DIN 17470-1984 Heating conductor alloys technical delivery conditions for round and flat wire《加热导体合金 圆金属丝和扁平金属丝的交付技术状态》.pdf
《DIN 17470-1984 Heating conductor alloys technical delivery conditions for round and flat wire《加热导体合金 圆金属丝和扁平金属丝的交付技术状态》.pdf》由会员分享,可在线阅读,更多相关《DIN 17470-1984 Heating conductor alloys technical delivery conditions for round and flat wire《加热导体合金 圆金属丝和扁平金属丝的交付技术状态》.pdf(11页珍藏版)》请在麦多课文档分享上搜索。
1、UDC 669.018.54 : 621.315.551 : 621.365.41 : 620.1 DEUTSCHE NORM October 198, I I Heating conductor alloys Technical delivery conditions for round and flat wire oiN 17 470 Heizleiterlegierungen; technische Lieferbedingungen fr Rund- und Flachdrhte Supersedes July 1963 edition and DIN 59 470, July 196
2、3 edition In keeping with current practice in standards published by the International Organization for Standardization (ISOI, a comma has been used throughout as the decimal marker. 1 Field of application This standard applies to the nickel-chrome, nickel-chrome- iron, iron-nickel-chrome and iron-c
3、hrome-aluminium alloys which are normally used for the manufacture of heating conductors by virtue of their high electrical resistance and of their resistance to scaling. It gives specifications for round wire from 0,lO to 6,5 mm diameter, and for flat wire from 0.03 to 0.50 mm thickness and 0,3 to
4、3,O mm width. Note. Some of these alloys are also used as electric resistance alloys. DIN 17 471 applies to these. 2 Designation 2.1 Standard designation 2.1.1 Material A heating conductor alloy identified by material desig- nation NiCr 80 20 and material number 2.4869 shall be designated : or Alloy
5、 DIN 17 470 - 2.4869 2.1.2 Round and flat wire The standard designation shall give in the following order : - the term (round wire or flat wire); - the number of this DIN Standard; - the material designation or material number; - the nominal diameter of round wire, in mm, or Alloy DIN 17 470 - NiCr
6、80 20 nominal thickness and nominal width of flat wire, in mm. 2.1.3 Examples of standard designation Example 1 : round wire A round wire made from the alloy identified by material designation NiCr 80 20 and material number 2.4869, of 3,O mm nominal diameter shall be designated: Round wire DIN 17 47
7、0 - NiCr 80 20 - 3,O or Round wire DI N 17 470 - 2.4869 - 3,O Example 2: flat wire A flat wire made from the alloy identified by material designation CrAl20 5 and material number 1.4767, with a nominal thickness of 0.30 mm and a nominal width of 3 mm shall be designated: Flat wire DIN 17 470 - CrAl
8、20 5 - 0,30 X 3 or Flat wire DIN 17 470 - 1.4767 -OJO X 3 2.2 Designation to be used on ordering 2.2.1 For the purpose of processing a purchase order, the standard designation of round and flat wires shall be supplemented by the following details: - quantity ordered (indication to precede the standa
9、rd designation); - internal diameter of coil or length and surface finish (indications to follow the standard designation). 2.2.2 Examples of order designation Example 1 : Order designation of 100 kg of round wire of 3,O mm nominal diameter, made from alloy NiCr 80 20 (material number 2.48691, with
10、“oxidized“ surface finish, supplied in coils with 500 mm internal diameter: 100kg round wire DIN 1747O-NiCr8020-.3.0 oxidized, in coils with 500 rnm internal diameter oxidized, in coils with 500 mm internal diameter or 100 kg round wire DIN 17 470 - 2.4869 - 3,O Example 2: Order designation of 500 k
11、g of flat wire of 0,30 mm nominal thickness and 3 mm nominal width, made from alloy CrAl 20 5 (material number 1.4767) with “bright“ surface finish, wound onto DIN 46 399 - 125 spool: 500 kg flat wire DIN 17 470 - CrAl20 5 - 0.30 X 3 bright, on DIN 46 399 - 125 spool or 500 kg flat wire DIN 17 470 -
