Document v1KmjjGqJg4BBjD9NgyQNnvLE

i:11 j- [Tinnup^-hin^ `jWnyl.-LY; 'c.v ui 'OJ li (j 'o' wO C. V:- :i 'J L <L -i UJ U_ r THE NEW INDUSTRIAL INSULATION FOR ELEVATED TEMPERATURES "SSIGNED FOR GREATER EFFICIENCY AND EASIER APPLICATION HANDL ES SAWS WORKS MORE EASILY > ~-*i -*' \ /- i --\ : /"> .. , J . \ - - .'. ' ..' -`i . ^ j w . t ' i; a u ay' r~\ - .. .* u> *.' Vw <1 J w` L>' V-J /"> .-3 '-p,. '>:*; 5; j UJU * W it <r> * . ^ w'p *?*\ i<*T /r.- , . r * ^ *. > *u l - A :"' ' - :" -`-Lj v J td <fA * *%? serf ij m it t i-a y'* ;;;. :.r y ...>* f: J ~ ; ^ auil `!v * "> P7; " r*-> *:<; "j; '.:; i "-:!;:;.-.r;!-.-r-'.:'*: ;..;; IT;* ;; v_ xr i> C-y 6 J *Tr C ACT: NHW CALSILITE SAWS, HANDLES, MITRES, WORKS MORE EASILY "EASON: IT IS TOUGHER, STRONGER, SMOOTHER, MORE UNIFORM ~3ULT: RASTER, NEATER INSTALLATION, DOLLARS SAVED AKSS PUNISHMENT HANDLES EASILY APPLIES QUICKLY SAWS CLEANL' cuts easily and mitres c'eanly w-thout . c;al equipment . . . scopes quickly to cut costs even on involved in* staKat-ns. CaiS'lite is not soluble in water and is not affected by most normal acids and alkalis. It retains its shape even v/hn completely saturated and returns to normal thermal e/ c:e*-',y v.-hen dry. Calisilite has an extremely low thermal conductivity, is chemically stable, will not rot. and will rot suoport combustion. Lightweight and strong, Calsilite handles easily and takes unusual punishment without serious damage. It finishes smoothly providing a clean, neat appearance. The new sectional design cuts job time and saves money by doing away with piece-by-piece installation. Its fine texture makes it easy-to cut and fabricate without crumbling or breaking . . . reducing wasted time and materials. Com patible Puberoid cements seal joints and fittings neatly. damage allows i '* e on high moisture or high humid.ty installations. Insice or out. below or above ground. Appli cation in areas of h;gh inflarr.sbility are safe because of the fireproof qualities of Calsilite. AVAILABLE FORMS AND SIZES: Calsilite is availab'e to fit all standard pipe and tubing. Half sectional Calsilite is available for pipe up to 24" IPS, segmental Calsilite above 24" IPS, in all thicknesses up to and including 3". Calsilite Block is available up to 4" thickness in 6" anc 12' widths. SPECIFICATIONS: Calsilite Insulation meets ASTM Speci fication C-533-64T and Federal Specification HH-l-005233 (GSA-FSS) for Block and Pipe Covering. Calsilite Pipe Covering meets Specification MIL-I-2781-D d-*ed June 13, 1963. Calsilite Block meets Specification Mil-J-28190 dated August 9. 