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Low Speed Ball Machine

Low Speed Ball Machine, Total:277 items.

In the international standard classification, Low Speed Ball Machine involves: Bearings, Agricultural machines, implements and equipment, Rotating machinery, Chipless working equipment, Sewing machines and other equipment for the clothing industry, Motor cycles and mopeds, Wind turbine systems and other alternative sources of energy, Equipment for petroleum and natural gas industries, Shipbuilding and marine structures in general, Protection against crime, Fuels, Aircraft and space vehicles in general, Road vehicle systems, Lubricants, industrial oils and related products, Products of the textile industry, Industrial automation systems, Quality, Electromechanical components for electronic and telecommunications equipment, Earth-moving machinery, Internal combustion engines, Materials for aerospace construction, Fluid power systems, Cutting tools, Transport, Air quality, Radiocommunications, Internal combustion engines for road vehicles, Plastics, Space systems and operations, Protection against fire, Compressors and pneumatic machines.


Professional Standard - Machinery, Low Speed Ball Machine

  • JB/T 9740.1-1999 Series for low speed wind energy conversion system
  • JB/T 9740.3-1999 Technical specifications for low speed wind energy conversion system
  • JB/T 9740.4-1999 Installation guide for low speed wind energy conversion system
  • JB/T 6583-1993 Automatic cold heaters for high speed steel ball Precision
  • JB/T 6581-1993 Automatic cold heaters for high speed steel ball Basic parameters
  • JB/T 6582-1993 Automatic cold heaters for high speed steel ball Technical conditions
  • JB/T 9740.2-1999 Types and basic parameters for low speed wind energy conversion system
  • JB/T 6581.3-2014 High speed ball automatic header.Part 3: Accuracy
  • JB/T 5543-1991 Numerically controlled low speed wire electrical discharge machine (WEDM) Precision
  • JB/T 3705-1999 General specification for permanet magnet low speed synchronous motor
  • JB/T 3705-2014 General specification for permanent magnet low speed synchronous motor
  • JB/T 6581.1-2014 High speed ball automatic header.Part 1: Basic parameter
  • JB/T 6581.2-2014 High speed ball automatic header.Part 2: Technical requirements
  • JB/T 12209-2015 Specifications for medium-speed and high-power diesel engine nodular cast iron crankshaft
  • JB/T 5544-1991 Specifications for NC low-speed WEDM
  • JB/T 7785-2007 Evaluation method of insulation system's life by acceleration test for low-voltage electrical machines (Step stress method)
  • JB/T 54454-1999 Product quality classification of CNC low-speed wire EDM machine (internal use)
  • JB/T 7785-1995 Rapid test evaluation method for life of low-voltage motor insulation structure (step stress method)

Professional Standard - Medicine, Low Speed Ball Machine

Group Standards of the People's Republic of China, Low Speed Ball Machine

  • T/GTZC 001-2019 Rolling Bearings Miniature Low Speed Carbon Steel Deep Groove Ball Bearings
  • T/ZZB 0524-2018 Low noise deep groove ball bearings for electric motors
  • T/JSQA 056-2020 Large low-speed permanent magnet type wind turbine generator
  • T/CPI 11010-2022 Permanent magnet low-speed driving device of pumping unit
  • T/SDCA 028-2021 Taishan Quality-Low speed two stroke diesel engine
  • T/CSAE 182-2021 Test method for the impact of gasoline engine lubricanton low speed preignition
  • T/NTTIC 016-2018 Low shrinkage resistant pilling modal broadloom fabric

U.S. Military Regulations and Norms, Low Speed Ball Machine

Professional Standard - Electron, Low Speed Ball Machine

  • SJ 2670-1986 Permanent magnet low speed synchronous motors
  • SJ/T 9559.8-1993 Low speed permanent magnet synchronous motors--Quality grading standard
  • SJ 52147/1-2002 Low speed synchronous motors,rare-earth magnet,series JTDY4,detail specification for

Japanese Industrial Standards Committee (JISC), Low Speed Ball Machine

  • JIS B 9071:1992 LS1 low speed sewing machine heads for industrial use
  • JIS B 8397-1:2001 Hydraulic fluid power -- Determination of characteristics of motors -- Part 1: At constant low speed and at constant pressure

General Administration of Quality Supervision, Inspection and Quarantine of the People‘s Republic of China, Low Speed Ball Machine

  • GB/T 23927-2009 Tri-wheel vehicles and low-speed goods vehicles.Mechanical transmissions
  • GB/T 23923-2009 Tri-wheel vehicles and low-speed goods vehicles.Generator
  • GB/T 4997-2008 General specification for permanent magent low speed direct current tachogenerator
  • GB/T 4997-1993 Permanent magnet low speed direct current tachogenerator.General specification for
  • GB 9192-1988 Erecting specifications for marine low-speed diesel engine
  • GB/T 21939-2008 Earth-moving machinery.Warning devices for slow-moving machines.Ultrasonic and other systems
  • GB/T 25389.1-2010 Wind turbine low-speed permanent magnet synchronous generator.Part 1:Technical condition
  • GB/T 25389.2-2010 Wind turbine low-speed permanent magnet synchronous generator.Part 2:Testing methods
  • GB/T 23916-2009 Low-speed goods vehicles.Location,maximum acuating forces and operating metheod of controls
  • GB 19756-2005 Limits and measurement methods for exhaust pollutants from diesel engines of tri - wheel & low - speed goods vehicles

