CN112810779A - Intelligent rescue rope of thing networking - Google Patents

Intelligent rescue rope of thing networking Download PDF

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Publication number
CN112810779A
CN112810779A CN202110012886.1A CN202110012886A CN112810779A CN 112810779 A CN112810779 A CN 112810779A CN 202110012886 A CN202110012886 A CN 202110012886A CN 112810779 A CN112810779 A CN 112810779A
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China
Prior art keywords
cylinder
rope
pull rope
sliding
sliding rod
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Withdrawn
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CN202110012886.1A
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Chinese (zh)
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吴跃
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Individual
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Individual
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Priority to CN202110012886.1A priority Critical patent/CN112810779A/en
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B63SHIPS OR OTHER WATERBORNE VESSELS; RELATED EQUIPMENT
    • B63CLAUNCHING, HAULING-OUT, OR DRY-DOCKING OF VESSELS; LIFE-SAVING IN WATER; EQUIPMENT FOR DWELLING OR WORKING UNDER WATER; MEANS FOR SALVAGING OR SEARCHING FOR UNDERWATER OBJECTS
    • B63C9/00Life-saving in water
    • B63C9/26Cast or life lines; Attachments thereto; Containers therefor; Rescue nets or the like
    • GPHYSICS
    • G08SIGNALLING
    • G08BSIGNALLING OR CALLING SYSTEMS; ORDER TELEGRAPHS; ALARM SYSTEMS
    • G08B21/00Alarms responsive to a single specified undesired or abnormal condition and not otherwise provided for
    • G08B21/02Alarms for ensuring the safety of persons
    • G08B21/04Alarms for ensuring the safety of persons responsive to non-activity, e.g. of elderly persons
    • G08B21/0438Sensor means for detecting
    • G08B21/0461Sensor means for detecting integrated or attached to an item closely associated with the person but not worn by the person, e.g. chair, walking stick, bed sensor
    • GPHYSICS
    • G08SIGNALLING
    • G08BSIGNALLING OR CALLING SYSTEMS; ORDER TELEGRAPHS; ALARM SYSTEMS
    • G08B25/00Alarm systems in which the location of the alarm condition is signalled to a central station, e.g. fire or police telegraphic systems
    • G08B25/01Alarm systems in which the location of the alarm condition is signalled to a central station, e.g. fire or police telegraphic systems characterised by the transmission medium
    • G08B25/016Personal emergency signalling and security systems
    • GPHYSICS
    • G08SIGNALLING
    • G08BSIGNALLING OR CALLING SYSTEMS; ORDER TELEGRAPHS; ALARM SYSTEMS
    • G08B25/00Alarm systems in which the location of the alarm condition is signalled to a central station, e.g. fire or police telegraphic systems
    • G08B25/01Alarm systems in which the location of the alarm condition is signalled to a central station, e.g. fire or police telegraphic systems characterised by the transmission medium
    • G08B25/08Alarm systems in which the location of the alarm condition is signalled to a central station, e.g. fire or police telegraphic systems characterised by the transmission medium using communication transmission lines

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  • Business, Economics & Management (AREA)
  • Emergency Management (AREA)
  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Engineering & Computer Science (AREA)
  • Computer Security & Cryptography (AREA)
  • Mechanical Engineering (AREA)
  • Ocean & Marine Engineering (AREA)
  • Health & Medical Sciences (AREA)
  • General Health & Medical Sciences (AREA)
  • Gerontology & Geriatric Medicine (AREA)
  • Emergency Lowering Means (AREA)

Abstract

This scheme belongs to rescue equipment technical field, concretely relates to thing networking intelligence rescue rope. The mobile phone comprises a pull rope, a processor, an alarm module, a data acquisition module and a mobile phone terminal; the rope pulling device is characterized by further comprising a fixed pulley, wherein a hollow cylinder is arranged at one end of the rope pulling in a sliding mode, a sliding mechanism is arranged in the cylinder and comprises a sliding rod, a limiting block, a resisting block and a first spring; the waterproof structure comprises a sliding rod, a cylinder and a supporting block, wherein the sliding rod is connected with a piece of waterproof cloth in a folding mode, the cylinder is internally and rotatably provided with a limiting block used for limiting the sliding rod to move, the supporting block is provided with a first spring connected with the limiting block, one end of the supporting block is connected with a pull rope, and a gap is formed between the supporting block and the top end of the cylinder. The device has the advantages that the processor, the alarm module, the data acquisition module and the mobile phone terminal are arranged, so that a person falling into water can be rescued in time, the person falling into water does not need to go hard in the flood after holding the pull rope by arranging the sliding mechanism, the rescue is convenient, and the time and the labor are saved.

