Page 10 - catalog_manual
P. 10
General Physical Properties of YUPO
General Physical Properties of YUPO
〈measured value〉
Tear
Tensile
Tensile
Tear
Surfuce
Basis
Basis
Surfuce
Grade Caliper weight Density Whiteness Opacity Gloss strength Elongation strength Stiffness Resistance Grade Caliper weight Density Whiteness Opacity Gloss strength Elongation strength Stiffness Resistance
ЖNʣ H ᶷ H Dὗ ˋ ˋ ˋ L/ N ˋ N/ $MBSL Њ ЖNʣ H ᶷ H Dὗ ˋ ˋ ˋ L/ N ˋ N/ $MBSL Њ
5PQ #PUUPN .% $% .% $% .% $% .% $% 5PQ #PUUPN .% $% .% $% .% $% .% $%
12
FEB 95 95 73.2 0.77 98 96 52 5 13 115 29 300 180 39 65 9×10 > LAR 75 75 60.8 0.81 98 95 40/25 5 15 126 23 201 100 17 33 T : 9×10 >
11
13
B : 9×10 >
12
11
110 110 84.7 0.77 98 96 51 6 14 121 27 380 230 50 85 9×10 > 95 95 76.5 0.81 97 95 40/26 5 16 124 26 310 170 30 50 T : 9×10 >
13
B : 9×10 >
11
130 130 100.1 0.77 98 97 51 7 17 121 27 500 290 65 118 9×10 > WKFS 340 320 220.0 0.69 97 97 − − − − − − − − − −
11
150 150 115.5 0.77 98 98 50 7 20 125 27 610 350 81 150 9×10 >
WKU 310 310 190.0 0.61 96 95 − − − − − − − − − −
11
200 200 158.0 0.79 98 99 48 9 26 125 26 990 450 129 247 9×10 >
WKJ 250 220 156.0 0.71 97 95 − − − − − − − − − −
11
250 250 200.0 0.80 98 99 46 12 33 134 26 1,430 670 196 403 9×10 >
XAD 1053 210 166.0 0.74 96 95 − − − − − − − − − −
11
300 300 252.0 0.84 98 99 46 12 40 102 28 3,320 830 301 571 9×10 >
XAD 1058 208 170.0 0.79 96 93 − − − − − − − − − −
11
FRB 110 110 88.0 0.80 98 96 53/22 4 14 91 26 360 200 48 80 9×10 >
11
WNF 135 134 101.2 0.75 96 60 17/5 9 16 51 23 6,460 5,290 44 59 9×10 >
130 130 102.7 0.79 98 97 53/22 5 16 93 24 450 230 64 111 9×10 >
11
11
12
FRR 70 70 56.7 0.82 98 90 51/21 3 9 110 31 222 124 21 34 T : 9×10 > WNFW 200 201 155.0 0.78 96 96 17/17 12 25 56 26 4,730 4,100 13 205 9×10 >
11
B : 9×10 >
11
11
FPG 60 60 47.4 0.79 96 87 16 3 9 96 23 170 90 11 23 9×10 > WMF 120 123 106.3 0.86 -/95 100 100</16 8 18 105 23 680 490 68 107 9×10 >
11
80 80 61.6 0.77 96 90 17 4 12 110 24 240 140 21 43 9×10 > WSF 110 107 70.0 0.65 96 88 10/16 4 8 80 18 830 892 13 23 9×10 >
11
11
95 95 73.2 0.77 96 92 17 5 14 114 25 290 170 31 59 9×10 > 160 159 110.0 0.65 95 94 10/17 7 16 125 21 1,650 1,670 33 72 9×10 >
11
11
110 110 84.7 0.77 96 94 17 6 16 115 26 370 200 39 77 9×10 > WCFA 125 123 104.0 0.83 88 100 16 7 19 135 33 490 270 46 89 9×10 >
11
11
130 130 100.1 0.77 96 95 17 7 18 121 26 470 250 57 110 9×10 >
195 190 150.0 0.82 91 100 18 10 25 150 26 960 500 109 210 9×10 >
11
11
150 150 115.5 0.77 96 96 17 8 21 123 25 590 310 76 142 9×10 >
XAA 1085 265 210.0 0.79 93 100 17 − − − − − − − − −
200 200 158.0 0.79 96 98 16 11 29 127 25 940 450 128 261 9×10 >
11
11
