Popular Scientific Recreations: in Natural Philosphy, Astronomy, Geology, Chemistry, etc., etc., etc.Tissandier, Gaston
Science
Popular Scientific Recreations: in Natural Philosphy, Astronomy, Geology, Chemistry, etc., etc., etc.
Tissandier, Gaston
Scientific recreations
Water exercises an enormous pressure, but the pressure does not depend
upon the amount of water in the vessel. It depends upon the vessel’s
height, and the dimensions of the base. This has been proved by filling
vessels whose bases and heights are equal, but whose shapes are
different, each holding a different quantity of water. The pressure at
the bottom of each vessel is the same, and depends upon the depth of
the water. If we subject a portion of the liquid surface to certain
force, this pressure will be dispersed equally in all directions, and
from an acquaintance with this fact the Hydraulic Press was brought
into notice. If a vessel with a horizontal bottom be filled with water
to a depth of one foot, every square foot will sustain a pressure of
62·37 lbs., and each square inch of 0·433 lbs.
[Illustration: Figs. 58, 59, 60, 61.—Pressure of Water.]
We will now explain the principle of this WATER PRESS. In the small
diagram, the letters A B represent the bottom of a cylinder which has a
piston fitted in it (P). Into the opposite side a pipe is let in, which
leads from a force-pump D, which is fitted with a valve E, opening
upwards. When the piston in D is pulled up water enters through the
valve; when the piston is forced down the valve shuts, and the water
rushes into the chamber A B. The pressure pushes up the large piston
with a force multiplied as many times as the area of the small piston
is contained in the large one. So if the large one be ten times as
great as the small one, and the latter be forced down with a 10 lb.
pressure, the pressure on the large one will be 100 lbs., and so on.
[Illustration: Fig. 62.—Water Press.]
The accompanying illustration shows the form of the Hydraulic or Bramah
Press. A B C D is a strong frame, F the force-pump worked by means of
a lever fixed at G, and H is the counterprise. E is the stop-cock to
admit the water (fig. 63).
[Illustration: Fig. 63.—Bramah Press.]
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