Description

Intelligent rescue rope of thing networking
Technical Field
This scheme belongs to rescue equipment technical field, concretely relates to thing networking intelligence rescue rope.
Background
In the process of rescuing trapped people, a rescue rope is mainly adopted, the function of the rescue rope is single, the thrown rope is not caught by rescuers and sinks into water sometimes, so that rescuers cannot hold the rescue opportunity to delay the rescue opportunity, particularly, one rope is not enough for rescuers who cannot travel by themselves, and the rope cannot be used as a movable rope pulled back when being used as a fixed rope, so that the rescue is difficult to progress, and the problem that the rescue personnel are troubled is solved.
The patent with the application number of CN201820450266.X discloses an intelligent rescue rope for the internet of things, which comprises a supporting column and a processor, wherein a first slot and a second slot are respectively formed in two sides of the bottom of the supporting column, conductive elastic sheets are fixedly connected to the tops of two sides of an inner cavity of the first slot, a first inserting column and a second inserting column are respectively inserted into inner cavities of the first slot and the second slot, a conductive inserting rod is fixedly connected to the middle of the top of the first inserting column, bases are respectively fixedly connected to the bottoms of the first inserting column and the second inserting column through the first slot and the second slot, grooves are respectively formed in the middle of the top of the base and the middle of the bottom of the supporting column, strong springs are fixedly connected to two sides of the front side and the back side between the two inner cavities of the grooves, an intelligent signal emitter is fixedly connected to the top of the supporting column, and a bulb is fixedly connected to the top of, the lower part fixedly connected with hawser on intelligence signal transmitter right side, the inside interlude of hawser has the carbon fiber, and the outside of carbon fiber and the inside fixed connection of hawser.
The rescue rope in the scheme is only suitable for rescuing the person falling into the water in the river channel, but is not suitable for the person falling into the water in the flood.
Disclosure of Invention
This scheme provides an thing networking intelligence rescue rope to solve in the flood calamity, use the problem that rescue rope was used and was rescued the difficulty.
In order to achieve the purpose, the scheme provides an intelligent rescue rope for the Internet of things, which comprises a pull rope, a processor, an alarm module, a data acquisition module and a mobile phone terminal; the processor is respectively in wireless connection with the alarm module, the data acquisition module and the mobile phone terminal of the medical staff;
the data acquisition module is used for receiving the parameter data and transmitting the parameter data to the processor;
the processor is used for receiving the parameter data acquired by the data acquisition module and selecting to trigger or not trigger the alarm module according to the parameter data;
the mobile phone terminal acquires relevant information through the access processor and displays an interface in real time;
an electrocardio sensor and a GPS positioning device are arranged on the pull rope; the electrocardio sensor and the GPS positioning device are respectively in wireless connection with the data acquisition module; the pull rope is arranged in the gap in a sliding mode, and clamping blocks which cannot pass through the gap are arranged at the two ends of the pull rope;
a hollow cylinder is arranged at one end of the pull rope in a sliding manner and is connected with a clamping block on the pull rope at the end; a sliding mechanism is arranged in the cylinder and comprises a sliding rod, a limiting block, a resisting block and a first spring; the sliding rod is arranged on the periphery of the cylinder and used for sliding, the sliding rod is I-shaped and comprises an end A and an end B, the middle of the sliding rod is positioned in the sliding groove, the end A of the sliding rod is positioned outside the cylinder, the end B of the sliding rod is positioned in the cylinder, the sliding rod is connected with a piece of folding waterproof cloth, a limiting block used for limiting the sliding rod to move is arranged in the cylinder in a rotating mode, the limiting block is L-shaped, a first spring connected with the limiting block is arranged on the abutting block, one end of the abutting block is connected with the pull rope, a gap is formed between the abutting block and the top end of the cylinder, and a second spring is arranged on the pull rope positioned in the gap; the diameter of the second spring is larger than that of the pull rope, the number of the sliding rods is not less than three, and the number of the limiting blocks and the number of the first springs are the same as that of the sliding rods.
