Regl. 7470, art. I-2.00
Phosphorus (max)
Cite as Reglamento Núm. 7470, Art. I-2.00
.030
.030
.030
Sulphur (max)
.030
.030
.030
Silicon (max)
75
.75
.75
Nickel
8.0/11.0
9.0/13.0
9.0/13.0
Chromium
18.0/20.0
17.0/20.0
17.0/20.0
Molybdenum
Titanium
(1)
Columbium
(2)
1 Titanium may not be more than 5C and not more than 0.60%
2Columbium may not be less than 10C and not more than 1.0%.
TABLE 2-CHECK ANALYSIS TOLERANCES
Tolerance (percent) over
the maximum limit or
under the minimum limit
Element
Limit or maximum specified (percent)
Under min-
Over maximum limit
imum limit
Carbon
To 0.15 Incl
0.01
0.01
Manganese
Over 1.15 to 2.50 incl
0.05
0.05
Phosphorus¹
All ranges
.01
Sulphur
All ranges
.01
Silicon
Over 0.30 to 1.00 incl
05
.05
Nickel
Over 5.30 to 10.00 incl
.10
.10
Over 10.00 10 14.00 incl
.15
.15
Chromium
Over 15.00 to 20.00 incl
.20
.20
Titanium
All ranges
.05
.05
Columbium
All ranges
.05
.05
Rephosphorized steels not subject to check analysis for phosphorus.
(c) Identification of material. Materials
finished cylinder appreciably, a reasonmust be identified by any suitable
ably smooth and uniform surface finish
method.
is required. No abrupt change in wall
(d) Manufacture. Cylinders must be
thickness is permitted. Welding procemanufactured using equipment and
dures and operators must be qualified
processes adequate to ensure that each
in accordance with CGA Pamphlet C-3
cylinder produced conforms to the re-
(IBR, see $171.7 of this subchapter). All
quirements of this subpart. No defect is
seams of the sphere or cylinder must be
permitted that is likely to weaken the
fusion welded. Seams must be of the
857
§ 178.47
49 CFR Ch. I (10-1-06 Edition)
butt type and means must be provided
(2) Attachments to a fitting, boss, or
for accomplishing complete penetrapad must be adequate to prevent leaktion of the joint.
age. Threads must comply with the fol-
(e) Attachments. Attachments to the
lowing:
container are authorized by fusion
(i) Threads must be clean cut, even,
welding provided that such attachwithout checks, and tapped to gauge.
ments are made of weldable stainless
(ii) Taper threads to be of length not
steel in accordance with paragraph (b)
less than as specified for American
of this section.
Standard taper pipe threads.
(f) Wall thickness. The minimum wall
(iii) Straight threads having at least
thickness must be such that the wall
4 engaged threads, to have tight fit and
stress at the minimum specified test
calculated shear strength at least 10
pressure may not be over 60,000 psig. A
times the test pressure of the conminimum wall thickness of 0.040 inch is
tainer; gaskets required, adequate to
required for any diameter container.
prevent leakage.
Calculations must be made by the fol-
(i) Process treatment. Each container
lowing formulas:
must be hydraulically pressurized in a
(1) Calculation for sphere must be
water jacket to at least 100 percent,
made by the formula:
but not more than 110 percent, of the
S = PD / 4tE
test pressure and maintained at this
pressure for a minimum of 3 minutes.
Where:
Total and permanent expansion must
S = Wall stress in psi;
be recorded and included in the inspec-
P = Test pressure prescribed for water jacket
tor's report.
test, i.e., at least two times service pressure, in psig:
(j) Hydrostatic test. Each cylinder
D = Outside diameter in inches;
must successfully withstand a hydro-
t = Minimum wall thickness in inches;
static test as follows:
E = 0.85 (provides 85 percent weld efficiency
(1) The test must be by water-jacket,
factor which must be applied in the girth
operated so as to obtain accurate data.
weld area and heat zones which zone must
The pressure gauge must permit readextend a distance of 6 times wall thickness
from center of weld);
ing to an accuracy of 1 percent. The ex-
E = 1.0 (for all other areas).
pansion gauge must permit reading of
total expansion to an accuracy either
(2) Calculation for a cylinder must be
of 1 percent or 0.1 cubic centimeter.
made by the formula:
(2) Pressure must be maintained for
S = [P(1.3D² + 0.4d²)] / (D² - d²)
at least 30 seconds and sufficiently
longer to ensure complete expansion.
