ASTM E837-2008 430 Standard Test Method for Determining Residual Stresses by the Hole-Drilling Strain-Gage Method.pdf
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1、Designation: E 837 08Standard Test Method forDetermining Residual Stresses by the Hole-Drilling Strain-Gage Method1This standard is issued under the fixed designation E 837; the number immediately following the designation indicates the year oforiginal adoption or, in the case of revision, the year
2、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.INTRODUCTIONThe hole-drilling strain-gage method determines residual stresses near the surface of an isotropiclinear-elastic m
3、aterial. It involves attaching a strain rosette to the surface, drilling a hole at thegeometric center of the rosette, and measuring the resulting relieved strains. The residual stresseswithin the removed material are then determined from the measured strains using a series of equations.1. Scope1.1
4、Residual Stress Determination:1.1.1 This test method specifies a hole-drilling procedurefor determining residual stress profiles near the surface of anisotropic linearly elastic material. The test method is applicableto residual stress profile determinations where in-plane stressgradients are small.
5、 The stresses may remain approximatelyconstant with depth (“uniform” stresses) or they may varysignificantly with depth (“non-uniform” stresses). The mea-sured workpiece may be “thin” with thickness much less thanthe diameter of the drilled hole or “thick” with thickness muchgreater than the diamete
6、r of the drilled hole. Only uniformstress measurements are specified for thin workpieces, whileboth uniform and non-uniform stress measurements are speci-fied for thick workpieces.1.2 Stress Measurement Range:1.2.1 The hole-drilling method can identify in-plane re-sidual stresses near the measured s
7、urface of the workpiecematerial. The method gives localized measurements that indi-cate the residual stresses within the boundaries of the drilledhole.1.2.2 This test method applies in cases where materialbehavior is linear-elastic. In theory, it is possible for localyielding to occur due to the str
8、ess concentration around thedrilled hole, for isotropic (equi-biaxial) residual stresses ex-ceeding 50 % of the yield stress, or for shear stresses in anydirection exceeding 25 % of the yield stress. However, inpractice it is found that satisfactory results can be achievedproviding the residual stre
9、sses do not exceed about 60 % of thematerial yield stress.1.3 Workpiece Damage:1.3.1 The hole-drilling method is often described as “semi-destructive” because the damage that it causes is localized andoften does not significantly affect the usefulness of the work-piece. In contrast, most other mecha
10、nical methods for measur-ing residual stresses substantially destroy the workpiece. Sincehole drilling does cause some damage, this test method shouldbe applied only in those cases either where the workpiece isexpendable, or where the introduction of a small shallow holewill not significantly affect
11、 the usefulness of the workpiece.1.4 This standard does not purport to address all of thesafety concerns, if any, associated 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 limitat
12、ions prior to use.2. Referenced Documents2.1 ASTM Standards:2E 251 Test Methods for Performance Characteristics ofMetallic Bonded Resistance Strain Gages3. Terminology3.1 Symbols:a= calibration constant for isotropic stressesb= calibration constant for shear stressesajk= calibration matrix for isotr
13、opic stressesbjk= calibration matrix for shear stressesD = diameter of the gage circle, see Table 1.1This test method is under the jurisdiction of ASTM Committee E28 onMechanical Testing and is the direct responsibility of Subcommittee E28.13 onResidual Stress Measurement.Current edition approved Fe
14、b. 1, 2008. Published April 2008. Originallyapproved in 1981. Last previous edition approved in 2001 as E 837 01e1.2For referenced ASTM standards, visit the ASTM website, www.astm.org, orcontact ASTM Customer Service at serviceastm.org. For Annual Book of ASTMStandards volume information, refer to t
15、he standards Document Summary page onthe ASTM website.1Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.D0= diameter of the drilled holeE = Youngs modulusj = number of hole depth steps so fark = sequence number for hole depth stepsP =
16、uniform isotropic (equi-biaxial) stressPk= isotropic stress within hole depth step kp = uniform isotropic (equi-biaxial) strainpk= isotropic strain after hole depth step kQ = uniform 45 shear stressQk= 45 shear stress within hole depth step kq = uniform 45 shear strainqk= 45 shear strain after hole
17、depth step kT = uniform x-y shear stressTk= x-y shear stress within hole depth step kt = x-y shear straintk= x-y shear strain after hole depth step kT = (superscript) matrix transposeaP= regularization factor for P stressesaQ= regularization factor for Q stressesaT= regularization factor for T stres
18、sesb = clockwise angle from the x-axis (gage 1) to themaximum principal stress directione = relieved strain for “uniform” stress caseej= relieved strain measured after j hole depth stepshave been drilledn = Poissons ratiou = angle of strain gage from the x-axissmax= maximum (more tensile) principal
19、stressamin= minimum (more compressive) principal stresssx= uniform normal x-stress(sx)k= normal x-stress within hole depth step ksy= uniform normal y-stress(sy)k= normal y-stress within hole depth step ktxy= uniform shear xy-stress(txy)k= shear xy-stress within hole depth step k4. Summary of Test Me
20、thod4.1 Workpiece:4.1.1 Aflat uniform surface area away from edges and otherirregularities is chosen as the test location within the workpieceof interest. Fig. 1 schematically shows the residual stressesacting at the test location at which a hole is to be drilled. Thesestresses are assumed to be uni
21、form within the in-plane direc-tions x and y.NOTE 1For reasons of pictorial clarity in Fig. 1, the residual stressesare shown as uniformly acting over the entire in-plane region around thetest location. In actuality, it is not necessary for the residual stresses to beuniform over such a large region
22、. The surface strains that will be relievedby drilling a hole depend only on the stresses that originally existed at theboundaries of the hole. The stresses beyond the hole boundary do notaffect the relieved strains, even though the strains are measured beyond thehole boundary. Because of this, the
23、hole-drilling method provides a verylocalized measurement of residual stresses.4.1.2 Fig. 1(a) shows the case where the residual stresses inthe workpiece are uniform in the depth direction. The in-planestresses are sx, syand txythroughout the thickness. Uniformresidual stress measurements can be mad
24、e using this testmethod with “thin” workpieces whose material thickness issmall compared with the hole and strain gage circle diameters,and with “thick” workpieces whose material thickness is largecompared with the hole and strain gage circle diameters.4.1.3 Fig. 1(b) shows the case where the residu
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