# HMT Associates, L.L. — Hazardous Materials Safety Interpretation

- **operation:** document
- **citation:** 02-0159
- **title:** HMT Associates, L.L. — Hazardous Materials Safety Interpretation
- **source type:** guidance
- **agency:** Pipeline and Hazardous Materials Safety Administration
- **status:** guidance
- **official:** true
- **published on:** 2002-08-20
- **effective on:** Not available
- **summary:** 02-0159 response to HMT Associates, L.L. concerning 172.101.
- **machine formats:** - **json:** https://regulus.evalyn.ai/document/phmsa-interpretation-02-0159.json
- **markdown:** https://regulus.evalyn.ai/document/phmsa-interpretation-02-0159.md
- **app url:** https://regulus.evalyn.ai/document/phmsa-interpretation-02-0159
- **source url:** https://www.phmsa.dot.gov/sites/phmsa.dot.gov/files/legacy/interpretations/Interpretation%20Files/2002/020159.pdf
**body:**

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of Transportation
U.S. Department
400 Seventh St., S.W.
Washington, D.C. 20590
Research and
AUG 2 0 2002
Mr. E. A. Altemos
Ref. No. 02-0159
HMT Associates, L.L.C.
603 King Street
Suite 300
Alexandria, VA 22314-3105
Dear Mr. Altemos:
This responds to your letter requesting a determination that an article, i.c., a valve for internal
combustion engines (e.g., automobile or aircraft engines) containing a small quantity of sodium or
potassium sodium alloy encapsulated and sealed within the valve cavity by welding, is not subject to the
Hazardous Materials Regulations (HMR; 49 CFR Parts 171-180). You provided information, as
follows:
The valves vary in size, the largest is approximately five (5) inches in length. The
outside appearance of the valves are similar to other internal combustion engine intake
or exhaust valves. However, to aid in transferring heat down the stem and away from
the head - which is directly exposed to the high temperatures attained in the engine
cylinder during operation -- a small quantity of sodium or potassium sodium alloy is
contained in a cavity inside the valve. The maximum quantity of material contained in
the valve cavity is 1.6 grams, and the cavity is not filled to more than 65% of its volume,
allowing room for expansion of the material under all operating conditions to which the
valve would be subjected in an operating engine.
The valves are inspected by performing non-destructive testing to ensure that they are
free of defects that could cause failure of the valve and release of its contents. The
minimum melting temperature of the steel used in the valves is 2,500°F, and the filled
valves are subjected to heat treatment at temperatures ranging from a minimum of
830°F to a maximum of 2,050°F, without failure or release of contents. Valves are
designed, and some are tested, to ensure that they do not fail or leak when subjected to
lateral bending loads that induce stress levels in walls of the cavity of approximately
50,000 psi. The valves may be expected to retain their contents when subjected to
mechanical shocks or crushing if involved in transport or handling accidents.
Based on the information provided, it is our determination that 1.6 grams or less of sodium or potassium
sodium alloy encapsulated and sealed by welding within a valve for an internal combustion engine is in a
quantity and form that does not pose a hazard in transportation and, therefore, these articles are not
020159
172/01

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subject to the HMR. This determination does not apply to valves containing more than 1.6 grams of
sodium or potassium sodium alloy, which must be shipped in conformance with all applicable
requirements of the HMR.
I hope this satisfies your inquiry. If we can be of further assistance, please contact us.
Sincerely,
hom Fallin
jor Bread Monto
Director, Office of Hazardous

<<<PAGE 3>>>

Engrum
HMT ASSOCIATES, II0 § 172 10| (p)
603 KING ST.
Proper Shipping Name
ALEXANDRIA, VA 22314-3105
SUITE 300
02-015 TEMOS
703-549-0727
PATRICIA A. QUINN
FACSIMILE: 703-549-0728
WRITER'S DIRECT DIAL NUMBER
(703) 549-0727, Ext. 11
May 16, 2002
Mr. Edward T. Mazzullo
Director, Office of Hazardous
Materials Standards (DHM-10)
Research and Special Programs
Administration
Department of Transportation
Washington, D.C. 20590-0001
Dear Mr. Mazzullo:
Further to my recent conversation with Dr. Charles Ke of' the Sciences Branch, Office of
Hazardous Materials Technology, this is to request a determination that an article in which a small
amount of á hazardous material is encapsulated is not'subject to regulation in transportation under
the Hazardous Materials Regulations ("HMR", 49 CFR Parts 171-180) since in that quantity and
form the article presents no hazard to life or property in transportation. As' you know, § 5103(a) of
the Federal hazardous materials transpoitation law (49 U:S.C. § 5101, et seq.) provides that both ihe
quantity and form in which a-material is transported is to be taken into account in determining
whether transporting that material in commerce poses and unreasonable risk to health and safety or
property, and, therefore, the material should be regulated in transport.
The articles concerned are valves for internal combustion engines (e.g., automobile or aircraft
engines). The valves vary in size, with the largest being approximately five (5) inches in length. In
their outward appearance, the valves are similar to other internal cornbustion engine intake or
exhaust valves. However, to aid in transferritig heat downi the stem and away from the head - which
is directly exposed to the high temperatures attained in the erigine cylinder during operation - a small
quantity of sodium (UN 1428) of potassium sodium alloy (UN 1422) is contained in a cavity inside
the valve. The maximum quantity of material contained in the valve cavity is I.6 grams, and in no
case is the cavity filled to more than 65 % of its volume - thereby allowing ample room for
expansion of the contained material under all operating temperatures and conditions to which the

<<<PAGE 4>>>

HMT ASSOCIATES, I.L.C.
May 16, 2002
Mr. Edward T. Mazzullo
Page 2
valve would be subjected in an operating engine. In fabricating the valves, once the sodium or
potassium sodium alloy is placed in the cavity, the cavity is sealed by welding. Each valve,
including this weld, is inspected by performing non-destructive testing to ensure that it is free of
defects that could cause failure of the valve, and release of its contents.
Thus, the small quantity of sodium or potassium sodium alloy is fully encapsulated, and
permanently sealed within the valve. There is no possibility that the contained material will be
released under normal conditions of transport, and, therefore, the material poses no hazard under
those conditions. Moreover, the valves would likely retain their contents even in the case of fire or
accident. The minimum melting temperature of the steel used in the valves is 2,500°F, and the filled
valves are subjected to heat treatment at temperatures ranging from a minimum of 830°F to a
maximum of 2050°F - obviously without failure or release of contents. In terms of resistance to
mechanical damage, quite clearly the valves must be designed to operate without failure under
extreme conditions of temperature and mechanical loadings encountered in an operating engine.
Valves are designed, and some are tested, to ensure that they do not fail or leak when subjected to
lateral bending loads that induce stress levels in walls of the cavity of approximately 50,000 psi.
Thus, the valves may be expected to retain their contents even when subjected to mechanical shocks
or crushing as may be associated with typical transport or handling accidents.
In conclusion, owing to the very small quantity of hazardous material involved, and its fully
encapsulated, permanently sealed form, the valves concerned pose no hazard to health and safety or
property under normal conditions of transport. Accordingly, it is requested that a determination be
made that the valves described above are not subject to the HMR in transportation.
Thank you for your consideration in this matter. Please do not hesitate to contact me if you
have questions concerning this request, or if you require additional information.
Sincerely,
each
E. A. Altemos
CC:
Dr. Charles Ke (DHM-21)
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