SANS 11432-2003 Rubber vulcanized or thermoplastic - Determination of low temperature stiffening (Gehman test)《硫化橡胶或热塑橡胶 低温刚性的测定(Gehman测试)》.pdf
《SANS 11432-2003 Rubber vulcanized or thermoplastic - Determination of low temperature stiffening (Gehman test)《硫化橡胶或热塑橡胶 低温刚性的测定(Gehman测试)》.pdf》由会员分享,可在线阅读,更多相关《SANS 11432-2003 Rubber vulcanized or thermoplastic - Determination of low temperature stiffening (Gehman test)《硫化橡胶或热塑橡胶 低温刚性的测定(Gehman测试)》.pdf(11页珍藏版)》请在麦多课文档分享上搜索。
1、 Collection of SANS standards in electronic format (PDF) 1. Copyright This standard is available to staff members of companies that have subscribed to the complete collection of SANS standards in accordance with a formal copyright agreement. This document may reside on a CENTRAL FILE SERVER or INTRA
2、NET SYSTEM only. Unless specific permission has been granted, this document MAY NOT be sent or given to staff members from other companies or organizations. Doing so would constitute a VIOLATION of SABS copyright rules. 2. Indemnity The South African Bureau of Standards accepts no liability for any
3、damage whatsoever than may result from the use of this material or the information contain therein, irrespective of the cause and quantum thereof. ICS 83.060 ISBN 0-626-14412-4 SANS 11432:2003Edition 1ISO 1432:1988Edition 3SOUTH AFRICAN NATIONAL STANDARD Rubber, vulcanized or thermoplastic Determina
4、tion of low temperature stiffening (Gehman test) Published by Standards South Africa 1 dr lategan road groenkloof ! private bag x191 pretoria 0001 tel: 012 428 7911 fax: 012 344 1568 international code + 27 12 www.stansa.co.za Standards South Africa 2003 This national standard is the identical imple
5、mentation of ISO 1432:1988 and is adopted with the permission of the International Organization for Standardization SANS 11432:2003 Edition 1 ISO 1432:1988 Edition 3 Table of changes Change No. Date Scope National Foreword This South African standard was approved by National Committee STANSA TC 5140
6、.17, Rubber and rubber products, in accordance with procedures of Standards South Africa, in compliance with annex 3 of the WTO/TBT agreement. INTERNATIONAL STANDARD INTERNATIONAL ORGANIZATION FOR STANDARDIZATION ORGANISATION INTERNATIONALE DE NORMALISATION MEXAYHAPOflHAR OPTAHM3AMR fl0 CTAHflAPTM3A
7、L/MM Rubber, vulcanized or thermoplastic - Determination of low temperature stiffening (Gehman test) Caoutchouc vulcanis6 ou thermoplastique - Essai Gehman) Mtermination de Ia rigidit6 2 basse tempkrature ISO 1432 Third edition 1988-12-15 Reference numl 3er ISO 1432: 1988 CE) Iso 1432 : 1988 (EI For
8、eword ISO (the International Organization for Standardization) is a worldwide federation of national Standards bodies (ISO member bodies). The work of preparing International Standards is normally carried out through ISO technical committees. Esch member body interested in a subject for which a tech
9、nical committee has been established has the right to be represented on that committee. International organizations, govern- mental and non-governmental, in liaison with ISO, also take part in the work. ISO collaborates closely with the International Electrotechnical Commission (IEC) on all matters
10、of electrotechnical standardization. Draft International Standards adopted by the technical committees are circulated to the member bodies for approval before their acceptance as International Standards by the ISO Council. They are approved in accordance with ISO procedures requiring at least 75 % a
11、pproval by the member bodies voting. International Standard ISO 1432 was prepared by Technical Committee ISO/TC 45, Rubber and rubber products. This third edition cancels and replaces the second edition (ISO 1432 : 1982), of which it constitutes a minor revision. 0 International Organkation for Stan
12、dardkation, 1988 Printed in Switzerland INTERNATIONAL STANDARD ISO 1432 : 1988 (E) Rubber, vulcanized or thermoplastic - Determination of low temperature stiffening (Gehman test) 1 Scope This International Standard specifies a static procedure, known as the Gehman test, for determining the relative
13、stiffness characteristics of vulcanized or thermoplastic rubbers over a temperature range from room temperature to approximately -150 OC. 2 Apparatud) 2.1 Torsion apparatus, one possible form of which is shown in figure 1. lt consists of a torsion head (A), capable of being turned 180 in a plane nor
14、mal to the torsion wire (B). The top of the wire is fastened to the torsion head through a loosely fitting sleeve (C). The bottom sf the wire is fastened to the test piece clamp stud (D) by means of a screw connector (E). A device for “friction-free” indication or recording sf angle by mechanical or
15、 electrical means shall be provided permitting convenient and exact adjustment sf the zero Point; the ap- paratus shown in the figure has a pointer (F) and a movable protractor (G) which perform these functions. The indicating or recording System shall allow reading or recording of the angle of twis
16、t to the nearest degree. The torsion apparatus is clamped to a supporting stand (H). lt is advantageous to make the vertical Portion of the stand from material of poor thermal conductivity. The base of the stand shall be of stainless steel or other corrosion-resistant material. 2.2 Torsional wires (
17、B), made of tempered spring wire, of length 65 mm + 8 mm, and having torsional constants of 0,7 mN.m, 2,81 mN.m and l1,24 mN.m. In cases of dispute, the 2,81 mN.m wire shall be used. 2.3 Test piece rack (l), made of material of poor thermal conductivity, for holding the test piece (J) in a vertical
18、Position in the heat transfer medium. The rack may be constructed to hold several test pieces. 2) The rack is clamped to the stand (H). Two clamps shall be provided for holding each test piece. The bottom clamp (K) shall be a fixed part of the test piece rack. Tbc sha (D) top clamp (L) acts as an ex
19、tension of the test piece and I not tauch the rack.3) The top clamp is secured to a stud which in turn is connected to the screw connector (E). 2.4 the Temperature-measuring device, capable of measuring temperature to within 1 OC over the whole range of temperature over which the apparatus is to be
20、used. The sensitive element shall be positioned near a test piece equidistant from the top and bottom. 2.5 Heat-transfer medium, which may be liquid or gaseous. Any material which remains fluid at the test temperature and which will not affect materials being tested may be used. Among the liquids th
21、at have been found suitable for use at low temperatures are acetone, methanol, ethanol, butanol, Silicone fluid and n-hexane. Air, carbon dioxide or nitrogen are commonly used gaseous media. Vapours of liquid nitrogen are useful for testing at very low temperatures. lt should be noted that stiffness
22、 measurements in gaseous media may not give in each case the same results as the measurements made in liquid media. 2.6 Temperature control, capable of maintaining the temperature sf the heat-transfer medium to within + 1 OC. 2.7 Tank, for a liquid heat-transfer medium, or test chamber for a gaseous
23、 medium. 1) The apparatus and its use are described in GEHMAN, S. D., WOODFORD, D. E., and WILKINSON, C. S., LOW temperalure characteristics of elastomers, /nd. and Eng. Chem., 39 Sept. 1947: 1108. 2) Racks providing space for five or ten test pieces are commonly used. 3) Clearance between the top o
24、f the test piece rack and the test piece clamp stud is ensured by inserting thin spacers between the two. Slotted laminated plastics of thickness about 1,3 mm and width about 12 mm have been found satisfactory. At low temperatures the test pieces stiffen in Position and the spacers may be removed wi
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