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Untitled - Sciencemadness Dot Org

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SHOCK INITIATION PROPERTIES<br />

Table 4.40 90 TATB/S KEL-F 800/5 KEL-F 820<br />

Composition<br />

90 wt% TATB, 5 wt% Kel-F 800, 5 wt% Kel-F 820<br />

Theoretical Maximum Density<br />

1.944 g/cm3<br />

Particle Size Distribution<br />

Standard<br />

Preparation Method<br />

Hot pressing and machining to shape<br />

Data Summary<br />

p0 = 1.917 g/cm3. T, w 23°C. Technique 2<br />

Shot<br />

Number<br />

Coordinates<br />

High-Order<br />

for<br />

Initial Shock Parameters Detonation<br />

Driving<br />

‘U,, U,O X* t* System Thickness<br />

(G?a) (mm/w) (mm/b4 - (mm) -<br />

(PS) (mm)<br />

E-2260 10.16 1.105<br />

E-2263 13.86 1.342<br />

E-2266 16.19 1.499<br />

E-2258 18.99 1.625<br />

4.796”<br />

5.387”<br />

5.635b<br />

6.096<br />

Multiple Shock<br />

>20.73<br />

>20.82<br />

9.60<br />

3.7<br />

--- B, 5.5 Plex<br />

--- G, 24.5 Plex<br />

--- H, 12.2 Plex<br />

--- H, 5.9 Plex<br />

Driving<br />

Shot P, U,, U*1 XOT p, us2 x* System Thickness<br />

Number (GPa) (mm/w+) (mndps) (mm) (Cl%) (mm/CLs) (mm) (mm)<br />

- - ~ -<br />

E-2265 12.2 -1.22 5.058 6.65 -18.2 5.985. 10.7c P, 1.05 D-38<br />

“Decelerates.<br />

‘-‘Poor record.<br />

“4.05 mm downstream from overtake.<br />

410

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