DIN ISO 7148-1-2014 Plain bearings - Testing of the tribological behaviour of bearing materials - Part 1 Testing of bearing metals (ISO 7148-1 2012)《滑动轴承 轴承材料摩擦特性试验 第1部分 轴承金属试验》.pdf
《DIN ISO 7148-1-2014 Plain bearings - Testing of the tribological behaviour of bearing materials - Part 1 Testing of bearing metals (ISO 7148-1 2012)《滑动轴承 轴承材料摩擦特性试验 第1部分 轴承金属试验》.pdf》由会员分享,可在线阅读,更多相关《DIN ISO 7148-1-2014 Plain bearings - Testing of the tribological behaviour of bearing materials - Part 1 Testing of bearing metals (ISO 7148-1 2012)《滑动轴承 轴承材料摩擦特性试验 第1部分 轴承金属试验》.pdf(14页珍藏版)》请在麦多课文档分享上搜索。
1、July 2014 Translation by DIN-Sprachendienst.English price group 9No part of this translation may be reproduced without prior permission ofDIN Deutsches Institut fr Normung e. V., Berlin. Beuth Verlag GmbH, 10772 Berlin, Germany,has the exclusive right of sale for German Standards (DIN-Normen).ICS 21
2、.100.10!%7H2“2203715www.din.deDDIN ISO 7148-1Plain bearings Testing of the tribological behaviour of bearing materials Part 1: Testing of bearing metals (ISO 7148-1:2012),English translation of DIN ISO 7148-1:2014-07Gleitlager Prfung des tribologischen Verhaltens von Gleitlagerwerkstoffen Teil 1: Pr
3、fung von Lagermetallen (ISO 7148-1:2012),Englische bersetzung von DIN ISO 7148-1:2014-07Paliers lisses Essai du comportement tribologique des matriaux antifriction Partie 1: Essai des matriaux mtalliques (ISO 7148-1:2012),Traduction anglaise de DIN ISO 7148-1:2014-07SupersedesDIN ISO 7148-1:2001-03w
4、ww.beuth.deDocument comprises 14 pagesIn case of doubt, the German-language original shall be considered authoritative.07.14 A comma is used as the decimal marker. Contents Page National foreword .3 1 Scope 4 2 Normative references 4 3 Symbols and units .4 4 Special features for the tribological tes
5、ting of metallic bearing materials 5 5 Test methods 5 5.1 Test method A Pin-on-disc .5 5.2 Test method B Block-on-ring .6 5.3 Test method C Rotation under thrust load .7 6 Test specimens 8 6.1 Disc .8 6.2 Ring .8 6.3 Pin .8 6.4 Block .8 6.5 Sleeve 8 6.6 Plate 9 6.7 Preparation of the test specimens
6、.9 7 Test methods and test equipment .10 8 Lubrication .10 9 Designation 10 10 Test conditions 10 11 Test procedure .11 Annex A (informative) Test report .12 Bibliography 14 DIN ISO 7148-1:2014-07 2 DIN ISO 7148-1:2014-07 3 National foreword This document (ISO 7148-1:2012) has been prepared by Techn
7、ical Committee ISO/TC 123 “Plain bearings” (Secretariat: JISC, Japan), Subcommittee SC 2 “Materials and lubricants, their properties, characteristics, test methods and testing conditions”. The responsible German body involved in its preparation was the Normenausschuss Wlz- und Gleitlager (Rolling Be
8、arings and Plain Bearings Standards Committee), Working Committee NA 118-02-02 AA Werk-stoffe, Schmierung, Prfung. Attention is drawn to the possibility that some of the elements of this document may be the subject of patent rights. DIN and/or DKE shall not be held responsible for identifying any or
9、 all such patent rights. DIN ISO 7148 consists of the following parts, under the general title Plain bearings Testing of the tribological behaviour of bearing materials: Part 1: Testing of bearing metals Part 2: Testing of polymer-based bearing materials Amendments This standard differs from DIN ISO
10、 7148-1:2001-03 as follows: a) normative references have been updated; b) a new test method has been included. Previous editions DIN ISO 7148-1: 1987-10, 2001-03 1 ScopeThis part of ISO 7148 specifies tribological tests of metallic bearing materials for plain bearings under conditions of boundary lu
11、brication.The test procedures described in this part of ISO 7148 enable the friction and wear behaviour of bearing material/mating/lubricant combinations to be compared with that of other combinations, thus facilitating the selection of a bearing material for running repeatedly or for long periods u
