ASTM E285-1980(2002) Standard Test Method for Oxyacetylene Ablation Testing of Thermal Insulation Materials《热绝缘材料的氧乙炔烧蚀试验方法》.pdf
《ASTM E285-1980(2002) Standard Test Method for Oxyacetylene Ablation Testing of Thermal Insulation Materials《热绝缘材料的氧乙炔烧蚀试验方法》.pdf》由会员分享,可在线阅读,更多相关《ASTM E285-1980(2002) Standard Test Method for Oxyacetylene Ablation Testing of Thermal Insulation Materials《热绝缘材料的氧乙炔烧蚀试验方法》.pdf(6页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: E 285 80 (Reapproved 2002)Standard Test Method forOxyacetylene Ablation Testing of Thermal InsulationMaterials1This standard is issued under the fixed designation E 285; the number immediately following the designation indicates the year oforiginal adoption or, in the case of revision,
2、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 This test method covers the screening of ablative mate-rials to determine the relative thermal insulation
3、 effectivenesswhen tested as a flat panel in an environment of a steady flowof hot gas provided by an oxyacetylene burner.1.2 This test method should be used to measure and describethe properties of materials, products, or assemblies in responseto heat and flame under controlled laboratory condition
4、s andshould not be used to describe or appraise the fire hazard ofmaterials, products, or assemblies under actual fire conditions.However, results of this test method may be used as elementsof a fire risk assessment which takes into account all of thefactors which are pertinent to an assessment of t
5、he fire hazardof a particular end use.1.3 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-priate safety and health practices and determine the applica-bility of regulatory li
6、mitations prior to use.1.4 The values stated in SI units are to be regarded as thestandard.2. Referenced Documents2.1 ASTM Standards:D 792 Test Methods for Density and Specific Gravity (Rela-tive Density) of Plastics by Displacement22.2 Federal Standards:3BB-A-106a Acetylene, Technical, DissolvedBB-
7、O-925a Oxygen, Technical, Gas and Liquid3. Summary of Test Method3.1 Hot combustion gases are directed along the normal tothe specimen until burn-through is achieved. The erosion rateof the material is determined by dividing the original thicknessby the time to burn-through. The insulating effective
8、ness isdetermined from back-face temperature measurements. Insula-tion index numbers are computed by dividing the times fortemperature changes of 80, 180, and 380C, from the initialambient temperature, by the original thickness. The insulation-to-density performance is computed by dividing the insul
9、ationindex by the density of the panel.3.2 The general characteristics of the oxyacetylene heatsource are:3.2.1 Heat Flux835 W/cm2(cold-wall calorimeter).3.2.2 Velocity210 m/s (cold, unreacted gases).3.2.3 Neutral flame conditions.4. Significance and Use4.1 This test method is intended to screen the
10、 most obviouspoor materials from further consideration. Since the combus-tion gases more closely resemble the environment generated inrocket motors, this test method is more applicable to screeningmaterials for nozzles and motor liners than for aerodynamicheating.4.2 The environment for any specific
11、 high-temperature ther-mal protection problem is peculiar to that particular applica-tion. The conditions generated by the oxyacetylene heat sourcein this test method represent only one set of conditions; they donot simulate any specific application. Thus, the test resultscannot be used to predict d
12、irectly the behavior of materials forspecific environments, nor can they be used for design pur-poses. However, over a number of years, the test has beenuseful in determining the relative merit of materials, particu-larly in weeding out obviously poor materials from moreadvanced data-generation prog
13、rams. It has also been consid-ered for use as a production quality-control test for rocketinsulation materials.4.3 The tester is cautioned to use prudence in extending theusefulness of the test method beyond its original intent,namely, screening. For situations having environments widelydifferent fr
14、om those of the test, the user is urged to modify theoxyacetylene burner conditions to suit his requirements orperhaps change to a different heat-generating device thatprovides better simulation.5. Apparatus5.1 GeneralThe apparatus shall consist of an oxyacety-lene burner, a specimen holder, and mea
15、ns for measuring the1This test method is under the jurisdiction of ASTM Committee E21 on SpaceSimulation and Applications of Space Technology and is the direct responsibility ofSubcommittee E21.08 on Thermal Protection.Current edition approved Dec. 8, 1980. Published February 1981. Originallypublish
16、ed as E 285 65T. Last previous edition E 285 70.2Annual Book of ASTM Standards, Vol 08.01.3Available from Standardization Documents Order Desk, Bldg. 4 Section D, 700Robbins Ave., Philadelphia, PA 19111-5098, Attn: NPODS.1Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshoh
17、ocken, PA 19428-2959, United States.time to burn-through and for recording the back-face tempera-ture history of the specimen. Auxiliary apparatus all consist ofa calorimetric device to measure heat-transfer rate as specifiedin 5.5.5.2 Heat SourceThe hot-gas source shall consist of awelding torch wi
18、th suitable storage for acetylene and oxygen,together with suitable manifolds, flow regulators, and flow andpressure indicators, as shown schematically in Fig. 1.5.2.1 TorchThe torch shall be a Victor Model 3154andshall be mounted so that the flame can be made to contact thespecimen in less than12 s
19、 from the time of actuation.NOTE 1Both a solenoid-powered mechanism and a hand-operatedsystem of levers and push rods have been found to be adequate for thispurpose.5.2.2 Torch TipThe tip shall be a Victor welding nozzle,Type 4, No. 7, equipped with a water jacket to minimizedamage to the tip (Note
20、2).4Details of the water jacket areshown in Figs. 2 and 3 and the torch tip is shown in Fig. 4.NOTE 2Proprietary designation cannot be avoided because of thebroad spectrum of heat flux and flame patterns produced by competitivetorch tips of similar size. The Victor torch tip was selected on the basi
21、s ofpopularity, reproducibility of test results, and the relatively high heat fluxit produces.5.2.3 Fuel Storage and ManifoldA minimum of threeacetylene cylinders shall be tapped simultaneously through amanifold and suitable pressure regulators. Cylinders shall bestored in an upright position and he
22、ld at room temperature forat least 1 h, or until at equilibrium with room temperature,before using. The complete bank of cylinders shall be changedwhen the gage reads 0.7 MPa (100 psi). Acetylene storagetanks shall be protected by a check valve against accidentalbackflow from the torch. The acetylen
23、e shall be maintained at294.2 K (70F) when possible (Note 3). The purity of acetylenegas shall conform with Federal Specification BB-A-106a. Theminimum acetylene content shall be 98 %.NOTE 3If this is not possible, the flow rate shall be corrected to 294.2K in accordance with the flow rate specified
24、 in 5.2.7. The gas temperatureshall not be allowed to exceed 299 K (79F) or go below 289 K (61F).Flow rates are corrected to 294.2 K because most manufacturers use thistemperature as standard for calibration charts.5.2.4 Oxygen StorageA minimum of one oxygen tankshall be tapped through suitable pres
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