ASTM E855-1990(2000) Standard Test Methods for Bend Testing of Metallic Flat Materials for Spring Applications Involving Static Loading《涉及静负载的弹簧用金属板材弯曲试验的方法》.pdf
《ASTM E855-1990(2000) Standard Test Methods for Bend Testing of Metallic Flat Materials for Spring Applications Involving Static Loading《涉及静负载的弹簧用金属板材弯曲试验的方法》.pdf》由会员分享,可在线阅读,更多相关《ASTM E855-1990(2000) Standard Test Methods for Bend Testing of Metallic Flat Materials for Spring Applications Involving Static Loading《涉及静负载的弹簧用金属板材弯曲试验的方法》.pdf(8页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: E 855 90 (Reapproved 2000)Standard Test Methods forBend Testing of Metallic Flat Materials for SpringApplications Involving Static Loading1This standard is issued under the fixed designation E 855; the number immediately following the designation indicates the year oforiginal adoption o
2、r, in the case of revision, the year of last revision. A number in parentheses indicates the year of last reapproval. Asuperscript epsilon (e) indicates an editorial change since the last revision or reapproval.1. Scope1.1 This standard describes three test methods2for deter-mining the modulus of el
3、asticity in bending and the bendingstrength of metallic strips or sheets intended for the use in flatsprings:1.1.1 Test Method Aa cantilever beam,1.1.2 Test Method Ba three-point loaded beam (that is, abeam resting on two supports and centrally loaded), and1.1.3 Test Method Ca four-point loaded beam
4、 (that is, abeam resting on two supports and loaded at two points equallyspaced from each support).1.2 Values stated in inch-pound units are to be regarded asthe standard. SI units are provided for information only.1.3 This standard does not purport to address all of thesafety concerns, if any, asso
5、ciated with its use. It is theresponsibility of the user of this standard to establish appro-priate safety and health practices and determine the applica-bility of regulatory limitations prior to use.2. Referenced Documents2.1 The following documents of the issue in effect on dateof use of these tes
6、t methods form a part of these test methodsto the extent referenced herein:2.2 ASTM Standards:E 4 Practices for Force Verification of Testing Machines3E 6 Terminology Relating to Methods of Mechanical Test-ing3E 111 Test Method for Youngs Modulus, Tangent Modulus,and Chord Modulus33. Terminology3.1
7、Definitions of Terms Specific to This Standard:3.1.1 In addition to the terms in Terminology E 6, thefollowing descriptions of terms apply in connection with thesetest methods for determining bend properties:3.1.2 bend propertiesthose properties of a material thatare associated with elastic and inel
8、astic behavior when abending force is applied, or that involve the relationshipbetween bending stress and strain.3.1.3 bending stress at outer fiber (FL2)the nominalstress in the outer fibers of a beam resulting from application ofa bending load.3.1.4 elastic limit in bending (FL2)the greatest bendi
9、ngstress that a material is capable of sustaining without perma-nent strain remaining after complete release of the bendingmoment.3.1.5 modulus of elasticity in bending (FL2)the ratio ofbending stress to corresponding strain below the elastic limit inbending.3.1.6 span length (L)the distance between
10、 supports.3.1.7 uniform bending moment (FL)a bending momentthat produces a uniform strain at the outer fibers throughout thegage length of the specimen.3.1.8 bending proof strength (FL2)the nominal stress inthe outer fibers of a beam that results in a specific permanentstrain in the outer fibers upo
11、n unloading.3.1.9 cyclic bending yield strength (FL2)the maximumnominal stress in uniform cyclic bending resulting from a givenplastic deformation in the outer fibers of a beam.3.1.10 offset yield strength in bending (FL2)the nominalstress in the outer fibers of a beam in bending at which aspecified
12、 limiting deviation from proportionality of bendingstress to bending strain is exhibited. The deviation is expressedin terms of strain.4. Significance and Use4.1 Measurements of bending strength and modulus ofelasticity in bending should be made for materials whoseprincipal stressing mode is bending
13、. For many materials, thetensile and compressive moduli are somewhat different. Sincethe bending modulus is a combination of the tensile andcompressive moduli, it is often different from each of them.4.2 Precise measurements of the modulus of elasticity inbending and bending strength require due reg
14、ard for numerousvariables that may affect their determination. These include (1)characteristics such as specimen orientation with respect to therolling direction, grain size, residual stresses, previous strainhistory, dimensions and specimen preparation, orientation of1These test methods are under t
15、he jurisdiction of ASTM Committee E28 onMechanical Testing and are the direct responsibility of Subcommittee E28.02 onDuctility and Flexure Testing.Current edition approved March 30, 1990. Published May 1990. Originallypublished as E 855 81. Last previous edition E 855 84.2Method D, which appeared i
16、n the last previous edition, was dropped because ofthe unavailability of commercial testing equipment.3Annual Book of ASTM Standards, Vol 03.01.1Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.deformed grains relative to the direction
17、 of the normal stress;and (2) test conditions, such as tem-perature, temperature variations, condition of the test equip-ment and adherence to the recommended test procedure.5. Fundamental Assumptions5.1 The test section of the specimen is subjected to uniformbending moment (applies to Test Method C
18、 only).5.2 The neutral axis is located at the centerline of thethickness of the test specimen.5.3 Transverse cross sections of the beam remain plane andnormal to the longitudinal fibers of the beam during bending.5.4 The effect of shear stresses is negligible.TEST METHOD ACANTILEVER BEAM TEST6. Scop
19、e6.1 This test method covers the determination of the modu-lus of elasticity in bending and the offset yield strength inbending of flat metallic strips or sheets for spring applications.The test procedure involves measurements of the appliedmoment and the corresponding angle of deflection of acantil
20、ever beam. The thickness range covered is 0.015 to 0.130in. (0.38 to 3.30 mm). This test method is not applicable fornonlinear elastic materials.7. Summary of Test Method7.1 The test specimen is loaded as a simple cantilever beam,and the bending moment is measured at predetermined incre-ments of ang
21、ular deflection. When the maximum desireddeflection is reached, the bending moment is removed and thepermanent set angle resulting from the bend is recorded. Alltesting is performed under conditions of plane strain (that is,ratio of specimen width/thickness 10). The bending momentand deflection data
22、 obtained are normalized with regard tospecimen geometry. These normalized terms are then plotted toproduce a stress-strain curve for cantilever bending that issimilar to a stress-strain curve for tension or compression. Themodulus of elasticity in bending and the offset yield strength inbending are
23、 determined from the bending stress-strain curveusing a procedure similar to that used for tensile stress-straincurves.8. Significance and Use8.1 This test method may be used for obtaining values ofoffset yield strength in bending and modulus of elasticity inbending. These values are useful to sprin
24、g designers todetermine spring constants and permissible maximum deflec-tion of flat springs. It should be recognized that the offset yieldstrength in bending as determined by this test method is notnecessarily equal to either the yield strength in tension, thecyclic yield strength in bending, or to
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