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      Fatigue strength of inner knurled interference fit joined by forming and cutting methods

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          Abstract

          The joining of machine parts by plastic forming is a common method for transmitting forces and torque. In drive trains, the ‘knurled interference fit’ has a high transmission capacity through the combination of frictional connection and form fit. In the present study, the shaft specimen made of C45 steel material is joined with an inner knurled hub made of 16MnCr5 case hardened steel. The influence of the joining process parameters on the torsional fatigue strength of the shaft-hub connection is investigated by means of experimental studies. The most important parameter is the chamfer angle of the knurled hub, which determines the rate of strain hardening in the material and differs between the cutting and forming joining processes. This study shows that knurled interference fit connections joined by forming achieve a higher fatigue strength and a higher maximum static torque than connections joined by cutting.

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          Author and article information

          Journal
          Frattura ed Integrità Strutturale
          Gruppo Italiano Frattura
          01 June 2019
          : 13
          : 49
          Affiliations
          [1 ] TU Chemnitz
          [2 ] Chemnitz University of Technology, Institute of Design Engineering and Drive Technology, Germany
          [3 ] Chemnitz University of Technology, Institute for Machine Tools and Production Processes, Germany
          Article
          5775ab2824134c29bed5ff340ae79f05
          d5ef6db8-e3fc-4fc8-bd35-ce34772744bc

          This work is licensed under a Creative Commons Attribution-NonCommercial-ShareAlike 4.0 Unported License. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/

          History
          Categories
          Mechanical engineering and machinery
          TJ1-1570
          Structural engineering (General)
          TA630-695

          Materials technology,Materials properties,Materials characterization,Engineering,Civil engineering,Mechanical engineering
          Inversed knurled interference fit,High-cycle fatigue testing,Notch fatigue,Torque transmission,Joining by plastic forming

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