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Butterfly Valve EUROSTOP - Motorized type

Product family
Valves

Flanged Butterfly Valve (flange-flange) with joint in the automatic butterfly (JPA) with double eccentricity and long spacing between the flanges.

Ductile iron body and butterfly covered with blue epoxy powder thickness 250 microns mini average according prescriptions of EN 14901-1 (PECB).

Range from DN150 to DN2000mm for pressures of PFA10 to 25 bar.

The EUROSTOP butterfly valve is available in different configuration: manual, buried service, motorized and motorizable (for this three last configuration see the specific TDS).

Technical design

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150 10 16 54.64 RPB15NECH
150 25 62.22 RPB15NEDH
200 10 66.43 RPB20NEBH
200 16 67 RPB20NEAH
200 25 85 RPB20NDDH
250 10 86 RPB25NDBH
250 16 85 RPB25NDAH
250 25 109 RPB25NEDH
300 10 104 RPB30NDBH
300 16 111 RPB30NEAH
300 25 144 RPB30NDDH
350 10 132 RPB35NEBH
350 16 156 RPB35NDAH
350 25 189 RPB35NDDH
400 10 161 RPB40NDBH
400 16 185 RPB40NDAH
400 25 250 RPB40NEDH
450 10 181 RPB45NDBH
450 16 248 RPB45NEAH
450 25 321 RPB45NDDH
500 10 230 RPB50NDBH
500 16 294 RPB50NEAH
500 25 374 RPB50NDDH
600 10 303 RPB60NEBH
600 16 400 RPB60NDAH
600 25 593 RPB60NEDH
700 10 472 RPB70NDBH
700 16 540 RPB70NDAH
700 25 975 RPB70MEDH
800 10 665 RPB80NEBH
800 16 986 RPB80MEAH
800 25 1243 RPB80MEDH
900 10 861 RPB90MEBH
900 16 1044 RPB90MDAH
1000 10 1249 RPC10MEBH
1000 16 1290 RPC10MEAH
1000 25 2123 RPC10MEDH
1200 10 1856 RPC12MEBH
1200 16 2389 RPC12MEAH
1200 25 3430 RPC12MEDH
1400 10 2544 RPC14MEBH
1400 16 3622 RPC14MEAH
1400 25 4600 203209
1500 10 2905 RPC15MEBH
1500 16 5607 RPC15MEAH
1500 25 6117 203215
1600 10 3520 RPC16MEBH
1600 16 4948 RPC16MEAH
1600 25 6265 203224
1800 10 4997 RPC18MEBH
1800 16 7039 RPC18MEAH
2000 10 6590 RPC20MEBH
2000 16 8418 RPC20MEAH

Features

Field of application

Butterfly valves are isolating valves used on water supply networks, in the interconnections of network, in the factories, in pumping stations, on the general networks and on the fire protection networks in the industrial sites.

Butterfly valves are compatible with drinking water and raw water with grid filtration. They will be installed on water networks in factories, in valves chambers or buried.

Their main advantages are: 

  • Low pressure loss

  • Good performance thanks to the choice of the materials, the coatings and the design

  • Easy operation per mechanism of the worm type/without end

  • Mechanisms equipped with a standardized flange carry-accessory for buried version and motorizable version

Material and coating

Versions DN150-800 PN10 - DN150-700 PN16 - DN150-600 PN25

Item

Description

Material

Coating

1

Body

Ductile iron GS500-7

Blue epoxy powder thickness 250 microns mini average according prescriptions of EN 14901-1

2

Disc

Ductile iron GS500-7

3

Retaining ring (*)

Carbon Steel SR235JR

-

4

Cover

Stainless steel X2CrNiMo17-12-2

-

5

Rear shaft

Stainless steel EN 10088 X30Cr13 (420)

-

6

Drive shaft

 

-

7

Seat ring

Stainless steel EN 10088-2 X2CrNiMo 17,12,2 (316L)

-

8

Cylindrical pin (rear shaft)

Stainless steel EN 10088-3 X5CrNiCuNb 16-4 (630)

-

9

Cylindrical pin (drive shaft)

 

