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Anti-Corrosion Performance of Magnesium Potassium Phosphate Cement Coating on Steel Reinforcement: The Effect of Boric Acid. | LitMetric

AI Article Synopsis

  • Magnesium potassium phosphate cement (MKPC) paste coatings are effective in preventing steel corrosion but their quick setting time poses challenges during application.
  • Adding boric acid as a retarder improves the setting time but negatively impacts the anti-corrosion performance in tests, especially in saline conditions.
  • The presence of boric acid leads to reduced polarization resistance, a compromised passivation layer, and increased pore formation, all contributing to a decrease in corrosion protection for coated steel.

Article Abstract

It has recently been found that magnesium potassium phosphate cement (MKPC) paste coating applied on the surface of steel reinforcement can effectively retard the onset of corrosion and suppress corrosion reactions. However, the fast-setting nature of MKPC-which is a merit in repair-can be problematic in a practical engineering process of coating the steel reinforcement with MKPC paste. To address this problem, boric acid (HBO) was added as a retarder in an MKPC formulation to prolong the setting time. This work investigated the impact of boric acid (at 5% by weight of MgO) on the anti-corrosion performance of MKPC paste coating through a series of electrochemical (EC) tests. The results showed that the anti-corrosion performance of MKPC paste coating for a mild steel bar could be interfered with by the presence of boric acid. In the same testing situation (immersed in 3.5 wt.% NaCl corrosion solution), the polarization resistance and corrosion current density of the group including boric acid were inferior and exceeded the corrosion thresholds prior to the control group without boric acid. Meanwhile, the time constant phase in the frequency range from 1 Hz to 10 kHz was rarely observed, implying that the presence of boric acid probably impaired the formation of the passivation layer. This decrease in anti-corrosion performance of MKPC paste coating could be related to the larger volume fraction of pores in the range from 0.1 to 10 µm that are formed during the initial stage of coating formation.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11547305PMC
http://dx.doi.org/10.3390/ma17215310DOI Listing

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