# Department of the Army — Hazardous Materials Safety Interpretation

- **operation:** document
- **citation:** 11-0274R
- **title:** Department of the Army — Hazardous Materials Safety Interpretation
- **source type:** guidance
- **agency:** Pipeline and Hazardous Materials Safety Administration
- **status:** guidance
- **official:** true
- **published on:** 2013-11-13
- **effective on:** Not available
- **summary:** 11-0274R response to Department of the Army concerning 173.168, 173.302, 173.304.
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- **app url:** https://regulus.evalyn.ai/document/phmsa-interpretation-11-0274r
- **source url:** https://www.phmsa.dot.gov/sites/phmsa.dot.gov/files/legacy/interpretations/Interpretation%20Files/2011/110274R.pdf
**body:**

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U.S. Department
of Transportation
Pipeline and Hazardous
Materials Safety
Administration
1200 New Jersey Avenue, SE
Washington, D.C. 20590
NOV 1 3 2013
Ms. Sarah Gedrich
Chief, LOGSA Packaging, Storage, and Containerization
Center (AMXLS-AT-L)
Department of the Army
II Hap Arnold Boulevard
Tobyhanna, PA I8466-5097
Ref. No. JI-0274R
Dear Ms. Gedrich:
This responds to your October I3, 20Il letter requesting clarification of the package testing
requirements for composite or combination packagings that contain compressed oxygen and
other oxidizing gases in cylinders or chemical oxygen generators under the Hazardous
Materials Regulations (HMR; 49 CFR Part I71-I80). In general terms, these articles are
required to be placed in a rigid outer packaging that conforms to the testing provisions in Part
178, Subpart M of the HMR or the performance criteria of Airlines for America (A4A),
formerly the Air Transport Association of America, Inc. (ATA), Specification No. 300 ("Spec
300") for a Category I shipping container. See§§ I73.168(d), 173.302(£)(3) and I73.304(f)(3).
You specifically request clarification of the testing and performance criteria and determination
of successful test results.
Your questions regarding Part 178, Subpart M testing are paraphrased and answered as follows:
Q I. The HMR outline package preparation criteria for testing. For example, inner receptacles
for liquid material must be at least 98% filled (see§ 178.602(b)). However, there is no
criterion for gases. How would cylinders be filled to 98% with a gas?
A I. The physical properties of a gas would not allow for a cylinder to be filled to 98%. The
filling criteria for inner receptacles intended to contain liquid or solid material do not apply to
gases. Bear in mind that these drop tests should not be conducted with filled cylinders because
of the inherent safety risks associated with a compressed gas.
Q2. Following drop tests of composite or combination packaging, the absence of leakage of
filling material from the inner receptacles signifies a successful test (see§ 178.603(±)(4)). If
the drop test were to be conducted with empty cylinders, how would it be determined if the
material leaked?
A2. The cylinder should be filled after the drop test to determine whether there is any leakage
as a result of damage occurring during the drop test.

<<<PAGE 2>>>

Q3. If damage to the outer packaging affects the flame penetration resistance, is this
considered an unsuccessful test?
A3. Yes. This would be considered damage likely to adversely affect safety during
transport.
Q4. Would the same criteria apply to the stacking test and the vibration standard?
A4. Yes. The responses to questions 1 thru 3 hold true for both the stacking test and
the vibration standard.
Your questions regarding A4A Spec 300 and testing are paraphrased and answered as follows,
however, we note that the guidance we present in this letter relative to A4A Spec 300 was
offered from consultation with A4A and we recommend that you contact A4A for further
guidance regarding this standard:
Q 1. Regarding the drop test of a Category I shipping container (that can be handled
manually in transportation), are the drops conducted on each side, edge, or corner, in
sequence or only on one selected side, corner, and edge?
A 1. The drop test is to be performed in sequence for the required number of drops for
each side and repeated for the required number of drops for each edge and each corner.
The combination of 160 side (face) drops distributed among the six (6) sides, 80 edge
drops distributed among the twelve (12) edges, and 40 corner drops distributed among
the eight (8) corners must total 280 drops. Care should be taken under the test plan to
address worst case scenarios (e.g., unevenly loaded boxes) when distributing the drops
in each case.
Q2. Regarding the cause for rejection, if the cylinders are considered the contents, how
is it determined that the contents do not show any changes that affect their utility.
A2. The determination of any "changes affecting the utility of the contents" would be
similar to determination of successful testing under the HMR. That is, the cylinder
should be filled after the drop test to determine whether there is any leakage.
Q3. Are the required tests to be performed in series?
A3. No. Each test type (e.g., drop, vibration, etc.) must be completed independent of
the others.

