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MSS SP-75-2014 : High-Test Wrought, Butt-Welding Fittings

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This Standard Practice covers factorymade, seamless and electric welded carbon and low-alloy steel, butt-welding fittings for use in high pressure gas and oil transmission and distribution systems; including pipelines, compressor stations, metering and regulating stations, and mains.


MSS SP-93-2014 : Quality Standard for Steel Castings and Forgings for Valves, Flanges, Fittings, and Other Piping Components - Liquid Penetrant Examination Method

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1. SCOPE

1.1 This Standard Practice provides methods and acceptance standards for liquid penetrant examination of steel castings and forgings for valves, flanges, fittings and other piping components. It is applicable to examination of repairs as well as to initial examination of castings and forgings.

1.2 The methods of Section 4 provide uniform procedures which will produce satisfactory and consistent results upon which the Acceptance Standards of Table 1 may be used. 1.3 This Standard Practice includes the examination of pressure containing castings and forgings.

MSS SP-95-2014 : Swage(D) Nipples and Bull Plugs

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This Standard Practice covers dimensions, finish, tolerances, marking, and material for carbon steel and alloy steel Swaged(1) Nipples (male end reducing fittings), NPS 1/4 through NPS 12 and Bull Plugs (hollow or solid male closures) NPS 1/8 through NPS 12. These fittings are made with ends that are threaded, beveled, square cut, grooved, or any combination of these. Both concentric and eccentric Swaged Nipples are included.

IES LM-41-14 : Approved Method: Photometric Testing of Indoor Fluorescent Luminaires

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This guide provides adequate and uniform methods for determining and reporting the photometric characteristics of indoor fluorescent luminaires. It describes characteristics of luminaires and some components, as well as the requirements for the thermal environment and proper control of the electrical and mechanical systems involved. This document is also concerned with general test conditions and the testing procedure best suited for achieving accurate and consistent photometric results.

GPA 2188-14 : Method for the Determination of Ethyl Mercaptan in LP-Gas Using Length of Stain Tubes

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This standard covers the determination of the concentration of Ethyl-Mercaptan in LP Gas using a length of stain tube. While other mercaptans and sulfur species may be indicated in this stain tube it is important to remember that the tubes are calibrated for and intended to be used to determine the concentrations of Ethyl Mercaptan in LP Gas.

This method covers the determination of ethyl mercaptan in LP gas. Limited data (Appendix A) show a precision of ±10% of the measured amount. The suggested range of tubes to be used in 0.5 to 25 ppmv. A chromatographic mehtod should be used for more precise, quantitative determination of ethyl mercaptan in propane.

UL 2431 : Safety for Durability of Fire Resistive Coatings and Materials

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Durability of Fire Resistive Coatings and Materials
UL 2431

1 Scope

1.1 This standard is intended to provide a means to measure the ability of fire resistive materials to retain their fire resistive properties after being subjected to various conditioning environments. The fire resistive performance is determined by measuring temperatures of steel tubes, wide flange sections and plates protected by the materials.

1.2 Various types of conditioning environments are described. The conditioning environments include air erosion, a combination of wet, freeze and dry cycling, humidity, impact resistance, industrial atmosphere, salt spray, temperature stability, ultraviolet light, and vibration.

1.3 Two fire exposures are defined, a normal temperature rise fire and a rapid temperature rise fire. The normal temperature rise fire is intended to represent a fully developed interior building fire. The rapid temperature rise fire is intended to represent a hydrocarbon pool fire.

1.4 The conditioning environments and fire exposure tests are not intended to be representative of all exposure and fire conditions. With respect to fire exposure, conditions vary with changes in the amount, nature, and distribution of fire loading: ventilation; compartment size and configuration; and heat conducting and dissipating characteristics of the compartment in which the fire resistive material is installed.