QJJ 350 350 340.0 0.97 95 97 20 − − − − *36N *41N 300< 300< 9×10 >
11
250 250 200.0 0.80 96 99 15 11 33 148 28 1,410 590 214 389 9×10 >
11
400 400 390.0 0.98 95 97 20 − − − − *44N *50N 300< 300< 9×10 >
11
300 300 234.0 0.78 96 99 15 12 36 130 26 1,760 740 283 565 9×10 >
11
500 500 492.9 0.99 95 98 19 − − − − *60N *66N 300< 300< 9×10 >
FPU 130 130 100.1 0.77 97 96 17 7 18 121 26 490 250 57 110 9×10 >
11
200 200 158.0 0.79 96 98 16 10 31 126 27 940 450 120 250 9×10 > QJJE 350 350 355 1.01 90 95 19/20 − − − − − − − − −
11
11
250 250 200.0 0.80 96 99 15 11 34 151 27 1,400 580 200 390 9×10 > RMM 400 400 396.0 0.99 90 78 13/14 − − − − 2,607 2,450 − − 9×10 >
11
11
11
YPBL 150 150 115.5 0.77 97 96 19 8 20 119 27 590 310 74 132 9×10 > RUU 400 400 396.0 0.99 90 78 13/14 − − − − 2,607 2,450 − − 9×10 >
200 200 158.0 0.79 97 98 20 10 29 128 30 980 460 126 236 9×10 > VJFP 120 120 78.0 0.65 90< 88< − − − − − 260 250 − − 9×10 >
11
11
250 250 200.0 0.80 97 99 20 10 32 147 30 1,470 590 215 368 9×10 > 170 170 117.5 0.69 90< 93< − − − − − 390 170 − − −
11
11
300 300 234.0 0.78 97 99 20 9 35 120 28 2,350 780 270 520 9×10 >
190 190 132.9 0.70 90< 94< − − − − − 440 180 − − −
11
TPRA 60 60 60.6 1.02 91 30 12 4 9 173 43 230 140 13 17 9×10 > 11
ISE 105 107 82.7 0.77 97 95 19/65 4 12 120 20 340 190 15 50 T : 9×10 >
12
B : 9×10 >
11
90 90 91.8 1.02 91 39 14 6 14 166 38 380 230 30 42 9×10 > 11
IDS 80 81 75.2 0.93 97 87 17/65 4 12 140 25 320 170 14 27 T : 9×10 >
15
BLR 150 150 153.0 1.02 92 63 14 11 27 181 33 880 480 82 132 9×10 > B : 9×10 <
11
11
100 101 92.0 0.91 97 91 17/65 5 14 140 25 440 220 23 45 T : 9×10 >
15
11
BCR 160 160 153.0 0.96 94 63 32 11 29 170 20 1,080 460 95 183 9×10 > B : 9×10 <
IHC 75 77 68.8 0.90 89 14 64/85 6 18 150 20 340 210 15 38 9×10 <
15
11
SGP 80 80 66.4 0.83 96 89 7/9 4 14 111 21 280 160 19 45 9×10 >
13
11
SGS 60 60 48.6 0.81 96 85 21/52 3 10 98 21 190 110 12 27 9×10 > UAIA 80 82 72.1 0.88 86 10 65/18 − − 350 350 660 610 9 8 9×10 >
11
11
80 80 66.4 0.83 96 89 22/50 4 14 111 21 280 160 19 45 9×10 > FGS 80 80 61.6 0.77 97 91 19 4 9 110 28 210 140 23 32 9×10 >
11
12
110 110 91.3 0.83 96 92 22/49 6 20 123 21 460 220 34 86 9×10 > LBR 80 80 66.4 0.83 97 87 54/12 4 13 130 29 250 140 17 32 9×10 >
˔ :610 $03103"5*0/ CFMJFWFT UIJT JOGPNBUJPO UP CF UIF CFTU DVSSFOUMZ BWBJMBCMF BOE UIBU JU JT TVCKFDU UP SFWJTJPO BT BEEJUJPOBM LOPXMFEHF BOE Note: Orange Peel…A minute wrinkles that appear on the surface of IML.
FYQFSJFODF BSF HBJOFE CVU DBO NBLF OP HVBSBOUFF PG SFTVMUT BOE XJMM BTTVNF OP PCMJHBUJPO PS MJBCJMJUZ JO DPOOFDUJPO XJUI UIJT JOGPSNBUJPO
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