Korean Agency for Technology and Standards (KATS), Low Speed Ball Machine

  • KS B 7008-2005 LS1 Low speed sewing machine heads for industrial use
  • KS B 7008-1976 LS1 Low speed sewing machine heads for industrial use
  • KS B 7008-2002 LS1 Low speed sewing machine heads for industrial use
  • KS F ISO TR 9953:2003 Earth-moving machinery-Warning devices for slow-moving machines-Ultrasonic and other systems
  • KS F ISO TR 9953:2014 Earth-moving machinery-Warning devices for slow-moving machines-Ultrasonic and other systems
  • KS B ISO 4392-1-2004(2009) Hydraulic fluid power-Determination of characteristics of motors-Part 1:At constant low speed and constant pressure

SE-SIS, Low Speed Ball Machine

Military Standard of the People's Republic of China-General Armament Department, Low Speed Ball Machine

  • GJB 2147-1994 General specifications for low speed synchronous motors
  • GJB 2147A-2021 General specifications for low speed synchronous motors
  • GJB 180A-2006 Design criteria of aircraft test model in low speed wind tunnel
  • GJB 180-1986 Design specifications for low-speed wind tunnel aircraft models
  • GJB 9283-2017 Specification for miniature ball bearings for high speed gyromotors
  • GJB 6611-2008 Test method of helicopter rotor model in low speed wind tunnel
  • GJB 6755-2009 Test method for jettison of airborne external stores in low speed wind tunnel
  • GJB 6753-2009 Test method for powered model of propeller driven aircraft in low speed wind tunnel
  • GJB 6755-2009(XG1-2015) Modification sheet 1-2015 for the low-speed wind tunnel test method for airborne external stores
  • GJB 6753-2009(XG1-2015) Revision sheet 1-2015 of low-speed wind tunnel test method for powered model of propeller aircraft
  • GJB 4111.3-2000 General test procedures for design and finalization of military crawler-type construction machinery. Minimum stable speed test method for each gear.

Professional Standard-Ships, Low Speed Ball Machine

  • CB/T 4215-2013 hydraulic motor of type radial spherical plug low speed and high torque for ship
  • CB/T 4262-2013 Cylinder lubricator by electric control for marine diesel engine
  • CB 1062.2-1987 Man-hour Rated RND Low-speed Diesel Engines Installed on Ships
  • CB/T 820-1999 Erecting specifications for marine low-speed diesel engine
  • CB 1087.1-1988 Rated low-speed diesel engines for marine engine fitters and repairmen
  • CB 1062.3-1987 Man-hour quota B&W low-speed diesel main engine installed on the turbine ship

Professional Standard - Public Safety Standards, Low Speed Ball Machine

  • GA/T 645-2014 Speed dome for security surveillance
  • GA/T 645-2006 General specifications of speed dome for video surveillance system

RU-GOST R, Low Speed Ball Machine

  • GOST 1667-1968 Motor fuel for medium and low speed diesel engines. Specifications
  • GOST R 53263-2009 Fire equipment. Compressor unit for filling of low-voolume ballons with compress air breathing apparatus for fireman. General techical requirements. Test methods

American Society for Testing and Materials (ASTM), Low Speed Ball Machine

  • ASTM F3180/F3180M-17 Standard Specification for Low-Speed Flight Characteristics of Aircraft
  • ASTM F3180/F3180M-18 Standard Specification for Low-Speed Flight Characteristics of Aircraft
  • ASTM F3180/F3180M-19 Standard Specification for Low-Speed Flight Characteristics of Aircraft
  • ASTM F3180/F3180M-21 Standard Specification for Low-Speed Flight Characteristics of Aircraft
  • ASTM F3180/F3180M-16 Standard Specification for Low-Speed Flight Characteristics of Aeroplanes
  • ASTM D8291-20a Standard Test Method for Evaluation of Performance of Automotive Engine Oils in the Mitigation of Low-Speed, Preignition in the Sequence IX Gasoline Turbocharged Direct-Injection, Spark-Ignition Engin
  • ASTM D8291-19 Standard Test Method for Evaluation of Performance of Automotive Engine Oils in the Mitigation of Low-Speed, Preignition in the Sequence IX Gasoline Turbocharged Direct-Injection, Spark-Ignition Engin
  • ASTM D8291-20 Standard Test Method for Evaluation of Performance of Automotive Engine Oils in the Mitigation of Low-Speed, Preignition in the Sequence IX Gasoline Turbocharged Direct-Injection, Spark-Ignition Engin
  • ASTM D1824-95(2010) Standard Test Method for Apparent Viscosity of Plastisols and Organosols at Low Shear Rates
  • ASTM D1824-16 Standard Test Method for Apparent Viscosity of Plastisols and Organosols at Low Shear Rates
  • ASTM D1824-95(2002) Standard Test Method for Apparent Viscosity of Plastisols and Organosols at Low Shear Rates
  • ASTM D1824-95 Standard Test Method for Apparent Viscosity of Plastisols and Organosols at Low Shear Rates

IN-BIS, Low Speed Ball Machine

ZA-SANS, Low Speed Ball Machine

  • SANS 1447-1:2007 Braking (motor and towed vehicles, designed for low speed or for use off public roads) Part 1: Low speed vehicles
  • SANS 1447-2:2007 Braking (motor and towed vehicles, designed for low speed or for use off public roads) Part 2: Low speed trailers

