EASYboss®

Specification

  • The Smart Alternative to Sheet Metal Clamping Nuts

    The EASYboss® plastic nut was developed as a standardised alternative to traditional sheet metal clamping nuts and is ideal for use with thin-walled components where direct screw fastening is not possible due to design constraints. Used in combination with the EJOT EVO PT® screw, it creates a reliable, corrosion-free connection that can withstand dynamic loads. Tolerances are reliably compensated for, and assembly is simplified making it suitable for automation. The result is a mountable screw boss with fewer variants and reduced assembly costs, providing a durable, recyclable fastening solution.

  • Overview

    • Side snap-fit assembly
    • High axial load-carrying capacity due to large bearing surface
    • Reduced component weight
    • No corrosion
    • Consistent tightening torques
    • No catching of the parts
    • Easy, no-damage disassembly
    • Recyclable

Hotline

Applications Engineer

CAD & more - Your Online-Service

In this area we provide CAD data in various formats as well as PDFs of the technical drawings of our products EVO PT®, DELTA PT®, SHEETtracs® ALtracs® Xt and ALtracs® Plus. Additionally, CAD & more offers you the possibility to design your individual joints with the aid of prognosis programs or to check their feasibility by APPLICATION CHECKs. Furthermore, you can download the latest product brochures, technical publications and the EJOT company standards.


CAD & more

The most suitable clip

Main fields of application for the EASYboss® are designs where direct assembly is not possible due to small component thickness. The EASYboss® is assembled through snap fitting sideways to the fastening direction from the edge of the part or through an access hole. Tolerances of the hole pattern can be reliably compensated by the fastening element. For varying material and hole wall thicknesses a range of different sizes are available. In particular the combination of EJOT EVO PT® screw and EASYboss® offers ideal prerequisites for the direct assembly into plastic.