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Mechanical Wear and Friction Behavior of 30CrMnSiNi2A Steel Rocket Sled Sliders Under High-Speed and Heavy-Load Conditions: A Finite Element Analysis

  • Ye Hao
  • , Naiming Lin
  • , Lin Wu
  • , Kai Yan
  • , Weihua Wang
  • , Yuan Yu
  • , Qing Zhou
  • , Zhiqi Liu
  • , Qunfeng Zeng
  • , Dongyang Li
  • , Yucheng Wu
  • Taiyuan University of Technology
  • Ltd.
  • CAS - Lanzhou Institute of Chemical Physics
  • Taiyuan University of Science and Technology
  • School of Mechanical Engineering
  • University of Alberta
  • Hefei University of Technology

Research output: Contribution to journalArticlepeer-review

Abstract

The rocket sled slider is a key connection component between the rocket sled and the track for support, guidance and load-bearing, ensuring the system’s safe and reliable operation. Wear of sliders under high—velocity and heavy—load conditions is crucial for equipment reliability. This study establishes a wear prediction model for sled rails using ANSYS, incorporating a dimensionless acceleration factor into the simulation. By analyzing dynamic characteristics of contact friction stress, wear volume, depth, and stress over time, the tribological characteristics of 30CrMnSiNi2A steel sliders were studied. The simulation results showed that during dry—friction sliding, slider wear is highly related to speed and load, increasing significantly as they increase. The slider’s contact surface has non-uniform stress distribution with stress concentration and gradient changes. Quantitative analysis has revealed that friction stress is positively correlated with load, and its sensitivity to speed changes is high at low speeds and relatively low at high speeds.

Original languageEnglish
Article number122
JournalMetals
Volume16
Issue number1
DOIs
StatePublished - Jan 2026

Keywords

  • 30CrMnSiNi2A steel
  • numerical simulation
  • rocket sled slider
  • wear behavior

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