SAE MA 3374C-2012 Bolts and Screws UNS S66286 Corrosion and Heat Resistant Steel Procurement Specification Metric《公制耐腐蚀和耐热钢制UNS S66286螺栓和螺丝采购规范》.pdf
《SAE MA 3374C-2012 Bolts and Screws UNS S66286 Corrosion and Heat Resistant Steel Procurement Specification Metric《公制耐腐蚀和耐热钢制UNS S66286螺栓和螺丝采购规范》.pdf》由会员分享,可在线阅读,更多相关《SAE MA 3374C-2012 Bolts and Screws UNS S66286 Corrosion and Heat Resistant Steel Procurement Specification Metric《公制耐腐蚀和耐热钢制UNS S66286螺栓和螺丝采购规范》.pdf(22页珍藏版)》请在麦多课文档分享上搜索。
1、 _ SAE Technical Standards Board Rules provide that: “This report is published by SAE to advance the state of technical and engineering sciences. The use of this report is entirely voluntary, and its applicability and suitability for any particular use, including any patent infringement arising ther
2、efrom, is the sole responsibility of the user.” SAE reviews each technical report at least every five years at which time it may be reaffirmed, revised, stabilized or cancelled. SAE invites your written comments and suggestions. Copyright 2012 SAE International All rights reserved. No part of this p
3、ublication may be reproduced, stored in a retrieval system or transmitted, in any form or by any means, electronic, mechanical, photocopying, recording, or otherwise, without the prior written permission of SAE. TO PLACE A DOCUMENT ORDER: Tel: 877-606-7323 (inside USA and Canada) Tel: 724-776-4970 (
4、outside USA) Fax: 724-776-0790 Email: CustomerServicesae.org SAE WEB ADDRESS: http:/www.sae.org SAE values your input. To provide feedback on this Technical Report, please visit http:/www.sae.org/technical/standards/MA3374C METRIC AEROSPACE STANDARD MA3374 REV. C Issued 1986-02 Reaffirmed 2006-05 Re
5、vised 2012-08 Superseding MA3374B Bolts and Screws, UNS S66286, Corrosion and Heat Resistant Steel, Procurement Specification, Metric FSC 5306 RATIONALE Correct paragraph number references for FPI machined heads are not permitted, except lightening holes may be produced by any suitable method. Wrenc
6、hing recesses may be forged or machined. Flash or chip clearance in machined recesses shall not cause recess dimensions to exceed the specified limits. Heading stock to be hot forged shall not be heated to a temperature higher than 1150 C. 3.3.2 Heat Treatment Shall conform to the technical requirem
7、ents and other provisions specified in AMS2759/3 for A-286, 980 C solution treatment and 720 C aging treatment. SAE MA3374C Page 5 of 22 3.3.2.1 Solution Heat Treatment Headed blanks of AMS5731 shall, before finishing the shank and the bearing surface of the head, cold rolling the head-to-shank fill
8、et radius, and rolling the threads, be solution heat treated as in 3.3.2. 3.3.2.2 Ageing Treatment After solution heat treatment as in 3.3.2.1, blanks shall be heat treated by ageing as in 3.3.2. 3.3.3 Oxide Removal Surface oxide and oxide penetration resulting from prior heat treatment shall be rem
9、oved from the full body diameter and bearing surface of the head of the solution and aged heat treated blanks prior to cold rolling the fillet radius and rolling the threads. The oxide removal process shall produce no intergranular attack or corrosion of the blanks. The metal removed from the bearin
10、g surface of the head and the full body diameter of the shank shall be as little as practicable to obtain a clean, smooth surface. 3.3.4 Cold Rolling of Fillet Radius After removal of oxide as in 3.3.3, the head-to-shank fillet radius of headed parts having the radius complete throughout the circumf
11、erence of the part, shall be cold rolled. The cold rolling shall be sufficient to remove all visual evidence of grinding or tool marks. Distortion due to cold rolling shall conform to Figure 2, unless otherwise specified on the part drawing. No raised metal (excrescence) is permitted on the head bea
12、ring surface (face) or depressed metal more than 0.025 mm below the fillet radius contour as shown in Figure 2; the unthreaded shank at the position shown in Figure 2, inclusive of distortion, shall not exceed the unthreaded shank diameter by an amount more than that specified in Figure 2. In config
13、urations having an undercut connected with the fillet radius, the cold rolling will be required only for 90 degrees of fillet arc, starting at the point of tangency of the fillet radius and the bearing surface of the head. For shouldered bolts, having an unthreaded shank diameter larger than the thr
14、ead major diameter and having an undercut connected with a fillet between the threaded shank and the shoulder of the unthreaded shank, the cold working will be required only for 90 degrees of fillet arc, starting at the point of tangency of the fillet radius and the shouldered surface of the unthrea
15、ded shank. 3.3.5 Thread Rolling Threads shall be formed on the heat treated and finished blanks by a single cold rolling process after removal of oxide as in 3.3.3. 3.3.6 Passivation Treatment Parts, after finishing, shall be degreased and then subjected to the passivation treatment and copper sulfa
16、te test in accordance with ASTM A967. 3.4 Product Marking Each part shall be identification marked as specified by the part drawing. The markings may be formed by forging or stamping, raised or depressed 0.25 mm maximum, with rounded root form on depressed characters. 3.5 Mechanical Properties Where
17、 MA3374 is specified, parts shall conform to the requirements of 3.5.1, 3.5.2, and 3.5.4. Where MA3374-1 is specified, parts shall conform to the requirements of 3.5.1, 3.5.2, and 3.5.3. Threaded members of gripping fixtures for tensile and stress-rupture tests shall be of sufficient size and streng
18、th to develop the full strength of the part without stripping the thread. The loaded portion of the shank shall have two to three full thread turns from the thread runout exposed beween the loading fixtures during the tensile and stress-rupture tests. SAE MA3374C Page 6 of 22 MA3374 finished parts s
19、hall be tested in accordance with the following test methods: a. Hardness: MIL-STD-1312-6 in accordance with NASM 1312. b. Ultimate Tensile Strength at Room Temperature: MIL-STD-1312-108 in accordance with NASM 1312. c. Stress-Rupture Strength at 650 C MIL-STD-1312-10 in accordance with NASM 1312. M
20、A3374-1 finished parts shall be tested in accordance with the following test methods: a. Hardness: MIL-STD-1312-6 in accordance with NASM 1312-6. b. Ultimate Tensile Strength at Room Temperature: MIL-STD-1312-108 in accordance with NASM 1312. c. Room Temperature Ultimate Shear Strength: MIL-STD-1312
21、-13 in accordance with NASM 1312. 3.5.1 Ultimate Tensile Strength at Room Temperature 3.5.1.1 Finished Parts Tension bolts shall have an ultimate tensile load not lower than that specified in Table 1 and shall be tested to failure in order to observe fracture location, first measuring and recording
22、the maximum tensile load achieved. Screws, such as 100 degree flush head, pan head, and fillister head, shall have an ultimate tensile load not lower than that specified in Table 1; screws need not be tested to failure, however, the maximum tensile load achieved shall be measured and recorded. If th
23、e size or shape of the part is such that failure would occur outside the threaded section but the part can be tested satisfactorily, such as parts having a shank diameter equal to or less than the thread root diameter or having an undercut, parts shall conform to only the ultimate tensile strength r
24、equirements of 3.5.1.2; for such parts, the diameter of the area on which stress is based shall be the actual measured minimum diameter of the part. Tension fasteners with hexagon, double hexagon or spline drive heads having a minimum metal condition in the head equal to the design parameters specif
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