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GOST 4.37 - "SYSTEM OF PRODUCTION QUALITY INDEXES. POSITIVE DISPLACEMENT HYDRAULIC DRIVES, PNEUMATIC DRIVES AND LUBRICATION SYSTEMS. NOMENCLATURE OF INDECES" Organization: GOST
Date: 1990-05-11
ASME 111 - RECOMMENDED PRACTICES FOR THE DESIGN OF MARINE PROPULSION TURBINE LUBRICATING SYSTEMS Organization: ASME
Date: 1960-05-01
Description: Subsequent to the issue of these recommendations, it is planned to issue recommendations on oil handling and purification, flushing and cleaning, and recommendations on the design of lubrication systems for ship service turbo/generators as they affect the main system.
FMAPPROVAL 5560 - WATER MIST SYSTEMS Organization: FM
Date: 2012-11-01
Description: This application includes enclosures with machinery such as internal combustion engines (excluding engine test cells), oil pumps, oil tanks, fuel filters, generators (reference FM Global Datasheet 5-23), transformer vaults, gear boxes, drive shafts, lubrication skids, diesel engine driven generators, and other similar equipment using liquid hydrocarbon fuel and/or hydraulic, heat transfer, and lubrication fluids with volatilities less than or equal to heptane; enclosures with incidental use or storage of hydrocarbon ignitable liquids (also known as flammable liquids) of not more than two 55 gal (208 L) drums.
NPFC - DI-PSSS-80991 - PLANNED MAINTENANCE SYSTEM (PMS) MAINTENANCE REQUIREMENT CARD (MRC) Organization: NPFC
Date: 2016-06-29
Description: This DID is related to DI-PSSS-80985B, Reliability-Centered Maintenance (RCM) Servicing and Lubrication Analysis (SLA) Report; DI-PSSS-80989B, Reliability-Centered Maintenance (RCM) Inactive Equipment Maintenance (IEM) Requirement Analysis Report; DI-PSSS- 81829A, Reliability-Centered Maintenance (RCM) Corrective Maintenance (CM) Development Report; DI-PSSS-80986B, Reliability-Centered Maintenance (RCM) Maintenance Requirement Index (MRI); DI-PSSS-80988B, Reliability-Centered Maintenance (RCM) Task Definition Report; DI-PSSS-80987B, Reliability-Centered Maintenance (RCM) Procedure Validation; DIPSSS- 80992B, Planned Maintenance System (PMS) Maintenance Index Page (MIP); DI-PSSS- 80993A, Planned Maintenance System (PMS) Quality Assurance Check Sheet.
FMAPPROVAL 5580 - HYBRID (WATER AND INERT GAS) FIRE EXTINGUISHING SYSTEMS Organization: FM
Date: 2012-11-01
Description: This application includes enclosures with machinery such as internal combustion engines (excluding engine test cells), oil pumps, oil tanks, fuel filters, generators (reference FM Global Datasheet 5-23), transformer vaults, gear boxes, drive shafts, lubrication skids, diesel engine driven generators, and other similar equipment using liquid hydrocarbon fuel and/or hydraulic, heat transfer, and lubrication fluids with volatilities less than of equal to heptane; enclosures with incidental use or storage of hydrocarbon ignitable liquids (also known as flammable liquids) of not more than two 55 gal (208 L) drums.
SAE/TP - 2006-01-3076 - HIGH-REACTANCE PERMANENT MAGNET MACHINE FOR HIGH-PERFORMANCE POWER GENERATION SYSTEMS Organization: SAE/TP
Date: 2006-11-07
Description: A gearless/oilless system can be obtained, resulting in elimination of the gearbox, lubrication system, and in some applications even the cooling systems.
ULC CAN-S669 - STANDARD FOR INTERNAL RETROFIT SYSTEMS FOR UNDERGROUND TANKS FOR FLAMMABLE AND COMBUSTIBLE LIQUIDS - FIRST EDITION; INCLUDING ERRATA 1: JULY 2017 Organization: ULC
Date: 2014-10-01
Description: This Standard provides minimum requirements for nonmetallic internal retrofit systems intended for field installation in underground tanks for the storage of flammable and combustible liquids, such as: A Petroleum products, including petroleum hydrocarbon fuels with low bio-blends per specifications and similar flammable or combustible liquid petroleum derivatives, such as fuel components (cetane, hexane, heptane), and oils (lubricating, hydraulic, machine); B Oxygenated fuel blends, including all ″petroleum products″ liquids; plus petroleum hydrocarbon fuels with low-biofuels blends; C Oxygenates, including all “petroleum product” and ″oxygenated fuel blends″ liquids; plus pure/ denatured or highest oxygenated blend stocks for use in mixing of dispensed lower fuel-blends and components, such as biodiesel and ethanol; and D Other flammable and combustible liquids that can be demonstrated to be compatible with the internal retrofit system materials.
SAE MS1001 - LUBRICANTS, INDUSTRIAL OILS, AND RELATED PRODUCTS TYPE A LUBRICANT FOR GENERAL PURPOSE AND TOTAL LOSS SYSTEMS - SPECIFICATION Organization: SAE
Date: 2017-08-01
Description: 1 Industrial lubricant classifications targeted: Lubricants, Industrial Oils and Related Products - Classification (SAE MS1000) General purpose and total loss lubricants (SAE MS1001) Gear oils (SAE MS1002) Compressor oils (SAE MS1003) Hydraulic fluids (SAE MS1004) Fire resistant hydraulic fluids (SAE MS1005) Lubricants for spindle bearings and associated clutches (SAE MS1006) Slideway lubricants (SAE MS1007) Metal removal fluids (SAE MS1008) Lubricants for pneumatic tools (SAE MS1009) Turbine oils (SAE MS 1010) Lubricating greases (SAE MS1011) See SAE MS1000 - Index of lubricants and symbols.
