ASTM F79-1969(2005) Standard Specification for Type 101 Sealing Glass《101型密封玻璃》.pdf
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1、Designation: F 79 69 (Reapproved 2005)Standard Specification forType 101 Sealing Glass1This standard is issued under the fixed designation F 79; the number immediately following the designation indicates the year of originaladoption or, in the case of revision, the year of last revision. A number in
2、 parentheses indicates the year of last reapproval. A superscriptepsilon (e) indicates an editorial change since the last revision or reapproval.1. Scope1.1 This specification covers Type 101 sealing glass for usein electronic applications.NOTE 1This specification is primarily intended to consider g
3、lass asmost generally used, this is, glass in its transparent form as normallyencountered in fabricating electronic devices. X1.3 lists sealing metals andalloys that are compatible with this glass. Type 101 glass in other formssuch as powdered, crushed, sintered, fibrous, etc. are excluded. Therequi
4、rements of this specification, as applied to these forms, must beestablished in the raw glass prior to its conversion.2. Referenced Documents2.1 ASTM Standards:2C 336 Test Method for Annealing Point and Strain Point ofGlass by Fiber ElongationC 338 Test Method for Softening Point of GlassC 598 Test
5、Method for Annealing Point and Strain Point ofGlass by Beam BendingD 150 Test Methods for AC Loss Characteristics and Per-mittivity (Dielectric Constant) of Solid Electrical Insulat-ing MaterialsD 257 Test Methods for DC Resistance or Conductance ofInsulating MaterialsE29 Practice for Using Signific
6、ant Digits in Test Data toDetermine Conformance with SpecificationsE 228 Test Method for Linear Thermal Expansion of SolidMaterials with a Vitreous Silica Dilatometer3F14 Practice for Making and Testing Reference Glass-Metal Bead-SealF 140 Practice for Making Reference Glass-Metal ButtSeals and Test
7、ing for Expansion Characteristics by Polari-metric MethodsF 144 Practice for Making Reference Glass-Metal Sand-wich Seal and Testing for Expansion Characteristics byPolarimetric Methods3. Ordering Information3.1 Orders for material under this specification shall includethe following information:3.1.
8、1 Form,3.1.2 Type of glass,3.1.3 Dimensions,3.1.4 Marking and packaging, and3.1.5 Certification (if required).4. Chemical Composition4.1 The typical chemical composition of this glass is asfollows (Note 2):Major Constituents Weight %Silica (SiO2) 56.0Alumina (Al2O3)1.5Soda (Na2O) 4.0Potash (K2O) 8.5
9、Lead oxide (PbO) 29.0Antimony trioxide (Sb2O3) 1.0, maxArsenic trioxide (As2O3) 1.0, maxHalogens 0.2, maxNOTE 2Major constituents may be adjusted to give the desiredelectrical and physical properties to the glass. However, no change shall bemade that alters any of these properties without due notifi
10、cation of, andapproval by, the user.5. Physical Properties5.1 The material shall conform to the physical propertiesprescribed in Table 1. For electrical properties see Table 2 andits Footnote A.6. Workmanship, Finish, and Appearance6.1 The glass shall have a finish that ensures smooth, evensurfaces
11、and freedom from cracks, checks, bubbles, and otherflaws of a character detrimental to the strength or life of thecomponent or device for which its use is intended.7. Test Methods7.1 Softening PointSee Test Method C 338.7.2 Annealing PointSee Test Method C 336 or TestMethod C 598.1This specification
12、 is under the jurisdiction of ASTM Committee C14 on Glassand Glass Products and is the direct responsibility of Subcommittee C14.04 onPhysical and Mechanical Properties.Current edition approved Sept. 1, 2005. Published October 2005. Originallyapproved in 1967. Last previous edition approved in 2000
13、as F 79 67 (2000).2For referenced ASTM standards, visit the ASTM website, www.astm.org, orcontact ASTM Customer Service at serviceastm.org. For Annual Book of ASTMStandards volume information, refer to the standards Document Summary page onthe ASTM website.3Withdrawn.1Copyright ASTM International, 1
14、00 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.7.3 Thermal Expansion Coeffcient Pretreat the specimenby heating to 10C above the annealing point and hold it at thattemperature for 15 min; then cool it from that temperature to100C at a rate of 2 to 5C/min. The cool
15、ing rate below 100Cis optional. Place the specimen in the dilatometer and deter-mine the mean coefficient of linear thermal expansion for the 0to 300C range in accordance with ProcedureAof Test MethodE 228.7.4 Contraction CoeffcientHeat the specimen in a vitre-ous silica dilatometer to 20C above the
16、 annealing point andhold it at that temperature for 15 min; then cool at a rate offrom 1.0 to 1.5C/min to a temperature below 200C. The rateof cooling from the point below 200 to 100C shall not exceed5C/min. The rate of cooling from 100C to room temperatureis optional. During this cooling schedule,
17、determine the ther-mal contraction curve and calculate the mean coefficient oflinear thermal contraction between a point 15C below theannealing point and 30C in accordance with Procedure B ofTest Method E 228.7.5 Bead Seal TestThe thermal contraction match be-tween the glass and a sealing alloy may
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