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Open image in new window Fig. 1 An example of EDX analysis of coatings produced in the situation of Table 1 column 2, current density 3 A/dm2, silica 30 g/l and agitation speed 400 rpm Open image in new window Fig. 2 Effect of particle concentration in bath on particle content of coating in different current densities from 1 to 7 A/dm2 with 400 rpm as agitation speed.
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The results showed that with an increase in graphite content of the coating, hardness and coefficient of friction of the coating would decrease and the lowest friction coefficient was obtained at 12% vol. graphite.
XRD patterns reveal that the structure of electroless Ni B coatings in as-plated condition is a function of the boron content of the coating: higher the boron content, greater the amorphous nature of the coating and vice-versa.
VSM studies indicate that the magnetic properties of the coating is also a function of the boron content of the coating: higher the boron content, lesser the saturation magnetization.
The critical Al content of the coating at which failure occurs is a key parameter needed to complete the model, and a coating failure after ∼10 kh at 700 °C provides some information.
Both tin content of the coating and grain refinement seem to participate in hardness enhancement.
According to the literature [27, 28], to achieve a composite with good corrosion resistance and mechanical properties, the hard particle content of the coating should be increased.
An increase in the DLC content of the coating benefits its friction coefficient while its hardness decreases.
In these three non-inert atmospheres, the friction and wear also increased with increasing N content of the coating.
The results showed that by increasing the Cu content of the coating, the microstructure of Cu–W composites becomes homogeneous, and the physical properties, including thermal, electrical and mechanical properties, improved greatly.
The magnetic performances of the deposits would be ameliorated with the increase of the cobalt content of the coating and calcining temperature.
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