CN207637327U - A kind of helicopter rescue simulation system - Google Patents

A kind of helicopter rescue simulation system Download PDF

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Publication number
CN207637327U
CN207637327U CN201721174842.4U CN201721174842U CN207637327U CN 207637327 U CN207637327 U CN 207637327U CN 201721174842 U CN201721174842 U CN 201721174842U CN 207637327 U CN207637327 U CN 207637327U
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CN
China
Prior art keywords
frame
mobile station
reciprocal
winch
simulation system
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Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CN201721174842.4U
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Chinese (zh)
Inventor
梁斌
王虎
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Zhengzhou Xin Ya Technology Co Ltd Touam
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Zhengzhou Xin Ya Technology Co Ltd Touam
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Priority to CN201721174842.4U priority Critical patent/CN207637327U/en
Application granted granted Critical
Publication of CN207637327U publication Critical patent/CN207637327U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The utility model is related to rescue simulation field more particularly to a kind of helicopter to rescue simulation system.Its technical solution is:A kind of helicopter rescues simulation system, including frame, is provided with winch mobile chute at the top of frame, winch skid assembly is arranged in winch mobile chute, winch is fixed on winch skid assembly;It is provided with platform in the middle part of frame, mobile station sliding slot is fixed on platform, mobile station is arranged in mobile station sliding slot, the reciprocating drive mechanism for driving mobile station to be moved back and forth in mobile station sliding slot is provided on frame.The utility model provides the helicopter rescue simulation system that can simulate shaking and uncertain strong wind, solves the problems, such as that existing helicopter rescue simulation system can not simulate true environment, to the training effect of lifesaving personnel and smaller.