UL 310 : Electrical Quick-Connect Terminals

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Electrical Quick-Connect Terminals
UL 310

1 Scope

1.1 This standard applies to quick-connect terminals, both connectors and tabs, having nominal widths of 2.8, 3.2, 4.8, 5.2, and 6.3 mm (0.110, 0.125, 0.187, 0.205, and 0.250 in). They are intended for internal wiring connections in electrical equipment and for the field termination of conductors to electrical equipment in accordance with Part I of the Canadian Electrical Code, C22.1, in Canada, and the National Electrical Code, NFPA 70, in the United States of America.

1.2 These requirements apply to quick-connect terminals intended for use with one or two 26 - 10 AWG (0.13 - 5.3 mm2) copper conductors.

1.3 These requirements do not apply to terminals for use with aluminum conductors.

1.4 These requirements do not apply to multi-pole devices. Multi-pole devices are covered by UL 1977 and CSA C22.2 No. 182.3.

1.5 In Canada, general requirements applicable to this standard are given in CAN/CSA-C22.2 No. 0.

UL 401 : Portable Spray Hose Nozzles for Fire-Protection Service

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Portable Spray Hose Nozzles for Fire-Protection Service
UL 401
1 Scope

1.1 These requirements cover portable hand line spray hose nozzles intended for general fire fighting or for use with fire hose mounted on standpipe systems.

1.2 Requirements for the installation and use of spray nozzles used in standpipe systems are intended to be in accordance with the Standard for Standpipe, and Hose Systems,NFPA 14.

1.3 Nozzles covered by this Standard are intended to be inspected and maintained in accordance with Standard for the Inspection, Care and Use of Fire Hose, Couplings and Nozzles and the Service Testing of Fire Hose, NFPA 1962, and the Standard for the Inspection, Testing and Maintenance of Water-Based Fire Protection Systems, NFPA 25, when used in standpipe systems.

1.4 Nozzles covered by this Standard are intended for use on:
  • Class A common combustibles such as wood and paper, and B flammable liquid fires; or
  • Class A, B, and C, if suitable for use on electrically energized fires.

ANSI C78.901-2014 : American National Standard for Electric Lamps - Single-Based Fluorescent Lamps - Dimensional and Electrical Characteristics

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This standard sets forth the physical and electrical characteristics required to assure the interchangeability and to assist in the proper application of single-based fluorescent lamps. Single-based compact fluorescent lamps, both self-supporting and those requiring auxiliary support, including circular, square and U-shaped lamps are specified. Specifications for both the lamp itself and the interactive features of the lamp with the ballast are given. Information for luminaire design is given for certain lamp types.

The lamps covered in this standard are intended for use with external ballasts as described. These lamps are designed for 60Hz and/or high frequency operation.

Many of the lamp types covered in this standard are closely comparable to those specified in IEC 60901.

NEMA WD 8-2013 : Guidelines for Electrical Wiring Device Replacement

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The purpose of this guide is to provide a checklist to help the homeowner to evaluate the safety of the wiring devices and associated equipment installed in residences.

NEMA NTCIP 1203 v03 : Object Definitions for Dynamic Message Signs (DMS)

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NTCIP 1203 v03 includes requirements for NTCIP 1203 v03 defines the user needs and features, functional requirements, and standardized design elements for DMS (larger signs often seen along highways that display different messages). NTCIP 1203 v03 also includes a complete suite of Systems Engineering elements: User Needs, Functional Requirements, a Protocol Requirements List (PRL), standardized data exchange dialogs, the markup language MULTI, and a Requirements Traceability Matrix. Most significantly, NTCIP 1203 v03 now includes standardized test procedures.

NEMA NTCIP 1204 v03 : Environmental Sensor Stations (ESS) Interface Protocol, Includes Errata

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Provides definitions of data elements for use with ESS. NTCIP 1204 v03 now includes Test Procedures in Annex C.

Environmental sensors include a wide array of sensors, including those that monitor weather, roadway surface, water level, and air quality conditions. These sensors are typically connected to a nearby microprocessor termed a remote processor unit (RPU). An environmental sensor station (ESS) consists of the RPU plus its suite of sensors.

