ASTM F144-1980(2010) Standard Practice for Making Reference Glass-Metal Sandwich Seal and Testing for Expansion Characteristics by Polarimetric Methods《偏振法测定膨胀特性用的参考玻璃金属夹层密封材料的制作与试.pdf
《ASTM F144-1980(2010) Standard Practice for Making Reference Glass-Metal Sandwich Seal and Testing for Expansion Characteristics by Polarimetric Methods《偏振法测定膨胀特性用的参考玻璃金属夹层密封材料的制作与试.pdf》由会员分享,可在线阅读,更多相关《ASTM F144-1980(2010) Standard Practice for Making Reference Glass-Metal Sandwich Seal and Testing for Expansion Characteristics by Polarimetric Methods《偏振法测定膨胀特性用的参考玻璃金属夹层密封材料的制作与试.pdf(5页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: F144 80 (Reapproved 2010)Standard Practice forMaking Reference Glass-Metal Sandwich Seal and Testingfor Expansion Characteristics by Polarimetric Methods1This standard is issued under the fixed designation F144; the number immediately following the designation indicates the year of orig
2、inaladoption or, in the case of revision, the year of last revision. A number in parentheses indicates the year of last reapproval. A superscriptepsilon () indicates an editorial change since the last revision or reapproval.1. Scope1.1 This practice covers the preparation and testing of areference g
3、lass-metal sandwich seal for determining stress inthe glass or for determining the degree of thermal expansion(or contraction) mismatch between the glass and metal. Testsare in accordance with Test Method F218 (Section 2).1.2 This practice applies to all glass and metal (or alloy)combinations normal
4、ly sealed together in the production ofelectronic components.1.3 The practical limit of the test in deriving mismatch isapproximately 300 ppm, above which the glass is likely tofracture.1.4 This standard does not purport to address all of thesafety problems, if any, associated with its use. It is th
5、eresponsibility of the user of this standard to establish appro-priate safety and health practices and determine the applica-bility of regulatory limitations prior to use.2. Referenced Documents2.1 ASTM Standards:2F15 Specification for Iron-Nickel-Cobalt Sealing AlloyF30 Specification for Iron-Nicke
6、l Sealing AlloysF31 Specification for 42 % Nickel-6 % Chromium-IronSealing AlloyF47 Test Method for Crystallographic Perfection of Siliconby Preferential Etch Techniques3F79 Specification for Type 101 Sealing GlassF105 Specification for Type 58 Borosilicate Sealing GlassF218 Test Method for Measurin
7、g Optical Retardation andAnalyzing Stress in GlassF256 Specification for Chromium-Iron Sealing Alloys with18 or 28 Percent Chromium3. Summary of Practice3.1 Seals of a standard configuration are prepared fromrepresentative specimens of the glass and metal to be tested.The glass and metal are cleaned
8、, treated, and sized to specifiedproportions. Plane-interfaced seals are formed, annealed, andmeasured for residual optical retardation. The stress parallel tothe interface in each seal is calculated from the opticalretardation, and the average stress and thermal expansionmismatch are computed for t
9、he sample.4. Significance and Use4.1 The term “reference” as employed in this practiceimplies that either the glass or the metal of the referenceglass-metal seal will be a “standard reference material” such asthose supplied for other physical tests by the National Instituteof Standards and Technolog
10、y, or a secondary reference materialwhose sealing characteristics have been determined by seals toa standard reference material (see NBS Special Publication260). Until standard reference materials for seals are estab-lished by the NIST, secondary reference materials may beagreed upon between manufac
11、turer and purchaser.5. Apparatus5.1 Polarimeter, as specified in Test Method F218 formeasuring optical retardation and analyzing stress in glass.5.2 Cut-Off Saw, with diamond-impregnated wheel and No.180 grit abrasive blade under flowing coolant for cutting andfine-grinding glass rod.5.3 Glass Polis
12、her, buffing wheel with cerium oxide polish-ing powder or laboratory-type equipment with fine-grindingand polishing laps.5.4 Heat-Treating and Oxidizing Furnaces, with suitablecontrols and with provisions for appropriate atmospheres(Annex A1) for preconditioning metal, if required.5.5 Sealing Furnac
13、e, radiant tube, muffle or r-f inductionwith suitable controls and provision for use with inert atmo-sphere.5.6 Annealing Furnace, with capability of controlled cool-ing.1This practice is under the jurisdiction of ASTM Committee C14 on Glass andGlass Products and is the direct responsibility of Subc
14、ommittee C14.04 on Physicaland Mechanical Properties.Current edition approved April 1, 2010. Published May 2010. Originallyapproved in 1971T. Last previous edition approved in 2005 as F144 80 (2005).DOI: 10.1520/F0144-80R10.2For referenced ASTM standards, visit the ASTM website, www.astm.org, orcont
15、act ASTM Customer Service at serviceastm.org. For Annual Book of ASTMStandards volume information, refer to the standards Document Summary page onthe ASTM website.3Withdrawn. The last approved version of this historical standard is referencedon www.astm.org.1Copyright ASTM International, 100 Barr Ha
16、rbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.5.7 Ultrasonic Cleaner, optional.5.8 Fixture for Furnace Sealing, design as suggested inAnnex A2.5.9 Micrometer Caliper, with index permitting direct read-ing of 0.02 cm.5.10 Immersion Mercury Thermometer.6. Materials6.1 MetalF
17、ive representative specimen pairs of the metalfrom either rod or plate stock with dimensions satisfying therequirements of 7.1. The surfaces to be sealed should berelatively free of scratches, machine marks, pits, or inclusionsthat would induce localized stresses. The sealing surfacesshould terminat
18、e in sharp edges at the peripheral corners to actas a glass stop. Edges that are rounded, such as appear ontumbled parts, will have the tendency to permit glass overflow.The opposite faces of each plate should be parallel within 0.5.6.2 GlassFive representative specimens of rod or plateglass, cut wi
19、th either diamond-impregnated or other abrasivecutting wheels under flowing water. Dimensions (volume)must satisfy the requirements of 7.2, and the faces should beflat and parallel within 0.5 for uniform flow during sealing.7. Test Specimens7.1 The metal specimens may take the form of circular,squar
20、e, or rectangular plates. In each case the dimension d, Fig.1, designates the path along which the optical retardation in thefinished seal is measured. Two identical metal plates of any ofthe indicated shapes are required for a seal. The thickness, tm,of each plate should be at least 0.7 mm and d/tm
21、should be atleast 6.7.2 Glass with suitable optical transmission of any shapemay be used, provided it flows essentially bubble-free to fill theentire volume between the metal plates as in Fig. 2. Experienceindicates, however, that best results are obtained with flat glassconforming closely to the ou
22、tline of the metal plates. Thethickness of the glass before sealing shall be such that it equalstmafter sealing within 15 %. Thus, the volume of glassnecessary to fill the void between the metal plates to athickness equal to that of a single plate becomes the determin-ing dimensional criterion for t
23、he glass.7.3 When used as an acceptance test by producer and user,the number of test seals representing one determination shall beestablished by mutual agreement. However two seals are aminimum requirement for one determination.8. Preparation of Specimens8.1 MetalChemically clean the specimens to re
24、movesurface contaminants, especially lubricants and fingerprintsfrom fabrication and handling. Usually it is advisable topreoxidize parts as described in Annex A1. Preoxidationpromotes a better glass-to-metal bond and relieves cold work-ing stresses.8.2 GlassUsing optical glass techniques grind and
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