Where:
If, due to failure of the test apparatus,
S = Wall stress in psi:
the test pressure cannot be main-
P = Test pressure prescribed for water jacket
tained, the test may be repeated at a
test, i.e., at least two times service pressure, in psig;
pressure increased by 10 percent or 100
D = Outside diameter in inches;
psig. whichever is the lower.
d = Inside diameter in inches.
(3) Permanent volumetric expansion
(g) Heat treatment. The seamless
may not exceed 10 percent of total volhemispheres and cylinders may be
umetric expansion at test pressure.
stress relieved or annealed for forming.
(4) Each container must be tested to
Welded container must be stress reat least 2 times service pressure.
lieved at a temperature of 775 °F ±25°
(5) Container must then be inspected.
after process treatment and before hy-
Any wall thickness lower than that redrostatic test.
quired by paragraph (f) of this section
(h) Openings in container. Openings
must be cause for rejection. Bulges and
must comply with the following:
cracks must be cause for rejection.
(1) Each opening in the container
Welded joint defects exceeding requiremust be provided with a fitting, boss or
ments of paragraph (k) of this section
pad of weldable stainless steel securely
must be cause for rejection.
attached to the container by fusion
(k) Radiographic inspection. Radiowelding.
graphic inspection is required on all
858
Pipeline and Hazardous Materials Safety Admin., DOT
§ 178.50
welded joints which are subjected to incontainer by means other than soft solternal pressure, except that at the disder.
cretion of the disinterested inspector,
[Amdt. 178-114, 61 FR 25942. May 23, 1996, as
openings less than 25 percent of the
amended at 66 FR 45386, 45388, Aug. 28, 2001:
container diameter need not be sub-
67 FR 51653, Aug. 8, 2002; 68 FR 75748, Dec. 31,
jected to radiographic inspection. Evi-
2003]
dence of any defects likely to seriously
weaken the container is cause for re-
§ 178.50 Specification 4B welded or
jection. Radiographic inspection must
brazed steel cylinders.
be performed subsequent to the hydro-
(a) Type, size, and service pressure. A
static test.
DOT 4B is a welded or brazed steel cyl-
(1) Burst test. One container taken at
inder with longitudinal seams that are
random out of 200 or less must be
forged lap-welded or brazed and with
hydrostatically tested to destruction.
water capacity (nominal) not over 1,000
Rupture pressure must be included as
pounds and a service pressure of at
part of the inspector's report.
least 150 but not over 500 psig. Cyl-
(m) Flattening test. A flattening test
inders closed in by spinning process are
must be performed as follows:
not authorized.
(1) For spheres the test must be at
(b) Steel. Open-hearth, electric or
the weld between parallel steel plates
basic oxygen process steel of uniform
on a press with welded seam at right
quality must be used. Content percent
angles to the plates. Test one sphere
may not exceed the following: Carbon,
taken at random out of each lot of 200
0.25; phosphorus, 0.045; sulphur, 0.050.
(c) Identification of material. Material
or less after the hydrostatic test. Any
must be identified by any suitable
projecting appurtenances may be cut
method except that plates and billets
off (by mechanical means only) prior to
for hotdrawn cylinders must be marked
crushing.
with the heat number.
(2) For cylinders the test must be be-
(d) Manufacture. Cylinders must be
tween knife edges, wedge shaped, 60°
manufactured using equipment and
angle, rounded to 1/2-inch radius. Test
processes adequate to ensure that each
one cylinder taken at random out of
cylinder produced conforms to the reeach lot of 200 or less, after the hydroquirements of this subpart. No defect is
static test.
permitted that is likely to weaken the
(n) Acceptable results for flattening and
finished cylinder appreciably. A reaburst tests. Acceptable results for flatsonably smooth and uniform surface
tening and burst tests are as follows:
finish is required. Exposed bottom
(1) Flattening required to 50 percent
welds on cylinders over 18 inches long
of the original outside diameter withmust be protected by footrings. Weldout cracking.
ing procedures and operators must be
(2) Burst pressure must be at least 3
qualified in accordance with CGA Pamtimes the service pressure.
phlet C-3 (IBR, see $171.7 of this sub-
(o) Rejected containers. Repair of weldchapter). Seams must be made as follows:
ed seams by welding prior to process
treatment is authorized. Subsequent
(1) Welded or brazed circumferential
thereto, containers must be heat treatseams. Heads attached by brazing must
have a driving fit with the shell, unless
ed and pass all prescribed tests.
the shell is crimped, swedged, or curled
(p) Duties of inspector. In addition to
over the skirt or flange of the head,
the requirements of $ 178.35, the inspecand be thoroughly brazed until comtor must verify that all tests are conplete penetration by the brazing mateducted at temperatures between 60 °F
rial of the brazed joint is secured.
and 90 °F.
