GB/T 5169.41-2015 English PDFUS$294.00 · In stock
Delivery: <= 3 days. True-PDF full-copy in English will be manually translated and delivered via email. GB/T 5169.41-2015: Fire hazard testing for electric and electronic products -- Part 41: Toxicity of fire effluent -- Estimation of toxic potency -- Calculation and interpretation of test results Status: Valid
Basic dataStandard ID: GB/T 5169.41-2015 (GB/T5169.41-2015)Description (Translated English): Fire hazard testing for electric and electronic products -- Part 41: Toxicity of fire effluent -- Estimation of toxic potency -- Calculation and interpretation of test results Sector / Industry: National Standard (Recommended) Classification of Chinese Standard: K04 Classification of International Standard: 13.220.40; 29.020 Word Count Estimation: 15,193 Date of Issue: 2015-10-09 Date of Implementation: 2016-05-01 Quoted Standard: GB/T 5169.40-2015; ISO/TR 9122-1-1989; ISO/TR 9122-5-1993; ISO 13344-1996; ISO/IEC 13943-2000; IEC 60695-7-3-1998 Adopted Standard: IEC/TS 60695-7-51-2002, IDT Regulation (derived from): National Standard Announcement 2015 No.31 Issuing agency(ies): General Administration of Quality Supervision, Inspection and Quarantine of the People's Republic of China, Standardization Administration of the People's Republic of China Summary: This Standard specifies the data GB /T 5169.40-2015 Chemical analysis was converted to the toxic effects of the calculation procedure of the test material under the conditions specified data. The purpose is to assess a finished product or material flows under its combustion fire which, relative to the total flow of combustion threat to life role in toxicity. The data format and other related test methods GB /T 5169.40-2015 provisions consistent, it can also be used for this type of data into a predetermined value toxic effects. The principle of this method with IEC 60695-7-3: 1998 and ISO /TR 9122-5: 1993 consistent improvement works. As a result, the use of the expression format GB T 5169.40-2015 laboratory /Test method used. Toxicity values ??only for poisoning hazard assessment alone can not be used. GB/T 5169.41-2015: Fire hazard testing for electric and electronic products -- Part 41: Toxicity of fire effluent -- Estimation of toxic potency -- Calculation and interpretation of test results---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. (Fire hazard testing for electric and electronic products - Part 41. Toxic poison the stream of combustion efficiency assessment calculation and description of the test results) ICS 13.220.40; 29.020 K04 National Standards of People's Republic of China Fire hazard testing for electric and electronic products Part 41. Toxicity toxic combustion flow efficiency assessment Calculation and interpretation of test results Part 41. Toxicityoffireeffluent-Estimationoftoxicpotency- (IEC /T S60695-7-51.2002, Firehazardtesting-Part 7-51. Toxicityoffire testresults, IDT) Issued on. 2016-05-01 2015-10-09 implementation Administration of Quality Supervision, Inspection and Quarantine of People's Republic of China Standardization Administration of China released Table of ContentsPreface Ⅰ Introduction Ⅲ 1 Scope 1 2 Normative references 1 3 Terms and definitions Principle 4 Test Method 2 5 Test Method 2 Appendix A (informative) Example 4 Annex B (informative) Example. Based on the inter-tube furnace lab cycle test data assumptions fire FLD calculation 5 Annex C (informative) Symbol Name Table 7 References 8ForewordGB/T 5169 "Fire hazard testing for electric and electronic products" have or plan to release the following sections. --- Part 1. Terminology concerning fire tests; --- Part 2. Guidance for assessing the fire hazard - General; --- Part 5. Test flames - Needle-flame test methods for confirming test methods and guidelines; --- Part 9. Guidance for assessing the fire hazard of preselection testing procedures - General; --- Part 10. Glowing/hot wire based test methods - Glow - wire apparatus and common test procedure; --- Part 11. Glowing/hot wire based glow wire flammability test methods of the finished product; --- Part 12. Glowing/hot wire based test methods for materials glow wire flammability index (GWFI) test methods; --- Part 13. Glowing/hot wire based test methods - Glow - wire ignition temperature materials (GWIT) test methods; --- Part 14. Test flames - 1kW nominal pre-mixed flame - Apparatus, confirmatory test arrangement and guidance; --- Part 15. Test flames - 500W flames - Apparatus and confirmation test methods; --- Part 16. Test flames - 50W horizontal and vertical flame test methods; --- Part 17. Test flames - 500W flame test methods; --- Part 