spring 99 move leftwards, the fifth spring 97 is compressed, and the third sliding plate 98 moves leftwards and cannot clamp the pressing plate 92, the pressing plate 92 is convenient to move upwards for resetting, when the third gear 107 continues to rotate clockwise and is not meshed with the fourth gear 108, the fifth spring 97 resets to drive the third sliding plate 98 and the sixth spring 99 to move leftwards, so that the fourth gear 108 rotates clockwise, and the motor 101 is turned off after winding.
When the pressing plate 92 moves downwards to be not in contact with the fourth sliding plate 112, the seventh spring 113 in a stretching state resets to drive the fourth sliding plate 112 to move downwards, so that the fourth sliding plate 112 is not in contact with the fifth sliding plate 115, the eighth spring 116 in a stretching state resets to drive the fifth sliding plate 115 to move downwards, so that the fifth sliding plate 115 is not in contact with the limiting rod 74, the first sliding rod 73 moves forwards under the reset action of the second spring 75 to drive the limiting rod 74 to move forwards, so that the third rotating rod 76 can be in contact with the bandage, the bandage is convenient to wind, when the pressing plate 92 moves upwards to be in contact with the fourth sliding plate 112, the fourth sliding plate 112 moves upwards, the seventh spring 113 is stretched, when the fourth sliding plate 112 moves upwards to be in contact with the fifth sliding plate 115, the fifth sliding plate 115 moves upwards, the eighth spring 116 is stretched, so that the fifth sliding plate 115 is in contact with the limiting rod 74, and then drive gag lever post 74 rearward movement for first slide bar 73 rearward movement, second spring 75 is compressed, can make third bull stick 76 not with the bandage contact, makes things convenient for medical personnel's bandage to release, plays the spacing effect of gag lever post 74.
When the bandage needs to be pushed out after being cut, a medical worker can manually pull the third sliding rod 124 to move forwards, the ninth spring 123 is compressed, the material frame 125 can move forwards due to the fact that the third sliding rod 124 has magnetic performance, the bandage wound on the second rotating rod 72 can be pushed out due to the fact that the third sliding rod 124 moves forwards, the pushed bandage can fall into the material frame 125, the discharging effect is achieved, after the medical worker looses hands, the ninth spring 123 resets to drive the third sliding rod 124 to move backwards, the material frame 125 is driven to move backwards to reset, and then the medical worker can take out the bandage in the material frame 125.
The above description is only an embodiment of the present invention, and not intended to limit the scope of the present invention, and all modifications of equivalent structures and equivalent processes, which are made by the present specification, or directly or indirectly applied to other related technical fields, are included in the scope of the present invention.

Claims (8)