The principle of the scheme is as follows: when people fall into the water in flood, a rescuer holds the handle of the pull rope and throws the pull rope to the person falling into the water, after the person falling into the water pulls the pull rope, the pull rope slides relative to the handle after being stressed, then the clamping block connected with the cylinder can not pass through a gap, so that the clamping block is blocked outside the handle, the cylinder is also blocked outside the handle, at the moment, the cylinder can not move relative to the handle, the pull rope can slide relative to the cylinder, then the pull rope drives the abutting block to slide towards the top end of the cylinder, so that the compressed first spring slides upwards and recovers deformation, the first spring recovers deformation to extrude the upper end of the limiting block outwards, so that the limiting block rotatably arranged in the cylinder is separated from the sliding rod, the sliding rod automatically slides downwards and struts the folded waterproof cloth into an umbrella shape under the flow of the flood, the umbrella-shaped waterproof cloth is filled with the flowing flood, and then the resistance of the water relative to the waterproof cloth is larger than the resistance of, then the waterproof cloth filled with water moves towards the direction far away from the rescuer, and the person falling into the water is directly pulled to the front of the rescuer under the action of the fixed pulley to obtain rescue. Because the latch cannot pass through the gap, the pull cord is always located in the gap.
Then when the person falling into the water holds the pull rope, the data acquisition module obtains the physical health condition of the person falling into the water through the electrocardio sensor, then feeds back information to the processor, the processor receives the information and makes an instruction through judgment and analysis, the alarm module is not triggered when the person falling into the water is healthy, the alarm module is triggered when the person falling into the water is weak and needs to be rescued, the position is displayed on the mobile phone terminal of the medical personnel through the GPS positioning device, and the medical personnel can find the person falling into the water in time and rescue the person.
The beneficial effect of this scheme: through setting up the treater, alarm module, data acquisition module and cell-phone terminal can in time be executed and laboured the person that falls into water, make the person that falls into water do not need oneself difficult step moving in the flood after holding the stay cord through setting up glide machanism, the person that falls into water is pulled out from the flood to the stay cord that drags that also need not the person of labouring to be arduous, only need hold the handle of stay cord, can make the person that falls into water obtain the rescue in the front of the person of executing and labouring automatically move under glide machanism's effect, the rescue is convenient, time saving and labor saving.
Further, the number of the sliding rods is 3. The waterproof cloth on the 3 sliding rods is unfolded to just hold water, so that the material is saved.
Further, still including receiving umbrella mechanism, receive umbrella mechanism includes pivot, rack and cylinder lid, be connected with the screw rod in the pivot, the pivot is rotated and is set up on the cylinder, be equipped with in the pivot with rack engaged with gear, rack connection supports on the piece, but be equipped with the first opening of slide bar roll-off on the cylinder, the cylinder is covered and is equipped with the second opening with first opening assorted, the cylinder lid rotates with the cylinder to be connected, the cylinder is covered and is equipped with the screw hole with screw rod assorted. When the person that falls into water is rescued the back, the stay cord atress, the second spring resumes deformation this moment, will support the piece and remove towards the direction of keeping away from the cylinder top, support the piece and remove and drive the rack and remove, the rack removes and drives the gear rotation, the gear rotation drives the pivot and rotates, the pivot rotates and drives the drum lid and rotate, make first opening and second opening coincidence, make one of them slide bar can follow the opening part roll-off, make the waterproof cloth be a straight line and not umbelliform, the person of suing and labouring at this moment easily the pull cord pull-back can. Then resume the slide bar to initial position for the gag lever post will support the piece to block, and the tarpaulin is folded and is received the convenience and use next time.
