ICS23.100.01一般流体动力系统
2020-02-21 10:55按照国际标准文献分类,工程机械相关标准主要分布在ICS 13环保、健康与安全、ICS 21机械系统和通用件、ICS53材料储运设备、ICS 91建筑材料和建筑物等类别。截至2020年2月20日,ICS 23.100.01一般流体动力系统类别共有37项现行有效标准。具体见下表。
ICS 23.100.01一般流体动力系统国际标准清单
序号 |
标准号 |
标准英文名称 |
1 |
ISO 1219-1:2012
|
Fluid power systems and components — Graphical symbols and circuit diagrams — Part 1: Graphical symbols for conventional use and data-processing applications |
2 |
ISO 1219-1:2012/AMD 1:2016 |
Fluid power systems and components — Graphical symbols and circuit diagrams — Part 1: Graphical symbols for conventional use and data-processing applications — Amendment 1 |
3 |
ISO 1219-2:2012
|
Fluid power systems and components — Graphical symbols and circuit diagrams — Part 2: Circuit diagrams |
4 |
ISO 1219-3:2016
|
Fluid power systems and components — Graphical symbols and circuit diagrams — Part 3: Symbol modules and connected symbols in circuit diagrams |
5 |
ISO 2944:2000 |
Fluid power systems and components — Nominal pressures |
6 |
ISO 4413:2010
|
Hydraulic fluid power — General rules and safety requirements for systems and their components |
7 |
ISO 4414:2010
|
Pneumatic fluid power — General rules and safety requirements for systems and their components |
8 |
ISO 5598:2020
|
Fluid power systems and components — Vocabulary |
9 |
ISO 6072:2011
|
Rubber — Compatibility between hydraulic fluids and standard elastomeric materials |
10 |
ISO 6358-1:2013
|
Pneumatic fluid power — Determination of flow-rate characteristics of components using compressible fluids — Part 1: General rules and test methods for steady-state flow |
11 |
ISO 6358-1:2013/FDAMD 1
|
Pneumatic fluid power — Determination of flow-rate characteristics of components using compressible fluids — Part 1: General rules and test methods for steady-state flow — Amendment 1: Effective conductance |
12 |
ISO 6358-2:2019
|
Pneumatic fluid power — Determination of flow-rate characteristics of components using compressible fluids — Part 2: Alternative test methods |
13 |
ISO 6358-3:2014
|
Pneumatic fluid power — Determination of flow-rate characteristics of components using compressible fluids — Part 3: Method for calculating steady-state flow-rate characteristics of systems |
14 |
ISO 8778:2003
|
Pneumatic fluid power — Standard reference atmosphere |
15 |
ISO 9110-1:1990
|
Hydraulic fluid power — Measurement techniques — Part 1: General measurement principles |
16 |
ISO 9110-2:1990
|
Hydraulic fluid power — Measurement techniques — Part 2: Measurement of average steady-state pressure in a closed conduit |
17 |
ISO/FDIS 9110-1
|
Hydraulic fluid power — Measurement techniques — Part 1: General measurement principles |
18 |
ISO/FDIS 9110-2
|
Hydraulic fluid power — Measurement techniques — Part 2: Measurement of average steady-state pressure in a closed conduit |
19 |
ISO/TR 10686:2013
|
Hydraulic fluid power — Method to relate the cleanliness of a hydraulic system to the cleanliness of the components and hydraulic fluid that make up the system |
20 |
ISO 14617-10:2002
|
Graphical symbols for diagrams — Part 10: Fluid power converters |
21 |
ISO 15086-1:2001
|
Hydraulic fluid power — Determination of the fluid-borne noise characteristics of components and systems — Part 1: Introduction |
22 |
ISO 15086-2:2000
|
Hydraulic fluid power — Determination of the fluid-borne noise characteristics of components and systems — Part 2: Measurement of the speed of sound in a fluid in a pipe |
23 |
ISO 15086-3:2008
|
Hydraulic fluid power — Determination of the fluid-borne noise characteristics of components and systems — Part 3: Measurement of hydraulic impedance |
24 |
ISO/AWI 15086-3
|
Hydraulic fluid power — Determination of the fluid-borne noise characteristics of components and systems — Part 3: Measurement of hydraulic impedance |
25 |
ISO/TR 16194:2017
|
Pneumatic fluid power — Assessment of component reliability by accelerated life testing — General guidelines and procedures |
26 |
ISO 18582-1:2016
|
Fluid power — Specification of reference dictionary — Part 1: General overview on organization and structure |
27 |
ISO 18582-2:2018
|
Fluid power — Specification of reference dictionary — Part 2: Definitions of classes and properties of pneumatics |
28 |
ISO 18869:2017
|
Hydraulic fluid power — Test methods for couplings actuated with or without tools |
29 |
ISO/TR 19972-1:2009
|
Hydraulic fluid power — Methods to assess the reliability of hydraulic components — Part 1: General procedures and calculation method |
30 |
ISO 19973-1:2015
|
Pneumatic fluid power — Assessment of component reliability by testing — Part 1: General procedures |
31 |
ISO 19973-2:2015
|
Pneumatic fluid power — Assessment of component reliability by testing — Part 2: Directional control valves |
32 |
ISO 19973-2:2015/AMD 1:2019 |
Pneumatic fluid power — Assessment of component reliability by testing — Part 2: Directional control valves — Amendment 1 |
33 |
ISO 19973-3:2015
|
Pneumatic fluid power — Assessment of component reliability by testing — Part 3: Cylinders with piston rod |
34 |
ISO 19973-4:2014
|
Pneumatic fluid power — Assessment of component reliability by testing — Part 4: Pressure regulators |
35 |
ISO 19973-5:2015
|
Pneumatic fluid power — Assessment of component reliability by testing — Part 5: Non-return valves, shuttle valves, dual pressure valves (AND function), one-way adjustable flow control valves, quick-exhaust valves |
36 |
ISO/TR 22164:2020
|
Hydraulic fluid power — Application notes for the optimization of the energy efficiency of hydraulic systems |
37 |
ISO/TR 22165:2018
|
Pneumatic fluid power — Application notes for the improvement of the energy efficiency of pneumatic systems |
信息来源:https://www.iso.org/ics/23.100.01/x/
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