首页|新型全自动高效客运索道救援设备研究

新型全自动高效客运索道救援设备研究

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近些年,客运索道逐渐成为广大游客所喜爱的游乐设施,然而,当客运索道发生故障时,当前通常以老式救援为主,其救援效率较低且成本较高.因此,为了能够低成本高效率将被困游客转移到安全位置,研究出一种新型全自动高效客运索道救援设备迫在眉睫.首先,根据救援设备可连续和快速救援的特性,并结合客运索道特点,研究出新型全自动客运索道救援设备整体方案;其次,结合救援设备可完成爬坡、跨越吊椅、跨越支架、四轮同步行走于缆绳及调速等功能,完成救援设备机械、电气、液压等单元设计;最后,通过现场对样机进行试验调试,分别通过四行走轮同步测试、爬坡行走测试、跨越吊椅以及跨越支架测试进行验证,该设备均能高效完成救援每个步骤.研究结果表明:相比于老式救援方式,该设备救援更加自动高效、安全和灵活,满足未来客运索道救援发展需要.
Research on New Fully Automatic and Efficient Passenger Ropeway Rescue Equipment
In recent years,passenger cableways have gradually become a popular amusement facility for tourists.However,when a passenger cableway malfunctions,old-fashioned rescue methods are usually used,which have lower rescue efficiency and higher costs.Therefore,it is urgent to develop a new type of fully automatic and efficient passenger cableway rescue equipment in order to transfer trapped tourists to a safe location with low cost and high efficiency.Firstly,based on the characteristics of continuous and rap-id rescue equipment,and combined with the characteristics of passenger ropeways,a new fully automatic passenger ropeway rescue e-quipment overall plan is studied;Secondly,combined with rescue equipment,it can complete functions such as climbing,crossing suspension chairs,crossing brackets,four wheel synchronous walking on cables and speed regulation,and complete the design of me-chanical,electrical,hydraulic and other units of rescue equipment;Finally,through on-site testing and debugging of the prototype,it was verified that the equipment can efficiently complete each rescue step through synchronous testing of four walking wheels,climb-ing walking tests,crossing suspension chairs,and crossing brackets.The research results indicate that compared to old-fashioned rescue methods,this device is more automatic,efficient,safe,and flexible in rescue,meeting the needs of future passenger ropeway rescue development.

passenger ropewayrescue equipmentautomatic and efficientcrossing obstacleselectric control

严波、黄祖钦、陈源

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广西壮族自治区特种设备检验研究院,南宁 530200

客运索道 救援设备 自动高效 跨越障碍 电气控制

国家质量监督检验检疫总局科技项目

2014QK175

2024

自动化与仪器仪表
重庆工业自动化仪表研究所,重庆市自动化与仪器仪表学会

自动化与仪器仪表

CSTPCD
影响因子:0.327
ISSN:1001-9227
年,卷(期):2024.(8)