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Fatigue Crack Growth Rates and Crack Tip Opening Loads in CT Specimens Made of SDSS and Manufactured Using WAAM. | LitMetric

AI Article Synopsis

  • - Additive manufacturing allows for complex structural designs, but using these parts for load-bearing applications under cyclic loading needs careful analysis of material fatigue properties, which vary from traditional manufacturing methods.
  • - This research specifically examines super duplex stainless steels made with wire arc additive manufacturing (WAAM) and their fatigue crack growth rates, with a focus on how crack tip shielding mechanisms affect performance.
  • - The study utilized the compliance-based method to assess crack tip opening loads in various specimens and discovered that while crack growth rates were similar in different directions of the WAAM fabrication, the deposition direction significantly impacts the fatigue life due to variations in crack tip opening loads.

Article Abstract

Additive manufacturing offers greater flexibility in the design and fabrication of structural components with complex shapes. However, the use of additively manufactured parts for load-bearing structural applications, specifically involving cyclic loading, requires a thorough investigation of material fatigue properties. These properties can be affected by many factors, including residual stresses and crack tip shielding mechanisms, which can be very different from those of conventionally manufactured materials. This research focuses on super duplex stainless steels (SDSSs) fabricated with wire arc additive manufacturing (WAAM) and investigates their fatigue crack growth rates and the net effect of crack tip shielding mechanisms. Using the compliance-based method, we measured crack tip opening loads in compact tension (CT) specimens with cracks propagating longitudinally and transversely to the WAAM deposition direction. It was found that fatigue crack growth rates were very similar in both directions when correlated by the effective stress intensity factor range. However, the differences in crack tip opening loads explain a quite significant influence of the deposition direction on the fatigue life.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11050873PMC
http://dx.doi.org/10.3390/ma17081842DOI Listing

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