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October 2, 2025Metals6 citationsOpen Access

Optimization of Heat Treatment Process and Strengthening–Toughening and Mechanism for H13 Steel

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YWYuzhong WangXRXiaoping RenZHZhaoyang Hou

Key Points

  • Optimized heat treatment improves the strength and toughness of H13 steel, addressing vulnerability to fracturing.
  • Quenching at 1020 °C and tempering at 530 °C yielded peak mechanical properties, showing significant enhancements.
  • Experimental analysis revealed grain coarsening at elevated temperatures resulting in increased hardness and altered microstructure.
  • Findings highlight the importance of tailored heat treatment processes for enhancing the durability of industrial materials like H13 steel.

Abstract

This study investigates H13 steel through Q-P-T (quenching–partitioning–tempering) heat treatment experiments, focusing on the effects of quenching and tempering temperatures on its microstructure and mechanical properties. Experimental results demonstrate that elevated heat treatment temperatures induce grain coarsening and increased hardness. Under the optimized thermal processing parameters of 1020 °C quenching followed by 530 °C tempering, H13 steel achieves an optimal balance between strength and toughness. This balanced performance effectively addresses the issue of insufficient toughness and susceptibility to fracturing when H13 steel is utilized as shank material.

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Cite This Study

Wang et al. (2025) studied this question.

synapsesocial.com/papers/68de5d9c83cbc991d0a2035chttps://doi.org/10.3390/met15101101
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