-

10

Bearing

Bronze EN 1982 CuSn12

-

11

Screw

Stainless steel A2

-

12

Spring washer

Stainless steel A2

-

13

Feather key

Steel C40

-

14

Gasket

EPDM

-

15-16

O-ring

EPDM

-

17

Circular circlips

Stainless steel EN 10088-3 X5CrNi 18-10

-

18 Screw Stainless steel EN 10088-3 X5CrNi 18-10 -
19 Spring washer Stainless steel EN 10088-3 X5CrNi 18-10 -

20

Nut Stainless steel EN 10088-3 X5CrNiMo 17-12 -
21 O-ring EPDM -
22 Bush POM-C -
23 External circlip Stainless steel EN 10088-3 X5CrNi 18-10 -
24-25 O-ring EPDM -
(*) DN150-200 : Stainless steel AISI 316L
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Material and coating

Versions DN900-2000 PN10 - DN800-2000 PN16 - DN700-2000 PN25

Item

Description

Material

Coating

1

Body

Ductile Iron GS500-7

Blue epoxy powder thickness 250 microns mini average according prescriptions of EN 14901-1

2

Disc

Ductile Iron GS500-7

3

Sealing ring

EPDM

-

4

Retaining ring

Carbon Steel SR235JR

-

5

Shaft

Stainless steel EN 10088 X30Cr13 (420)

-

6

Spindle

-

7

Bearings

Bronze EN 1982 CuSn12

-

8

Ring

Gunmetal EN 1982 CuSn5Zn5Pb5

-

9

Rear cover

Carbon Steel SR235JR

Blue epoxy powder thickness 250 microns mini average according prescriptions of EN 14901-1

10

Taper pin

Stainless steel EN 10088-3 X5CrNiCuNb 16-4 (630)

-

11

Lock nut

Gunmetal EN 1982 CuSn5Zn5Pb5

-

12

Sealing element

PTFE

-

13

Internal Screw

Stainless steel type A2

-

14

Body seat ring

Stainless steel EN 10088-2 X2CrNiMo 17,12,2 (316L)

-

15

External Screw

- up to M20: Stainless steel EN 10088-3

- > M20: Steel class 8.8

-

16

O-ring gasket

EPDM

-

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Gearbox type and handwheel

Motorized type PN10
DN Gearbox AUMA type Actuator AUMA Type ISO 5210 Operating Time Speed Operating Torque Setting torque
mm s turn/mn Nm Nm
150 GS 50.3 – F10 SA 07.6 F10 35 22 8 20
200 GS 50.3 – F10 SA 07.6 F10 35 22 12 20
250 GS 50.3 – F10 SA 07.6 F10 48 16 21 27
300 GS 50.3 – F10 SA 07.6 F10 48 16 30 40
350 GS 63.3 – F12 SA 07.6 F10 70 11 39 51
400 GS 63.3 – F12 SA 10.2 F10 70 11 60 68
450 GS 80.3 – F14 SA 10.2 F10 99 8 70 92
500 GS 80.3 – F14 SA 10.2 F10 99 8 90 117
600 GS 100.3+VZ4.3 – F16 SA 07.6 F10 142 22 35 46
700 GS 100.3+VZ4.3 – F16 SA 10.2 F10 142 22 52 68
800 GS 125.3+VZ4.3 – F25 SA 10.2 F10 142 22 77 100
900 GS 160.3+GZ160.3 - F25 SA 10.2 F10 207 32 47 61
1000

GS 160.3+GZ160.3 - F30

SA 10.2 F10 207 32 65 84
1200 GS 200.3+GZ200.3 - F30 SA 10.2 F10 206 63 60 78
1400 GS 250.3+GZ250.3 - F35 SA 14.2 F14 283 45 93 121
1500 GS 250.3+GZ250.3 - F35 SA 14.2 F14 283 45 110 142
1600 GS 250.3+GZ250.3 - F35 SA 14.2 F14 283 45 130 169
1800 GS 315+GZ30 - F40 SA 10.2 F10 404 63 75 98
2000 GS 315+GZ30 - F40 SA 14.2 F14 404 63 102 133

Gearbox type and handwheel

Motorized type PN16
DN Gearbox AUMA type Actuator AUMA Type ISO 5210 Operating Time Speed Operating Torque Setting torque
mm s turn/mn Nm Nm
150 GS 50.3 – F10 SA 07.6 F10 35 22 8 20
200 GS 50.3 – F10 SA 07.6 F10 35 22 17 27
250 GS 50.3 – F10 SA 07.6 F10 48 16 29 38
300 GS 63.3 – F12 SA 07.6 F10 48 16 42 55
350 GS 63.3 – F12 SA 10.2 F10 70 11 59 77
400 GS 80.3 – F14 SA 10.2 F10 72 11 83 108
450 GS 100.3+VZ4.3 – F14 SA 07.6 F10 98 32 26 34
500 GS 100.3+VZ4.3 – F14 SA 07.6 F10 98 32 33 43
600 GS 100.3+VZ4.3 – F16 SA 10.2 F10 142 22 59 76
700 GS 125.3+VZ4.3 – F25 SA 10.2 F10 142 22 84 109
800 GS 160.3+GZ160.3 - F30 SA 10.2 F10 147 45 64 83
900 GS 160.3+GZ160.3 - F30 SA 10.2 F10 207 32

