NAVISTAR MPAPS S-GM-90 101-GS PL-2015 Break Mandrel Blind Rivets C Metric Series (Noun Code C 7220).pdf
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1、This document is restricted and may not be sent outside Navistar, Inc. or reproduced without permission from Corporate Technical Standards. Suppliers are required to assume all patent liability. 2015 by Navistar, Inc. JUNE 2015 Page 1 of 8 NAVISTAR, INC. Material, Parts, and Process Specifications (
2、MPAPS) NUMBER: MPAPS S-GM-90.101-GS/PL Former Designation: ESP-GM-90.101-GS TITLE: Break Mandrel Blind Rivets Metric Series (Noun Code 7220) CURRENT REV No.: 1506 DATE: June 2015 WRITTEN/EDITED BY: Materials Engineering APPROVED BY: Materials Engineering SUPERSEDES: ESP-GM-90.101-GS - August 2006 PR
3、INTED COPIES OF THIS DOCUMENT MUST BE VERIFIED FOR CURRENT REVISION This specification may involve hazardous materials, equipment, and procedures. This specification does not purport to address all of the safety issues associated with its use. The user is responsible to consult appropriate safety an
4、d health practices and to determine the applicability of regulatory limits prior to use. Change Notice: Changed to New MPAPS format; Combined GS, GI, PP. 1.0 GENERAL: Implementation of this standard must be in accordance with the policies and procedures outlined on page MPAPS S-A-0.101. There may al
5、so be supplemental group instructions in regard to use of metric standards that should be taken into account. This standard may differ in some respects with certain segments of national standards. In recognition of these differences, the sizes and tolerance ranges used were established in an effort
6、to enable the use of commercially available items, dimensionally interchangeable worldwide. This standard establishes the dimensional and performance requirements of break mandrel blind rivets suitable for use in joining nonstructural component parts of an assembly. This specification contains the e
7、ssentials of the SAE Standard. A break mandrel blind rivet is a blind fastener with a self-contained mandrel which during the setting operation is pulled into or against the rivet body forming an upset on the blind end and expanding the body until the mandrel breaks. The inclusion of dimensional dat
8、a is not intended to imply that all the rivets described are stock production sizes. 2.0 CONTENTS: Page General 1 Design Consideration 2 Metric-Inch Related Sizes 2 Proprietary Variations 3 Design Parameters 3 Materials 3 Mandrel Hardness 3 Finish 4 Restricted Chemical Substances 4 Process 4 Perform
9、ances Requirements 4 NUMBER: MPAPS S-GM-90.101-GS/PL TITLE: Break Mandrel Blind Rivets REVISION: 1506 This document is restricted and may not be sent outside Navistar, Inc. or reproduced without permission from Corporate Technical Standards. Suppliers are required to assume all patent liability. 201
10、5 by Navistar, Inc. JUNE 2015 Page 2 of 8 3.0 DESIGN CONSIDERATION: Installation of a regular rivet requires tooling access to both rivet ends. If access to only one end is possible, a blind rivet which utilizes an integral pull type mandrel to deform the blind end into a clinch may be used. Rivets
11、are best suited for joints that are loaded in shear. As they fill the hole, they will prevent chucking under transverse load but, compared to bolts or screws, rivets have lower strength. The following edge distance and spacing recommendations apply to all rivets. Break mandrel blind rivets are consi
12、dered non-structural. Consideration of material being joined, such as FRP or other relatively soft materials, especially in thin sections should be given. In addition, consideration of the compatibility of rivet materials with materials being joined should be given to avoid corrosion particularly in
13、 exterior applications. Note: In all cases, it is recommended that all completed assemblies be tested under service loads to verify the design. 4.0 METRIC-INCH RELATED SIZES: During the inch to metric design transition period, the following chart of related sizes can be used for reference. Metric Se
14、ries mm Inch Series 3.2 1/8 4.8 3/16 6.3 1/4 Page Test Methods 4 Dimensions 6 Application Data For Protruding Regular Head Blind Rivets 7 Part List 7 Technical Information 8 Average recommended edge distance is two times the diameter of the rivet. In lightly loaded structures where the rivet perform
15、s only a holding function, this can be decreased to 1-1/2 diameters, and in heavily loaded structures, it may be necessary to increase it to as much as 3 diameters to develop required joint strength. Rivet pitch should be three times the diameter of the rivet. Depending upon nature of load, it may b
16、e desirable to decrease or increase this distance. However, it is generally considered that 3 diameters overcome the tendency of the material to fail and concentrate the load on the rivet. Do not space farther than 24 x T of thinnest panel. NUMBER: MPAPS S-GM-90.101-GS/PL TITLE: Break Mandrel Blind
17、Rivets REVISION: 1506 This document is restricted and may not be sent outside Navistar, Inc. or reproduced without permission from Corporate Technical Standards. Suppliers are required to assume all patent liability. 2015 by Navistar, Inc. JUNE 2015 Page 3 of 8 5.0 PROPRIETARY VARIATIONS: Proprietar
18、y pull-break mandrel type blind rivet design features and other details of parts produced by individual manufacturers may vary within envelope dimensions given, provided all requirements of this specification are met. 6.0 DESIGN PARAMETERS: Nominal Sizes: 3.2, 4.8, and 6.3 mm Head Style: Protruding
19、or Dome (Regular Head) Grades: Grade 19 30 51 Rivet Body Material Aluminum Alloy 5056 Or Equiv. Low Carbon Steel Stainless Steel (300 Series or equivalent) Mandrel Carbon Steel Carbon Steel Stainless Steel Material (300 or Equivalent) 7.0 MATERIALS: Rivet bodies and mandrel will be made of the mater
20、ials specified above. When the specific material analysis is not given, the analysis will be selected by the manufacturer and will be such to assure that the rivets meet the mechanical performance requirements. Ultimate Tensile Strength Newtons min Grade 19 Grade 30 Grade 51 Rivet Body Aluminum 5056
21、 or Equiv. Low Carbon Stainless Steel Steel (300 Series) Mandrel - Carbon Steel Stainless Steel 980 1380 2360 2220 3020 5340 4090 5520 9340 NOTE: Rivet sizes 4.8 mm and 6.3 mm diameters, made of carbon steel materials, should not be tested for 3.2 mm and 4.8 mm grip ranges since the rivets are stron
22、ger than the test plates. N=Newton = pound force x 4.448 * Mandrel break load is defined as the load in newtons necessary to break the mandrel when setting break mandrel types of pull mandrel blind rivets. 8.0 MANDREL HARDNESS: In the event that the mandrel hardness is suspect, the following will be
23、 used as a referee test. Using a transverse Tukon Microhardness (Knoop Scale) Test at 12.7 mm Nominal Rivet Body Mandrel Break Load* Newtons Ultimate Shear Strength Newtons min Grade 19 Grade 30 Grade 51 Grade 19 Grade 30 Grade 51 Rivet Body Rivet Body Aluminum 5056 or Equiv. Low Carbon Steel Stainl
24、ess Steel (300 Series) Aluminum 5056 or Equiv. Low Carbon Steel (Stainless Steel (300 Series) Mandrel Carbon Steel Stainless Steel Mandrel - Carbon Steel Stainless Steel Min Max Min Max Min Max 3.2 (1/8) 4.8 (3/16) 6.3 (1/4) 1780 3340 6450 2670 4670 8230 2670 5120 8670 3560 6450 10450 2890 6230 1330
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