Furthermore, a bracelet is arranged on the pull rope, so that a person falling into water can conveniently hold the rescue rope and is not easy to fall off.
Further, a plurality of bracelets are arranged on the pull rope. When the person falling into the water is located at different positions of the pull rope, the user can hold the hand ring, and the person falling into the water can be conveniently and quickly rescued.
Furthermore, a rope pulling groove used for limiting the left and right movement of the pulling rope is arranged on the fixed pulley. The stay cord is limited in the stay cord groove of the fixed pulley, so that the stay cord can only move in the stay cord groove, and the situation that the stay cord moves left and right on the fixed pulley in the rescue process to influence rescue is avoided.
Furthermore, a floating ball is arranged on the pull rope at a place where a person falling into the water catches the pull rope. The person falling into the water can see and grasp the pull rope quickly, and obtain rescue in time. If the pull rope is not provided with the floating ball, the pull rope may sink into the water, so that a person falling into the water cannot catch the pull rope.
Furthermore, a gravity ball is arranged in the floating ball. Under the action of the gravity ball, the rescuer can throw the rope more conveniently by utilizing the gravity inertia of the gravity ball.
Drawings
FIG. 1 is a schematic diagram of an embodiment of the present invention.
Fig. 2 is a schematic structural diagram of an embodiment of the present invention.
Fig. 3 is a schematic structural view of a handle according to an embodiment of the present invention.
Fig. 4 is a schematic diagram of an unstressed structure of the sliding mechanism according to the embodiment of the invention.
Fig. 5 is a schematic view of a force-bearing structure of the sliding mechanism according to the embodiment of the present invention.
FIG. 6 is a top view of a cylinder cap according to an embodiment of the present invention.
Fig. 7 is a schematic view of a waterproof cloth spreading structure according to an embodiment of the present invention.
Fig. 8 is a schematic diagram of a slide-out structure of the slide bar according to the embodiment of the present invention.
Detailed Description
The following is further detailed by the specific embodiments:
reference numerals in the drawings of the specification include: the device comprises a pull rope 1, a fixed pulley 2, a handle 3, a fixture block 4, a bracelet 5, a pull rope groove 6, a floating ball 7, a gravity ball 8, a cylinder 9, a processor 100, an alarm module 101, a data acquisition module 102, a mobile phone terminal 103, an electrocardio sensor 104, a GPS positioning device 105, a sliding rod 200, a limiting block 201, a resisting block 202, a first spring 203, a sliding groove 204, an A end 205, a B end 206, a waterproof cloth 207, a second spring 208, a rotating shaft 300, a rack 301, a cylindrical cover 302, a gear 303, a first opening 304 and a second opening 305.
The embodiment is basically as shown in the attached figure 1:
an intelligent rescue rope of the Internet of things comprises a pull rope 1, a processor 100, an alarm module 101, a data acquisition module 102 and a mobile phone terminal 103; the processor 100 is respectively in wireless connection with the alarm module 101, the data acquisition module 102 and the mobile phone terminal 103 of the medical staff;
the data acquisition module 102 is configured to receive the parameter data and transmit the parameter data to the processor 100;
the processor 100 is configured to receive parameter data acquired by the data acquisition module 102, and select to trigger or not trigger the alarm module 101 according to the parameter data;
the mobile phone terminal 103 acquires relevant information through the access processor 100 and displays an interface in real time;
an electrocardio sensor 104 and a GPS positioning device 105 are arranged on the pull rope 1; the electrocardio sensor 104 and the GPS positioning device 105 are respectively in wireless connection with the data acquisition module 102;
when a person falling into water holds the pull rope 1, the data acquisition module 102 acquires the physical health condition of the person falling into water through the electrocardio sensor 104, then feeds information back to the processor 100, the processor 100 receives the information and makes an instruction through judgment and analysis, the alarm module 101 is not triggered when the person falling into water is healthy, the alarm module 101 is triggered when the person falling into water is weak and needs rescue, and the position is displayed on the mobile phone terminal 103 of the medical worker through the GPS positioning device 105, so that the medical worker can find the person falling into water in time and rescue the person.