1963. FULL. SIZE RANGE NEAT APPEARANCE I,,*> - L ' .. ri* V - - W*J ww vJ . - s. w/ W*^2 t W . s*. c - frcperty v-mal Condvct;ity / V*** Temp. "-Vs?. ft/inch/hr./'F.) -r.sity (Average) -rural Strength (Average' existence to Abrasion (less in weight--mas.) under Soaking Heat ?.oa of weight) -ear Shrinkage -maressive Strength (After immersion In water for 18 hours, while wet) 200*F 0.3S 300*F 0.40 400*F 500*F 0.45 0.50 Yaio* 600*F 0.55 12.5 lb*. / eu. ft 100 lbs./so. In. After 10 min.--10%; after 20 min.--20% 24 hrs. 1200*F.--7.5%; 6 hrs. 1C00T--7.0% 24 hrs. 1200*F.--1.5%; 6 hrs. 1000'F--4.8% 120 ps! to produce 5% deformation * *Y & : * ' * 'Xjj'-x-i .* ' 4 / , r-inal -e Site, -ehes 4- - :.? -. - : :;r* PIP E / UTILITY--STEAM GENERATION i i IV? IV? IV? 2 2V? 2V? 2V? 3 i i IV? IV? IV? 2 2V? 2V? 2V? 3 l i IV? :v? 2 2 2V? 2V? 3 3 3V? l IV? IV? 2 2 2V? 2V? 3 3 3V? IV? IV? 2 2 2V? 3 3 3 3V? 4 *.v? 2 2 2Vs 3 3 3V? 3V? 4 l\. ;v? 2 2 2V? 3 3 3V? 3V? 4 IV? IV? 2 2V? 2V? 3 3V? 3V? 4 4 IV? 2 2 2V? 2V? 3 3V? 3V? 3V? 4 IV? IV- 2 IV? IV? *> 2 2 2 2V? 2V? 3 . 3V? 3V? 4 2 2V? 2V? 3V? 3V? 4 4 2V? 2V? 3 3V? 3 V? 4 4 4 4V? 5 IV? 2 IV? IV? 2 IV? IV? 2 2V? 3 2V? 3` 2V? 3 3 3 3 3V? 4 3V? 4 3V? 4 4 4 4 5 4V? 5 4V? 5 :v? IV? 2 2V? 3 3 4 4 <v? 4V? 5 PIPE / PROCESS 1 1 1 1 l i 1 1 1 1 1 1 1 IV? IV? IV? IV? IV? IJVV?j 1 1 1 1 l i 1 1 1 1 1 IV? IV? IV? IV? IV? IV? IV? 2 2 1 1 1 1 1 1 1 1 i i l l 1 1 1 1 IV? IV? IV? 2 IV? IV? IV? 2 :v? IV? IV? 2 IV? . IV? IV? 2 2 2 2 2 2 2 *> :v* 1 1 l IV? IV? IV? 2 2 ZV? IV? IV? IV? IV? IV? IV? 2 2 2V? 2Vt IV? IV? IV? IV? IV? 2 2 2V? 2V? 2 Vs IV? IV? IV? IV? IV? 2 IV? IV? IV? IV? 2 2 2 2V? 2V? 2V? 2V? 2V? 2V? 3 IV? IV? IV? IV? 2 2 2V? 2V? 2V? 3 IV? IV? IV? IV? 2 2 2V? 2V? 2V? 3 IV? :v? IV? IV? 2 2 2V? 2V? - . .. ... V - T * *. FIFE sirs -- v?- % 1- iy- tv?- 2- 2V?- 3- 3V?" 4- 4V?- 5- 6* 7- - 9- to- 11- 12- 14- 18- 16- 17- 18- 19- 20- 21- 22- ?; . . . . " . Sections per Ctn. At. Cress Wgt. per eta. (lbs.) Sections per Cta. At. Cmss WflperCta-piU Sections per Ctn. AT. Cross W-t. per Cts. (IbsJ Sections per Ctn. *t. Cross Wgt. per Ctn. (lbs.) Sections per Ctn. Vets r:f-pte Ctn. (lbs.) lumber 45 100 201 21 90 201 1$ 105 707 9 100 202 S 120 203 45 25 95 75 701 21? 