

Yoshitake AL-32T closed-type safety relief valve. Features all-stainless steel construction, FKM soft seat for zero leakage, and JIS 10K loose flange connection. Suitable for air, water, and oil.

Yoshitake AL-32T safety relief valves are closed-type valves used mainly in various pressure vessels, instrumentation devices, and at the outlet of pressure reducing valves to prevent accidents caused by abnormal pressure rise. The AL-32T features an all-stainless steel construction with a soft seat (FKM O-ring), providing excellent air tightness. It is highly suitable for applications where valve seat leakage is not tolerated, such as with air, water, oil, and other non-dangerous fluids.

| Model | AL-32T | AL-32T-N |
|---|---|---|
| Structure | Closed type | Closed type |
| Application | Air, water, oil, other non-dangerous fluid | Cold and hot water |
| Working pressure | 0.05 - 1.0 MPa | 0.05 - 1.0 MPa |
| Working temperature | 5 - 120°C | 5 - 100°C |
| Connection | JIS 10K loose flange | JIS 10K loose flange |
INFO
Please contact us when using for oil. The AL-32T-N model features JWWA approval.

| Nominal size | D (mm) | L (mm) | H1 (mm) | H (mm) | Flow area (mm²) | Weight (kg) |
|---|---|---|---|---|---|---|
| 15A | 16 | 63 | 97 | 185 | 20.1 | 2.4 |
| 20A | 21 | 87 | 101 | 187 | 34.6 | 2.8 |
| 25A | 26 | 92 | 119 | 215 | 53.0 | 4.4 |
| 32A | 33 | 99 | 135 | 255 | 93.3 | 5.2 |
| 40A | 41 | 109 | 140 | 281 | 135.2 | 6.5 |
| 50A | 51 | 114 | 162 | 332 | 208.2 | 11.3 |
Note: The outlet flange is 1 size larger than the nominal size.

| No. | Part Name | Material |
|---|---|---|
| 1 | Spring Case | Cast Stainless Steel (SCS14A or SCS13) |
| 2 | Valve Seat | Stainless Steel (SUS316) |
| 3 | Valve | Cast Stainless Steel (SCS14A) |
| 4 | Valve Cover | Stainless Steel (SUS304) |
| 5 | O Ring | FKM |
| 6 | C Ring | Stainless Steel (SUS) |
| 7 | Spindle | Stainless Steel (SUS) |
| 8 | Spring | Stainless Steel (SUS304) |
| 9 | Bottom Spring Plate | Stainless Steel (SUS) |
| 10 | Top Spring Plate | Stainless Steel (SUS) |
| 11 | Adjusting Screw | Stainless Steel (SUS) |
| 12 | Lock Nut | Stainless Steel (SUS) |
| 13 | Cap | Stainless Steel (SUS) |
| 14 | Gasket | PTFE |
| 15 | Gasket | PTFE |
Capacity (kg/h) based on Pressure vessel structure standard:
| Nominal size | Blowout area [mm²] | 0.05 MPa | 0.1 MPa | 0.2 MPa | 0.3 MPa | 0.4 MPa | 0.5 MPa | 0.6 MPa | 0.7 MPa | 0.8 MPa | 0.9 MPa | 1.0 MPa |
|---|---|---|---|---|---|---|---|---|---|---|---|---|
| 15A | 20.1 | 25 | 33 | 48 | 65 | 81 | 98 | 114 | 131 | 147 | 164 | 181 |
| 20A | 34.6 | 44 | 57 | 83 | 111 | 140 | 169 | 197 | 226 | 254 | 283 | 311 |
| 25A | 53.0 | 67 | 87 | 127 | 171 | 215 | 258 | 302 | 346 | 390 | 433 | 477 |
| 32A | 93.3 | 113 | 147 | 214 | 288 | 362 | 435 | 509 | 582 | 656 | 730 | 803 |
| 40A | 135.2 | 169 | 221 | 321 | 431 | 542 | 652 | 762 | 872 | 982 | 1093 | 1203 |
| 50A | 208.2 | 262 | 341 | 496 | 666 | 836 | 1006 | 1176 | 1346 | 1516 | 1687 | 1857 |
Capacity (m³/h) based on Yoshitake standard:
| Nominal size | Blowout area [mm²] | 0.05 MPa | 0.1 MPa | 0.2 MPa | 0.3 MPa | 0.4 MPa | 0.5 MPa | 0.6 MPa | 0.7 MPa | 0.8 MPa | 0.9 MPa | 1.0 MPa |
|---|---|---|---|---|---|---|---|---|---|---|---|---|
| 15A | 20.1 | 0.4 | 0.5 | 0.9 | 1.1 | 1.3 | 1.5 | 1.6 | 1.8 | 1.9 | 2.0 | 2.1 |
| 20A | 34.6 | 0.6 | 0.9 | 1.6 | 2.0 | 2.3 | 2.6 | 2.8 | 3.1 | 3.3 | 3.5 | 3.7 |
| 25A | 53.0 | 1.0 | 1.5 | 2.5 | 3.1 | 3.6 | 4.0 | 4.4 | 4.7 | 5.1 | 5.4 | 5.7 |
| 32A | 93.3 | 1.8 | 2.6 | 4.5 | 5.5 | 6.3 | 7.1 | 7.8 | 8.4 | 9.0 | 9.5 | 10.0 |
| 40A | 135.2 | 2.7 | 3.8 | 6.5 | 7.9 | 9.2 | 10.3 | 11.3 | 12.2 | 13.0 | 13.8 | 14.6 |
| 50A | 208.2 | 4.1 | 5.9 | 10.0 | 12.3 | 14.2 | 15.9 | 17.4 | 18.8 | 20.1 | 21.3 | 22.4 |
Blowout operation: As the inlet pressure approaches the blowout pressure, the force of fluid pushing up the valve approaches the force of the spring pressing down the valve. The safety relief valve commences to blow when the inlet pressure reaches around 3% below the blowout pressure. The fluid accumulates gradually on the pressure groove and when the fluid pressure reaches the blowout pressure the valve pops.
Closing operation: Since the inlet pressure of the safety relief valve decreases when the fluid is released into the atmosphere by the pop action of the valve, the force of fluid lift is lowered. At this point, the repelling force of the spring becomes larger than the force of fluid lift and thus the valve closes. In addition, while the safety relief valve discharges, pressure of fluid entering into the back of the valve (back pressure) adds to the closing force.