Typically, this equipment is permanently located at a site along a travel corridor. In some cases, the "stations" may be portable, or even mobile. For NTCIP 1204 v03 purposes, all three types of stations are called ESS. In the transportation community, these devices are frequently used to improve roadway maintenance and traffic operations.

Environmental sensors are also frequently co-located with pavement treatment systems (PTS) and, in fact, may use the same controller. Thus, for NTCIP 1204 v03 purposes, the term ESS may also include a PTS. Environmental sensors are also frequently co-located with pavement treatment systems (PTS) and, in fact, may use the same controller. Thus, for NTCIP 1204 v03 purposes, the term ESS may also include a PTS.

NEMA NTCIP 1207 v02 : Object Definitions for Ramp Meter Control (RMC) Units

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NTCIP 1207 v02 defines communication protocol for ramp metering control (RMC) units. Communicating together, RMC units detect both traffic on the main roadway and queued traffic preparing to enter the main roadway, optimizing traffic flow for both. RMC units include a field controller, its suite of sensors, and its warning signs and signals, as well as main roadway and queue detection stations.

NEMA NTCIP 1211 v02 : Object Definitions for Signal Control and Prioritization (SCP)

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NTCIP 1211 v02 includes requirements for communication and management of multiple requests for priority or preferential treatment of different classes of vehicles, such as transit or emergency service, among others. NTCIP 1211 v02 defines a method of granting priority to one signal while maintaining coordination with adjacent intersections. NTCIP 1211 v02 includes User Needs, Functional Requirements, and a Protocol Requirements List (PRL). NTCIP 1211 v02 also addresses `absolute time' as a request parameter.

BS PD CEN ISO/TS 29843-2:2014 : Soil quality. Determination of soil microbial diversity. Method by phospholipid fatty acid analysis (PLFA) using the simple PLFA extraction method

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Cross References:
ISO 10381-6
ISO/TS 29843-1


Incorporates the following:
Corrigendum, October 2014

BS PD CEN/TR 15367-1:2014 : Petroleum products. Guidelines for good housekeeping. Automotive diesel fuels

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Cross References:
EN 590
CEN/TR 16680
EN 14214
EN 14275
EN ISO 3170
ISO 3170
EN ISO 3171
ISO 3171
2003/30/EC
2009/30/EC


All current amendments available at time of purchase are included with the purchase of this document.

BS PD CEN/TR 16742:2014 : Intelligent transport systems. Privacy aspects in ITS standards and systems in Europe

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Cross References:
95/46/EC
2002/58/EC
2010/40/EU
ISO 24100
ISO/TR 12859:2009
ISO/IEC 29100:2011
ISO/IEC 13335-1
ISO/IEC 27000
ISO/IEC 27001
ISO/IEC 27002
ISO/IEC 27003
ISO/IEC 27004
ISO/IEC 27005
ISO/IEC 27006
NIST Special Publication 800-12


All current amendments available at time of purchase are included with the purchase of this document.

BS PD CEN/TS 14417:2014 : Geosynthetic barriers. Test method for the determination of the influence of wetting-drying cycles on the permeability of clay geosynthetic barriers

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Cross References:
EN 16416
EN ISO 3696
ISO 3696
EN ISO 10320
ISO 10320
ISO 554


All current amendments available at time of purchase are included with the purchase of this document.

BS PD CEN/TS 14418:2014 : Geosynthetic Barriers. Test method for the determination of the influence of freezing-thawing cycles on the permeability of clay geosynthetic barriers

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Cross References:
EN 16416
EN ISO 3696
ISO 3696
EN ISO 10320
ISO 10320
ISO 554


All current amendments available at time of purchase are included with the purchase of this document.

BS PD CLC/TR 50610:2014 : Railway applications. Train Modes functional interface specification

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Cross References:
UIC 438
UIC 556
UIC 612-1


All current amendments available at time of purchase are included with the purchase of this document.
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