21 18 85 80 701 701 16 IS 105. US TO? 771 99 100 100 ?fff 70? S8 225 215 203 203 25 70 222 16 95 702 15 120 ??t S 95 7(1? 8 no 203 21 70 201 16 90 707 9 95 207 8 no 703 6 105 204 18 70 201 lb 100 221 9 85 202 8 105 203 6 200 204 16 70 202 80 202 8 100 203 6 109 704 4 85 205 15 70 221 4 70 202 8 90 203 6 90 704 4 80 205 9 85 202 ts 203 6 85 204 4 80 70S 4 9S :c6 9 55 202 8 75 203 8 80 204 4 75 205 4 90 296 8 65 203 4 75 294 4 70 205 4 85 706 2 55 207 8 55 203 0 55 204 4 60 205 4 80 206 2 55 207 6 45 204 4 4$ 20s 4 70 206 2 50 207 2 60 208 4 55 206 2 40 207 2 SO 208 2 65 209 2 35 207 2 45 208 2 60 209 2 70 210 I Z " I I _ _ __ _ 122*1 35 40 45 45 25 238 209 210 203 211 2 22 1 1 SO 50 55 30 30 209 210 203 211 212 1 25 212 * 25 213 1 30 205 1 30 202 -- -- -- -- 1 35 213 * 3S 205 * 35 202 1 40 206 till 40 40 45 4S 214 215 216 217 - 2 60 210 2 +/75V 2 65 203 1 40 211 1 35 211 1 45 212 11 40 40 212 213 11 50 50 213 795 1 40 205 SO 202 1 45 202 1 55 205 1 SO 206 1 55 214 1 50 214 1 60 215 1111 SO 55 55 55 215 215 217 218 1 l11 60 65 65 70 216 217 218 219 > C9CJ Sir OF CA3T0NS 221000?12------221273VVV??*-** sXs 211224VV* ?i-" t.11O..00... 723M3----3227-- *s 1IS6*" mt.oO.. 22722C05000S>S7----------22Z2236204V*VV-?*--- xXxXx 12l21'2V023"VV'4*--' 11111.....00000..... 222221111143012----------231:1s3087vVVVV*?***'---txtxx 21:ii?ss27vvVvV**----' f111..O..000.... 222222121111C15697------------2222r2e58457VVVVVv*..i**---''-xxxxsx 222221?8557VVVVVV***..*----' 11t111......o00000...... .`vi ei'm-naimg scofc**3 or t * ,acets. The C3"::'.<::in a . - -;:ti ** sotfASiai fire naiard ef woe ace'.s *.o te'-cr*a!j'es at ?* ;C'r*$ 20'.'5i*'ijy?r, staggered ;Oin: c. .'uct'or* aiso mi-wi*s ;--si'esses m nsuiation Sy reducmi tne temperature diherential acres* ac-1 ayer. `tabulates thicknesses are efimum tn-cknesses ea'cuiated o'* 3" eeo-omic If re* How to Determine Economic Thickness of msuiation"--Vjvena* insvia: c* Manufacturers Association! oasis for heat conservation v-der average oe'a:*"t conditions and assure adeouate temperature control. Other conditions may war rant the use of other thicknesses. V* t.34 2.75 4.42 7.83 Va \27 2.66 4.33 7.76 1 1.27 130 13? 7.S4 1V IV* 1.57 2.18 4.02 3.8S S.ll 4.93 7.46 10.1 Nominal Pipe Size, Inehes 2 2V* 3 3Y* 4 4% 5 6 7 8 9 10 11 12 14 15 16 t7 1? 