理想汽车耐久仿真工程师实习生
任职要求
1. 硕士及以上学历在读,车辆工程、力学、计算机科学、机械、材料等; 2. 有CAE、性能开发或MDO/TOPO等轻量化研究或实习经验优先; 3. 熟悉Hyperworks、Ansa、Isight、Optimus等CAE或优化软件; 4. 具备具备较强的编程能力(Matlab、Python、TCL等)…
工作职责
1. 参与轻量化产品交付工作(主要MDO/TOPO应用),负责轻量化前沿技术的洞察,分析总结,未来规划; 2. 参与车身架构正向开发技术的研究与项目应用,包含车身设计创新,架构减重等目标; 3. 参与智能轻量化技术开发,比如AI技术在MDO和架构的应用开发; 4. 协助结构优化技术提升:MDO、Morph、参数化建模、DOE、高精响应面构建等能力提升工作; 5. 协助智能轻量化平台搭建,软件开发,实现从正向架构设计到工程阶段高精度MDO自动化流程; 6. 参与撰写技术方案、专利及论文,持续洞察轻量化技术前沿动态,并争取制定行业标准。
THE ROLE As a CAE analysis engineer, you are expected to be innovative and will play a critical role in the core development team for Tesla next generation products. You will analyze and optimize our revolutionary vehicle designs with your expertise; contribute to defining the best product in the industry along with a group of talented engineers. You will be brilliant both technically as an individual, and as an active member in a diverse and challenging cross-functional team environment. RESPONSIBILITIES • Develop strength and durability FE models for analysis for our revolutionary vehicle architectures in collaboration with a small team of multi-disciplinary engineers. • Perform strength and fatigue analysis of BIW, closure, exterior and interior subsystems. • Develop new CAE methods and process for solving engineering problems unique to Tesla’s EV architectures. • Challenge established traditional CAE methods and process to improve efficiency and accuracy. • Collaboratively work with test engineers to create specifications for data acquisition and virtual loads prediction. Carry out CAE to test correlation to improve modelling procedure and work on countermeasures. • Support world-class engineering teams with design direction based on your analyses and engineering judgement. • Provide input in the creation of component specification, component DFMEA, and other technical design documents where analysis plays a pivotal role.
1.整车可靠耐久VTS目标定义与达成,负责疲劳性能仿真策划及管控 2.负责耐久虚拟仿真性能达成,耐久优化方案寻找、性能平衡和最终方案决策 3.耐久性能风险管控,专业对外窗口,对接项目和专业,负责虚拟状态汇报,推动项目决策耐久优化方案落地 4.负责提出耐久车质量需求、评估问题风险、推动耐久车顺利交付 5.牵头整车结构耐久失效的设计类问题排查、原因分析、优化方案推动决策 6.牵头减重方案落地和减重目标达成,车身轻量化目标共同设定 7.参与耐久仿真和试验标准规划、创建和迭代 8.协助部门负责人,统筹推进耐久专业及部门运营