BS 6319-3-1990 Testing of resin and polymer cement compositions for use in construction - Methods for measurement of modulus of elasticity in flexure and flexural strength《建筑用合成树脂胶.pdf
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1、BRITISH STANDARD BS6319-3: 1990 Testing of resin and polymer/cement compositions for use in construction Part3: Methods for measurement of modulus of elasticity in flexure and flexural strengthBS 6319-3:1990 This British Standard, having been prepared under the directionof the Cement, Gypsum, Aggreg
2、ates and Quarry Products Standards Policy Committee, was published under the authorityof the Board of BSI andcomes intoeffect on 31 December 1990 BSI 03-1999 First published January1983 Second edition December1990 The following BSI references relate to the work on this standard: Committee reference
3、CAB/17 Draft for comment89/14067DC ISBN 0 580 19184 2 Committees responsible for this British Standard The preparation of this British Standard was entrusted by the Cement, Gypsum, Aggregates and Quarry Products Standards Policy Committee (CAB/-) to Technical Committee CAB/17, upon which the followi
4、ng bodies were represented: British Adhesives and Sealants Association British Cement Association British Railways Board Building Employers Confederation Cement Admixtures Association Concrete Repair Association Concrete Society County Surveyors Society Department of the Environment (Building Resear
5、ch Establishment) Department of Transport Department of Transport (Transport and Road Research Laboratory) Federation of Civil Engineering Contractors FeRFA Institution of Highways and Transportation Institution of Structural Engineers Plastics and Rubber Institute Sprayed Concrete Association Amend
6、ments issued since publication Amd. No. Date CommentsBS6319-3:1990 BSI 03-1999 i Contents Page Committees responsible Inside front cover Foreword ii 1 Scope 1 2 Definitions 1 3 Principles 1 4 Apparatus 1 5 Test specimens 2 6 Procedure for measuring modulus of elasticity in flexure 2 7 Calculation of
7、 modulus of elasticity in flexure 3 8 Procedure for measuring flexural strength 3 9 Calculation of flexural strength 3 10 Test report 3 Publication(s) referred to Inside back coverBS6319-3:1990 ii BSI 03-1999 Foreword This Part of BS6319 has been prepared under the direction of the Cement, Gypsum, A
8、ggregates and Quarry Products Standards Policy Committee. It supersedes BS6319-3:1983 which is withdrawn. This Part describes methods for measurement of modulus of elasticity in flexure and flexural strength and is one of a series of Parts describing methods for measuring basic physical properties o
9、f resin based and polymer modified materials. In this revision of the1983 edition, flexural strength is now measured under a four point loading system on longer specimens and a new test for modulus of elasticity in flexure using the same loading system has been added. This Part of BS6319 should be r
10、ead in conjunction with Part1which provides general information and describes a method for preparing test specimens. A British Standard does not purport to include all the necessary provisions of a contract. Users of British Standards are responsible for their correct application. Compliance with a
11、British Standard does not of itself confer immunity from legal obligations. In particular, attention is drawn to the Health and Safety at work etc. Act 1974. Summary of pages This document comprises a front cover, an inside front cover, pages i and ii, pages1 to4, an inside back cover and a back cov
12、er. This standard has been updated (see copyright date) and may have had amendments incorporated. This will be indicated in the amendment table ontheinside front cover.BS 6319-3:1990 BSI 03-1999 1 1 Scope This Part of BS6319 describes methods for the measurement of modulus of elasticity in flexure a
13、nd flexural strength of specimens of polymer based mortars and polymer/cement based mortars in the form of rectangular prisms. These methods are not applicable to unfilled systems. NOTE 1The procedure described in BS2782: Method335A is suitable for unfilled systems. NOTE 2The titles of the publicati
14、ons referred to in this standard are listed on the inside back cover. 2 Definitions For the purposes of this Part of BS6319 the definitions in BS6319-1 apply, together with the following. 2.1 elastic modulus ratio of stress to corresponding strain below the proportional limit, where the proportional
15、 limit is the greatest stress which a material is capable of supporting without any deviation from the proportionality of stress to strain (Hookes law) 2.2 modulus of elasticity in flexure elastic modulus determined from the relationship between load and the deflection induced by that load in a simp
16、le freely supported beam NOTEAccording to the classical theory of pure bending the deflection () may be expressed in terms of the curvature according to the following relationship: where K is a constant depending upon the configuration of loading. For a beam in four point bending and loaded at the t
17、hird points, K has a value of L is the span of the beam between the supporting rollers. The curvature may be expressed as: where M is the applied bending moment at the section considered; E is the elastic modulus; I is the second moment of area of the section. Hence the modulus of elasticity in flex
18、ure (E) is given by: 2.3 secant modulus in flexure modulus of elasticity in flexure determined from the slope of a particular line on the load versus deflection relationship. This line passes through the origin and a point on the curve corresponding to the deflection necessary to cause a specified s
19、train in the extreme tensile fibre of the beam at the section considered NOTETo determine the deflection of a beam corresponding to a specified strain on the extreme tensile fibre, use may be made of the relationship: where D is the depth of the rectangular specimen;1 r - M EI - = (3) (4) (5) 1) The
20、 capacity of a testing machine is suitable when the expected load at failure of the specimen lies above the lower one-fifth of the range of the machine being used. EK M I - L 2 = b) for specimens more than25mm wide:12.0 times the width of the specimen 0.04 times the width. The loading rollers shall
21、be located at the third span points between the supporting rollers and shall be free to rotate in the vertical plane through their axes. Load shall be applied through a steel spreader beam spanning over the two loading rollers and at a point mid-way between them. The parallelism tolerance for the ho
22、rizontal axis of one supporting roller with respect to the horizontal axis of the second supporting roller as datum shall be0.04mm wide. NOTEParallelism may be achieved by allowing one of the supporting rollers to be free to rotate in the vertical plane through its vertical axis. 4.2 Moulds, complyi
23、ng with BS6319-1 and of a size to produce rectangular prisms in accordance with clause5 of this standard. 4.3 Deflection transducer, capable of continuously monitoring the central deflection of the beam to an accuracy of0.01mm. 5 Test specimens 5.1 Dimensions of specimens Specimens shall be rectangu
24、lar prisms of size25mm 25mm 320mm unless the material contains an aggregate that, when sampled in accordance with BS812-1, will not pass through a test sieve of5mm aperture size complying with BS410. For such materials the width and depth of the prisms shall be at least5.0times the nominal size of t
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