Depth of brazing from end of shell must
(q) Marking. Markings must be
be at least four times the thickness of
stamped plainly and permanently on a
shell metal.
permanent attachment or on a metal
(2) Longitudinal seams in shells. Longinameplate permanently secured to the
tudinal seams must be forged lap welded, by copper brazing, by copper alloy
859
§ 178.50
49 CFR Ch. I (10-1-06 Edition)
brazing, or by silver alloy brazing. Cop-
(g) Heat treatment. Cylinder body and
per alloy composition must be: Copper,
heads, formed by drawing or pressing.
95 percent minimum; Silicon, 1.5 permust be uniformly and properly heat
cent to 3.85 percent; Manganese, 0.25
treated prior to tests.
percent to 1.10 percent. The melting
(h) Opening in cylinders. Openings in
point of the silver alloy brazing matecylinders must conform to the folrial must be in excess of 1000 °F. When
lowing:
brazed. the plate edge must be lapped
(1) Each opening in cylinders, except
at least eight times the thickness of
those for safety devices, must be proplate, laps being held in position, subvided with a fitting, boss, or pad. sestantially metal to metal, by riveting
curely attached to cylinder by brazing
or electric spot-welding; brazing must
or by welding or by threads. Fitting,
be done by using a suitable flux and by
boss, or pad must be of steel suitable
placing brazing material on one side of
for the method of attachment emseam and applying heat until this maployed, and which need not be identiterial shows uniformly along the seam
fied or verified as to analysis except
of the other side.
that if attachment is by welding, car-
(e) Welding or brazing. Only the atbon content may not exceed 0.25 pertachment of neckrings, footrings, hancent. If threads are used, they must
dles, bosses, pads, and valve protection
comply with the following:
rings to the tops and bottoms of cyl-
(i) Threads must be clean cut, even
inders by welding or brazing is authorwithout checks, and tapped to gauge.
ized. Such attachments and the portion
of the container to which they are at-
(ii) Taper threads to be of length not
tached must be made of weldable steel,
less than as specified for American
the carbon content of which may not
Standard taper pipe threads.
exceed 0.25 percent except in the case
(iii) Straight threads, having at least
of 4130X steel which may be used with
4 engaged threads, to have tight fit and
proper welding procedure.
calculated shear strength at least 10
(f) Wall thickness. The wall thickness
times the test pressure of the cylinder;
of the cylinder must comply with the
gaskets required, adequate to prevent
following requirements:
leakage.
(1) For cylinders with outside diame-
(iv) A brass fitting may be brazed to
ters over 6 inches the minimum wall
the steel boss or flange on cylinders
thickness must be 0.090 inch. In any
used as component parts of hand fire
case, the minimum wall thickness
extinguishers.
must be such that calculated wall
(2) The closure of a fitting, boss, or
stress at minimum test pressure (parapad must be adequate to prevent leakgraph (i)(4) of this section) may not exage.
ceed the following values:
(i) Hydrostatic test. Cylinders must
(i) 24,000 psi for cylinders without
withstand a hydrostatic test as follows:
longitudinal seam.
(1) The test must be by water-jacket,
(ii) 22,800 psig for cylinders having
or other suitable method, operated so
copper brazed or silver alloy brazed
as to obtain accurate data. The preslongitudinal seam.
sure gauge must permit reading to an
(iii) 18,000 psi for cylinders having
accuracy of 1 percent. The expansion
forged lapped welded longitudinal
gauge must permit reading of total exseam.
pansion to an accuracy either of 1 per-
(2) Calculation must be made by the
cent or 0.1 cubic centimeter.
formula:
(2) Pressure must be maintained for
at least 30 seconds and sufficiently
S = [P(1.3D² + 0.4d²)] / (D² - d2)
longer to ensure complete expansion.
