05-0199
05-0199
Page 1of Transportation U.S. Department 400 Seventh Street, S.W. Washington, D.C. 20590 Hazardous Materials Safety Pipeline and NOV - 3 2005 Administration Mr. Ed Mansell Ref. No.: 05-0199 P.O. Box 310 4825 E. Kearney Springfield, OH 65801 Dear Mr. Mansell: This is in response to your August 18, 2005 letter requesting clarification of the Hazardous Materials Regulations (HMR; 49 CFR Parts 171-180) applicable to structural integrity of cargo tanks. Specifically, you ask whether the following allowable: stress for stress concentrations are acceptable under the structural requirements for cargo tanks under § 178.345-3 of the HMR: Primary Stress Allowable: 1.5xSa*E, where Sa is the 1998 ASME Code allowable stress, and E is the joint efficiency; and Primary + Secondary Stress Allowable: 3xSa*E, where Sa is the 1998 ASME Code allowable stress, and E is the joint: efficiency. Section 178.345-3(b) specifically requires cargo tank designers to use Appendix G of the American Society of Mechanical Engineers (ASME) Code when considering stress concentrations which occur at pads, cradles, or other supports. Provided the stress concentrations occur at pads, cradles, or other supports, Appendix G of the ASME Code is mandatory when considering designing DOT specification cargo tanks. I hope this information is helpful. Sincerely, L'un 'Susan Gorsky Acting Director Office of Hazardous Materials Standards 198-345-3 050199#
Page 2From: Ed Mansell 4825E. Kearney P.O. Box 310 Ref.: Thursday, August 18, 2005 178345-3STR Springfield, MO 65801 To: Office of Hazardous Materials Foster Research and Special Programs Administration 400 7" Street SW., U.S. Department of Transportation Washington, DC 20590-001 5178.345-3 Attn: DHM-10 Caryo Tanks Sec. 178.345-3 Structural integrity. 05-0199 (a) General requirements and acceptance criteria. (1) allowable stress value prescribed in Section VIII of the ASME Code (IBR, see Sec. 171.7 of this subchapter), or The maximum calculated design stress at any point in the cargo tank wall may not exceed the maximum 25 percent of the tensile strength of the material used at design conditions. (b) accordance with Section VIII of the ASME Code. The cargo tank design must include calculation of stresses ASME Code design and construction. The static design and construction of each cargo tank must be in generated by the MAWP, the weight of the lading, the weight of structures supported by the cargo tank wall and the effect of temperature gradients resulting from lading and ambient temperature extremes. When dissimilar materials are used, their thermal coefficients must be used in the calculation of thermal stresses. (1) Stress concentrations in tension, bending and torsion which occur at pads, cradles, or other supports must be considered in accordance with appendix G in Section VIII of the ASME Code. (2) Longitudinal compressive buckling stress for ASME certified vessels must be calculated using paragraph UG-23(b) in Section VIII of the ASME Code. For cargo tanks not required to be certified in accordance with the ASME Code, compressive buckling However, paragraph (b)(1) makes an exception for stress concentrations in tension, bending and torsion, which occur at Paragraph (a) (1) states that the allowable stress value shall be in accordance with Section VIII of the ASME Code. pads, cradles, or other supports. Therefore, based on Appendix G which references WRC-107 and WRC-297 bulletins, the allowable stress for stress concentrations would be: Primary Stress Allowable: Primary + Bending Stress Allowable: 3xSa, where Sa is the ASME allowable, and E is the joint efficiency 1.5xSa*E, where Sa is the ASME allowable, and E the joint efficiency Question: Is the interpretation as stated above correct? Sincerely, Ed Manselll#
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