ESDU - Engineering Sciences Data Unit, Low Speed Ball Machine

  • ESDU 71006-1971 Low-speed longitudinal aerodynamic characteristics of slender wings.
  • ESDU 96003 C-1999 LIFT CURVE OF WINGS WITH HIGH-LIFT DEVICES DEPLOYED AT LOW SPEEDS
  • ESDU 96003 B-1997 Lift curve of wings with high-lift devices deployed at low speeds
  • ESDU 96003 D-2002 Lift curve of wings with high-lift devices deployed at low speeds
  • ESDU 96003 E-2003 Lift curve of wings with high-lift devices deployed at low speeds.
  • ESDU 74008 A-1975 Estimation of critical Mach number for an aerofoil from its low-speed pressure distribution.
  • PERF RP 1/1 A-2009 Standard British method of performance reduction for piston-engined aircraft with constant-speed propellers. Level speed.
  • PERF RP 1/1-1950 Standard British method of performance reduction for piston-engined aircraft with constant-speed propellers. Level speed.
  • ESDU 91014 A-1995 Maximum lift of wings with trailing-edge flaps at low speeds.
  • PERF RP 2/0 A-2009 General method of performance reduction for piston-engined aircraft with constant-speed propellers
  • AERO W.02.04.03 A-1978 Profile drag of smooth aerofoils with straight trailing- edges at low speeds.
  • PERF RP 2/0-1950 General method of performance reduction for piston-engined aircraft with constant-speed propellers.
  • ESDU 71007-1971 Low-speed normal force and pitching moment of slender wings in ground effect.
  • ESDU 89042 A-2012 Body effect on wing angle of attack and pitching moment at zero lift at low speeds
  • ESDU 89042-1989 Body effect on wing angle of attack and pitching moment at zero lift at low speeds.
  • PERF RT 1/1-1948 "Performance reduction for aircraft with turbo-props. ""Non-dimensional"" graphical method. Level speed."
  • PERF RP 1/0 A-2009 Standard British method of performance reduction for piston-engined aircraft with constant-speed propellers
  • ESDU 03017 A-2007 Pitching moment curve of wings with leading-edge and trailing-edge high-lift devices deployed at low speeds.
  • ESDU 03017-2003 Pitching moment curve of wings with leading-edge and trailing-edge high-lift devices deployed at low speeds
  • PERF RT 1/1 A-2009 Performance reduction for aircraft with turbo-props. “Non-dimensional” graphical method. Level speed
  • ESDU 93019 A-1995 Wing lift increment at zero angle of attack due to deployment of single-slotted flaps at low speeds.
  • ESDU 99004 B-2003 Aerofoil and wing pitching moment coefficient at zero angle of attack due to deployment of trailing-edge single-slotted flaps at low speeds.
  • ESDU 98017 A-2003 Aerofoil and wing pitching moment coefficient at zero angle of attack due to deployment of trailing-edge plain flaps at low speeds.
  • ESDU 98009 A-2003 Aerofoil and wing pitching moment coefficient at zero angle of attack due to deployment of trailing-edge split flaps at low speeds.
  • PERF RP 1/2-1950 Standard British method of performance reduction for piston-engined aircraft with constant-speed propellers. Rate of climb.
  • PERF RP 1/2 A-2009 Standard British method of performance reduction for piston-engined aircraft with constant-speed propellers. Rate of climb
  • ESDU 98009-1998 AEROFOIL AND WING PITCHING MOMENT COEFFICIENT AT ZERO ANGLE OF ATTACK DUE TO DEPLOYMENT OF TRAILING-EDGE SPLIT FLAPS AT LOW SPEEDS
  • ESDU 99004-1999 AEROFOIL AND WING PITCHING MOMENT COEFFICIENT AT ZERO ANGLE OF ATTACK DUE TO DEPLOYMENT OF TRAILING-EDGE SINGLE-SLOTTED FLAPS AT LOW SPEEDS
  • ESDU 98017-1998 AEROFOIL AND WING PITCHING MOMENT COEFFICIENT AT ZERO ANGLE OF ATTACK DUE TO DEPLOYMENT OF TRAILING-EDGE PLAIN FLAPS AT LOW SPEEDS
  • ESDU 99004 A-2000 AEROFOIL AND WING PITCHING MOMENT COEFFICIENT AT ZERO ANGLE OF ATTACK DUE TO DEPLOYMENT OF TRAILING-EDGE SINGLE-SLOTTED FLAPS AT LOW SPEEDS
  • PERF RP 1/3-1950 Standard British method of performance reduction for piston-engined aircraft with constant-speed propellers. Fuel consumption.
  • PERF RP 1/3 A-2009 Standard British method of performance reduction for piston-engined aircraft with constant-speed propellers. Final consumption
  • ESDU 96032-1996 Wing lift coefficient increment at zero angle of attack due to deployment of leading-edge devices at low speeds.
  • ESDU 99031 A-2008 Computer program for estimation of lift curve to maximum lift for wing-fuselage combinations with high-lift devices at low speeds.
  • ESDU 99031 B-2009 Computer program for estimation of lift curve to maximum lift for wing-fuselage combinations with high-lift devices at low speeds
  • ESDU 99031-1999 Computer program for estimation of lift curve to maximum lift for wing-fuselage combinations with high-lift devices at low speeds
  • ESDU 99014 A-2003 Aerofoil and wing pitching moment coefficient at zero angle of attack due to deployment of trailing-edge double-slotted and triple-slotted flaps at low speeds.
  • PERF RP 1/0-1950 Introductory sheet on the standard British method of performance reduction for piston-engined aircraft with constant-speed propellers.
  • ESDU 97011-1997 WING LIFT COEFFICIENT INCREMENT AT ZERO ANGLE OF ATTACK DUE TO DEPLOYMENT OF PLAIN TRAILING-EDGE FLAPS AT LOW SPEEDS
  • ESDU 97009 A-2003 Wing lift coefficient increment at zero angle of attack due to deployment of trailing-edge split flaps at low speeds.
  • ESDU 97009-1997 WING LIFT COEFFICIENT INCREMENT AT ZERO ANGLE OF ATTACK DUE TO DEPLOYMENT OF TRAILING-EDGE SPLIT FLAPS AT LOW SPEEDS
  • ESDU 97011 A-2003 Wing lift coefficient increment at zero angle of attack due to deployment of plain trailing-edge flaps at low speeds.
  • ESDU 99014-2000 AEROFOIL AND WING PITCHING MOMENT COEFFICIENT AT ZERO ANGLE OF ATTACK DUE TO DEPLOYMENT OF TRAILING-EDGE DOUBLE-SLOTTED OR TRIPLE-SLOTTED FLAPS AT LOW SPEEDS
  • ESDU 95021-1995 Wing lift coefficient increment at zero angle of attack due to deployment of double-slotted or triple-slotted flaps at low speeds.
  • ESDU 01013-2001 Aerofoil and wing pitching moment coefficient increment at zero angle of attack due to deployment of leading-edge and trailing-edge high-lift devices in combination at low speeds
  • ESDU 94026 A-1995 Introduction to the estimation of the lift coefficients at zero angle of attack and at maximum lift for aerofoils with high-lift devices at low speeds.

