ASTM F29-1997(2002) Standard Specification for Dumet Wire for Glass-to-Metal Seal Applications《玻璃与金属密封装置用杜美丝》.pdf
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1、Designation: F 29 97 (Reapproved 2002)Standard Specification forDumet Wire for Glass-to-Metal Seal Applications1This standard is issued under the fixed designation F 29; the number immediately following the designation indicates the year of originaladoption or, in the case of revision, the year of l
2、ast revision. A number in 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 round, copper-coated 42 %nickel-iron wire, commonly known as dumet, intended prima-rily for
3、sealing to soft glass.1.2 The values stated in inch-pound units are to be regardedas the standard. The metric equivalents of inch-pound unitsmay be approximate.2. Referenced Documents2.1 ASTM Standards:B 170 Specification for Oxygen-Free Electrolytic CopperRefinery Shapes2D 1535 Test Method for Spec
4、ifying Color by the MunsellSystem3D 1729 Practice for Visual Evaluation of Color Differencesof Opaque Materials3E 3 Methods of Preparation of Metallographic Specimens4E 29 Practice for Using Significant Digits in Test Data toDetermine Conformance with Specifications5E 53 Methods for Chemical Analysi
5、s of Copper6E 228 Test Methods for Linear Thermal Expansion of SolidMaterials With a Vitreous Silicon Dilatometer5F 14 Practice for Making and Testing Reference Glass-Metal Bead-Seal73. Ordering Information3.1 The wire is usually supplied with a surface coatingconsisting of a mixture of copper oxide
6、s and fused sodiumtetraborate (borax) which retards oxidation of the wire duringsealing in glass and further aids wetting of the wire by theglass. The composite wire may also be purchased as bare wirefor specific applications.3.2 The size of the wire, if applicable, the borate color rangedesignated
7、as light, medium (regular), or dark, shall bespecified on each purchase order.3.3 Package sizes shall be agreed upon between the pur-chaser and the seller.4. Chemical Composition4.1 The copper used in the manufacture of dumet shall be99.90 % minimum copper. Silver shall be included with thecopper. T
8、he material shall be free of reducible oxides.4.2 The chemical composition of the nickel-iron core shallbe as shown in Table 1.5. Oxide Coating5.1 The primary standards for the entire range of colors aredivided into three groups covering light, medium (regular), anddark as shown, with their respecti
9、ve limits, in Fig. 1 and Table2 (Note 1). The color range of the specimens shall bedetermined in accordance with 9.2.NOTE 1Color chip 2.5R 3.90/8.0 may be included in the dark rangemerely to extend the color series for assisting the viewer in making abetter decision regarding the cut-off point betwe
10、en medium (regular) anddark dumet.6. Thermal Expansion6.1 The nominal values for the average coefficient of linearthermal expansion shall be as follows when determined inaccordance with 9.1:6.1.1 Core63 to 72 3 107in./in.deg C (mm/mmdegC) over the temperature range of 30 to 400C.1This specification
11、is under the jurisdiction of ASTM-Committee F01 onElectronics and is the direct responsibility of Subcommittee F01.03 on MetallicMaterials.Current edition approved Dec. 10, l997. Published March 1998. Originallypublished as F29 63 T. Last previous edition F29 78 (1991).2Annual Book of ASTM Standards
12、, Vol 02.01.3Annual Book of ASTM Standards, Vol 06.01.4Annual Book of ASTM Standards, Vol 03.01.5Annual Book of ASTM Standards, Vol 14.02.6Annual Book of ASTM Standards, Vol 03.05.7Annual Book of ASTM Standards, Vol 15.02.TABLE 1 Chemical Requirements: Core MaterialElement Composition, %Nickel 41 to
13、 43Manganese 0.75 to 1.25Silicon, max 0.30Carbon, max 0.10Sulfur, max 0.02Phosphorus, max 0.02Iron (by difference) remainder1Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.6.1.2 Copper177 6 3.5 3 107in./in.C (mm/mmdegC) over the temp
14、erature range of 30 to 300C.7. Dimensional Tolerances7.1 The specified diameters shall conform to the tolerancesgiven in Table 3.8. Workmanship and Finish8.1 Internal ConditionThe internal structure of the com-posite material, including the bond area, shall be sound andfree from pipes, porosity, or
15、discontinuities which mightprevent the making of a satisfactory seal.8.2 Surface Condition:8.2.1 There shall be no areas of exposed core evident on thesurface of the wire.8.2.2 The wire shall contain no longitudinal scratches, folds,or lines of a depth greater than the width.8.2.3 There shall be no
16、oil, grease, or other surface contami-nants on the wire.8.2.4 The wire shall be looped or coiled over a mandrel fivetimes the diameter of the wire. At least 75 % of the dumet areashall be free from defects consisting of damaged borate,exposing the copper, when observed at 103 magnification.8.2.5 The
17、 nickel-iron core shall be uniformly covered with18 % to 28 % copper (by weight) and the ratio of maximum tominimum sheath thickness shall not exceed 2.5 to 1 on anycross section.NOTE 2The sheath is defined as that area exclusive of the core.8.3 StorageFinished material should be stored in a con-tai
18、ner or room with a maximum relative humidity of 50 %.9. Test Methods9.1 Thermal ExpansionDetermine the thermal expansioncharacteristics in accordance with Test Method E 228, exceptthat the specimen shall be preheated as follows:9.1.1 Heat the core rod specimen in a hydrogen atmospherefor1hat900C; th
19、en cool it from 900 to 200C at a rate notexceeding 5C/min.9.1.2 Determine the thermal expansion charateristics inaccordance with Test Method E 228.9.2 Color of Coating Mount the color chips8on a neutralbackground (middle gray to white) as shown in Fig. 1. Windthe specimen to be tested or compared on
20、 a flat surface similarto that shown in Fig. 1. Each turn of the wire should lie paralleland as close as possible to the preceding turn without overlap-ping. View the specimen in natural or artificial daylight inaccordance with either or both Method D 1535, (Note 3) orTest Method D 1729Fig. 2.NOTE 3
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