Removal of ruptured heavy metal slug from tube No. 1874-F (open access)

Removal of ruptured heavy metal slug from tube No. 1874-F

None
Date: August 1, 1951
Creator: Smith, H.C.
System: The UNT Digital Library
The Effects of Atomic Weapons on Glazing and Window Construction. Annex 3.5 of Scientific Director's Report of Atomic Weapon Tests at Eniwetok. 1951. Operation Greenhouse (open access)

The Effects of Atomic Weapons on Glazing and Window Construction. Annex 3.5 of Scientific Director's Report of Atomic Weapon Tests at Eniwetok. 1951. Operation Greenhouse

BS>Various types of wood, steel, and aluminum window construction, glazed with plastic and different kinds of glass, were installed on four sides of a test structure during the greenhouse tests in order to determine their relative resistance to an atomic blast. The degree of protection from flying glass provided by mounting Venetian blinds, insect screens, and 1/4-in. mesh wire netting on the inside of window openings was also determined. The best results seem to indicate that the resistances of different types of glass to an atomic blast are approximately proportional to their strength in supporting static loads. Glass mounted in a rigid frame is less likely to be broken than if mounted in a flexible frame which may be distorted by the blast. Fragments from wire or safety glass are less dangerous to personnel than fragments from other types of glass, and plastic is less likely to break than glass, Commercial types of Venetian blinds and insect screens afforded littie or no protection against flying glass fragments at the distance at which tested; however, a blind with some of the parts reinforced and properly anchored to the window opening would. probably give some protection at a distance of 3 miles …
Date: August 1, 1951
Creator: Clark, W.C.
System: The UNT Digital Library
Development of Zirconium Alloys. Part 1 (open access)

Development of Zirconium Alloys. Part 1

A number of alloys of zirconium have been investigated as part of a program aimed at improving the high-temperature tensile strength of zirconium. These alloys include molybdenum, tantalum, tungsten, tin, titanium, and nitrogen alloys. It was found that small additions of molybdenum, tantalum, tin, titanium, and nitrogen appreciably increase the high-temperature tensile strength of zirconium.
Date: August 1, 1951
Creator: Schwope, A.D.; Marsh, L.L. & Chubb, W.
System: The UNT Digital Library