GB/T 38206.2-2020 English PDFUS$339.00 · In stock
Delivery: <= 4 days. True-PDF full-copy in English will be manually translated and delivered via email. GB/T 38206.2-2020: Methods to assess the reliability of pneumatic components - Part 2: Directional control valve Status: Valid
Basic dataStandard ID: GB/T 38206.2-2020 (GB/T38206.2-2020)Description (Translated English): Methods to assess the reliability of pneumatic components - Part 2: Directional control valve Sector / Industry: National Standard (Recommended) Classification of Chinese Standard: J20 Classification of International Standard: 23.100.01 Word Count Estimation: 18,114 Date of Issue: 2020-04-28 Date of Implementation: 2020-11-01 Issuing agency(ies): State Administration for Market Regulation, China National Standardization Administration GB/T 38206.2-2020: Methods to assess the reliability of pneumatic components - Part 2: Directional control valve---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. Methods to assess the reliability of pneumatic components--Part 2. Directional control valve ICS 23.100.01 J20 National Standards of People's Republic of China Pneumatic component reliability evaluation method Part 2. Directional valve (ISO .19973-2..2015, Pneumaticfluidpower-Assessmentofcomponent 2020-04-28 release 2020-11-01 implementation State Administration of Market Supervision and Administration Issued by the National Standardization Management Committee ContentsForeword I Introduction II 1 Scope 1 2 Normative references 1 3 Terms and definitions 1 4 Symbols and units 1 5 Test equipment 2 6 Test conditions 3 7 Test procedure 5 8 Failure modes and thresholds 7 9 Data analysis 8 10 Test report 8 11 Note 8 Appendix A (Normative Appendix) B10D Estimation of Valves with Functional Safety Requirements 9 Reference 14ForewordGB/T 38206 "Reliability Evaluation Method of Pneumatic Components" is divided into 5 parts. --- Part 1. General procedures; --- Part 2. Directional valve; --- Part 3. Cylinder with piston rod; --- Part 4. Pressure regulating valve; --- Part 5. Check valve, shuttle valve, double pressure valve (AND valve), one-way throttle valve and quick exhaust valve. This part is Part 2 of GB/T 38206. This section was drafted in accordance with the rules given in GB/T 1.1-2009. This part uses the redrafting method to modify the adoption of ISO .19973-2..2015 "Test Evaluation of Pneumatic Transmission Element Reliability Part 2 Points. directional valve. The technical differences between this part and ISO .19973-2..2015 and the reasons are as follows. --- With regard to normative quotation documents, this part has been adjusted with technical differences to adapt to China's technical conditions and adjustments The situation is reflected in Chapter 2 "Regulatory Reference Documents", with specific adjustments as follows. ● Replace ISO 1219-1 with GB/T 786.1 equivalent to international standards (see Chapter 4); ● Replace IEC 60050-191 with GB/T 2900.13 equivalent to international standards (see Chapter 3); ● Replace ISO 5598 with GB/T 17446 equivalent to international standards (see Chapter 3 and A.2); ● Replace ISO 8778 with GB/T 28783 which is equivalent to adopting international standards (see Table 1); ● Replace ISO .19973-1 with GB/T 38206.1 modified to adopt international standards (see Chapter 3, 6.1, 7.1.2 and 8.1); ● Added reference to GB/T 22107 (see A.4.3 and A.4.4); ● Added reference to ISO 12100 (see A.1); ● Added reference to ISO 13849 (all parts) (see A.1 and A.2); ● Increased reference to IEC 62061 (see A.2). This section also made the following editorial changes. --- Change the standard name to "Reliability Evaluation Method of Pneumatic Components Part 2. Directional Valve". This part is proposed by China Machinery Industry Federation. This part is under the jurisdiction of the National Hydraulic and Pneumatic Standardization Technical Committee (SAC/TC3). This section was drafted by. Guangdong Zhaoqing Fangda Pneumatic Co., Ltd., Beijing University of Aeronautics and Astronautics, National Pneumatic Product Quality Supervision and Inspection Center, Ningbo Jiaerling Pneumatic Machinery Co., Ltd., Wuxi Pneumatic Technology Research Institute Co., Ltd., Xingyu Electronics (Ningbo) Co., Ltd., Weihai Bo Sheng Pneumatic Hydraulic Co., Ltd., Shanghai Kang Maosheng Automatic Control Co., Ltd., Ningbo Yadeke Automation Industry Co., Ltd., Ningbo Sono Industry Automatic Control Equipment Co., Ltd., Zhejiang Yiri Pneumatic Technology Co., Ltd., Yueqing Hengyi Pneumatic Co., Ltd., Zhongke Standard (Beijing) Technology Co., Ltd. the company. The main drafters of this section. Lin Weiqiang, Chen Dingzhi, Shi Yan, Liu Lijiao, Shan Junbo, Wang Chunli, Cao Jianbo, Zhang Zhiqing, Wang Chaoyuan, Fang Qinghua, Mao Xinqiang, Ren Cheli, Zhu Lefei, Gao Yanling.IntroductionIn a pneumatic system, power is transmitted and controlled by compressed air in a closed