Gesipa - Main Catalog Sida 19
Kommersiell Kunderbjudande **Toppförsäljare från Gesipa Blindniettechnik GmbH
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THE APPLICATION-SPECIFIC GESIPA® FASTENING The basic features of the standard blind rivet are defined by various DIN EN ISO standards. These features primarily involve the geometric dimensions and mechanical properties. Other fastener properties, such as the choice of material and surface coating, are defined very generally by the standards and are left up to the manufacturer. These specifications about the blind rivet features seriously limit the tolerances of the connection parameters and the feasible requirements. Blind rivets that comply with DIN EN ISO standards are always designed for fixed parts. CUSTOMER REQUIREMENT GESIPA® SOLUTION Adaption to rubber, wood, plastic and other materials Definition of max. / min. tightening value or clamping force Watertightness Material + stamping + coating Accessibility problem Extended nosepiece in combination with a rivet mandrel extension Corrosion resistance Through organic and inorganic surfaces e.g. Zn, ZnNi, Delta Seal, stainless steel A2 and A4 or Monel® Organic Topcoat No noise Monitored rest mandrel locking Tolerance compensation Borehole diameter larger than DIN High device and system availability Device and fastener matched to each other, GESIPA®-general system 1 GESIPA®-FEM SIMULATION EFFICIENT AND CUSTOMER-ORIENTED DEVELOPMENT USING FEM SIMULATION The Finite Element Method (FEM) works by breaking down a component into a finite number of defined geometric elements. Boundary conditions, such as the application of force and displacement, can be defined for these elements, and the structure’s reaction can be calculated by applying physical laws. The result is the virtual simulation of deformation processes in the production process or the process of setting a joining element. BENEFITS • Simulation integrated into the concept phase • Customer-orientated development and shorter development times • Targeted tool design and optimisation of the production process • Reduction of development and product costs • Savings and prevention of quality costs • Positive contribution to decarbonisation by increasing effectiveness and efficiency throughout the entire product life cycle 17
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