Engineering Reference & ASME Code Basis
1. Core Formula & Variable Definitions
ASME PCC-1 Appendix O (target torque & gasket stress limits) · ASME BPVC VIII-1 Appendix 2 (bolted flange connections — m, y) · ASME B16.20 / B16.21 (gasket contact geometry) · ASME B16.5 (flange bolting & raised-face OD)
Ag = (π/4)·(ODg² − IDg²)
Fb = Nb·Sbolt·Ab · H = (π/4)·G²·P (G = ODg)
σg,inst = Fb/Ag · σg,op = (Fb − H)/Ag
Required: σg,inst ≥ max(y, σg,min_seal) and σg,op ≥ m·P · PCC-1 App. O max crush band
Screening calculator for average gasket stress using ASME B16.20 / B16.5 geometry, ASME VIII-1 Appendix 2 m and y factors, and ASME PCC-1 Appendix O stress-band status. Assembly seating floor is max(y, σ_g,min_seal). Bolt preload uses nominal shank area A_b = π/4·d_b² (not tensile stress area). Hydrostatic diameter G is taken at OD_g for field screening. Creep, flange rotation, and thermal transients require FEA / detailed joint analysis.
- A_g (Gasket contact area) — π/4 · (OD_g² − ID_g²) of the sealing contact annulus.
- F_b (Total bolt preload) — N_b · S_bolt · A_b using nominal shank area.
- H (Hydrostatic end force) — π/4 · G² · P with G = OD_g for this screening tool.
- σ_g,op (Operating gasket stress) — (F_b − H) / A_g — primary hero value.
- σ_g,inst (Installation gasket stress) — F_b / A_g at assembly (before pressure end force).
- m, y (App. 2 gasket factors) — Maintenance factor m and seating stress y from VIII-1 Table 2-5.1 style values by gasket type.
2. Allowances, Tolerances & Standards
Average gasket stress screening with uniform bolt load. Not a substitute for Appendix 2 flange design or FEA.
Field preload screening uses shank area so results align with PCC-1 style examples. Tensile stress area is more conservative for stud capacity.
End force H uses gasket OD for screening. Formal App. 2 may use G = OD − 2b.
Contact annulus from B16.20 sealing-element OD and inner-ring OD in gasketDimension.json.
Compressed fiber / PTFE / soft rubber use B16.5 raised-face OD and B36 pipe OD as a seating proxy.
Quick Reference Lookup Table
| Duty | Gasket | P | S_bolt | σ_g,op | Status |
|---|---|---|---|---|---|
| 2" Cl.300 | Spiral wound filled | 740 psi | 45 ksi | 18.4 ksi | OPTIMAL |
| DN50 Cl.300 | Spiral wound filled | 51 bar | 310 MPa | 126.6 MPa | OPTIMAL |
| 3" Cl.150 | Compressed fiber | 285 psi | 30 ksi | 3.1 ksi | UNDER_STRESSED* |
| DN80 Cl.150 | Compressed fiber | 19.6 bar | 207 MPa | 21.5 MPa | UNDER_STRESSED* |
| 4" Cl.150 | Spiral wound filled | 285 psi | 30 ksi | — | Lookup |
| 6" Cl.300 | PTFE sheet | 740 psi | 40 ksi | — | Lookup |
| 8" Cl.150 | Compressed fiber | 285 psi | 30 ksi | — | Lookup |
| 12" Cl.300 | Spiral wound filled | 740 psi | 45 ksi | — | Lookup |
*Compressed-fiber Class 150 uses 4 bolts × RF/pipe annulus — operating stress is typically below m·P at moderate bolt stress; raise S_bolt or change construction. Spiral-wound 2" Class 300 default matches 18.4 ksi σ_g,op.
3. Material & Code Limitations
m·y factors and PCC-1 min/max bands are type-based screening values. Confirm OEM datasheets before assembly.
| Material Group | Temperature Range | Allowable Stress / Limit | Engineering Notes |
|---|---|---|---|
| Soft rubber / elastomer | — | Low crush limit (~800 psi max band) | OVER_CRUSH_RISK triggers quickly if bolt stress is aggressive. |
| Spiral wound filled (SS / graphite) | — | m ≈ 3.0, y ≈ 10 ksi; PCC-1 band ~5–25 ksi | Default construction for the 2" Class 300 worked example. |
| Compressed fiber / PTFE sheet | — | m ≈ 2.0, y ≈ 1.6 ksi | RF/pipe annulus proxy; often under-stressed on small Class 150 joints. |
| RTJ soft iron | — | m ≈ 5.5, y ≈ 18 ksi | Uses pitch±width annular proxy when RTJ rows exist. |
4. Step-by-Step Worked Example
Field VerificationShowHide
Worked example — 2" Class 300 spiral-wound (imperial)
Screen operating gasket stress for NPS 2 Class 300 spiral-wound filled at 740 psi with 45 ksi target bolt stress.
Contact area
Sealing-element OD × inner-ring OD.
Bolt preload
Nominal shank area screening.
Hydrostatic end force
G = OD_g for this tool.
Operating stress
Status OPTIMAL vs m·P and PCC-1 band.
5. Frequently Asked Questions & Technical References
ShowHide
OPTIMAL means installation stress is at or below the PCC-1 style σ_g,max_allow, assembly stress meets the seating floor max(y, σ_g,min_seal), and σ_g,op ≥ m·P. Results are average-stress screening — not Appendix 2 flange design.
This screening tool uses nominal shank area A_b = π/4·d² so preload maps consistently to published PCC-1 field examples. Tensile stress area is more conservative for stud capacity checks — use project bolting procedures for final torque.
No. It screens average gasket stress and App. 2 m·y sealing checks. Flange moments, hub stress, and rotation require formal Appendix 2 / FEA.
Use flange-dimension-weight, bolt-torque-tensioning, flange-bolt-tightening-sequence, and flange-bolt-wrench-size-lookup to confirm geometry, torque, sequence, and wrench AF.