IEEE - The Institute of Electrical and Electronics Engineers@ Inc., Low Speed Ball Machine

  • IEEE 802.15.4 CORR 1-2018 Low-Rate Wireless Networks (IEEE Computer Society)
  • IEEE 802.15.4Q AMD 2-2016 Low-Rate Wireless Networks Amendment 2: Ultra-Low Power Physical Layer (IEEE Computer Society)
  • IEEE 802.15.4T-2017 Low-Rate Wireless Networks Amendment 4: Higher Rate (2 Mb/s) Physical (PHY) Layer (IEEE Computer Society)
  • IEEE 802.15.4Q ERTA-2016 Low-Rate Wireless Personal Area Networks (WPANs) Amendment 2: Ultra-Low Power Physical Layer (IEEE Computer Society)
  • IEEE P802.15.4T/D05-2016 Draft Standard for Low-Rate Wireless Networks Amendment: Higher Rate (2 Mb/s) Physical (PHY) Layer (IEEE Computer Society)
  • IEEE P802.15.4T/D06-2016 Draft Standard for Low-Rate Wireless Networks Amendment: Higher Rate (2 Mb/s) Physical (PHY) Layer (IEEE Computer Society)
  • IEEE 802.15.4 ERTA-2016 Errata to Low-Rate Wireless Personal Area Networks (WPANs) (IEEE Computer Society)
  • IEEE P802.15.4/D3-2017 Draft Standard for Low-Rate Wireless Networks: Corrigenda 1 (IEEE Computer Society)
  • IEEE 802.15.4S AMD 6-2018 Low-Rate Wireless Networks Amendment 6: Enabling Spectrum Resource Measurement Capability (IEEE Computer Society)
  • IEEE 802.15.4N AMD 1-2016 Low-Rate Wireless Networks Amendment 1: Physical Layer Utilizing China Medical Bands (IEEE Computer Society)
  • IEEE 802.15.4U-2016 Low-Rate Wireless Networks Amendment 3: Use of the 865 MHz to 867 MHz Band in India (IEEE Computer Society)
  • IEEE 802.15.4V AMD 5-2017 Low-Rate Wireless Networks Amendment 5: Enabling/Updating the Use of Regional Sub-GHz Bands (IEEE Computer Society)
  • IEEE P802.15.4S/D06-2017 Draft Standard for Low-Rate Wireless Networks Amendment: Enabling Spectrum Resource Measurement Capability (IEEE Computer Society)
  • IEEE P802.15.4S/D07-2017 Draft Standard for Low-Rate Wireless Networks Amendment: Enabling Spectrum Resource Measurement Capability (IEEE Computer Society)
  • IEEE P802.15.4V/D4-2016 Draft Standard for Low-Rate Wireless Networks Amendment: Enabling/Updating the Use of Regional Sub-GHz Bands (IEEE Computer Society)
  • IEEE P802.15.4V/D5-2017 Draft Standard for Low-Rate Wireless Networks Amendment: Enabling/Updating the Use of Regional Sub-GHz Bands (IEEE Computer Society)
  • IEEE 802.15.4X AMD 7-2019 Low-Rate Wireless Networks Amendment 7: Defining Enhancements to the Smart Utility Network (SUN) Physical Layers (PHYs) Supporting up to 2.4 Mb/s Data Rates (IEEE Computer Society)
  • IEEE P802.15.4X/D1-2018 Low-Rate Wireless Networks Amendment Defining Enhancements to the Smart Utility Network (SUN) Physical Layers (PHYs) supporting up to 2.4 Mb/s data rates (IEEE Computer Society)
  • IEEE 802.15.4N ERTA-2016 Errata to Low-Rate Wireless Personal Area Networks (WPANs) Amendment 1: Physical Layer Utilizing China Medical Bands (IEEE Computer Society)