loop. The pneumatic system is composed of various components, It is an important part of various types of machines and equipment. Efficient and economical production requires highly reliable machines and equipment. GB/T 38206 This section is used to provide the necessary equipment and test conditions in order to evaluate the inherent reliability of the directional valve. It is necessary for producers to understand the reliability of pneumatic system components in their equipment. The reliability of components can be determined by laboratory tests With the reliability characteristics of components, producers can establish system models and make service intervals, spare parts inventory, and future improvements. Decide. There are three basic levels in determining product reliability. a) Preliminary design analysis. finite element analysis (FEA), failure mode and consequence analysis (FMEA); b) Laboratory tests and establishment of reliability models. physical mechanism of failure, reliability prediction, pre-production evaluation; c) On-site data collection. maintenance report, quality analysis report. Each level has its application during the life of the component. Preliminary design analysis helps identify possible failure modes and eliminates the failure Factors may reduce the impact of failure on reliability. When obtaining component samples, reliability tests can be conducted in the laboratory and the initial available Rely on sex. Reliability testing as a continuous evaluation of the reliability of components often continues into the initial production and runs through the entire process of its production. In yuan When the piece continues to work and its failure data can be obtained, the field data can be collected. Pneumatic component reliability evaluation method Part 2. Directional valve1 ScopeThis part of GB/T 38206 specifies the test equipment, test conditions, test procedures, reliability thresholds and Processing method of test results. This section applies to the first failure of the directional valve without maintenance, except for some abnormal values. Note. Please refer to the content in Appendix A of GB/T 38206.1-2019 for the treatment method when the abnormal value occurs at the first failure.2 Normative referencesThe following documents are essential for the application of this document. For dated references, only the dated version applies to this article Pieces. For the cited documents without date, the latest version (including all amendments) applies to this document. GB/T 786.1 Graphical symbols and circuit diagrams of fluid transmission systems and components. Part 1. Diagrams for general use and data processing Shape symbol (GB/T 786.1-2009, ISO 1219-1..2006, IDT) GB/T 2900.13 Credibility of electrician terms and quality of service (GB/T 2900.13-2008, IEC 60050-191..1990, IDT) GB/T 17446 Glossary of fluid transmission systems and components (GB/T 17446-2012, ISO 5598..2008, IDT) GB/T 22107 Pneumatic directional control valve switching time measurement (GB/T 22107-2008, ISO 12238..2001, IDT) GB/T 28783 Pneumatic standard reference atmosphere (GB/T 28783-2012, ISO 8778..2003, IDT) GB/T 38206.1 Pneumatic components reliability assessment method Part 1. General procedures (GB/T 38206.1-2019, ISO 19973-1..2015, MOD) ISO 12100 Safety Assessment General Principles of Risk Assessment and Risk Reduction (Safety of machinery-General principlesfordesign-Riskassessmentandriskreduction) ISO 13849 (all parts) Safety components related to machinery safety control systems (Safety of machinery-Safety-related partsofcontrolsystems) ISO 80000-1 Quantities and Units-Part. 1. General IEC 62061 Safety of machinery Functional safety of electrical, electronic and programmable electronic control systems related to safety (Safetyof machinery-Functionalsafetyofsafety-relatedelectrical, electronicandprogrammableelectroniccon- trolsystems)3 Terms and definitionsThe terms and definitions defined in GB/T 2900.13, GB/T 17446 and GB/T 38206.1 apply to this document. Note. If the definition of a term is inconsistent between the three documents, the priority order is as follows. first, GB/T 38206.1; second, GB/T 17446; most After that, GB/T 2900.13.4 Symbols and unitsThe unit of measurement shall comply with the provisions of ISO 80000-1. The graphical symbols used in this section should comply with the provisions of GB/T 786.1. ......Tips & Frequently Asked Questions:Question 1: How long will the true-PDF of GB/T 38206.2-2020_English be delivered?Answer: Upon your order, we will start to translate GB/T 38206.2-2020_English as soon as possible, and keep you informed of the progress. The lead time is typically 2 ~ 4 working days. The lengthier the document the longer the lead time.Question 2: Can I share the purchased PDF of GB/T 38206.2-2020_English with my colleagues?Answer: Yes. 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