As shown in figures 2-3:
still include fixed pulley 2, be equipped with handle 3 on the fixed pulley 2, the center of fixed pulley 2 is passed at 3 both ends of handle, and is equipped with the clearance between handle 3 and the fixed pulley 2, and stay cord 1 slides and sets up in the clearance, and 1 both ends of stay cord are equipped with fixture block 4 that the clearance can not pass through. The rescuer holds the handle 3 and the pull rope 1 can move on the fixed pulley 2, but the latch 4 cannot pass through the gap, so the pull rope 1 is always positioned in the gap.
The fixed pulley 2 is provided with a rope groove 6 for limiting the left and right movement of the rope 1. Restrict stay cord 1 in the stay cord groove 6 of fixed pulley 2 for stay cord 1 can only remove in stay cord groove 6, avoids stay cord 1 to remove about on fixed pulley 2 at the rescue in-process, influences the rescue.
As shown in figures 4-5:
a bracelet 5 is arranged at the right end of the pull rope 1, a hollow cylinder 9 is arranged at the left end of the pull rope 1 in a sliding manner, the cylinder 9 is connected with a fixture block on the pull rope at the left end, a sliding mechanism is arranged in the cylinder 9, and the sliding mechanism comprises a sliding rod 200, a limiting block 201, a resisting block 202 and a first spring 203; the periphery of the cylinder 9 is provided with a sliding groove 204 used for sliding the sliding rod 200, the sliding rod 200 is in an I shape, the sliding rod 200 comprises an A end 205 and a B end 206, the middle of the sliding rod 200 is positioned in the sliding groove 204, the A end 205 of the sliding rod 200 is positioned outside the cylinder 9, the B end 206 of the sliding rod 200 is positioned in the cylinder 9, the sliding rod 200 is connected with a folded waterproof cloth 207, a limiting block 201 used for limiting the sliding of the sliding rod 200 is rotatably arranged in the cylinder 9, the limiting block 201 is in an L shape, a first spring 203 connected with the limiting block 201 is arranged on a supporting block 202, one end of the supporting block 202 is connected with the pull rope 1, a gap is arranged between the supporting block 202 and the top end of the cylinder 9, and a second spring 208; the diameter of the second spring 208 is larger than that of the pull rope 1, the number of the sliding rods 200 is three, and the number of the limiting blocks 201 and the number of the first springs 203 matched with the sliding rods 200 are also three.
When people fall into the water in flood, a rescuer holds the handle 3 of the pull rope 1 and throws the pull rope 1 to the person falling into the water, after the person falling into the water pulls the hand ring 5 of the pull rope 1, the pull rope 1 is stressed to enable the pull rope 1 to slide relative to the handle 3, then the clamping block 4 connected with the cylinder 9 cannot pass through a gap, so that the clamping block 4 is blocked at the left side of the handle 3, the cylinder 9 is also blocked at the left side of the handle 3, at the moment, the cylinder 9 cannot move relative to the handle 3, the pull rope 1 can slide relative to the cylinder 9, then the pull rope 1 drives the abutting block 202 to slide towards the top end of the cylinder 9, the compressed first spring 203 slides upwards and restores deformation, the first spring 203 restores deformation to extrude the upper end of the limiting block 201 outwards, the limiting block 201 rotatably arranged in the cylinder 9 is separated from the sliding rod 200, the sliding rod 200 automatically slides downwards and stretches the folded waterproof cloth 207 to be umbrella-shaped under the, the umbrella-shaped waterproof cloth 207 is filled with flowing flood, then the resistance of water to the waterproof cloth 207 is larger than that of water to a person who falls into the water, then the waterproof cloth 207 filled with water moves towards the direction far away from the rescuer, and the person who falls into the water is directly pulled to the front of the rescuer to obtain rescue under the action of the fixed pulley 2.