国家能源局, Low Speed Ball Machine

National Aeronautics and Space Administration (NASA), Low Speed Ball Machine

  • NASA NACA-RM-L7K07-1948 Flight characteristics at low speed of delta-wing models
  • NASA NACA-TN-3963-1957 A correlation of low-speed, airfoil-section stalling characteristics with Reynolds number and airfoil geometry
  • NASA NACA-RM-A53A30-1953 Lift, drag, and pitching moment of low-aspect-ratio wings at subsonic and supersonic speeds
  • NASA NACA-RM-A51D25-1951 Low-speed characteristics of a wing having 63 degrees sweepback and uniform camber
  • NASA-TP-1786-1980 Low-speed aerodynamic characteristics of a 17-percent-thick medium-speed airfoil designed for general aviation applications
  • NASA NACA-RM-L8L29-1949 Low-speed static-stability and rolling characteristics of low-aspect-ratio wings of triangular and modified triangular plan forms
  • NASA NACA-TR-1224-1955 Effects of wing position and fuselage size on the low-speed static rolling stability characteristics of a delta-wing model
  • NASA NACA-RM-A9B17-1949 Chordwise and spanwise loadings measured at low speed on large triangular wings
  • NASA NACA-CR-3675-1983 An aerodynamic analysis computer program and design notes for low speed wing flap systems
  • NASA NACA-RM-A7L11-1948 Low-speed investigation of a small triangular wing of aspect ratio 2.0 II : flaps on flat-plate models
  • NASA NACA-RM-A51H02-1951 Lift, drag, and pitching moment of low-aspect-ratio wings at subsonic and supersonic speeds - plane triangular wing of aspect ratio 3 with NACA 0003-63 section
  • NASA-TM-X-72843-1976 Effects of thickness on the aerodynamic characteristics of an initial low-speed family of airfoils for general aviation applications
  • NASA NACA-TN-2468-1951 Investigation at low speed of 45 degrees and 60 degrees sweptback, tapered, low-drag wings equipped with various types of full-span, trailing-edge flaps
  • NASA NACA-RM-L56G02-1956 Effect of a fuselage on the low-speed longitudinal aerodynamic characteristics of a 45 degrees sweptback wing with double slotted flaps
  • NASA NACA-RM-L55F21-1955 Wind-tunnel investigation at low speed of sideslipping, rolling, yawing, and pitching characteristics for a model of a 45 degrees swept-wing fighter-type airplane
  • NASA NACA-RM-A8D02-1949 Aerodynamic study of a wing-fuselage combination employing a wing swept back 63 degrees - investigation of a large-scale model at low speed
  • NASA NACA-RM-L56D03-1956 Low-speed wind-tunnel results for a thin aspect-ratio-1.85 pointed-wing-fuselage model with double slotted flaps
  • NASA NACA-TN-2587-1951 Influence of wing and fuselage on the vertical-tail contribution to the low-speed rolling derivatives of midwing airplane models with 45 degree sweptback surfaces
  • NASA NACA-RM-A8C03-1948 Low-speed investigation of a small triangular wing of aspect ratio 2.0. III - static stability with twin vertical fins
  • NASA NACA-TN-2741-1952 Investigation of the influence of fuselage and tail surfaces on low-speed static stability and rolling characteristics of a swept-wing model
  • NASA-TN-D-7721-1974 Wind-tunnel investigation to determine the low-speed yawing stability derivatives of a twin-jet fighter model at high angles of attack
  • NASA-TN-D-8373-1976 Low-speed wind-tunnel investigation of flight spoilers as trailing-vortex-alleviation devices on an extended-range wide-body tri-jet airplane model
  • NASA NACA-RM-A50K20-1951 Lift, drag, and pitching moment of low-aspect-ratio wings at subsonic and supersonic speeds - plane triangular wing of aspect ratio 2 with NACA 0008-63 section
  • NASA NACA-RM-A7K03-1948 Low-speed investigation of a small triangular wing of aspect ratio 2.0 I : the effect of combination with a body revolution and height above a ground plane
  • NASA NACA-RM-L9F14-1949 Effect of sweepback on the low-speed static and rolling stability derivatives of thin tapered wings of aspect ratio 4
  • NASA-TP-1419-1979 Low-speed wind-tunnel parametric investigation of flight spoilers as trailing-vortex-alleviation devices on a transport aircraft model
  • NASA NACA-TN-4077-1957 Static longitudinal and lateral stability characteristics at low speed of 45 degrees sweptback-midwing models having wings with an aspect ratio of 2, 4, or 6
  • NASA NACA-RM-A9C21-1949 Aerodynamic study of a wing-fuselage combination employing a wing swept back 63 degrees : effects of split flaps, elevons, and leading-edge devices at low speed
  • NASA NACA-TN-2010-1950 Effect of horizontal tail on low-speed static lateral stability characteristics of a model having 45 degree sweptback wing and tail surfaces
  • NASA-TN-3235-1954 Low speed yawed-rolling and some other elastic characteristics of two 56-inch-diameter, 24-ply-rating aircraft tires
  • NASA NACA-RM-L55J06-1956 Low-Speed Static Stability Characteristics of a Complete Model with an M-Wing in Mid and High Positions and with Three Horizontal-Tail Heights
  • NASA NACA-TN-4397-1958 Static longitudinal and lateral stability characteristics at low speed of 60 degrees sweptback-midwing models having wings with an aspect ratio of 2, 4, or 6
  • NASA NACA-RM-L58B05-1958 Low-subsonic investigation to determine the chordwise pressure distribution and effectiveness of spoilers on a thin, low-aspect-ratio, unswept, untapered, semispan wing and on the wing with leading and trailing-edge flaps
  • NASA NACA-TN-2534-1951 Experimental investigation of the low-speed static and yawing stability characteristics of a 45 degrees sweptback high-wing configuration with various twin vertical wing fins
  • NASA-TP-1580-1979 Low-speed aerodynamic performance of a high-aspect-ratio supercritical-wing transport model equipped with full-span slat and part-span double-slotted flaps
  • NASA NACA-RM-L52G18-1952 Investigation of the effects of variations in the Reynolds number between 0.4 x 10(exp 6) and 3.0 x 10(exp 6) on the low-speed aerodynamic characteristics of three low-aspect-ratio symmetrical wings with rectangular plan forms
  • NASA NACA-TM-X-2317-1971 Low speed aerodynamic characteristics of a rectangular, aspect-ratio-6, slotted supercritical airfoil wing having several high-lift flap systems
  • NASA-TN-3604-1956 Low-speed yawed-rolling characteristics and other elastic properties of a pair of 26-inch-diameter, 12-ply-rating, type VII aircraft tires
  • NASA-TN-4109-1958 Low-speed yawed-rolling characteristics and other elastic properties of a pair of 40-inch-diameter, 14-ply-rating, type VII aircraft tires

