ASTM F1921-1998(2004) Standard Test Method for Hot Seal Strength (Hot Tack) of Thermoplastic Polymers and Blends Comprising the Sealing Surfaces of Flexible Webs《构成挠性腹板密封表面的热塑聚合物和混.pdf
《ASTM F1921-1998(2004) Standard Test Method for Hot Seal Strength (Hot Tack) of Thermoplastic Polymers and Blends Comprising the Sealing Surfaces of Flexible Webs《构成挠性腹板密封表面的热塑聚合物和混.pdf》由会员分享,可在线阅读,更多相关《ASTM F1921-1998(2004) Standard Test Method for Hot Seal Strength (Hot Tack) of Thermoplastic Polymers and Blends Comprising the Sealing Surfaces of Flexible Webs《构成挠性腹板密封表面的热塑聚合物和混.pdf(6页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: F 1921 98 (Reapproved 2004)Standard Test Methods forHot Seal Strength (Hot Tack) of Thermoplastic Polymers andBlends Comprising the Sealing Surfaces of Flexible Webs1This standard is issued under the fixed designation F 1921; the number immediately following the designation indicates th
2、e year oforiginal adoption or, in the case of revision, the year of last revision. A number in parentheses indicates the year of last reapproval. Asuperscript epsilon (e) indicates an editorial change since the last revision or reapproval.1. Scope1.1 These test methods cover laboratory measurement o
3、f thestrength of heatseals formed between thermoplastic surfaces offlexible webs, immediately after a seal has been made andbefore it cools to ambient temperature.1.2 These test methods are restricted to instrumented hottack testing, requiring a testing machine that automaticallyheatseals a specimen
4、 and immediately determines strength ofthe hot seal at a precisely measured time after conclusion of thesealing cycle. An additional prerequisite is that the operatorshall have no influence on the test after the sealing sequencehas begun. These test methods do not cover non-instrumentedmanual proced
5、ures employing springs, levers, pulleys andweights, where test results can be influenced by operatortechnique.1.3 Two variations of the instrumented hot tack test aredescribed in these test methods, differing primarily in tworespects: (a) rate of grip separation during testing of the sealedspecimen,
6、 and (b) whether the testing machine generates thecooling curve of the material under test, or instead makes ameasurement of the maximum force observed following a setdelay time. Both test methods may be used to test all materialswithin the scope of these test methods and within the range andcapacit
7、y of the machine employed. They are described inSection 4.1.4 SI units are preferred and shall be used in refereedecisions.1.5 This standard does not purport to address all of thesafety concerns, if any, associated with its use. It is theresponsibility of the user of this standard to establish appro
8、-priate safety and health practices and determine the applica-bility of regulatory limitations prior to use. The operator of theequipment is to be aware of pinch points as the seal jaws cometogether to make a seal, hot surfaces of the jaws, and sharpinstruments used to cut specimens. It is recommend
9、ed that theoperator review safety precautions from the equipment sup-plier.2. Referenced Documents2.1 ASTM Standards:2D 882 Test Method for Tensile Properties of Thin PlasticSheetingE 171 Specification for Atmospheres for Conditioning andTesting Flexible Barrier Materials3. Terminology3.1 Definition
10、s:3.1.1 adhesive failure, na failure mode in which the sealfails at the original interface between the surfaces being sealed.3.1.2 burnthrough, na state or condition of a heatsealcharacterized by melted holes and thermal distortion.3.1.2.1 DiscussionBurnthrough indicates that the sealingconditions (
11、time or temperature, or both) were too high for anacceptable seal.3.1.3 cohesive failure, na failure mode where either orboth of the sealed webs fails by splitting, approximatelyparallel to the seal, and the seal itself remains intact.3.1.3.1 DiscussionRefer to Fig. 1. The term may bedefined somewha
12、t differently when applied to sealing systemsinvolving an adhesive material as a separate component.3.1.4 cooling curve, nthe graphical depiction of the in-crease in strength of the seal with time, as it cools during theperiod immediately following conclusion of the sealing cycle(see Fig. 2).3.1.4.1
13、 DiscussionThe cooling curve is a plot of hot sealstrength versus cooling time. The portion of the cooling curveof greatest practical significance is the first 1000 ms followingopening of the heatseal jaws.3.1.5 cooling time, nthe time interval from when theheatseal jaws open at conclusion of the se
14、aling cycle, to thepoint at which the hot-tack force is determined.3.1.6 delay time, nthe time interval from when the heat-seal jaws open at conclusion of the sealing cycle, to the pointat which withdrawal of the sample from between the jaws isinitiated.1These test methods are under the jurisdiction
15、 of ASTM Committee F02 onFlexible Barrier Materials and are the direct responsibility of subcommittee F02.20on Physical Properties.Current edition approved Oct. 10, 1998. Published February 1999.2For referenced ASTM standards, visit the ASTM website, www.astm.org, orcontact ASTM Customer Service at
16、serviceastm.org. For Annual Book of ASTMStandards volume information, refer to the standards Document Summary page onthe ASTM website.1Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.3.1.7 dwell time, nthe time interval during the hea
17、tsealingcycle when the sealing jaws are in contact with, and exertingpressure on, the material being sealed.3.1.8 failure mode, na visual determination of the mannerin which the test strip fails during grip separation.3.1.9 hot tack, nstrength of a hot seal measured at aspecified time interval after
18、 completion of the sealing cycle butprior to the temperature of the seal reaching ambient.3.1.10 hot-tack curve, na plot of hot-tack strength versussealing temperature (see Fig. 3).FIG. 1 Test Strip Failure ModesF 1921 98 (2004)23.1.10.1 DiscussionThis is the basic curve used for com-paring material
19、s for their hot tack performance. It shows notonly the maximum hot seal strength achievable by eachmaterial and the sealing temperature required, but also thebreadth of the sealing temperature range at any specified levelof hot tack.3.1.11 sealing temperature, nmaximum temperaturereached at the inte
20、rface between the two web surfaces beingsealed, during the dwell time of the sealing cycle.3.1.11.1 DiscussionSealing temperature will equal jawtemperature (both jaws at same temperature) if the dwell timeis long enough for the interface to reach equilibrium with thejaws. At this point, seal strengt
21、h will no longer rise withincreasing dwell time.3.1.12 withdrawal time, nthe time interval from whenwithdrawal is initiated, to the point in time when all slack hasbeen removed from the test strip between the seal and the grips,so that measurement of the strength of the seal can commence.4. Summary
22、of Test Method4.1 A sample strip is sealed by applying pressure from twoflat heated jaws under defined conditions of temperature,contact time and pressure.4.2 When the jaws of the sealing unit open, the sealed stripis automatically withdrawn from between the jaws at conclu-sion of a set delay time (
23、which may be zero), by retraction ofthe grips.4.3 As the grips move apart at a set speed and the sealedsample is elongated to eventual failure, the force required ismeasured by the testing machine.4.4 In Method A (machines of the Theller type) the machinemeasures and plots strength versus time after
24、 jaw opening,starting after a withdrawal period of 100 to 150 ms, which isthe cooling curve for the material. The computer then deter-mines the force coordinates of the curve at various times, andreports the values as hot-tack strength at those cooling times.The machine is factory-set to start withd
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