NAVY MIL-T-17600 D (4)-1982 TURBINES STEAM PROPULSION NAVAL SHIPBOARD《海军舰蒸汽推进涡轮机》.pdf
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1、MIL-T-I7600D(SHIPS) AMENDMENT 4 3 November 1982 SUPERSEDING AMENDMENT 3 1 May 1979 MILITARY SPECIFICATION TURBINES, STEAM, PROPULSION NAVAL SHIPBOARD This amendment forms a part of Military Specification MIL-T-I7600D(SHIPS), dated 18 March 1968 and is approved for use by the Naval Sea Systems Comman
2、d, Department Qf the Navy and is available for use by all Departments and Agencies of the Department of Defense. PAGE 1 2.1, under “SPECIFICATIONS, FEDERALI*: Delete reference to ffQQ-S-624“, “QQ-S-634“. and IfQQ-S-635“, and add the following: “QQ-C-390 - Copper Alloy Castings (Including Cas; Bar).
3、TT-P-28 - Paint, Aluminum, Heat Resisting (1200 F).“ PAGES 1 and 2 * 2.1, under llSPECIFICATIONS, MILITARY“: Delete reference to 11JAN-W-562“, llMIL-S-890“, “MIL-P-15137“, MIL-L-1571911, “MIL-T-22051lf, and “MIL-S-2409311, and add the following: “MIL-G-2860 - Glasses, Sight-flow, Clear, Borosilicate
4、. MIL-T-15377 - Temperature Manitsr System, Naval Shipboard. MIL-M-17060 - Motors, 60-Hertz, Alternating Current; MIL-“17413 - Motor, Direct Current, Integral Horsepower, MIL-P-18547 - Pumps, Rotary, Power Driven, Naval Shipboard MIL-V-22682 - Valves, Astqn (Far Shipboard Use). DOD-(3-24508 - Grease
5、, High Performance, Multi-Purpose Integral-Horsepower, Shipboard Use. Naval Shipboard. Main Lubricating Oil Service. . (Metric) .ff PAGE 2 2.1, under “STANDARDS, MILITARY“: Add: ItMIL-STD-1552 - Provisioning Technical Documentation, Uniform DOD Requirements for 2.1, under PUBLICATIONS“: Delete refer
6、ence to INAVSHIPS 250-644-2“ and add “NAVSHIPS 283-228-1000 - Bearing Babbitting Procedures.t1 1 of 24 FSC 2825 Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-MIL-T-l7600D(SHIPS) AMENDMENT 4 PAGE 3 2.2, under “AMERICAN SOCIETY FOR TESTING AND MATERI
7、ALS“: Add the following: !IA 322 - Hot-Rolled Alloy Steel Bars. A 331 - Steel Bars, Alloy, Cold-Finished. A 537 - Pressure Vessel Plates, Heat-Treated, Carban-Manganese- Silicon Steel. A 565 - Martensitic Stainless Steel Bars, Forgings, and Forging Stock for High-Temperature Service, A 575 - Merchan
8、t Quality Hot-Rolled Carbon Steel Bars. A 576 - Steel Bars, Carbon, Hot-Rolled Special Quality. A 663 - Merchant Quality Hot-Rolled Carbon Steel Bars Subject to A 675 - Steel Bars and Bar Size Shapes, Carbon, Hot-Rolled, Mechanical Property Requirements. Special Quality, Subject to Mechanical Proper
9、ty Requirements .I1 2.2, under “UNITED STATES OF AMERICA STANDARDS INSTITUTE“: Delete reference te llB1, 2“. 2.2: Add: IISOCIETY OF AUTOMOTIVE ENGINEERS, INC, (SAE) AMs 5698 - Alloy Wire, Corrosion and Heat Resistant 72 .Ni - 15.5 Cr - 0.95 (Cb + Ta) - 2.5 Ti - 0.70 Al - 7.0 Fe No. 1 Temper. (Applic
10、ation for copies should be addressed to the Society of Auto- motive Engineers, Inc., 400 Commonwealth Drive, Warrendale, PA 15096.)“ “AMERICAN NATIONAL STANDARDS INSTITUTE (ANSI) B16.5 - Steel Pipe Flanges and Flanged Fittings. (Application for copies should be addressed to the American National Sta
11、ndards Institute, Inc., 1430 Broadway, New York, NY 10018.)“ PAGE 5 * 3.2.2.1: Add as item (aa): I1(aa) Astern valve (submarine) and control mechanism at turbine (see 3.10.3.2).11 PAGE 6 * 3.3.1: Add: “NAVSEA approval shall be obtained if the proposed design requires planned maintenance actions diff
12、erent from figure 1. In nQ case shall parts be physically interchangeable or reversible unless such parts are also interchangeable or reversible with regard to function, performance and strength .It 2 Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-M