Where:
Any internal pressure applied after
S = wall stress in psi;
heat-treatment and previous to the of-
P = minimum test pressure prescribed for
ficial test may not exceed 90 percent of
water jacket test or 450 psig whichever is
the test pressure. If, due to failure of
the greater;
the test apparatus, the test pressure
D = outside diameter in inches;
cannot be maintained. the test may be
d = inside diameter in inches.
repeated at a pressure increased by 10
860
Pipeline and Hazardous Materials Safety Admin., DOT
§ 178.50
percent or 100 psig, whichever is the
may be flattened to within one inch of
lower.
each end of the reduced section.
(3) Permanent volumetric expansion
(iii) When size of cylinder does not
may not exceed 10 percent of total volpermit securing straight specimens,
umetric expansion at test pressure.
the specimens may be taken in any lo-
(4) Cylinders must be tested as folcation or direction and may be
lows:
straightened or flattened cold, by pres-
(i) At least one cylinder selected at
sure only, not by blows. When specirandom out of each lot of 200 or less
mens are so taken and prepared, the inmust be tested as outlined in paraspector's report must show in connecgraphs (i)(1), (i)(2), and (1)(3) of this section with record of physical tests detion to at least two times service prestailed information in regard to such
sure.
specimens.
(ii) All cylinders not tested as out-
(iv) Heating of a specimen for any
lined in paragraph (i)(4) (i) of this secpurpose is not authorized.
tion must be examined under pressure
(3) The yield strength in tension
of at least two times service pressure
must be the stress corresponding to a
and show no defect.
permanent strain of 0.2 percent of the
(j) Flattening test. After the hydrogauge length. The following conditions
static test, a flattening test must be
apply:
performed on one cylinder taken at
random out or each lot of 200 or less, by
(i) The yield strength must be determined by either the "offset" method or
placing the cylinder between wedge
the "extension under load" method as
shaped knife edges having a 60° included angle, rounded to ½-inch radius.
prescribed in ASTM E 8 (IBR, see $171.7
The longitudinal axis of the cylinder
of this subchapter).
must be at a 90-degree angle to knife
(ii) In using the "extension under
load" method, the total strain (or "exedges during the test. For lots of 30 or
less, flattening tests are authorized to
tension under load") corresponding to
be made on a ring at least 8 inches long
the stress at which the 0.2 percent percut from each cylinder and subjected to
manent strain occurs may be detersame heat treatment as the finished
mined with sufficient accuracy by calculating the elastic extension of the
cylinder.
(k) Physical test. A physical test must
gauge length under appropriate load
be conducted to determine yield
and adding thereto 0.2 percent of the
strength, tensile strength, elongation,
gauge length. Elastic extension calculations must be based on an elastic
and reduction of area of material as
modulus of 30,000,000. In the event of
follows:
(1) The test is required on 2 specicontroversy, the entire stress-strain
mens cut from 1 cylinder, or part
diagram must be plotted and the yield
thereof heat-treated as required, taken
strength determined from the 0.2 percent offset.
at random out of each lot of 200 or less.
For lots of 30 or less, physical tests are
(iii) For the purpose of strain measauthorized to be made on a ring at
urement, the initial strain must be set
least 8 inches long cut from each cylwhile the specimen is under a stress of
inder and subjected to same heat treat-
12,000 psi, and strain indicator reading
ment as the finished cylinder.
must be set at the calculated cor-
(2) Specimens must conform to the
responding strain.
following:
(iv) Cross-head speed of the testing
(i) A gauge length of 8 inches with a
machine may not exceed 1/8 inch per
width of not over 1½ inches, a gauge
minute during yield strength deterlength of 2 inches with a width of not
mination.
over 1½ inches, or a gauge length at
(1) Acceptable results for physical and
least 24 times the thickness with a
flattening tests. Either of the following
width not over 6 times the thickness is
is an acceptable result:
authorized when a cylinder wall is not
(1) An elongation of at least 40 perover 3/16 inch thick.
cent for a 2-inch gauge length or at
(ii) The specimen, exclusive of grip
least 20 percent in other cases and
ends, may not be flattened. Grip ends
yield strength not over 73 percent of
861
§ 178.51
49 CFR Ch. I (10-1-06 Edition)
tensile strength. In this instance, a
§ 178.51 Specification 4BA welded or
flattening test is not required.
brazed steel cylinders.
