DIN 17869-1992 Material properties of titanium and titanium alloys additional data《钛和钛合金的材料性能 附加说明》.pdf
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1、UDC 669.295 DEUTSCHE NORM June 1992 I I Properties of titanium and titanium alloys Information relating to DIN 17860 through DIN 17866 - DIN 17 869 - Werkstoffeigenschaften von Titan und Titanlegierungen; zustzliche Angaben In keeping with current practice in standards published by the International
2、 Organization for Standardization (ISO), a comma has been used throughout as the decimal marker. Contents Page 1 Scope and field of application 1 2 Physical properties 1 3 Ternperature-related properties 1 3.1 Tensile strength at elevated temperatures 1 3.2 Low temperature toughness 1 3.3 Notch impa
3、ct strength . 1 3.4 Rupture stress and creep limit 1 3.5 Designvalues 1 1 Scope and field of application This standard provides information regarding certain properties of titanium and titanium alloys, intended to complement the technical delivery conditions specified in DIN 17860 through DIN 17866.
4、 With regard to acceptance inspection, this information is not binding. Since the properties covered in this standard are not a function of the product form, they are summarized for ease of reading. Where a product is required to have one or more of the properties specified here, the property, the v
5、alue with which it is to comply, and the method of test shall be the subject of agreement at the time of ordering. 2 Physical properties Guideline values for the physical properties of titanium are given in table 1, those for titanium alloys, in table 2. 3 Temperature-related properties 3.1 Tensile
6、strength at elevated temperatures Guideline values for tensile strength at elevated tempera- tures are given in table 3. 3.2 Low temperature toughness The strength of titanium and titanium alloys increases in inverse proportion to the temperature. Titanium of low Page 4.1 Chipless forming 8 4.2 Hotf
7、orming 8 4.3 Annealing and pickling . 8 4.4 Machining 8 5 Heattreatment 8 6 Weldability 8 7 Corrosion resistance 9 Standards and other documents referred to . 14 4 Methods of working . 8 strength remains workable, and high-strength titanium does not become brittle, at very low temperatures (cf. tabl
8、e 4). The low temperature properties of titanium alloy grades TiA16V4 and TiA15Sn2,5 can be improved by adding low amounts of accompanying elements during the manufacturing process (cf. table 5). 3.3 Notch impact strength The notch impact strength of titanium grade Ti2, as a function of temperature,
9、 is illustrated in figure 1. Titanium is generally not susceptible to brittle fracture (as opposed to ferritic steel, which becomes brittle when the impact strength drops at higher temperatures). The notch impact strength nonetheless varies markedly as a function of temperature. 3.4 Guideline values
10、 for the rupture stress of titanium are given in table 6, those for the creep limit of certain tita- nium alloys, in table 7. Rupture stress and creep limit 3.5 Design values The design values (cf. table 8) are in accordance with the Technische Regeln fr Druckbehlter (Codes of practjce for pressure
11、vessels) and have been taken from VdUV- Werkstoffblatt (VdTV Materials sheet) 230. A factor of safety of 1,5 is to be taken into account, which may need to be adjusted in the case of fully loaded welded joints. Continued on pages 2 to 14 Beuth Verhg GrnbH, Berlin, has the exclusive right of sale for
12、 German Standards (DIN-Normen). DIN 17869 Engl. Price group 10 Sales No. 0110 09.93 Page 2 DIN 17869 Cu CO (u CO Cu m O 7 o O O d SE 0 .z E rn. E ZL .- O Cu .- BE rnG - .E o O Cu Cu O I O O a! I- O t Cu O t Cu O UJ“ I- Co c “9 P O Cu O O Tt Y- . -P a- O Cu o? O Cu o O Cu (9 Cu Cu a“ Cu Cu (4 Cu Cu O
