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GB/T 12243-2021 PDF English

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GB/T 12243-2021: Spring loaded safety valves
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Status: Valid

GB/T 12243: Historical versions

Standard IDUSDBUY PDFDeliveryStandard Title (Description)Status
GB/T 12243-2021365 Add to Cart Auto, 9 seconds. Spring loaded safety valves Valid
GB/T 12243-200585 Add to Cart Auto, 9 seconds. Spring loaded safety valves Obsolete
GB/T 12243-1989279 Add to Cart 3 days Spring loaded safety valves Obsolete

Similar standards

GB/T 12241   GB/T 12238   GB/T 12235   GB/T 12250   

GB/T 12243-2021: Spring loaded safety valves

---This is an excerpt. Full copy of true-PDF in English version (including equations, symbols, images, flow-chart, tables, and figures etc.), auto-downloaded/delivered in 9 seconds, can be purchased online: https://www.ChineseStandard.net/PDF.aspx/GBT12243-2021
GB NATIONAL STANDARD OF THE PEOPLE’S REPUBLIC OF CHINA ICS 13.240 CCS J 16 Replacing GB/T 12243-2005 Spring loaded safety valve Issued on. APRIL 30, 2021 Implemented on. NOVEMBER 01, 2021 Issued by. State Administration for Market Regulation; Standardization Administration of the People's Republic of China.

Table of Contents

Foreword... 3 1 Scope... 6 2 Normative references... 6 3 Terms and definitions... 7 4 Design... 8 5 Performance... 14 6 Test and inspection... 17 7 Appearance... 21 8 Marks and lead seals... 21 9 Protection and storage... 22 Annex A (normative) Non-destructive testing... 23 Annex B (informative) Another method for calculating the rated displacement of safety valve... 25

1 Scope

This document specifies the design, performance, test and inspection, appearance, mark and lead seal, protection, storage and transportation for spring loaded safety valves (hereinafter referred to as safety valves). This document is applicable to safety valves for steam with a set pressure of 0.1MPa~42.0MPa, and flow passage diameters greater than or equal to 15mm, as well as safety valves for gas and liquids with a diameter greater than or equal to 7mm. This document is applicable to safety valves whose discharge medium temperature is not lower than -29°C.

2 Normative references

The following referenced documents are indispensable for the application of this document. For dated references, only the edition cited applies. For undated references, the latest edition of the referenced document (including any amendments) applies. GB/T 9440, Malleable iron castings GB/T 12224, General requirements for industrial steel valves GB/T 12225, General purpose industrial valves - Specification of copper alloy castings GB/T 12227, General purpose industrial valve - Specification of spheroidal graphite iron castings GB/T 12228, General purpose industrial valves - Specification of carbon steel forgings GB/T 12229, General purpose industrial valves - Specification of spheroidal graphite iron castings GB/T 12230, General purpose industrial valves - Specification of stainless-steel castings GB/T 12241, Safety valves - General requirements GB/T 12242, Pressure relief devices - Performance test code GB/T 23935, Design of cylindrical helical springs JB/T 2203, Center-to-face dimensions of spring loaded safety valve JB/T 5263, Specification for steel casting for power station valves JB/T 6439, Methods of magnetic examination for valves

3 Terms and definitions

For the purposes of this document, the terms and definitions defined in GB/T 12241 as well as the followings apply. 3.1 full-lift safety valve A safety valve that the actual discharge area is the flow channel area. 3.2 low-lift safety valve A safety valve that the actual discharge area is the curtain area. 3.3 discharge area The smallest cross-sectional area in the fluid passage when the valve is vented. 3.4 flow-rating pressure The static pressure at the inlet of the valve when measuring the displacement of the safety valve.

4 Design

4.1 General 4.1.1 The design of the safety valve shall comply with the provisions of GB/T 12241. 4.1.2 The applicable temperature range of the safety valve shall be determined according to its structure (such as spring heat insulation and cold insulation), material, medium working characteristics, and temperature change limit value during discharge. The safety valve shall work normally within the marked temperature range. 4.1.3 When the safety valve used for compressible gas medium is in the discharge state, due to the phenomenon of condensation and frost due to temperature drop, the suitability of its structure and materials shall be fully considered. Prevent jamming and other phenomena during the action of the disc. 4.2 End connection The end connection of the safety valve shall be in accordance with the provisions of GB/T 12241.Safety valves with threaded end connections shall be provided with wrench flats for easy installation. 4.3 Structural length and verticality limit deviation The structural length of the safety valve is in accordance with the provisions of JB/T 2203 or the requirements of the order contract. The structural length and the limit deviation of the verticality of the end face of the inlet and outlet flanges shall be in accordance with the regulations in Figure 1 and Table 1. 4.4 Valve body 4.4.1 The design of the valve body shall ensure that the safety valve does not undergo any harmful deformation under the strength test and working conditions and is easy to manufacture and maintain. 4.4.2 The reaction force when the safety valve discharges shall be considered. Reinforcement measures need to be taken on the inlet or outlet flange of the valve, such as. adopting the thickness of the flange adjacent to the higher pressure grade or the flange adjacent to the nominal size of the larger grade. 4.5 Valve seat and disc 4.5.1 The material of the valve seat and disc shall be shock-resistant and medium- resistant. Cast iron materials shall not be used. 4.5.2 The sealing secondary material can be the material of the valve seat and the disc body. It can also be welded with another alloy material, or inlaid with non-metallic elastic sealing material. 4.5.3 The sealing surface of the valve seat and disc shall be in the form of a plane. When the tapered sealing surface is used, the angle between the sealing surface and the valve axis is preferably 45°. 4.6 Spring 4.6.1 The requirements for springs shall not be lower than those specified in GB/T 12241.When 4.6.2~4.6.15 is inconsistent with the requirements stipulated in GB/T 12241, the regulations in 4.6.2~4.6.15 shall be followed. 4.6.2 The slenderness ratio (ratio of free height to middle diameter) of the spring shall be less than 3.7. 4.7 Material 4.7.1 Valve body material 4.7.2 Valve seat and disc 4.7.2.1 The corrosion resistance of the valve seat and disc body material shall not be lower than that of the valve body material. Iron materials are not allowed. It shall be suitable for the discharge condition of the safety valve. 4.7.2.2 Safety valve seats for steam and saturated water with nominal pressure greater than or equal to 10MPa and operating temperature greater than 370°C shall be forged or rolled materials. 4.7.3 Guide sleeve The material of the guide sleeve shall have good wear resistance and corrosion resistance. It shall be suitable for the discharge condition of the safety valve. 4.7.4 Spring The material of the spring shall be selected according to GB/T 23935 and meet the requirements of the corresponding standards. 4.8 Non-destructive testing The non-destructive testing of safety valves shall be in accordance with the provisions in Annex A.

