ML20204G904
| ML20204G904 | |
| Person / Time | |
|---|---|
| Site: | 07109183 |
| Issue date: | 10/10/1988 |
| From: | NAC INTERNATIONAL INC. (FORMERLY NUCLEAR ASSURANCE |
| To: | |
| Shared Package | |
| ML20204G908 | List: |
| References | |
| NUDOCS 8810240257 | |
| Download: ML20204G904 (74) | |
Text
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- 7~
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e I I ne/ A&remexi' Bsjeet casw sapoAr - Awo.t sa. .EE. DETAILED ANALYSIS 1 t i ~
i%/ Aforemest A%.kct esex sa ns>ts -N/c.x cssx D e.s / a n doods (DHinf r"uin' sis Er /* filris % ssi oir 7 ~ f* 4 && \\ / a c'"* \\ W \\ = = : = //4.f' = Wa = r.e, coa /ss. cdsse Deeiyri WeiyA/.) O'orip/fadha/ 2)/rsefion) (/f)e,= crsio co.) c.r. o.) = aA 000 as. (&d oe afio ( R ), = (a 4 (4'),_ = a, voo 4.r. i (Ye Pfl Cal DI PSc. tion ) (0)c. = (42,000.) (7. C.)
- Mf ddd /Ar.
Up4)ord ar bria/syd. (8)u = #h(8)e (,Y;,,',). = 2/544!Mr. $/'[p'l,#fy'#N ( s e= m.(ll ;) - e,u r a<. < w,,.d - e de ('E lderd' or Mord (R)n = (ar.)('/% (/do r) =.es,n/ us. 9^ f P on ErcA && Suppor4) (l.4/e/a/,d//schla/>,) ( &.)e,= fr2,oco)(.r.o) = a f coo a r. c.'7a e/iffer </A.) %)ey =- (b)e. (il;.,) = r4 sn /k. OwefedJyerd/a Mea % @)n = c'&.)e(ff,f, . n,<<sa. en osa rna,s a shacta 1 ) o f % d.) ~/x ~
N$ $V$$l$$ f$ $$ cosx Sqpserk -#sce dsr.e hSV Support Assv (L'/h'nj 5en.4/ser.) -/r swap Leads (Verto'C.AI.) (B)gr = 4 449 /ds. /dpward' GE,is/w /o shap). (LafeYal) The ss.rx 's ams4w n r,# seer /Jia e J A4< crsue /r renwad dl ,&ie.&/ww n /.Ji a oppos/i'e.c'de. W x mar = 44.oW = f i Ad. A. (Put)<y = s 4 nr /ss. (8f)tt = A,'[(Pu+)ey =.s97/7/Js. Ntml)Lt Votel)Q ~ (NQ Wuthgi = f/> 4/d /Ar. l $fty
- A*5 fi%/
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- onaA/e. Shenes (404/-74 Aaawww Af'.)
y .sf =,cy = 35.ew' (ke iMal.) S $ = S = ao Asi (NH) y cate.as/ed she.<.1e (Au/c. L s y $ < c k.) S, = EI~ = ix 74 / Ari M S. = h-> = + x rr a se (dbned fe s'm $ecll*n) g,= N m'd*l0/ro) /f,:us/vt y2,= )a+-Age c w - e u n,> c - w a. u.,> ,5 + = #* = /v"sw MS. = !b?#-l=_1-d M g 4 --- - - - - - - - - - = + - - - -
LeWs/svi L /s/so/oe Me/ 44vemed Pmee/ cosx Susart.c - # Arc r asx /// Gsks/ fxry. db'/A% %m'on)
- 1.,634 We /d, -/rShuo +1/b -/7. des sed -/9 Ge,rseAr f
Load i@rsy = ts; sos /J.c. CM Paya is) We/d i reserA.'es (-/r ~sY/v//s -/f Guarde) % fifef 4/sWa' /.ffrp//ef 4.r,v. A=4.1rik. 4 = 9'n')(z.)= M o,k. .f'= (wrX,s.o)(s.7sz> - 4 1n / =4/.:r;k. L = WH.)t'i) = /h.si.r.
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(-M'St>wp 74 -/7:dej.) $/z Vee 4r**ys.. d= ark. 4 =.s..roin. 4"= (s.r)Cz.sa) = A,tre.c As = #,' + #.1% #l' = 4..fo 4. t-A/AdeAla 3hess (69T4 Weld R//el ~M/*/ //roitwa J/4y) Ss' = Arry f = (p.cr.r)(/.e.) = 4.@xsd y Aakala A d' usw.rs & = 0'*' =yyfsyyt M,8 = S. -I = + o. g.C J.c me
feriWor? A n /u/rr' Fi/e/ Mou w u/ Pn'dect pas x 3a pports - NKc-L dssx j
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r - /7.lue (Plafe.b /' Lca d i@,vwp = 2.11ses /4s-6fa A /"sy e. M.) P/a/e Pns ar.b'e.s \\ h
- 0. Aff/na 4l, = f ffo'n.