Description

A kind of helicopter rescue simulation system
Technical field
The utility model is related to rescue simulation field more particularly to a kind of helicopter to rescue simulation system.
Background technology
Air rescue is also known as aerial 120, mainly based on the rescue task in the large-scale accident of execution, helicopter, Face ambulance, foundation have the gapless rescue chain including hospital of transhipment Green Channel of Emergency Treatment etc., it is intended to exclude traffic, landform etc. It influences, shortens rescue transhipment time.The emergency relief circle of covering Beijing-tianjin-hebei Region has been formed, and helicopter will become 999 first aids The important rescue transfer tool in center and 120 first-aid centres.And it executes air rescue task and needs professional knowledge really up to the mark and ripe Experienced air rescue technical ability could improve the success rate of rescue and shorten rescue time, and such rescue personnel can't do without daily instruction Practice, and open every time helicopter carry out air rescue combat training cost it is huge, undoubtedly also without safety for new hand.
The utility model patent that number of patent application is CN201620297750.4 discloses a kind of continental rise platform simulation and goes straight up to Machine winch rescue system, including braced frame are provided with nacelle installation cavity in the braced frame, pacify in the nacelle installation cavity Equipped with simulation nacelle, the simulation nacelle top is connect with supporting frame by rotating device, is also installed in the simulation nacelle There is hauling winch, winch rescue chamber is provided with below the nacelle installation cavity, the side of the braced frame is also equipped with personnel Lifting gear.In the utility model, can by land in laboratory can simulated training lifesaving personnel in severe sea condition condition The helicopter hovering rescue mission of lower progress.Rotating device can be used for vibrations and rotation when helicopter simulating hovering.Effectively Solve the problems, such as trained lifesaving personnel.
Above-mentioned rescue system can not simulate true site environment, limited to the training effect of lifesaving personnel.Lifesaving personnel The platform stood in rescue can shake back and forth, in order to recycle the ability that lifeguard keeps balance in harsh environment, it is necessary to Simulate the environment moved back and forth.Larger air can be caused to flow when the propeller rotational of helicopter, in addition weather conditions apoplexy The influence of power, the environment residing for lifesaving personnel, which has uncertain strong wind, to be existed.Since wind-force and wind direction be always in true environment Changing, is then needing the increase uncertain factor of wind direction that could play the role of to lifesaving personnel in simulated environment trained.
Utility model content
The utility model overcomes the deficiencies in the prior art, provides the helicopter rescue that can simulate shaking and uncertain strong wind Simulation system, solve existing helicopter rescue simulation system can not simulate true environment, to the training effect of lifesaving personnel and Smaller problem.
In order to solve the above technical problems, the utility model uses following technical scheme:
A kind of helicopter rescues simulation system, including frame, and winch mobile chute, winch movement are provided at the top of frame It is arranged with winch skid assembly in sliding slot, winch is fixed on winch skid assembly;It is provided with platform in the middle part of frame, shifting is fixed on platform Platform sliding slot is moved, mobile station is arranged in mobile station sliding slot, is provided on frame for driving mobile station past in mobile station sliding slot The reciprocating drive mechanism moved again.
As the preferred embodiment of the utility model, the reciprocating drive mechanism includes reciprocating motor, the output of reciprocating motor Axis connection has reciprocal retarder, reciprocating motor and reciprocal retarder to be mounted on frame, the output axis connection of reciprocal retarder There is a reciprocal driving gear, reciprocal driven gear is equipped with by bearing on frame, reciprocal driving gear is nibbled with reciprocal driven gear It closes, the edge of reciprocal driven gear is hinged with connecting rod, and the other end and mobile station of connecting rod are hinged.
As the preferred embodiment of the utility model, it is provided with lantern ring on the platform, rotating bar is arranged in lantern ring, rotates One end of bar is equipped with fan, and the other end of rotating bar is connected with the rotating drive mechanism for driving rotating bar Fixed-point Motion of A.
As the preferred embodiment of the utility model, the rotating drive mechanism includes rotary electric machine, the output of rotary electric machine Axis connection has rotation retarder, rotary electric machine and rotation retarder to be mounted on frame, rotates the output axis connection of retarder There are cam, the one end of rotating bar far from fan to be articulated with the edge of cam.
As the preferred embodiment of the utility model, rope ladder is installed, the height of rope ladder upper end is higher than movement on the frame Platform.
Compared with prior art, the utility model has the beneficial effects that:
1, the winch of the utility model can be moved relative to frame, be in always for simulating helicopter in true environment Situation on the move.Reciprocating drive mechanism can drive mobile station to reciprocatingly slide in mobile station sliding slot, for simulating true environment The situation that the position that middle rescue personnel is stood can not be fixed.The utility model can simulate true complex environment, rescue personnel Balanced capacity and Ability of emergency management can get a promotion, rescue personnel can accumulate rescue experience in training.
2, after reciprocating motor starts, reciprocal retarder drives reciprocal driving gear rotation, reciprocal driving gear driving reciprocal Driven gear rotates, and connecting rod is continuously swung, then mobile station can move back and forth.Mobile station reciprocating movement simulates rescue personnel and exists Adverse circumstances in rescue operations help to improve rescue personnel and improve balanced capacity and Ability of emergency management, and temper rescue The psychological quality of personnel.