国家市场监督管理总局, Low Speed Ball Machine

  • RB/T 016-2019 Low-carbon product evaluation methods and requirements for copiers, printers and speed printers

Taiwan Provincial Standard of the People's Republic of China, Low Speed Ball Machine

  • CNS 6001-1980 LS 1 Low Speed Sewing Machine Heads for Industrial Use

Institute of Electrical and Electronics Engineers (IEEE), Low Speed Ball Machine

  • IEEE 802.15.4-2015 Low-Rate Wireless Personal Area Networks (WPANs) (IEEE Computer Society)
  • IEEE 802.15.4Q/AMD 2-2016 Low-Rate Wireless Personal Area Networks (WPANs) Amendment 2: Ultra-Low Power Physical Layer (IEEE Computer Society)
  • IEEE 802.15.4/COR-2016 Errata to Low-Rate Wireless Personal Area Networks (WPANs) (IEEE Computer Society)
  • IEEE 802.15.4N/AMD 1-2016 Low-Rate Wireless Personal Area Networks (WPANs) Amendment 1: Physical Layer Utilizing China Medical Bands (IEEE Computer Society)
  • IEEE 802.15.4N/COR-2016 Errata to Low-Rate Wireless Personal Area Networks (WPANs) Amendment 1: Physical Layer Utilizing China Medical Bands (IEEE Computer Society)

U.S. Air Force, Low Speed Ball Machine

FMVSS - Federal Motor Vehicle Safety Standards, Low Speed Ball Machine

Professional Standard - Aerospace, Low Speed Ball Machine

  • QJ 3061-1998 Hydrogen-oxygen rocket engine low temperature and high speed bearing test method

机械电子工业部, Low Speed Ball Machine

  • JB 5544-1991 CNC low-speed wire EDM wire cutting machine technical conditions

RO-ASRO, Low Speed Ball Machine

  • STAS 11922-1980 General use mechanical motor speed devices MECHANICAL MOTOR SPEED DEVICES WITH SPHERICAL INTERMEDIARY ELEMENTS. Types and main parameters

International Organization for Standardization (ISO), Low Speed Ball Machine

  • ISO/TR 9953:1996 Earth-moving machinery - Warning devices for slow-moving machines - Ultrasonic and other systems
  • ISO/DIS 4273 Intelligent transport systems — Automated braking during low speed manoeuvring (ABLS) — Requirements and test procedures
  • ISO/TR 17606:2014 Plain bearings - Lubrication characteristics of crosshead pin bearings for low-speed marine diesel engines
  • ISO 4392-1:1988 Hydraulic fluid power — Determination of characteristics of motors — Part 1: At constant low speed and at constant pressure
  • ISO 17386:2004 Transport information and control systems - Manoeuvring Aids for Low Speed Operation (MALSO) - Performance requirements and test procedures

Association Francaise de Normalisation, Low Speed Ball Machine

  • NF Z86-721*NF EN 300721:2000 Satellite Earth Stations and Systems (SES) - Mobile Earth Stations (MES) providing Low Bit Rate Data Communications (LBRDC) using Low Earth Orbiting (LEO) satellites operating below 1 GHz
  • NF ISO 11001-3:2009 Tracteurs agricoles à roues et instruments - Coupleurs rapides trois points - Partie 3 : coupleur à rotules
  • NF L43-550:1988 Aéronautique et espace - Équipements de cabine - Raccords basse pression à démontage rapide - Caractéristiques générales.
  • NF E48-381:1990 Hydraulic fluid power. Determination of characteristics of motors. Part 1 : at constant pressure and at constant low speed.
  • NF ETS 300254:1995 Télécommunications - Stations terriennes et systèmes par satellites (ses) - Stations mobiles terrestres (LMES) fonctionnant dans les bandes de 1,5 / 1,6 GHz utilisées pour les transmissions de données à bas débit (LBRDC).
  • NF ETS 300255:1994 Télécommunications - Stations terriennes et systèmes par satellite (ses) - Stations mobiles terrestres (LMES) fonctionnant dans les bandes de 11/12/14 GHz utilisées pour les transmissions de données à bas débit (LBRDC).
  • NF E48-381*NF ISO 4392-1:2002 Hydraulic fluid power - Determination of characteristics of motors - Part 1 : at constant low speed and constant pressure
  • NF EN 50478:2012 Spécification pour le fonctionnement du récepteur pour la télévision interactive par satellite avec une voie de retour à bas débit par satellite - Spécification du moden de la couche

United States Navy, Low Speed Ball Machine

  • NAVY MIL-S-85420 (1)-2000 SEALING COMPOUNDS, QUICK REPAIR, LOW TEMPERATURE CURING POLYSULFIDE, FOR AIRCRAFT STRUCTURES
  • NAVY MIL-S-85420-1980 SEALING COMPOUNDS, QUICK REPAIR, LOW TEMPERATURE CURING POLYSULFIDE, FOR AIRCRAFT STRUCTURES

