Smart Manufacturing. Driven by Agility, Defined by Quality.

Advanced Manufacturing Solutions for Mission-Critical Defense Applications

Mission-Ready Defense Components, Delivered Faster

Eliminate Supply Chain Vulnerability. Remove Tooling Constraints

As deployment timelines shrink, defense programs demand lighter, electronics-dense architectures with zero tolerance for procurement friction. CRP Group supports advanced platforms through high-performance polymer and metal additive manufacturing, precision CNC machining, and DfAM-led design optimization – delivered as a single hybrid workflow.

From UAV airframes and ISR payload housings to ruggedized tactical enclosures and ground robotics structures, we close the gap between concept and field-readiness – accelerating operational integration while eliminating tooling-driven delays.

Key capabilities​

Supply Chain Resilience

From prototype to deployment-ready components. A vertically, in-house integrated workflow that reduces supplier fragmentation and compresses execution timelines

Low-SWaP Integration

Compact, lighter, electronics-ready structures. Proprietary Windform® composites enable complex internal routing, antenna and battery integration, and lightweight structural performance for mission-critical platforms

Accelerated Time-to-Field

From months to days. Hybrid manufacturing workflows shorten development, qualification, and integration cycles with no compromise on defense-grade validation

MOTORSPORT HERITAGE

DEFENSE VALIDATED

EN 9100 / AS9100D

ITAR-compliant

NASA-STD-6030 compliant

MIL-STD MATERIALS

FOD CONTROL

THERMAL MANAGEMENT

SHOCK & VIBRATION RESISTANCE

LOW-SWaP COMPOSITES

Speed-to-Field: From Design Complexity to Operational Reliability

Accelerated development of high-precision, mission-critical components - from design iteration to field integration

Hybrid Manufacturing for Defense-Grade Designs

We transform complex defense architectures into field-ready components by balancing the geometric freedom of additive manufacturing with CNC’s dimensional control.

Through a single hub that integrates Windform® composite polymers (SLS) and DMLS metal alloys, we ensure mass reduction while preserving structural integrity in rugged environments; deliver extreme geometries for electronics-dense platforms; and guarantee field-validated reliability without process compromises.

Unified Validation Workflow

An expert-led validation chain eliminates friction between design, manufacturing, and finishing – producing: high-precision mechanical compartments for onboard electronics; repeatable dimensional control under operational stress; compressed time-to-field for rapid tactical integration

Tight-Tolerance Precision for Extreme Operating Environments

Our interdisciplinary engineering method optimizes design and production for thin walls, critical interfaces, and repeatable dimensional control across reinforced composites and metal alloys.

MIL-STD validated Windform® composites and TPU and TPE variants deliver shock and random vibration resistance up to 13.9 g RMS; thermal and chemical stability across harsh operational theaters; environmental sealing against dust, moisture, and water ingress; dielectric insulation for confined battery and antenna integration; controlled surface conductivity for EMI-conscious design; monolithic part consolidation reducing joints, mass, and assembly complexity.

Supported by a global manufacturing network across three continents, our capabilities extend from retrofit and obsolescence recovery – via reverse engineering and DfAM-driven redesign – to ISR payload housings, sensor enclosures, UGV modular frames and protective structures, and ultra-lightweight tactical systems including HMSD assemblies, ergonomic body-worn components, and ruggedized optronics cases.

Materials Expertise for Defense

Windform carbon
High strength, stiffness and impact absorption capability in severe operating conditions and under heavy mechanical loads
Advantages
Exceptional strength Superior resilience
Windform carbon
High strength and stiffness for components subjected to mechanical stress and heavy loads
Advantages
High mechanical strength HB rated (UL 94)
Windform carbon
High mechanical performance and stability in critical operating conditions, with good impact and vibration resistance
Advantages
High mechanical performance HB rated (UL 94)
Materials. Titanium Ti6Al4V
Ultra-high-strength titanium alloy used in protection, military vehicles, and aerospace defense applications.
Advantages
High impact resistance Superior durability
Materials. Steel alloys
Impact-resistant steel ideal for defense components and housings.
Advantages
High strength alloy Precision machinability
Materials. Inconel 718
Heat-resistant superalloy widely applied in military aviation engines and defense systems requiring durability under extreme conditions.
Advantages
Heat-resistant material Excellent corrosion resistance

Explore Our Projects

Underside view of Hoverfly’s Spectre 2.0 drone during tethered flight, showing the central section and suspension system
DEFENSE
Technologies
SLS
Problem Solved
Functional integration and complex geometries with low weight
3D-printed hand-held military test device
DEFENSE
Technologies
SLS
Problem Solved
Delivered shock-resistant, complex portable tester tailored to military environment
Partner with CRP for high-performance defense solutions

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