3, rotating drive mechanism powered rotatable bar is to put rotation centered on the point for contacting lantern ring, then fan can turn on one side It moves, swing on one side, fan can simulate the comprehensive function result of the whirlwind of helicopter blade and natural wind in true environment.Rescue people Member can be in the boisterous effect of training adaptation in the environment of uncertain wind direction and wind-force.
4, after rotary electric machine starts, rotation retarder driving cam rotation.Rotating bar pinpoints under the drive of cam to be turned Dynamic, fan can move under the drive of rotating bar.The movement of fan is compound motion, and the more preferable simulation true environment of energy improves To the training effect of rescue personnel.
5, when rope ladder is climbed for rescue personnel, the control ability of rescue personnel can be trained effectively, to rescue people The synthesis of member can be improved using ability.
Description of the drawings
Fig. 1 is the structural schematic diagram of the utility model;
Fig. 2 is the structural schematic diagram of reciprocating drive mechanism;
Fig. 3 is the local structural graph of the utility model.
In figure, 1- frames, 2- mobile station sliding slots, 3- mobile stations, 4- reciprocating drive mechanisms, 5- lantern rings, 6- rotating bars, 7- wind Fan, 8- rotating drive mechanisms, 11- winch mobile chutes, 12- winch skid assemblies, 13- winches, 14- platforms, 15- rope ladders, 41- are reciprocal Motor, the reciprocal retarders of 42-, the reciprocal driving gears of 43-, the reciprocal driven gears of 44-, 45- connecting rods, 81- rotary electric machines, 82- Rotate retarder, 83- cams.
Specific implementation mode
Below in conjunction with the accompanying drawings, the utility model is described in detail.
In order to make the purpose of the utility model, technical solutions and advantages more clearly understood, below in conjunction with attached drawing and implementation Example, the present invention will be further described in detail.It should be appreciated that specific embodiment described herein is only explaining this Utility model is not used to limit the utility model.
Embodiment one
As shown in Figure 1, the utility model includes frame 1, the top of frame 1 is provided with winch mobile chute 11, and winch moves It is arranged with winch skid assembly 12 in dynamic sliding slot 11, winch 13 is fixed on winch skid assembly 12;The middle part of frame 1 is provided with platform 14, It is fixed with mobile station sliding slot 2 on platform 14, mobile station 3 is arranged in mobile station sliding slot 2, is provided on frame 1 and is moved for driving The reciprocating drive mechanism 4 that dynamic platform 3 moves back and forth in mobile station sliding slot 2.
The winch of the utility model can be moved relative to frame 1, be in always for simulating helicopter in true environment Situation on the move.Reciprocating drive mechanism 4 can drive mobile station 3 to reciprocatingly slide in mobile station sliding slot 2, for simulating true ring The situation that the position that rescue personnel is stood in border can not be fixed.The utility model can simulate true complex environment, rescue people The balanced capacity and Ability of emergency management of member can get a promotion, and rescue personnel can accumulate rescue experience in training.
Embodiment two
As shown in Fig. 2, on the basis of embodiment one, the reciprocating drive mechanism 4 includes reciprocating motor 41, reciprocating motor 41 output shaft is connected with reciprocal retarder 42, and reciprocating motor 41 and reciprocal retarder 42 are mounted on frame 1, reciprocal to slow down The output shaft of device 42 is connected with reciprocal driving gear 43, and reciprocal driven gear 44 is equipped with by bearing on frame 1, it is reciprocal actively Gear 43 is engaged with reciprocal driven gear 44, and the edge of reciprocal driven gear 44 is hinged with connecting rod 45, connecting rod 45 it is another End is hinged with mobile station 3.
After reciprocating motor 41 starts, reciprocal retarder 42 drives reciprocal driving gear 43 to rotate, and reciprocal driving gear 43 drives Dynamic reciprocal driven gear 44 rotates, and connecting rod 45 is continuously swung, then mobile station 3 can move back and forth.Mobile station 3 moves back and forth simulation Adverse circumstances of the rescue personnel in rescue operations help to improve rescue personnel and improve balanced capacity and emergency processing energy Power, and temper the psychological quality of rescue personnel.
Embodiment three
On the basis of embodiment one or embodiment two, it is provided with lantern ring 5 on the platform 14, is arranged with and turns in lantern ring 5 One end of lever 6, rotating bar 6 is equipped with fan 7, and the other end of rotating bar 6 is connected with for driving 6 Fixed-point Motion of A of rotating bar Rotating drive mechanism 8.
8 powered rotatable bar 6 of rotating drive mechanism is to put rotation centered on the point for contacting lantern ring 5, then fan 7 can turn on one side It moves, swing on one side, fan 7 can simulate the comprehensive function result of the whirlwind of helicopter blade and natural wind in true environment.Rescue Personnel can be in the boisterous effect of training adaptation in the environment of uncertain wind direction and wind-force.
Example IV
On the basis of above-mentioned any one embodiment, the rotating drive mechanism 8 includes rotary electric machine 81, rotary electric machine 81 output shaft is connected with rotation retarder 82, and rotary electric machine 81 and rotation retarder 82 are mounted on frame 1, and rotation is slowed down The output shaft of device 82 is connected with cam 83, and the one end of rotating bar 6 far from fan 7 is articulated with the edge of cam 83.
After rotary electric machine 81 starts, rotation 82 driving cam 83 of retarder rotation.Rotating bar 6 is under the drive of cam 83 Fixed-point Motion of A, fan 7 can move under the drive of rotating bar 6.The movement of fan 7 is compound motion, and the more preferable simulation of energy is true Environment improves the training effect to rescue personnel.
Embodiment five
On the basis of above-mentioned any one embodiment, rope ladder 15, the height of 15 upper end of rope ladder are installed on the frame 1 Higher than mobile station 3.When rope ladder 15 is climbed for rescue personnel, the control ability of rescue personnel can be trained effectively, to rescue Helping the synthesis of personnel can be improved using ability.

