ASTM B771-2011e1 Standard Test Method for Short Rod Fracture Toughness of Cemented Carbides《硬质合金短杆断裂韧度的标准试验方法》.pdf
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1、Designation: B771 111Standard Test Method forShort Rod Fracture Toughness of Cemented Carbides1This standard is issued under the fixed designation B771; the number immediately following the designation indicates the year oforiginal adoption or, in the case of revision, the year of last revision. A n
2、umber in parentheses indicates the year of last reapproval. Asuperscript epsilon () indicates an editorial change since the last revision or reapproval.1NOTEThis Test Method was changed editorially in 2012.1. Scope1.1 This test method covers the determination of the fracturetoughness of cemented car
3、bides (KIcSR) by testing slotted shortrod or short bar specimens.1.2 The values stated in SI units are to be regarded asstandard. The values given in parentheses are for informationonly.1.3 This standard does not purport to address all of thesafety concerns, if any, associated with its use. It is th
4、eresponsibility 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 ASTM Standards:2E399 Test Method for Linear-Elastic Plane-Strain FractureToughness KIcof Metallic Mate
5、rials3. Terminology Definitions3.1 stress intensity factor, Kl,(dimensional units FL3/2)the magnitude of the ideal-crack-tip stress field for mode 1 ina linear-elastic body.NOTE 1Values of K for mode l are given by:Kl5 limit sy=2pr#r0 (1)where:r = distance directly forward from the crack tip to aloc
6、ation where the significant stress syis calculated,andsy= principal stress normal to the crack plane.3.2 Abbreviations:fracture toughness of cemented carbide,KIcSR,(dimensional units FL3/2)the material-toughnessproperty measured in terms of the stress-intensity factor Klbythe operational procedure s
7、pecified in this test method.4. Summary of Test Method4.1 This test method involves the application of an openingload to the mouth of the short rod or short bar specimen whichcontains a chevron-shaped slot. Load versus displacementacross the slot at the specimen mouth is recorded autographi-cally. A
8、s the load is increased, a crack initiates at the point ofthe chevron slot and slowly advances longitudinally, tending tosplit the specimen in half. The load goes through a smoothmaximum when the width of the crack front is about one thirdof the specimen diameter (short rod) or breadth (short bar).T
9、hereafter, the load decreases with further crack growth. Twounloading-reloading cycles are performed during the test tomeasure the effects of any macroscopic residual stresses in thespecimen. The fracture toughness is calculated from themaximum load in the test and a residual stress parameter whichi
10、s evaluated from the unloading-reloading cycles on the testrecord.5. Significance and Use5.1 The property KIcSRdetermined by this test method isbelieved to characterize the resistance of a cemented carbide tofracture in a neutral environment in the presence of a sharpcrack under severe tensile const
11、raint, such that the state ofstress near the crack front approaches tri-tensile plane strain,and the crack-tip plastic region is small compared with thecrack size and specimen dimensions in the constraint direction.A KIcSRvalue is believed to represent a lower limiting value offracture toughness. Th
12、is value may be used to estimate therelation between failure stress and defect size when theconditions of high constraint described above would be ex-pected. Background information concerning the basis fordevelopment of this test method in terms of linear elasticfracture mechanics may be found in Re
13、fs (1-7).35.2 This test method can serve the following purposes:5.2.1 To establish, in quantitative terms significant to ser-vice performance, the effects of fabrication variables on thefracture toughness of new or existing materials, and1This test method is under the jurisdiction of ASTM Committee
14、B09 on MetalPowders and Metal Powder Products and is the direct responsibility of Subcom-mittee B09.06 on Cemented Carbides.Current edition approved Oct. 1, 2011. Published February 2012. Originallyapproved in 1987. Last previous edition approved in 2011 as B771 11. DOI:10.1520/B0771-11E01.2For refe
15、renced 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 the standards Document Summary page onthe ASTM website.3The boldface numbers in parentheses refer to the list of references a
16、t the end ofthis standard.1Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.5.2.2 To establish the suitability of a material for a specificapplication for which the stress conditions are prescribed andfor which maximum flaw sizes can b
17、e established withconfidence.6. Specimen Configuration, Dimensions, and Preparation6.1 Both the round short rod specimen and the rectangularshaped short bar specimen are equally acceptable and havebeen found to have the same calibration (5). The short roddimensions are given in Fig. 1; the short bar
18、 in Fig. 2.6.2 Grip SlotDepending on the apparatus used to test thespecimen, a grip slot may be required in the specimen frontface, as shown in Fig. 3. The surfaces in the grip slot shall havea smooth ground finish so that the contact with each grip willbe along an essentially continuous line along
19、the entire gripslot, rather than at a few isolated points or along a shortsegment within the grip slot.6.3 Crack-Guiding SlotsThese may be ground using adiamond abrasive wheel of approximately 124 6 3 mm (4.9 60.1 in.) diameter, with a thickness of 0.36 6 0.01 mm (0.01406 0.0005 in.). The resulting
20、slots in the specimen are slightlythicker than the diamond wheel (0.38 6 0.02 mm, or 0.015 60.001 in.). A diamond concentration number of 50, and a gritsize of 150 are suggested. Dimensions are given in Fig. 1 andFig. 2 for two slotting options: (1) Specimens with curved slotbottoms made by plunge f
21、eeding the specimen onto a diamondcutting wheel of a given radius, and (2) Specimens withStandard DimensionsShort Rod(mm) (in.)B = 12.700 6 0.025 0.500 6 0.001W = 19.050 6 0.075 0.750 6 0.003t = 0.381 6 0.025 0.015 6 0.001For Curved Slot Optionao= 6.3506 0.075 0.250 6 0.003u = 58.0 6 0.5R = 62.23 6
22、1.27 02.45 6 0.05For Straight Slot Optionao= 6.7446 0.075 0.266 6 0.003u = 55.2 6 0.5R=FIG. 1 Short Rod SpecimenStandard DimensionsShort Bar(mm) (in.)B = 12.700 6 0.025 0.500 6 0.001H = 11.050 6 0.025 0.435 6 0.001W = 19.050 6 0.075 0.750 6 0.003t = 0.3816 0.025 0.015 6 0.001For Curved Slot Optionao
23、= 6.3506 0.075 0.250 6 0.003u = 58.0 6 0.5R = 62.23 6 1.27 2.45 6 0.05For Straight Slot Optionao= 6.744 6 0.075 0.266 6 0.003u = 55.2 6 0.5R=FIG. 2 Short Bar SpecimenNOTE 1The dashed lines show the front face profile of Figs. 1 and 2without grip slot.FIG. 3 Short Rod and Short Bar Grip Slot in Speci
24、men Front FaceB771 1112straight slot bottoms made by moving the specimen by acutting wheel. The values of aoand u for the two slotconfigurations are chosen to cause the specimen calibration toremain constant.7. Apparatus7.1 The procedure involves testing of chevron-slotted speci-mens and recording t
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