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Architectural standard details

Architectural Standard Details for Army Ammunition Plants... [Pg.68]

The purpose of the architectural standard details is for use in the design and construction of facilities used in the manufacture, maintenance, inspection, and storage of explosive materials. To this end two objectives were sought. The requirements for this program were to develop standard details for various methods of construction utilized in Army ammunition plants today and to develop details... [Pg.69]

Architectural Standard Details are available to anyone who requests them from the Defense Technical Information Center (DTIC), Cameron Station, Alexandria, Virginia 22314. The DTIC acquisition number is AD-A112 677. [Pg.84]

Architectural Standard Details for Nitroglycerin, Nitrocellulose, Single Base Multibase Facilities at Army Ammunition Plants,... [Pg.84]

The figures which follow represent typical nitroglycerin facility architectural details appearing in the standard details. [Pg.70]

Thus, this chapter summarizes the safety barriers of the PIPC platform architecture. The detailed arguments in this demonstration are included in the safety dossier (DS) submitted to the French Railway Safety Authority (EPSF Etablissement Public de Securite Ferroviaire). The safety dossier should be compliant with the CENELEC EN 50129 [CEN 03] standard. [Pg.150]

Note that glazing is acrylic plastic to comply with the AMC Safety Manual requirements. Screws for attachment of wood door frames and vision panel stops are countersunk and caulked. Joints not taped are sealed with caulking. It should be noted here that Sunflower AAP has had major problems with exterior wood doors exposed to the weather. A recurring problem has been the delamination of wood door materials. This may require a change to a more weather-resistant door material such as fiberglass reinforced plastic. Details for doors of this material are included in the standard architectural details. [Pg.73]

The SPL specification is a document markup standard that specifies the structure and semantics for the regulatory requirements and content of product labeling. The SPL is derived from the HL7 clinical document architecture (CDA), which specifies the structure and semantics of "clinical documents" for the purpose of exchange. This specification includes a detailed descriphon of the information model for structured product labeling objects as well as the XML representahon of that model. The information model is based on the HL7 reference informahon model (RIM) and uses the HL7 Version 3 Data Types, (see footnote ) This version of the specificahon focuses on drug product labeling. [Pg.482]

The concept presented here in much detail as an example of cooperative project work in micro structured reactor plant development is based on the bus system and simultaneously handles a number of tasks such as mechanical stability, fluidic flow and signal transmission. A key feature of the so-called backbone interface is its open architecture. It does not rely on standardized reactors or devices, thus allowing the combination of devices from various suppliers. A robust interface was developed which withstands high pressures and temperatures. Thermal cross-talk was minimized through the use of different heat-conducting materials. [Pg.552]

The choice of architecture also influences the maximum clock frequency of the CU. This has not been analyzed in detail, but there is a clear tendency that the delay is decreased as the area decreases. This is particularly true for PL A implementations, but also standard cell implementations become faster as the area decreases. [Pg.218]

In [ISO 13849-1] the electronic architecture of the safety functions are described from the so called designated architectures (similar to the term category used in old European machinery safety standard [EN 954-1]). The main principle in [ISO 13849-1] is to identify which designated architecture the complete safety function corresponds with and then use figure 5 in [ISO 13849-1] (or, when necessary, the more detailed approach in Table K.l in [ISO 13849-1]) to calculate the reached PL (see Figure 5). [Pg.268]

Architects and architectural engineers play prominent roles in the planning, design, construction, maintenance, and renovation of buildings. All processes of a project are initiated and directed to reflect the needs and desires of the project owner. These directives are modified by detailed sets of construction documents and best practices. Building codes are enforced to safeguard the health and safety of the owner, users, and residents environmental standards are followed to protect property and to ensure the efficient use of natural resources and attractive design features are chosen to enhance the community. The choice of construction materials, the visual and... [Pg.108]

Brick Earih. An impure loamy clay, particularly that of the Pleistocene of the Thames Valley, used for brickmaking. Brick Shapes. See Fig. 1 and the further references in Appendix A. The German didier CO publishes a detailed coding system for refractory bricks and shapes, which is a de facto standard in Europe. Brick Slip. A fired ceramic architectural facing varying from about 13 to 38mm in thickness and produced either as a unit itself or cut from a larger unit. [Pg.39]


See other pages where Architectural standard details is mentioned: [Pg.68]    [Pg.69]    [Pg.70]    [Pg.81]    [Pg.68]    [Pg.69]    [Pg.70]    [Pg.81]    [Pg.68]    [Pg.96]    [Pg.87]    [Pg.18]    [Pg.172]    [Pg.18]    [Pg.199]    [Pg.24]    [Pg.327]    [Pg.342]    [Pg.203]    [Pg.318]    [Pg.26]    [Pg.52]    [Pg.1385]    [Pg.622]    [Pg.302]    [Pg.217]    [Pg.123]    [Pg.233]    [Pg.7119]   
See also in sourсe #XX -- [ Pg.68 , Pg.69 , Pg.70 , Pg.71 , Pg.72 , Pg.73 , Pg.74 , Pg.75 , Pg.76 , Pg.77 , Pg.78 , Pg.79 , Pg.80 , Pg.81 , Pg.82 , Pg.83 ]




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Architectural standard details for

Architectural standard details for Army

Architectural standard details for Army ammunition plants

Standard details, architectural, Army

Standard details, architectural, Army ammunition plants

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