13、 3 O c) o - O I- V) O m W - O b V) O k rn O Cu UJ O Cu V) O Cu V) DIN 17869 Page 3 TiA13V2,5 Table 2: Physical properties of titanium alloys (guideline values) 3.71 95 DensiM in g/m3 Material Thermal conductance, W in-, m-K Tensile strength, I?, in N/mm2, at a temperature, in “C, of Mean coefficient
14、 of linear thermal expansion, in -60C-1 at temperatures between 20 C and 200 “C TilPd F29 Ti2Pd F39 Ti3Pd F46 TiNiO,8MoO,3 F48 TiA15Fe2,5 F86 TiA15Sn2,5 F79 Modulus of elasticity, 3.7225.1 O 3.7235.1 O 3.7255.1 O 3.71 05.1 O 3.71 10.1 O 3.71 15.1 O Material designation 1 number Resistivity, Q - mm2
15、m in kN in mm2 at 100 CI 400 C 20 “C at 20C TiNiO,8Mo0,3 I 3.71 05 4,51 19,o 975 0,52 103 -I- - 116 TiA15Fe2,5 I 3.7110 973 4,45 4,48 4,55 4,43 434 4,60 4,48 1,57 110 TiA15Sn2,5 1 3.7115 7,95 5,86 7,12 6,50 734 8,O 975 1,91 114 TiAIGSn2Zr4Mo2Si 1 3.71 45 973 1,71 110 1 9,4 1,57 116 =I= 93) 81 ) 1,50
16、 117 9.3 1,26 1 03 I) Values have been obtained by interpolation. designation I number Til F29 I 3.7025.10 Ti2 F39 I 3.7035.10 Ti3 F46 I 3.7055.10 Ti4 F54 I 3.7065.10 TiA16Sn2Zr4Mo2Si F92 I 3.71 45.70 TiA16V4 F90 I 3.7165.10 TiA16V4 FI 05 I 3.7165.70 TiA16V6Sn2 F1 O0 I 3.71 75.1 O TiA16V6Sn2 F120 I
17、3.71 75.70 TiA14Mo4Sn2 F1 O0 I 3.71 85.70 TiA13V2,5 F62 I 3.7195.10 Page 4 DIN 17869 0,2 % proof stress, in N/mm*, at a temperature, in “C, of Table 4: Mechanical properties of unalloyed and low-alloy titanium at low temperature (guideline values) Tensile strength, Elongation at fracture, R, in N/mm
18、2, at a temperature, in “C, of A, in %, at a temperature, in “C, of Material designation number 37025 Til Til Pd 3.7225 37035 Ti2 Ti2Pd 3.7235 37055 Ti3 Ti3Pd 3 7255 Ti 3.7065 TiNiO,8MoO,3 3.71 05 -196 -70 20 -196 -70 20 -196 -70 20 450 290 240 800 500 350 50 50 45 700 450 330 900 630 470 25 30 35 8
19、50 580 440 1000 730 560 15 20 25 - - - - - - 480 640 25 580 440 730 560 20 25 - - - Tensile strength, R, in N/mm*, at a temperature, in “C, of 0,2 % proof stress, so,*, in N/mm2, at a temperature, in OC, of Temperature +20 -196 -253 -269 +20 -196 -253 -269 TiA15Sn2,5 805 1350 1580 1430 715 1160 1420
20、 1300 TiA16V4 930 1500 1810 1590 865 1390 1710 1530 Elongation at fracture, A, in %, at a temperature, in “C, of +20 -196 -253 -269 16 16 25 7 13 13 6 6 DIN 17869 Page 5 Material designation Ti 1 Ti2 Ti3 Ti4 300 250 t N 200 E i 7 c - ; 150 c 4- u3 o 2 E - 100 SO, I -2i Rupture stress, in N/mm*, at t
21、he following temperatures, in OC, after 10000 h 1 O0 O00 h 20 75 100 150 200 250 300 20 75 100 150 200 250 300 220 175 160 150 130 110 - 200 160 145 130 120 90 - 320 230 205 196 188 176 160 280 215 195 191 186 172 150 368 279 255 233 230 214 185 340 257 242 232 230 211 178 380 285 265 240 235 220 19
22、0 350 265 245 235 235 215 185 DVM specimen 8 tudinal / f I Single and mean values Minimum values o- -o 59 longitudinal 8-8 49 transverse I I I I I -100 o 100 200 300 4 Temperature, in “C - Figure 1: Impact strength of a plate made from Ti2 titanium (material number 3.7035), 30 mm thick, as a functio
23、n of temperature Table 6: Rupture stress of titanium (guideline values) Page6 DIN 17869 Temperature, in “C TiAIGSn2Zr4Mo2Si 3.71 45 TiA16V4 3.71 65 TiA14Mo4Sn2 3.71 85 Table 7: Creep limit of three titanium alloy grades (guideline values) 350 400 450 500 350 400 450 500 550 490 380 245 50 - - - - -
24、- 490 255 110 450 255 (85) 650 520 235 65 635 485 205 50 - - - I 0,l % creep limit, in N/mm2 I After a period of I 150 h I After a period of I 150 h l 300 h I 300 h Temperature, in “C TiAIGSn2Zr4Mo2Si 3.71 45 TiA16V4 3.71 65 TiA14Mo4Sn2 3.71 85 350 400 450 500 350 400 450 500 550 490 440 295 145 - -
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