2.53 2.99 3.35 5.02 4.24 6.14 5.C6 5.48 -- -- -- -- -- -- -- -- -- - 214.S6 6.43 5.70 7.85 7.08 8.91 7.83 8.78 103 113 123 143 15.4 163 17.0 18.0 18.9 19.7 6.91 936 8.S3 10.6 29.90 12.3 113 13.0 143 15.6 18.5 19.6 21.1 22.9 233 24.7 25.9 27.7 i: 9.71 12.1 113 13.8 13.2 16.3 1S.4 17.0 18.7 21.8 23.7 25.1 27.5 293 29.9 31.7 343 35.4 10.5 15.4 iO.2 10.1 13.0 12.6 15.4 14.5 18.1 17.4 20.4 19.3 21.4 24.8 27.1 29.2 31.5 33.7 35.9 36.9 39.6 41.8 <3.5 / COMVS RCSAL-----YHAR or=RAT!ON i *' 2 2Vi 2V* 2 2V* 3 2V: 3 3 2 2V* 3 3V* 2 2V* 3 3V4 2Vi y 3Vi 2V* % 3VT * 2V* 3 3V* * 2 3 3 nifc 4 :*-* 4 23 a 2V* 3 2V* 4 TV* 3 2VO .4 42% 3 2 Vi 4 ?'->l 3% 4V* 2V* 3Vi 4 4V* * * PIP = / commerciaC * SEASONAL OPSRATl ON 1l IV* IV* 2 1l IV* 2 2 1 IV* IV* 2 2V* 1 IV* 2 2 2V* 1 IV* 2 2 2V* 1 IV* 2 2 2V* : IV* 2 2 2V* 1 IV* 2 2 2V* iiv* IV* IV* 2 2 2V* 3 2 V* 3 IV* IV* 2 2V* 3 iv*IVl IV* 2 2V* 3 2 2V* 3 3Vt IV* 2 2 Vi 3 3V* 1V* 2 2V* 3 3V* IV* 2 2Vi 3 3V* . - -' ' * ' v>>- :v BLOCK 1 \ . ... IV* IV* 2 2V* 3 3 3V* 4 4 4V* <-- IV* 2V* IV* IV* m 2 2 2 21* 2V* 3 Commercial--Pull Year Operation IV* 2V* 3Vi 4 4V* -- -- -- -- -- -- Commercial--Seasonal Operation 1 1 IV* 2 2V* -- -- -- -- -- -- - "* * \ **'. ** r' > ' . ` * .. ' - % * * S . pipe sire -* 12- 14* IS* 18* 17* 18* 19- 20* 21* 22* 23* 24* 25* 26* 27* 28* 29* 30* 31* 32* 33* 34- 35* 36* 38* 40- 42* 44* 46* 4! Secmsnl* per Sertton 9 9 10 19 12 11 12 13 13 14 14 15 IS 16 16 17 17 18 18 19 19 20 20 21 22 23 24 25 26 2? - V Aetcsl 0.5. of Covering 16* 17* 28* 19* 20* 21* 22* 23* 24* 23* 26* 27* 28* 29* 30* 31* 32* 33* 34* 35* 36* 37* 38* 39* 41- 43* 45* 47* 49* Si Segments per Settles 9 10 20 11 22 12 13 13 14 14 IS 15 16 16 17 17 18 IS 19 19 20 20 21 21 22 24 25 26 27 St " Actual 0.0. of Severing 17* 18* 19* 20* 21* 22* 23* 24* 25* 26* 27* 28* 29* 30* 31* 32* 33* 34* 35* 36* 37* 38* 39* 40* 42* 44* 46* 45* SO* ST' Segments per C'.ctiea 10 19 11 11 12 ' 13 13 14 14 IS 15 16 16 17 17 18 18 19 19 20 20 21 21 22 23 24 25 26 27 2i V Astral CJS. ef Cseerirt 18* 19* 20* 21* 22* 23* 24* 25* 25* 27* 28* 29* 30* 31* 32* 33* 34* 35* 38* 37- 38* 39* 40* 41- 43* 45* 47* 49* 51* :* Segments per Scsliaa 10 11 11 12 13 13 14 14 IS IS 16 16 17 17 18 18 19 19 20 20 21 21 22 22 24 25 26 27 26 2? * Aetoal 0.0. sf Covering 19* 20* 21* 22* 23* 24* 25* 2S* 27* 28* 29* 30* 31* 32* 33* 34* 35* 36* 37* 38* 39* 40* 41* 42* 44* 46* 48* 50* 52* Sc Vi- %* 1* 1V* IVy* 2* 2V** 3* 4- 72 60 54 42 36 27 21 18 13.5 <5 40 36 28 24 