(2) When cylinders are constructed of
(a) Type, size, and service pressure. A
lap welded pipe, flattening test is re-
DOT 4BA cylinder is a cylinder, either
quired, without cracking, to 6 times
spherical or cylindrical in shape, with
the wall thickness. In such case, the
a water capacity of 1,000 pounds or less
rings (crop ends) cut from each end of
and a service pressure of at least 225
pipe, must be tested with the weld 45°
and not over 500 psig. Closures made by
or less from the point of greatest
the spinning process are not authorstress. If a ring fails, another from the
ized.
same end of pipe may be tested.
(1) Spherical type cylinders must be
made from two seamless hemispheres
(m) Rejected cylinders. Reheat treatment is authorized for rejected cyljoined by the welding of one circumferential seam.
inder. Subsequent thereto, cylinders
(2) Cylindrical type cylinders must be
must pass all prescribed tests to be acof circumferentially welded or brazed
ceptable. Repair of brazed seams by
construction.
brazing and welded seams by welding is
(b) Steel. The steel used in the conauthorized.
struction of the cylinder must be as
(n) Markings. Markings must be
specified in table 1 of appendix A to
stamped plainly and permanently in
this part.
any of the following locations on the
(c) Identification of material. Material
cylinder:
must be identified by any suitable
(1) On shoulders and top heads when
method except that plates and billets
they are not less than 0.087-inch thick.
for hotdrawn cylinders must be marked
(2) On side wall adjacent to top head
with the heat number.
for side walls which are not less than
(d) Manufacture. Cylinders must be
0.090 inch thick.
manufactured using equipment and
(3) On a cylindrical portion of the
processes adequate to ensure that each
shell which extends beyond the Γe-
cylinder produced conforms to the recessed bottom of the cylinder, constiquirements of this subpart. No defect is
permitted that is likely to weaken the
tuting an integral and non-pressure
finished cylinder appreciably. A reapart of the cylinder.
sonably smooth and uniform surface
(4) On a metal plate attached to the
finish is required. Exposed bottom
top of the cylinder or permanent part
welds on cylinders over 18 inches long
thereof; sufficient space must be left on
must be protected by footrings.
the plate to provide for stamping at
(1) Seams must be made as follows:
least six retest dates; the plate must be
(i) Minimum thickness of heads and
at least 1/16-inch thick and must be atbottoms must be not less than 90 pertached by welding, or by brazing. The
cent of the required thickness of the
brazing rod must melt at a temperaside wall.
ture of 1100 °F. Welding or brazing
(ii) Circumferential seams must be
must be along all the edges of the
made by welding or by brazing. Heads
plate.
must be attached by brazing and must
(5) On the neck, neckring, valve boss,
have a driving fit with the shell, unless
valve protection sleeve, or similar part
the shell is crimped, swedged or curled
permanently attached to the top of the
over the skirt or flange of the head and
must be thoroughly brazed until comcylinder.
(6) On the footring permanently atplete penetration by the brazing material of the brazed joint is secured.
tached to the cylinder, provided the
Depth of brazing from end of the shell
water capacity of the cylinder does not
must be at least four times the thickexceed 25 pounds.
ness of shell metal.
[Amdt. 178-114, 61 FR 25942, May 23, 1996, as
(iii) Longitudinal seams in shells
amended at 62 FR 51561, Oct. 1, 1997; 66 FR
must be made by copper brazing, cop-
45385, 45388, Aug. 28, 2001; 67 FR 51653, Aug. 8,
per alloy brazing, or by silver alloy
2002; 68 FR 75748, Dec. 31, 2003]
brazing. Copper alloy composition
must be: Copper 95 percent minimum,
862
Pipeline and Hazardous Materials Safety Admin., DOT
$ 178.51
Silicon 1.5 percent to 3.85 percent, Mangalvanizing or other protective coatganese 0.25 percent to 1.10 percent. The
ing.
melting point of the silver alloy braz-
(2) Cylinders that are cylindrical in
ing material must be in excess of 1,000
shape must have the wall stress cal-
°F. The plate edge must be lapped at
culated by the formula:
least eight times the thickness of
S = [P(1.3D² + 0.4d²)] / (D² - d²)
plate, laps being held in position, substantially metal to metal, by riveting
Where:
or by electric spot-welding. Brazing
S = wall stress in psi;
must be done by using a suitable flux
P - minimum test pressure prescribed for
and by placing brazing material on one
water jacket test;
side of seam and applying heat until
D = outside diameter in inches;
this material shows uniformly along
d = inside diameter in inches.
the seam of the other side. Strength of
(3) Cylinders that are spherical in
longitudinal seam: Copper brazed lonshape must have the wall stress calgitudinal seam must have strength at
culated by the formula:
least 3/2 times the strength of the steel
wall.
