用于多瑙河三角洲反偷猎监视任务的垂直起降无人机设计

Sorin Andrei Negru, M. Manea, G. Jiga
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摘要

本研究论文的主要目的是对提出的封堵(堵塞)沥青裂缝的方法进行理论和实验分析,该方法是采用一种圆柱形沥青棒,富含塑料和橡胶颗粒(从废物中获得),通过旋转和摩擦将其熔化并注入裂缝区。在分析了密封区域的技术特点和应用沥青层所需的时间后,可以在将来选择这种方法,以避免对开裂磨损层进行部分磨铣的昂贵操作,从而使使用摩擦程序通过密封(堵塞)来修复裂缝成为可能。研究结果强调了使用摩擦法降低道路维修成本,减少裂缝修复时间,保持修复区域的初始特征,加入防水材料(回收废物的塑料和橡胶颗粒),保持磨损层的良好状态,以低成本嵌入智能交通监控系统的可能性等。
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Design of a VTOL UAV for Anti-poaching Surveillance Missions in the Danube Delta
The main objective of the research paper is the theoretical and experimental analysis of the method proposed for sealing (clogging) cracks in asphalt, by means of a cylindrical bitumen bar, enriched with plastic and rubber granules (obtained from the use of waste), which melts and infuses into the cracked zone by rotation and friction against it. After analyzing the technical characteristics of the sealed area and the time required to apply the bitumen layer, this method can be chosen in the future to the detriment of the expensive operations of partial milling of the cracked wear layer, making possible the repair of cracks by sealing(clogging), using the friction procedure. The research results highlighted the diminution of road maintenance costs using the method of friction, the decrease of cracks repair time, maintaining the initial characteristics of the repaired area, incorporating a waterproofing material (plastic and rubbber granules from recycled waste), keeping the wear layer in good conditions, possibility of embedding an intelligent system of traffic monitoring at low costs etc.
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