b=250o'n. b= A5 $*0*f'!/ 4 Eef. He. 6 /1r e.u r,dasa. f.;c. y /dssJ/s 3fress (404/~74 Jae; ora kMoA/) s's = Sy = 3r w As/nhArd' Shess
- S = # O "" = sz 1/4 ssi hf.2. = 5
--I = + 0. 0 6 t 3 t 53 O
A e n & a n./ to/n/rr fusi M ov e m em h Preise.+ ~ M k. S u o vo yfs - y A c-L c.s.s g 3 olts _%v n a son A+huhmemf L ut Pg, 25, sa s la, ( Pe e IaD = 3 h Psbst k \\ i I I I i{ i I I i 2..l._-_.__.I'__ \\ I e r' 0,3,tv %, j j l.q-3 ll4 . _ 7.2 3 _ lel 9 _ f i P ett S S, nlum as o,q & ( 3 s xsi) e 34,3 'AS I cLi LOO T q -/Y-
Ad'V/W$fW $ /0//s/ff Fasl Movemenf Praisd . cssk Supo*YfS - Mhe -1 Co.sk. 4ldulAhr P,,i t : 3 9,1 9 0 4 C- '2, Is# %v 3A 3 0 0 c+1 3 I
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f o l k, 5 i C.(4-y) .l 2, 't 9 C 3, 34 3 43,0 0 0 cL - 4%,4751 (1)
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i 0 o.443, Po oi 4 = 4 3,1. 9 5 4 i Sol 4 p re y cv ' ries ( l - Suuc3 A w = o,0 0(o l i Paolt 3= r,3.7 4 g io s.,z7o eu h se l. C. fe C(e j A 0 o w a 'olt G bd4 (6AkJ419e.,,6v. ca.rboa5,Icci) f i 53 = 130K4' c M. t,- d -t
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- d'T47 A S: 0,7 5 y 1.75
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feris>'m .l 'obo/rt E v & I M o v b x c 61 "" r s ] 4. e h S1)h h ffork - N 4 (,,, '. Alf t, Use % icker f ah l r s u.3 v.ss a 3 9 0' > y / Lv M t /, < G 60 0 % z - 2. 6 6 i n bf3 t,a.3g,u,tod Alo. Osc Alf. # A-t h)h 1. Add ysin fora,s m e d bloc V~ N i i I f-x\\s I _L_._. _.___ u ha 1 l -/14 -
a e p. /0//o/ ff i r., a mov.~ wt 6 ;,.d N l * ^s. 1', O.% k huff 9Y ~ Fe y % baa 45 S a f d d N ac b 58***a d.ptou d load pra pdi~l le r ( 0 );f ww m u en & as h e.. t ivy i, s 79 w h 1 ik 4 .S15 15, to b S l4 9 4 lb P 5 . s1s,. z.5 M ^ ?,5, hC M a 13,4l4 lb l E ~ 5-S 3 a,9 5 a 7, t.4, % f d- (2.29) : 95,S W M + S 4 Y Y
- bh,
S fh# l g 4ht' ^ , hy l. A S S < "I ~ e t 1 4 4 i > 1. ". 5
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M i e G < r L s !s ?.1,490 psl 5 i gi .s I. n% v 0.41 b I I43 k,% b th ,ky L 7.. b \\ 4 b e e ' 15,% C& #1 15 S 9 % %c ik,1b JA> s l L t15 a..!,3 5a 1 (2 < 556bo I I. I 7 'l 4 i ~~~ i.k%$<t.5,C' bt hs e.,lv d e. Wc 9 v % e f p i d e, N c,k.at,% es i 9 95 bO l 's 5' Th (l. c H 4 c.702 5S 3->C pl 5 6 '54,%O 0 + d. 4 0 -t s M A. = .4 no i 4 -Me-
$dV/ d/M so/so/rV i cal Mon wust Iv e;< 'T cu k. Su p ne v 4 - M A 6 + ,\\$4 Suppov4 fr %3 ( '. f E * *j "v v "* '0 6 ) -17. Lud P ! Afe-V I P s eHs 65,145 lb 5 P1te, $ h t. O ', ". c). 1, p.21G,CMd M3
- c. s 3.90 tw bs150 iw A/b w 13 a.
0. '2 11 g - 1/ s) ? B3 1/0, 3 5 s 1 4 % 1 tw l 1 W~ 's [(w Q iog *v. + t jk w l h m a., 3 = s E t i f 3- ?3,149 l .Ti a.vs d "(3.?3+ d}og h t.5 4 1 - C..ll v,3.53 ' l t 0o5 ) i h 2
- i y,%,
% 300
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l ~\\ ill A % l a i f i 1 d 4 1 ~/f
AdVI'5/#71 $ &g/ /Woyemww/ $Atcl*_ cas,e sussor1 -Moc -1 de'x /// $4cszst/ ACrv lh'/bhd hm'sM) it/7 f
- 24 we/d. -// s/>.an //8A -r s/A a -rsod v
f 4osd Ai? = (&k>2;,.= r/,4./4 Ar. (He A pp a /s) We/d Akser&cs WSNe' r i4 -//.sbp. ) %"A?V/s/ h,4' ride r .J= o.spr.s. 4 = cz)(.r. s ir+ s..rr.) =.ctr.r/n. N = t'.reXs.rr.rXsser.r.) = Ar4,*.' a n (~ ?' Esd.*.,1d 4. o 'Gma f.r A -#.rAwp.) &fst/ dei /d 4tWA/Zs.ra L = /r:ir /.r:J7t+.r: r rs' =.24.0 /,,,. ^
- a= (t6.o)(o..rrr + 0..rrrx a po r) = /4. 4/ 41.
- A3 = A ' + A " = //. zo Jr.
- AfowoA/s
- f. h e r.s (4*Jfd k/e/dA?/<> -McA/JAa/nm f/4a )
Sj = $. fry 5p~ = 9.s trX/2)= 4.'7A sos' ds/ca4 /ed' f//sxt s =
- "' =.ters M W.S = ?o],-/ = + /. H e
ar I 1 i -/f-
24)//s/rvi $ /0//o/88 &d/ Alsvenstxf As./eci Cask SaDDor ts - NRT-1. Ca s K. Afl* $asnr>f As.sv (4/04j 7/averAw.) 72.an:as J'esk & -S&Wer /~7.e*d* bi ##E Meoy fs.se. Losd ) $4h fdln lb 1%>/ ),7* l} bl$ S ac.+ ion % oe>ftes $.r
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$* 7
- de174*ne
'CWs~. 7 5 /4 'f*e isp. I /t = c.tXr..tr3(s.str) +$nc)6<<:ss = g.ts',w.'- 4 ## d
- w d/e sheis God /-74 faaw.a. //7 sk. =(Sy.)m = A0 ea' I
es /e.a/a/ed' Shes.s 4 = 0 = tog s 4. H e' M.S= !b;-l= + 2./9
- e.
se Weld, -25 kr# // / /L-rf/s'es ad -7.4~1d
- 3A e
Fs i load. & = 6 % w.) u. =.s ~4 4 N a s.66r/* p /. ) i WeId Prope y+tes (J/s *.6*/s'/ s # s.ia w d ) /*0.J7J~so's. ,/,o * /..!J~/ /4'.a:t +J. 2/* s' J.oo t/s;fts /J.oo + (4)ff.oc) i m $5.00/tr. kJ * ($ N7Yd & (d"$.O9)* $ /.Y**sho
- mA/a Abes.s inrd. We//A*#er-Mai6/Haakaa J/.)