13、IL-T-L7600D (4) 28 m 7977706 0428b72 2 W in tension, shear, ard crush, this is represented by u, T, respectively, which are defined as: U= + F (OU - py) T= 0.6 U = 1.6 C Where: ay is the 0.2 percent offset yield, elastic limit or other normal definition of material yield strength. bu is the normal d
14、efinition,of material failure strength. F is a factor which takes into account the efficiency with which the material in the member is utilized and is dependent on the kind of loading and cross section of the member. The value of F is equal to -1 (that load required to completely yield the member di
15、vided by that required to just initiate yielding) -1. F equals zero for members in tension and where material has less than 10 percent elongation before fracture ln a tension test: F equals 0.5 for a rectangular section in pure bending. “3.13.2.3 Dynamic analysis. When specified (see 6.2.2). the man
16、ufacturer shall conduct a concurrent dynamic analysis. Items found deficient by the analysis shall be identified and corrective actisns proposed. Design changes will be incorporated at the option and expense of the Government. “3.13.2.4 Stress report. A stress summary report shall be submitted to NA
17、VSEA far information. Report shall cover all areas for which shock stresses were calculated and shall indicate the applicable yield strength for each stress reported. * 13.13.3 Exceptions. The above basis for shock design applies except in the following cases: (a) When the turbine proposed is of ide
18、ntical design to one that . has been previously shock tested and finally accepted by the Navy, such design shall be acceptable if it meets all other requirements for the prQpQSed application. (b) When the turbine proposed is of identical design to one.that has been .previously dynamically analyzed a
19、nd such analysis has been finally accepted by the Navy, such design shall be acceptable if: (1) The mathematical model applies without change: i,e., the equipment involved is a repeat procurement for which the foundation and other equipment affecting the model are the same. 10 Provided by IHSNot for
20、 ResaleNo reproduction or networking permitted without license from IHS-,-,-MIL-T-l7600D(SHIPS) AMENDMENT 4 (2) The turbine meets all other requirements for the (c) When the turbine proposed is similar, but not identical, to proposed application. a design previously tested or dynamically analyzed an
21、d accepted by the Navy, the turbine manufacturer may define areas of dissimilarity, including calculated llg-loadn capability in these areas, and propose ta the Navy the acceptance sf such design in lieu of the requirement in 3.13.2. If NAVSEA concurs that the similar design will provide equal or be
22、tter shock capabilities in the intended application, extension approval will be given. (dl Gland seal regulators, sentinel valves, and other valves such as a transfer valve for HP-LP turbine and submarine astern valve may, at the manufacturerls option, be separately shock tested in accordance with M
23、IL-S-901.11 PAGE 2.2 3.16: Add: “Design minimum axial and radial clearances shall be maintained by a knife edge (thin metal section) design to prevent major turbine damage if a rub occurs. No heavy diaphragm section shall be within 1/4 inch of rotating parts.! PAGE 23 3.19.2.3: Delete. 3.19.3.1: Del
24、ete and substitute: 113.19.3.1 Regular versus heavy series. Where necessary for purposes of bearing loads, pressure tight flanges, shock and other special applications, heavy series shall be used.lt PAGE 24 * 3.19.3.5: Add: !Self locking threaded fasteners shall not have been threaded on to anengagi
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