83

108
1000 GS 200.3+GZ200.3 - F30 SA 10.2 F10 206 63 65 85
1200 GS 250.3+GZ250.3 - F35 SA 14.2 F14 202 63 104 135
1400 GS 315+GZ30 - F40 SA 10.2 F10 283 90 65 85
1500 GS 315+GZ30 - F40 SA 10.2 F10 283 90 77 100
1600 GS 315+GZ30 - F40 SA 14.2 F14 283 90 94 123
1800 GS 400+GZ35 - F48 SA 14.2 F14 411 63 126 164
2000 GS 400+GZ35 - F48 SA 14.2 F14 411 63 161 209

Gearbox type and handwheel

Motorized type PN25
DN Gearbox AUMA type Actuator AUMA Type ISO 5210 Operating Time Speed Operating Torque Setting torque
mm s turn/mn Nm Nm
150 GS 50.3 – F10 SA 07.6 F10 35 22 13 20
200 GS 50.3 – F10 SA 07.6 F10 35 22 28 36
250 GS 63.3 – F12 SA 07.6 F10 48 16 43 57
300 GS 63.3 – F12 SA 10.2 F10 48 16 69 90
350 GS 80.3+VZ4.3 – F14 SA 10.2 F10 72 77 88 114
400 GS 100.3+VZ4.3 – F14 SA 07.6 F10 69 45 32 42
450 GS 100.3+VZ4.3 – F16 SA 07.6 F10 98 32 45 58
500 GS 100.3+VZ4.3 – F16 SA 10.2 F10 98 32 59 77
600 GS 160.3+GZ160.3 – F25 SA 10.2 F10 147 45 47 61
700 GS 160.3+GZ160.3 – F30 SA 10.2 F10 147 45 70 91
800 GS 200.3+GZ200.3 – F30 SA 10.2 F10 144 90 65 85
900 GS 200.3+GZ200.3 – F35 SA 10.2 F10 206 63 84 109
1000 GS 250.3+GZ250.3 – F35 SA 14.2 F14 202 63 115 150
1200 GS 315+GZ30 – F40

SA 10.2

F10 283 90 74 96
1400 GS 315+GZ30 – F40 SA 14.2 F14 283 90 110 143
1500 GS 400+GZ35 – F48 SA 14.2 F14 288 90 133 173
1600 GS 400+GZ35 – F48 SA 14.2 F14 288 90 153 199

Applicable Standards

Hydraulic test

Every single butterfly valve is subjected to hydraulic final test with the purpose of verifying the accordance with the prescriptions ISO 5208:

  • Body test at 1,5 time the PFA (open valve);
  • Seat test at 1,1 time the PFA (closed valve).

Product test

  • Control of manoeuvre torque (MOT and mST) as defined in the EN1074
  • Control of coating: test of thickness, holiday test, impact test, MIBK test

Conformity to the standards

Product:

  • EN 1074 – 1 and 2
  • EN 593
  • ISO 10631

Plant test:

  • ISO 5208

Flanges dimension:

  • ISO 5752 series 14

Flanges drilling:

  • EN 1092-2
  • ISO 7005-2

Suitability for potable water:

  • Italian CM 102 of 02/12/78
  • Conformity to foreign norms: KTW (Germany), WRC (U.K.), ACS (France)

Marking

On the body like EN19:

  • Nominal diameter in mm (DN);
  • Nominal pressure in bar (PN);
  • Type of ductile iron;
  • Manufacturer’s logo;
  • Model code;
  • Fusion date.

On the label like EN19:

  • Nominal diameter in mm (DN);
  • Nominal pressure in bar (PN);
  • Maximum operating pressure (PFA);
  • Closing direction;
  • Model code;
  • Manufacturing order, Order confirmation;
  • Manufacturer’s logo.

On the disc:

  • Nominal diameter in mm (DN);
  • Nominal pressure in bar (PN);
  • Type of ductile iron;
  • Manufacturer’s logo;
  • Model code.

The marking of the valves manufactured by Saint-Gobain refers to the EN 1074-2 and EN 19 international standards.

