DIN 17022-2-1986 Heat treatment of ferrous materials heat treatment methods hardening and tempering of tools《钢铁材料热处理 热处理方法 第2部分 工具的淬火和回火》.pdf
《DIN 17022-2-1986 Heat treatment of ferrous materials heat treatment methods hardening and tempering of tools《钢铁材料热处理 热处理方法 第2部分 工具的淬火和回火》.pdf》由会员分享,可在线阅读,更多相关《DIN 17022-2-1986 Heat treatment of ferrous materials heat treatment methods hardening and tempering of tools《钢铁材料热处理 热处理方法 第2部分 工具的淬火和回火》.pdf(19页珍藏版)》请在麦多课文档分享上搜索。
1、UDC 621.785.6/.7: 669.1 : 621.9.02: 620.1 DEUTSCHE NORM June 1986 I I Heat treatment of ferrous materials Heat treatment methods Hardening and tempering of tools - DIN 17 022 Part 2 Wrmebehandlung von Eisenwerkstoffen; Verfahren der Wrmebehandlung; Hrten und Anlassen von Werkzeugen In keeping with c
2、urrent practice in standards published by the International Organization for Standardization (/SO), a comma has been used throughout as the decimal marker. Contents Page 1 Scope and field of application . 1 2 Concepts 1 3 Principle of heat treatment . 1 3.1 Hardening 1 3.1.1 Austenitizing . 1 3.1.2
3、Cooling . 1 3.2 Tempering 2 4 Indicating the heat-treated condition 2 5 Hardening and tempering procedure . 2 5.1 Preparation and pretreatment 2 5.1 .I Stress relieving 2 5.1.2 Hardening and tempering (pretreatment) 2 5.1.3 Tool preparation . 2 5.2 Hardening 2 5.2.1 Austenitizing . 2 5.2.2 Cooling .
4、 .: 4 5.2.3 Deepfreezing . 5 5.3 Tempering 5 5.4 Hardening and tempering of unalloyed steel tools 8 5.4.1 Hardening . 8 5.4.2 Tempering . 8 5.5 Hardening and tempering of tools made from cold work and hot work alloy steels 9 1 Scope and field of application This standard describes heat treatment pro
5、cedures and provides information on the hardening and tempering of tools made from tool steels, e.g. from those specified in DIN 17 350. 2 Concepts The terminology associated with heat treatment as used in this standard has been adopted from DIN 17014 Part 1 which also gives the relevant definitions
6、. 3 Principle of heat treatment 3.1 Hardening Hardening consists of austenitizing and cooling at a rate suitable for the intended application. 3.1.1 Austenitizing Austenitizing is effected by heating and soaking at austenitizing temperature, the hardening temperature Page 5.5.2 Deep freezing . 10 5.
7、5.3 Tempering . 10 5.6 Hardening and tempering of high speed steel tools. 10 5.6.1 Hardening . 10 5.6.2 Tempering . 10 6 Heat treatment media 1 O 6.1 Heating media 10 6.1.1 Liquid heating media 12 6.1.2 Gaseous heating media . 12 6.1.3 Vacuum 12 6.2 Cooling/quenching media 12 6.2.1 Liquid cooling me
8、dia 12 6.2.2 Gaseous cooling media . 12 6.2.3 Deep freezing media 12 7.1 Heat treatment furnaces . 12 7.3 Deep freezing equipment. 14 8 Defects caused by errors in the heat treatment of tools 14 9 Design criteria for proper heat treatment . 14 10 Notes on straightening . 18 11 Inspection of heat-tre
9、ated tools . 18 5.5.1 Hardening . 9 7 Notes on heat treatment equipment . 12 7.2 Cooling/quenching equipment . 14 being generally identical with the austenitizing temper- ature. Heating may be effected in stages, this being the usual procedure for alloy steel tools. The austenitizing conditions are
10、primarily governed by the chemical composition and the required final condition of the material by the shape and dimensions of the tool being hardened and by the initial condition of the material. The interrelationship of the material-related factors is illustrated by time-temperature austenitizing
11、diagrams (see subclause 5.2.1). 3.1.2 Cooling Austenitizing is followed by cooling at a rate suitable for imparting the required hardness. Cooling may be carried out with the temperature lowered in stages, this being the usual procedure for alloy steel tools. The cooling process is a function of the
12、 chemical composition of the steel, the austenitizing conditions, the shape and dimensions of the tool being hardened and by the required final condition of the material. Cooling may be continued below ambient temperature (see subclause 5.2.3). Continued on pages 2 to 19 Beuth Verlag GmbH. Berlin. h
13、as the exclusive right of sale for German Standards (DIN-Normen). 01.88 Sales No. O1 12 DIN 17022 Part2 Engl. Pricegroup I, Page 2 DIN 17 022 Part 2 3.2 Tempering After hardening, the tools shall be tempered either once or several times. The tempering temperature and duration of tempering are functi
14、ons of the required hardness and other functional properties of the tool, the tempering behaviour being governed by the chemical composition of the material and the prevailing structure condition. 4 Indicating the heat-treated condition On drawings, the heat-treated condition shall be indicated as s
15、pecified in DIN 6773 Part 2. Detailed specifications of the heat treatment procedure may require the provision of a heat treatment instruction as specified in DIN 17 023, or a heat treatment schedule. For denoting details of the heat treatment procedure, the symbols given in DIN 17 014 Part 3 shall
16、be used. 5 Hardening and tempering procedure 5.1 Preparation and pretreatment The preparation and conditioning of tools is intended to eliminate any undesirable influence of internal stresses on distortion, or of the surface condition on the final condition, and to ensure that heat treatment is not
17、interrupted by workpiece failure. 5.1 .I Stress relieving Stress relieving is necessary if internal stresses present in the material influence its susceptibility to distortion to an unacceptable extent, the resulting changes in size and shape being taken into account b!t the provision of an adequate
18、 machining allowance. The temperature shall lie below the transformation temperature Ac1 , but should be as close to this temperature as possible. This being the case, soaking after heating is not required. Heating and cooling shall be performed so as to prevent additional internal stresses arising.
19、 In the case of cold-formed tools, normalizing is to be preferred if stress relieving is likely to result in grain coarsening due to recrystallization. 5.1.2 Hardening and tempering (pretreatment) The internal stresses present in the tool blank may also be reduced by heating to austenitizing tempera
20、ture instead of stress relieving, this also making the material more homogeneous. If the tool blank is then cooled as in the case of hardening, the changes in dimensions and shape likely to result during subsequent hardening of the machined tool can be reduced, and the extent and direction of the li
21、kely changes can be estimated. Following this, the tool blank shall be tempered so as to allow further machining and correction of the changes in size and shape that have occurred. This so-called “Pretreatment“ of the blank including intermediate machining prior to hardening of the tool has proved i
22、ts value, particularly when exacting demands have to be met in respect of behaviour in terms of changes in size and shape. 5.1.3 Tool preparation Depending on the level of surface impurities dnd the quality requirements to be met, it will be necessary for tools to be prepared, prior to hardening, by
23、 washing, drying, pickling, sand-blasting, flash-trimming, machining or other suitable measures to ensure that, for example, salt baths are not contaminated by flash, adherent chips, rust, scale or skin due to rolling, forging or casting; no eruptions occur in salt baths due to sudden evapora- tion
24、of water; soft skin, soft spottiness and cracks do not occur as a result of decarburized surface layers. Bolts or screws used for closing bores or tapped holes shall be removed prior to heat treatment or even prior to cleaning. 52 Hardening 5.2.1 Austenititing The temperature in the surface zone and
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