root/trunk/matml/transport/problems/mgoetch/mgoetch.tex @ 515

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New problem: Water etching of magnesium oxide MEMS parts

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1\documentclass{article}
2\usepackage{fullpage}
3\begin{document}
4\begin{enumerate}
5\item Water etching of magnesium oxide ceramic MEMS parts
6
7  It has been proposed that some MEMS (Micro Electro-Mechanical Systems) device
8  parts for high temperature applications could be made out of magnesium oxide
9  by water etching, due to the slight solubility of magnesium oxide in water.
10  The etching reaction is:
11  $$\rm MgO + H_2O\Rightarrow Mg^{2+} + 2 OH^-$$
12
13  A magnesium oxide plate 5 cm (0.05 m) long partially covered by a polymer
14  etching mask is placed in a water tank near an impeller which generates a
15  free stream water velocity of 1 m/s past the plate.
16
17  \begin{center}
18    $\ $\pdfximage{mgetch.png}\pdfrefximage\pdflastximage$\ $
19  \end{center}
20
21  Data:
22  \begin{itemize}
23  \item Mg$^{2+}$ diffusivity in water: $D=10^{-5}\frac{\rm cm^2}{\rm s}$
24    ($\rm =10^{-9}\frac{m^2}{s}$).
25  \item Mg$^{2+}$ solubility in this particular solution:
26    $C_s=\rm10^{-2}\frac{mol}{cm^3}$.
27  \end{itemize}
28
29  \begin{enumerate}
30  \item \label{magsketch} Sketch the shapes of the velocity and diffusion
31    boundary layers above the plate on one sketch, clearly indicating which of
32    the two boundary layers will be larger.
33
34  \item If the magnesium oxide dissolution is limited by mass transfer of
35    Mg$^{2+}$ ions away from the interface, will the dissolution rate be
36    uniform across the plate?  If not, indicate on your sketch from part
37    \ref{magsketch} where on the plate you expect to see the highest and lowest
38    dissolution rates.
39
40  \item \label{magdims} Calculate the dimensionless numbers on which the
41    Nusselt number depends using the whole length of the plate as your
42    lengthscale.
43
44  \item \label{magnuss} Calculate the {\em local} Nusselt number Nu$_x$ at the
45    back end of the plate ($x=L$) based on your answers to part \ref{magdims}.
46
47  \item Calculate the magnesium oxide dissolution rate at the back end of the
48    plate.  Is this the largest or smallest dissolution rate you expect to see
49    over the plate?
50
51  \item So you do the experiment, and the magnesium oxide dissolution is
52    uniform across the whole plate!  Cool!  Furthermore, the dissolution rate
53    is just one tenth of the minimum rate which your transport analysis had
54    predicted.  Not so cool---but for high-value-added applications such as
55    this, quality is much more important than manufacturing cost so that's not
56    a problem.
57
58    How could this have happened?  (Hint: what assumption in this analysis
59    might have been violated?)
60  \end{enumerate}
61\end{enumerate}
62\end{document}
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