5 Performance

5.1 Set pressure deviation The set pressure deviation of the safety valve shall be in accordance with the provisions in Table 4 and Table 5. 5.2 Excess pressure The excess pressure of the safety valve shall be in accordance with the provisions in Table 6. 5.3 Opening-closing pressure difference 5.3.1 The opening-closing pressure difference of safety valve for steam shall be in accordance with the provisions in Table 7.The opening-closing pressure difference of the safety valve for the steam power boiler with the set pressure greater than 0.4MPa can be determined separately according to the requirements of the order contract. 5.3.2 The opening-closing pressure difference of safety valve for gas shall be in accordance with the provisions in Table 8. 5.3.3 The opening-closing pressure difference of safety valve for liquid shall be in accordance with the provisions in Table 9. 5.4 Opening height The opening height of the full-lift safety valve is greater than or equal to 1/4 of the diameter of the flow channel. The opening height of the low-lift safety valve is greater than or equal to 1/40 of the diameter of the flow channel and less than 1/4 of the diameter of the flow channel. 5.5 Mechanical properties During the opening and reseating process of the safety valve, there shall be no frequency jump and no jamming. When the discharge pressure is reached, it shall be stable without flutter. 5.6 Sealing 5.6.1 The sealing test pressure shall be in accordance with the provisions in Table 10. 5.6.2 The sealing test medium shall comply with the provisions in Table 11. 5.6.3 Sealing requirements 5.6.3.1 When carrying out the sealing test of the safety valve for steam, check the outlet port of the valve visually or by listening to the sound. If no leakage is found, the sealing is considered qualified. 5.7 Displacement The displacement and size of the safety valve shall be determined according to the provisions of GB/T 12241.For safety valves for steam and gas whose displacement coefficients have not been measured, calculations can be made with reference to the provisions in Annex B.

6 Test and inspection

6.1 Test and inspection items 6.1.1 The inspection items of the safety valve are divided into exit-factory inspection and type test. Test items according to the provisions of Table 14. 6.1.2 Safety valves shall be inspected one by one before leaving the factory. The products can leave the factory after passing the inspection. The exit-factory inspection shall comply with the provisions in Table 14. 6.1.3 Newly designed products or design changes (design modifications that affect fluid passages, opening heights, and safety valve action characteristics) shall be subject to the type test. 6.2 General requirements 6.2.1 The exit-factory test shall be carried out before painting. 6.2.2 Test equipment, instruments and test procedures shall comply with the provisions of GB/T 12241 and GB/T 12242.The accuracy of the pressure gauge during the shell strength test shall not be lower than level 1.6. 6.2.3 The safety requirements during the test shall comply with the provisions of GB/T 12241. 6.2.4 The set pressure test before leaving the factory shall be carried out according to 6.3 Test medium During the type test, for the safety valve that is used for steam, the test medium is steam. For safety valves for gas, the test medium is air or nitrogen. For safety valves for liquid, the test medium is water. The set pressure of the safety valve for steam and the safety valve for liquid before leaving the factory and the medium used for the sealing test are allowed to be replaced by air or nitrogen. 6.4 Test methods 6.4.1 Shell body strength The shell body strength test complies with the provisions of GB/T 12241.There shall be no leakage and structural damage during the test. 6.4.3 Gas sealing test

7 Appearance

After passing the test and before leaving the factory, the appearance of the safety valve shall be visually inspected. At least the following requirements shall be met.

8 Marks and lead seals

8.1 The nameplate of the safety valve or the outer surface of the safety valve shall at least have the following marking information. 8.2 The lead seal of the safety valve shall comply with the provisions of GB/T 12241.

9 Protection and storage

9.1 Before the safety valve leaves the factory, all external surfaces except the flange surface shall be painted with paint (except for corrosion-resistant materials). The flange faces shall be oil-sealed to prevent corrosion. 9.2 Threaded holes shall be plugged with protective plugs. Temporary plugs shall be clearly distinguishable from permanent metal plugs. 9.3 To prevent damage to the flange surface during shipment and to prevent the entry of foreign debris, the inlet and outlet flanges of the safety valve shall be protected by plugging covers. 9.4 The safety valve shall be sealed and packaged. During transportation and storage, it shall always be kept upright and not shaken. It is strictly forbidden to push down and carry. ......

Source: Above contents are excerpted from the full-copy PDF -- translated/reviewed by: www.ChineseStandard.net / Wayne Zheng et al.
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