The Municipal and Sanitary Engineer's Handbook — John Shaqi
The Municipal and Sanitary Engineer's HandbookBoulnois, H. Percy (Henry Percy)
Science
The Municipal and Sanitary Engineer's Handbook
Boulnois, H. Percy (Henry Percy)
Municipal engineering; Sanitary engineering
_Pebbles._--These are found on sea shores and river beds. They are
composed of very various rocks, and are much water-worn and rounded;
when broken they sometimes answer very well if mixed with gravel to bind
them.
_Gravel._--This, if of a flinty character, and not too much mixed with
earthy matter, makes good roads for light traffic, if carefully watched
or well rolled during formation. Pit gravel should always be screened
through wire screens of 1¹⁄₂ to 1³⁄₄ gauge, and the small can be used
for footpaths.
In some places it is difficult to obtain any natural stone for the
purposes of road metal; in these cases slag from blast furnaces or
ordinary clinkers from furnaces are sometimes used. Oyster shells are
used on the roadways near the Gulf coasts[30] and charcoal in Michigan,
United States.[31] I have myself made a most excellent roadway with
coral on the coast of Jamaica, and no doubt many strange materials have
been, and still are, used for this purpose.
“I never mix” is an adage that should be followed by surveyors as
regards road metal. Do not mix a soft material with one that is harder
for either construction or maintenance of a roadway; the effect is what
is known as a “bumpy” road, arising from the fact of the soft stone
wearing faster than the hard. The hardest metal should be kept for the
top or surface layer of the roadway.
As an instance of the extreme difficulty besetting the question of the
best material for road metal, I will here give a table showing the
comparative coefficients of quality assigned to them by the engineers of
the French Department of the Ponts et Chaussées.[32]
COEFFICIENTS OF QUALITY OF ROAD MATERIALS.
Granitic gravel 23·8
Quartz gravel 21·4
Trap 20·0
Quartz 10·0 to 25·0 (in one instance 4·8)
Basalt 12·0 „ 20·0
Porphyry 10·0 „ 20·0 (in one instance 5·0)
Quartzite 11·0 „ 18·0
Devonian schist 16·0
Schist 4·0 to 12·0
Sandstone 12·0 „ 16·0
Granite 6·0 „ 20·0 (generally 10·0 to 12·0)
Syenite 12·0
Gneiss 9·0 to 12·0
Silicious pebbles and gravel 8·0 „ 19·0 (in one instance 6·0)
Silex 8·0 „ 16·0
Chalk flints 7·0 „ 11·6
Silicious limestone 6·0 „ 18·0 (generally about 10·0 to
12·0)
Compact limestone 14·0
Magnesian limestone 16·0
Carboniferous limestone 9·0
Oolitic limestone 5·0 to 12·0
Lias limestone 5·0 „ 10·0
Juranic limestone 5·0 „ 8·0
Limestone 5·0 „ 12·0
Mean of all France 10·63
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