18 14 12 9 Cross Wei*nt cf Carbon--S3 tbs. Alt BlocIs are packaged In No. 102 Cartons. OffiYEO BLOCKS -- SEGMENTS " di 2< pet ctn. / 2* thick 18 per ctn. / 2V*- thick :< see ctn. / 3- thick 12 per ctn. A" S*;-wflts are packaged In No. 1C2 Cartons pipe sizr Section -er eta. A. Cron Wft. per Ctn. (tbs.) Ctn. XcTiter v*- Vi- Vi- VC- 1- IVa* IV** 2* 2V*- 3- 3V** <* 45 45 45 45 25 25 25 21 IS 16 IS 5 75 74 71 68 60 S7 S3 70 70 70 70 ! 201 201 201 201 212 212 212 201 201 202 221 rr It l iesty / S'--' J" V, u Srf u `.o W - * c*. Th<cv.ness / HI--Heat '37U/lin. tt./Jir.. ambient st:,t afr at 80*H f --f-scfaifon ! Temperature (for eamrr.on ;urface finishes havinj an crissivity of approximately 0.30) 'tvr - :o? f 450 t 600 r SCO r 1000'f 122 9*F . y,zr. * ( HI E ST T HI t ST T HI E ST T HI E ST T HI ST T HI ST . 1 15.7 77.6 95 1 47.9 82.5 120 1 87.5 85.0 146 1 135 88.7 173 IV* 159 92.2 162 IV* 211 2 < is: v* | !*? 13.4 80.9 89 1* 40.5 85.2 105 IV* 73.9 88.2 123 2 97.1 91.8 125 2V* 119 94.2 122 2V* 157 95.2 133 2 11.5 83.5 87 2 34.9 87.3 98 2 V* 5S.5 91.2 101 2V* 84,9 92.9 111 3 112 94.5 115 3 148 9S.S 125 , 3l 19.0 77.7 98 1 S8.0 82.3 127 1 108 85.2 258 l 264 88.8 139 m 179 92.9 170 IV* 238 94.1 v IV* 15.1 82.3 91 IV* 45.7 86.5 109 IV* 83.2 89.2 128 2 111 92.4 131 2V* 133 94.7 127 2V* 176 9S.7 1?9 , 1 13.2 84.5 88 2 39.9 88.2 101 2V* 62.2 91.9 104 2V* 9S.2 93.5 US 3 125 95.1 119 3 155 95.9 120 j1 19.8 81.1 95 1 60.4 85.5 121 1 111 83.4 148 1 170 90.7 176 IV* 19S 93.8 168 IV* 2sa 54.9 158 ` 1 IV* 16.4 84.4 90 IV* 49.7 88.0 108 IV* 90.4 90.5 127 2 120 93.4 130 2V* 152 95.2 132 7V* 201 6.3 KS < \ 4. 14.2 86.S 88 2 <3.1 89.6 100 2V* 70.5 92.5 107 2V* 108 94.1 119 3 140 95.5 123 3 186 $5.3 135 1 \ . 25.5 80.4 99 1 78.1 84.9 132 1 144 88.0 165 1 222 90.3 197 IV* 218 94.5 169 IV* 2S0 95.* i w .* tv* Ii* 38.4 85.9 91 m 55.$ 39.2 108 IV* 102 91.5 127 2 143 93.7 138 2V* 177 9S.S 139 2V* 234 96J 155 i f 1; IS.9 87.1 26.0 82.3 39 98 2 1 51.3 90.1 104 79.4 86.4 127 2V* 82.3 93.1 111 1 146 89.3 157 2V* 125 1 224 4.5 125 91.4 187 3 162 95.9 129 IV* 248 54.5 178 3 21< 96.3 IV, 329 55.3 6,. IV* 20.8 85.9 92 IV* 63.1 85.2 112 IV* 115 91.5 133 2 140 94.6 129 2V* 177 96.1 133 2V* 234 95.