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Q4. Should the utility of the packaging be determined after each test type (e.g., drop,
vibration, etc.)?
A4. Yes. The contents of the packaging are to be inspected after the testing procedure
for each test type is complete to determine whether they show any changes that affect
their utility.
I hope this answers your inquiry. If you need additional assistance, please contact this Office at
(202) 366-8553.
Sincer1y, . . . .
"Jfl,{_L~
harles Betts,
irect_or,
Standards and Rulemaking Division

<<<PAGE 4>>>

DEPARTMENT OF THE ARMY
USAMC LOGISTICS SUPPORT ACTIVITY
REDSTONE ARSENAl, ALABAMA 35898-7466
October 13, 2011
Logistics Testing and Applications Division
Mr. Charles E. Betts
Director, Office of Hazardous Materials Standards
U.S. DOT/PHMSA (PHH-1 0)
1200 New Jersey Avenue
SE East Building, 2nd Floor
Washington, DC 20590
Dear Mr. Betts:
This letter of inquiry for interpretation is written on behalf of the US Army Materiel
Command Logistics Support Activity Pac~aging, Storage, an.ci qo~tainerization Center (USAMC
LOGSA PSCC), Tobyhanna, PA. It is being written for clariticationlinter_Pretation.ofthe HM-
224B,'Hazardous Materials Regulations (HMR): Transportation o{c;ompr~ssed Oxygen, Other
Oxidizing Gases and Chemical Oxygen Generators on .Aircr,aft·. , · · · ·
The Title 49 Code of Federal Regulations (CFR) § 171.8 defi~es ·an outer packaging as "the
outermost enclosure of a composite or combination packaging, together with any absorbent
materials, cushioning and any other components necessary to contain and protect inner
receptacles or inner packagings." In order to meet the "integrity standards," the HM-224B
requires that the cylinder 9r the generator
"must be placed in a rigid outer packaging that -
(1) Conforms to the requirements of either:
(i) Part 178, subparts Land M, of this subchapter at the Packing Group I
or II performance level; or
(ii) The performance criteria in Air Transport Association (AT A)
Specification No. 300 for a Category I shipping container." (49 CFR
§173.168 and §173. 304)
As written, subparts L and M do not clearly address criteria for passing a drop test, if
one was to designate the cylinder or generator as the inner packaging and the HM-224B
specification packaging as the outer packaging. Specifically for a composite or
combination packaging states that the outer packaging "must not exhibit ~y damage
likely to affect safety dUring transport. Inner receptacles, inner packagings, and art~cles
must remain completely withiri the outer packaging and there must be no leakage of
filling substance from the inner receptacle or inner packagings." For the packaging being
discussed, this could be 115 cubic feet of oxygen compressed to pre~sures gr~ater than
3,000 pounds per square inch (psi) inside an HM-224B outer p~cka~ing. The.49 CFR
addresses filling procedures for packages subjected to the drop in relation to liquids and
' • . .. ~ l . . ' • ' ' .