Claims (5)

1. a kind of helicopter rescues simulation system, which is characterized in that including frame (1), winch shifting is provided at the top of frame (1) Dynamic sliding slot (11), winch mobile chute (11) is interior to be arranged with winch skid assembly (12), and winch (13) is fixed on winch skid assembly (12); It is provided with platform (14) in the middle part of frame (1), mobile station sliding slot (2) is fixed on platform (14), is arranged in mobile station sliding slot (2) There is mobile station (3), the reciprocal drive for driving mobile station (3) to be moved back and forth in mobile station sliding slot (2) is provided on frame (1) Motivation structure (4).
2. a kind of helicopter according to claim 1 rescues simulation system, which is characterized in that the reciprocating drive mechanism (4) include reciprocating motor (41), the output shaft of reciprocating motor (41) is connected with reciprocal retarder (42), reciprocating motor (41) and past Multiple retarder (42) is mounted on frame (1), and the output shaft of reciprocal retarder (42) is connected with reciprocal driving gear (43), frame Reciprocal driven gear (44) is equipped with by bearing on frame (1), reciprocal driving gear (43) is engaged with reciprocal driven gear (44), The edge of reciprocal driven gear (44) is hinged with connecting rod (45), and the other end and mobile station (3) of connecting rod (45) are hinged.
3. a kind of helicopter according to claim 1 rescues simulation system, which is characterized in that be arranged on the platform (14) Have a lantern ring (5), be arranged with rotating bar (6) in lantern ring (5), one end of rotating bar (6) is equipped with fan (7), rotating bar (6) it is another One end is connected with the rotating drive mechanism (8) for driving rotating bar (6) Fixed-point Motion of A.
4. a kind of helicopter according to claim 3 rescues simulation system, which is characterized in that the rotating drive mechanism (8) include rotary electric machine (81), the output shaft of rotary electric machine (81) is connected with rotation retarder (82), rotary electric machine (81) and turn Dynamic retarder (82) is mounted on frame (1), and the output shaft of rotation retarder (82) is connected with cam (83), rotating bar (6) One end far from fan (7) is articulated with the edge of cam (83).
5. a kind of helicopter according to Claims 1 to 4 any one rescues simulation system, which is characterized in that the frame Rope ladder (15) is installed, the height of rope ladder (15) upper end is higher than mobile station (3) on frame (1).
CN201721174842.4U 2017-09-14 2017-09-14 A kind of helicopter rescue simulation system Expired - Fee Related CN207637327U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201721174842.4U CN207637327U (en) 2017-09-14 2017-09-14 A kind of helicopter rescue simulation system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201721174842.4U CN207637327U (en) 2017-09-14 2017-09-14 A kind of helicopter rescue simulation system

Publications (1)

Publication Number Publication Date
CN207637327U true CN207637327U (en) 2018-07-20

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Family Applications (1)

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CN201721174842.4U Expired - Fee Related CN207637327U (en) 2017-09-14 2017-09-14 A kind of helicopter rescue simulation system

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110097795A (en) * 2019-04-25 2019-08-06 西安飞机工业(集团)航电科技工程有限公司 A kind of helicopter simulating suspention survival training system and training method
CN111823813A (en) * 2020-06-21 2020-10-27 仇涛 Air conditioner cooling system for automobile cab
CN114898627A (en) * 2022-07-14 2022-08-12 南京宇天万维信息技术有限公司 Helicopter suspension simulation lifesaving training system and training method

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110097795A (en) * 2019-04-25 2019-08-06 西安飞机工业(集团)航电科技工程有限公司 A kind of helicopter simulating suspention survival training system and training method
CN111823813A (en) * 2020-06-21 2020-10-27 仇涛 Air conditioner cooling system for automobile cab
CN111823813B (en) * 2020-06-21 2021-03-23 威海汇晟智能装备有限公司 Air conditioner cooling system for automobile cab
CN114898627A (en) * 2022-07-14 2022-08-12 南京宇天万维信息技术有限公司 Helicopter suspension simulation lifesaving training system and training method
CN114898627B (en) * 2022-07-14 2022-09-20 南京宇天万维信息技术有限公司 Helicopter suspension simulation lifesaving training system and training method

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CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20180720

Termination date: 20210914

CF01 Termination of patent right due to non-payment of annual fee