GB/T 7932-2017 PDF English
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Pneumatic fluid power -- General rules and safety requirements for systems and their components
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GB/T 7932-2003 | English | RFQ |
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Pneumatic fluid power -- General rules relating to systems
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GB/T 7932-1987 | English | 479 |
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Pneumatic fluid power--General rules for the application of equipment to transmission and control systems
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GB/T 7932-2017: PDF in English (GBT 7932-2017) GB/T 7932-2017
GB
NATIONAL STANDARD OF THE
PEOPLE’S REPUBLIC OF CHINA
ICS 23.100.01
J 20
GB/T 7932-2017 / ISO 4414:2010
Replacing GB/T 7932-2003
Pneumatic Fluid Power – General Rules and Safety
Requirements for Systems and Their Components
(ISO 4414:2010, IDT)
ISSUED ON: JULY 12, 2017
IMPLEMENTED ON: FEBRUARY 01, 2018
Issued by: General Administration of Quality Supervision, Inspection and
Quarantine;
Standardization Administration of PRC.
Table of Contents
Foreword ... 3
Introduction ... 5
1 Scope ... 6
2 Normative References ... 6
3 Terms and Definitions ... 7
4 List of Significant Hazards ... 8
5 General Rules and Safety Requirements ... 8
6 Verification of Safety Requirements and Acceptance Testing ... 26
7 Information for Use ... 26
8 Identification Statement (Reference to this Standard)... 32
Annex A (Informative) List of Significant Hazards ... 33
Annex B (Informative) Form for Collecting Pneumatic System and Component
Data to Ensure Conformance with GB/T 7392 ... 35
Bibliography ... 45
Foreword
This Standard was drafted as per the rules specified in GB/T 1.1-2009.
This Standard replaced GB/T 7932-2003 Pneumatic Fluid Power - General Rules
Relating to Systems.
Compared with GB/T 7932-2003, this Standard had the major technical changes as
follows besides the editorial modifications:
--- Change the name of the standard into Pneumatic Fluid Power - General Rules
and Safety Requirements for Systems and Their Components;
--- Modify the content of the "Scope" (see Clause 1 of this Edition; Clause 1 of 2003
Edition);
--- Modify the content of "Normative References" (see Clause 2 of this Edition;
Clause 2 of 2003 Edition);
--- Delete partial content of "Terms and Definitions" (3.1, 3.3, 3.4, 3.8, 3.9, 3.10, 3.13
of 2003 Edition);
--- Modify the content of "General Rules and Safety Requirements" (see Clause 5
of this Edition; Clause 4~Clause 11 of 2003 Edition);
--- Add "Inspection and Acceptance Test of Safety Requirements" (see Clause 6 of
this Edition);
--- Modify the content of "Information for Use" (see Clause 7 of this Edition; 14.4 of
2003 Edition);
--- Delete the "Items that Need to be Negotiated between the Supplier and the
Purchaser" and the "Example of Parts List " (Annex A and Annex C of 2003
Edition);
--- Modify the "List of Dangerous Situations" and " Information on Pneumatic
Systems and Components" (see Annex A and Annex B of this Edition; Annex B
and Annex D of 2003 Edition);
--- Added "Bibliography" (see Bibliography of this Edition).
This Standard uses the translation method to equivalently adopt ISO 4414:2010
Pneumatic Fluid Power - General Rules and Safety Requirements for Systems and
Their Components.
The Chinese documents that have a consistent correspondence relationship with the
international documents normatively cited in this Standard are as follows:
--- GB/T 786.1-2009 Fluid Power Systems and Components - Graphic Symbols and
Circuit Diagrams - Part 1: Graphic Symbols for Conventional Use and Data-
Processing Applications (ISO 1219-1:2006, IDT);
--- GB 4208-2008 Degrees of Protection Provided by Enclosure (IP Code) (IEC
60529:2001, IDT);
--- GB 16754-2008 Safety of Machinery - Emergency Stop - Principles for Design
(ISO 13850:2006, IDT);
--- GB/T 17446-2012 Fluid Power Systems and Components – Vocabulary (ISO
5598:2008, IDT);
--- GB/T 19670-2005 Safety of Machinery - Prevention of Unexpected Start-up (ISO
14118:2000, MOD);
--- GB/T 19671-2005 Safety of Machinery - Two-Hand Control Device - Functional
Aspects and Design Principles (ISO 13851:2002, IDT);
--- GB/T 32215-2015 Pneumatic Fluid Power - Identification of Ports and control
Mechanisms of Control Valves and Other Components (ISO 11727:1999, IDT).
