Showing posts with label Flanges. Show all posts
Showing posts with label Flanges. Show all posts

Pressure Classes of Flanges

Forged steel flanges, according to ASME B16.5, are made in seven primary ratings as 150Lbs, 300Lbs,  400Lbs, 600Lbs, 900Lbs, 1500Lbs, 2500Lbs.


The concept of flange ratings likes clearly. A Class 300 flange can handle more pressure than a Class 150 flange, because a Class 300 flange are constructed with more metal and can withstand more pressure. However, there are a number of factors that can impact the pressure capability of a flange.
The Pressure Class or Rating for flanges will be given in pounds. Different names are used to indicate a Pressure Class.
For example: 150 Lb or 150 Lbs or 150# or Class 150, all are means the same.

Example of Pressure Rating

Flanges can withstand different pressures at different temperatures. As temperature increases, the pressure rating of the flange decreases. For example, a Class 150 flange is rated to approximately 270 PSIG at ambient conditions, 180 PSIG at approximately 400°F, 150 PSIG at approximately 600°F, and 75 PSIG at approximately 800°F.
In other words, when the pressure goes down, the temperature goes up and vice versa. Additional factors are that flanges can be constructed from different materials, such as stainless steel, cast and ductile iron, carbon steel etc.. Each material have different pressure ratings.
Below an example of a flange NPS 12 with the several pressure classes. As you can see, inner diameter and diameter of the raised face at all the same; but outside diameter, bolt circle and diameter of bolt holes become larger in each higher pressure class.
The number and diameters (mm) of the bolt holes are:
  • Class 150 – 12 x 25.4, Class 300 – 16 x 28.6
  • Class 400 – 16 x 34.9, Class 600 – 20 x 34.9
  • Class 900 – 20 x 38.1, Class 1500 – 16 x 54
  • Class 2500 – 12 x 73

Pressure-Temperature Ratings Example

Pressure-temperature ratings are maximum allowable working gage pressures in bar units at the temperatures in degrees celsius. For intermediate temperatures, linear interpolation is permitted. Interpolation between class designations is not permitted.
Pressure-temperature ratings apply to flanged joints that conform to the limitations on bolting and on gaskets, which are made up in accordance with good practice for alignment and assembly. Use of these ratings for flanged joints not conforming to these limitations is the responsibility of the user.
The temperature shown for a corresponding pressure rating is the temperature of the pressure-containing shell of the component. In general, this temperature is the same as that of the contained fluid. Use of a pressure rating corresponding to a temperature other than that of the contained fluid is the responsibility of the user, subject to the requirements of applicable codes and regulations. For any temperature below -29°C, the rating shall be no greater than the rating shown for -29°C.
As an example, below you will find two tables with material groups acc. to ASTM, and two other tables
with flange pressure-temperature ratings for those ASTM materials acc. to ASME B16.5.

ASTM Group 2-1.1 Materials

Nominal DesignationForgingsCastingsPlates
C-SiA105(1)A216  r.WCB(1)A515 Gr.70(1)
C-Mn-SiA350 Gr.LF2(1)-A516 Gr.70(1),(2)
C-Mn-Si-VA350 Gr.LF6 Cl 1(3)-A537 Cl.1(4)
3½NiA350 Gr.LF3--
NOTES:
(1) Upon prolonged exposure to temperatures above 425°C, the carbide phase of steel may be converted to graphite. Permissible but not recommended for prolonged use above 425°C.
(2) Do not use over 455°C.
(3) Do not use over 260°C.
(4) Do not use over 370°C.

ASTM Group 2-2.3 Materials

Nominal DesignationForgingsCastingsPlates
16Cr-12Ni-2MoA182 Gr.F316L-A240 Gr.316L
18Cr-13Ni-3MoA182 Gr.F317L--
18Cr-8NiA182 Gr.F304L(1)-A240 Gr.304L(1)
 (1) Do not use over 425°C.

