Embedding

During the settling phase, the preload of a bolted joint initially decreases due to embedding effects. This “embedding” occurs through the plastic leveling of surface roughness in the contact areas, the loaded flanks of the mated threads, and other interface surfaces. The amount of set depends on the number of interface surfaces and the surface roughness. The settling process begins as early as the assembly stage and is completed within a few hours.

During the loosening phase, the initial preload force of a bolted joint decreases due to embedding effects. Embedding in bolted joints refers to a time- and load-dependent plastic deformation. Settlement results from the plastic leveling of roughness profiles, the deformation of microscopic surface asperities, or micro-relaxation at the interface between the screw and the clamped components—specifically in the areas of the parting surfaces between the screw head, the nut, and the clamped components (counterparts).

The result of the shortening of the clamping length is a decrease in the elastic preload force stored in the screw, which can impair operational safety—particularly slip resistance and sealing performance.

In contrast to creeping or relaxation, which occur over longer periods of time and often at elevated temperatures, embedding occurs during and shortly after assembly and is highly dependent on surface finish and assembly torque.

According to VDI 2230 Sheet 1, embedding is compensated for mathematically by a settlement reserve or by the use of screw locking elements with increased resilience to offset a loss of preload.

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