A plurality of bracelets 5 are arranged on the pull rope 1. When the person falling into the water is located at different positions of the pull rope 1, the person falling into the water can hold the hand ring 5, so that the person falling into the water can be conveniently and quickly rescued. A floating ball 7 is arranged on the pull rope 1 for being grabbed by a person falling into the water. The person falling into the water can see the pull rope 1 and grasp the pull rope quickly, and timely rescue can be achieved. A gravity ball 8 is arranged in the floating ball 7. Under the action of the gravity ball 8, the rescuer can throw the rope more conveniently by utilizing the gravity inertia of the gravity ball 8.
As shown in figures 6-8:
still include the umbrella closing mechanism, the umbrella closing mechanism includes pivot 300, rack 301 and cylinder cover 302, be connected with the screw rod on the pivot 300, pivot 300 rotates and sets up on cylinder 9, be equipped with on the pivot 300 with the gear 303 of rack 301 looks meshing, rack 301 is connected on supporting piece 202, but be equipped with the first opening 304 of slide bar 200 roll-off on the cylinder 9, be equipped with on the cylinder cover 302 with first opening 304 assorted second opening 305, cylinder cover 302 rotates with cylinder 9 to be connected, be equipped with on the cylinder cover 302 with screw rod assorted screw hole. When a person falling into the water is rescued, the pull rope 1 is not stressed, at the moment, the second spring 208 recovers deformation, the abutting block 202 moves towards the direction away from the top end of the cylinder 9, the abutting block 202 moves to drive the rack 301 to move, the rack 301 moves to drive the gear 303 to rotate, the gear 303 rotates to drive the rotating shaft 300 to rotate, the rotating shaft 300 rotates to drive the cylindrical cover 302 to rotate, the first opening 304 and the second opening 305 are overlapped, one of the sliding rods 200 can slide out from the opening, the waterproof cloth 207 is in a straight line instead of an umbrella shape, and at the moment, the person who is rescued can easily pull the pull rope 1 to recover the pull rope. Then, the sliding rod 200 is restored to the initial position, so that the stop rod clamps the abutting block 202, and the waterproof cloth 207 is folded and folded to be convenient for next use.
The method comprises the following specific operations:
when a person falls into the water in flood, a rescuer holds the handle 3 of the pull rope 1 and throws the end of the pull rope 1 with the bracelet 5 to the person falling into the water, the pull rope 1 is thrown beside the person falling into the water accurately under the action of the gravity ball 8, the person falling into the water easily finds the pull rope 1 and holds the bracelet 5 under the action of the floating ball 7, and the pull rope 1 is stressed by the stress of the bracelet 5.
Make stay cord 1 relative handle 3 slip after the atress of stay cord 1, then the fixture block 4 card of being connected with cylinder 9 can not be through the clearance so fixture block 4 is kept off in the handle 3 left side, and cylinder 9 is also kept off in the handle 3 left side, and cylinder 9 can not move relative handle 3 this moment, and stay cord 1 is slidable relative cylinder 9.
Stay cord 1 drives after sliding relative cylinder 9 and supports piece 202 and slide to cylinder 9 top, then the first spring 203 of compressed upwards slides and resumes deformation, first spring 203 resumes deformation and pushes the upper end of stopper 201 outwards, make three stopper 201 and three slide bar 200 separation of rotation setting in cylinder 9, slide bar 200 is automatic to slide down and struts folding tarpaulin 207 under the flow of flood and is the umbelliform, the interior flood that has filled up with of umbelliform tarpaulin 207, then the resistance of water phase to the relative person that falls into water of tarpaulin 207 is big, then tarpaulin 207 removes towards the direction of keeping away from the person of suing rescue, under the effect of fixed pulley 2, the person that falls into water is directly pulled to the person of suing rescue in the front, obtain the rescue.
