DIN EN 14179-1-2016 Glass in building - Heat soaked thermally toughened soda lime silicate safety glass - Part 1 Definition and description German version EN 14179-1 2016《建筑物用玻璃 吸热.pdf
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1、December 2016 English price group 19No part of this translation may be reproduced without prior permission ofDIN Deutsches Institut fr Normung e. V., Berlin. Beuth Verlag GmbH, 10772 Berlin, Germany,has the exclusive right of sale for German Standards (DIN-Normen).ICS 81.040.20!%h 8 2 000 2,0 3,0 2
2、000 3 000 4,0 5,0 Table 3 Limit deviations for the difference between diagonals Dimensions in millimetres Limit deviation v on the difference between diagonals Nominal dimension B or H nominal glass thickness, d 8 nominal glass thickness, d 8 2 000 4 6 2 000 3 000 8 10 8.2.4 Edge deformation produce
3、d by vertical toughening The tongs used to suspend the glass during toughening can result in surface depressions, known as tong marks (see Figure 5). The centres of the tong marks may be situated up to a maximum of 20 mm in from the edge. A deformation of the edge less than 2 mm can be produced in t
4、he region of the tong mark and there can also be an area of optical distortion. These deformations shall be included in the tolerances in Table 2. Key 1 deformation 2 up to 20 mm 3 tong mark 4 100 mm radius maximum area of optical distortion Figure 5 Tong mark deformation DIN EN 14179-1:2016-12 EN 1
5、4179-1:2016 (E) 15 8.3 Flatness 8.3.1 General By the very nature of the toughening process, it is not possible to obtain a product as flat as annealed glass. This difference in flatness depends on the type of glass, e.g. coated etc., glass dimensions, i.e. the nominal thickness, the dimensions and t
6、he ratio between the dimensions, and the toughening process employed. There are six kinds of distortion: overall bow (see Figure 6); roller wave distortion (for horizontally toughened glass only) (see Figure 7); wave distortion (for toughened glass manufactured by air cushion process only) (see Figu
7、re 11); edge lift (for horizontally toughened glass only) (see Figure 8); perimeter deformation (for toughened glass manufactured by air cushion process only) (see Figure 13); NOTE Overall bow, roller wave, edge lift and perimeter deformation can, in general, be accommodated by the framing system. l
8、ocal distortion (for vertically toughened glass only) (see Figure 9). Local distortion needs to be allowed for within the glazing materials and the weather seals. For special requirements, the manufacturer should be consulted. DIN EN 14179-1:2016-12 EN 14179-1:2016 (E) 16 Key 1 deformation for calcu
9、lating overall bow 2 B, or H, or diagonal length 3 thermally toughened soda lime silicate safety glass Figure 6 Representation of overall bow Key 1 thermally toughened soda lime silicate safety glass Figure 7 Representation of roller wave distortion DIN EN 14179-1:2016-12 EN 14179-1:2016 (E) 17 Key
10、1 straight edge 2 edge lift 3 thermally toughened soda lime silicate safety glass Figure 8 Representation of edge lift Key 1 local distortion 2 thermally toughened soda lime silicate safety glass Figure 9 Representation of local distortion 8.3.2 Measurement of overall bow The pane of glass shall be
11、placed in a vertical position and supported on its longer side by two load bearing blocks at the quarter points (see Figure 10). For glass thinner than 4 mm nominal thickness the support will have an angle between 3 and 7 from the vertical. The deformation shall be measured along the edges of the gl
12、ass and along the diagonals, as the maximum distance between a straight metal ruler, or a stretched wire, and the concave surface of the glass (see Figure 6). The value for the bow is then expressed as the deformation, in millimetres, divided by the measured length of the edge of the glass, or diago
13、nal, in millimetres, as appropriate. The measurement shall be carried out at room temperature. The maximum allowable values for overall bow are given in Table 4 and Table 6. NOTE Results from this this test method for glasses thinner than 4 mm may be inaccurate. DIN EN 14179-1:2016-12 EN 14179-1:201
14、6 (E) 18 Key 1 B or H 2 (B or H)/2 3 (B or H)/4 4 thermally toughened soda lime silicate safety glass 5 support Figure 10 Support conditions for the measurement of overall distortion 8.3.3 Measurement of wave and roller wave 8.3.3.1 General The wave or roller wave is measured by means of a straight
15、edge, or equivalent, being placed at right angles to the wave or roller wave and bridging from peak to peak of the waves (see Figure 11). NOTE This section deals with measurement using a straight edge and feeler gauges. An alternative method is described in Annex B. 8.3.3.2 Apparatus A straight edge
16、: length of between 300 mm and 400 mm. The minimal length of the straight edge has to bridge two peaks of the roller waves. Feeler gauges: various thicknesses in units of 0,05 mm. 8.3.3.3 Method Place the straight edge so that it bridges across adjacent peaks. Insert the feeler gauge between the gla
17、ss surface and the straight edge. Increase the thickness of the feeler gauges until they just fill the gap DIN EN 14179-1:2016-12 EN 14179-1:2016 (E) 19 between glass surface and the straight edge. Record the thickness of feeler gauge(s) to an accuracy of 0,05 mm. Repeat the measurement at several p
18、laces over the glass surface. The measured wave or roller wave distortion is the maximum value measured. The maximum allowable values are given in Table 4 and Table 6. 8.3.3.4 Limitations The following limitations apply. The wave and roller wave can only be measured on panes with a dimension greater
19、 than 600 mm measured at right angles to the wave and roller waves. The wave and roller wave cannot be measured in an exclusion area that is 150 mm from the edges of the pane. The apparatus should not be used in the area of these 150 mm. Panes with an overall bow shall be laid on a flat support. Thi
20、s will allow gravity to flatten out the overall bow and hence give a truer result for the roller wave. Dimensions in millimetres Key 1 straight edge 2 wave or roller wave distortion 3 thermally toughened soda lime silicate safety glass Figure 11 Measurement of wave or roller wave distortion 8.3.4 Me
21、asurement of edge lift (for horizontally toughened glass only) The glass shall be placed on a flat support with the edge lift overhanging the edge of the support by between 50 mm and 100 mm. The straight edge is placed on the peaks of the roller waves and the gap between the ruler and the glass meas
22、ured using a feeler gauge (see Figure 12). The maximum allowable values for edge lift are given in Table 5. The values in Table 5 only apply to thermally toughened soda lime silicate safety glass having edgework complying with Figures 15 to Figure 18. For profiled edges or other types of edgework co
23、ntact the manufacturer. DIN EN 14179-1:2016-12 EN 14179-1:2016 (E) 20 Dimensions in millimetres Key 1 straight edge 2 edge lift 3 thermally toughened soda lime silicate safety glass 4 flat support Figure 12 Measurement of edge lift 8.3.5 Measurement of perimeter deformation of glass produced by air
24、cushion toughening process Place the glass on a flat surface with the concave side facing upwards see Figure 13. A 100 mm straight edge is laid on the pane at right angles to the edge. The gap between the ruler and the glass is measured using a feeler gauge (see Figure 13). The perimeter deformation
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