* 147 *. IS 4 88.R 37 7 <0.1 9' 4 100 ** 52 4 9 0 ]07 TV* 177 95.2 170 3 163 96.4 124 3 225 97 1 :3f . : 29.9 83.4 98 1 91-3 87.3 127 1 167 90.0 1S8 IV* 1S8 93.8 155 IV* 278 95.0 178 2 311 95.5 173 2 :v* 23.3 87.1 92 IV* 70.8 $0.2 112 IV* 129 92.3 133 2 168 94.8 137 2V* 208 96.3 140 3 251 97.2 :<3 - 19.8 89.1 89 2 60.0 91.7 103 3 88.3 94.7 106 2V* 149 95.4 125 3 190 96.6 130 3V* 232 97.4 1J4 tA 34.4 84.1 98 1 10S 37.8 129 1 193 90.4 160 IV* 205 94.7 147 IV* 257 95.7 168 2 329 sr.o 167 ry :v* 24.2 88.8 90 IV* 7345 91.5 108 2 116 94.2 117 2V* 159 95.9 123 2V* 222 96.7 137 3V* 2<7 $7.? 132 ; 21.9 90.3 88 2V, 57.0 93.4 98 3 94.7 95.3 105 3 J4S 96.2 116 3 203 97.0 129 4 232 97.9 125 : 43.7 84.2 99 1 125 88.0 131 1 229 90.5 264 IV, 264 94.3 162 IV* 371 95.4 186 2 <C9 95.9 182 a IV* 31.0 88.0 93 IV* 94.2 90.9 115 2 144 94.1 224 2V* 192 9S.9 131 3 242 97.0 136 3V* 290 97.8 129 25,9 89.9 90 2V* 68.9 93.3 101 3V* 103 95.8 104 3V* 157 95.6 US 4 204 97.5 121 4V* 2S3 98.1 125 38.4 86.8 96 1 118 90.0 122 IV* 172 93.7 131 264 95.0 153 2 314 96.6 156 2V* 362 S7.5 159 3% IV* 31.0 89.4 91 IV* 94.1 92.0 in 2 147 94.7 120 2 224 9S.8 138 3 248 97.3 132 4 282 Ml 130 2 25.5 90.9 89 2 80.3 53.1 104 2V* 129 95.3 123 3 177 95.7 119 3V* 228 97.5 125 5 261 9SJ 124 1 48.8 85.0 99 1 150 83.6 132 IV* 2C8 93.2 140 IV* 319 94.6 US 2 369 96.4 167 2V* <22 97-5 16S 4 41* S t 7 1 ( 4 i i1 10 i 13 14 ; IS | 1 is 30 34 ;v* 2 :v* 2 :vi . * :v* `*2 :;* 2 2V, IV* 2 2V* IV* 2 2V, :v* 2 2V 2 2V, IV* 2 :v* IV* 2 2Vt IV* 2 tv* IV* 2 ?V* 1 ;v* ;2 37.4 88.5 31.9 99.5 45.8 87.3 36.6 89.8 31.0 91.4 \3 8S.0 44.7 88.7 36.5 90.8 70.4 84.9 52.2 88.8 <1.4 91.1 36.9 89.3 4G.3 $1.3 39.5 92.6 63.2 89.4 51.2 91.4 42.1 97,9 69.4 S9.S 53.6 91.9 45.9 93.0 74.0 89.9 60.0 91J 51.0 93.0 87J 894 70.3 91.S 59.3 93.1 1C2 9.2 80.1 91.4 66.8 97.9 IIS 894! 90.1 91.5 74.9 97,9 128 89.3 101 911 83.1 93.0 141 89.3 111 91.6 91.2 93.0 167 894 131 91.S ??*1 94 90 96 92 89 100 94 91 101 95 1 94 91 89 95 91 M 95 91 89 94 n n 95 92 90 96 92 90 96 93 90 ss 93 90 96 93 90 97 93 1 IV* 2 1 IV* 2V* 1 IV* 2V, 1 2 3 IV* 2 3 IV* 2 3 IV* 2 3 IV* 2 3 IV* 2 3V* IV* 2 3V* IV* 2 3V* IV* 2 3V* IV* 2 3V, IV* 2 rv 114 94.0 140 112 81.3 182 136 *1 ? 216 126 95.2 174 141 103 193 156 113 212 163 123 226 183 136 266 214 140 310 244 155 350 274 173 389 305 191 429 335 209 509 395 2<S 91J 92.8 93.3 92.3 94.4 88.6 91.5 94.1 88.5 93.3 SO 91.9 93.5 95.2 92.1 93.5 95 3 92.1 93.9 95.4 92.4 93.9 95.4 92.4 93.9 60 91.9 93.6 95.9 91.9 93.7 5.0 92.0 93.7 95.1 S2.0 93.7 96.1 92.0 93.3 95.2 116 107 123 112 100 134 118 102 136 109 100 119 