<<<PAGE 5>>>

DEPARTMENT OF THE ARMY
USAMC lOGISTICS SUPPORT ACTIVITY
REDSTOf'IE ARSENAL, ALABAMA 35898·7466
October 13, 2011
Logistics Testing and Applications Division
Mr. Charles E. Betts
Director, Office of Hazardous Materials Standards
U.S. DOT/PHMSA (PHH-10)
1200 New Jersey Avenue
SE East Building, 2nd Floor
Washington, DC 20590
Dear Mr. Betts:
This letter of inquiry for interpretation is written on behalf of the US Anny Materiel
Command Logistics Support Activity Packaging, Storage, ami Co~tainerization Center (USAMC
LOGSA PSCC), Tobyhanna, PA. It is being written for clariticatio:n!i.nterpretation.ofthe HM-
224B,Hazardous Materials Regulations (HMR): Transportation ofGompressed Oxygen, Other
Oxidizing Gases and Chemical Oxygen Generators on .Airc~a:(t. · . · · ·
The Title 49 Code of Federal· Regulations (CFR) § 171.8deflnes an outer packaging as "the
outermost enclosure of a composite or combination packaging, together with any absorbent
materials, cushioning and any other components necessary to contain and protect inner
receptacles oi: inner packagings." In order to meet the "integrity standards," the HM-224B
requires that the cylinder 9r the generator
"must be placed in a rigid outer packaging that -
(1) Conforms to the requirements of either:
(i) Part 178, subparts Land M, of this subchapter at the Packing Group I
or II performance level; or
(ii) The performance criteria in Air Transport Association (ATA)
Specification No. 300 for a Category I shipping container." (49 CFR
§173.168 and §173. 304)
As written, subparts L and l\1 do not clearly address criteria for passing a drop test, if
one was to designate the cylinder or generator as the inner packaging and the HM-224B
specificati?J! 'packaging as the outer pa~kaging. Specifically for a composite or
combination packaging states that the outer packaging "must not exhibit any damage
likely to affect safety dUring ·transport. lniler receptacles, inner' packagings, and art~cles
must remain completely within the outer packaging and there must be no leakage of
filling substance from the inner receptacle or inner packagings." For the packaging being
discussed, this could be 115 cubic feet of oxygen compressed to pressures gr~ater than
3,000 pounds per square inch (psi) inside an HM-224B outer patka~irig. The. 49 CFR
addresses filling procedures for packages subjeded to the drop in relation to liquids and
: . • • • •• ~· J . ' • . '
l!i

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-2-
solids only. Compressed gas has a behavior different from either a liquid or a solid, and
the safety risks involved with testing pressurized cylinders are extreme.
• How would the cylinder be filled to 98%?
• If the cylinder were tested empty, how would you know if the filling substance
leaked?
• If the damage to the outer packaging effects the flame penetration resistance, is
that considered a fail?
• Would the same criteria apply to vibration and stack test?
ATA Specification No. 300 Category I requires 160 face drop tests, 80 edgewise drop
tests, and 40 cornerwise drop tests.
• Are the drop tests conducted on consecutive sides, edges, or comers, or is one
selected and the required number of drops only performed on that side, edge, or
comer?
ATA Specification No. 300 Category I states the cause for rejection: "At the conclusion of
the testing, the contents of the container, its interior shock-absorbing materials and devices shall
not show any changes that affect their utility. The interior or exterior of the container shall not
reveal any failure of the container or shifting of the part."
• If a cylinder were considered the contents, how would its unaffected utility be
determined?
• Are the tests conducted in series?
• Should the utility be tested after each test- drop, vibration, etc.?
Point of contact for this matter is Miss Sarah R. Gedrich, DSN 795-7649, (570) 615-7649,
FAX (570) 615-7823, or e-mail sarah.gedrich@us.army.mil. All correspondence responding to
this memorandum should be sent to Chief, LOGSA Packaging, Storage, and Containerization
Center (AMXLS-AT-L/Sarah Gedrich), 11 Hap Arnold Boulevard, Tobyhanna, PA 18466-5097.
Sincerely,
/b A·.~
lsVar~ith
Chief, Logistics Testing and
and Applications Division
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