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February 14, 2026Engineering Research0 citationsOpen Access

Enhanced design approach for keyed connections considering shaft keyway deformation

BMBenjamin MuhammediAHAlexander HasseELErhard Leidich

Key Points

  • To develop a design criterion for keyed connections that better assesses torque transmission based on shaft notch deformation.
  • Introduced a new design criterion focusing on critical plastic deformation at the shaft notch.
  • Performed numerical simulations using ABAQUS to evaluate performance.
  • Conducted experimental tests on a hydraulic torque bench for various steel types.
  • Compared results with DIN 6892 Method B to validate the new criterion.
  • The new design criterion provides a more accurate representation of torque transmission capacity.
  • It showed improved performance in low-strength ductile steels over the current standards.
  • Analysis revealed that existing methods underestimated torque transmission based on surface pressure.

Abstract

Abstract Keyed connections (KC) are among the most common types of shaft-hub connections (SHC) due to their simplicity in assembly and disassembly. However, the current design standard DIN 6892 limits torque transmission based on critical surface pressure, which may underestimate performance because it neglects the complex interaction between material properties, geometry, and loading conditions. This study introduces a new design criterion based on the related critical plastic deformation at the shaft notch, allowing a more accurate assessment of torque transmission, particularly for low-strength ductile steels where surface pressure exceedance is the predominant failure mode. Numerical simulations using ABAQUS and experimental tests on a hydraulic torque bench were carried out for KC made of C45+N and 42CrMoS4+QT steels. Comparison with DIN 6892 Method B shows that the proposed criterion better represents the actual transmission capacity and accounts for variations in shaft diameter. This approach enables more efficient use of material strength and supports resource-efficient SHC design.

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Cite This Study

Muhammedi et al. (2026) studied this question.

synapsesocial.com/papers/699010f22ccff479cfe573fahttps://doi.org/10.1007/s10010-025-00934-8
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