When a person falling into water pulls the pull rope 1, the data acquisition module 102 acquires the physical health condition of the person falling into water through the electrocardio sensor 104, then feeds information back to the processor 100, the processor 100 receives the information and makes an instruction through judgment and analysis, the alarm module 101 is not triggered when the person falling into water is healthy, the alarm module 101 is triggered when the person falling into water is weak and needs rescue, and the position is displayed on the mobile phone terminal 103 of the medical worker through the GPS positioning device 105, so that the medical worker can find the person falling into water in time and rescue the person.
When a person falling into the water is rescued, the pull rope 1 is not stressed, at the moment, the second spring 208 restores to deform, the supporting block 202 moves towards the direction away from the top end of the cylinder 9, the supporting block 202 moves to drive the rack 301 to move, the rack 301 moves to drive the gear 303 to rotate in the forward direction, the gear 303 rotates in the forward direction to drive the rotating shaft 300 to rotate in the forward direction, the rotating shaft 300 rotates in the forward direction to drive the cylinder cover 302 to rotate in the forward direction, the first opening 304 and the second opening 305 are overlapped, one of the sliding rods 200 slides out from the opening, the remaining two sliding rods 200 form a straight line at the moment, the waterproof cloth 207 is in a straight line instead of an umbrella shape, and at the moment, the rescuer easily pulls the pull rope 1 to retract the.
Then hold stay cord 1, make stay cord 1 atress, second spring 208 resumes deformation and extrudees the upper end of stopper 201 outwards, then resume three slide bar 200 to the normal position, then loosen stay cord 1, make stay cord 1 receive downward pulling force under the effect that second spring 208 resumes deformation, make to support piece 202 and move down, it drives first spring 203 and rack 301 and move down to support piece 202 and move down, make stopper 201 restrict slide bar 200 at the top of spout 204 under the effect of first spring 203, rack 301 moves down and drives gear 303 antiport, gear 303 antiport drives pivot 300 antiport, pivot 300 antiport drives drum cover 302 antiport, make first opening 304 and second opening 305 closed. At this time, the tarpaulin 207 is folded and collected to be convenient for next use.
The foregoing is merely an example of the present invention and common general knowledge of known specific structures and features of the embodiments is not described herein in any greater detail. It should be noted that, for those skilled in the art, without departing from the structure of the present invention, several changes and modifications can be made, which should also be regarded as the protection scope of the present invention, and these will not affect the effect of the implementation of the present invention and the practicability of the patent. The scope of the claims of the present application shall be determined by the contents of the claims, and the description of the embodiments and the like in the specification shall be used to explain the contents of the claims.

