Titanium 22″ – 26″
Technical data
Product specifications
- Sizes: 22″, 24″, 25″, 26″
- Fitting distance: 466 mm (22″), 510 mm (24″), 517 mm (24″), 535 mm (25″), 567 mm (26″)
- Weight: 370 g (22″, 466 mm), 400 g (24″, 510 mm), 404 g (24″, 510 mm), 409 g (24″, 517 mm), 423 g (25″, 535 mm), 444 g (26″, 567 mm)
- Fitting type: 6 splices
- Splices lenght: 41 mm, 37 mm
- Surface treatment: brushed titanium
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Why to choose Titanium pushrim?
Ultra lightweight
Designed with low weight and easy travelling in mind.
Classic shape
Traditional handrim profile.
See why people love Titanium
Product applications
FAQ
How to select the best pushrim for me?
For your personal needs, you should consider:
- Grip ability: Tetraplegic or low-grip users benefit from ergonomic shapes with wider contact surfaces and anti-slip coatings (e.g., silicone inserts).
- Environment: Off-road driving requires higher rim clearance, whereas contact sports demand heavy-duty, impact-resistant steel.
- Material & Weight: Choose aluminium or magnesium for lightweight daily mobility, titanium for top durability and all-weather grip, or steel for maximum impact resistance.
Read the full blog article
Why should I choose titanium pushrims over steel or standard aluminum?
Titanium pushrims are 42% lighter than steel while offering a substantially higher strength-to-weight ratio and natural resistance to corrosion, sweat, and road salt. For active manual wheelchair users, this weight reduction directly decreases upper-body rolling inertia, protecting shoulder and wrist joints over long distances without sacrificing structural rigidity or durability.
Are Omobic titanium handrims compatible with standard active wheelchair wheels?
Yes. Omobic titanium handrims are engineered to universal mounting standards, featuring standardized 6-tab configurations and variable bolt spacings that fit major active wheelchair wheel sizes (including 24″, 25″, and 26″ rims).
Do titanium handrims transfer extreme heat or cold to the hands?
Titanium has significantly lower thermal conductivity than aluminum. As a result, Omobic titanium pushrims stay closer to ambient temperature during rapid friction braking on steep descents and remain substantially warmer to the touch during freezing winter conditions.










