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January 23, 2026Actuators0 citationsOpen Access

Thermo-Structural and Dynamic Performance Analysis of a 42CrMo4 Steel Ball Screw Assembly

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OAOsama AliANAtif NiazOSOsama Salem

Key Points

  • The research aims to analyze the thermal and dynamic performance of a 42CrMo4 steel ball screw assembly.
  • Conducted thermal analysis to assess temperature rise and deformations.
  • Evaluated von Mises stress to ensure safety limits are met.
  • Performed modal analysis to examine frequency response and deformation patterns across modes.
  • Maximum temperature at ball nut reached 29.1 °C, a rise of 7.1 °C above ambient.
  • Thermal deformation observed was 77.81 μm, within acceptable thresholds.
  • Peaked von Mises stress recorded at 53.9 MPa.
  • First two modes accounted for dominating effective mass, with 90% captured by first 8 modes.

Abstract

This study presents a comprehensive thermo-structural and modal analysis of a ball screw assembly. Thermal analysis revealed a maximum temperature of 29.1 °C at the ball nut, corresponding to a total rise of 7.1 °C above ambient. The resulting thermal deformation reached 77.81 μm, while the von Mises stress peaked at 53.9 MPa, both within acceptable limits. Modal simulation of 360 modes showed a sharp increase in frequency with mode number and larger deformation patterns at the higher modes. The first two modes dominate the effective mass with the first 8 modes capturing over 90% of the cumulative effective mass. Overall, the results demonstrate stable thermal performance, limited deformation, low stress, and controlled vibrations, confirming the modeling approach and the suitability of 42CrMo4 steel for high-precision ball screw assemblies.

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Cite This Study

Ali et al. (2026) studied this question.

synapsesocial.com/papers/69731005c8125b09b0d1fbd6https://doi.org/10.3390/act15010066
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