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MOBILE PHONE HINGE
Innovative Titanium Alloy 3D-Printed Hinges for Foldable Smartphones. The integration of titanium alloy 3D printing in smartphone hinge design represents a groundbreaking advancement in foldable device engineering, combining lightweight durability, precision manufacturing, and structural innovation.
FEATURED MATERIALS
Ti-6Al-4V(Grade 5)
This fully heat-treatable alloy serves as a reliable material solution, delivering exceptional mechanical performance at temperatures up to 350°C. It combines high strength with lightweight characteristics and demonstrates superior corrosion resistance in demanding operational environments.
BYCYCLE FRAMES&SPOKES
FEATURED MATERIALS
Ti-6Al-4V(Grade 5)
This fully heat-treatable alloy serves as a reliable material solution, delivering exceptional mechanical performance at temperatures up to 350°C. It combines high strength with lightweight characteristics and demonstrates superior corrosion resistance in demanding operational environments.
Ti 3Al-2.5V
This near-alpha titanium alloy achieves an optimal balance between formability and mechanical strength. It demonstrates superior strength compared to commercially pure titanium across both ambient and elevated temperature ranges, while distinguishing itself from Ti-6Al-4V through its cold-rolling capabilities. It is also designated as ASTM B348 Grade 9 in material specifications.
TENNIS RACKET FRAMES
In high-performance sports, optimizing gear weight and handling dynamics is critical. Our proprietary alloys combine precisely controlled mechanical properties – strength and rigidity – to meet exacting performance standards while maintaining exceptional durability in competitive environments.
FEATURED MATERIALS
Ti-6Al-4V(Grade 5)
This fully heat-treatable alloy serves as a reliable material solution, delivering exceptional mechanical performance at high temperatures. It combines high strength with lightweight characteristics and demonstrates superior corrosion resistance in demanding operational environments.
AlSi10Mg
Renowned for its lightweight composition, exceptional mechanical strength, and compatibility with additive manufacturing technologies, has emerged as a cornerstone material across diverse industries. Its versatile properties position it as a preferred choice for fabricating high-performance components.
GOLF CLUBS
High-performance golf clubs require materials that manage weight, balance, and wear resistance while withstanding the extreme forces on striking surfaces. Our proprietary alloys deliver the necessary strength-to-weight ratios and impact resistance to enable radical club head innovations – allowing designers to push aerodynamic and aesthetic boundaries without sacrificing durability.
FEATURED MATERIALS
M300
This low-carbon nickel-cobalt-molybdenum superalloy achieves yield strengths exceeding 1950 MPa through a straightforward low-temperature heat treatment. It is widely used in additive manufacturing (AM), aerospace, and tooling industries. It combines good ductility at high strength levels, excellent notch ductility, and is readily welded.