The crystal is the window that separates the dial from the external world, and its geometry conditions both the readability and the entire visual character of a watch. Three materials share the market: synthetic sapphire, acrylic, and Seiko's Hardlex. Each has its own logic, and choosing the wrong material is a design error, not a budget one.
Synthetic sapphire — hardness 9 on the Mohs scale — is today the standard for any watch that takes itself seriously. It resists everyday scratches but shatters with localized impact: it's rigid, not elastic. Acrylic is the opposite: it scratches with your keychain keys, but absorbs blows without breaking and can be polished with a cloth and some abrasive paste. On vintage dive watches from the Sixties and Seventies I preferred it to sapphire precisely for this reason. Seiko's Hardlex sits in the middle: harder than acrylic, softer than pure aluminum oxide, and cheaper to produce.
Geometry is where things get interesting. A flat crystal is neutral: it adds nothing and takes nothing away. A domed crystal — convex outward — changes the perception of the case, makes it seem more generous, and creates a slight optical distortion at the edges that I find fascinating on vintage sports watches. The double-domed, convex both inside and out, pairs with curved dials and gives an optical depth that a flat crystal cannot imitate. TAG Heuer's Glassbox takes this concept to the extreme: the crystal merges with the case without a conventional bezel, echoing the proportions of the original Carrera from the Sixties. Box sapphires explicitly evoke the domed profiles of last century's acrylic, but with sapphire's hardness.
Anti-reflective (AR) coating is almost mandatory today, and the difference between single-side coating and multi-layer coating on both sides is immediately visible under raking light. Some manufacturers apply up to ten layers. The inner side is what matters most for readability; the outer side protects the coating from wear. When the coating deteriorates — and it does, especially with aggressive solvents — the crystal must be replaced, it cannot be recovered.
Particular cases I've encountered: indices applied on the underside of the crystal to create depth without additional thickness; laser-cut grooves on the back to hold luminescent materials separate from the dial; and the Ressence system, where a pebble-profiled crystal is glued and baked in the oven because there's no bezel to hold it. Different techniques, but all answer the same question: how do I look inside without something disturbing my view.