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... W 0.2 V ( 16 ) 0.28 ( 3 ) Voids : The most significant hardening equation for voids is due to Coulomb ( 17 ) , and this can again be expressed as Δι = α , μόν nd where n and d are the density and diameter of void , respectively .
... W 0.2 V ( 16 ) 0.28 ( 3 ) Voids : The most significant hardening equation for voids is due to Coulomb ( 17 ) , and this can again be expressed as Δι = α , μόν nd where n and d are the density and diameter of void , respectively .
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where Ng and dg are the density and size values of gas bubble , respectively . Every model that is proposed seems to require diffusion of defects to the dislocation line or dispersed clusters . The fact that radiation hardening can be ...
where Ng and dg are the density and size values of gas bubble , respectively . Every model that is proposed seems to require diffusion of defects to the dislocation line or dispersed clusters . The fact that radiation hardening can be ...
Seite
defect density and defect diameter , respectively , and p is the dislocation density . ( b ) Radiation Effects on the Hardness of Metals Based on a large number of hardness measurements of a wide variety of me- tals and alloys after ...
defect density and defect diameter , respectively , and p is the dislocation density . ( b ) Radiation Effects on the Hardness of Metals Based on a large number of hardness measurements of a wide variety of me- tals and alloys after ...
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