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VXB Aerospace

VXB Aerospace provides a generative design platform that accelerates the creation of complex, multi-part aerospace components. Its proprietary algorithms integrate multi-physics requirements and manufacturability constraints to reduce design cycles from years to days for applications like satellite systems.

Los Angeles, United StatesFounded 2022111K+ followers
Updated 3 months ago

Funding

Funding not disclosed

Funding rounds are not available yet.

Founders

Product

Problem

Developing complex, multi-part aerospace components with advanced multi-physics requirements is a time-intensive process, often taking years and significant engineering resources. Traditional design methodologies struggle to optimize for both intricate functionality and manufacturability simultaneously, leading to extended development cycles and increased costs for critical hardware like satellite systems.

Solution

VXB Aerospace offers a generative design platform that accelerates the creation of complex, multi-part components for advanced hardware. The platform leverages proprietary algorithms to generate custom designs that incorporate multi-physics considerations, such as those found in antennas, electronics, and plasma propulsion systems. By integrating manufacturability constraints directly into the generative process, VXB Aerospace significantly reduces design time from years to days. This approach enables engineers to explore design spaces beyond human conception, leading to optimized components for demanding applications. The platform also facilitates rapid validation through integrated testing capabilities.

Target Audience

The primary customers are aerospace and defense engineers and organizations involved in the development of advanced hardware, particularly those requiring complex, custom-designed components for satellite systems and other high-performance applications.

Features

  • Generative design engine capable of creating multi-part components with integrated multi-physics simulations.
  • Design optimization that factors in manufacturability constraints from the outset.
  • Reduced design cycle times, enabling component creation in 1-3 days.
  • Automated design workflows that streamline traditional engineering processes.
  • Capability to generate designs for complex systems including antennas, electronics, and plasma propulsion.
  • Proprietary algorithms for exploring novel design solutions beyond conventional human ideation.
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