By Ralph A., Jr. Scott, Laurence J. Doemeny
content material: Blast strain results : an summary / W.E. Baker --
Fragmentation results : an outline / Michael M. Swisdak, Jr. and Joseph G. Powell, Jr. --
Architectural general info for military ammunition crops / Richard W. Sime --
Explosives garage constructions / Richard L. Wight --
bolstered concrete in blast-hardened buildings / James E. Tancreto --
Blast-resistant glazing / Gerald E. Meyers --
meantime layout standards for polycarbonate blast-resistant glazing / Gerald E. Meyers and James E. Tancreto --
Thermal results : an summary / W.R. Herrera and L.M. Vargas --
distant blending and dealing with approaches for pyrotechnic fabrics / Thomas E. Shook, Loy M. Aikman, Max Frauenthal, David Garcia, Joe G. Janski, and F.L. McIntyre --
Engineering layout for white phosphorus filling operations and amenities / Harold D. McKinney --
layout and use of high-speed detection structures for explosives operations / Kenneth M. Klapmeier and Bernhard G. Stinger --
Ultra-high-speed hearth suppression for explosives amenities / Gary A. Fadorsen --
Systematic procedure for correctly designing a chemical surety materiel laboratory / George E. Collins, Jr. --
Laboratory layout / Frances H. Cohen --
layout issues for poisonous laboratories / William J. Maurits --
layout of blast-containment rooms for poisonous chemical ammunition disposal / Paul M. LaHoud --
Intrinsically secure electric circuits in explosives amenities / Kenneth W. right --
Electrostatic experiences in military ammunition crops / William O. Seals, James Hokenson, and George Petino --
Ionizing air for static cost neutralization whereas processing delicate fabrics / B.V. Diercks --
layout and use of ammunition odd gear to guard employees / Mark M. Zaugg --
cleansing strategy traces within the explosives / Roy W. Wheeler.
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Additional info for Design Considerations for Toxic Chemical and Explosives Facilities
ACS Symposium Series; American Chemical Society: Washington, DC, 1987. 42 TOXIC CHEMICAL AND EXPLOSIVES FACILITIES 2' REINFORCED Figure 35. (Ref. ; ACS Symposium Series; American Chemical Society: Washington, DC, 1987. 1. BAKER 43 Blast Pressure Effects: An Overview proved to be an e f f i c i e n t dynamic f i l t e r f o r small t o x i c p a r t i c l e s from the explosion. Omnidirectional B l a s t Venting. During the period 1973-1977, Edgewood Arsenal sponsored an extensive program t o evaluate the concept of s t e e l explosion safety structures which were vented on a l l sides, or a l l sides plus roof.
For complex composites such as reinforced concrete, the use of simple wave r e f l e c t i o n analyses to predict s p a l l i n g i s guite suspect. So, several investigators have simply studied these thresholds experimentally. One of the most complete such studies i s r e ported i n Ref. 29. The author defined various damage categories f o r explosions near reinforced concrete w a l l s , as i n Figure 23. Then, he conducted a number of experiments and established scaled curves f o r various damage l e v e l s , as i n Figures 24 and 25.
BAKER 51 Blast Pressure Effects: An Overview 1 ρ Figure 40. ο m S u r v i v a l Curves f o r Lung Damage to Man. (Ref. ; ACS Symposium Series; American Chemical Society: Washington, DC, 1987. TOXIC CHEMICAL AND EXPLOSIVES FACILITIES 2 50*y Pa il 1 IM 1 1 ΤΊ rs - 10" 5 2 3 5 10~ 4 2 3 5 10" 3 2 3 5 S p e c i f i c Impulse i , g 10~ 2 2 3 5 l(f 1 2 3 5 psi-eec Figure 41. Human Ear Damage f o r B l a s t Waves A r r i v i n g at Normal Angle of Incidence. (Ref. ; ACS Symposium Series; American Chemical Society: Washington, DC, 1987.
Design Considerations for Toxic Chemical and Explosives Facilities by Ralph A., Jr. Scott, Laurence J. Doemeny