7 4.E = arry sy* = co..rrey/w) = do.9A.xsa' d a b n / J e a ' s h e.1 1 f=sf77Aci W.g = * -- I = + o. 9 9 Ss = . _ -, ~
Eewsi<vi.L Ae/ Msveinu t Pes.Ac+ coex Suppsas - Wncaz 6xe
- N Sa.s.o n / A :1,v /DA%,a %e/sn)
- r s.s 'e s lCd/ &sas= ('9.)ey= /*/J:!7 Mr. 64e' / / y 'C 4 Sec% frssen%s deseryaNye/ysf 7%e c>wf./e./osd ap,a,> fed osM6e er.dn/ sesace. fr*ley/eri C = c.r)(zs:rarXs,w 2r.r'.)= //.r.z,er. (dhod af loddarc.) t = c..rpr H. (r< a4 s,va p:sfa.)he.= czXp.nr.)(n. a r es a, e.,,,p.. zy G=/Ar.t.ar, d =s~ f/t,. 4/b =s: 4 X = J:.21
- E= /a o>vo' e 4. eel' M,. /,pp ars,ase..t.
AAmAA s/ress es (4s4/-74* f4 si.;wx Are,fe;$/) 3l, = S'y = 35*.e:ci (3lQ=,((h=/7s*/.bri A A44/ oh., Ge= jf = JG79N /W$ = - ! =
- A"'*G '-
gwe4] y3. =. WE %4.- /= + bre e se ,*])-
Eswsilm.1 /ss o /er Me/ Msy<maf 8s.iec/* casx :iasports - me.t &r,e r ///.fw* ssr/,/try (bfh'no %m/n) We /d -rs,Y'I'/ - ? $$t s. o,', 6.cre h Y 2s Ase-de Lead Pw = {SNc) + 69hQ'n zess/ /Ja. N Ap a. It/e/d /nse>&es 3/3 M'fef ofarsand A= asrr/n. .4 = $~4. osX:) Hz) (terr.)=.rs.r.74 >. hs = @70 ?XGJ76(M 74) = J'M n
- swsA/e Sfrers- (ffSW We/ DAW /sp-Mch///o.eew.e //7.)
Ss'** A F77 Su = (#*'!!X /Al) = S 9't "*2' cf fako/afed swess 2s = ?"' = /rHps' M.S. = fs' -1 = + 4. / ses -9 fa/4'/ react' A.es / 'Coxserva,4're/l s. cone. enn'te Ve> 6'en/ /**/ u ee. &/,eteod. /3 -= (/C)e.= //6sso /Js. &/#Aead AmNes M-t* a :.?t/n, d = /rroin, b=92fa.
- /b= Ar7 K= ?.ro s = a.s.ca % -
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/ Se' = S = fr xsd (Sj,), =.,_Q_}l=$Y4xu' y ge,=.$L.=j779,z,og MC= # -l* +~O' %, &c. S i
.Eers' Wo>7 l- /o/so/ff s'oe/ /Hsverms/ /9e4c.F Coex Susssr/3 - Mad 4 Cssx. ///,.Susssef Arsy lu///4o &"n. *es ) - 3 So dd'/e. Load 8 = (/?.)e r = f /j.r.r 7 / J r. (fe,e t$,e./.4 YDE = S =. 92 8 As;c' As Sad {//e froserhes 7%e. cowh/'.u a s/* A/se c h.s % s ra /s : 4 =. swr-wlr* =.rxyr * .1,s. \\ Sur face. #ru = /s = Hr)(2.r.r.)(f%yr ((4.5.)= r.O. / u.'- 8eonwy free. => #s,= (z.s)(zXts:r.)% n,tt.)=r//.rk.'(Py*eh a= orXes:r)(if)=.re r24. J=/s.sa. % = zos #4=0 m l t = s.s 7.r/n. Y Sdk Y** lp /d 6 22 7, $4st. 8 J/basJ/e Sh esse s Sie= $y = 3.f.e.u' (t.06/-74 J4w.,wm &sa Mais/3 Sb =(Sy.) d 20 c.u- (4en-74 J/m* a,,,+<r/-/#<a/</&ab s caIcala &<d SFresse.s Ssr = Y' = /obpd M,8.= A *->= M *?* ' sr Ar u $g =, b =. /s'e s o p y s' y.$ a -) = + 0. 33 -2.5' -
EdV/S/ orc.l /d//s/W &/ ibwwf /Ls'ed c.ssx S w e f,- Msc.t air AC/ Jasss>/ Jrsy_(u/L Mm'en) r WeId ; -21 &<a A 6sAuss-Aos A4 A. Loads 8 = 60 (R.kt. = czXx Sa69.) = F4337 //s. CLaf Ap< a) fl = (/ddan = ~s7, r17/Lr. (lea /?op a.) &, = (6 '+ z'f' = 7.x to/ J.r. WeId %oayHe s @d" M#e/ ## JrnemD .f-o.swa. 4 = (z.)frt. w.ra so) =,cs:t.744. Aw = co.rs7)<<myc/.c:z.n] = rs.. rom.*-
- wd/e Ahc.
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- wd/e Ahc.
