ASTM D2343-2017 Standard Test Method for Tensile Properties of Glass Fiber Strands Yarns and Rovings Used in Reinforced Plastics《增强塑料用玻璃纤维丝束纱线和粗纱拉伸性能的标准试验方法》.pdf
《ASTM D2343-2017 Standard Test Method for Tensile Properties of Glass Fiber Strands Yarns and Rovings Used in Reinforced Plastics《增强塑料用玻璃纤维丝束纱线和粗纱拉伸性能的标准试验方法》.pdf》由会员分享,可在线阅读,更多相关《ASTM D2343-2017 Standard Test Method for Tensile Properties of Glass Fiber Strands Yarns and Rovings Used in Reinforced Plastics《增强塑料用玻璃纤维丝束纱线和粗纱拉伸性能的标准试验方法》.pdf(8页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: D2343 09D2343 17Standard Test Method forTensile Properties of Glass Fiber Strands, Yarns, andRovings Used in Reinforced Plastics1This standard is issued under the fixed designation D2343; the number immediately following the designation indicates the year oforiginal adoption or, in the
2、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.This standard has been approved for use by agencies of the U.S. Department of Defense.1. Scope*1.1 T
3、his test method covers the determination of the comparative tensile properties of glass fiber strands, yarns, and rovings inthe form of impregnated rod test specimens when tested under defined conditions of pretreatment, temperature, humidity, andtension testing machine speed. This test method is ap
4、plicable to continuous filament, glass fiber materials that have been coatedwith a resin compatible sizing. This method is intended for use in quality control and R or the ends shallbe sanded with 240 grit sandpaper or fine emery cloth and tested using rubber faced grips.5. Significance and Use5.1 T
5、ensile properties determined by this test method are of value for identifying and characterizing materials for control andspecification purposes as well as for providing data for research and development studies.5.2 This test method is intended for use in testing resin-compatible sized glass fiber m
6、aterials that have been designedspecifically for use with certain generic types of plastics. The use of a resin impregnantsystem that is compatible with thereinforcement material under test produces results that are most representative of the actual strength that is available in the materialwhen use
7、d as intended in an end item. Premature reinforcement failure may failures occur if the elongation of the resin systemis less than that of the reinforcement being tested. This requirement may restrict the use of certain resin systems in this procedure.Misleading results may be obtained when glass fi
8、ber materials are tested without It is critical to select a resin system that does notlead to premature reinforcement failure. Use of compatible resin system and complete resin impregnation of the fiber or when anon-compatible resin is used for impregnation.is recommended to avoid invalid failures a
9、nd misleading results.5.3 This test method is useful for testing pretreated specimens for which comparative results are desired. Values obtained bythis test method may be affected by gage Gage length, gripping system, testing speed, and the resin impregnation ratio of thespecimen.specimen affects th
10、e values obtained by this test method.6. Apparatus6.1 Impregnation ApparatusAn example of an acceptable impregnation apparatus for strands is shown in Fig. 1. Minormodifications to the apparatus are acceptable providing consistent samples are produced. The apparatus shall consist essentiallyof the f
11、ollowing:6.1.1 Free Wheeling Spindle (Optional)A freely turning spindle with a horizontal axis for holding the yarn spool or rovingball.Aspindle allows fiber to be pulled from a yarn bobbin or the outside of a roving package.Alternatively, the fiber may be drawnfrom the package without the spindle a
12、s in the case of pulling from the Alternately, inside payout or drawing of the fiber from theinterior of a roving package or forming cake.cake without the use of spindle is possible.6.1.2 Tension Regulating System capable of maintaining the roving or yarn under tension between 0.2 Newtonsnewton and
13、20Newtons.newton.1 Die 5 Moving Support2 Tensioning Bars 6 Impregnation Vat (temperature regulated)3 Resin Level 7 Glass Input4 Tensioning DeviceFIG. 1 Typical Impregnation Equipment ConfigurationD2343 1726.1.3 Impregnation Tank, as illustrated in Fig. 2, consisting of a container and a static sprea
14、der bar assembly.The tank must havethe capability of maintaining the required resin temperature within 65C. This may be accomplished by use of a double walledvat, with heating fluid circulating between the walls, or by use of an external heating plate.NOTE 3Heating and temperature maintenance may be
15、 accomplished by use of a double walled vat, with heating fluid circulating between the walls,or by use of an external heating plate.6.1.4 Die, as illustrated in Fig. 3, made of stainless steel which gives a defined circular cross-section to the impregnated roving.6.1.5 Winding Device and Framefor c
16、ollecting the impregnated roving which insures that the fibers are kept under constanttension and places the strands onto the fixture in a manner which allows separate specimens to be fabricated.6.2 Template for Tabbing (Optional)A template, as shown in Fig. 4, shall be used to provide proper positi
17、oning of end tabs.6.3 Tension Testing MachineAtesting machine having a constant-rate-of-crosshead movement and comprising essentially thefollowing shall be available:6.3.1 Stationary Member, with one grip.6.3.2 Movable Member, with a second grip.6.3.3 GripsGrips for holding the test specimen between
18、 the fixed and the movable member shall be of the self-aligning type(that is, they shall be attached to the fixed and movable members in such a manner that they will move freely into alignment assoon as any load is applied). The long axis of the test specimens will then coincide with the direction o
19、f the applied pull throughthe center line of the grip assembly.NOTE 4Air-actuated grips have been found advantageous and are recommended for use in this test method.NOTE 5Rubber with a Shore A hardness of 91 has been found to work well as a grip surface.NOTE 6Recommended starting gripping pressures
20、are 80 bars for specimens with no tabs, 60 bars for specimens with cardboard tabs, and 40 barsfor composite tabs. These may be adjusted Adjust these as necessary to prevent slippage providingprovided damage to the specimen due to crushing isprevented.6.3.4 JawsAset of removable jaws to match the req
21、uired grips shall be used for clamping the test specimens. One of the facesof the jaws shall be adjustable to compensate for thickness of the specimen ends, so that the tension force is aligned with the centerof the jaw. Rubber-faced jaws, with a gripping length of at least 50 mm, shall be used for
22、gripping specimens unless tabs are used.The jaws shall be wider than the test specimen and shall have a gripping length of at least 50 mm. Their faces shall be plane andparallel and shall ensure uniform pressure over the whole width of the test specimen to assure the specimen is held withoutslippage
23、. If slippage of the test specimens is observed, 240 grit sandpaper strips shall be used to improve gripping. The sandpapershould be replaced Replace sandpaper when it has lost its grittiness, or after every 30 to 50 breaks. Alternatively, tabbing shall beused.6.3.5 Drive MechanismA drive mechanism
24、capable of imparting a uniform controllable speed to the movable member of theapparatus.6.3.6 Load IndicatorA suitable load-indicating mechanism capable of showing the total tensile load carried by the testspecimen when held by the grips shall be used.This mechanism shall be essentially free of iner
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