Markings are either integral markings, cast in the body, or markings made on plates, securely fixed to the body, in accordance with the EN 19 standard specifications.

Specifications EN19 Saint-Gobain valves process
Table1–Valve markings Requirements  
1 DN

EN 19 § 4.2.1

Mandatory markings

Shall be integral markings or on a marking plate

Integral
2 PN Integral
3 Material Integral
4 Manufacturer's name or trade mark Plate
11 Reference to Standard

EN 19 § 4.3

Supplementary markings

Items 7 to 21 in Table 1 are optional

Integral
12 Melt identification Integral
16 Quality test Printed on body
18 Manufacturing date Plate
21 Closing direction Plate + sticker on body
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Hydraulic features

The head loss Δh are variable in function of valve open degree and can be calculated with the following expression:

with Δh = head loss (m), ζ = head loss coefficient (dimensional), v = nominal speed (m/s), g = 9,81 (m/s²)

The head loss coefficient can be estimated from the diagram attached.

Determinates the head loss Δh it’s possible to calculate the flow rate Q in m3/h with the following expression (the same expression can be used to, having the project flow rate Q, to determinate the head loss Δh without using the head loss coefficient):

in which 10,2 is a corrective factor in meters, and Kv is the flow rate coefficient in m3/h, determinable from the following diagram in function of valve open degree:

Example: Valve DN600 mm - Δh = 3 m

From the diagram with valve open to 100% the coefficient Kv is 20000 m3/h. Using this date in the flow rate expression:

Otherwise it’s possible to calculate the head loss with valve completely open, having the project flow rate Q, in function of DN, using the following diagram:

Cavitation

If the butterfly valve is used only like isolating device there’s not cavitation risk.

In the particular case in which it’s used like regulating device, this can be possible only respecting the following parameters:

  • The valve open degree have to be between 30° and 90° (valve completely open)

  • The downstream pressure P2 have to be: P ≥ 0,7 .P - 2,8 with P upstream pressure.

Diagram_RAP_Perte_de_charge
Diagram_RAP_Degre_ouverture
Diagram_RAP_Calcul_perte_charge

Instructions for use

Storage

The butterfly valve will have to be held (if possible) in covered places, the most possible protected from the sun (maximum allowable temperature 70°C in accordance to EN 1074), from the rain and generally from the atmospheric agents. Moreover it will have to be avoided that the seal of the same air valves come to contact with powder or earth.

Installation

The butterfly valves are generally installed with retaining ring mounted in the opposite way respect to the direction of flow rate to permit the substitution of gasket without dismounting the valve from pipeline. In any case it is possible to install the butterfly valve with flow rate in opposite direction and also, if required, in vertical position. We recommend to install the butterfly with the operating device on the hydraulic right side of pipeline.

It’s possible to install the butterfly valve both in chamber valve that underground (choosing the right configuration).

We recommend to insert a dismounting joint for the operation of maintenance.

Maintenance

The butterfly valve does not require a particular maintenance, all parts subjected to wear are perfectly auto-lubricating. In any case, if for a long time will be not used, it is necessary to evaluate the functioning of valve doing (at least one time for year) some manoeuvre of opening-closing.

All the maintenance operation have to be do after the total emptying of pipeline (no flow rate and pressure) to avoid every risk to the people during this operation.

In presence of particularly exercise condition or damage due to external cause, it will be necessary some maintenance operation. In this case the particular shape of EUROSTOP butterfly valve permits the simple gasket substitution without the dismounting of valve from pipeline (if the dismounting joint is present).

Accessories

To adapt the butterfly valves to the different exercise and installation conditions required, they can be equipped with particular accessories used in combination with control devices: please refer to data sheet for accessories.

The technical features in this document are not contractual and can be changed without preliminary notification due to the continuous technical progress of product.

Valve selection

The butterfly valves are generally used as isolating devices type on/off. In some particular case, in which there’s low differences of pressure and low flow rate variation can be used like regulating devices, considering the hydraulic parameters necessary to avoid the cavitation risk.

To do the right dimensioning of butterfly valve it’s necessary to know the followings parameters:

  • Upstream hydrostatic pressure (that is the hydrostatic pressure with valve in closed position)
  • The maximum speed in water pipe (generally expressed in l/s) or the nominal diameter and the project flow rate from which it is gained the speed V=Q/A

Moreover it’s necessary to control that the maximum speed in water pipe have to be equal or inferior to 5m/s, and the exercise temperature have to be between 0°C and 40 °C.

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