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Bi-layer cBN-based composites reinforced with oxide and non-oxide microfibers of refractory compounds. | LitMetric

AI Article Synopsis

  • Research on cubic boron nitride (PcBN) composites shows potential for improving cutting tool performance by incorporating microfibers made from refractory compounds.
  • The study focuses on creating two-layer composites reinforced with silicon carbide whiskers (SiCw) and aluminum oxide (AlO) microfibers to enhance stability during machining of hardened steels.
  • Tool-life tests demonstrate the effectiveness of these PcBN composites in cutting hardened KhVG steel under varying conditions, with various material properties analyzed for optimization.

Article Abstract

Research into new composites utilizing cubic boron nitride (PcBN) shows promise for enhancing cutting tool performance. The unique properties of these materials stem from the addition of microfibers made of refractory compounds to their structure. This study looks at developing two-layer composites based on cBN group BL, reinforced with SiCw and AlO microfibers. The goal is to improve tool stability when cutting hardened steels with impact loads. PcBN composite samples were made by sintering a mixture of cBN powder with bundles and microfibers under 7.7 GPa pressure. Bond material selection was based on analyzing the relationship between Poisson's ratio (η) and plasticity parameter (G/B). The density, Young's modulus, Poisson's ratio, and hardness of the composites were determined, and the microstructure of samples with TiCN bond was studied. Tool-life tests were conducted on two-layer cutting inserts made of PcBN reinforced with SiCw and AlO microfibers during the machining of hardened KhVG steel (HRC 55) under impact loads at cutting speeds of 100 and 200 m/min.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11066035PMC
http://dx.doi.org/10.1038/s41598-024-60856-3DOI Listing

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