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Parachuting training device and training method

A training device and hoisting technology, applied in the field of skydiving simulation training, can solve problems such as the inability to realize somatosensory simulation, the inability to truly restore the process of run-up and take-off, and the training personnel to hang in the air

Pending Publication Date: 2021-08-20
天津富腾达科技有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] In the existing technology, the training equipment combined with rope parallel connection and VR has been introduced. Through scenario simulation, the process and environment of skydiving can be reproduced more realistically. This kind of skydiving simulator does have many advantages, but the focus is on VR. In the development and application of the equipment, the supporting mechanical structure only has the monotonous function of hanging the trainer in the air, which can only realize visual simulation, but cannot realize somatosensory simulation. The length of the rope is certain, and the trainers need to be tied up in mid-air in advance, and the process of approaching and taking off cannot be truly restored

Method used

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  • Parachuting training device and training method
  • Parachuting training device and training method
  • Parachuting training device and training method

Examples

Experimental program
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Effect test

Embodiment 1

[0038] refer to figure 1 As shown, a parachute training device of the present invention includes a support frame 1, the support frame 1 is a rectangular frame formed by splicing square steel and a round tube, and the support frame 1 is provided with:

[0039] The simulated drive part includes a horizontal moving component 2 hoisted on the support frame 1 and a lifting component 3 installed on the horizontal moving component 2, which is simulated and realized by the horizontal moving component 2 and the lifting component 3 The movement in the horizontal and vertical directions in space can simulate the natural movement trajectory in the horizontal and vertical directions during skydiving;

[0040] The control drive part 4 is connected to the analog drive part, the control drive part 4 is installed on the lifting assembly 3, the control drive part 4 is driven by the analog drive part to move, and the forward and reverse rotation can be realized through manual manipulation, Simu...

Embodiment 2

[0051] refer to Image 6 As shown, a skydiving training method, using the above-mentioned skydiving training device, includes the following steps:

[0052] S1. Wear virtual reality equipment, fasten the rope to the trainee, and board the jumping platform;

[0053] S2. Move to the direction away from the skydiving training device on the take-off platform, and reserve a running distance on the take-off platform. At this time, the electromagnetic clutch is in a connected state, and the pull rope can be freely pulled in the spring reel;

[0054] S3. Take off at the edge after approaching on the take-off platform. During the approaching process, gradually move towards the direction close to the skydiving training device. At this time, the electromagnetic clutch is in a connected state, and the pull rope is recovered under the pulling of the spring rewinding wheel. After the sensor detects the jump, the control electromagnetic clutch is in a disconnected state, the spring reel cann...

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Abstract

The invention relates to a parachuting training device and method. The training device comprises a supporting frame, a simulation driving part, a control driving part and a stretching part. The pull rope part is arranged on the control driving part and comprises a pull rope, a spring winding wheel, an electromagnetic clutch for controlling the rotating state of the spring winding wheel and a detection sensor for controlling the on-off state of the electromagnetic clutch, when the electromagnetic clutch is in a connected state, the spring winding wheel can rotate, and the pull rope is pulled to adjust the length of the pull rope extending out of the spring winding wheel, when the electromagnetic clutch is in a disconnected state, the spring winding wheel cannot rotate, and the length of the part, extending out of the spring winding wheel, of the pull rope is fixed; the training device is applied to the training method, and the whole parachuting process of run-up, take-off, flight and landing can be truly simulated. The state of the pull rope is controlled through the electromagnetic clutch, horizontal, vertical and rotary motion in the space in the parachuting process is achieved through the simulation driving part and the control driving part, the safety coefficient is high, and the requirement for training diversification is met.

Description

technical field [0001] The invention relates to the technical field of skydiving simulation training, in particular to a skydiving training device and a training method. Background technique [0002] Skydiving is a sport with high technical requirements and high risk factor, which has high requirements on soldiers' physiology and psychology. Therefore, let the soldiers master the key points of technical movements in training, and they must be targeted. However, with the existing infrastructure, it can only be achieved through a large amount of muscle training. The psychological pressure on the unknown environment is often ignored, which leads to the training pass. However, after the actual boarding, the movement is deformed due to tension and fear. Then the injury occurs. [0003] However, it is difficult to find mature products of skydiving training devices that have sufficient degrees of freedom and meet safety requirements on the market. Therefore, the development and ...

Claims

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Application Information

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IPC IPC(8): G09B9/00B64D23/00
CPCB64D23/00G09B9/003
Inventor 马智斌
Owner 天津富腾达科技有限公司
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