NAVY MIL-W-6015 A-1953 WIRE ROPE 6 BY 19 HIGH STRENGTH (FOR AIRCRAFT LAUNCHING AND ARRESTING)《 高强度6 BY19钢丝(用于飞机起飞和制动)》.pdf
《NAVY MIL-W-6015 A-1953 WIRE ROPE 6 BY 19 HIGH STRENGTH (FOR AIRCRAFT LAUNCHING AND ARRESTING)《 高强度6 BY19钢丝(用于飞机起飞和制动)》.pdf》由会员分享,可在线阅读,更多相关《NAVY MIL-W-6015 A-1953 WIRE ROPE 6 BY 19 HIGH STRENGTH (FOR AIRCRAFT LAUNCHING AND ARRESTING)《 高强度6 BY19钢丝(用于飞机起飞和制动)》.pdf(6页珍藏版)》请在麦多课文档分享上搜索。
1、;. * ir MIL-W-b0LSA YO 9999906 0487669 O M I L - W - 6 O I 5A General Specification for Inspection of Miitaq JAN-B-121 JAN-P-125 Barrier-Haterials , Greaseproof Packaging and Packing for Overseas Shiperit - I3arrier4aterials , Waterproof , Fleldble STANDAFUX MIL-STD-I29 Marking of Shipnents (Copies
2、of specifications, standards, and drawings required by contractors in connection with specific procurement functions should be obtained from the procuring activity or as directed by the contracting officer.) 3. REQUIREMENTS 3.1 Materials.- 3.1.1 -.- The wire used in the rope shall be made fromthe be
3、st quality of a suitable type of steel. The WIWI- shall be uricoated, Le. , not galvanized, tinned, etc. U Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-* MIL-W-60LSA 40 9999906 0487670 7 m w MIL-W-60158( ASG ) 3.1.2 Fiber.- The fiber of the core s
4、hall be the best quality of hard fiber commercially used for cores of wire ropes. (African, Java, Mauritius, Mexican, or Yucatan). hard fiber may be used. thoroughly cleaned, free from waste, evenly twisted, and of uniform ply. Rope Construction.- The rope shall be 6 by 19 construction, right-hand t
5、wist, regular lay, preformed, with a fiber core. strands of i9 main wires and 6 filler wires each, making a total of iU+ main wires and 36 filler wires in the strands. The hard fibers are manila (abaca) and sisal A mixture of two or more kinds of The fiber core shall be The core shall not contain ju
6、te fiber. 3.2 The rope shall have one core, and six 3.3 Strand Construction.- Each of the six strands of the wire rope shall have a main wire center, layer. There shall be 6 filler eres between the inner layer and the outer layer. AU. the main wires in the inner layer shall be one diameter. Ail the
7、main wires in the outer layer shall be one diameter. shall be fabricated in one operation. 6 main wires in the inner layer, and i2 main wires in the outer All the filler wires shall be one diameter. The strand 3.3.1 One Diameter.- Wjres in a wire rope are one diameter if the difference between the d
8、iameter of the smallest wire and the diameter of the largest wire ia not greater than the value specified in table I. TABLE I Wires of One Diameter Wire Diameter : Difference Between the Diameter of : the Smallest Wire and the Diameter of the Largest Wire Inch : Inch up to 0.029 O. 0015 o. 0020 0.00
9、25 0.030 to 0.059 O.l0 to O.l.49 O. 0030 0.060 to 0.099 3.3.2 Pitch.- All the wires in a strand fabricated in one operation shall have the same pitch, and each wire shall be in contact v+th the sante adjacent wires for its entire length. 3.4 Joints.- The strands of the wire rope shall contain no joi
10、nts made after fabrication. strands, the distance between a joint in any one wire and the joint in any other wire in the same strand shall be not less than 18 inches. Seizing.- Each end of each length of wire rope shall be suitably seized. Ductility.- Main wires taken from the completed wire rope sh
11、all not If joints are made in the individual wires befare the fabrication of the 3.5 3.6 fracture when tested by the method specified in Section 4. Th mechanical properties of the wire rope shall conform to the requirement shown in table II for the size (diameter) specified in the contract or order.
12、 difference between the actual unrestrained diameter and the initial diameter shall bo not more than the Ilmita given in table II. 3.7 Mechanical Properties.- 3.8 Preforming.- With the seizing at one end of the wire rope removed, the 2. Provided by IHSNot for ResaleNo reproduction or networking perm
13、itted without license from IHS-,-,-TABU II Mechanical Properties : Max Pedssibb : Diameter lf : Difference in Dia: Approx : Breaking Strength Nomi- : : When Seizing is : Weight : 2/ : Pitch 3/ na1 :Min : Max : Removed : per Foot : Nominal : Min : E= Inches: Inches: Inches : Inch : Pounds : Pounds :
14、Pounds : Inches 5/$ : 5/8 : 21/32 : 1/32 : : : : : 0.63 : 40,300 : 39,500 : 4.0 : 0.71 : 46,000 : 44,800 : 4.5 : 1.23 : 73,000 : 71,200 : 5.7 : 1.60 : 95,000 : 92,600 : 6.5 ;g: ll/l6 : “64 : 45/64 : 7/8 : 7 8 : 59/64 : 1 :1 : 1-3/66 : 3/64 1-1/8 : 1-1/8 : 1-11/64: 3/64 : 2.03 t n9,ooo : n6,ooo : 7.3
15、 : 2.50 : 46,000 : l42,000 : 8.1 l-l/4 : 1-1/4 : 1-5/16 : 1-3/8 : 1-3/! : 1-7/16 : 1/16 : 3.03 : 175,000 : 171,000 : 8.9 1-1/2 : 1-1/2 : 1-9/16 : 1/16 : 3.60 : 208,000 : 203,000 : 9.8 1-5/8 : 1-5/8 : 1-23/32: 1-3/4 : 1-3/4 : 1-27/32: 3/32 : 4.90 : 280,000 : 273,000 : u.4 : 5.63 : 3L$,OOO : 306,000 :
16、 12.2 1-7/8 : 1-7/8 : 1-31/32: 2 :2 : 2-3/32 : 3/32 : 6.40 : 350,000 : 341,000 : 13*0 1/16 3/32 3/32 : 4.23 : 242,000 : 236,000 : 10.6 1/ 2f The diameter of a wire rope is the diameter of the circumscribing Nomin% breaking strength values are to be used for design purposes. circle. Minimum breaking
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