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Aerospace
Aerodynamic Wing Core
3D printed aerodynamic wing core = integrated lightweight + complex functional internal geometry + bionic drag reduction + rapid iteration + green manufacturing, completely solving the traditional process pain points of "heavy, weak, expensive, and slow." It has become the core technology for R&D and mass production of wing cores for drones, model aircraft, small aircraft, and wind turbine blades, driving a dual leap in aerodynamic efficiency and structural performance.
- 70%
- Cost Reduction
- 20%
- Lightweight
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Aerospace
Fuselage / Structural Parts
Cabin door hinges, brackets, satellite lightweight structures, rocket engine nozzles. No molds required, integrated molding, material savings, and short lead times.
- 30%-60%
- Weight Reduction
- 70%
- Shortened Lead Time
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Aerospace
Engine Components
Turbine blades, blisks, combustion chambers, cooling channel parts. Optimal for small batches / complex parts / lightweighting, no molds required, integrated molding, material savings, and short lead times.
- 30%-60%
- Weight Reduction
- 70%
- Shortened Lead Time
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Automotive Manufacturing
Automotive Bumper
3D printed automotive bumper = rapid prototyping + lightweighting + customization + integrated assembly, perfectly solving the traditional process pain points of "slow, expensive, heavy, and fragmented." It has become a must-have for R&D, a mainstream choice for modification, and a preferred option for small-batch new energy vehicles; with advances in materials and processes, it will further penetrate low-strength mass-produced parts and smart integrated bumpers in the future.
- ±0.05mm
- Precision
- 30–50%
- Weight Reduction
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Automotive Manufacturing
Battery Pack Frame
Clear advantages in small batches / customization / complex parts / tooling, with short lead times, high flexibility, and no molds required.
- 30%-50%
- Cost Reduction
- 20%-40%
- Weight Reduction
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Medical Devices
Prosthetic Socket Liner
3D printed prosthetic socket liner = precise customization + lightweight + flexible breathability + rapid delivery + aesthetic realism, completely solving the traditional process pain points of "poor fit, pressure sores, bulkiness, long lead times, and unattractive appearance." It has become the preferred technology for medical-grade prosthetic socket liners, covering all scenarios including sockets, flexible inner liners, and decorative outer covers, significantly improving user comfort, mobility, and quality of life with dignity.
- 40–60%
- Weight Reduction
- 50%
- Comfort Improvement
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Medical Devices
Dental
Dental models, aligners, implants, temporary crowns. Precise matching and rapid delivery.
- 60%-80%
- Porosity
- 50%
- Faster Fusion
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Medical Devices
Rehabilitation Devices
Irreplaceable for personalized / bionic / complex structures, with precise matching, porous structures, and rapid delivery.
- 60%-80%
- Porosity
- 50%
- Faster Fusion
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Industrial Equipment
Camera Lens Cap - PA 11 - Eco-Friendly Material
PA11 3D printing = eco-friendly bio-based + high toughness and drop resistance + flexible customization + cost-effectiveness, perfectly matching the "protection, portability, eco-friendliness, durability, and personalization" needs of camera lens caps. It is the optimal green manufacturing solution for small-to-medium batch and customized lens caps, and has been gradually replacing traditional injection-molded ABS in the photography accessories field.
- 45–50%
- Elongation at break
- <1%
- Moisture absorption rate
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Industrial Equipment
Air Conditioning Ventilation - PA 12 - Eco-friendly
In the field of air conditioning ventilation (HVAC), eco-friendly PA12 (Nylon 12) + SLS/MJF 3D printing is becoming a preferred alternative to traditional injection molding and metal processing. Its core value lies in low VOC, low moisture absorption, recyclability, lightweight design, and integrated complex air ducts, balancing performance, cost, and green manufacturing.
- 80%–85%
- Powder recovery rate
- 48–52MPa
- Tensile strength
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Industrial Equipment
Havatec - EOAT
Havatec deeply integrates HP MJF 3D printing into the manufacturing of EOAT and key components for flower automation equipment, using PA11 material to achieve lightweight design, high strength, flexible gripping, rapid iteration, and low cost. This addresses traditional manufacturing pain points and significantly enhances equipment performance, stability, and production capacity, providing a benchmark case for 3D-printed EOAT applications in the agricultural automation sector.
- 95%
- Equipment automation rate
- 500
- Cycle life (10,000 cycles)
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Industrial Equipment
Lightweight structural components
Equipment brackets and enclosures achieve over 30% weight reduction, lowering energy consumption. Complex flow channels / wear-resistant parts / repair advantages are significant, with integrated design, conformal cooling, and rapid repair.
- 20%-40%
- Flow channel optimization
- 60%
- Cost reduction

