ASTM F1649-2013 Standard Test Methods for Evaluating Wet Braking Traction Performance of Passenger Car Tires on Vehicles Equipped with Anti-Lock Braking Systems《评估装配有防抱死系统的运输工具上轿车轮.pdf
《ASTM F1649-2013 Standard Test Methods for Evaluating Wet Braking Traction Performance of Passenger Car Tires on Vehicles Equipped with Anti-Lock Braking Systems《评估装配有防抱死系统的运输工具上轿车轮.pdf》由会员分享,可在线阅读,更多相关《ASTM F1649-2013 Standard Test Methods for Evaluating Wet Braking Traction Performance of Passenger Car Tires on Vehicles Equipped with Anti-Lock Braking Systems《评估装配有防抱死系统的运输工具上轿车轮.pdf(13页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: F1649 13Standard Test Methods forEvaluating Wet Braking Traction Performance of PassengerCar Tires on Vehicles Equipped with Anti-Lock BrakingSystems1This standard is issued under the fixed designation F1649; the number immediately following the designation indicates the year oforiginal
2、 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.INTRODUCTIONThese test methods cover procedures for measuring the wet braking p
3、erformance of passenger cartires when tested on vehicles equipped with an anti-lock braking system (ABS). ABS operation isaccomplished by the use of wheel rotation rate sensors that detect impending wheel lockup andcontrollable brake pressure regulators; both of these systems are connected to a cont
4、rol microproces-sor. When potential lockup is detected for any wheel or pair of wheels, brake pressure is lowered toforestall the lockup and maintain wheel rotation. This process is repeated until the vehicle comes toa stop. The necessary lateral force to maintain vehicle control in an emergency bra
5、king situation isonly possible when wheel rotation is maintained. Although there may be differences in the brakingperformance among the commercially available “vehicle-ABS” combinations, tires may be evaluatedfor their relative or comparative wet braking performance with any one “vehicle-ABS-driver”
6、combination, by the methods as outlined in these test methods.1. Scope1.1 These test methods cover the measurement of two typesof ABS vehicle behavior that reflect differences in tire wettraction performance when the vehicle is fitted with a series ofdifferent tire sets to be evaluated.1.1.1 The sto
7、pping distance from some selected speed atwhich the brakes are applied.1.1.2 The lack of control of the vehicle during the brakingmaneuver. Uncontrollability occurs when the vehicle does notfollow the intended trajectory during the period of brakeapplication despite a conscious effort on the part of
8、 a skilleddriver to maintain trajectory control. Uncontrollability is mea-sured by a series of parameters related to this deviation fromthe intended trajectory and the motions that the vehicle makesduring the stopping maneuver.1.1.3 Although anti-lock braking systems maintain wheelrotation and allow
9、 for a high degree of trajectory control,different sets of tires with variations in construction, treadpattern, and tread compound may influence the degree oftrajectory control in addition to stopping distance. Thus vehicleuncontrollability is an important evaluation parameter for tirewet traction p
10、erformance.1.2 These test methods specify that the wet braking tractiontests be conducted on two specially prepared test courses: (1)a straight-line (rectilinear) “split-” ( = friction coefficient)test course, with two test lanes deployed along the test course(as traveled by the test vehicle); the t
11、wo lanes have substan-tially different friction levels such that the left pair of wheelstravels on one surface while the right pair of wheels travels onthe other surface; and (2) a curved trajectory constant pathradius course with uniform pavement for both wheel lanes.1.3 As with all traction testin
12、g where vehicle uncontrolla-bility is a likely outcome, sufficient precautions shall be takento protect the driver, the vehicle, and the test site facilities fromdamage due to vehicle traction breakaway during testing.1These test methods are under the jurisdiction ofASTM Committee F09 on Tiresand is
13、 the direct responsibility of Subcommittee F09.20 on Vehicular Testing.Current edition approved May 1, 2013. Published June 2013. Originallyapproved in 1995. Last previous edition approved in 2003 as F1649 96 (2003)which was withdrawn January 2012 and reinstated in May 2013. DOI: 10.1520/F1649-13.Co
14、pyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959. United States1Standard precautions are roll-bars, secure mounting of allinternal instrumentation, driver helmet, and secure seat beltharness, etc.1.4 This standard does not purport to address all of the
15、safety 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 ASTM Standards:2E274 Test Method for Skid Re
16、sistance of Paved SurfacesUsing a Full-Scale TireE303 Test Method for Measuring Surface Frictional Proper-ties Using the British Pendulum TesterE501 Specification for Rib Tire for Pavement Skid-Resistance TestsE524 Specification for Smooth Tire for Pavement Skid-Resistance TestsE965 Test Method for
17、Measuring Pavement MacrotextureDepth Using a Volumetric TechniqueE1136 Specification for P195/75R14 Radial Standard Refer-ence Test TireE1337 Test Method for Determining Longitudinal PeakBraking Coefficient of Paved Surfaces Using StandardReference Test TireF457 Test Method for Speed and Distance Ca
18、libration ofFifth Wheel Equipped With Either Analog or DigitalInstrumentationF538 Terminology Relating to the Characteristics and Per-formance of TiresF1046 Guide for Preparing Artificially Worn Passenger andLight Truck Tires for TestingF1572 Test Methods for Tire Performance Testing on Snowand Ice
19、SurfacesF1650 Practice for Evaluating Tire Traction PerformanceData Under Varying Test ConditionsF1805 Test Method for Single Wheel Driving Traction in aStraight Line on Snow- and Ice-Covered SurfacesF1806 Practice for Tire Testing OperationsBasic Conceptsand Terminology for Reference Tire UseF2493
20、Specification for P225/60R16 97S Radial StandardReference Test Tire3. Terminology3.1 Definitions of Terms Specific to This Standard:3.1.1 anti-lock braking system (ABS), na collection ofsensing and control hardware installed on a vehicle to preventwheel lockup during brake application. F5383.1.2 can
21、didate tire, na test tire that is part of a testprogram. F5383.1.2.1 DiscussionThe term “candidate object” may beused in the same sense as candidate tire.3.1.3 candidate tire set, na set of candidate tires. F5383.1.4 control tire, na reference tire used in a specifiedmanner throughout a test program
22、. F5383.1.4.1 DiscussionAcontrol tire may be of either type andtypical tire use is the reference (control) tire in Practice F1650that provides algorithms for correcting (adjusting) test data forbias trend variations (see Practice F1650 and Annex A1).3.1.5 reference tire, na special tire included in
23、a testprogram; the test results for this tire have significance as a basevalue or internal benchmark. F5383.1.6 spinout, nin tire testing, a type of uncontrollabilitydefined by a loss of steering control due to rapid or substantialyaw, or both. F5383.1.7 standard reference test tire, (SRTT), na tire
24、 that isused as a control tire or surface monitoring tire (for example,Specification E1136 and F2493 tires). E1136, F1572, F1649,F1650, F1805, F1806, F24933.1.7.1 DiscussionThis is a Type 1 reference tire.3.1.8 stopping distance, nthe path distance (rectilinear orcurved) needed to bring a vehicle to
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