BS 6319-1-1983 Testing of resin and polymer cement compositions for use in construction - Method for preparation of test specimens《建筑用合成树脂胶料试验 第1部分 试验样品制备方法》.pdf
《BS 6319-1-1983 Testing of resin and polymer cement compositions for use in construction - Method for preparation of test specimens《建筑用合成树脂胶料试验 第1部分 试验样品制备方法》.pdf》由会员分享,可在线阅读,更多相关《BS 6319-1-1983 Testing of resin and polymer cement compositions for use in construction - Method for preparation of test specimens《建筑用合成树脂胶料试验 第1部分 试验样品制备方法》.pdf(10页珍藏版)》请在麦多课文档分享上搜索。
1、BRITISH STANDARD BS 6319-1: 1983 Testing of resin compositions for use in construction Part 1: Method for preparation of test specimens UDC 691.342 + 691.537:620.11BS 6319-1:1983 This British Standard, having been prepared under the direction of the Civil Engineering and Building Structures Standard
2、s Committee, was published under the authority of the Board of BSI and comes into effect on 31 January 1983 BSI 02-1999 The following BSI references relate to the work on this standard: Committee reference CSB/20 Draft for comment 81/13894 DC ISBN 0 580 13130 0 Cooperating organizations The Civil En
3、gineering and Building Structures Standards Committee, under whose direction this British Standard was prepared, consists of representatives from the following: Aluminium Federation Association of Consulting Engineers Brick Development Association British Constructional Steelwork Association British
4、 Precast Concrete Federation Ltd. British Steel Industry Cement and Concrete Association* Concrete Society Limited* Consumer Standards Advisory Committee of BSI Convention of Scottish Local Authorities County Surveyors Society* Department of the Environment (PSA)* Department of the Environment (Buil
5、ding Research Establishment)* Department of the Environment (Water Directorate) Department of the Environment (Housing and Construction) Department of the Environment (Transport and Road Research Laboratory)* Department of Transport Federation of Civil Engineering Contractors Health and Safety Execu
6、tive Institution of Civil Engineers* Institution of Municipal Engineers Institution of Public Health Engineers Institution of Structural Engineers* Institution of Water Engineers and Scientists Local Authorities Organization Ministry of Agriculture, Fisheries and Food National Federation of Building
7、 Trades Employers National Water Council Royal Institute of British Architects Scottish Development Department Timber Research and Development Association Trades Union Congress The organizations marked with an asterisk in the above list, together with the following, were directly represented on the
8、Technical Committee entrusted with the preparation of this British Standard: British Adhesive Manufacturers Association British Plastics Federation Construction Industry Research and Information Association Federation Resin Formulators and Applicators Ltd. Institution of Highway Engineers Plastics a
9、nd Rubber Institute Society of Chemical Industry Coopted member Amendments issued since publication Amd. No. Date of issue CommentsBS 6319-1:1983 BSI 02-1999 i Contents Page Cooperating organizations Inside front cover Foreword ii 0 Introduction 1 1 Scope 1 2 Definitions 1 3 Apparatus 2 4 Procedure
10、3 Publications referred to Inside back coverBS 6319-1:1983 ii BSI 02-1999 Foreword This Part of this British Standard has been prepared under the direction of the Civil Engineering and Building Structures Standards Committee. It provides general information and describes sampling and specimen prepar
11、ation techniques for resin compositions. Further Parts describe particular methods of test for the measurement of basic physical properties of resin based materials, both on their own and also in conjunction with other materials. The Parts of this standard together provide a rationalized collection
12、of methods for testing the performance of resin based compositions as used in the construction industry. The methods described in this standard allow for the tests to be carried out either under specified ambient conditions or under agreed and declared conditions so allowing the freedom necessary fo
13、r research purposes (e.g.assessing performance under various conditions) or for checking maintenance of quality. If the purpose of the tests is to prepare general data for facilitating comparison between resin compositions from different sources, then it is strongly recommended that the more specifi
14、c ambient conditions described are adopted. Whichever testing programme is adopted, the precise details need to be listed in the test report alongside the data obtained. A British Standard does not purport to include all the necessary provisions of a contract. Users of British Standards are responsi
15、ble for their correct application. Compliance with a 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 an
16、d ii, pages1to4, aninside back cover and a back cover. This standard has been updated (see copyright date) and may have had amendments incorporated. This will be indicated in the amendment table on theinside front cover.BS6319-1:1983 BSI 02-1999 1 0 Introduction As techniques of civil engineering, a
17、nd building construction and renovation evolve so the need for new materials grows. To satisfy this need resin suppliers and formulators are developing new products in ever increasing numbers. This proliferation of products often leads to confusion and indeed suspicion on the part of the specifier.
18、The advantages to be gained from using resin based products now appreciated by the majority of engineers and as their use becomes accepted in ever more demanding situations the consequences of the incorrect choice or application of material become increasingly serious. Data for such materials are, h
19、owever, difficult to interpret unless based on standard test methods and these in turn need to be related to the application and conditions of use. The mechanical properties of resin based materials are generally so different from those of, for example, hydraulic cement concrete, that the same perfo
20、rmance criteria are seldom applicable to both. In particular, compressive strength alone would not be sufficient to characterize the special features of resin compositions. When hydraulic cement concrete fails under stress it is largely by brittle fracture, i.e. with comparatively little movement ta
21、king place. Resin compounds, on the other hand, are amorphous networks of coiled and entangled polymer chains. Under stress the chains display a degree of mobility both within the molecule and between molecules; they are able to dissipate some of the stress by straightening out and sliding over one
22、another. The rate of movement is time and temperature dependent and the degree of movement occurring before chains are ruptured is a function of the molecular construction and the degree of connection between adjacent chains (cross-linking). The presence of mineral fillers, particularly if in suffic
23、ient quantity to achieve physical contact and hence mechanical interaction between filler particles, can greatly restrict the degrees of movement. Thus, while some resin compounds (particularly those formulations containing a very high proportion of mineral fillers and aggregates) may fail under loa
24、d in a similar manner to the more familiar hydraulic cement concretes, others may deform beyond all useful limits and still support an increasing load. Ultimate failure under load may occur at a strain of 10% or more. It follows then, that the ultimate strength of a resin compound should be viewed w
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