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- l = + A B lo 1 -m-
u 4 ,as a r_- Ae' nwors.L /o//o /ff' case Suocorts - n#v'ect 5e/ A/wewon/ 8 c.L G s x Fonuo yd &wpoy& Arv fB4b hwad /,oo. -/.s x;ss' k. t -/r c/ oms / a/A.1 V L eads OELer ' r.2,oco /h.e. ') (tep+thska/)( Vir /u I t/s oe %) J,eap,p ( 8 )er =.t h.rst /Ar. (15,,y, = rs,.ts 7 /J.r..eesa/L,i' la Mo,sarNes w p s.rt;u. e =(Wu-4t=1.104.* zy=4. s w ? D,y= x/zo u. ,pss.2<:,. (A = :D t = /Mh ' wu =WA*b*) h =ltXz,X*u-Dcu kA)-%n t =.r..e o i:1. /s..rnu. iz. ()?.s)y *(&M) dry-DGrWO * // $In.'- e w Asyr'in. u
- saJk sfrwa:r c'w-74 s/m>A,x.&w HaA/S s;-st = s, se n.
4-s<,, r,..u. a x.u-i .C a Ic u Ia 4 e d G r e 1.re.s (3Nu= Ih)3 M.C.= f,Q-I = + Uf_ " = 4.t46* M i Ssy = ( % " = s/49 M M.L = A -I = + Love Ar ($s)u = (h)y" = 4d// M N.S.= L -I = + f.o/ ( (S )y = W" = /tsr/Yi y 3 = $ * - 1 =. + t.o r. g (r,)v ) % NCConodeldt $t'* lds%E dlnt,$mv A 4l 4fw.ss4svg. I -w-
Eaws/an 1 /sho/rr & / M wn we' Prakc/ cssx s a p s 7 7.1 - s s e - 1 c.o a Mws>d Systf As:v 68Aab mniash 25 #.1 -- %ssins #dheAm.ss/ho r Loads 6 4)xr .u,.rs/ /4s. m.n:a,7 ( $ AT*'1~2400lAt* A d M d / / M d $l* u / $ b e d ? (%)er = s;e), Guar. .lsfera / shaaj- /dO fnrAsyNas (f-8//Mc.) .D = Ado /n.
- = 1rD% = apurn.x.
Je =' asst,: a. ' ,$5ddsIA' ?Fdff42 ($4d' s<,2fe, by (drAnne Sfse /) S$= Sy = 9.t. O et
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24 (Q = ?~6f)-r =..ti, p.,,g. ,- vt. .e ## , hs)to? bGb UtU.-sq.S c f W (8s)u y =,,,7/ =.2/7.t& fst_ Ps. s t $e = (Sl + 3 $r.)be.) ' = '7'MW \\ 4 M.S.= g; -l = +o 6/ + Awaes yz. o f Isa.d so -ire /ag et n on -/s &&%.. ~26 ~
/$ //o /ff' Fuol Mo4e. m 2 Pvosu t O LS L:. Su PPo Y k - Nh6 -l W/8 f/$ W// w - o a e '. d ss - 3.-; 4. n wei6 - n <. s u. s .gnd :&#ner.1 - 7', / - 9 $7/9
- 8 I
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fe w s b ri.4 o //o /rr Fa s\\ V ou e. u e.a h ? vo s c.d _.u,E e,v p r o v 4 - u 4c. i o b W e. \\ogikulina I wd p s e. ho yyox iw h 3 \\a.b.wl 1 ox &s Fo We w e.14, ' e-w d.s q 5 h u se s cvc wcb &tv s. ! o g eJ. 6 kio-p vo p e.v h e.s 0.10 7 (o a O( 1019 + 1 y 2. 5 3 + Aw = o.ts ( 91 s - t x z.s3 & o.3% (t o.1 c3 - 9.s o m w e.ta 54n.$s e.s 92.0 0 s fx o s 4.s PS: = ,v.o 0 4 3 = 12 ;# , 9 a.9 est
- 5 = ?;'f, ' = m t yst (tt A
"' U G 9 f5) + y i wel3 c ou_,1ble s'm u.s i ya. \\ d $ s \\ \\ s,v % e,L.1.l ~ E"M fJ f 6 e o n /[ W S) SS $ * // k 5l 6Sv JL ooo -g = t s. f s' *
- m. s.
