DIN 50905-2-1987 Corrosion of metals corrosion testing corrosion characteristics under uniform corrosion attack《金属腐蚀 腐蚀检验 均匀腐蚀情况下的腐蚀特性》.pdf
《DIN 50905-2-1987 Corrosion of metals corrosion testing corrosion characteristics under uniform corrosion attack《金属腐蚀 腐蚀检验 均匀腐蚀情况下的腐蚀特性》.pdf》由会员分享,可在线阅读,更多相关《DIN 50905-2-1987 Corrosion of metals corrosion testing corrosion characteristics under uniform corrosion attack《金属腐蚀 腐蚀检验 均匀腐蚀情况下的腐蚀特性》.pdf(4页珍藏版)》请在麦多课文档分享上搜索。
1、UDC 620.193.4 : 669 DEUTSCHE NORM January 1987 Corrosion of metals Corrosion testing Corrosion characteristics under uniform corrosion attack DIN 50 905 Part 2 Korrosion der Metalle; Korrosionsuntersuchungen; Korrosionsgroen bei gleichmiger Flchenkorrosion Quantity 1 Scope and field of application T
2、he corrosion of metals can produce a great variety of corrosion effects (.e. forms of corrosion). This standard deals specifically with the corrosion characteristics which may be used to calculate the rate of corrosion in cases where surface removal isvirtually uniform. See DIN 50905 Part 3 for corr
3、osion characteristics under nonuniform and localized corrosion attack. Besides establishing the values of the measurands and calculating corrosion characteristics, it may in some cases be of significance to determine other changes in the properties of the material (cf. DIN 50905 Part 1 ). See DIN 50
4、905 Part 1 for other relevant standards. Conventional unit Symbol 2 Measured quantities and their determination Since corrosion characteristics are generally calculated on the basis of changes in mass, the following measured quantities must be determined. Surface area ex- posed to corrosion Change i
5、n mass Table 1. Measured quantities A m2 I AM I 9 Density e g.rn- Exposure ti me t h 2.1 Surface area exposed to corrosion The surface area exposed to corrosion, A, shall be measured before the corrosion test is commenced. 2.2 Change in mass The change in mass shall be determined by weighing. It is
6、equal to the difference in the mass of the specimen before and after the corrosion test. If no corrosion products adhere to the specimen, its change in mass is always negative and corresponds to the loss in mass which has occurred during corrosion. Supersedes January 1975 edition. If all corrosion p
7、roducts produced adhere, the change in mass is always positive, and is equal to the combined mass of the oxidizing agent and the components of the corrosive medium (agent) which have been consumed in producing the corrosion products. If only some of the corrosion products adhere to the specimen, the
8、 change in mass may be positive or negative, and cannot be used directly for calculating the corrosion rate. 22.1 Loss in mass The loss in mass is equal to the negative value of the change in mass, I Am I. See DIN 50 905 Part 1 for treat- ment of the specimens before initial weighing and for the rem
9、oval of adhering corrosion products before final weighing. Note. The loss in mass may also be determined by other methods, e.g. from the quantity of hydrogen generated, the quantity of oxidizing agent (e.g. oxygen) consumed or by quantitative deter- mination of the metal ions passing into solution.
10、These methods are more complicated than determining the loss in mass by weighing, but are used in special corrosion tests. 2.2.2 Gain in mass The gain in mass is equal to the positive value of the change in mass. See DIN 50905 Part 1 for determination of the loss in mass from the measured gain in ma
11、ss in cases where the chemical composition of the corrosion product is known. 2.3 Density For most materials, tables giving the density, are available. If not, it shall be obtained by calculation. In the case of porous solids, the apparent density shall be taken as the density value; see DIN 1306. 2
12、.4 Exposure time The exposure time, t, is the time elapsing between the beginning and the end of the corrosion test, less the duration of any interruptions. Note. As a rule, heating and cooling times shall be sub- tracted. 3 Corrosion characteristics and their calculation The following corrosion cha
13、racteristics can be calculated from the measured quantities. Continued on pages 2 to 4 euth Verlag Gmbii. Berlin. has the exclusive right of sale for German Standards (DIN-Normen) 01.90 DIN 50 905 Part 2 Engi. Price group 5 Sales No. O1 05 Page 2 DIN 50905 Part 2 Table 2. Corrosion characteristics R
14、ate of removal I Conventional Characteristic ZIJ mm I a.- *) I I ma 1 g .m-* Loss in mass per unit area Gain in mass per unit area Reduction in thickness I g . n-2. h- I z Rate of loss in mass per unit area 3.1 Loss in mass per unit area The loss in mass per unit area, ma, is the absolute value of t
15、he loss in mass, I Am I, divided by the value of the surface area exposed to corrosion, A. The loss in mass per unit area shall not be used to compare directly the corrosion behaviour of metals of different densities. 3.2 Gain in mass per unit area The gain in mass per unit area, m, is the absolute
16、value of the gain in mass, IArnl, divided by the value of the surface area exposed to corrosion,A. The gain in mass per unit area shall not be used to compare directly the corrosion behaviour of metals of different densities. 3.3 Reduction in thickness The reduction in thickness, As, in mm, is calcu
17、lated from the loss in mass, IArnl, the surface area exposed to corrosion, A, and the density, e, in accordance with equation (I): The reduction in thickness allows a comparison to be made between the corrosion behaviour of metals of different densities exposed to corrosion for the same period. 3.4
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