力鸿一号飞行器首秀 瞄准可复用太空实验平台与太空旅游未来
Xin Lang Cai Jing·2026-01-13 05:18

Core Viewpoint - The successful maiden flight of the Lihong-1 spacecraft marks a significant step towards establishing a reusable space experimental platform and future space tourism opportunities [1][4]. Group 1: Lihong-1 Spacecraft Overview - The Lihong-1 spacecraft, developed by the commercial aerospace company CAS Space, serves as a suborbital scientific experimental platform aimed at microgravity scientific experiments and near-space in-situ detection [2]. - It features low launch costs, high flexibility, and the capability to recover experimental payloads, making it suitable for various applications such as space breeding, biomedicine, and microgravity experiments [2]. Group 2: Future Upgrades and Capabilities - The Lihong-1 can currently provide over 300 seconds of stable and reliable experimental conditions, with plans to upgrade its return capsule for a minimum orbital stay of one year and at least ten reuse cycles [3]. - Future upgrades will support projects in space pharmaceuticals, drug screening, animal experiments, and advanced semiconductor manufacturing, as well as cutting-edge fields like microgravity physics and space life sciences [5]. Group 3: Cost Reduction and Reusability - To lower launch costs, the Lihong series will expand its scale and explore technologies such as group parachute recovery and airbag landing for multiple reuse of the payload capsule [5]. - The Lihong-2 spacecraft, an upgraded version, will validate recovery technology for the launch vehicle and is expected to conduct a hundred-kilometer recovery technology verification in 2026 [5]. Group 4: Commercial Space Tourism - The Lihong series is also set to venture into commercial space tourism, with ongoing developments in crew life support and high-reliability escape technologies [6]. - This initiative aims to provide suborbital space tourism services, allowing ordinary people to experience short-term weightlessness and making space more accessible [6].

力鸿一号飞行器首秀 瞄准可复用太空实验平台与太空旅游未来 - Reportify