{"version":"0.1","company":{"name":"YubHub","url":"https://yubhub.co","jobsUrl":"https://yubhub.co/jobs/skill/linear-structural-analysis"},"x-facet":{"type":"skill","slug":"linear-structural-analysis","display":"Linear Structural Analysis","count":2},"x-feed-size-limit":100,"x-feed-sort":"enriched_at desc","x-feed-notice":"This feed contains at most 100 jobs (the most recently enriched). For the full corpus, use the paginated /stats/by-facet endpoint or /search.","x-generator":"yubhub-xml-generator","x-rights":"Free to redistribute with attribution: \"Data by YubHub (https://yubhub.co)\"","x-schema":"Each entry in `jobs` follows https://schema.org/JobPosting. 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Blending hands-on technical work with leadership, you&#39;ll help drive innovation, solve challenging problems, and bring cutting-edge systems from concept to reality.</p>\n<p><strong>Functional Excellence:</strong></p>\n<ul>\n<li>Directly contribute to the design, analysis, and integration of mechanical systems and subsystems for X-BAT Launch and Recovery Vehicle.</li>\n<li>Establish and improve pragmatic mechanical engineering standards, templates, specifications, and best practices that increase design quality, reduce rework, and enable faster iteration.</li>\n<li>Own mechanical engineering deliverables across the product lifecycle,from early concept and prototyping through test, production, and field support,with a bias toward execution and delivery.</li>\n<li>Own failure mode analysis and reliability modeling for mechanical systems, establish lightweight, repeatable practices (e.g., FMEA, fault trees) that proactively identify risks, reduce field failures, and inform design tradeoffs.</li>\n<li>Partner closely with Engineering, Manufacturing, Supply Chain, Quality, Program Management, and Flight Operations to ensure designs are buildable, testable, and reliable in real-world environments.</li>\n<li>Provide hands-on technical support during ground and flight testing, demos, and field operations; rapidly troubleshoot and implement design fixes under tight timelines.</li>\n</ul>\n<p><strong>Team Leadership and Development:</strong></p>\n<ul>\n<li>Lead, mentor, and develop a team of mechanical engineers, providing technical guidance, regular feedback, and clear expectations for ownership and execution.</li>\n<li>Recruit and hire experienced mechanical engineers to strengthen team capability, elevate technical standards, and improve mentorship depth.</li>\n<li>Act as a player-coach: balance meaningful individual technical contribution with team leadership, design reviews, and day-to-day unblock of engineers.</li>\n<li>Establish team norms around accountability, decision-making speed, and engineering rigor,ensuring high-quality output without slowing momentum.</li>\n<li>Set clear priorities aligned with program goals; actively manage team bandwidth, identify risks early, and communicate tradeoffs to leadership.</li>\n<li>Drive clear and concise technical communication, ensuring design decisions, assumptions, and tradeoffs are well-documented and understood across functions.</li>\n</ul>\n<p><strong>Required qualifications:</strong></p>\n<ul>\n<li>Bachelor’s degree in Mechanical Engineering, Aerospace Engineering, or related discipline.</li>\n<li>10+ years of experience in mechanical design for aerospace, ground support equipment, or related ruggedized hardware systems.</li>\n<li>3+ years of leadership/manger with demonstrated excellence in building, retaining, and leading a high performing engineering team</li>\n<li>Proficiency in 3D CAD software (NX preferred) with demonstrated ability to create detailed GD&amp;T-compliant 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autonomous aircraft platforms being built today.</p>\n<p>This role is ideal for an aerospace mechanical engineer who thrives in hands-on design environments and is eager to take increasing ownership of flight-critical designs.</p>\n<p><strong>Responsibilities:</strong></p>\n<ul>\n<li>Design and develop structural components and assemblies for Shield AI&#39;s next-generation UAV platform, supporting both primary and secondary aircraft structures.</li>\n</ul>\n<ul>\n<li>Execute all stages of the design lifecycle including conceptual development, initial CAD modeling, detailed design, and drawing release.</li>\n</ul>\n<ul>\n<li>Perform hand calculations for stress or strain with limited basic FEA analysis, with guidance from senior engineers as needed.</li>\n</ul>\n<ul>\n<li>Collaborate closely with aerodynamics, propulsion, avionics, payload, and manufacturing teams to support system integration across airframe interfaces.</li>\n</ul>\n<ul>\n<li>Support structural validation efforts including coupon testing, subcomponent testing, and system-level verification.</li>\n</ul>\n<ul>\n<li>Generate high-quality design documentation, drawings, interface definitions, and analysis reports in compliance with aerospace standards.</li>\n</ul>\n<ul>\n<li>Partner with manufacturing and flight test teams to resolve build issues and support hardware through test and deployment.</li>\n</ul>\n<ul>\n<li>Participate in design reviews and technical discussions, presenting work clearly and incorporating feedback effectively.</li>\n</ul>\n<ul>\n<li>Continuously improve personal technical depth in structural layout, joints, fasteners, tolerancing, and structural optimization.</li>\n</ul>\n<p><strong>Requirements:</strong></p>\n<ul>\n<li>Bachelor’s or Master’s degree in Mechanical Engineering, Aerospace Engineering, or related discipline.</li>\n</ul>\n<ul>\n<li>4–5+ years of experience in aircraft structural design or closely related aerospace structures.</li>\n</ul>\n<ul>\n<li>Experience 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