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v 2... w...c e n.m eae v.4 is: 4':c, Po>e sii /s//,/fr TH E RM ACOTE WELCO CO MPANY 4..... 3... n. p....ei 3.........,.c.......i a.. FIllf R ME TA L CE RTI FIC AT10N Pate_ 1 p.8$ k'c le o Fredact s s e s 3/3tM6 Ten 4.t getging Heat Nambc4 40t 811_ The abovt es.,teri'at ccmptite v'ith the f ellowing 4pecificatioh4 a <t d requincetnt4 a4 neted: A.W.S. Sp:c. A 5.1 M. W. S. Ci c4 4 ER 5356 -A.S.T.M.. Hititary _ Federal i Other Chemical Analy4ia s Filter Metal (x) Typic al. ( ) Mitt Rtport Pho4phorue _ Carbon Chrow.lun. 0 5. 10 \\__ Sulphur rhvalcal Freet.'ttita Cepptr .101 Molgbdtnum Tsn44tt Manganu t.05.f o\\ _ Columbiun Nicktt Alupinua. Remaindtr Etangation in t" Silicon .t5% Nas a t4 ium__4. 5 - 5. 5 % fron .40\\ Titantun .06.t01 yltti line 101 Scryttium._,. 0 0 0 8 \\ ' '_' ltad MitA09tn Rtduction in Arta fin other4_ .I5% Total Cebalt (Single valut4 4 hewn reprteent maximum percentagte unic44 etherwiat 4pecified.l The undtvisntd hereby certifit4 that ths about informati'en le corr t t r 40 ths biet of his knewtedge and 6t!Anf. )Vl Vittism N. Roland, Jr. \\ Fateident j 6&=1Isul Of IaCl8 srec8 heQVP4 f pl te (, lICN WlbODMtt $N80f%l'aW 45.'**J'4 ens's e Web.'a's 61 an M C. Pom As.0 OM. 4,)t M fIL t' \\ -07h- }
J &~KEjfo ifer/,f/r'!! A u......a c.... s >.... ~ >.vn w 'a ^ ' > * " ; n /s,/s/gf / TH E R M AC OTE WE LC O C OMPANY L 4. ..........c. .....:.,.......,n.... Filllt 11t14( C( R T i f l C A T I t'lt Dat y _9/,21/85 T08 Nanonal Welders Sw;rly trctro Pasduct $3!4 .C35 x 15s Col e.N d. 5.C. It g a t % m k r.1 100-1 Tht c.bcut t'2CC lat ccrglice u'i t h ;I. e. f e llcwi.tg s pe ci[ic a tio n s a.t'l r e q uin cre t n ts 1.'e netti: A. tv. 3. S v s. c., A 5..' O. t.'. 0. Cl c.\\ 2 fP 5356 A.S.T.Al. lii ti tn *. y IcdtAct_ Othta Chtmical A.1alysist fi t t s.1 LIstat (xlTypic sl ( J Alill Ret. ort Ca \\ b.~ n_ Phoaphe\\u.s_ C t. A t
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- 5. 5 %
1ron .40\\ Titanium .06..t01 Yitld tine .I01 8eryttium_.000 5 \\ ' ' ltnd tli tr os t n Reduction in Artst 04ht44 .l5% Total Tin _ Ce b a t t,__ (single valuta ahewn 4tpAtlant natisiuen percent <tyt6 H at t f 4 4 ethtAdat opstified.) The undtraigned heathy ctafilit4 that the abevt informatten de a844 g to the 6t' t of hi4 kneettdge and betiti. s 3p. ' j RITEV.' A Y n.< en ue.w s, t e h(ee0(L Vlttiam N. Retand,,2A. er.1..usti. PA4*Id88I 4tGi(M.# C 6 e' ., %.., 4ej -,,.. ,.c u..< a 4:% m n m i swn" a *... im.?'i'.". ?$t,?,t';,'. l,',Tll;y,*t,,,,,, e ,,.,,n....,, et..,,s.e,,<,n y, - p 7,c. -
WV/ $/ W l M//o /?Y 2 ) i Meta s l Handbook J Ninth Edition Volume 2 Properties and Selections l Nonferrous Alloys and Pure Metals i ) Prepared under the direction of the ASM Handbook Committee l I William H. Cubberty, Director of i Reference Publications Hugh leker, Meneging felter l Devid lenlemin, Senior Editor Powl M. Unterweleer, Meneger, i Pubtleetiene Development J ] Creig W. Kirkpotdek, Chief Copy Editor Vicki Knell, Production Coordineter j Kathy Niemen, Editodel Auluent W i I l AMERICAN SCCIETY FCR METALS METALS PARK, CHIO 44073 i i J -;t 7d-
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a.____; c. a.e 86 r c. f a re.6 =; F.34 L Predad Tuckmeserange UlstammessW Yn.M(se sereagehdel Ulsammas Yimia Ulssmose Yne84 ABey man semper serine mas est MPs han MPs bal MPs hat MPs baa MPs had MPs hat MPs hat 11008112.1814 All All A!I . 76 11 31 4. 31 45 55 8 17 2A aSO 23 55 8 30031812.1814.1116. lit s All All All . 97 le 48 7 48 7 69 10 28 4 205 30 83 12 Aklad 3003 3112. Elle. Ill6.1118 All All A!! . 90 13 el 6 41 6 69 10 24 35 205 30 76 11 3404-1132.I134.I136,!!38 All All All . 150 22 76 11 76 11 97 14 45 65 315 46 140 20 Akled 3OO4--Il32 ID4. ll36 All All All . 145 23 76 11 76 11 90 13 45 45 305 44 130 19 ID8. All4. III6 30031125 Sheet All All .385 17 62 9 62 9 83 12 34 5 250 36 105 15 Sou5 il12. Il14. I132,1134 All All A!! . 97 14 48 7 48 62 9 28 4 195 28 69 10 14:56 3132 !!34 All All All .125 18 55 8 55 8 83 12 30 45.250 36 83 12 5052 5132.1134 All All All . 370 25 90 13 90 13 110 16 52 7A 345 50 130 19 506311111 Estrumens A!! All . 270 39 145 21 140 20 180 23 83 12 540 78 220 32 11328 Swet and plate 47-381 0188-15. 275 40 1E5 24 166 24 165 24 97 14 550 80 250 36 11321 N te 38 I-76.2 1403-3.0. 270 39 160 23 160 23 166 24 90 13 540 78 235 34 18323.3D43 Sheet All All . 275 40 165 24 165 24 166' 24 97 14 550 80 2',0 36 1 50t$18311 Estrussene All All . 