12、 1.4767 - 0,30 X 3 bright, on DIN 46 399 - 125 spool Continued on pages 2 to 11 Beuth Verlag GmbH, Berlin 30, has exclusive sale rights for German Standards (DIN-Normen) 06. 85 DIN 17 470 Engl. Price group 8 Sales No. O1 08 Page 2 DIN 17 470 3 Dimensions, permissible dimensional 3.1 The nominal dime
13、nsions and the nominal masses determined therefrom on the basis of thedensity specified in table 7 are listed in table 1 for round wire and in table 2 for flat wire. 3.2 Inthecaseofflatwire, theactualvalueof thewidth shall not deviate from the nominal value by more than I5%. deviations and masses 4
14、Chemical composition Table 3 lists guideline values relating to the chemical composition of the heating conductor alloys (see final paragraph of Explanatory notes). 5 Condition of wire and method of supply The wire shall be supplied in the soft annealed condition and, depending on the order, provide
15、d with one of the following surface finishes: - bright, or - oxidized. The wire shall be supplied in one of the following forms: - wound onto spools complying with DIN 46 399 - in coil, or - in containers complying with DIN 46 396 Part 1 or Part 2. Part 1 or Part 2, or 6 Properties 6.1 Electrical re
16、sistance 6.1.1 Values of the specific electrical resistance of the heating conductor alloys to be complied with are given in table 4. 6.1.2 Nominal values of the electrical resistance per metre of wire to be complied with are given in table 5 for round wire and in table 6 for flat wire. These values
17、 have been calculated on the basis of the specific electrical resistance values (see table 4) applicable to the state of equilibrium (see table 4, footnote 11.: 6.1.3 In the state of equilibrium (see table 4, foot- note 1 ) the permissible deviation of the electrical resistance per metre at 2OoC fro
18、m the nominal values specified in table 5 and table 6 shall not exceed I 5 %. 6.1.4 Within one and the same continuous length of wire, the electrical resistance per metre at 20 OC shall not deviate by more than I2 % from the measured value indicated on the adhesive label or on the tie-on tag describ
19、ed in clause 10. 6.2 Other physical properties Guideline values relating to other physical properties are listed in table 7. 6.3 Strength properties at room temperature The values given in table 8 are applicable to the strength properties of wire at 2OoC in the soft annealed condition. 6.4 Creep pro
20、perties The guideline values given in table 9 are applicable to the 1 % - 1000 h creep strain limit (RPlllooo) of wire in the soft annealed condition. 6.5 Corrosion behaviour Table 10 gives a synopsis of the corrosion behaviour of the alloys in the soft annealed condition. 6.6 Behaviour in the wrapp
21、ing test In the case of wires with diameters up to 1 mm, the pitch of the coil turns of the helical springs wound as described in subclause 9.3 shall be uniform after the coil has been pulled apart and relieved of the tensile load. 7 Recommendations relating to processing Products made from heating
22、conductor alloys can be jointed to one another by various processes, e.g. by brazing or welding. The choice of process and the pro- cessing conditions depend on the requirements imposed on the joints. Because these requirements vary widely, no universally valid recommendations can be made. 8 Recomme
23、ndations relating to applications Table 3 gives recommendations relating to preferred applications, and table 11 gives guideline values relating to the upper temperature of utilization in air and also data on embrittlement phenomena (see also table IO). 9 Testing 9.1 Testing the electrical resistanc
24、e 9.1.1 The manufacturer shall test one test piece per coil, spool or container in respect of its electrical resistance at 20 C. 9.1.2 The test piece should preferably be 1 m long. 9.1.3 Normally the test pieces shall be tested in the soft annealed condition, but in arbitration cases they shall be t
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