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SSPC PA 6 - FIBERGLASS-REINFORCED PLASTIC (FRP) LININGS APPLIED TO BOTTOMS OF CARBON STEEL ABOVEGROUND STORAGE TANKS - NACE NO. 10 Organization: SSPC
Date: 2002-02-01
Description: The lining manufacturer's technical data sheets for coating materials and glass reinforcement; material safety data sheets (MSDS); and application instructions shall be used in conjunction with the documents listed in Appendix A and the requirements contained within this standard.
NPFC - MIL-H-775 - HOSE, HOSE ASSEMBLIES; RUBBER, PLASTIC, FABRIC, OR METAL (INCLUDING TUBING) AND ASSOCIATED HARDWARE: PACKAGING OF Organization: NPFC
Date: 1987-10-19
Description: This specification covers the packaging for shipment, stowage, and storage of various types of hose, hose assemblies, tubing, and associated hardware.
WILEY - ALLOY PHYSICS - ALLOY PHYSICS COMPLETE DOCUMENT Organization: WILEY
Date: 2006-01-01
Description: Alongside fundamental topics, such as crystal defects, phase transformations and statistical thermodynamics, the team of international authors treats such hot areas as nano-size effects, interfaces, and spintronics, as well as technical applications of modern alloys, like data storage and recording, and the possibilities offered by materials design.
SAE J75 - MOTOR VEHICLE BRAKE FLUID CONTAINER COMPATIBILITY Organization: SAE
Date: 1999-11-01
Description: The reaction of certain inhibitors and other components commonly used in brake fluids with tin plate, soldered seams of metal cans, organic-coated steel, and plastic containers may create a storage problem because of the formation of precipitates.
ASTM D5026 - STANDARD TEST METHOD FOR PLASTICS: DYNAMIC MECHANICAL PROPERTIES: IN TENSION Organization: ASTM
Date: 2015-07-01
Description: The tensile data generated may be used to identify the thermomechanical properties of a plastic material or composition using a variety of dynamic mechanical instruments.
ASHRAE OR-16-C060 - FIELD TESTING OF A PROTOTYPE RESIDENTIAL GAS-FIRED HEAT PUMP WATER HEATER Organization: ASHRAE
Date: 2016-01-01
Description: Concerning system cost, with a thermal input of 16% of storage GWHs and 3% of tankless GWHs, the cost of GHPWH installation is minimized, requiring only small diameter gas and plastic vent piping, and standard electrical service. This GHPWH represents a step-change in energy efficiency at a projected competitive cost, a critical goal of both government agencies and utility energy efficiency programs.
NACE TM0111 - SLOW STRAIN RATE TEST METHOD FOR EVALUATION OF ETHANOL STRESS CORROSION CRACKING IN CARBON STEELS - ITEM NO. 21255 Organization: NACE
Date: 2011-01-01
Description: ., laboratory air) to determine the baseline values of tensile strength and plastic elongation. The ratios of the tensile strength and plastic elongation values in the environment test to their respective average baseline values are determined.
ASTM D5024 - STANDARD TEST METHOD FOR PLASTICS: DYNAMIC MECHANICAL PROPERTIES: IN COMPRESSION Organization: ASTM
Date: 2015-07-01
Description: These apparent differences from results observed in another study can usually be reconciled, without changing the observed data, by reporting in full (as described in this test method) the conditions under which the data were obtained.  Due to possible instrumentation compliance, the data generated are intended to indicate relative and not necessarily absolute property values.
ASTM D5023 - STANDARD TEST METHOD FOR PLASTICS: DYNAMIC MECHANICAL PROPERTIES: IN FLEXURE (THREE-POINT BENDING) Organization: ASTM
Date: 2015-07-01
Description: These apparent differences from results observed in another study can usually be reconciled, without changing the observed data, by reporting in full (as described in this test method) the conditions under which the data were obtained. Due to possible instrumentation compliance, the data generated are intended to indicate relative and not necessarily absolute property values.
API PUBL 2230 - STATIC ELECTRICITY RESEARCH PROJECT Organization: API
Date: 1994-04-29
Description: While earthing is the primary means of protection from incendiary discharge for systems with metallic conductors, it is ineffective when nonconductive plastic pipes, storage containers, sheets, coatings, liners, and clothing are used.
ISO 6721-12 - PLASTICS — DETERMINATION OF DYNAMIC MECHANICAL PROPERTIES — PART 12: COMPRESSIVE VIBRATION — NON-RESONANCE METHOD - FIRST EDITION Organization: ISO
Date: 2009-12-01
Description: NOTE 1 The method is applicable to the following semi-rigid polymers: — low-density polyethylene, ultra-high-molecular-weight polyethylene, polybutylene, and ethylene/propylene/diene copolymer; — polytetrafluoroethylene, plasticized poly(vinyl chloride), and ethylene/vinyl acetate copolymer; — thermoplastic elastomers and polyurethane.