Pressure-Temperature Ratings for ASTM Group 2-1.1 Materials

Working pressure by Classes, BAR
Temp.°C15030040060090015002500
-29 to 3819.651.168.1102.1153.2255.3425.5
5019.250.166.8100.2150.4250.6417.7
10017.746.662.193.2139.8233388.3
15015.845.160.190.2135.2225.4375.6
20013.843.858.487.6131.4219365
25012.141.955.983.9125.8209.7349.5
30010.239.853.179.6119.5199.1331.8
3259.338.751.677.4116.1193.6322.6
3508.437.650.175.1112.7187.8313
3757.436.448.572.7109.1181.8303.1
4006.534.746.369.4104.2173.6289.3
4255.528.838.457.586.3143.8239.7
4504.62330.74669115191.7
4753.717.423.234.952.387.2145.3
5002.811.815.723.535.358.897.9
5381.45.97.911.817.729.549.2

Pressure-Temperature Ratings for ASTM Group 2-2.3 Materials

Working pressure by Classes, BAR
Temp.°C15030040060090015002500
-29 to 3815.941.455.282.7124.1206.8344.7
5015.34053.480120.1200.1333.5
10013.334.846.469.6104.4173.9289.9
1501231.441.962.894.2157261.6
20011.229.238.958.387.5145.8243
25010.527.536.654.982.4137.3228.9
3001026.134.852.178.2130.3217.2
3259.325.5345176.4127.4212.3
3508.425.133.450.175.2125.4208.9
3757.424.83349.574.3123.8206.3
4006.524.332.448.672.9121.5202.5
4255.523.931.847.771.6119.3198.8
4504.623.431.246.870.2117.1195.1

Applications of flanges

Flanges are integral parts of many engineering and plumbing projects. In many applications, engineers need to find a way to close off a chamber or cylinder in a very secure fashion, usually because the substance inside must differ from the substance outside in composition or pressure.


They do this by fastening two pieces of metal or other material together with a circle of bolts on a lip. This “lip” is a flange.

Plumbing
You can connect two sections of metal piping by soldering or welding them together, but pipes connected in this way are very susceptible to bursting at high pressures. A way of connecting two sections of pipe more securely is by having flanged ends that you can connect with bolts. This way, even if gases or liquids build up to high pressures inside the pipe, it will often hold with no problem.

Spec blind flange usage
Spec blind flange usage
Mechanics
In order to connect two sections of a large, enclosed area, it is often best to used flanges and bolts. An example of this is the connection between the engine and the transmission in an automobile. In this case, both the engine and the transmission contain a number of moving parts that can easily get damaged if they get dust or other small objects inside of them. By connecting the outer casings of the engine and transmission in this way, engineers protect the inner workings of both.

Electronics
Flanges have a specific purpose in cameras and other electronic devices. Though flanges in such items do not usually have to sustain high pressures, they do have to hold tight so they can keep out harmful particles. These flanges are usually found connecting two different materials, such as the glass of a lens and the rest of the body of the camera.

