Second surface laser ablation
A method of removing material from an opposite side of workpiece includes directing a laser beam at a first side of the workpiece to remove the material from an opposite second side of the workpiece.
1. A product comprising:
a substrate;
a coating layer disposed over a first surface of the substrate;
a portion of the first surface of the substrate that is substantially free of the coating layer; and
an electrically conductive layer disposed between the substrate and the coating layer and over the portion of the first surface of the substrate that is substantially free of the coating layer;
wherein an edge of the coating layer adjacent the portion of the first surface of the substrate that is substantially free of the coating layer forms an average angle with the first substrate surface in a range of 30° to 120°, the edge of the coating layer adjacent the portion of the first surface of the substrate that is substantially free of the coating layer has a characteristic length, L, that is a length of the portion of the edge of the coating layer in which a thickness of the coating layer tapers from a nominal coating layer thickness, t, to zero thickness, and L≦100 μm.
2. The product of claim 1 , wherein L≦50 μm.
3. The product of claim 2 , wherein L≦200 nm.
4. The product of claim 1 , wherein the coating layer comprises a metallic material.
5. The product of claim 1 , wherein the portion of the first surface of the substrate that is free of the coating layer exhibits a transmission haze of 0.05% or less.
6. The product of claim 1 , wherein the portion of the first surface of the substrate that is free of the coating layer exhibits a transmission haze of 0.25% or less.
7. The product of claim 1 , wherein the edge of the coating layer adjacent the portion of the first surface of the substrate that is substantially free of the coating layer has a scalloped profile.
8. The product of claim 7 , wherein a depth of the scallops is less than 100 μm.
9. The product of claim 8 , wherein a depth of the scallops is less than 50 μm.
10. The product of claim 1 , further comprising:
a first electrode layer;
a second electrode layer; and
an electrochromic layer;
wherein the electrochromic layer is disposed between the first electrode layer and the second electrode layer, and the first electrode layer is disposed over the portion of the first surface of the substrate that is free of the coating layer.
11. A vehicle rearview mirror assembly comprising a product comprising:
a substrate;
a coating layer disposed over a first surface of the substrate;
a portion of the first surface of the substrate that is substantially free of the coating layer; and
an electrically conductive layer disposed between the substrate and the coating layer and over the portion of the first surface of the substrate that is substantially free of the coating layer;
wherein an edge of the coating layer adjacent the portion of the first surface of the substrate that is substantially free of the coating layer forms an average angle with the first substrate surface in a range of 30° to 120°, the edge of the coating layer adjacent the portion of the first surface of the substrate that is substantially free of the coating layer has a characteristic length, L, that is a length of the portion of the edge of the coating layer in which a thickness of the coating layer tapers from a nominal coating layer thickness, t, to zero thickness, and L≦100 μm.