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Mott supports propulsion, fuel management, gas actuation, thermal management, and contamination-control applications where reliability and performance are critical from launch through mission completion.
Missile and munitions programs operate in high-G, high-temperature, and highly dynamic environments where reliability cannot be compromised.
Particulate and debris contamination in propulsion and actuation systems
Flow instability during high-G maneuvers and dynamic flight conditions
Extreme thermal loads
across propulsion and control systems
Size, weight, and power constraints without sacrificing performance
Aggressive schedules with limited tolerance for redesign and qualification delays
Mott applies proven technologies and deep applications expertise to address the specific challenges encountered as defense programs move toward production.
Challenge
Propellant migration, gas ingestion, and phase separation can disrupt fuel delivery during high-G maneuvers and dynamic flight conditions.
Mott Solution
Surface Tension Elements (STEs) and Propellant Management Devices (PMDs) leverage engineered porous media to control fluid behavior and maintain reliable propellant extraction. Designs have demonstrated support for environments exceeding 12 g's and fluid extraction efficiencies approaching 98.5%.
Result
Up to 98% propellant utilization, reduced engine-stall risk, and reliable fuel delivery during high-G, low-G, and transitional flight regimes.
Challenge
Excessive component count, weight, and thermal stress increase system complexity and integration risk.
Mott Solution
Integrated porous-metal components combine flow control, filtration, and thermal-management functions into a single, robust architecture. Additive manufacturing enables further part consolidation and design optimization.
Result
Reduced part count, lower system weight, simplified assembly, and improved durability for missile and propulsion platforms.
Challenge
Particles and debris can damage injectors, valves, regulators, and gas-actuation systems operating under extreme pressure and vibration.
Mott Solution
Engineered porous-metal and mesh filtration technologies deliver submicron particle capture with high-pressure and high-vibration durability.
Result
Reliable protection for propulsion and actuation systems without sacrificing flow performance.
Challenge
Missile propulsion systems operate under extreme pressure, vibration, acceleration, and transient flow conditions that can disrupt system performance.
Mott Solution
Engineered porous-metal flow-control devices provide predictable flow characteristics while maintaining performance in demanding operating environments.
Result
Stable flow delivery, improved propulsion-system performance, and increased mission reliability.







01
Align on specifications, environments, and system constraints, direct collaboration with engineering teams, scope defined around performance and schedule
02
Iterative design and formal reviews, testing aligned to launch conditions, ongoing updates through qualification
03
Flight hardware built to specification, quality verified and documented, consistent delivery aligned to launch timelines
From missile propulsion and gas actuation systems to spacecraft, military aircraft, and defense platforms, Mott technologies support mission-critical applications operating in some of the world’s most demanding environments.
Proven Across Deep Space, National Security, Civil, and Commercial Missions
Mott supports missile and munition programs with engineered filtration, flow-control, thermal-management, and propellant-management solutions designed for demanding operating environments.
Protect propulsion systems from contaminants that can impact performance and reliability.
Enable reliable propellant management, liquid acquisition, and phase separation in demanding flight environments.
Provide precise flow control and pressure management for propulsion and actuation systems.
Support passive liquid transport and propellant acquisition in demanding flight environments
Manage extreme heat loads and improve performance in demanding operating environments.
Engineered porous-metal solutions that integrate filtration, flow control, and thermal-management functions into a single component.
Reliable fuel delivery becomes increasingly difficult during high-G maneuvers, rapid acceleration, and dynamic flight conditions. Poor fluid management can lead to gas ingestion, reduced propulsion performance, and mission failure.
Mott’s Surface Tension Elements (STEs) and Propellant Management Devices (PMDs) control fluid behavior inside tanks, supporting fluid extraction efficiencies approaching 98.5% and performance in environments exceeding 12 g’s.
Particles and debris can damage valves, injectors, regulators, and actuation hardware, reducing system reliability and increasing the risk of propulsion-system failure.
Mott engineers custom filtration, flow-control, and thermal-management solutions designed to withstand pressure, vibration, shock, acceleration, and thermal extremes.
Custom porous-metal and additively manufactured solutions combine multiple functions into a single component, helping reduce part count, weight, and integration complexity.
With 1,000+ components in flight, 40+ aerospace and defense platforms flying, and seven decades of flight heritage, Mott brings proven experience to demanding missile and munition programs.
Whether you’re addressing propellant-management challenges, fuel-delivery reliability, or flight-performance requirements, our engineers can help evaluate your application and recommend a solution tailored to your mission.
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Call us at 860.747.6333 or submit an information request form and someone will get back to you within 48 hours.
Headquarters:
75 Spring Lane
Farmington, CT 06032
Customer Innovation Center:
84 Spring Lane
Farmington, CT 06032