DIN 1910-3-1977 Welding Welding of Plastics Processes《焊接;塑料的焊接、工艺》.pdf
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1、i z m o c c z m s e .- - o E z L c c 2 .- - c a a o z a o c o c P W o S E a E E .- i 2 E L J C m a 00 a S a J L E 6 z Welding DIN 1910 Welding of Plastics Processes Part 3 Schweien; Schweien von Kunststoffen, Verfahren This Standard has been prepared in co-operation with the Deutscher Verband fr Sch
2、weisstechnik (D VS) (German Welding Association). According to the definitions in DIN 79 70 Part 1 Welding; definitions, classification of welding processes“, processes for welding plastics are pressure welding processes with addition of heat and/or production of heat. Foreign terms do not form part
3、 of this Standard; no responsibility can be accepted as to their accuracy. The diagramatic examples are intended to explain the welding processes. In some cases, the initial form and the final form of the workpiece is shown in one diagram. The following symbols have the meanings given: Direction of
4、pressure a Direction of movement of tool 4 Direction of movement of workpiece t Contents Page Heated tool welding . 1 Hot gas welding 5 Light beam welding . 6 Ultrasonic welding 6 Friction welding. . 7 HF welding . 7 Diagram showing classification of processes of joining plastics by welding, with th
5、e classification numbers 8 List of welding processes in German, English and French; symbols and classification numbers . 9 1 Heated tool welding The workpieces are heated at the joint faces by one or more heating elements and welded with application of pressure with or without filler metal. The pres
6、sure is applied manually, mechanically or by means of an interference fit resp. as a result of thermal expansion of the workpieces. According to the position of the heating element in relation to the joint faces, a distinction is made between direct contact and indirect heated tool welding. 1 .I Dir
7、ect contact heated tool welding The joint is heated by the heating element by means of thermal conduction or thermal radiation. The heating element is placed on the joint face side of the workpieces. 1.1.1 Heated plate welding The active surfaces of the heating element are parallel. The pressure is
8、applied manually or mechanically (see Fig. 1). Heating element Active surface Weld Figure 1. Heated plate welding Continued on pages 2 to 10 Explanations on page 11 Alleinverkauf der Normen durch Beuth Verlag GmbH. Berlin 30 und Kln 1 DIN 1970 Teil 3 engl. Preisgr. 8 Vertr.-Nr. O108 01.89 Page 2 DIN
9、 1910 Part 3 1.1.2 Heated tool groove welding The workpieces are heated at the joint faces by heating elements; when this is done, a groove-shaped impression is usually produced in one workpiece. The pressure is applied manually or mechanically (see Fig. 2). Active surface a Heating element Workpiec
10、e Wild Heat i ng Indentation under heat Welding Figure 2. Heated tool groove welding 1 .I .3 Welding by bending using a heated tool A groove is impressed in the workpiece under heat by a wedge-shaped heating element and the workpiece bent about the line of the groove. The pressure is applied manuall
11、y or mechanically (see Fig. 3). i Heating element Active surface Workpiece Weld Indentation under heat Bending + welding Figure 3. Welding by bending using a heated tool 1.1.4 Sleeve welding with spigot and sleeve The workpieces are heated at the joint faces with a heated mandrel resp. heated socket
12、 and then driven together. The pressure is applied to the workpieces by an interference fit (see Fig. 4). Heating element Active surface Cit - / Workpiece (tubel Driving together I Workpiece n sleeve fitting) Driving together V Weld / Workpiece Welding Figure 4. Sleeve welding with spigot and sleeve
13、 DIN 1910 Part 3 Page 3 1.1.5 Sleeve welding with incorporated electric heating element The workpieces are heated at the joint faces by a helical heating element which remains in the weldment. The pressure is produced by thermal expansion of the workpieces (see Fig. 5) or is applied externally (see
14、Fig. 6). e Workpiece (tube) Po wer Driving together Helical heating element Welding Figure 5. Sleeve welding with incorporated electric heating element . Workpiece Weld Helical heating element Figure 6. Sleeve welding with incorporated electric heating element 1 .I .6 Heated wedge welding The heatin
15、g element is drawn between the joint faces of the overlapping workpieces. The pressure is applied manually or mechanically (see Fig. 7). a TransDort and r pr7ssure rolls Heated wedqe Active surface Workpiece I Figure 7. Heated wedge welding 1.1.7 Heated tool welding with cutting edge The workpieces
16、lying one on top of the other are separated with a wire, strip or knife-shaped heating element, as a result of which the workpieces are joined at the cut edges. The pressure is applied mechanically (see Fig. 8). a Active surface Heating element Active surface Figure 8. Heated tool welding with cutti
17、ng edge Page 4 DIN 1910 Part 3 1.2 indirect heat welding Heating takes place through the workpieces. The heating element is placed on the side of the workpiece opposite the joint face. 1.2.1 Impulse sealing The heating element is electrically heated only during the heating period. The pressure is ap
18、plied manually or mechani- cally; it is maintained also during cooling of the welded workpiece (see Fig. 9). n Elastic thermal Active surface Separating film Elastic thermal insulation Figure 9. Impulse sealing 1.2.2 Heat sealing The heating element is continuously heated. The pressure is applied ma
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