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Pneumatic fluid power - Assessment of component reliability by accelerated life testing - General guidelines and procedures
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GB/Z 42085-2022
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Basic data | Standard ID | GB/Z 42085-2022 (GB/Z42085-2022) | | Description (Translated English) | Pneumatic fluid power - Assessment of component reliability by accelerated life testing - General guidelines and procedures | | Sector / Industry | National Standard | | Classification of Chinese Standard | J20 | | Classification of International Standard | 23.100.01 | | Word Count Estimation | 46,416 | | Date of Issue | 2022-12-30 | | Date of Implementation | 2022-12-30 | | Issuing agency(ies) | State Administration for Market Regulation, China National Standardization Administration |
GBZ42085-2022: Pneumatic fluid power - Assessment of component reliability by accelerated life testing - General guidelines and procedures ---This is a DRAFT version for illustration, not a final translation. Full copy of true-PDF in English version (including equations, symbols, images, flow-chart, tables, and figures etc.) will be manually/carefully translated upon your order.
GB /Z 42085-2022
ICS 23.100.01
CCSJ20
National Standardization Guidance Technical Document of the People's Republic of China
Pneumatic components based on accelerated life tests
General Guidelines and Procedures for Reliability Assessment
(ISO /T R16194.2017, IDT)
Posted on 2022-12-30
2022-12-30 implementation
State Administration for Market Regulation
Released by the National Standardization Management Committee
table of contents
Preface I
Introduction II
1 Scope 1
2 Normative references 1
3 Terms and Definitions 1
4 Symbols and units of measurement 2
5 Overview of Reliability and Accelerated Life Testing 2
6 Failure mechanism and mode 3
7 Accelerated Life Test Strategy 3
8 Accelerated life test design 4
9 Trial Termination 6
10 Statistical Analysis 7
11 Evaluation of reliability characteristics from test data 9
12 Test Report 9
Appendix A (informative) Stress levels for time-dependent stress models 10
Appendix B (Informative) Life-Stress Model 13
Appendix C (informative) Verification of Weibull slope after compromise19
Appendix D (Informative) Calculation Procedures for Censored Data 23
Appendix E (informative) Examples of the use of accelerated life testing in industrial applications 25
Appendix F (Informative) Palmglenn-Meiner Law 27
Appendix G (Informative) Result of Cylinder Accelerated Life Test 29
Reference 42
foreword
This document is in accordance with the provisions of GB/T 1.1-2020 "Guidelines for Standardization Work Part 1.Structure and Drafting Rules for Standardization Documents"
drafting.
This document is equivalent to ISO /T R16194.2017 "General Guidelines for Pneumatic Component Reliability Evaluation Based on Accelerated Life Test and
"Procedure", the document type has been adjusted from the ISO technical report to my country's national standardization guiding technical document.
The following minimal editorial changes have been made to this document.
---Corrected a small amount of editorial errors in ISO /T R16194.2017, and changed the Boltzmann constant K value in the formula (B.4) from
"8.623×10-5eVK-1" was changed to "8.6171×10-5eVK-1";
---Corrected a small amount of editorial errors in ISO /T R16194.2017, changed "S3=1/2(S2-S1)" in 8.2 to "S3=
S22/S1";
--- Corrected a small amount of editorial errors in ISO /T R16194.2017, and changed "'y' as absolute pressure" in Appendix C to
"'x' is listed as absolute pressure".
Please note that some contents of this document may refer to patents. The issuing agency of this document assumes no responsibility for identifying patents.
This document is proposed by China Machinery Industry Federation.
This document is under the jurisdiction of the National Hydraulic Pneumatic Standardization Technical Committee (SAC/TC3).
This document is drafted by. National Pneumatic Product Quality Inspection and Testing Center, Tianjin University, Jiangsu University, Ningbo Lida Pneumatic Complete Set Co., Ltd.
Division, Ningbo Fenghua District Pneumatic Industry Association, Zhejiang Songqiao Pneumatic Hydraulic Co., Ltd., Ningbo Intelling Pneumatic Technology Co., Ltd., Albes
(Changxing) Technology Co., Ltd., Wenzhou Jinye Pneumatic Technology Co., Ltd., Beijing University of Aeronautics and Astronautics, China University of Mining and Technology, Ningbo University, Zhejiang
Provincial Institute of Standardization, Beijing Machinery Industry Automation Research Institute Co., Ltd.
The main drafters of this document. Liu Lijiao, Ren Zhisheng, Zhao Ling, Qian Pengfei, Mao Xubo, Yin Hongbai, Lou Zhongyu, Lin Kaifeng, Hu Wenjing, Lin Nanxiang,
Shi Yan, Meng Deyuan, Zhan Lizhong, Cao Qiaohui.
Introduction
In a pneumatic system, power is transmitted and controlled by compressed air in a circuit. Pneumatic system is composed of various components, which are various
An important part of type mechanical equipment. Efficient and economical production requires highly reliable machinery.
The reliability of pneumatic components can be evaluated in the laboratory according to the test methods under normal service conditions stipulated in national standards.
Pneumatic components usually have a long service life. In order to quickly grasp their life characteristics, overstress can be used to conduct accelerated tests to make the components break out in advance.
Failure, and determine the relationship between the reliability of the component under the accelerated life test and the reliability under normal service conditions.
Pneumatic components based on accelerated life tests
General Guidelines and Procedures for Reliability Assessment
1 Scope
This document establishes general procedures for evaluating the reliability of pneumatic components based on accelerated life testing. This document applies to directional valves, with piston
Rod cylinders, pressure regulating valves and components covered by ISO.19973 (all parts).
This document does not establish specific procedures for accelerated life testing of pneumatic components. This document gives the accelerated life test method of pneumatic components
Variable conditions, and provide guidance for the development of accelerated life test methods for pneumatic components.
This document applies to the first failure of pneumatic components without maintenance.
2 Normative references
This document has no normative references.
3 Terms and Definitions
The terms and definitions defined in ISO 5598, ISO.19973-1 and the following apply to this document.
ISO and IEC maintain terminology databases for standardization at.
3.1
BX life BXlife
The component or assembly has not been repaired after leaving the factory, and the reliability is (100-x)% of the life, or (100-x)% of the samples have not failed
time.
Note. The cumulative failure rate is x%. For example, x=10, then the cumulative failure probability of B10 life is 10%.
3.2
Acceleration factor accelerationfactor
AF
The ratio of life at normal service stress levels to life at accelerated stress levels.
3.3
Accelerated life test acceleratedlifetest; ALT
A method of testing for components to fail more rapidly than under normal service conditions.
3.4
destroy limit destructlimit
The level of stress at which one or more operating characteristics of a component no longer meet requirements, or where the component is damaged and cannot recover when the stress is reduced.
Note. The damage limit is divided into the lower limit of damage and the upper limit of damage.
3.5
failure mechanism failure mechanism
Physical or chemical process that causes instantaneous or cumulative damage to component materials.
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