110 99 119 110 100 120 109 100 119 110 101 120 m $8 123 113 9 123 114 ICO 124 114 100 124 IK ICO 124 114 fS* 2 172 3V* 129 IV* 203 2 171 2V, 123 IV* 249 2V* 171 3V* 138 IV* 291 2V* 296 4 141 IV* 317 2V* 229 4 1S5 IV* 352 24* 232 4 159 IV* 337 2V* 253 4 183 2 333 3 247 4 201 2 339 3 235 4V* 210 2 444 3 329 4V* 232 2 500 3 357 44* 253 2 556 3 394 4V* 284 2 521 3 <32 4 V* 329 2 722 3 see fVi 94.4 126 98.1 105 94.0 133 95.0 122 96.4 10< 93.4 143 95.S 118 96.3 107 93.4 14$ 95.6 120 96.8 104 93.8 144 95.7 *121 97.0 104 93.4 145 95.9 120 97.1 10S 93.9 145 95.0 120 7.1 105 9S.3 131 $6.5 US 97.1 107 95.3 132 96.6 .116 97.5 104 95.2 235 96.5 118 97.5 ICS 95.2 136 96.5 119 97.5 2 OS 95.2 136 95.6 119 97.6 106 95.2 137 95.6 120 97.5 107 95.3 137 96.7 120 rr.s 107 2V* 3 IV* 2V* 3 IV* 2V* 3 2 2V* 3 2 2V* 3 2 3 3V* 2 3 3V* 2V* 3 3V* 2V* 3 3V* 2V* 3V* < 2V* 3V* 4 2V* 3V* 4 2V* 3V* 4 2V* 3V* 227 2C3 311 227 205 382 252 233 352 301 255 394 335 286 435 314 253 455 341 307 432 378 ' 338 503 437 389 566 431 388 636 482 433 70S 532 477 774 582 521 912 682 509 95.2 95.6 SS.3 96.6 95.9 94.8 96.4 96.8 95.9 96.5 95.9 96.0 96.6 97.1 96.1 97.2 97.5 S6.3 97.2 97.S 96.9 97.3 97.6 96.9 97.3 97.6 S6.8 97.6 97.8 96.9 97.6 97.9 96.9 97.7 97.9 96.9 97.7 97.9 97.0 97.7 CS.O 133 124 156 129 221 169 13S 125 150 137 128 151 138 127 1S2 128 122 149 129 122 140 131 124 141 132 125 !<S 126 122 US 128 123 146 129 123 147 129 124 146 130 124 3 3V* 2 3 3V* 2 3V* 4 2V* 3V* 4 2V* 3Vj 4 2V* 3V* 4 2V* 3V* 4 2V* 3V* 4 2V* 4 4V* 3 4 4V* 3 4 4V* 3 4 4V* 3 4 4V* 3 4 4V* 280 97.3 256 97.5 368 96.8 286 97.5 252 97.7 436 96.6 29S 97.7 257 97.9 <21 *97.2 327 97.8 301 98.0 469 974 361 97.9 331 98.1 498 97.4 395 98.0 361 98.1 544 97.5 429 98.0 392 98.2 606 974 473 98.0 430 98.2 704 97.5 493 98.3 450 8.4 684 97.8 544 98.3 496 98.4 765 97.8 606 98.3 552 98.5 847 97.9 668 98.3 607 98.5 928 97.9 729 98.4 662 99.5 1091 97.9 853 9S.4 772 SC.5 138 139 159 135 128 170 132 124 155 133 126 157 134 128 1S5 135 129 1S6 136 230 159 138 131 161 133 127 152 135 130 153 136 130 154 137 131 155 138 132 156 139 133 4 4V* 2V* 4 s 2V* 4 s 2V4 4 5 2V* 4 5 3 4V, 5 3 4V, S 3V* 4V* s 3V* 4V* 5 3V* 4V* 5 3V* 4V* 5 3V* 4V* s 3 V, 4V* 5 3V, 4V* 5 313 288 420 317 298 485 353 310 556 398 344 622 438 380 582 443 413 633 478 446 626 524 487 721 595 552 80C 657 606 893 731 673 986 804 739 877 805 1265 1023 937 98.1 98.3 97.7 5!3 984 97.5 98-3 58.5 97.7 58.4 58 6 97.8 93.4 98.2 58.6 9S.7 952 S3.6 98.7 S8.4 58.7 58.8 $8.6 98.7 98.8 98-4 $8.7 98.8 $3.5 98.7 9S.8 S3.5 91.8 $8.9 93.6 53.9 98.5 93.