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March 3, 2026Additive Manufacturing Frontiers0 citationsOpen Access

Laser powder bed fusion (L-PBF) with layer-by-layer ultrasonic roller pressing (USRP) for residual stress relaxation and analysis

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MZM. H. ZhaoQCQiyue CuiBQBo Qian

Key Points

  • The innovative L-PBF-USRP method reduces residual stress by 50 MPa in the X – Y plane, enhancing materials for manufacturing.
  • A residual stress prediction model analyzes mechanical loading during the ultrasonic roller pressing process, driving the findings.
  • The approach combines laser powder bed fusion and layer-by-layer ultrasonic roller pressing techniques, offering a new pathway in stress management.
  • Further exploration into the effects of frequency, amplitude, and roller ball radius on residual stresses is necessary for optimization.

Abstract

During the laser powder bed fusion (L-PBF) process, the high-speed movement of the laser heat source results in an inhomogeneous temperature and stress field, generating residual stresses. In this study, a novel method was proposed, which enhanced the L-PBF process by integrating mechanical loading with layer-by-layer ultrasonic roller pressing (USRP) to manage the residual stresses. The L-PBF-USRP method was developed to mitigate the internal residual stresses in the formed part on a layer-by-layer basis. The results showed that the L-PBF-USRP method reduced the residual stress in the X – Y plane by 50 MPa. In addition, a residual stress prediction model was formulated in this study to predict the USRP-induced residual stress by analyzing the mechanism of mechanical loading during layer-by-layer rolling. The effects of frequency, amplitude, and roller ball radius on the residual stress were analyzed using the residual stress prediction model.

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Cite This Study

Zhao et al. (2026) studied this question.

synapsesocial.com/papers/69a75dc3c6e9836116a27ffdhttps://doi.org/10.1016/j.amf.2026.200306
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