CAV4 Valve Description
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Features
- Cavitation Decreased—A properly sized Design CAV4 valve with Cavitrol IV trim decreases cavitation and its resultant damage and noise.
- Long Trim Life—Patented pressure-staging design and separation of shutoff and throttling locations decrease clearance-flow erosion. Hardened trim materials result in improved wear resistance.
- Tight Shutoff—Soft metal-to-metal seat provides tight shutoff without the need for periodic lapping. The anti-extrusion ring provides an enhanced valve plug seal.
- TSO (Tight Shutoff) Trim—Valves with TSO trim (figure 2) are factory tested to a more stringent Emerson Process ManagementTM test requirement of no leakage at time of shipment using ANSI/FCI Class V procedures.
- Efficient Operation—Expanding flow area design takes advantage of the ability of the liquid to undergo a greater pressure drop in initial stages without cavitating. This results in a much lower inlet pressure to the final stage.
- Characterization—Special characterized cages are available to provide customer specified rangeability for specific system requirements.
- Easy Maintenance—Design reduces maintenance downtime by permitting quick disassembly with easy access to valve trim and valve plug seat. Separable seat ring for low temperature applications (at or below 232°C [450°F]) makes maintenance easier.
Note
Neither Emerson, Emerson Process Management, nor any of their affiliated entities assumes responsibility for the selection, use and maintenance of any product. Responsibility for the selection, use, and maintenance of any product remains with the purchaser and end-user.
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Principle of Operation
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Selection Guidelines
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Installation
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Ordering Information
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Specifications
Available Configurations and Valve Body Sizes
Common Characteristics: Design CAV4 angle, globe, or offset globe valve with four-stage Cavitrol IV trim including soft metal-to-metal seat. Valve plug action is push-down-to-close Seal Ring Construction: ■NPS 2, ■3, ■4, or ■6 valve body with pressure-balanced valve plug and spring-loaded PTFE seal ring. For use in low-temperature applications Stem-Balanced Construction: ■NPS 2 or ■4 valve body with stem-balanced valve plug (valve stem diameter—for that portion of stem that passes through bonnet—is equal to nominal port diameter). For use in high-temperature applications Piston Ring Construction: NPS 6 valve body with pressure-balanced valve plug and five graphite piston rings. For use in high-temperature applications
End Connection Style(1)
Buttwelding Ends: All buttwelding end schedules per ASME B16.25 that are compatible with ASME B16.34 valve body rating Raised-Face or Ring-Type Joint Flanged Ends: Inlet connection is CL2500 flange per B16.5. Outlet connection mates with CL2500 flange and has tapped bolt holes with line flange studs
Maximum Inlet Pressure and Temperatures(1)(2)
Consistent with applicable CL2500 pressure temperature ratings per ASME B16.34 unless limited by individual pressure drop limits shown in figure 6 or temperature limits in table 1 Maximum Pressure Drop(2)
See figure 6 Material Temperature Capabilities(2)
Seal Ring Construction: 18 to 232°C (0 to 450°F) Stem-Balanced and Piston Ring Constructions: Up to 427°C (800°F) unless limited by selection of other parts (table 1)