* $8.9 13S 127 :6; 131 126 170 135 125 173 139 127 175 140 129 160 135 130 161 135 :?i 153 338 132 156 140 134 159 142 136 160 144 138 t Si a 13S *62 145 139 16-*1*7 140 r> / . i i. ; ! I ! !* ` I',4 *!:1 _ / a.i li W <i/ I I I Saitw W u2J^/ lia % m 10! - . - WU.' -/ few WtJUJ ::--\r. / i/V' :"!;!!!U w wa%> U * w m$m ml ir LzZLZ&xs"-~l TjiiS il ^d /NA 100 is a t~--ly unique insulation jacketing. !t is fireproof, flexible, and offers -caraUeled resistance to outdoor weathering. It is remarkably easy to apply and C !>-p-'r I'-pS? -ovides significant savings in installation costs. It never requires painting or mother-proofing. '/NA 100 combines asbestos fibre, an inorganic material of established durability nd flame resistance, with TedJar, a new PVF film of unique characteristics devel- red in the laboratories of Du Pont. The asbestos fibre is formed into a tough asbestos m't, using an elastomeric binder. "Tediar" is permanently laminated to the asbestos felt :th an elastomeric adhesive. material; .v. v>. 'rugh and flexible over wide temperature range (--50* F to over 200* F). f SPECIFICATIONS: i'- ... "'omo-reslstant with flame spread rating of 25 by Underwriter's Laboratories, Width of RoIfLuw:: *'735.5 :n. '`mether-resistant . . . will not chalk, craze, erode or corrode on exposure. { Length7..:**..*;; .' .-.li65.7 iin. ft jl'-Area (Gross)-.;. .. .\-5C0.0sq. ft. '!*sm:cal and solvent resistant, retaining form and strength even when boiled in strong rds and bases. Unaffected at ordinary temperatures by many classes of common j-* Approx. Shipping Weight', 60.0 lbs. m'vent; impermeable to greases and oils; unaffected by soii bacteria. f. Note:- Butt'Strap. Slock available in, ro.'Js, 7.4 inches wide x 166.7 lineal feet. ~ resigned for multi-purpose use over large areas as well as narrow-diameter pipelines. ? ' esistant to puncture and abrasion . . . designed to take wear and tear, 'csy to repair by patching with T/NA 100 Finishing Tape. 7 right white surface . . . attractive, highly reflective. Special sizes and shapes available on regard- Ou Pont'* Rcjiiieretf Trademark -HE MOST EFFECTIVE INSULATION CONTROL FOR SOAKING HEA 7S ' ALL MAJOR CHEMICAL, POWER AND PROCESS ING INDUSTRI ES tt !