Pipe Flanges Raw Material Specifications

Requirements are valid for normal situation, in special you have to contact us to introduce.
Material
Test basis / Requirements
Delivery Condition
 C 22.8 (1.0460) DIN 17243: 01.87 + VdTUEV - WB 350/3: 2009
  DIN 17243: 01.87
  VdTÜV - WB 350/3: 2009
 +N
 P250GH (1.0460) DIN EN 10222-2: 04.2000
  National Annex
 +N
 P245GH (1.0352) EN 10222-2:1999-12 + AC : 2000-02
 +N
 A105N / C21 ASTM A105/A105M-05/ ASME BPVC Sec.2 Part.A:04
  + VdTUEV399/3: 1996-09
  + NACE MR 0175: 2000
 +N
 A105N ASTM A105/A105M-05/ ASME BPVC Sec.2 Part.A:04
  + NACE MR 0175: 2000
 +N
 C21 (1.0432) VdTUEV - WB 399/3: 1996-09
 +N
 RSt 37-2 (1.0038) DIN 17100: 1980-01
 +N
 S235JR (1.0038) DIN EN10025-2: 2005-04
 +N
 16Mo3 (1.5415) DIN EN10222-2:1999-12 + AC:2000-02
 +N
 WStE355 / TStE355
  (1.0565 / 1.0566)
 DIN EN17103 :1989-10, + VdTUEV-WB 354/3 : 2001-06
 +N or QT
 P355NH  (1.0565) DIN EN10222-4: 1998 + A1: 2002-12
 +N
 WStE355 / P355NH
  (1.0565)
 DIN EN17103 :1989-10, + VdTUEV-WB 354/3 : 2001-06
  + DIN EN10222-4: 1998 + A1: 2002-12
  + DIN EN17103 :1989-10
  + DIN EN10222-4: 1998 + A1: 2002-12
 +N or QT
 1.4301 (X5CrNi17-10) DIN EN10222-5: 2000-02
 +AT
 1.4306 (X2CrNi19-11) DIN 17440:1996-09
 +AT
 1.4401 (X5CrNiMo17-12-2) DIN EN10222-5: 2000-02
 +AT
 1.4404 (X2CrNiMo17-12-2) DIN EN10222-5: 2000-02
 +AT
 1.4432 (X2CrNiMo17-12-3) DIN EN10222-5: 2000-02
 +AT
 1.4541 (X6CrNiTi18-10) DIN EN10222-5: 2000-02
 +AT
 1.4571 (X6CrNiMoTi17-12-2) DIN EN10222-5: 2000-02
 +AT
 1.4541 / F321 DIN EN10222-5: 2000-02 / +ASTM A 182/A 182M :2005
 +AT
 1.4571 / F316Ti DIN EN10222-5: 2000-02 / +ASTM A 240
 +AT
 1.4404 / F316L DIN EN10222-5: 2000-02 / +ASTM A 182/A 182M :2005
 +AT
 1.4306 / F304L DIN 17440.1996-09 / +ASTM A 182/A 182M : 2005
 +AT
 1.4307 / F304L DIN EN10222-5: 2000-02 / +ASTM A 182/A 182M :2005
 +AT
Flange
Test basis / Requirements
 DIN, Carbon Steel DIN2519:1991-06
  + AD2000-W9: 02.04; -W13/ TRD107;TRB100;
  + Directive 97/23/EG Annex I, Chap. 4.3: 1998-02
 DIN, corrosion-resistant Steel DIN2519:1991-06
  + AD2000-W9: 02.04; -W2; -W10 / TRD107; TRB100;
  + Directive 97/23/EG Annex I, Chap. 4.3: 1998-02
 DIN EN 1092-1, Carbon Steel DIN EN 1092-1: 2008-09
  + AD2000-W9; -W13/TRD107;TRB100
  + Directive 97/23/EG Annex I, Chap. 4.3: 1998-02
 DIN EN 1092-1, Stainless Steel DIN EN 1092-1: 2008-09
  + AD2000-W9; -W2; -W10/ TRD107; TRB100
  + Directive 97/23/EG Annex I, Chap. 4.3: 1998-02
 ANSI ASME B16.5:2003
  ASME B16.47:2006

Basic requirements for Material and Fitting
Requirements are valid for normal case, in special case you have to contact the technical department.

Material
Test basis / Requirements
Delivery Condition
 1.4541 (X6CrNiTi18-10) DIN 17458:1996-09
+AT
 1.4571 (X6CrNiMoTi17-12-2) DIN 17458:1996-09
+AT
Fittings
Test basis / Requirements
 DIN2609 Stainless Steel VdTUEV –MB 1252/ AD2000- W2; W10/TRD107;TRB100
T-Piece Directive 97/23/EG Annex I, Chap. 4.3:1998-02
Bow DIN2615-1
ReducerDIN2605-1
DIN2616-1

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