lithium disilicate crowns designed for strength, aesthetics, and lifelike translucency.
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our e.max restorations are fabricated from lithium disilicate glass-ceramic using controlled pressing and finishing protocols. the result is a precise, metal-free restoration with natural depth and optical clarity.
lithium disilicate offers reliable flexural strength with exceptional translucency. Ideal for anterior and selected posterior applications, it allows light transmission similar to natural enamel.
each restoration is pressed, shaped, and characterized for seamless integration and verified for margin integrity, contour, and shade.
we use premium lithium disilicate ingots and blocks, processed through calibrated pressing and crystallization cycles. this ensures consistent strength, fit, and aesthetic performance across every case - from single crowns to veneers and inlays.
From single crowns to veneers and inlays, we support your practice with E.max restorations that meet the demands of everyday practice.
e.max crowns are made from a fine-grained glass-ceramic that combines strength with natural translucency. The material is ideal for anterior and premolar applications where aesthetics are a priority.
We follow strict protocols for design, pressing, and crystallization so every crown meets our lab standards for margin integrity and esthetics.
our technicians are trained in pressing, layering, and detailed characterization. with clear communication and dependable turnaround times, you can expect restorations that integrate naturally and perform reliably.
a full range of shades and custom characterizations are available to match natural dentition. Provide your preferred shade and any case notes - we'll match it.
lithium disilicate is widely chosen for its balance of strength and aesthetics, with optical properties that closely replicate natural tooth structure. it performs especially well in anterior cases and aesthetic zones where translucency is critical.
at ZANN, each restoration is finished with careful attention to margin fit and occlusion - supporting predictable results and fewer adjustments.
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