Ai Feedback
Exact(5)
In summary, the PVA/ZrO2-based composite coatings can be considered an effective surface modification of stainless steel implants.
Such duplex treatments show great potential for surface modification of stainless steels for applications in aggressive corrosive-wear environments.
Being part of a larger project on using different forms of nickel titanium (NiTi) in the surface modification of stainless steel for enhancing cavitation erosion resistance, the present study employs NiTi strips as the cladding material.
It can be inferred that surface modification of stainless steel by electrodepositing ZrB2 coating in molten salts is an effective way to protect substrate materials from degeneration in molten aluminum.
In recent studies, surface modification of stainless steel orthodontic wires and brackets with photocatalytic TiO2 and TiAg (titanium silver) has led to positive results [18 20].
Similar(55)
Surface modification of martensitic stainless steel UNS S42000 was achieved by laser surface-melting using a 3.5-kW continuous wave CO2 laser.
This work deals with the surface modification of 316LVM stainless steel by Si+ ion implantation and the in vitro study of its effect on the short-term corrosion behaviour and ion release.
The effect of surface modification of 316T stainless steel on removal of a model proteinaceous food soil (baked tomato paste) was studied using fluid dynamic gauging, where the deposit is immersed in liquid and removed by stresses imposed by a well-controlled fluid flow.
The surface modification of the stainless steel mesh (SSM) was conducted by acid etching, binder-free carbon black (CB) coating and the low-temperature heat treatment below 400 °C to improve the microbial bioelectrocatalytic activity for use as high-performance anode in microbial fuel cells.
Surface modification of both stainless steel and nickel titanium orthodontic wires with silver was carried out by thermal evaporation method.
Surface modifications of the stainless steel bipolar plates were made by the electroless plating method.
Write better and faster with AI suggestions while staying true to your unique style.
Since I tried Ludwig back in 2017, I have been constantly using it in both editing and translation. Ever since, I suggest it to my translators at ProSciEditing.

Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com