ETSI - European Telecommunications Standards Institute, Low Speed Ball Machine

  • ETSI EN 301 426:2016 Satellite Earth Stations and Systems (SES); Harmonised Standard for Low data rate Land Mobile satellite Earth Stations (LMES) and Maritime Mobile satellite Earth Stations (MMES) not intended for distress and safety communications operating in the 1@5 GHz/
  • ETSI EN 301 427:2001 Satellite Earth Stations and Systems (SES); Harmonized EN for Low Data Rate Mobile Satellite Earth Stations (MESs) Except Aeronautical Mobile Satellite Earth Stations@ Operating in the 11/12/14 GHz Frequency Bands Covering Essential Requirements under Art
  • ETSI EN 301 426:2001 Satellite Earth Stations and Systems (SES); Harmonized EN for Low Data Rate Land Mobile Satellite Earth Stations (LMES) and Maritime Mobile Satellite Earth Stations (MMES) Not Intended for Distress and Safety Communications Operating in the 1@5/1@6 GHz Fr
  • ETSI EN 301 427:1999 Satellite Earth Stations and Systems (SES); Harmonized EN for Low Data Rate Land Mobile Satellite Earth Stations (LMES) Operating in the 11/12/14 GHz Frequency Bands Covering Essential Requirements under Article 3.2 of the R&TTE Directive (V1.1.1)
  • ETSI EN 301 427:2000 Satellite Earth Stations and Systems (SES); Harmonized EN for Low Data Rate Land Mobile Satellite Earth Stations (LMES) Operating in the 11/12/14 GHz Frequency Bands Covering Essential Requirements under Article 3.2 of the R&TTE Directive (V 1.1.1)
  • ETSI EN 301 426:2000 Satellite Earth Stations and Systems (SES); Harmonized EN for Low Data Rate Land Mobile Satellite Earth Stations (LMES) Operating in the 1@5/1@6 GHz Frequency Bands Covering Essential Requirements under Article 3.2 of the R&TTE Directive (V1.1.1)
  • ETSI EN 301 426:1999 Satellite Earth Stations and Systems (SES); Harmonized EN for Low Data Rate Land Mobile Satellite Earth Stations (LMES) Operating in the 1@5/1@6 GHz Frequency Bands Covering Essential Requirements under Article 3.2 of the R&TTE Directive (V1.1.1)

SAE - SAE International, Low Speed Ball Machine

  • SAE AMS-S-85420A-2011 Sealing Compounds@ Quick Repair@ Low Temperature Curing Polysulfide@ for Aircraft Structures
  • SAE AMS-S-29574A-2011 Sealing Compound@ Polythioether@ for Aircraft Structures@ Fuel and High Temperature Resistant@ Fast Curing At Ambient and Low Temperatures

Professional Standard - Aviation, Low Speed Ball Machine

  • HB 8599-2021 Installation requirements for aircraft low-speed pressurized wind tunnel high Reynolds number test model
  • HB 8601-2021 Full model design requirements for aircraft low-speed pressurized wind tunnel high Reynolds number tests
  • HB 8598-2021 Design requirements for semi-model of aircraft low-speed pressurized wind tunnel high Reynolds number test
  • HB 8600-2021 General requirements for stress calculation of aircraft low-speed pressurized wind tunnel high Reynolds number test model

German Institute for Standardization, Low Speed Ball Machine

  • DIN 51515-2:2010 Lubricants and governor fluids for turbines - Minimum requirements - Part 2: Turbine oils TG for high temperature service
  • DIN 22406:1986-10 Low speed Koepe winding machines with friction wheel, for shafts and drifts; braking system calculation formulae
  • DIN 51515-1:2010-02 Lubricants and governor fluids for turbines - Minimum requirements - Part 1: Turbine oils TD for normal service
  • DIN 51515-1:2010 Lubricants and governor fluids for turbines - Minimum requirements - Part 1: Turbine oils TD for normal service
  • DIN 22406:1986 Low speed Koepe winding machines with friction wheel, for shafts and drifts; braking system calculation formulae
  • DIN 51515-2:2010-02 Lubricants and governor fluids for turbines - Minimum requirements - Part 2: Turbine oils TG for high temperature service

RTCA - RTCA@ Inc., Low Speed Ball Machine

  • RTCA DO-316-2009 Minimum Operational Performance Standards (MOPS) for Global Positioning System/Aircraft Based Augmentation System Airborne Equipment
  • RTCA DO-229C-2001 Minimum Operational Performance Standards for Global Positioning System/Wide Area Augmentation System Airborne Equipment
  • RTCA DO-208 CHG 1-1993 Minimum Operational Performance Standards for Airborne Supplemental Navigation Equipment Using Global Positioning System (GPS)
  • RTCA DO-208-1991 Minimum Operational Performance Standards for Airborne Supplemental Navigation Equipment Using Global Positioning System (GPS)
  • RTCA DO-229E-2016 Minimum Operational Performance Standards for Global Positioning System/Satellite-Based Augmentation System Airborne Equipment ((RTCA Paper No. 283-16/PMC-1548))

