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Application area

  • These rivet nuts can be universally used for component thicknesses from 0.6 to 3.0 mm and tensile strengths of up to 1500 MPa
  • Suitable for a wide range of high dynamic, static and impact load conditions
  • Suitable for use where threaded fittings need to be resistant to high axial forces
  • Also suitable for the accommodation of lateral forces
  • Can be used for aluminum through press hardened steel
  • Suitable for use with surface-treated, galvanized or painted components
  • Optimized in terms of weight and costs as compared to the RND™ (standard)

Technical Characteristics

  • Thread sizes: M6 to M8
  • P.C. 8.8 (standard)
  • Resistance to corrosion in accordance with the customer’s requirements
  • No component material thinning during riveting process
  • No adverse effects on the joint or function of the thread; no damage due to weld spatters
  • High resistance to twist and ejection forces, even for thin sheet metals
  • Water-tight and gas-tight in reference to the requirements demanded by the automotive sector and dependent on the quality of the component material
  • Nut positioning tolerance ranges can be halved as compared to welding methods
  • Straightforward, in-process and non-destructive quality testing possible by worker instead of elaborate destructive tests
  • Can withstand high loads on both sides
Unit of Measure

Specifications

Type

N/A Rivet Nuts

Material

N/A DIN EN 20 898 *

Thread Size d1

N/A M8x1.25

Thread Tolerance

N/A 6G DIN 13-20 *

Property Class

N/A 8 DIN EN ISO 898-2 *

Surface Coating

N/A Uncoated *

Material Application Range

N/A Aluminum - PHS

Panel Thickness Range

N/A 0.80 - 3.00 mm

Fastening Method

N/A Rivet

Panel Preparation

N/A Pre pierce and form

Nut Outside Diameter Ød2 **

N/A 10.4 mm RND_Dimension.JPG

Nut Outside Diameter Ød3

N/A 8.5 mm

Nut Outside Diameter Ød5

N/A 16 mm

Nut Outside Diameter Ød6

N/A 10.7 mm

Nut Thickness l1

N/A 3.4 mm

Nut Thickness l2

N/A 4.9 mm

Nut Thickness l3

N/A 2.5 mm

Notes

N/A *Ask for possible variation
**Click the reference image to enlarge