Scan5 (2)

Scan5 (2)



dlc d ^ M5



ii

5

W

%%■ i min

D min

D,

Di mirt

h

ma x

Orientacyjna mara I000 situk nakrętek stalowych, kg

G\nm

zwykły

C wint drohno-: wojny

u^y k o • na nic A i B

wyko

nanie

C

wyko

nanie

A

uv k o -na nic

B i C

min

m:i.v

wyko

nanie

A

wykonanie B i C

M 1 .ó

-

3.2

■•3

0.S2

3.41

3.27

1.6

1.84

2.3

2.1

0.4

0.068-

M2

-

<

1.6

I.OS

4.31

4.1S

2

2.30

3.1

2.9

0.4

0.132

M2.5

-

5

T

1.40

5.4-1

5.31

2.5

2.90

4.1

•3.9

0.4

•• •' 0.260

M3

-

5.5

'2.4

1.22

— '

• 6.01

5.87

3

3.45

4,6

4,4

0.4

0J61

(M3.S)

-

6

2.S

2.04

6.57

6.44

3.5

4.00

5,1

4.9

0.4

0.482

M4

-

>

3.2

2212

7.66

7.50

4

4.60

5.9

5.7

0.5

0.762

M5

-

S

4.7

3.52

2.S0

8.79

8.63

5

5.75

6.9

6.7

0.5

I -36

-

10

5.2

3.52

3.20

11.05

10.89

6

6.75

8.9

8.7

0.5

2.46

(M 7)

-

11

6.5

4.91

4.00

12.12

1 1.94

7

7.75

9.6

9.4

0.5

3.48

NiS

MSX 1

13

6.8

5.15

4.24

14.38

14.20

S

8.75

11.6

i 1.4

0.6

5JI

M 10

M 10 x 1.25

16

8.4

6.43

5.52

17.77

17.59

10

10.8

14.6

14,4

0,6

9.34

,M12

Ml 2 X 1.25

1S

10,8

S.29

7.20

20.03

19.S5

12

13.0

16,6

16,4

0.6

15.0

(MU!

(M14x IJ)

21

12.8

9.68

S.SO

23.35

22,78

14

15.1

19.6

19JZ

0.6

24,2

M 16

M16x 1,5

24

14,8

n.3-

10.4

26.74

26.17

16

17.3

22.5

22,0

0,8

36 Je

(MIS)

(MISX U)

27

15.8

12.1

11.2

. 30.13

29.56

18

19.5

25.3

24.8

0.8

' 49J

■. w:ó'

M20x |.5

30

18

13.5

12,9

33,52

32.95

20

21,6

28.2

27.7

0.8

69.3

(M22)

(.M22 X 1.5)

34

19.4

14.5

13.S

37.71

37.29

22

23.7

31.7

31.4

0,8

36,0

,M24 x 2

36

21.5

16.2

15.5

39.97

39.55

24

25.9

33.6

33.2

0,S

117

| (M’7)

(M 2 7 x 2)

21

23.S

18.0

17.3

45.62

'45.20

27

29.1

38.4

38.0

0.3

170

MJO

. M3UX 2

26

2.6.6

19.2

IS.S

51.27

50.85

30

32.4

43,1

4 2.7

0.3

234

I (M33)

(M 3 3 X 2)

50

2S.7

21.9

21.3

55,79

55.37

33

35,6

46,9

46.5

0.3

3C4

M 36

M36 x 3

55

31

23.5

22.S

61.31

60.79

36,

3S.9

51,5

51,i

0,8

402

(M39)

(M39 X 3)

60

33.4

25,4

24.7

66.96

66.44

39

42.1

56,3

55.9

1,0

517 .

Sb-2

M-i 2 X 3

65

34

25.9

25.2

72.61

71.30

42

45.4

61.0

59.9

1.0

624

(SUS)

(MJ5 x ))

70

36

27.5

26,8

78.26

76.95

45

48.6

65.3

64.7

1.0

768

>-us

NUS x j

75

38

29.1 '

2S ,4

• S3.91

87.60

48

51.8

70.5

• 69.4

1.0

939

{ (M S 2)

(M52 x 3)

fO

4 2

32.3

31.6

89.56

łś.s.-i

52

56.2

75.3

74.2

1,0

1156

j M56

-

-J

25

3J.7

34.0

95.06

93.56

56

60,5

79.9

IZ.2

1.0

1376'

i (M60) 1

-

50

4 S

37.1

3Ó.4

100.71

99.21

60

64.S

S4.7

33.4

1.0

1619

j M6'i

-

95

51

39.3

3S.4

196.36

104.86

64

69.1

39.4

88.2

1.0

1898

| (M6S)

-

100

52

‘2 1.7

40.8

112.01

1 10.51

68

73.4

94.2

92.9

i.O

2193

i -

M 7 2 X 6

105

4 2.0

42.0

117.66

1 16.16

72

77. S

98.9

97.7

1.0

256! j

| -

(M36 x 6)

110

61

47.3

46.4

123.17

121.81

76

82.1

103.7

102.4

l.o

2911

-

MSO x 6 .

115 | 64

49.7

4S.S

122.96

127.46

80

26.4

108.4

107.2.

1.0

3303

! -

190 X ć

130 ] 72

56.1

55,2

145.77'

144.07

90

! 97.2

122.5 | 121.1

1.0

i 4743

i -

M100 x 6

U5 j EJ

62.5

61.6

162,72

161.02

100

108

136.8

135,4

1.0

6559 !

j -

- Ml I0x 6

155 j $3

68,6

67.6

174.02

172.32

110

1 19

146.3

| 144.9

1.0

7369

--

(Ml 20X6)

170 j 96

75.0

74.0

190.97

159.27

120

130

160.5

159.1

1.0

10374

--

M1 25 x 6

ISO

100

75.2

77.2

202.27

200.57

125

135

170.1

j 168.6 | 1,0

12398

-

_

(Ml 30x6)

IS5

104

SI.4

£0.4

207.75

205.77

130

140 '

174.6

| 171.4

1.0

13341

M I JO x 6

_'00

1.2 I 47.:

Só.S

224.70

222.7 2

140

151

! 188,9

j 185,6

l.o

16348

-

(M 150 x 6)

210

120 i 52.2

93 2

236.00

234.02 | 150

i 162

j 198.4

! 195.1

i.O

| 19229


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