The rapid development of hydrogen fuel cell vehicles is playing a key role in the global energy transition and carbon neutrality goals. Hydrogen energy systems place extremely high demands on materials — including excellent hydrogen permeation resistance, high pressure resistance, low temperature performance, chemical stability, and lightweight design.
MBH Plastics specializes in providing high-performance engineering plastic solutions for the automotive hydrogen energy sector. We manufacture critical plastic components such as fuel cell stack parts, hydrogen storage system components, valves, seals, and piping fittings using premium materials like PPS, PEEK, and PA66+GF.
Our Advantages:
Extensive experience in hydrogen energy applications
Precision CNC machining and injection molding capabilities
Materials fully traceable with IATF 16949 automotive quality standards
Fast prototyping and small-batch production support
Recommended Materials
Material | Key Properties | Typical Applications | Advantages |
High temperature resistance (>200°C), dimensional stability, chemical resistance | Fuel cell end plates, insulators, brackets | Excellent cost-performance, flame retardant | |
Superior strength, wear resistance, low hydrogen permeation | Valve seats, seal rings, bearings | Highest mechanical performance | |
PA66 + GF | High strength & stiffness, good heat resistance, excellent mechanical properties | Structural brackets, gears, housings | High rigidity, cost-effective reinforcement |
Main Applications:
Hydrogen Fuel Cell Stack (Bipolar plates, End plates, Insulators)
Hydrogen Storage Systems (Valves, Liners, Fittings)
Hydrogen Circulation Pumps and Compressors
High-Pressure Hydrogen Valves and Regulators
Structural Components and Mounting Brackets
Why Choose MBH Plastics?
Materials based on renowned international brands
Full material data sheets and test reports available
Over 15 years of engineering plastics processing experience
Trusted by multiple new energy and automotive customers
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PPS+GF | PPS+GF | PA66+GF | POM |
