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Flow Cytometry Peristaltic Pump

Flow Cytometry Peristaltic Pump, Total:52 items.

In the international standard classification, Flow Cytometry Peristaltic Pump involves: Construction equipment, Linear and angular measurements, Pumps, Equipment for the chemical industry, Fluid power systems, Waxes, bituminous materials and other petroleum products, Aircraft and space vehicles in general, Vocabularies, Equipment for petroleum and natural gas industries, Construction materials, Road engineering.


General Administration of Quality Supervision, Inspection and Quarantine of the People‘s Republic of China, Flow Cytometry Peristaltic Pump

国家市场监督管理总局、中国国家标准化管理委员会, Flow Cytometry Peristaltic Pump

American Water Works Association (AWWA), Flow Cytometry Peristaltic Pump

Japanese Industrial Standards Committee (JISC), Flow Cytometry Peristaltic Pump

British Standards Institution (BSI), Flow Cytometry Peristaltic Pump

  • BS PD CEN/TR 13931:2009 Rotodynamic pumps . Forces and moments on flanges . Centrifugal, mixed flow and axial flow horizontal and vertical shafts pumps
  • PD CEN/TR 13931:2009(2010) Rotodynamic pumps . Forces and moments on flanges . Centrifugal, mixed flow and axial flow horizontal and vertical shafts pumps
  • BS ISO 8426:2008 Hydraulic fluid power - Positive displacement pumps and motors - Determination of derived capacity
  • DD CEN/TS 15325:2008 Bitumen and bituminous binders. Determination of zero-shear viscosity (ZSV) using a shear stress rheometer in creep mode
  • BS ISO 7278-4:1999 Liquid hydrocarbons - Dynamic measurement - Proving systems for volumetric meters - Guide for operators of pipe provers

Professional Standard - Chemical Industry, Flow Cytometry Peristaltic Pump

U.S. Military Regulations and Norms, Flow Cytometry Peristaltic Pump

European Committee for Standardization (CEN), Flow Cytometry Peristaltic Pump

  • CEN/TR 13931:2009 Rotodynamic pumps - Forces and moments on flanges - Centrifugal, mixed flow and axial flow horizontal and vertical shafts pumps

Danish Standards Foundation, Flow Cytometry Peristaltic Pump

  • DS/CEN/TS 15325:2008 Bitumen and bituminous binders - Determination of Zero-Shear Viscosity (ZSV) using a Shear Stress Rheometer in creep mode

Military Standards (MIL-STD), Flow Cytometry Peristaltic Pump

American National Standards Institute (ANSI), Flow Cytometry Peristaltic Pump

  • ANSI/HI 2.3-2013 Rotodynamic (Vertical) Pumps of Radial, Mixed, and Axial Flow Types for Design and Application

Standard Association of Australia (SAA), Flow Cytometry Peristaltic Pump

  • AS 4250.2:1995 Liquid hydrocarbons - Dynamic measurement - Proving systems for volumetric meters - Pipe provers

Association Francaise de Normalisation, Flow Cytometry Peristaltic Pump

  • NF E48-101:1984 Hydraulic fluid power. Pumps, motors and integral transmissions. Parameter definitions and letter symbols.
  • FD E48-350:2017 Hydraulic fluid power - Pumps, motors and integral transmissions - Recommendations for starting, servicing and maintenance
  • NF E48-380:1990 Hydraulic fluid power. Positive displacement pumps, motors and integral transmissions. Determination of steady-state performance.
  • NF E48-380:2007 Hydraulic fluid power - Positive-displacement pumps, motors and integral transmissions - Methods of testing and presenting basic steady state performance.
  • NF E48-380*NF ISO 4409:2019 Hydraulic fluid power - Positive-displacement pumps, motors and integral transmissions - Methods of testing and presenting basic steady state performance
  • NF E48-353:1985 Hydraulic fluid power. Positive displacement pumps and motors. Identification code and dimensions for mounting flanges and shaft ends.
  • NF E48-384:1992 HYDRAULIC FLUID POWER. FIXED DISPLACEMENT PUMPS. FLOW DEGRADATION DUE TO CLASSIFIED AC FINE TEST DUST CONTAMINANT. TEST METHOD.

