Section-Cutting: A Practical Guide to the Preparation and Mounting of Sections for the Microscope, Special Prominence Being given to the Subject of Animal Sections — John Shaqi
Section-Cutting: A Practical Guide to the Preparation and Mounting of Sections for the Microscope, Special Prominence Being given to the Subject of Animal SectionsMarsh, Sylvester
Science
Section-Cutting: A Practical Guide to the Preparation and Mounting of Sections for the Microscope, Special Prominence Being given to the Subject of Animal Sections
Marsh, Sylvester
Microscopy; Microscopy -- Technique
There are two methods by which this change of angle may be made, one of
which is shown in the cold chisel just figured, and the other in the
razor of which a section is shown in figures 3 and 4. In the case of the
cold chisel it will be seen that the tool is first formed to a thin
straight wedge which is afterwards changed to one that is much more
blunt. This answers very well where the ultimate angle is comparatively
large or blunt, as is the case with penknives, table-knives,
carving-knives, etc. But where the ultimate angle is very small this
plan does not answer well, and the method shown in Fig. 3 is generally
adopted. Here the ultimate angle is such that lines touching the extreme
edge and the back of the blade are perfectly straight and form the
actual cutting angle. In this case, therefore, the relief is obtained by
hollowing out the sides of the blade, and this is done to various
extents, the extremes being shown in figures 3 and 4. Fig. 3 shows a
section of a razor ground on a stone 12 inches in diameter, which is as
large as is generally used for this purpose. Fig. 4 is a section of a
razor ground on a four-inch stone—the smallest in general use. This
method of changing the angle is of course substantially the same as the
first, merely differing in the mechanical device used, but it affords
this important advantage that in the subsequent honing and stropping
processes the back of the razor forms a perfect guide by which the
ultimate angle may be determined. This is not the case with the cold
chisel or the carving-knife, in both of which cases the eye and hand
alone determine the cutting angle, which is therefore apt to become
irregular or even rounded—the worst form of all. This will be more
easily understood from the following engravings where A, Fig. 5, shows a
penknife blade, as applied to an oilstone for the purpose of giving it
the final edge. The angle here shown is considerably greater than that
generally used, but the principle is the same. It is evident that if, in
moving the blade back and forth on the stone we allow it to rock or
change the angle which the blade makes with the stone’s surface, the
edge will become rounded as shown in Fig. 6—a form which for delicate
work is useless.
If the blade be laid down flat as at B, Fig. 5, the labor of wearing
away the superfluous metal will be enormous. But if the blade be hollow
as Fig. 7, (where the hollow is, for clearness of illustration, slightly
exaggerated) then the ultimate angle may be formed quickly and
accurately, there being no danger of the angles being changed on account
of want of skill on the part of the operator.
[Illustration: Fig. 5.]
[Illustration: Fig. 6.]
[Illustration: Fig. 7.]
[Illustration: Fig. 8.]
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