12、nder conditions of boundary lubrication, low speed and continuous sliding. Owing to differences in test conditions, measured friction and wear values can be expected to vary from one test facility to another.The test results give useful information for practical application only if all parameters of
13、 influence are identical. The more the test conditions deviate from the actual application, the greater the uncertainty of the applicability of the results.2 Normative referencesThe following referenced documents are indispensable for the application of this document. For dated references, only the
14、edition cited applies. For undated references, the latest edition of the referenced document (including any amendments) applies.ISO 4385, Plain bearings Compression testing of metallic bearing materials3 Symbols and unitsSee Table 1.Table 1 Symbols and unitsSymbol Term UnitA, B, C Test method a Slid
15、ing distance kmA5Elongation at fracture %fCoefficient of friction; ratio between friction force and normal force, i.e.: fFF=fnFfFriction force NFnNormal force NKAOverlap ratio (area of contact divided by area of wear track) DIN ISO 7148-1:2014-07 4 Plain bearings Testing of the tribological behaviou
16、r of bearing materials Part 1: Testing of bearing metals Symbol Term UnitKwCoefficient of wear, volumetric wear rate related to the normal force, i.e.:KVFwFwwnvn=a=mm3/(N km)lwLinear wear as measured by change in distance mmmwMass of material removed by wear gRa Surface roughness mRd0,2Compression l
17、imit 0,2 % N/mm2RmTensile strength N/mm2Rp0,20,2 % Proof stress N/mm2TSpecimens temperature near the sliding surface during testing under steady-state conditionsCTambAmbient temperature CTLLubricant temperature CtChTest duration hU Sliding velocity m/sVwMaterial removed by wear as measured by change
18、 in volume mm3wlLinear wear rate, i.e.: wlalw= mm/kmwvVolumetric wear rate, i.e.: wVavw= mm3/km Lubricant viscosity mPa s4 Special features for the tribological testing of metallic bearing materialsPlain bearings made of metallic materials usually require lubrication (e.g. oil or grease) to ensure a
19、 low rate of friction and wear.If possible, lubricated plain bearings should be designed to run under hydrodynamic conditions, where the sliding surfaces of the journal and the plain bearing are always fully separated by a film of lubricant. Under such conditions, friction depends on the rheological
20、 properties of the lubricant, and wear normally does not occur.If hydrodynamic operation cannot be ensured, boundary lubrication prevails and wear of the bearing and mating material is likely. This may be during the starting or running down phase of a hydrodynamic plain bearing or when high loads, l
21、ow sliding velocities, poor lubrication or oscillating movements prevent hydrodynamic action.5 Test methods5.1 Test method A Pin-on-discFigure 1 shows a schematic drawing of a disc and pin assembly.Table 1 (continued)DIN ISO 7148-1:2014-07 5 Key1 disc or ring2 pin or blockFigure 1 Pin-on-disc test m
22、ethod5.2 Test method B Block-on-ringFigure 2 shows a schematic drawing of a block and ring assembly.DIN ISO 7148-1:2014-07 6 Key1 disc or ring2 pin or blockFigure 2 Block-on-ring test method5.3 Test method C Rotation under thrust loadFigure 3 shows schematic drawings of a sleeve-to-sleeve and sleeve
23、-to-plate assembly.a) C1 Sleeve-to-sleeveDIN ISO 7148-1:2014-07 7 b) C2 Sleeve-to-plateFigure 3 Rotation under thrust load6 Test specimens6.1 DiscThe disc shall have the following preferred dimensions: diameter, d1: 40 mm to 110 mm; width b: 8 mm to 12 mm.The diameter of the sliding track shall be n
24、oted in the test report.6.2 RingThe ring shall have an outside diameter, d1, of 40 mm to 80 mm and the width, b1, of the ring shall exceed the width, b2, of the block.6.3 PinThe pin shall preferably have a diameter, d2, of 3 mm to 10 mm.6.4 BlockThe cross-section of the block shall be 5 mm to 10 mm
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