NPFC - MIL-W-10430 - WELDING RODS AND ELECTRODES; PACKAGING OF Organization: NPFC
Date: 1994-03-22
Description: Classes of unit Container net containers Unit form weight ______________________ ____________________ ____________________ Class 3b Spools Bare electrodes and rods 750 pounds or - continuous length less Class 3c Rims Bare electrodes and rods 25, 50, or 60 - continuous length pounds (as specified) Class 3d Coils Bare electrodes and rods 65 pounds and - continuous length under Class 3e Coils Bare electrodes and rods Over 65 pounds - continuous length Class 4 Drums Bare electrodes and rods (as specified by - continuous length the purchaser) Class 5 (see Covered or bare 50 pounds and 3.6.1.1.1.5) electrodes - cut lengths under Class 6a Bare electrodes and rods 5 or 10 pounds Fiberboard box - cut lengths Class 6b Bare rods - cut lengths 25 pounds Fiberboard box Class 6c Bare rods - cut lengths 50 pounds Fiberboard box Class 6d Spiral- Bare electrodes and rods 5 or 10 pounds wound fiber tube - cut lengths Class 7 Bundles Bare rods - 36-inch cut 5, 10, 25, or lengths 50 pounds Class 8 Plastic Bare electrodes and rods 3 or 10 pounds - cut lengths Class 9 Sacks, Flux - granular See 3.6.1.1.1.9 drums, and and 6.2 metal containers
DLA - SMD-5962-91566 REV C - MICROCIRCUIT, DIGITAL, CMOS SINGLE CHIP 8-BIT MICROCONTROLLER, MONOLITHIC SILICON Organization: DLA
Date: 1996-06-28
Description: The device type(s) identify the circuit function as follows: Device type Generic number Circuit function 01 1/ 87C751 CMOS 8-bit microcontroller with 2 kilobytes EPROM memory 02 87C751 CMOS 8-bit microcontroller with 2 kilobytes one time programmable EPROM memory 03 1/ 87C751-16 CMOS 8-bit microcontroller with 2 kilobytes EPROM memory 04 87C751-16 CMOS 8-bit microcontroller with 2 kilobytes one time programmable EPROM memory 05 87C751 CMOS 8-bit microcontroller (3.5 to 12 MHz) one time programmable EPROM memory 06 87C751-16 CMOS 8-bit microcontroller (3.5 to 16 MHz) one time programmable EPROM memory 07 87C751 CMOS 8-bit microcontroller (3.5 to 12 MHz) one time programmable EPROM memory 08 87C751-16 CMOS 8-bit microcontroller (3.5 to 16 MHz) one time programmable EPROM memory The device class designator is a single letter identifying the product assurance level as follows: Device class Device requirements documentation M Vendor self-certification to the requirements for MIL-STD-883 compliant, non-JAN class level B microcircuits in accordance with MIL-PRF-38535, appendix A N Certification and qualification to MIL-PRF-38535 with a nontraditional performance environment 2/ Q or V Certification and qualification to MIL-PRF-38535 The case outline(s) are as designated in MIL-STD-1835 and as follows: Outline letter Descriptive designator Terminals Package style L 1/ GDIP3-T24 or CDIP4-T24 24 Dual-in-line package X MS-001-AF 3/ 24 Plastic dual-in-line package 3 1/ CQCC1-H28 28 Square chip carrier package The lead finish is as specified in MIL-PRF-38535 for device classes N, Q, and V or MIL-PRF-38535, appendix A for device class M.
ASTM D6639 - STANDARD GUIDE FOR USING THE FREQUENCY DOMAIN ELECTROMAGNETIC METHOD FOR SUBSURFACE INVESTIGATIONS Organization: ASTM
Date: 2001-02-10
Description: The FDEM method may be used instead of the Direct Current Resistivity method (Guide D 6431) when surface soils are excessively insulating (for example, dry or frozen) or a layer of asphalt or plastic or other logistical constraints prevent electrode to soil contact.
GMNA - 9982257 - ADHESIVE/SEALANT, ROOM TEMPERATURE VULCANIZING, OXIME CURE FOR ENGINE SEALING APPLICATIONS - ISSUE 3 Organization: GMNA
Date: 2016-11-01
Description: This adhesive/sealant lateral joint movement in millimeters (onset of cohesive or adhesive failure) on metal and plastic substrates is in Table 3. Once the lateral joint movement limit is exceeded, tensile and shear strength in megapascals is better than alkoxy cure systems (e.g., 9986350) and lower than acetoxy cure systems on all metal substrates.

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