240 35 125 18 115 17 145 21 69 10 485 70 195 28 b fill 2 N te 6 4-12.7 0250.499. 240 35 115 17 115 17 145 21 66 95 485 70 195 28 M lill2 m se 127-254 050-30 . 240 35 110 16 110 16 145 21 62 9 485 70 195 28 lill2 N te 254-508 1.001- . 240 35 97 14 97 14 145 21 55 8 485 70 195 28 1132.5 0 4 Short and plate All 20 . 240 35 130 19 130 19 145 21 76 11 485 70 195 28 5154-1138 Sheet All All . 206 30 106 15 106 15 130 19 59 85 415 60 160 23 545411111 Estrumaene A!! All . 215 31 110 16 106 15 130 19 66 95 425 62 165 24 litt2 Estrunnene All All .215 31 83 12 83 12 130 19 49 7 425 62 165 24 1832.1134 Sheet and plate A!! All . 215 31 110 16 110 16 130 19 66 95 425 62 165 24 545611111 Estrussens All All . 285 41 165 24 150 22 145 24 97 14 565 L 260 38 11112 Estrunnes.e All All . 285 41 130 49 130 19 166 24 76 11 5% 82 260 38 g 11321 S ert and plate 4 7-38.1 0.188-1 4. 230 42 180 26 166 24 170 25 106 15 680 84 260 38 g 11321 N ie 38.5-76.2 1401-3.0. 285 41 166 24 180 23 170 25 97 14 565 82 260 38 g 11323.1D43 Swet All All . 290 42 180 26 180 26 170 26 106 15 580 84 260 38 f44*.-TE. Test.T6510.T651 lid) All Over95 Over 0 375. 166 24 140 20 140 20 106 16 83 12 345 50 205 30 ) y
- 75. T651.T6510.TS5118ep All Over 9 5 Over 0.375. 166 24 106 15 los 15 los 15 42 y
345 50 206 30 N All All All . 135 17 76 11 76 11 76 11 45 65 235 34 150 22 Y 6351-T54d4 Estrussens Over 9 E Over 0 376. 165 24 146 20 140 20 106 15 83 12 345 50 205 30 8\\ 6063-T5.T6 .45 50 206 30 Then Estrussens Over 95 Over 0.376. 165 24 106 15 106 15 106 16 52 9 .'.,t w.ui -m rai.rw .e.4 ts e m 4 4 r.u.1 Um a..i asMrw.u,.sr - w no set V.lue. nr. Ger -_ wth 51R3.5368 er 8086 AEurwire_, eW" Valene also mooly to therkamasse less than 9 6 ene g 1% ,c e w. i - w.u .o. to 0 25 anset 6e 250 man 4464m i snee length ervene e g se US sa ) when welaeng as name wish 4043. &&54 er 5654 &less wire tai Vale.es are Ier -
- woun asez, Mme er suas m>v wwo-
t SV/NM N//0/77 198/ Aluminum thickneu to 6 mm (L e in.) thick, or butt tural con 6guration at both surfaces, rosion is not adversely affected by joints in aluminum wtre and rod from and merges them to form a sound met-ultrasonic welding, but the usual pre-0.6 to 10 mm (0.025 to ti in.) in diame-allurgical bond. cautions should be taken whenever die. ter, and for joining aluminum to other Ultrasonic welding is well suited for similar metals are joined. metals. handling matenal having thickneues glettron heem welding applies gxplosive welding is secomplished in the lower part of resistance welding's heat by means of a concentrated beam by the energy nieased from detonation range-for aluminum, the range is of high velocity electrons. Magnetic of high e rplosives. This is a lap welding from foil Weknesses Gees than 0.005 fields focus and secelerate electrons process that allows aluminum o be mm, or 0.0002 in.) up to about 2.4 mm from an incandescent 61 ament. The joined to itself or to other metals with. (ts: in.). Furthennen, with ultrasonic beam and the work are usually under out lou of strength, and is used to weldmg very thin aluminum foil can be high vacuum-in the order of one mi-produce transition joints between alu. %tned to wry thick aluzninurn, and cron. While the stze of the work is limit. minum and diuimilar metals. Explo-a,luminum can be joined to many dia-ed by the available vacuum chamber, similar metals. this environment is ideal for prevent-sive welding has been useful in joining aluminum pipes and bus bars in the Although it is not formed by general ing weld contamination. Equipment for field' fusion of metal, the bond achieved by welding in low vacuum and in air also ultrasonic welding is an intimate met. has been developed. Pristion (Inertle) welding is a allurgscal union. Stnngth is pro r-Well fitted joint preparation is enaen-butt welding proceu in which a spin
- tional to weld site. When teste[to tial, and high concentration of energy ning part is pushed against a station
- destruction, ultrasonic welds in hard in a focused beam makes very narrow, ary part and the fnetional heat and alloys usually fall in ahear. hoes in single-pass welds pouible. Welding ha.
force generated produes a solid. stat
- softer alloys usually pull out a button, little or no effect on the heat treated or bond st the interface. Aluminum alloys Weld stnnsth data for elutrie resist-cold worked structure of the base met-can be joined by fnetion welding to ance spot welda may be used for design, al, and weld contamination is nil.