GB-REG, Low Speed Ball Machine

  • REG NACA-RM-A51A16-1951 Low-speed investigation of a 0.16 scale model of the X-3 airplane : lateral and directional characteristics
  • REG NASA-LLIS-1862-2010 Lessons Learned ?High Data Rate K-band Transmitter for Lunar and Near Earth Missions
  • REG NACA-TN-3857-1956 Experimental investigation at low speed of the effects of wing position on the static stability of models having fuselages of various cross section and unswept and 45 degrees sweptback surfaces
  • REG NASA-TM-X-72697-1975 Low-speed aerodynamic characteristics of a 13-percent-thick airfoil section designed for general aviation applications
  • REG NACA-TN-3676-1956 INVESTIGATION OF LATERAL CONTROL NEAR THE STALL FLIGHT TESTS WITH HIGH-WING AND LOW-WING MONOPLANES OF VARIOUS CONFIGURATIONS

British Standards Institution (BSI), Low Speed Ball Machine

  • BS ISO 4392-1:2002 Hydraulic fluid power - Determination of characteristics of motors - At constant low speed and constant pressure
  • BS ISO 17386:2010 Transport information and control systems - Manoeuvring aids for low speed operation (MALSO) - Performance requirements and test procedures

Professional Standard - Light Industry, Low Speed Ball Machine

  • QB/T 4298-2012 Testing method of relative tolerance of sewing machine.High and low speed stitch length

US-RTCA, Low Speed Ball Machine

  • RTCA DO-228-1995 Minimum Operational Performance Standards for Global Navigation Satellite Systems (GNSS) Airborne Antenna Equipment
  • RTCA DO-229D-2006 Minimum Operational Performance Standards for Global Positioning System/Wide Area Augmentation System Airborne Equipment
  • RTCA DO-229D-2006(2013) Minimum Operational Performance Standards for Global Positioning System/Wide Area Augmentation System Airborne Equipment
  • RTCA DO-301-2006 Minimum Operational Performance Standards for Global Navigation Satellite System (GNSS) Airborne Active Antenna Equipment for the L1 Frequency Band

Society of Automotive Engineers (SAE), Low Speed Ball Machine

  • SAE AMS-S-85420-2001 Sealing Compounds, Quick Repair, Low Temperature Curing Polysulfide, for Aircraft Structures FSC 8030
  • SAE AMS-S-29574-2001 Sealing Compound, Polythioether, for Aircraft Structures, Fuel and High Temperature Resistant, Fast Curing at Ambient and Low Temperatures

Beijing Provincial Standard of the People's Republic of China, Low Speed Ball Machine

  • DB11/ 183-2006 Limits and measur methods for cxhaust smokc under lug-down test from in-use agricultural vehicles

工业和信息化部/国家能源局, Low Speed Ball Machine

  • JB/T 13071.6-2017 CNC machine tool electrical equipment and system torque motor performance test specifications Part 6: Low speed smoothness

BE-NBN, Low Speed Ball Machine

Lithuanian Standards Office , Low Speed Ball Machine

  • LST EN 301 426 V1.1.1-2002 Satellite Earth Stations and Systems (SES); Harmonized EN for Low data rate Land Mobile satellite Earth Stations (LMES) operating in the 1,5/1,6 GHz frequency bands covering essential requirements under Article 3.2 of the R&TTE directive
  • LST EN 301 427 V1.1.1-2002 Satellite Earth Stations and Systems (SES); Harmonized EN for Low data rate Land Mobile satellite Earth Stations (LMES) operating in the 11/12/14 GHz frequency bands covering essential requirements under article 3.2 of the R&TTE directive

AENOR, Low Speed Ball Machine

  • UNE-EN 301427 V1.1.1:2003 Satellite Earth Stations and Systems (SES); Harmonized EN for Low data rate Land Mobile satellite Earth Stations (LMES) operating in the 11/12/14 GHz frequency bands covering essential requirements under article 3.2 of the R&TTE directive

Consultative Committee for Space Data Systems (CCSDS), Low Speed Ball Machine

  • CCSDS 882.0-M-1-2013 Spacecraft Onboard Interface Systems - Low Data-Rate Wireless Communications for Spacecraft Monitoring and Control

GOSTR, Low Speed Ball Machine

  • GOST R 53263-2019 Fire equipment. Compressor units for filling with compressed air and oxygen of low-volume ballons of breathing apparatus for firemen. General technical reguirements. Test methods

Professional Standard - Chemical Industry, Low Speed Ball Machine

  • HG/T 5826~5828-2021 Low-temperature explosion-proof heat pump evaporator, high-speed direct-drive steam centrifugal compressor and spiral baffle heat exchanger (2021)

US-CFR-file, Low Speed Ball Machine

  • CFR 49-571.500-2014 Transportaion. Part571:Federal motor vehicle safety standards. SubpartB:Federal motor vehicle safety standards. Section571.500:Low-speed vehicles.

Professional Standard - Electricity, Low Speed Ball Machine

  • DL/T 681.2-2020 Coal-fired power plant coal mill wear parts technical requirements part 2: medium-speed grinding roller sleeve, disc liner, grinding ring and hollow grinding ball

International Telecommunication Union (ITU), Low Speed Ball Machine

  • ITU-R S.1429 SPANISH-2000 ERROR PERFORMANCE OBJECTIVES DUE TO INTERNETWORK INTERFERENCE BETWEEN GSO AND NON-GSO FSS SYSTEMS FOR HYPOTHETICAL REFERENCE DIGITAL PATHS OPERATING AT OR ABOVE THE PRIMARY RATE CARRIED BY SYSTEMS USING FREQUENCIES BELOW 15 GHz

European Telecommunications Standards Institute (ETSI), Low Speed Ball Machine

  • ETSI EN 301 426-2016 Satellite Earth Stations and Systems (SES); Harmonised Standard for Low data rate Land Mobile satellite Earth Stations (LMES) and Maritime Mobile satellite Earth Stations (MMES) not intended for distress and safety communications operating in the 1@5 GHz/




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