Korean Agency for Technology and Standards (KATS), Flow Cytometry Peristaltic Pump

  • KS F 2428-1990 Testing Method for Determination of Vibrating Factor by Consistency of Concrete

KR-KS, Flow Cytometry Peristaltic Pump

  • KS M 2458-2023 Petroleum products and related products — Determination of multiple stress creep and recovery (MSCR) of asphalt using a dynamic shear rheometer

American Society for Testing and Materials (ASTM), Flow Cytometry Peristaltic Pump

  • ASTM D7405-08 Standard Test Method for Multiple Stress Creep and Recovery (MSCR) of Asphalt Binder Using a Dynamic Shear Rheometer
  • ASTM D7405-10 Standard Test Method for Multiple Stress Creep and Recovery (MSCR) of Asphalt Binder Using a Dynamic Shear Rheometer
  • ASTM D7405-08a Standard Test Method for Multiple Stress Creep and Recovery (MSCR) of Asphalt Binder Using a Dynamic Shear Rheometer
  • ASTM D7405-15 Standard Test Method for Multiple Stress Creep and Recovery (MSCR) of Asphalt Binder Using a Dynamic Shear Rheometer
  • ASTM D7405-20 Standard Test Method for Multiple Stress Creep and Recovery (MSCR) of Asphalt Binder Using a Dynamic Shear Rheometer
  • ASTM D7405-10a Standard Test Method for Multiple Stress Creep and Recovery (MSCR) of Asphalt Binder Using a Dynamic Shear Rheometer
  • ASTM D7681-11 Standard Test Method for Measuring Gradation of Glass Spheres Using a Flowing Stream Digital Image Analyzer
  • ASTM D7971-15 Standard Guide for Measuring Roundness of Glass Spheres Using a Flowing Stream Digital Image Analyzer

US-HI, Flow Cytometry Peristaltic Pump

  • HI 2.1-2.2-2014 Rotodynamic Vertical Pumps of Radial, Mixed, and Axial Flow Types for Nomenclature and Definitions

The American Road & Transportation Builders Association, Flow Cytometry Peristaltic Pump

  • AASHTO TP 70-2011 Standard Method of Test for Multiple Stress Creep Recovery (MSCR) Test of Asphalt Binder Using a Dynamic Shear Rheometer (DSR)
  • AASHTO TP 70-2013 Standard Method of Test for Multiple Stress Creep Recovery (MSCR) Test of Asphalt Binder Using a Dynamic Shear Rheometer (DSR)
  • AASHTO T 350-2014 Standard Method of Test for Multiple Stress Creep Recovery (MSCR) Test of Asphalt Binder Using a Dynamic Shear Rheometer (DSR)
  • AASHTO TP 70-2010 Standard Method of Test for Multiple Stress Creep Recovery (MSCR) Test of Asphalt Binder Using a Dynamic Shear Rheometer (DSR) Revision 1
  • AASHTO T 315-2002 Standard Method of Test for Determining the Rheological Properties of Asphalt Binder Using a Dynamic Shear Rheometer (DSR) HM-22; Part IIB; Formaly AASHTO TP 5

AASHTO - American Association of State Highway and Transportation Officials, Flow Cytometry Peristaltic Pump

  • T 350-2014 Standard Method of Test for Multiple Stress Creep Recovery (MSCR) Test of Asphalt Binder Using a Dynamic Shear Rheometer (DSR)
  • TP 70-2009 Standard Method of Test for Multiple Stress Creep Recovery (MSCR) Test of Asphalt Binder Using a Dynamic Shear Rheometer (DSR)
  • TP 70-2011 Standard Method of Test for Multiple Stress Creep Recovery (MSCR) Test of Asphalt Binder Using a Dynamic Shear Rheometer (DSR)
  • TP 70-2012 Standard Method of Test for Multiple Stress Creep Recovery (MSCR) Test of Asphalt Binder Using a Dynamic Shear Rheometer (DSR)
  • TP 70-2013 Standard Method of Test for Multiple Stress Creep Recovery (MSCR) Test of Asphalt Binder Using a Dynamic Shear Rheometer (DSR)
  • TP 70-2007 Standard Method of Test for Multiple Stress Creep Recovery (MSCR) Test of Asphalt Binder Using a Dynamic Shear Rheometer (DSR)
  • T 313-2002 Standard Method of Test for Determining the Flexural Creep Stiffness of Asphalt Binder Using the Bending Beam Rheometer (BBR) (HM-22; Part IIB; Formaly AASHTO TP 1)
  • TP 70-2010 Standard Method of Test for Multiple Stress Creep Recovery (MSCR) Test of Asphalt Binder Using a Dynamic Shear Rheometer (DSR) (Revision 1)
  • T 315-2002 Standard Method of Test for Determining the Rheological Properties of Asphalt Binder Using a Dynamic Shear Rheometer (DSR) (HM-22; Part IIB; Formaly AASHTO TP 5)

International Organization for Standardization (ISO), Flow Cytometry Peristaltic Pump

  • ISO 9632:1992 Hydraulic fluid power; fixed displacement pumps; flow degradation due to classified AC fine test dust contaminant; test method
  • ISO/CD 8426-1:2023 Hydraulic fluid power — Determination of derived displacement of positive displacement pumps and motors — Part 1: One-step and two-step Toet-method




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