1. The utility model provides a medical bandage production later stage tailors equipment which characterized in that includes:
the device comprises a base (1) and a main frame (2), wherein the main frame (2) is arranged on the base (1);
the two sides of the base (1) are symmetrically provided with the first fixed rods (3);
the first sliding plate (5) is arranged between the upper parts of the two first fixing rods (3) on the same lateral side in a sliding manner;
the four first fixing rods (3) are wound with the first springs (4), and two ends of each first spring (4) are respectively connected with the first fixing rods (3) and the first sliding plate (5);
a first rotating rod (6) is rotatably arranged between the two first sliding plates (5);
the winding mechanism (7) is arranged between the lower parts of the two first fixing rods (3) on one side;
a cutting mechanism (8), wherein the cutting mechanism (8) is arranged among the four first fixing rods (3);
two second sliding plates (61) are arranged on the second sliding plate (61) and the cutting mechanism (8).
2. The post-production cutting device for medical bandages according to claim 1, wherein the winding mechanism (7) comprises:
a first fixing plate (71), wherein the first fixing plate (71) is arranged between the lower parts of the two first fixing rods (3) on one side;
the middle of the first fixing plate (71) is rotatably provided with a second rotating rod (72);
the first sliding rod (73) is arranged in the second rotating rod (72) in a sliding manner;
the limiting rod (74) is arranged on the first sliding rod (73);
the second spring (75) is wound on the first sliding rod (73), and two ends of the second spring (75) are respectively connected with the first sliding rod (73) and the second rotating rod (72);
six third rotating rods (76) are rotatably arranged on the first sliding rod (73) at intervals, and the six third rotating rods (76) are in contact with the second rotating rod (72);
the torsion spring (77) is wound on two sides of the third rotating rod (76), and two ends of the torsion spring (77) are respectively connected with the third rotating rod (76) and the first sliding rod (73).
3. A post-production cutting device for medical bandages according to claim 2, wherein the cutting mechanism (8) comprises:
the upper parts of the two first fixing rods (3) close to one side of the first rotating rod (6) are respectively provided with a second fixing plate (81), and the second sliding plate (61) at one side is connected with the two second fixing plates (81) in a sliding manner;
the third fixing plate (84) is arranged between the upper parts of the two first fixing rods (3) on one side far away from the first rotating rod (6), and the third fixing plate (84) is connected with the second sliding plate (61) on the other side in a sliding manner;
the two second fixing plates (81) are wound with the third springs (82), and two ends of each third spring (82) are respectively connected with the second fixing plate (81) and the second sliding plate (61) on one side;
the fourth springs (85) are wound on the two sides of the third fixing plate (84), and the two ends of each fourth spring (85) are respectively connected with the second sliding plate (61) and the third fixing plate (84) on the other side;
the upper parts of the two first fixing rods (3) at one side far away from the first rotating rod (6) are respectively provided with a first rotating wheel (86);
the two sides between the two second sliding plates (61) are connected with the first pull ropes (87), the first pull ropes (87) are connected with the first rotating wheels (86) on the same side in a sliding mode, and the two sides of the upper portion of the second sliding plate (61) on the other side are connected with the first pull ropes (87) on the same side in a sliding mode respectively.
4. The post-production cutting device for medical bandages according to claim 3, further comprising a lifting mechanism (9), wherein the lifting mechanism (9) comprises:
the air cylinder (91) is installed between the two second fixing plates (81);
the pressing plate (92) is arranged on the telescopic rod of the air cylinder (91);
the pulley blocks (93) are arranged between the tops of the two second fixing plates (81) and on the upper part of the inner wall of the main frame (2);
the two sides between the top of the pressing plate (92) and the second sliding plate (61) on one side are both connected with second pull ropes (94), and the second pull ropes (94) are connected with a pulley block (93) in a sliding manner;
the base (1) is provided with a second fixing rod (95);
a second sliding rod (96) is arranged at the upper part of the second fixing rod (95) in a sliding way;
the upper part of the second fixing rod (95) is wound with a fifth spring (97), and two ends of the fifth spring (97) are respectively connected with the second fixing rod (95) and the second sliding rod (96);
a third sliding plate (98) is arranged at the upper part of the second sliding rod (96) in a sliding manner, and the third sliding plate (98) is matched with the pressing plate (92);
and the lower part of the third sliding plate (98) is wound with a sixth spring (99), and two ends of the sixth spring (99) are respectively connected with the second sliding rod (96) and the third sliding plate (98).
5. The post-production cutting device for medical bandages according to claim 4, further comprising a rotary dosing mechanism (10), wherein the rotary dosing mechanism (10) comprises:
the motor (101) is mounted on the base (1);
a belt pulley assembly (102), wherein the belt pulley assembly (102) is connected between an output shaft at one side of the motor (101) and the second rotating rod (72);
a first gear (103) is arranged on an output shaft on the other side of the motor (101);
the base (1) is provided with two fourth fixing plates (104) at intervals;
a fourth rotating rod (105), wherein the fourth rotating rod (105) is rotatably arranged between the upper parts of the two fourth fixing plates (104);
a second gear (106) is arranged on the fourth rotating rod (105), and the second gear (106) is meshed with the first gear (103);
a third gear (107), wherein the fourth rotating rod (105) is provided with the third gear (107);
and a fourth gear (108) is rotatably arranged at the upper part of the fourth fixing plate (104) at one side, the fourth gear (108) is matched with the third gear (107), and the fourth gear (108) is meshed with the third sliding plate (98).
6. The post-production cutting equipment for medical bandages according to claim 5, further comprising a limiting mechanism (11), wherein the limiting mechanism (11) comprises:
the third fixing rod (111), both sides on the base (1) are provided with the third fixing rod (111);
the upper sides of the two third fixing rods (111) are both provided with a fourth sliding plate (112) in a sliding manner, and the two fourth sliding plates (112) are both contacted with the pressing plate (92);
the upper sides of the two third fixing rods (111) are respectively wound with the seventh spring (113), and two ends of the seventh spring (113) are respectively connected with the third fixing rods (111) and the fourth sliding plate (112);
a fourth fixing rod (114), wherein the middle of the base (1) is provided with the fourth fixing rod (114);
a fifth sliding plate (115) is arranged on the upper side of the fourth fixing rod (114) in a sliding manner, the fifth sliding plate (115) is in contact with the fourth sliding plate (112) on the same side, and the fifth sliding plate (115) is in contact with the limiting rod (74);
and the upper side of the fourth fixing rod (114) is wound with the eighth spring (116), and two ends of the eighth spring (116) are respectively connected with the fifth sliding plate (115) and the fourth fixing rod (114).
7. The post-production cutting device for medical bandages according to claim 6, further comprising a discharging mechanism (12), wherein the discharging mechanism (12) comprises:
a fifth fixing plate (121), wherein the fifth fixing plate (121) is arranged at the lower side of each of the two first fixing rods (3) at the other side;
the two fifth fixing plates (121) are respectively provided with a sixth fixing plate (122), and the two sixth fixing plates (122) are respectively fixedly connected with the first fixing plate (71);
a third sliding rod (124) is arranged between the two sixth fixing plates (122) in a sliding manner, and the third sliding rod (124) is rotatably connected with the second rotating rod (72);
ninth springs (123) are wound on the two sixth fixing plates (122), and two ends of each ninth spring (123) are respectively connected with the sixth fixing plate (122) and the third sliding rod (124);
the material frame (125) is placed on the base (1), and the material frame (125) is in contact with the third sliding rod (124).
8. A post-production cutting device for medical bandages according to claim 1, characterized in that the inward movement of the second slide (61) enables the cutting of the bandage.
CN202210008954.1A 2022-01-06 2022-01-06 Medical bandage production post-cutting equipment Active CN114311102B (en)

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CN114948497B (en) * 2022-06-20 2023-07-07 中国人民解放军空军军医大学 Chest surgery is with support of changing dressings

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