S = PD / 4tE
(2) Welding procedures and operators
Where:
must be qualified in accordance with
CGA Pamphlet C-3 (IBR, see $171.7 of
S = wall stress in psi:
P = minimum test pressure prescribed for
this subchapter).
water jacket test:
(e) Welding and brazing. Only the
D = outside diameter in inches;
welding or brazing of neckrings,
t = minimum wall thickness in inches;
footrings, handles, bosses, pads, and
E = 0.85 (provides 85 percent weld efficiency
valve protection rings to the tops and
factor which must be applied in the girth
bottoms of cylinders is authorized.
weld area and heat affected zones which
Provided that such attachments and
zone must extend a distance of 6 times wall
the portion of the container to which
thickness from center line of weld);
they are attached are made of weldable
E = 1.0 (for all other areas).
steel, the carbon content of which may
(4) For a cylinder with a wall thicknot exceed 0.25 percent except in the
ness less than 0.100 inch, the ratio of
case of 4130x steel which may be used
tangential length to outside diameter
with proper welding procedure.
may not exceed 4.1.
(f) Wall thickness. The minimum wall
(g) Heat treatment. Cylinders must be
thickness of the cylinder must meet
heat treated in accordance with the
the following conditions:
following requirements:
(1) For any cylinder with an outside
(1) Each cylinder must be uniformly
diameter of greater than 6 inches, the
and properly heat treated prior to test
minimum wall thickness is 0.078 inch.
by the applicable method shown in
In any case the minimum wall thicktable 1 of appendix A to this part. Heat
ness must be such that the calculated
treatment must be accomplished after
wall stress at the minimum test presall forming and welding operations, exsure may not exceed the lesser value of
cept that when brazed joints are used,
any of the following:
heat treatment must follow any form-
(i) The value shown in table 1 of aping and welding operations, but may be
pendix A to this part, for the particular
done before, during or after the brazing
material under consideration;
operations.
(ii) One-half of the minimum tensile
(2) Heat treatment is not required
strength of the material determined as
after the welding or brazing of weldable
required in paragraph (j) of this seclow carbon parts to attachments of
tion;
similar material which have been pre-
(iii) 35,000 psi; or
viously welded or brazed to the top or
(iv) Further provided that wall stress
bottom of cylinders and properly heat
for cylinders having copper brazed lontreated, provided such subsequent
gitudinal seams may not exceed 95 perwelding or brazing does not produce a
cent of any of the above values. Meastemperature in excess of 400 °F in any
ured wall thickness may not include
part of the top or bottom material.
863
§ 178.51
49 CFR Ch. I (10-1-06 Edition)
(h) Openings in cylinders. Openings in
of at least two times service pressure
cylinders must comply with the foland show no defect.
lowing requirements:
(j) Physical test. A physical test must
(1) Any opening must be placed on
be conducted to determine yield
other than a cylindrical surface.
strength, tensile strength, elongation,
(2) Each opening in a spherical type
and reduction of area of material, as
cylinder must be provided with a fitfollows:
ting, boss, or pad of weldable steel se-
(1) The test is required on 2 specicurely attached to the container by fumens cut from one cylinder or part
sion welding.
thereof having passed the hydrostatic
(3) Each opening in a cylindrical type
test and heat-treated as required.
cylinder must be provided with a fittaken at random out of each lot of 200
ting, boss, or pad, securely attached to
or less. Physical tests for spheres are
container by brazing or by welding.
required on 2 specimens cut from flat
(4) If threads are used, they must
representative sample plates of the
comply with the following:
same heat taken at random from the
(i) Threads must be clean-cut, even,
steel used to produce the spheres. This
without checks and tapped to gauge.
flat steel from which 2 specimens are
(ii) Taper threads must be of a length
to be cut must receive the same heat
not less than that specified for Amertreatment as the spheres themselves.
ican Standard taper pipe threads.
