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Talaria: Revolutionizing Personal Air Mobility with IoT and Simulation
技术
- 传感器 - 空气污染传感器
- 传感器 - 环境传感器
适用行业
- 航天
- 汽车
适用功能
- 产品研发
用例
- 添加剂制造
- 快速原型制作
服务
- 培训
挑战
Talaria 是一家由代尔夫特理工大学学生创立的初创公司,正在开发用于个人空中移动 (PAM) 的新型机载解决方案。该团队正在开发一种电动 PAM,可以在城市环境中垂直起飞和降落。该团队面临的主要挑战是减轻重量和加快生产过程。所有部件的重量对飞行性能和航程都有重大影响。因此,Talaria 旨在优化四个转子叶片的轮毂,以减轻设备的整体重量。面临的挑战是减少独特组件的重量和数量,同时确保更快的生产过程的可行性和安全性。选择的制造方法是 3D 打印,这提出了独特的挑战,因为这在航空业的关键部件中并不常见。
关于客户
Talaria 是一家由代尔夫特理工大学学生创立的初创公司。该团队正在开发新的机载解决方案,以适应一名或多人的航空旅行。这些解决方案包括大型无人机、小型直升机、飞机和飞行汽车。 Talaria 个人空中移动项目的想法始于 2017 年底,当时创始人 Philipp Essle 听说了波音 GoFly 竞赛,该竞赛奖励单人飞机的最佳设计。如今,Talaria 团队拥有大约 18 名来自代尔夫特理工大学的学生,并得到了许多赞助商的支持,这些赞助商投资于这个革命性项目的潜力。
解决方案
Talaria 使用 Altair Inspire 仿真技术来克服挑战。他们首先使用 3D CAD 程序设计了所有组件的基本几何形状。他们使用 Altair Inspire 检查是否可以通过拓扑优化来减少材料和重量。这种方法使转子轮毂的重量显着减轻了 1.5 公斤。 Talaria 与 Additive Industries 和 Altair 密切合作,探索 3D 打印的应用。这种制造方法是精益生产的关键,特别是与仿真技术相结合时。 Talaria 工程师使用 Altair Inspire 进行了多次模拟,以优化转子轮毂的几何形状、重量和强度。结果,他们将重量减轻了 1.5 公斤,并节省了 50% 的体积和独特组件的数量。这也简化并加快了 3D 打印的设计和生产过程。
运营影响
数量效益
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