Abstract

The hoisting rope in the kilometer-deep coal mine exhibits the tension–torsion fretting fatigue behaviors of inclined crossed steel wires in acid solution. Distinct contact load and torsion angles of steel wires in the rope cause different crack propagation behaviors, which greatly affect the fatigue lives of steel wires. Therefore, the effects of contact load and torsion angle on the crack propagation behaviors of inclined crossed steel wires during tension–torsion fretting fatigue in acid solution were investigated in the present study. The three-dimensional X-ray tomographic micro-imaging system was used to reveal evolutions of crack profiles and crack propagation depths during the test. The evolution of friction coefficient between steel wires during the test is presented. The three-dimensional white light interference microscope, electrochemical analyzer, and scanning electron microscope were employed to investigate the wear depth profiles, Tafel polarization curves and impedance spectra, and wear scar morphologies, respectively, of steel wires. Effects of contact load and torsion angle on crack propagation behaviors of inclined crossed steel wires during the tests were explored through analyses of friction and wear mechanisms and electrochemical corrosion damage. The results show that as the contact load and torsion angle increase, the crack propagation depth and rate of steel wire both increase and the fatigue life of steel wire decreases. Those are mainly attributed to the increases in the average tangential force between steel wires, wear depth, electrochemical corrosion tendency, and surface damage of steel wire as well as the decrease in corrosion resistance.

Highlights

  • ExperimentalThe initial tension was applied to fatigue wire using the servo electric cylinder

  • Introduction iationsWith the depletion of shallow coal resources, China has entered the mining stage of kilometer-deep coal resources

  • The tension–torsion fretting fatigue life of steel wire consists of crack initiation and propagation lives

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Summary

Experimental

The initial tension was applied to fatigue wire using the servo electric cylinder. The three-dimensional X-ray tomographic micro-imaging system is used to reveal veal crack propagation characteristics of fatigue wires after the tests [1,10]. Figure fretting fatigue teststests of inclined crossed steel wires acid solution:. The testing parameters are as follows [1,4]: crossing angle between steel wires of. 3. Effect of Contact Load on Crack Propagation Characteristics of Inclined Crossed. The multiaxial fatigue crack always initiates at the maximum shear stress plane [12,13], which indicates the crack the wearfrom scar the andmiddle propagation alongedge the direction

The evolutions of Ftt-D
Effects of of contact curves and Nyquist diagrams of fatigue
Effect of Torsion
10. Fitting
12. Effects
Conclusions

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