18. General toxic combustion stream; --- Part 19. Abnormal heat - Mould stress relief distortion test; --- Part 20. Surface spread of flame test methods - Summary and relevance; --- Part 21. Abnormal heat - Ball pressure test; --- Part 22. Test flames - 50W flames - Apparatus and confirmation test methods; --- Part 23. Test flames tubular material 500W vertical flame test methods for the polymerization; --- Part 24. Guidance for assessing the fire hazard insulating liquid; --- Part 25. Smoke obscuration - General; --- Part 26. Smoke obscuration - Summary and relevance of test methods; --- Part 27. Smoke obscuration - Small-scale static test instrument described; --- Part 28. Smoke obscuration - Small-scale static test material; --- Part 29. Heat release - General; --- Part 30. Heat release - Summary and relevance of test methods; --- Part 31. Surface spread of flame - General; --- Part 32. Heat release heat insulating fluid is released; --- Part 33. Guidance for assessing the fire hazard from flammable General; --- Part 34. Guidance for assessing the fire hazard from flammable Test methods - Summary and relevance; --- Part 35. General corrosion of combustion flow hazards; --- Part 36. corrosive combustion flow hazards Summary and relevance of test methods; --- Part 38. Toxicity Test Methods for combustion flows Summary and relevance; --- Part 39. Toxicity test results illustrate the use and combustion stream; --- Part 40. Toxic poison flow combustion efficiency device and test methods for assessment; --- Part 41. Toxicity toxic combustion flow calculation and assessment of the effectiveness of the test results described; --- Part 42. Test flames Confirmation Test Guidelines; --- Part 44. Guidance for assessing the fire hazard fire hazard assessment. This section GB/T 5169 of Part 41. This section drafted in accordance with GB/T 1.1-2009 given rules. This section uses the translation method is equivalent to using IEC /T S60695-7-51.2002 "Fire hazard testing - Part 7-51. Toxicity of combustion flow Toxicity Evaluation of test results calculation and description. " This part made the following editorial changes. --- Consistent with the existing standard series, the standard name will be changed to "Fire hazard testing for electric and electronic products - Part 41. combustion stream Toxicity Toxicity Evaluation of test results and calculation instructions "; --- Deleted in Chapter 1 of the third paragraph of informative content; --- Increase the "Reference" chapter, the second chapter in the guidelines for the preparation of international standards IEC Guide104.1997 to "References." This part is proposed by the China Electrical Equipment Industrial Association. This section hazard testing Standardization Technical Committee (SAC/TC300) is administered by the National Electrical and Electronic Products fire. This section is responsible for drafting. Guangdong Entry-Exit Inspection and Quarantine Bureau Technology Center. This section participated in the drafting unit. China Electric Apparatus Research Institute Co., Ltd., Dongguan City, the Hua Electronic Technology Co., Ltd., Sichuan Public Security Fire Research Institute, Shandong Academy of product quality inspection, Guangdong health benefits Technology Co., Ltd., Wacker Detection Technology Co., Ltd., Beijing Thailand Reiter Detection Technology Services, LLC. The main drafters of this section. Wu Zheng, Wu Qian, Li Guangbin AND APPLIED Wang Xin, Guan Jian, Qi Wen Yan, kaolin pine, Xuzhong Chun, Li Sheng.IntroductionOver the past decade, ISO /TC92/SC3 has been studying methods to reduce the fire risk of poisoning. This work obtained ISO / TR9122 series of guidance documents. Similarly, IEC /TC89/WG7 the application ISO /TC92/SC3 in the field of electric and electronic products Guidelines to develop IEC 60695-7 series of standards. Electric and electronic product documentation, legislators and the user tries to decomposition test material through a small-scale, combined with the selected product chemical division Analysis, in order to achieve the purpose of reducing the fire risk of poisoning. The results of these analyzes are typically exposed dose (LCt50) junction and the semi-lethal toxic effects as indicated Together, calculate the toxicity index products for special application conditions, these indicators can provide product ratings or pass/fail Judgement standard. When the material is exposed to heat/fire, the toxic effect is multiplied by the mass loss rate of the product, it is not because the material has a highly toxic effect on inferred There is a high risk of poisoning; and vice versa. For example. If the material is a material