Shutoff Classification
TSO (Tight Shutoff) Trim: Valves with TSO trim are factory tested to a more stringent Emerson Process Management test requirement of no leakage at time of shipment using ANSI/FCI 70-2 and IEC 60534-4 Class V procedures. Piston Ring Construction: Class IV per ANSI/FCI 70-2 and IEC 60534-4 All Others: Class VI per ANSI/FCI 70-2 and IEC 60534-4
Flow Direction
In through the side connection and out the bottom connection
Noise Levels
Because of cavitation elimination, noise is typically not a problem with Cavitrol IV trim. For virtually all applications, noise levels will be below 90 dBA. If more stringent noise specifications must be met, contact your Emerson Process Management sales office
Construction Materials
See table 1 Flow Characteristic
Linear
Maximum Flow Coefficients (CV)
Linear: ■NPS 2 valve, 8.25; ■NPS 3 valve, 14.6; ■NPS 4 valve, 21.9: ■NPS 6 valve, 55.6 Characterized: ■NPS 2 valve, 11.3; ■NPS 3 valve, 24; ■NPS 4 valve, 38.2; ■NPS 6 valve, 89.1. Also see the section titled Coefficients in this bulletin or Catalog 12
Valve Recovery and Cavitation Coefficients
Recovery Coefficient
Linear: Km = 0.99. Characterized: Km = 0.98. This value defines the maximum allowable pressure drop that is effective in producing flow as shown in the following equation:
∆Pallowable = Km (P1 (flowing)-rcPv)
Cavitation Coefficient
Linear and Characterized: Kc = 1.0. This value predicts the beginning of cavitation-related damage as shown in the following equation:
∆PCavitation = Kc (P1 (flowing)Pv)
where,
∆Pallowable = maximum allowable pressure drop that is effective in producing flow, bar (psi)
P1 (flowing) = flowing inlet pressure, bar, absolute (psia)
rc = critical pressure ratio from Catalog 12
Pv = vapor pressure of liquid at inlet temperature, bar, absolute (psia)
Port Diameters and Unbalance Area
See table 2 Minimum Seat Load Force
First refer to figure 7 to determine minimum seat load per inch of port circumference; then multiply that value by the port circumference from table 2 Valve Plug Travel
See table 2 Yoke Boss and Valve Stem Diameters
See table 2 Approximate Weight
See table 2 Options
■Flushing trim, two plates used in place of Cavitrol IV trim, to protect valve body surfaces and Cavitrol IV trim from damage during pipeline flushing: ■characterized cage; and ■driver for installation and removal of cage retainer ■ENVIRO-SEAL® packing is available
Note
Neither Emerson, Emerson Process Management, nor any of their affiliated entities assumes responsibility for the selection, use and maintenance of any product. Responsibility for the selection, use, and maintenance of any product remains with the purchaser and end-user.
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Table
Table 1. Construction Materials and Temperature Capabilities
| PART |
MATERIALS |
TEMPERATURE CAPABILITIES |
| |
°C |
°F |
| Valve Body and Bonnet |
Standard |
WCC carbon steel casting |
See figure 6 |
See figure 6 |
| Optional |
WC9 alloy steel casting |
| Valve Plug |
S44004 (440C stainless steel heat-treated) |
-29 to 427 |
-20 to 800 |
| Valve Stem |
3/4 inch stem in NPS 4 body, S31600/S17400 (316/17-4PH) stainless steel |
-101 to 427 |
-150 to 800 |
| All other stems, 316 stainless steel |
-254 to 427 |
-425 to 800 |
| Seat Ring |
17-4/316 SST stainless steel |
-29 to 232 |
-20 to 450 |
| O-ring (separable seat ring construction for NPS 2, 4, & 6 only) |
Ethylene propylene |
-18 to 232 |
0 to 450 |
Upper Cage, Cage Retainer, and Lower Cage Assembly |
17-4/316 SST stainless steel (cages) and H1075 Cr Ct (retainer) |
