ASTM F2117-2010 Standard Test Method for Vertical Rebound Characteristics of Sports Surface Ball Systems Acoustical Measurement《运动表面 球系统的垂直回弹特性的标准试验方法 声学测量》.pdf
《ASTM F2117-2010 Standard Test Method for Vertical Rebound Characteristics of Sports Surface Ball Systems Acoustical Measurement《运动表面 球系统的垂直回弹特性的标准试验方法 声学测量》.pdf》由会员分享,可在线阅读,更多相关《ASTM F2117-2010 Standard Test Method for Vertical Rebound Characteristics of Sports Surface Ball Systems Acoustical Measurement《运动表面 球系统的垂直回弹特性的标准试验方法 声学测量》.pdf(7页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: F2117 10An American National StandardStandard Test Method forVertical Rebound Characteristics of Sports Surface/BallSystems; Acoustical Measurement1This standard is issued under the fixed designation F2117; the number immediately following the designation indicates the year oforiginal a
2、doption 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 This test method covers the quantitative measurementand normalization
3、 of the vertical rebound produced duringimpacts between athletic balls and athletic surfaces.1.2 Measurements may be conducted on nonathletic sur-faces to test the performance properties of the ball.1.3 Measurements may be conducted using nonathletic ballsto test the performance properties of the su
4、rface.1.4 The methods described are applicable in both laboratoryand field settings.1.5 The values stated in metric units are to be regarded asthe standard. The inch-pound units given in parentheses are forreference only.1.6 This standard does not purport to address all of thesafety concerns, if any
5、, 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 DIN (Deutsches Institut fur Normung):218032 Part II, 1991 Section 5
6、.82.2 British Standards:37044, 1990, Section 2.13. Terminology3.1 Definitions:3.1.1 area elastic surface, nsurfaces where the energy atimpact is dispersed throughout an area significantly larger thanthe impact point (for example, sprung wooden basketballfloors, poured urethane floors over sprung sub
7、floor). Areaelastic surfaces tend to produce a noticeable vibration whenimpacted.3.1.1.1 subfloor, nany structural members found betweenthe playing surface and the underlying concrete base. Subfloorsystems are typically found in sprung indoor playing surfacesand can include but are not limited to: l
8、ayers consisting ofsheets of plywood, layers consisting of strips of plywood, andsolid-wood members.3.1.2 athletic surface, nan athletic surface appropriate forthe sport(s) of interest should be selected for testing. Thesurface may be selected from previously installed surfaces andtested in its comp
9、lete form, or smaller samples may be testedunder laboratory settings.3.1.3 coeffcient of restitution (CR), nthe ratio of reboundheight to release height. This parameter is useful for nonin-flated balls that are found to be damaged by impacts with aconcrete reference surface. Construction differences
10、 and sen-sitivity to inflation pressure make this parameter inappropriatefor comparing different playing surfaces based on resultsobtained using inflated sporting balls.3.1.4 point elastic surface, nsurface where the energy atimpact is dispersed throughout an area that negligibly exceedsthe impact p
11、oint (for example, natural turf, artificial turf,poured urethane surfaces). Point elastic surfaces do not pro-duce noticeable vibrations when impacted.3.1.5 reference surface, nany section of a concrete slabwith a smooth uniform, uncracked surface with a minimumhorizontal dimension of 30 cm (12 in.)
12、 that produces a reboundwith minimal horizontal movement.3.1.6 sporting ball, na sporting ball appropriate for thesport(s) of interest should be selected for testing. The test ballshould be inspected to verify that it is spherical and devoid ofbulges. Bulges indicate structural damage exists within
13、theball, that could affect the testing results. In the case of inflatedsporting balls, the pressure should conform to manufacturersguidelines.3.1.7 vertical rebound height, nthe highest heightachieved by sporting ball during its first rebound after contact-ing the surface.3.1.8 vertical rebound rati
14、o (VRR), nthe ratio of therebound on the test surface to the rebound on the referencesurface, expressed as a percentage. This parameter may not beappropriate for all sporting balls, as some may experiencedamage when impacting the reference surface. When reference1This test method is under the jurisd
15、iction of ASTM Committee F08 on SportsEquipment and Facilities and is the direct responsibility of Subcommittee F08.52 onMiscellaneous Playing Surfaces.Current edition approved June 1, 2010. Published July 2010. Originally approvedin 2001. Last previous edition approved in 2001 as F2117 01 which was
16、withdrawn in February 2010 and reinstated in June 2010. DOI: 10.1520/F2117-10.2Available from DIN, Burggrafenstrasse 6, D-10787 Berlin, Germany.3Available from BSI, 389 Chiswick High Road, London W4 4AL, UK.1Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 1942
17、8-2959, United States.surface rebound measurement is found to be unrepeatable, thecoefficient of restitution should be used instead.4. Summary of Test Method4.1 This test method provides a means for evaluating therebound height produced by a test ball on a test surface. Theprocedure can be used to e
18、valuate vertical ball reboundperformance on a reference athletic surface, evaluate surfacevertical rebound performance using a reference athletic ball, orto evaluate the effects of ball-surface interactions. A ball isreleased from a known height and allowed to impact thereference surface. The releas
19、e should not impart any horizontalmotion. An acoustical measurement system measures therebound height obtained on the test surface. The ball is thenreleased from the same height and allowed to impact the testsurface, where again, the rebound height is measured. Thevertical rebound ratio, presented a
20、s a percentage, is obtainedfrom the ratio of the vertical rebound height on the sportingsurface to the vertical rebound height on the reference surface.5. Significance and Use5.1 The ball-surface interaction is just one of the importantproperties of a sports surface. It may be an indicator of thepla
21、yability or suitability of the surface.5.2 Manufacturers of sporting balls may use this method toevaluate the effects of design changes on the rebound heightproduced.5.3 Manufacturers of sports surfaces may use this method toevaluate the effects of design changes in the sports surfacesystem on the r
22、ebound height produced.5.4 The tendency of modern facilities to support multiplesports on a single surface may require that test surfaces betested for several types of sporting balls. Examples include, butare not limited to: basketball, soccer, tennis, and baseball.5.5 The measurement of rebound hei
23、ght may be affected ifthe temperature of the ball has not reached equilibrium with theenvironment.6. Apparatus6.1 Ball-Release Apparatus, capable of releasing the sport-ing ball from a consistent height, without imparting significantspin or horizontal motion to the sporting ball. The ball releaseapp
24、aratus is typically an adjustable-height tripod. The releasemechanism may be mechanical, electromagnetic, vacuum, ormanual.6.2 Sound Recording and Analysis SystemA system withthe minimum requirements as follow: acoustic sampling fre-quency 11 000 Hz, 8-bit resolution, on a single acousticchannel. Th
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