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GB/T 37157-2018 English PDF

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GB/T 37157-2018: Safety of machinery -- Evaluation of fault masking serial connection of interlocking devices with potential free contacts
Status: Valid
Standard IDUSDBUY PDFLead-DaysStandard Title (Description)Status
GB/T 37157-2018414 Add to Cart 3 days Safety of machinery -- Evaluation of fault masking serial connection of interlocking devices with potential free contacts Valid

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Basic data

Standard ID: GB/T 37157-2018 (GB/T37157-2018)
Description (Translated English): Safety of machinery -- Evaluation of fault masking serial connection of interlocking devices with potential free contacts
Sector / Industry: National Standard (Recommended)
Classification of Chinese Standard: J09
Classification of International Standard: 13.110
Word Count Estimation: 22,259
Date of Issue: 2018-12-28
Date of Implementation: 2019-07-01
Regulation (derived from): National Standard Announcement No. 17 of 2018
Issuing agency(ies): State Administration for Market Regulation, China National Standardization Administration

GB/T 37157-2018: Safety of machinery -- Evaluation of fault masking serial connection of interlocking devices with potential free contacts


---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.
Safety of machinery--Evaluation of fault masking serial connection of interlocking devices with potential free contacts ICS 13.110 J09 National Standards of People's Republic of China Mechanical safety series connected potential-free contact interlocking device Fault masking evaluation (ISO /T R24119.2015, Safetyofmachinery-Evaluationoffaultmasking Potentialfreecontacts, IDT) Published on.2018-12-28 2019-07-01 implementation State market supervision and administration China National Standardization Administration issued

Content

Foreword III 1 Scope 1 2 Normative references 1 3 Terms and Definitions 1 4 fault masking 4 4.1 Overview 4 4.2 Direct fault masking 5 4.3 Unexpected reset of fault 5 4.4 Unexpected reset of cable fault 6 5 Series interlocking device diagnostic coverage (DC) evaluation method 7 6 series device limits on DC 7 6.1 Overview 7 6.2 Easy way to determine the maximum DC that can be reached 8 6.3 General method for determining the maximum DC that can be reached 8 6.3.1 Estimation of fault masking probability 8 6.3.2 Determination of the maximum DC that can be reached 9 6.4 Series connection of potential-free contact interlocks and other different functions without potential contact devices 10 7 Avoid fault masking 11 Appendix A (informative) 6.2 and 6.3 evaluation methods application example 12 Reference 17