similar or dissimilar alumm.um alloys Testing done ao far indicates this would Because equipment cost is high, this and to other metala. When alloy 6061* be con ervative. Some test resulta an method is useful only where sound, T6 is fusion welded to 304 stainleu published in ASME paper No. 60 WA-high stnnsth jointa are more impor-steel, a bntile intermetalN compound 332 in the table entitled "Comparison tant than low welding cost. Apparatus is fonned, but when 6061 T6 is fnetion of Ultrasonic Stnngth with Resistance is avalable to handle parta o m (30 ft) or welded to 304 it forms a satisfactory Welds on Aluminum Alloy Apfumi-rnore in diameter, and aluriinum alloy lica-jomt for cryogenic and heat transfer tions for Ultrasonic Welding of A thickneeses up to 100 mm (4 in.) have applications. num." been welded. Ultresenic welding neembles re. Indentation caused by clamping force Leser team WelGng. The word sistance welding in the general config-seldom eteeeds 5% of metal thickness. "laser" means light ampli6 cation by uration of equtpment used. Overlap-It is gnatar with the softer aluminum stimulated emiasson of radiation. Lanst ping parta to be joined are clamped alloys than with the harder materials. welding has developed into a high-between tips to weld them at a spot, or Atacent or overlapping welds can be volume production process for Joirung between rolls to weld a seam. No heat made, and proximity to an alnady and cutting metala. The high intensity energy, as such,is supplied. De weld is completed weld spot don net down. light beam from a fused leur is highly made withcut fusion in the ordinary grade the quality or sinngth of the collimated and has good waveler.sth sense of the term. An intense, localized, next one. When lap teams are made to purity. Because of the resultant high mechanical wiping does occur when join foil, the jointa can be trimmed power density, matenal in a local area the parts an prenaed together. This simply by tearing off the exceu lap of a workpiece can be melted andor action scrubs away otides or other im-abscent to the weld seam. vaporised with little or no effect on the j punties, rearranges the metallic strue. Resistance of aluminum alloys to cor-ataceat material. One of the disadyan-Yab4e 4 aaneimmeen expoeted temeNo ;;. O et veeseos M _ _ _;a fee bett wooded staunteses j seys Alicy M11.r. i u,4 T. o. e in w. u.a
- i.. p.,
an., -ins c(-nos n -ins c (-soo n n c (-ios n as c nao n i n c case a n.) neo c imo an.s 2219 T3hi) 2319...... 334 (48.5) 275 (40) 250 (36) 240 (35) 215 (31) 130 (19) 2211k c) 2319.... 445 (64 5) 410 (59 51 360 (55) 345 (50) 260 (34) 150 (22) 3003 1100.... 190 (27 5) 148 (21 5) 121 (17.8) 97 (14) 64 (9.5) 34 (5) 5052 5353... 260 (38) 215(31) 183(26 5) 170 (25) les (21) 72 (10.8) 5083 5163..... 375 (54 5) 315(46) 240 (40 5) 275 (40) 5054
- 356....., 330 (48; 280 (40 5)
'35.5) 240 (35) 5454 5554.. . 305 (44) 255 (37) (32) 215 (31) ISO (261 105 (15) 5456 5554.... 3&5 (54) 328 (47.8) 2SJ (42 5) 290 (42) 6061.T6b) 4043.... 238 (34 5) 205 (30) 183 (26 5) 165 (24) 150 (20) 41 (6) 6061tc) 4043.. . 360 (55) 341 (49 51 315 (46) 290 (42) 217 (31.5) 45(7) 2 " 2.df.F.W*. W : = n'a - "d'~ ~ d*= ~ ~ ~ ~ a'c - ~ n - 2 7 7- -
feLWf/pr? f. /0/N/ff JelstIseg Aluminum /199 T.We y palma-expoeted sheer em.1 et fHeet we8de Fig. 5 AHewshie alsoor strengths for si.gle spot welde 1.
- i..i i
en.r. a .n.y..e d m.r tt.o.u. str geh. Sb.ar MPs hai N estw o oo1 *. y 1100.............. 52 7.5 we' g in = see W 2319(aXb).......... 110 16 s.,,,,,,,u, "# y i
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1 2319(c)............ 150 22 4043( a)............. 79 11.5 } eos 7 y l 5052.............. 52 7.5 1
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/ / L 8154.............. 63 12 ca s,. N / / ins 4 5554............. 115 17 j 5554.............. 140 20 l 5654............. 83 12 j j s# . us ~ 1 I" I l iss = in we u.n.*u tArw meathsW Art. $ F 'V '7 m N.wrs.u/ as. m H =t-v = ud and - in w. I185 = n **i acauge es88 w.4 = m e..t i I ,e es is is sa to sa ss 9.se e smaeus, sue Plg. 4 Q ue ge of 2 for sheer eb _ h three high. i,,,3,to,,,,,h e d en.w.4 vh6.hn en.w. hie dwee we.aeek is b d ea the spot weide ,g;,g,,,, g,g,,gg,,,, g,,, e m : J.ei sim e.Noy. s i c'.i. o oot m. the 'tu series,100% emcioney can be on the minimum reproducible ahear obtain d when the welded structare etnngth (of single spot specimens) ob-can ba solutic.i and pacipitstion heat tainable under the established manu. e au es u in in in am i i i tnated after welding. Nearly 100% ef. facturing conditions. Figure 4 presents Beiency can be obtained when welding such test date for three high.stnngth e in the T4 temper by using one of the alloys. Figun 5 shows design. allow. 7 y I / g high. speed welding techniques, such as able shear stnngth in relanon to the j '" / inert. gas. shielded metal. arc welding or tenstle strength and thickness of the ) electron beam welding, in which the alloy being welded. f,yy j / 3 amount of heat nowing into the base Design allowables developed in sin. j A metal of the joint is limited, and by gle-spot ahear specimens an apolicable g[P w w _. y, to multispot patterns, provided the dio-precibstation heat tnsting after weld-nrate ing. the 2.zu and 7zu series. such tance between adjacent welds is not
- e practice produces less improvernent in less than two nugget diameters. Closer s'
I l join'. emeiency. Alloy 2014 and espe-distances mil result in shunting cut. " ' " ~ cially alloy 2219 an widely welded for not looses, which mil reduce curnnt spacecraA boosters, where machined or density in the spot weld and reduce the chemically milled lands are provided to site of the weld and its ahear strength, achieve adequate etnogth across the Such lossee, which inenam mth the taps of this process is the initial equip-welded %inta. Summanes of minimum thickneu of the rnatenal, must be tak-ment cost, which can go as high as e xpected butt. welded properties of eom. en into account in design. Il 000 000, enonly welded aluminum alloys an giv. en in Tables 5 and 6. De minimum Beasemiseg Processeg Stresegth of Wolds expected ahear strength of Allet welded aluminum is given in Table 7. Brazing is a type ofjoining proceu in ne sinnsth of sound, normal as-ne fatigue life of welded joints at which coalescenes is obtatned by heat. depouted aluminum alloy weld metal high load.s vanes with the alloy. As the ing the base metal to a temperature is approumately 60 to 2S0 MPa (12 to load is deenamed. diffennees disappear below its aslidus temperatun and add. 40 ka2). JointA in non. heat.tnatable until, at about one to ten million cycles ing a aller alloy, using fluz. ne aux alloys can be made so that they mil fail of asial loading (R = 0), the fatigue promotes wetting of the ;oint surface by in the bau metal, rather than in the strength of an are. welded joint is ap-the aller alloy, which is selected to weld metal, by proper selection of the proximately the same regardless of al-have a liquidus temperature slightly aller alloy. For hard rolled tempers. ley and is 50 to 70% that of the un-below the solidus of the hue metal, the base metalin the heat affected rone welded alloy. Typical data an given in Although the bau metal is not melted, on either side of the joint is soAened by Fig. 3 for alloys 3003 0. 5154 H34 and there is dear.ite diffusion between the the heat of welding, precluding the 6061.T6. bam and Aller metals. poastbility of obtatning high joint em. Design entena for resistance spot Bruing can be uwd suceeanfully on esency. With heat treat?ble alloys of welded aluminum usually are based very thin matenal and on anemblies -3 79 -
KeWs4w.L /d/M//f \\ i YJ6\\ WCNtab LM5 ?YO\\ fl4 S h 4v poes h - #5. - f Fo vv u d S u f f o vf k<,S g ( i?.o tA }-lou haa row) j 4 e,c f io s s.o m b e Iou > N ar,or 4. l t.o a 4 4 l (Pv 3 2.7 tG53i 11, LP t hy G t000 lb P3s - 7 4,oo9 l4 i t.Ar)R.T 524(p5(lp e I Mu s (Pat hr = 47,1,504 1w 4 = 4(t,,0o0 tu 4 l M u+ - 8 ( PQ g.t 3 ] d.