AGMA 6006 - STANDARD FOR DESIGN AND SPECIFICATION OF GEARBOXES FOR WIND TURBINES Organization: AGMA
Date: 2003-01-01
Description: Annex information is supplied on: wind turbine architecture, wind turbine load description, quality assurance, operation and maintenance, minimum purchaser gearbox manufacturing ordering data, lubrication selection andmonitoring, determination of an application factor from a load spectrum using equivalent torque, and bearing stress calculations.
ATA - TMC-PMIG - ATA'S TMC PREVENTIVE MAINTENANCE INSPECTION (PMI) GUIDELINES: CLASS 7 & 8 DIESEL-POWERED TRACTORS WITH AIR BRAKES (MANUAL AND RECORD SHEETS) Organization: ATA
Description: This publication covers all aspects of tractor preventive maintenance including in-cab and body inspection, tires and wheels, engine and electrical systems, chassis and undercarriage, lubrication and engine oil service, and test drives.
FORD WSS-M2C200-C - LUBRICANT, GEAR, SYNTHETIC HYDROCARBON - REPLACES WSD-M2C200-B Organization: FORD
Date: 1998-07-29
Description: REQUIREMENTS 3.1 QUALITY SYSTEM REQUIREMENTS MaterialsuppliersandpartproducersmustconformtoQuality System Requirements, QS-9000.
SAE AIR888 - FINE WIRE MESH FOR FILTER ELEMENTS Organization: SAE
Date: 2012-09-01
Description: This SAE Aerospace Information Report (AIR) discusses the terminology, types, method of manufacture and chemistry of the fine wire meshes used for filtration of hydraulic, lubrication fuel system, and similar applications. Information contained herein may be used for quality assurance testing to unsure that a high performance filter grade wire mesh is acceptable for use in an aerospace application.
AGMA 97FTM8 - NEW GUIDELINES FOR WIND TURBINE GEARBOXES Organization: AGMA
Date: 1997-11-01
Description: The document provides information on wind turbine architecture, environmental considerations, gearbox loads, gearbox design, procurement specification, manufacturing, quality assurance, lubrication, operation and maintenance.
ASTM D7665 - STANDARD GUIDE FOR EVALUATION OF BIODEGRADABLE HEAT TRANSFER FLUIDS Organization: ASTM
Date: 2017-08-01
Description: 2 The background for this standard was developed by a questionnaire circulated by ASTM-ASLE technical division L-VI-2 and reported in Lubrication Engineering, Vol 32, No. 8, August 1976, pp. 411–416.
ASTM D5372 - STANDARD GUIDE FOR EVALUATION OF HYDROCARBON HEAT TRANSFER FLUIDS Organization: ASTM
Date: 2017-08-01
Description: 2 The background for this standard was developed by a questionnaire circulated by ASTM-ASLE technical division L-VI-2 and reported in Lubrication Engineering, Vol 32, No. 8, August 1976, pp. 411–416 *A Summary of Changes section appears at the end of this standard
SAE MS1003-2 - LUBRICANTS, INDUSTRIAL OILS, AND RELATED PRODUCTS TYPE D COMPRESSOR OILS – SPECIFICATION - ADDENDUM Organization: SAE
Date: 2013-01-01
Description: Introduction concerning duties of compressors The following guidelines are given to help interested parties in differentiating between -light duty -medium duty -heavy duty Reciprocating oil-lubricated and rotary drip feed air compressors Whether the duty of reciprocating and rotary drip feed compressors is to be classified as light, medium, or heavy depends on many parameters, for example a) the compressor design i.e., type of cooling, number of stages, valve velocities, oil retention time, etc.
CRC - KE23085 - METAL CUTTING THEORY AND PRACTICE, THIRD EDITION Organization: CRC
Date: 2016-04-06
Description: The authors also offer updated information on tooling grades and practices for machining compacted graphite iron, nickel alloys, and other hard-to-machine materials, as well as a full description of minimum quantity lubrication systems, tooling, and processing practices. In addition, updated topics include machine tool types and structures, cutting tool materials and coatings, cutting mechanics and temperatures, process simulation and analysis, and tool wear from both chemical and mechanical viewpoints.
SAE MS 1002 - LUBRICANTS, INDUSTRIAL OILS, AND RELATED PRODUCTS TYPE C (GEARS) SPECIFICATION Organization: SAE
Date: 2017-10-01
Description: Lubricants for pneumatic tools (SAE MS1009) k. Turbine oils (SAE MS1010) l. Lubricating greases (SAE MS1011) See SAE MS1000 - Index of lubricants and symbols.
SAE MS 1004 - LUBRICANTS, INDUSTRIAL OILS, AND RELATED PRODUCTS TYPE H (HYDRAULIC FLUIDS) - SPECIFICATION Organization: SAE
Date: 2017-10-01
Description: Lubricants for pneumatic tools (SAE MS1009) k. Turbine oils (SAE MS 1010) l. Lubricating greases (SAE MS1011) NOTE 1: Environmental and/or health and safety regulations will present additional specifications to these standards.
ESDU 09005 - INTRODUCTION TO DAMPING Organization: ESDU
Date: 2009-05-01
Description: ., within the material of the structure, or as the damping which depends upon other dissipative factors, such as friction in rivets or bolts, or from lubrication (Reference 22). Damping also occurs in a structure which is radiating sound, as vibrational energy is lost in the surrounding medium rather than by dissipation in the structure.

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