Sample plates must be taken from each
(iii) Straight threads, having at least
lot of 200 or less spheres.
4 engaged threads, must have a tight
(2) Specimens must conform to the
fit and a calculated shear strength of
following:
at least 10 times the test pressure of
(i) A gauge length of 8 inches with a
the cylinder. Gaskets, adequate to prewidth not over 1½ inches, or a gauge
vent leakage. are required.
length of 2 inches with a width not
(i) Hydrostatic test. Each cylinder
over 1½ inches, or a gauge length at
must successfully withstand a hydroleast 24 times the thickness with a
static test, as follows:
width not over 6 times the thickness is
(1) The test must be by water jacket,
authorized when a cylinder wall is not
or other suitable method, operated so
over 3/16 inch thick.
as to obtain accurate data. A pressure
(ii) The specimen, exclusive of grip
gauge must permit reading to an accuends, may not be flattened. Grip ends
racy of 1 percent. An expansion gauge
may be flattened to within one inch of
must permit reading of total expansion
each end of the reduced section.
to an accuracy of either 1 percent or 0.1
(iii) When size of the cylinder does
cubic centimeter.
not permit securing straight speci-
(2) Pressure must be maintained for
mens, the specimens may be taken in
at least 30 seconds and sufficiently
any location or direction and may be
longer to ensure complete expansion.
straightened or flattened cold, by pres-
Any internal pressure applied after
sure only, not by blows. When speciheat treatment and previous to the ofmens are so taken and prepared, the inficial test may not exceed 90 percent of
spector's report must show in connecthe test pressure.
tion with record of physical tests de-
(3) Permanent volumetric expansion
tailed information in regard to such
may not exceed 10 percent of the total
specimens.
volumetric expansion at test pressure.
(iv) Heating of a specimen for any
(4) Cylinders must be tested as folpurpose is not authorized.
lows:
(3) The yield strength in tension
(i) At least one cylinder selected at
must be the stress corresponding to a
random out of each lot of 200 or less
permanent strain of 0.2 percent of the
must be tested as outlined in paragauge length. The following conditions
graphs (i)(1), (i)(2), and (i)(3) of this secapply:
tion to at least two times service pres-
(i) The yield strength must be detersure.
mined by either the "offset" method or
(ii) All cylinders not tested as outthe "extension under load" method as
lined in paragraph (i)(4)(i) of this secprescribed in ASTM E 8 (IBR, see $171.7
tion must be examined under pressure
of this subchapter).
864
Pipeline and Hazardous Materials Safety Admin., DOT
$ 178.51
(ii) In using the "extension under
may be taken from two additional cylload" method, the total strain (or "exinders or welded test plates from the
tension under load"), corresponding to
same lot and tested. If either of the latthe stress at which the 0.2 percent perter specimens fail to meet the requiremanent strain occurs may be determents, the entire lot represented must
mined with sufficient accuracy by calbe rejected.
culating the elastic extension of the
(2) Guided bend test. A root bend test
gauge length under appropriate load
specimen must be cut from the cyland adding thereto 0.2 percent of the
inder or welded test plate, used for the
gauge length. Elastic extension caltensile test specified in paragraph (f)(1)
culations must be based on an elastic
of this section. Specimens must be
modulus of 30,000,000. In the event of
taken from across the major seam and
controversy, the entire stress-strain
must be prepared and tested in accorddiagram must be plotted and the yield
ance with and must meet the requirestrength determined from the 0.2 perments of CGA Pamphlet C-3.
cent offset.
(3) Alternate guided-bend test. This
(iii) For the purpose of strain meastest may be used and must be as reurement, the initial strain reference
quired by CGA Pamphlet C-3. The specmust be set while the specimen is
imen must be bent until the elongation
under a stress of 12,000 psi, and the
at the outer surface, adjacent to the
strain indicator reading must be set at
root of the weld, between the lightly
the calculated corresponding strain.
scribed gage lines a to b, must be at
(iv) Cross-head speed of the testing
least 20 percent, except that this permachine may not exceed 1/8 inch per
centage may be reduced for steels havminute during yield strength detering a tensile strength in excess of 50,000
mination.
psig, as provided in paragraph (k) of
(k) Elongation. Physical test specithis section.
