Diamond window component for a laser tool
A component for a laser tool, the component comprising: a tubular body defining an internal channel and an aperture; and a window disposed across the aperture and bonded to the tubular body around the aperture, wherein the window is diamond, and wherein the tubular body comprises a material having a coefficient of linear thermal expansion α of 14×10 −6 K −1 or less at 20° C. and a thermal conductivity of 60 Wm −1 K −1 or more at 20° C.
1. A component for a laser tool, the component comprising:
a tubular body defining an internal channel and an aperture; and
a window disposed across the aperture and bonded to the tubular body around the aperture,
wherein the window is diamond, and
wherein the tubular body comprises a material having a coefficient of linear thermal expansion α of 12×10 −6 K −1 or less at 20° C. and a thermal conductivity of 80 Wm −1 K −1 or more at 20° C.
2. A component according to claim 1 , wherein α is 10×10 −6 K −1 or less.
3. A component according to claim 1 , wherein the thermal conductivity is 100 Wm −1 K −1 or more.
4. A component according to claim 1 , wherein the tubular body is formed of at least 50% of said material.
5. A component according to claim 1 , wherein said material is a metal, an alloy, a ceramic, or a composite material.
6. A component according to claim 1 , wherein said material comprises one or more of molybdenum, chromium, tungsten, rhodium, ruthenium, diamond, silicon carbide (SiC), tungsten carbide (WC), aluminium nitride (AlN), titanium zirconium molybdenium (TZM), tungsten nickel iron (WNiFe), and tungsten nickel copper (WNiCu).
7. A component according to claim 1 , wherein the tubular body is formed of molybdenum.
8. A component according to claim 1 , wherein the tubular body is coated with a biocompatible material.
9. A component according to claim 1 , wherein the diamond window is free of antireflective coating in an area across the aperture.
10. A component according to claim 1 , wherein the diamond window is provided with a metallization coating forming at least a portion of a bond between the diamond window and the tubular body.
11. A component according to claim 10 , wherein the metallization coating comprises a layer of carbide forming material bonded to the diamond window, an inert barrier layer, and a metal layer soldered or brazed to the tubular body.
12. A component according to claim 11 , wherein the carbide forming material is titanium, the inert barrier layer is platinum, and the metal layer is gold.
13. A component according to claim 10 , wherein the bond further comprises a braze joint between the metallization coating and the tubular body.
14. A component according to claim 13 , wherein the braze joint comprises gold.
15. A component according to claim 1 , wherein the aperture is in a side wall of the tubular body.
16. A component according to claim 1 , wherein α is 8×10 −6 K −1 or less.
17. A component according to claim 1 , wherein α is 6×10 −6 K −1 or less.
18. A component according to claim 1 , wherein α is 4×10 −6 K −1 or less.
19. A component according to claim 1 , wherein the thermal conductivity is 120 Wm −1 K −1 or more.
20. A component according to claim 1 , wherein the thermal conductivity is 140 Wm −1 K −1 or more.
21. A component according to claim 1 , wherein the tubular body is formed of at least 70% of said material.
22. A component according to claim 1 , wherein the tubular body is formed of at least 80% of said material.
23. A component according to claim 1 , wherein the tubular body is formed of at least 90% of said material.
24. A component according to claim 1 , wherein the tubular body is formed of at least 95% of said material.
25. A component according to claim 13 , wherein the braze joint comprises copper and silver.