2022
DOI: 10.1016/j.ceramint.2021.10.086
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The novel and facile electrolysis method for removing the cobalt binder phase from large diameter polycrystalline diamond compacts

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Cited by 22 publications
(1 citation statement)
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“…For PDC cutter materials, there is large difference in thermal expansion coefficient between cobalt and diamond, which will result in the weakening of D-D bonds between diamond grains, a large residual stress will be generated, and the performance of PDC cutters will be degraded [5,6]. In view of this, researchers have carried out a lot of researches on residual cobalt decobalt technology, and summarized two methods to remove cobalt from diamond skeleton: strong acid soaking method [7][8][9] and electrochemical method [10][11][12]. However, in the process of decobalt treatment, tiny pores are generally generated in the materials, which will weaken the strength of PDC cutter.…”
Section: Introductionmentioning
confidence: 99%
“…For PDC cutter materials, there is large difference in thermal expansion coefficient between cobalt and diamond, which will result in the weakening of D-D bonds between diamond grains, a large residual stress will be generated, and the performance of PDC cutters will be degraded [5,6]. In view of this, researchers have carried out a lot of researches on residual cobalt decobalt technology, and summarized two methods to remove cobalt from diamond skeleton: strong acid soaking method [7][8][9] and electrochemical method [10][11][12]. However, in the process of decobalt treatment, tiny pores are generally generated in the materials, which will weaken the strength of PDC cutter.…”
Section: Introductionmentioning
confidence: 99%