THE STRESS FIELD AT THE TOP OF AN OPENED CRACK IN SAMPLES FROM 10TiNiCr175 SUBMITTED TO AN OSCILLATOR EXTENSION WITH THE ASYMMETRY COEFFICIENT R=0.1

  • ROŞCA VÂLCU
    UNIVERSITY OF CRAIOVA

Abstract

We took flat samples CT model, with siding cut, from stainless steel mark 10TiNiCr175. They were solicited at axial fatigue of eccentric extension, with the asymmetry coefficient R= 0.1. The samples were tested at the environment temperature (T=293K), namely at low temperatures, T= 253K and T= 213K. During the testing were retained the length variation of the fracture crack a and the numbers of corresponding cycles N. For the same coefficient asymmetry coefficient R= 0.1, at the three testing temperatures: T= 293 K, T= 253 K and T= 213 K, we have determined the stress intensity factor noted through ?K, the growth rate of the fracture crack da/dN, parameters necessary to the establishment of the stress field ? from the area of the defect's top.

Cuvinte cheie

crack cracking rate stress intensity factor (SIF) stress asymmetry coefficient solicitation cycle.