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Landslide geological disaster rescue robot with high safety
The invention relates to the technical field of intelligent rescue robots and particularly discloses a landslide geological disaster rescue robot with high safety. The landslide geological disaster rescue robot comprises a traveling mechanism, an excavating mechanism and a rescue capsule body. The traveling mechanism comprises a base, crawler wheel sets are arranged on the front end face and the rear end face of the base, and crawler belts are arranged on the crawler wheel sets. The rescue capsule body is arranged on the upper surface of the base, a safety capsule is arranged in the rescue capsule body, and multiple safety seats are fixedly arranged in the safety capsule. Safety belts are arranged on the safety seats, and emergency safety airbags are arranged on the two sides of the upperends of the safety seats. By means of the landslide geological disaster rescue robot with high safety, the rescue capsule body is arranged in a double-layer manner, the safety capsule is arranged in the rescue capsule body, a large number of buffer springs are arranged between the safety capsule and the rescue capsule body, and when stones sliding down in the landslide rescue process impact the surface of the rescue capsule body, the impact force of stone impact can be effectively reduced due to the existence of the buffer springs, so that secondary injury to the rescued person is prevented.
本发明涉及智能救援机器人技术领域,具体公开了一种安全性高的滑坡地质灾害救援机器人;包括行驶机构、挖掘机构和救生舱体,行驶机构包括底座,底座的前后两端面设置有履带轮组,履带轮组上设置有履带,底座的上表面设置有救生舱体,救生舱体的内部设置有安全舱,安全舱的内部固定设置有若干安全座椅,安全座椅上设置有安全带,安全座椅的上端两侧均设置有紧急安全气囊;本发明将救生舱体双层设置,其安全舱设置在救生舱体内部,并且两者之间设置有大量的缓冲弹簧,当在滑坡救援过程中其滑落的石头撞击在救生舱体表面是,由于缓冲弹簧的存在能够有效降低其石头撞击的冲击力,防止其对被救援者造成二次伤害。
Landslide geological disaster rescue robot with high safety
The invention relates to the technical field of intelligent rescue robots and particularly discloses a landslide geological disaster rescue robot with high safety. The landslide geological disaster rescue robot comprises a traveling mechanism, an excavating mechanism and a rescue capsule body. The traveling mechanism comprises a base, crawler wheel sets are arranged on the front end face and the rear end face of the base, and crawler belts are arranged on the crawler wheel sets. The rescue capsule body is arranged on the upper surface of the base, a safety capsule is arranged in the rescue capsule body, and multiple safety seats are fixedly arranged in the safety capsule. Safety belts are arranged on the safety seats, and emergency safety airbags are arranged on the two sides of the upperends of the safety seats. By means of the landslide geological disaster rescue robot with high safety, the rescue capsule body is arranged in a double-layer manner, the safety capsule is arranged in the rescue capsule body, a large number of buffer springs are arranged between the safety capsule and the rescue capsule body, and when stones sliding down in the landslide rescue process impact the surface of the rescue capsule body, the impact force of stone impact can be effectively reduced due to the existence of the buffer springs, so that secondary injury to the rescued person is prevented.
本发明涉及智能救援机器人技术领域,具体公开了一种安全性高的滑坡地质灾害救援机器人;包括行驶机构、挖掘机构和救生舱体,行驶机构包括底座,底座的前后两端面设置有履带轮组,履带轮组上设置有履带,底座的上表面设置有救生舱体,救生舱体的内部设置有安全舱,安全舱的内部固定设置有若干安全座椅,安全座椅上设置有安全带,安全座椅的上端两侧均设置有紧急安全气囊;本发明将救生舱体双层设置,其安全舱设置在救生舱体内部,并且两者之间设置有大量的缓冲弹簧,当在滑坡救援过程中其滑落的石头撞击在救生舱体表面是,由于缓冲弹簧的存在能够有效降低其石头撞击的冲击力,防止其对被救援者造成二次伤害。
Landslide geological disaster rescue robot with high safety
一种安全性高的滑坡地质灾害救援机器人
LI QINGLEI (author)
2020-12-04
Patent
Electronic Resource
Chinese
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