2016-2026, VASA DENTICITY LIMITED
Crafted with in India

A Ti-base abutment is a titanium base that connects a dental implant to a CAD/CAM-milled or bonded crown. It screws into the implant with a titanium connection, and the ceramic or zirconia restoration is bonded onto it. Ti-bases are chosen by implant-system compatibility and by hex (engaging) or non-hex (non-engaging) design for single or multi-unit cases.
A screw-retained implant crown has to solve one problem: how to join a hard, aesthetic ceramic restoration to a titanium implant so the joint survives years of loading. The Ti-base is the answer. It is a machined titanium sleeve, threaded into the fixture at one end and carrying the bonded crown at the other, giving a metal-to-metal fixture connection under an aesthetic superstructure.
That two-part construction is why Ti-bases sit at the centre of digital implant dentistry. The lab or clinic mills or presses the crown from zirconia or lithium disilicate, then bonds it to the Ti-base — combining the strength and precise fit of a metal fixture interface with the appearance of an all-ceramic restoration.
In a modern implant case the restoration is designed on screen and produced by machine, and the Ti-base is the physical part the digital design is built around.
A scan body reads the fixture position, the crown is designed and milled to seat on a specific Ti-base, and the finished ceramic is bonded to that base before delivery. Because the base is a defined, machined component, the digital design has a precise interface to work to — which is why libraries in CAD software list Ti-bases by exactly the model being used. The DentalTech range in this category supplies these bases across the common implant systems.
The single most important choice is compatibility: a Ti-base is machined to one connection and will not seat in another.
The range covers the major systems in use, so a lab can order to whatever implant is placed. A Straumann BLT-compatible Ti-base (RC) fits that connection and platform, while separate bases match Nobel, Osstem, Neodent, Dentium and other systems — each cut to the specific implant it pairs with.
Beyond the implant system, the second decision is whether the base engages the implant's anti-rotation feature.
A hex (engaging) Ti-base locks into the fixture's internal hex, preventing rotation — used for single crowns where the restoration must not turn. A Nobel-compatible Ti-base (RP) is available in both engaging and non-hex forms for this reason. A non-hex (non-engaging) base is used in splinted and multi-unit cases, where several units must seat together without the anti-rotation feature fighting the path of insertion.
For bridges and full-arch work on multi-unit abutments, dedicated multi-unit bases are used. A universal multi-unit Ti-base covers several common systems for this stage of the restoration.
Getting the order right comes down to a short checklist.
The fixtures these bases connect to, and the wider prosthetic components, sit in the implantology range.
A screw-retained implant crown has to solve one problem: how to join a hard, aesthetic ceramic restoration to a titanium implant so the joint survives years of loading. The Ti-base is the answer. It is a machined titanium sleeve, threaded into the fixture at one end and carrying the bonded crown at the other, giving a metal-to-metal fixture connection under an aesthetic superstructure.
That two-part construction is why Ti-bases sit at the centre of digital implant dentistry. The lab or clinic mills or presses the crown from zirconia or lithium disilicate, then bonds it to the Ti-base — combining the strength and precise fit of a metal fixture interface with the appearance of an all-ceramic restoration.
In a modern implant case the restoration is designed on screen and produced by machine, and the Ti-base is the physical part the digital design is built around.
A scan body reads the fixture position, the crown is designed and milled to seat on a specific Ti-base, and the finished ceramic is bonded to that base before delivery. Because the base is a defined, machined component, the digital design has a precise interface to work to — which is why libraries in CAD software list Ti-bases by exactly the model being used. The DentalTech range in this category supplies these bases across the common implant systems.
The single most important choice is compatibility: a Ti-base is machined to one connection and will not seat in another.
The range covers the major systems in use, so a lab can order to whatever implant is placed. A Straumann BLT-compatible Ti-base (RC) fits that connection and platform, while separate bases match Nobel, Osstem, Neodent, Dentium and other systems — each cut to the specific implant it pairs with.
Beyond the implant system, the second decision is whether the base engages the implant's anti-rotation feature.
A hex (engaging) Ti-base locks into the fixture's internal hex, preventing rotation — used for single crowns where the restoration must not turn. A Nobel-compatible Ti-base (RP) is available in both engaging and non-hex forms for this reason. A non-hex (non-engaging) base is used in splinted and multi-unit cases, where several units must seat together without the anti-rotation feature fighting the path of insertion.
For bridges and full-arch work on multi-unit abutments, dedicated multi-unit bases are used. A universal multi-unit Ti-base covers several common systems for this stage of the restoration.
Getting the order right comes down to a short checklist.
The fixtures these bases connect to, and the wider prosthetic components, sit in the implantology range.
A Ti-base abutment is a titanium base that joins a dental implant to a CAD/CAM-milled or bonded crown. It screws into the implant, providing a titanium implant connection, and the ceramic or zirconia restoration is bonded onto its upper part. This gives a metal implant interface beneath an aesthetic all-ceramic superstructure, used widely in digital implant restorations.
Match it to the implant system and platform. A Ti-base is machined to one specific implant connection — Straumann BLT RC, Nobel RP, Osstem regular and so on — and will not seat in a different system or platform. The product listing states the compatible implant and platform, which must correspond to the implant that was placed.
Anti-rotation. A hex (engaging) Ti-base locks into the implant's internal hex so the restoration cannot rotate, which single crowns require. A non-hex (non-engaging) base omits that feature, letting several units seat together along a common path — needed for splinted and multi-unit restorations where an engaging connection would obstruct insertion.
Yes, using multi-unit Ti-bases. For bridges and full-arch restorations placed on multi-unit abutments, dedicated multi-unit Ti-bases connect the milled framework or individual units to the abutments. These are non-engaging so multiple units seat together, and some universal versions fit several implant systems, simplifying stock for a busy lab.
The ceramic or zirconia restoration is bonded to the Ti-base with a resin cement, usually in the lab, after the crown has been milled or pressed to seat precisely on that base. The bonded crown-and-base assembly is then delivered and screwed into the implant, giving a screw-retained restoration with an aesthetic ceramic exterior.