Claims (8)

1. An intelligent rescue rope of the Internet of things comprises a pull rope (1), a processor (100), an alarm module (101), a data acquisition module (102) and a mobile phone terminal (103); the processor (100) is respectively in wireless connection with the alarm module (101), the data acquisition module (102) and the mobile phone terminal (103) of the medical staff;
the data acquisition module (102) is used for receiving the parameter data and transmitting the parameter data to the processor (100);
the processor (100) is used for receiving the parameter data acquired by the data acquisition module (102) and selecting to trigger or not trigger the alarm module 101 according to the parameter data;
the mobile phone terminal (103) acquires relevant information through the access processor (100) and displays an interface in real time;
the method is characterized in that: an electrocardio sensor (104) and a GPS positioning device (105) are arranged on the pull rope (1); the electrocardio sensor (104) and the GPS positioning device (105) are respectively in wireless connection with the data acquisition module (102); the rope pulling device is characterized by further comprising a fixed pulley (2), a handle (3) is arranged on the fixed pulley (2), two ends of the handle (3) penetrate through the center of the fixed pulley (2), a gap is formed between the handle (3) and the fixed pulley (2), the pulling rope (1) is arranged in the gap in a sliding mode, and clamping blocks (4) which cannot pass through the gap are arranged at two ends of the pulling rope (1);
a hollow cylinder (9) is arranged at one end of the pull rope (1) in a sliding manner, and the cylinder (9) is connected with a clamping block (4) on the pull rope (1) at the end; a sliding mechanism is arranged in the cylinder (9), and comprises a sliding rod (200), a limiting block (201), a resisting block (202) and a first spring (203); the sliding device is characterized in that sliding grooves (204) used for sliding of the sliding rods (200) are formed in the periphery of the cylinder (9), the sliding rods (200) are I-shaped, each sliding rod (200) comprises an end A (205) and an end B (206), the middle of each sliding rod (200) is located in the corresponding sliding groove (204), the end A (205) of each sliding rod (200) is located outside the cylinder (9), the end B (206) of each sliding rod (200) is located inside the cylinder (9), a folding waterproof cloth (207) is connected onto each sliding rod (200), a limiting block (201) used for limiting the sliding rods (200) to move is arranged in the cylinder (9) in a rotating mode, each limiting block (201) is L-shaped, a first spring (203) connected with the limiting block (201) is arranged on each abutting block (202), one end of each abutting block (202) is connected with the pull rope (1), and a gap is formed between each abutting block (202) and the top end of the cylinder (9), a second spring (208) is arranged on the pull rope (1) positioned in the gap; the diameter of the second spring (208) is larger than that of the pull rope (1), the number of the sliding rods (200) is not less than three, and the number of the limiting blocks (201) and the number of the first springs (203) are the same as that of the sliding rods (200).
2. The intelligent rescue rope of the internet of things according to claim 1, characterized in that: the number of the sliding rods (200) is 3.
3. The intelligent rescue rope of the internet of things according to claim 2, characterized in that: still include and receive umbrella mechanism, receive umbrella mechanism including pivot (300), rack (301) and cylinder lid (302), be connected with the screw rod on pivot (300), pivot (300) are rotated and are set up on cylinder (9), be equipped with gear (303) with rack (301) engaged with on pivot (300), rack (301) are connected on supporting piece (202), be equipped with first opening (304) that slide bar (200) can roll-off on cylinder (9), be equipped with on cylinder lid (302) with first opening (304) assorted second opening (305), cylinder lid (302) rotate with cylinder (9) and are connected, be equipped with on cylinder lid (302) with screw rod assorted screw hole.
4. The intelligent rescue rope of the internet of things according to claim 1, characterized in that: a bracelet (5) is arranged on the pull rope (1).
5. The intelligent rescue rope of the internet of things according to claim 1, characterized in that: a plurality of bracelets (5) are arranged on the pull rope (1).
6. The intelligent rescue rope of the internet of things according to claim 1, characterized in that: and a rope pulling groove (6) for limiting the left and right movement of the pull rope (1) is arranged on the fixed pulley (2).
7. The intelligent rescue rope of the internet of things according to claim 1, characterized in that: a floating ball (7) is arranged on the pull rope (1) and used for being grabbed by a person falling into the water.
8. The intelligent rescue rope of the internet of things according to claim 1, characterized in that: a gravity ball (8) is arranged in the floating ball (7).
CN202110012886.1A 2021-01-06 2021-01-06 Intelligent rescue rope of thing networking Withdrawn CN112810779A (en)

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
TW306454U (en) * 1996-11-28 1997-05-21 Guang-Ming Chen Improved structure of the rescuing rope bag in water
CN2425670Y (en) * 1999-09-29 2001-04-04 王彦军 Self-lifesaving apparatus for fire of high building
DE10313423A1 (en) * 2003-03-25 2004-11-11 Fachhochschule Hildesheim/Holzminden/Göttingen Aid device for the boarding of a person towed from outside in a rescue device on the side wall of a ship
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