Foreword

This standard was drafted in accordance with the rules given in GB/T 1.1-2009. This standard uses the translation method equivalent to ISO /T R24119.2015 "Mechanical safety and protection devices combined with potential-free contacts Evaluation of fault masking of series interlocking devices. The documents of our country that have a consistent correspondence with the international documents referenced in this standard are as follows. ---GB/T 15706-2012 Mechanical Safety Design General Risk Assessment and Risk Reduction (ISO 12100.2010, IDT); --- GB/T 16855.1-2018 Safety related parts of machinery safety control systems - Part 1. General rules (ISO 13849-1.2015, IDT). This standard has made the following editorial changes. --- Change the standard name to "Evaluation of fault masking of non-potential contact interlocks in mechanical safety series"; --- Change MTTFd to MTTFD; --- Change B10d to B10D. This standard was proposed by the Jiangsu Provincial Bureau of Quality and Technical Supervision. This standard is under the jurisdiction of the National Machinery Safety Standardization Technical Committee (SAC/TC208). This standard was drafted. Nanjing Light Machine Packaging Machinery Co., Ltd., Chengdu Aerospace Kate Electromechanical Technology Co., Ltd., Anhui Ruishi Optoelectronic Technology Technology Co., Ltd., Xiamen Xiaoxun New Energy Technology Co., Ltd., Suzhou Angao Intelligent Safety Technology Co., Ltd., Nan'an Zhongji Standardization Research Institute Co., Ltd., Fujian Province Xuanxuan Technology Co., Ltd., China Testing and Testing Group Co., Ltd., Soft Control Co., Ltd., Nanjing National and Local Joint Engineering Research Center of Forestry University/Electromechanical Products Packaging Biomass Materials, Xi'an Xumai Smart Appliance Technology Co., Ltd. Nanjing University of Science and Technology, China Machine Productivity Promotion Center, Nan'an Quality Measurement and Inspection Institute, Jinjiu Technology Co., Ltd., Guangdong Kejie Machinery Automation Co., Ltd., Dongguan Machinery Industry Management Association, Xiamen Kunjin Electronic Technology Co., Ltd., Lihong Safety Equipment Engineering (Shanghai) Co., Ltd. Zhongshan City Science Inspection Technology Co., Ltd. The main drafters of this standard. Chen Nengyu, Li Qin, Zhu Bin, Zhang Rongchun, Qian Guanghua, Li Liyan, Zhao Yangyang, Shu Zongyi, Huang Yanling, Yu Mingjin, Ju Ronghua, Liu Zhiyong, Curie, Cheng Hongbing, Mao Xiaotong, Du Jian, Li Tong, Liang Xiaohua, Huang Shufu, Hou Hongying, Huang Dongsheng, Zou Bitao, Liu Ying Fu Huiqing, Zhao Chengyu, Li Zhong, Chen Zhuoxian, Huang Qing, Zhao Feiqi, Wang Jianjun, Song Xiaoning, Zhang Xiaofei. Mechanical safety series connected potential-free contact interlocking device Fault masking evaluation

1 Scope

This standard gives and explains that fault masking is interlocked with multiple series potential-free contacts connected to a logic unit (K) performing diagnostics. The principle of the device (B1 ~ Bn) (see Figure 1 ~ Figure 7). This standard further gives an estimate of how to estimate the probability of fault masking and the associated A guide to the maximum DC value of the lock device. This standard only applies to interlocking devices in which both channels are physically connected in series. This standard has two purposes. --- Provide users with a guide to estimate the maximum DC value; --- As a guide to SRP/CS design. Note 1. Interlocking devices with integrated self-monitoring function are outside the scope of this standard. Note 2. The diagnostic methods used by the logic unit also impose limitations. Note 3. This standard is not limited to mechanically actuated position sensors.

2 Normative references

The following documents are indispensable for the application of this document. For dated references, only the dated version applies to this article. Pieces. For undated references, the latest edition (including all amendments) applies to this document. GB/T 18831-2017 Principles for the design and selection of interlocks for mechanical safety and protection devices (ISO 14119. 2013, IDT) ISO 12100 Mechanical Safety Design General Risk Assessment and Risk Reduction (Safetyofmachinery-Generalprinciplesfor design-Riskassessmentandriskreduction) ISO 13849-1.2006 Safety-related components for safety control systems - Part 1. General rules for design (Safetyofmachin- ery-Safety-relatedpartsofcontrolsystems-Part 1.Generalprinciplesfordesign)

3 Terms and definitions

The following terms and definitions defined by ISO 13849-1, GB/T 18831 and ISO 12100 apply to this document. 3.1 Fault masking Unexpected reset of the fault or failure of the SRP/CS through the operation of the fault-free component in the SRP/CS is not detected. 3.2 Series device seriesconnecteddevices A plurality of series of potential-free contact (dry contact) devices (B1~Bn) connected to a logic unit (K) performing diagnostics. 3.3 Signal evaluation of redundant channels of the same polarity signalevaluationofredundantchannelswithsamepolarity A method in which a logic unit for a safety function evaluates a redundant signal having the same supply voltage. 3.4 Signal evaluation of opposite polarity redundant channels signalevaluationofredundantchannelswithinversepolarity A method in which a logic unit for a safety function evaluates a redundant signal whose ground polarity is a second channel.
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