-29 to 427 |
-20 to 800 |
| Valve Plug Seal Ring(1) |
Spring-loaded PTFE seal |
-18 to 232 |
0 to 450 |
| Valve Plug Backup Ring(1) |
S41600 (416 stainless steel) |
-29 to 427 |
-20 to 800 |
| Seal Ring Retainer(1) |
S30200 (302 stainless steel) |
-254 to 593 |
-425 to 1100 |
| Piston Ring(2) |
Graphite (FMS 17F27) |
-254 to 427 |
-425 to 800 |
| Bonnet Gasket |
Silver-plated N04400 nickel alloy |
-254 to 593 |
-425 to 1100 |
| Cage Gasket |
316 stainless steel/graphite |
-254 to 593 |
-425 to 1100 |
| Metal Packing Box Parts |
316 stainless steel |
-254 to 593 |
-425 to 1100 |
| Body-to-Bonnet Bolting |
Studs, steel SA193-B7; nuts, steel SA194-2H |
-29 to 427 |
-20 to 800 |
| Packing |
Standard |
Spring-loaded PTFE V-ring |
-46 to 232 |
-50 to 450 |
| Optional |
PTFE-impregnated composition |
-73 to 232 |
-100 to 450 |
| Laminated graphite/filament |
-18 to 427 |
0 to 800 |
|
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Table 2. Additional Valve Body Specifications
VALVE SIZE, NPS |
VALVE STEM DIAMETER |
YOKE BOSS DIAMETER |
TRAVEL |
PORT DIAMETER |
PORT CIRCUMFERENCE |
UNBALANCE AREA(1) |
APPROXIMATE WEIGHT |
| mm |
Inch |
mm |
Inch |
mm |
Inch |
mm |
Inch |
mm |
Inch |
cm2 |
Inch2 |
Kg |
Lb |
| 2 |
19.0 38.1 |
3/4 1-1/2(2) |
91 127 |
3-9/16 5 |
38 |
1.5 |
38.1 |
1.5 |
119.6 |
4.71 |
4.3 |
0.17 |
167 182 |
369 401 |
| 3 |
19.0 |
3/4 |
91 |
3-9/16 |
51 |
2 |
55.6 |
2.1875 |
174.5 |
6.87 |
6.6 |
0.26 |
301 |
664 |
| 4 |
19.0 25.4 69.8 |
3/4 1 2-3/4(3) |
91 127 178 |
3-9/16 5 7 |
64 |
2.5 |
69.9 |
2.75 |
219.4 |
8.64 |
8.1 |
0.32 |
532 532 554 |
1172 1172 1222 |
| 6 |
31.7 |
1-1/4 |
127 |
5 and 5H |
102 |
4 |
111.1 |
4.375 |
349.2 |
13.75 |
12.9 |
0.51 |
1512 |
3334 |
|
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Table 3. Additional Valve Body Specifications for TSO (Tight Shutoff) Trim
VALVE SIZE, NPS |
MAXIMUM TRAVEL |
YOKE BOSS SIZE(1) |
PORT DIAMETER |
PORT CIRCUMFERENCE |
CV REDUCTION AT 100% TRAVEL(2) |
| |
|
Nominal |
Actual TSO |
|
| mm |
Inch |
mm |
Inch |
mm |
Inch |
mm |
Inch |
mm |
Inch |
| 2 |
38 |
1.5 |
91 127 |
3-9/16 5 |
38.1 |
1.5 |
38.1 |
1.5 |
119.6 |
4.71 |
0% |
| 3 |
50.8 |
2 |
91 |
3-9/16 |
55.6 |
2.1875 |
55.6 |
2.1875 |
174.5 |
6.87 |
0% |
| 4 |
64 |
2.5 |
91 127 |
3-9/16 5 |
69.9 |
2.75 |
69.9 |
2.75 |
219.4 |
8.64 |
0% |
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Table 4. Dimensions
| VALVE SIZE, NPS |
END CONNECTION STYLE(1) |
A |
G |
D YOKE BOSS DIAMETER, mm (INCH) |
M |
| |
|
90 (3-9/16) |
127 (5) |
127 (5H) |
178 (7) |
|
| mm |
Inch |
mm |
Inch |
mm |
Inch |
mm |
Inch |
mm |
Inch |
mm |
Inch |
mm |
Inch |
| 2 |
BWE RF RTJ |
249 249 251 |
9.81 9.81 9.87 |
406 406 408 |
16.00 16.00 16.06 |
324 324 324 |
12.75 12.75 12.75 |
360 360 360 |
14.19 14.19 14.19 |
- - - - - - - - - |
- - - - - - - - - |
- - - - - - - - - |
- - - - - - - - - |
- - - 95.3 93.7 |
- - - 3.75 3.69 |
| 3 |
BWE |
256 |
10.06 |
552 |
21.75 |
324 |
12.75 |
- - - |
- - - |
- - - |
- - - |
- - - |
- - - |
- - - |
- - - |
| 4 |
BWE RF RTJ |
344 344 349 |
13.56 13.56 13.75 |
618 618 622 |
24.31 24.31 24.50 |
430 430 430 |
16.94 16.94 16.94 |
454 454 454 |
17.88 17.88 17.88 |
- - - - - - - - - |
- - - - - - - - - |
454 454 454 |
17.88 17.88 17.88 |
- - - 133.4 128.5 |
- - - 5.25 5.06 |
| 6 |
BWE RF RTJ |
457 457 464 |
18.00 18.00 18.25 |
1038 1038 1045 |
40.88 40.88 41.13 |
- - - - - - - - - |
- - - - - - - - - |
432 432 432 |
17.00 17.00 17.00 |
432 432 432 |
17.00 17.00 17.00 |
- - - - - - - - - |
- - - - - - - - - |
- - - 177.8 184.2 |
- - - 7.00 7.25 |
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