mens must show at least a 40 percent
(m) Rejected cylinders. Reheat treatelongation for a 2-inch gauge length or
ment is authorized for rejected cylat least 20 percent in other cases. Exinders. Subsequent thereto, cylinders
cept that these elongation percentages
must pass all prescribed tests to be acmay be reduced numerically by 2 for 2-
ceptable. Repair of brazed seams by
inch specimens, and by 1 in other cases,
brazing and welded seams by welding is
for each 7,500 psi increment of tensile
authorized.
strength above 50,000 psi to a maximum
(n) Markings. Markings must be
of four such increments.
stamped plainly and permanently in
(1) Tests of welds. Except for brazed
one of the following locations on the
seams, welds must be tested as follows:
cylinder:
(1) Tensile test. A specimen must be
(1) On shoulders and top heads not
cut from one cylinder of each lot of 200
less than 0.087 inch thick.
or less, or welded test plate. The weld-
(2) On side wall adjacent to top head
ed test plate must be of one of the
for side walls not less than 0.090 inch
heats in the lot of 200 or less which it
thick.
represents, in the same condition and
(3) On a cylindrical portion of the
approximately the same thickness as
shell which extends beyond the rethe cylinder wall except that in no case
cessed bottom of the cylinder constimust it be of a lesser thickness than
tuting an integral and non-pressure
that required for a quarter size Charpy
part of the cylinder.
impact specimen. The weld must be
(4) On a plate attached to the top of
made by the same procedures and subthe cylinder or permanent part thereof;
jected to the same heat treatment as
sufficient space must be left on the
the major weld on the cylinder. The
plate to provide for stamping at least
specimen must be taken from across
six retest dates; the plate must be at
the major seam and must be prepared
least 1/16 inch thick and must be atand tested in accordance with and
tached by welding. or by brazing at a
must meet the requirements of CGA
temperature of at least 1100 °F.,
Pamphlet C-3 (IBR, see $171.7 of this
throughout all edges of the plate.
subchapter). Should this specimen fail
(5) On the neck, neckring, valve boss,
to meet the requirements, specimens
valve protection sleeve, or similar part
865
$ 178.53
49 CFR Ch. I (10-1-06 Edition)
permanently attached to the top of the
0.045; sulphur, 0.050, except that the folcylinder.
lowing steels commercially known as
(6) On the footring permanently at-
4130X and Type 304, 316, 321, and 347
tached to the cylinder, provided the
stainless steels may be used with propwater capacity of the cylinder does not
er welding procedure. A heat of steel
exceed 25 pounds.
made under table 1 in this paragraph
[Amdt. 178-114, 61 FR 25942, May 23. 1996, as
(b), check chemical analysis of which is
amended at 66 FR 4535, Aug. 28, 2001; 67 FR
slightly out of the specified range, is
16015, Sept. 27. 2002; 67 FR 51653, Aug. 8, 2002;
acceptable, if satisfactory in all other
68 FR 75748. Dec. 31, 2003]
respects, provided the tolerances shown
in table 2 in this paragraph (b) are not
§ 178.53 Specification 4D welded steel
exceeded, except as approved by the Ascylinders for aircraft use.
sociate Administrator. The following
(a) Type, size, and service pressure. A
chemical analyses are authorized:
DOT 4D cylinder is a welded steel
sphere (two seamless hemispheres) or
TABLE 1-4130X STEEL
circumferentially welded cylinder (two
4130X
Percent
seamless drawn shells) with a water capacity not over 100 pounds and a serv-
Carbon
0.25/0.35.
ice pressure of at least 300 but not over
Manganese
0.40/0.60.
500 psig. Cylinders closed in by spin-
Phosphorus
0.04 max.
Sulphur
0.05 max
ning process are not authorized.
Silicon
0.15/0.35.
(b) Steel. Open-hearth or electric steel
Chromium
0.80/1.10.
of uniform and weldable quality must
Molybdenum
0.15/0.25.
be used. Content may not exceed the
Zirconium
None.
Nickel
None.
following: Carbon, 0.25; phosphorus,
TABLE 2-AUTHORIZED STAINLESS STEELS
Stainless steels
304
316
321
347
(percent)
(percent)
(percent)
(percent)
Carbon (max)
0.08
0.08
0.08
0.08
Manganese (max)
2.00
2.00
2.00