37 . 2, . 1 665.1 – 665.3 ., ., ., ., ., ., ., ., ., .- . .: (0619) 44-02-74 – . – , , , , - . - , , . . . [1] 25 – – . . , 5,0 , ( ) ( ) , 40 [2]. . - . [3]. . - , ., . ., ., . . ., . . ., . - . 2, . 1 38 [2, 4]. . . , . . - , . , . n = P Pmax , (1) ( P , , ), ; Pmax . , n , 1,5 5, . 2 100 – 200 , 2 200 – 300 . , ( .1, .2). l r qêð l ,r, h Ax D 4 4 (1 27 , 2 1/ 4 ) 4 3/ 4 A1/ x D lr r 5.38 4 3/ 4 A1/ x D lr r 3 , (2) . ; , r , h . 2, . 1 39 Eh Ax D Ec Fc ; lc 2 1 Eh3 12(1 2 ) E , h, ; Ec , Fc , lc (3) E J , l (4) , , , , ( 2 r , Nc lc Nc E , J ,l l /( N (5) ; , ( l ), , ); 1), N . ( ) , (2) . , ( ), . ( Eh 2 0,92 lr q J 3/ 4 h J 1 (N r J lh3 12(1 2 ), 1) , (6) (7) ) – ; ( q . 0.3 ). 0,92( N 1) Eh 2 lr h . r (8) . 2, . 1 40 J J 1 N 1 1/ 3 N 1 5 N . (9) J / J (9) 1,65 . , , . – . , , , : – – :1– ,2– . . 2. , . . 1. ,4– , . ,3– - . 2, . 1 41 p, , , . - ; . 3). . 3. , . . : p2 , p3 , p4 . p2 p cos cos . (10) p3 p cos sin . (11) p sin . (12) p4 p2 , . , , , . . - , . p3 - , . , p4 . . , ; p4 , . , , - . 2, . 1 42 p4 . , , P P, , ; (13) (14) , 1 ; 0,28 0,32. 0,3; 0,3 0,428. 1 0,3 , : p' 0, 428 P cos cos . (15) , pp , p' p4 p 0, 428cos cos sin , . (16) , , , . - p3 ; T fN fp cos , (17) f . , p3 , . pT , p cos sin T p cos sin , f cos . (18) . 2, . 1 43 S F pT F p cos sin 106 f cos F , , 2 (19) . , , , F D D2 4 d2 - . 360 , 360 (20) d , . S , D d . 4 rcp . , ( ) [2] . . 4. – = V1 = n1,145 . Vn (21) :1 – ;2–8 . ( .1), . , .5 . 2, . 1 44 :1– ,2– (21), 3 – . , - . 10,80. : ( ), , , [5]. , - , . . - [2]. , ., , k . 5. :1– ; 2 – 1. . - , (22) (21); 3 - . 2, . 1 45 , k 10,2 . 0,85 ( , (23) ), . [9]. 0,97 21,8 1,16 1 1 v (24) . , (25) ; ; 1 1 , (26) . 1– k 6 7 8 9 10 11 12 2,224189 1,951043 1,741701 1,575774 1,440788 1,328668 1,233946 v 24,03592 21,08414 18,82187 17,02876 15,57002 14,35838 13,33476 8,9200424 7,1820158 6,1128139 5,4986972 5,2089194 5,1588286 5,2911172 .1. 2,908560186 3,248801143 3,485726324 3,562978188 3,461700882 3,212053509 2,874486859 - . 2, . 1 46 ( ; k ) ; , . 2. . , . , 1 10,8 . 2). 6 1,21 8 1,42 12 6,11, 8,9 ( 1 .2); 5,29. 8 , . 6,11. 2 – . . 6 7 8 9 10 , 11 12 . 1 210 1 1,42 1,29 1,21 1,16 1,12 1,10 1,08 2 350 1,2927 1,64 1,47 1,36 1,29 1,25 1,22 1,20 3 495 1,6904 1,94 1,71 1,56 1,47 1,41 1,38 1,37 4 590 3,9471 3,67 3,06 2,68 2,46 2,35 2,32 2,34 5 735 5,4862 4,85 3,99 3,45 3,14 2,99 2,95 3,00 6 870 6,6111 5,71 4,66 4,02 3,64 3,46 3,42 3,49 7 975 8,0225 6,79 5,51 4,72 4,27 4,05 4,01 4,09 8 1075 10,8066 8,92 7,18 6,11 5,50 5,21 5,16 5,29 .6 . . 2, . 1 47 . 6. . . ( [2] .1) , , . 7. 1 0 1,8%, 3 – 90 : 1 – 0,945%, 4 – 6 6,55%, 2 – 0,22%. - . 2, . 1 48 25, 2a 5,5 , e0.022W p p 2 , (27) ; ; W (%) - ; , a . t 900 C 4% a W 0, 00090 [4, . 3]. . : 1. 100 – 200 2 . 2 200 – 300 , . 2. , - , . 1. . .– / .: . 1951. – 128 . . / .– 2. 1974. – 440 . 3. / . , .: 4. .: , . , . . – 3, 1979. – . 494 – 516. . / .– , 1962, 2, – .128 – 133. 5. . . / ., ., – , 2011. – .11, : . . . , . ., 4, – .20 – 34. .– . // . 2, . 1 49 ., ., ., ., . – . DESIGN PROCEDURE LATTICED OF THE CHAMBER IN SPIRAL OF THE PRESS V. Didur, . Tkachenko, V. Tkachenko, Yu. Kovalchuk, D. Karichkovskii Summary Work is devoted reliability and durability increase latticed chambers spiral the press for processing of seeds of olive cultures by technique creation durability calculation latticed chambers as covers with ring and longitudinal.