ASTM E2126-2008 Standard Test Methods for Cyclic (Reversed) Load Test for Shear Resistance of Vertical Elements of the Lateral Force Resisting Systems for Buildings.pdf
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1、Designation: E 2126 08Standard Test Methods forCyclic (Reversed) Load Test for Shear Resistance of VerticalElements of the Lateral Force Resisting Systems forBuildings1This standard is issued under the fixed designation E 2126; the number immediately following the designation indicates the year ofor
2、iginal adoption or, in the case of revision, the year of last revision. A number in parentheses indicates the year of last reapproval. Asuperscript epsilon () indicates an editorial change since the last revision or reapproval.1. Scope1.1 These test methods cover the evaluation of the shearstiffness
3、, shear strength, and ductility of the vertical elementsof lateral force resisting systems, including applicable shearconnections and hold-down connections, under quasi-staticcyclic (reversed) load conditions.1.2 These test methods are intended for specimens con-structed from wood or metal framing b
4、raced with solidsheathing or other methods or structural insulated panels.1.3 The values stated in inch-pound units are to be regardedas standard. The values given in parentheses are mathematicalconversions to SI units that are provided for information onlyand are not considered standard.1.4 This st
5、andard 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 limitations prior to use.2. Referenced Documents2.1
6、 ASTM Standards:2D 2395 Test Methods for Specific Gravity of Wood andWood-Based MaterialsD 4442 Test Methods for Direct Moisture Content Measure-ment of Wood and Wood-Base MaterialsD 4444 Test Method for Laboratory Standardization andCalibration of Hand-Held Moisture MetersE 564 Practice for Static
7、Load Test for Shear Resistance ofFramed Walls for BuildingsE 575 Practice for Reporting Data from Structural Tests ofBuilding Constructions, Elements, Connections, and As-sembliesE 631 Terminology of Building Constructions2.2 ISO Standard:3ISO 16670 Timber StructuresJoints Made with Mechani-cal Fast
8、enersQuasi-static Reversed-cyclic Test Method2.3 Other Standards:4ANSI/AF the negativespecimen displacement produces a negative envelope curve.The positive direction is based on outward movement of thehydraulic actuator.3.2.4 equivalent energy elastic-plastic (EEEP) curve (see9.1.4, Fig. 2), nan ide
9、al elastic-plastic curve circumscribingan area equal to the area enclosed by the envelope curve1These test methods are under the jurisdiction of ASTM Committee E06 onPerformance of Buildings and are the direct responsibility of Subcommittee E06.11on Horizontal and Vertical Structures/Structural Perf
10、ormance of Completed Struc-tures.Current edition approved May 15, 2008. Published June 2008. Originallyapproved in 2001. Last previous edition approved in 2007 as E 2126 07a.2For referenced ASTM standards, visit the ASTM website, www.astm.org, orcontact ASTM Customer Service at serviceastm.org. For
11、Annual Book of ASTMStandards volume information, refer to the standards Document Summary page onthe ASTM website.3Available from International Organization for Standardization (ISO), 1, ch. dela Voie-Creuse, Case postale 56, CH-1211, Geneva 20, Switzerland, http:/www.iso.ch.4Available from American
12、Forest and Paper Association (AF moisturecontent of the framing members at the time of the specimenfabrication and testing, if more than 24 h passes between theseoperations (see Test Methods D 4442, Test Methods A or B; orD 4444, Test Methods A or B); and specific gravity of theframing members (see
13、Test Methods D 2395, Test Method A).The specific gravity of the framing members shall be repre-sentative of the published specific gravity for the product withno individual member exceeding the published value by morethat 10 % (see ANSI/AF andL = length of specimen, ft (m).9.1.2 Secant shear modulus
14、, G8,at0.4Ppeakand at Ppeakasfollows:G8 5PD3HL(2)where:G8 = shear modulus of the wall obtained from test (includesshear and uplift deformation for the connection sys-tem), lbf/in. (N/m); represents the secant shear stiff-ness at specified specimen displacements times theaspect ratio;P = applied load
15、 measured at the top edge of the speci-men, lbf (N);D = displacement of the top edge of the specimen based ontest, in. (m). This includes both the shear deflection ofthe sheathing material and its connections, and thecontribution of the shear and hold-down connectionsystems;H = height of specimen, f
16、t (m); andL = length of specimen, ft (m).9.1.3 From each of the envelope curves, calculate the cyclicductility ratio, D, as described in 3.2 and then determineaverage of all D. If the shear stiffness (shear modulus) at 0.4Ppeakis greater than that at Ppeak, generate the EEEP curvescorresponding to t
17、he negative and positive envelope curves, asdescribed in 9.1.4. Otherwise, the FME and the ultimatedisplacement shall be determined directly from the envelopecurves. Calculate mean values of displacement, shear forces,and shear modulus at the yield limit state and strength limitstate.9.1.4 When spec
18、ified by 9.1.3, develop an EEEP curve torepresent each (positive and negative) envelope curve. Fig. 2illustrates typical EEEP curve. The elastic portion of the EEEPcurve contains the origin and has a slope equal to the elasticshear stiffness, Ke. The plastic portion is a horizontal line equalto Pyie
19、lddetermined by the following equation:Pyield5 SDu2Du222AKeD Ke(3)If Du2,2AKe, it is permitted to assume Pyield5 0.85 Ppeakwhere:Pyield= yield load, lbf (N);A = the area under envelope curve from zero to ulti-mate displacement (Du) of the specimen, lbfin.(Nm);Ppeak= maximum absolute load resisted by
20、 the specimenin the given envelope, lbf (N);De= displacement of the top edge of the specimen at0.4 Ppeak, in. (mm); andKe= 0.4 Ppeak/De.9.1.4.1 To generate an EEEP curve as described in 8.3.2based on monotonic test results, the procedures in this sectionare permitted, with Dmsubstituting for Du.9.1.
21、5 If the envelope curve contains data points at loads lessthan |0.8 Ppeak| (past strength limit state), the failure limit stateshall be determined at 0.8 Ppeakusing linear interpolation, asillustrated in Fig. 2.10. Report10.1 The report shall include the following information:10.1.1 Date of the test
22、 and of report.10.1.2 Names of the test sponsors and test agency and theirlocations.10.1.3 Identification of the specimen (test number, and soforth).10.1.4 Detailed description of the specimen and the testsetup, including the following:10.1.4.1 Dimensions of the specimen.10.1.4.2 Details of the phys
23、ical characteristics or structuraldesign, or both, of the specimen, including, if applicable, thetype, spacing, and edge distance of fasteners attaching sheath-ing to framing.10.1.4.3 Details of attachment of the specimen in the testfixture, including a description of the test base and whethersheath
24、ing panels are directly bearing on the sill plate duringtesting.10.1.4.4 Location of load application and load cell, straingauges, deflection gauges, and other items for test as appli-cable.10.1.4.5 Description of construction materials (for example,material type and grade, thickness, yield point, t
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