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l l Ad'J//O/Nt/ $ 1 NAd 1 6sk so,isa/gy Lyermaster 150 6skher P70s/- deem Ass d' 6 p b M'/e (esntW) e WJe /Xvr 4eam, prs,s erhe.s-a re : l 7S~mor) s.1n" h= 2. M'a,' Ik = f.sa,',,.' 1 = /s. a a in.+ b ll:h,e. r = 3. m a. f (##saA<d/e rhe s.s ) IIS SMCo shucfara/ sfee/ SI; = Gy = N>,939 Au' (33Kp/mn) c (dalcuMed Stress) $a = _L/cM rs _ - ,,,s g 4 p u. (safej mt,H 8, F. = b = 2. M. se $l ~
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R W rd n.L a/n/ry Lloyd's Register of Shipping FREIGHT CONTAINER CERTIFICATE wwn ov u aufoctwn Adamson Containera Ltd. Catficme No. 501176 toceoen of woru Station Road, Reddish, o%e Manchester Stockport, Cheshire. 40.10.85. This le to certify that me tree t conieaw desented below heve been meaufactwed et thee au end conaructed end twied in w acoreence w m e reeve mente of uovo o nee tw of shio to me reevnemene of me iniwn.cond convenoon for sw eng for me coamruccon end caecos e of Fre.gni conte.nw. end conform contemws. The dess.6e et den.en, me tee, cenaruccon end worsmenento converm a e. ecoreved pleae and to me emeorype coniana identrned = fosoe Memheiww's swtai No. 938/001 Two **eht 2080 he Type Aporovat No. and c.s.c.4,srovw nwww.e 08.LR 6820-9/85 sertai numswo Menu #eesww's modai awew CC-HH-1 owner's uenwheeww's com of meauhetwo hear and moam) 1985 5eptembor Tvve ct ioatwaw 20'x8'x4'3a Open Top 850001 938/001 Raae 27000 he 59520 tuunnum oowene eram we.ent) ta to ownn e name end code latwo NACU 850004 938/004 Nuclear Assurance Corporation uove's operoved endorsements: stecune ceoeway 160000 ks 352740
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~ Cf== Rew'5Atrf $-- CARGO CONTAINER AMD /PS PRODUCTION CERTIFICATE Design Type Number: AB/ 785 /. 86 '7 Containen Certineste No. 86-TA 0225 This certi6eate is for &$ September 86 Dese 27 September 1986 manufactured during 19 .. h..: ;..,...Q y, v s ~.: . ' = 1-THIS IS TO CERTIFY th.',Seven (7) 20' x 8' I 8' Open Top Co h n
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Evercaster Industrial Corp. ca m e.1. - built by ua v s a.,..n : .u. n ; kt
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.r ., r. s u 9 km been broashly inspected at each stage of manufacture by our inspection department under A quality control earv illane of the Amenean Bunau of Shipping and that the details of design, materials,~~'onstruction and work. c sannaMp of the eaalainers conform to the applicable WAedons and to the American Bunes of Shipping Rules eg j. ) For Car Ardan of Cargo f%'ainers. e .V ---,--.8 N.. , u. 2 .r~ 86 r. b container (s) are constructed in accordamos with prints ra.iewed . 22 September 19 j .,. n w.< h T-3MK-1765: under general Me drawin~ 'KO3-20510000 W~yhM'hi which has serial number-.Lg6124co & E-861405 : wee tested o,e 27 September 1986 .l:....:
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and acceped with the tasalag of prototype test certiacau 86-TA 0220-X Size 20' x 8' x 8' Sfodel E2051-01SA ~ ? *.. Af ax. Groie Wt. 27,000 kg Tare Wt. 3,050 kg Payload 23,950 kg 59,522 lb 6,724 tb 52,798 lb Sianufacturen serial numben: E-861400 through E 861406 through through Operating numbern !!ACW50005 through !!ACU850011-(with alpha pre 6 ) through through ~ pgyih ~ Jeff H. K. 111, Quw c.TJi so.naundest Ever= aster Industrial Corporation b undersigud has vialted the plant of located a. Chung-Li, Taiwan acd carried out quality control surveillance as indleased in the Rulo For rtiaca b of o Containers. \\ F. T. Le e, sir, r., American Bureau of hipping n.....r.................................e.,,,.,...,,.,,...................t~,...........<.......... . i.,. 4..--......, r.,......,,................,................,................ e. .# n e a.e e. e, l..e s..e 8...... ti,..i. w, as..... %......, e....,... i..,... r...., e........,... e.,,. p..... i. I i.. *
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