DANGER
Warning
WARNING
Caution
Check the following items while the system is in operation:
| Trouble | Cause | Remedy |
|---|---|---|
| Leakage detected visually/aurally at the outlet | 1. Foreign substance or scale stuck on contact surface. 2. Damage on contact surfaces. 3. Excessive vibration applied to the piping. 4. Pressure difference between set pressure and normal working pressure is too small. 5. Pressure momentarily exceeds set pressure because of fluid pulsation. 6. Fluid flows into the outlet piping. | 1. Operate the product to eliminate foreign substance. 2. Disassemble and replace parts. 3. Do not use on excessively vibrating equipment. 4. Increase the pressure difference. 5. Raise set pressure or lower normal working pressure. 6. Change piping layout. |
| Blows at a pressure lower than the set pressure | 1. Product specifications are not consistent with use condition. 2. Pressure gauge is out of order. 3. Product does not keep accuracy of its set pressure. | 1. Check set pressure indication. Replace if unsuitable. 2. Calibrate or replace pressure gauge. 3. Readjust set pressure. |
| Does not operate at the set pressure | 1. Product specifications are not consistent with use condition. 2. Pressure gauge is out of order. 3. Sliding parts do not move smoothly. 4. Back pressure at the piping of the product outlet. 5. Product does not keep accuracy of its set pressure. | 1. Check set pressure indication. Replace if unsuitable. 2. Calibrate or replace pressure gauge. 3. Disassemble and clean. 4. Remove back pressure. Change piping layout. 5. Readjust set pressure. |
| Does not stop blowing | 1. Foreign substance or scale stuck on contact surface. 2. Sliding parts do not move smoothly. 3. Normal working pressure exceeds closing pressure. 4. Installed at outlet side of malfunctioning pressure reducing valve. | 1. Operate the product to eliminate foreign substance. 2. Disassemble and clean. 3. Increase difference between set pressure and normal working pressure. 4. Repair the pressure reducing valve. |
Yoshitake Safety Valves / Relief Valves
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