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Campbell, J.H.; Hurst, P.A.; Heggins, D.D.; Steele, W.A.; Bumpas, S.E.
Lawrence Livermore National Lab., CA (United States). Funding organisation: USDOE Assistant Secretary for Defense Programs, Washington, DC (United States)1996
Lawrence Livermore National Lab., CA (United States). Funding organisation: USDOE Assistant Secretary for Defense Programs, Washington, DC (United States)1996
AbstractAbstract
[en] Laser-induced damage, that initiates catastrophic fracture, has been observed in large (≤61 cm dia) fused silica lenses that also serve as vacuum barriers in Nova and Beamlet lasers. If the elastic stored energy in the lens is high enough, the lens will fracture into many pieces (implosion). Three parameters control the degree of fracture in the vacuum barrier window: elastic stored energy (tensile stress), ratio of window thickness to flaw depth, and secondary crack propagation. Fracture experiments were conducted on 15-cm dia fused silica windows that contain surface flaws caused by laser damage. Results, combined with window failure data on Beamlet and Nova, were used to develop design criteria for a ''fail-safe'' lens (that may catastrophically fracture but not implode). Specifically, the window must be made thick enough so that the peak tensile stress is less than 500 psi (3.4 MPa) and the thickness/critical flaw size is less than 6. The air leak through the window fracture and into the vacuum must be rapid enough to reduce the load on the window before secondary crack growth occurs. Finite element stress calculations of a window before and immediately following fracture into two pieces show that the elastic stored energy is redistributed if the fragments ''lock'' in place and thereby bridge the opening. In such cases, the peak stresses at the flaw site can increase, leading to further (i.e. secondary) crack growth
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Nov 1996; 23 p; 28. annual symposium on optical materials for high power lasers -Boulder damage symposium; Boulder, CO (United States); 7-9 Oct 1996; CONF-961070--11; CONTRACT W-7405-ENG-48; Available from OSTI as DE97051642; NTIS; US Govt. Printing Office Dep
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