higher toxic effect than the value of the effective value of low toxicity harder than one ignition and/or after the ignition combustion (ie. Mass loss) slower than the latter, then the product from the toxic effects of the high value of the material which may lower the risk of poisoning than the latter. In view of the above information, through GB /test methods (or any other method) T 5169.40-2015 toxic effects have been provided, unless Where appropriate to supplement the mass loss rate of the test, or until just consider it as a loss of quality, exposure concentration, escape Part of the risk assessment and maintenance of inter-time record, otherwise it should not be included in the finished material or specification. This method breaks Co-ISO /TC92/SC3 new improved method, based on the accumulated flow of toxic combustion products of combustion can produce lethal dose lethal effects principle. When exposed to the environment caused by inability to achieve the standard dose it is usually considered lethal effect occurs, however, the dose is generally smaller than the lethal dose. However, due to incapacity caused by a detailed method of treatment is still exploring, in ISO /TC92 interior has not been completed, this section did not cause no capacity Devoted. Fire hazard testing for electric and electronic products Part 41. Toxicity toxic combustion flow efficiency assessment Calculation and interpretation of test results1 ScopeThis section GB/T 5169 describes the data GB/T 5169.40-2015 Chemical analysis was converted to the specified conditions Toxicity test material calculation program data. The purpose is to assess a finished material or combustion stream at its fire which, relative to the total flow in the combustion Toxic threats to life role. A data format with other test methods GB/T 5169.40-2015 predetermined consistency, then such data can also be used to Toxicity converted to a predetermined value. The principle of this method with IEC 60695-7-3.1998 and ISO /T R9122-5.1993 consistent improvement works. As a result, the use of GB/T 5169.40-2015 laboratory test procedures used format expression. Toxicity values \u200b\u200bonly for poisoning hazard assessment alone can not be used.2 Normative referencesThe following documents for the application of this document is essential. For dated references, only the dated version suitable for use herein Member. For undated references, the latest edition (including any amendments) applies to this document. GB/T 5169.40-2015 Fire hazard testing for electric and electronic products - Part 40. Toxicity toxic combustion flow efficiency assessment means Set and test methods (IEC /T S60695-7-50.2002, IDT) Toxicity Test Section 11989 of combustion flow.. ISO /T R9122-1 General (Toxicitytestingoffireeffluents- Part 1. General) ISO /T R9122-5. Toxicity Test Part 51993 burning stream. combustion flow forecasting toxic effects (Toxicitytesting offireeffluents-Part 5. Predictionoftoxiceffectsoffireeffluents) ISO 13344.1996 Determination of combustion flow of lethal toxic effects (Estimationofthelethaltoxicpotencyoffireeffluents) ISO /IEC 13943.2000 Fire Safety Glossary (Firesafety-Vocabulary) IEC 60695-7-3.1998 Fire hazard testing - Part 7-3. Toxicity test results using the combustion stream and description (Fire hazardtesting-Part 7-3. Toxicityoffireeffluent-Useandinterpretationoftestresults)3 Terms and DefinitionsISO /IEC 13943.2000 and the following definition of terms and definitions apply to this document. 3.1 Half effective dose effectivedose50 ECt50 Can cause when exposed to the same laboratory conditions with 50% of the species observed to produce a specific effect, the exposure dose inhalation of toxic substances (Volume fraction multiplied by the time, Ct). NOTE. The observed effect is a representative phenomena incapacity or death. ECt50 lethal dose of "LCt50", that is "semi-lethal dose of exposure." ......Tips & Frequently Asked Questions:Question 1: How long will the true-PDF of GB/T 5169.41-2015_English be delivered?Answer: Upon your order, we will start to translate GB/T 5169.41-2015_English as soon as possible, and keep you informed of the progress. The lead time is typically 1 ~ 3 working days. The lengthier the document the longer the lead time.Question 2: Can I share the purchased PDF of GB/T 5169.41-2015_English with my colleagues?Answer: Yes. The purchased PDF of GB/T 5169.41-2015_English will be deemed to be sold to your employer/organization who actually pays for it, including your colleagues and your employer's intranet.Question 3: Does the price include tax/VAT?Answer: Yes. 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