ДСТУ ISO 6182-1:2019 Противопожарная защита. Автоматические спринклерные системы. Часть 1. Требования и методы испытаний спринклеров (ISO 6182-1:2014, IDT)

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ISO 6182-1:2014

Fire protection — Automatic sprinkler systems —
Part 1: Requirements and test methods for sprinklers

прийнято як національний стандарт
методом «підтвердження» за позначенням
 

ДСТУ ISO 6182-1:2019
(ISO 6182-1:2014, IDT)

Протипожежний захист. Автоматичні спринклерні системи.
Частина 1. Вимоги та методи випробування спринклерів

З наданням чинності від 2020–01–01

Contents

Foreword

1 Scope

2 Normative references

3 Terms and definitions

3.1 General

3.2 Types of sprinkler according to type of heat-responsive element

3.3 Types of sprinkler according to type of water distribution

3.4 Types of sprinkler according to position

3.5 Special types of sprinkler

3.6 Types of sprinkler according to sprinkler sensitivity

4 Product consistency

4.1 Quality control program

4.2 Leak resistance testing

4.3 Glass bulb integrity test

5 Product assembly

5.1 General

5.2 Dynamic O-ring seals

5.3 Rated pressure

5.4 Dry sprinklers

6 Requirements

6.1 Dimensions

6.2 Temperature ratings and colour coding

6.3 Operating temperature (see 7.4)

6.4 Water flow and distribution

6.5 Function (see 7.7)

6.6 Service load and strength of sprinkler body (see 7.8)

6.7 Strength of heat-responsive element (see 7.9)

6.8 Leak resistance and hydrostatic strength (see 7.10)

6.9 Heat exposure (see 7.11)

6.10 Thermal shock for glass bulb sprinklers (see 7.12)

 Corrosion (see 7.13)

6.12 Coated sprinklers (see 7.14)

6.13 Water hammer (see 7.15)

6.14 Dynamic heating (see 7.16)

6.15 Resistance to heat (see 7.17)

6.16 Vibration (see 7.18)

6.17 Impact (see 7.19)

6.18 Rough usage (see 7.20)

6.19 Crib fire performance (see 7.21)

6.20 Lateral discharge (see 7.22)

6.21 Thirty-day leakage resistance (see 7.23)

6.22 Vacuum resistance (see 7.24)

6.23 Water shield angle of protection (see 7.25)

6.25 Thermal response of concealed and recessed sprinklers (see 7.27)

6.26 Freezing test (see 7.28)

6.27 Dry-type sprinkler deposit loading (see 7.29)

6.28 Dry sprinkler air tightness (see 7.30)

6.29 Protective covers (see 7.31)

6.30 Dezincification of brass parts (see 7.32)

6.31 Stress corrosion — magnesium chloride (see 7.33)

7 Test methods

7.1 General

7.2 Preliminary examination

7.3 Visual examination

7.4 Operating temperature test (see 6.3)

7.5 Water flow constant (see 6.4.1)

7.6 Water distribution tests (see 6.4.2)

7.7 Functional test (see 6.5)

7.8 Service load and strength of sprinkler body test (see 6.6)

7.9 Strength of heat-responsive element test (see 6.7)

7.10 Leak resistance and hydrostatic strength tests (see 6.8)

7.11 Heat exposure test (see 6.9)

7.12 Thermal shock test for glass bulb sprinklers (see 6.10)

7.13 Corrosion tests (see 6.11)

7.14 Tests for sprinkler coatings

7.15 Water hammer test (see 6.13)

7.16 Dynamic heating test (see 6.14)

7.17 Heat resistance test (see 6.15)

7.18 Vibration test (see 6.16)

7.19 Impact test (see 6.17)

7.20 Rough usage test (see 6.18)

7.21 Crib fire test (see 6.19)

7.22 Lateral discharge test (see 6.20)

7.23 Thirty-day leakage test (see 6.21)

7.24 Vacuum test (see 6.22)

7.25 Water shield angle of protection (see 6.23)

7.26 Water shield rotation test (see 6.24)

7.27 Thermal response of concealed and recessed sprinklers test (see 6.25)

7.28 Freezing test (see 6.26)

7.29 Dry-type sprinkler deposit loading test (see 6.27)

7.30 Dry sprinkler air tightness test (see 6.28)

7.31 Protective cover impact test for glass bulb sprinklers (see 6.29)

7.32 Dezincification of brass parts test (see 6.30)

7.33 Stress corrosion — magnesium chloride test (see 6.31)

8 Marking

8.1 Sprinklers

8.2 Sprinkler housings and concealed-sprinkler cover plates

8.3 Protective covers

9 Manufacturer’s installation instructions

Annex A (informative) Analysis of the strength test for release elements

Annex B (informative) Statistical tolerance limits

Annex C (normative) Tolerances

Annex D (normative) Tolerance limit calculation methods for strength distribution

Bibliography

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