This Standard was proposed by China Machinery Industry Federation.
This Standard shall be under the jurisdiction of National Technical Committee on
Hydropneumatics of Standardization Administration of China (SAC/TC 3).
Drafting organization of this Standard: Wuxi Pneumatic Technical Research Institute
Co., Ltd.
Participating drafting organizations of this Standard: Ningbo Xingjian Space Machinery
Co., Ltd.; Zhejiang Easun Pneumatic Science and Technology Co., Ltd.; Ningbo
Jiaerling Pneumatic Machinery Co., Ltd.; Fenghua Xingyu Electron Co., Ltd.; National
Quality Supervision and Inspection Centre of Pneumatic Products; Ningbo Lida
Pneumatic Complete Sets Co., Ltd.; Weihai Bosheng Pneumatics & Hydraulics Co.,
Ltd.; Ningbo Airtac Automatic Industrial Co., Ltd.; Yantai Future Automatic Equipment
Co., Ltd.; Ningbo Sono Manufacturing Co., Ltd.; and Wenzhou Airbest Pneumatics Co.,
Ltd.
Chief drafting staffs of this Standard: Zhang Lianren, Wang Chunli, Gao Zepu, Li
Jianguo, Wang Wenkui, Geng Manli, Shan Junbo, Cao Jianbo, Zhang Miaoying, Lu
Bo, Xu Wei, Xia Jiayong, Zhang Zhiqing, Fang Qinghua, Chen Zaoyang, Guo Xuejing,
Cao Changzhen, Mao Xinqiang, Zhang Youbo, Hu Wenjing, and Zou Xinqiang.
The historical editions replaced by this Standard are as follows:
--- GB/T 7932-1987, GB/T 7932-2003.
Pneumatic Fluid Power – General Rules and Safety
Requirements for Systems and Their Components
1 Scope
This Standard specifies general rules and safety requirements for pneumatic fluid
power systems and components. It deals with all significant hazards associated with
pneumatic fluid power systems and specifies principles to apply in order to avoid those
hazards when the systems are put to their intended use.
NOTE 1: See Clause 4 and Annex A.
The significant hazard noise is incompletely dealt with in this Standard.
NOTE 2: Noise emission depends especially on the installation of pneumatic components or
systems into machinery.
This Standard applies to the design, construction and modification of systems and their
components, also taking into account the following aspects:
a) assembly;
b) installation;
c) adjustment;
d) uninterrupted system operation;
e) ease and economy of maintenance and cleaning;
f) reliable operation in all intended uses;
g) energy efficiency; and
h) environment.
This Standard does not apply to air compressors and the systems associated with air
distribution as typically installed in a factory, including gas bottles and receivers.
2 Normative References
The following documents are essential to the application of this document. For the
dated documents, only the versions with the dates indicated are applicable to this
document; for the undated documents, only the latest version (including all the
amendments) is applicable to this document.
GB/T 15706-2012 Safety of Machinery - General Principles for Design - Risk
Assessment and Risk Reduction (ISO 12100:2010, IDT)
ISO 1219-1 Fluid Power Systems and Components – Graphic Symbols and
Circuit Diagrams – Part 1: Graphic Symbols for Conventional Use and Data-
Processing Applications
ISO 1219-2 Power Systems and Components – Graphic Symbols and Circuit
Diagrams – Part 2: Circuit Diagrams
ISO 5598 Fluid Power Systems and Components – Vocabulary
ISO 11727 Pneumatic Fluid Power – Identification of Ports and Control
Mechanisms of Control Valves and Other Components
ISO 13850 Safety of Machinery – Emergency Stop – Principles for Design
ISO 13851 Safety of Machinery – Two-Hand Control Devices – Functional
Aspects and Design Principles
ISO 14118 Safety of Machinery – Prevention of unexpected Start-up
IEC 60529 Degrees of Protection Provided by Enclosures (IP Code)
3 Terms and Definitions
For the purposes of this Document, the terms and definitions given in ISO 5598 and
GB/T 15706 and the following apply.
3.1 Commissioning
Procedure by which a system is formally accepted by the purchaser.
3.2 Emergency control
Control function that brings a system to a safe condition.
3.3 Function plate
Surface that contains information describing either the performance of a manually
operated device (e.g., ON/OFF, forward/reverse, left/right, up/down) or the status of a
function performed by the system (e.g., clamp, lift, advance).
3.4 Neutral gas
...... Source: Above contents are excerpted from the PDF -- translated/reviewed by: www.chinesestandard.net / Wayne Zheng et al.
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