Nylock Nuts
A prevailing-torque nylon lock nut manufactured to DIN 982 / ISO 7040 — the most widely used vibration-resistant nut in industrial, automotive and structural assembly. The nylon insert locks the nut in place without adhesives or additional hardware. Available in MS zinc plated, SS 304 and SS 316 in metric M5 to M22. Ready stock Bengaluru.
What is a Nylock Nut?
A nylock nut — also known as a nylon lock nut or prevailing-torque lock nut — is a standard metric hex nut with a nylon insert collar crimped into its top face. When threaded onto a bolt, the nylon ring deforms around the bolt threads and creates a controlled frictional grip that resists self-loosening under vibration, dynamic loading, and thermal cycling. No spring washer, thread locker, or locking wire is required — the locking action is built into the fastener.
Manufactured to DIN 982 / ISO 7040, nylock nuts are the most widely used vibration-resistant nut in general industry. RM Traders stocks them in MS zinc plated for standard environments, SS 304 for moderate corrosion resistance, and SS 316 for marine, chemical, and food-grade applications — in metric sizes M5 to M22.
Standards & Specifications
Nylock nuts are manufactured and tested to international standards covering dimensions, thread tolerance, and minimum prevailing-torque performance:
- DIN 982 / ISO 7040 — Prevailing-torque type hexagon nuts with non-metallic insert, style 2 (nut height ≥ nominal diameter). Specifies across-flat dimensions, overall height (h), metal-section height (m), nylon insert position, and minimum prevailing-off torque for each size. DIN 982 and ISO 7040 are technically equivalent and fully interchangeable.
- Thread tolerance 6H — Standard internal thread fit per ISO 965. Compatible with all metric 6g bolts and studs in the same size range.
- Nylon insert material — Polyamide (PA 6/6) — Rated for continuous service up to 120°C. Not suitable for temperatures above 120°C, strong acids, or chlorinated solvents.
- Prevailing-torque performance — Per DIN 982 / ISO 7040, minimum prevailing-off torque is tested after five installation/removal cycles. Locking performance must be maintained across all five cycles.
Technical Drawing & Dimensional Tolerances
Key dimensions: s = Width across flats · e = Width across corners · h = Overall height (incl. nylon) · m = Metal-section height
| Size | Pitch P (mm) | A/F — s nom (mm) | s min (mm) | A/C — e min (mm) | Height h max (mm) | h min (mm) | Metal m min (mm) |
|---|---|---|---|---|---|---|---|
| M5 | 0.80 | 8 | 7.78 | 8.79 | 6.3 | 6.0 | 4.4 |
| M6 | 1.00 | 10 | 9.78 | 11.05 | 8.0 | 7.7 | 4.9 |
| M7 | 1.00 | 11 | 10.73 | 12.12 | 8.5 | 8.2 | 6.14 |
| M8 | 1.25 | 13 | 12.73 | 14.38 | 9.5 | 9.14 | 6.44 |
| M10 | 1.50 | 17 | 16.73 | 18.90 | 11.5 | 11.14 | 8.04 |
| M12 | 1.75 | 19 | 18.67 | 21.10 | 14.0 | 13.64 | 10.37 |
| M14 | 2.00 | 22 | 21.67 | 24.49 | 16.0 | 15.30 | 12.10 |
| M16 | 2.00 | 24 | 23.67 | 26.75 | 18.0 | 17.30 | 14.10 |
| M18 | 2.50 | 27 | 26.16 | 29.56 | 20.0 | 19.16 | 15.10 |
| M20 | 2.50 | 30 | 29.16 | 32.95 | 22.0 | 20.70 | 16.90 |
| M22 | 2.50 | 32 | 31.00 | 35.03 | 25.0 | 23.70 | 18.10 |
All dimensions in mm per DIN 982 / ISO 7040 — Product Grade A. Thread tolerance 6H. h = overall nut height including nylon insert · m = minimum metal (load-bearing) section height · s = across flats · e = across corners minimum.
Sizes Available
Nylock nuts are stocked in M5 to M22 in all three materials. All sizes are metric coarse pitch per DIN 982 / ISO 7040.
| Size × Pitch | MS Zinc Plated | SS 304 (A2) | SS 316 (A4) |
|---|---|---|---|
| M5 × 0.8 | ✓ | ✓ | ✓ |
| M6 × 1.0 | ✓ | ✓ | ✓ |
| M7 × 1.0 | ✓ | ✓ | ✓ |
| M8 × 1.25 | ✓ | ✓ | ✓ |
| M10 × 1.5 | ✓ | ✓ | ✓ |
| M12 × 1.75 | ✓ | ✓ | ✓ |
| M14 × 2.0 | ✓ | ✓ | ✓ |
| M16 × 2.0 | ✓ | ✓ | ✓ |
| M18 × 2.5 | ✓ | ✓ | ✓ |
| M20 × 2.5 | ✓ | ✓ | ✓ |
| M22 × 2.5 | ✓ | ✓ | ✓ |
Applications
Nylock nuts are the preferred vibration-resistant fastener wherever joints experience dynamic loads, engine vibration, or repeated thermal cycling — and where regular disassembly is required. They eliminate the need for secondary locking hardware in most standard applications.