Compression Springs

Compression Springs

Compression springs are mechanical components designed to store and release energy through compression. They work by resisting compressive forces, returning to their original shape when the load is removed. Made from high-strength metal alloys, these springs are precision-engineered for durability and performance. 


Product Features:

  • Manufactured with advanced machinery and stringent industry norms.

  • Made from premium 50 Cr V4 alloy, treated for optimal performance.

  • Available in various specifications and colors (Green, Blue, Red, Yellow).

  • Designed for maximum shear stress of 800 N/mm² and optimal performance under oscillating loads.


Applications:

Compression springs are widely used in various industries for applications such as cushioning, load-bearing, and vibration reduction. It comes in various sizes and configurations, tailored to meet specific mechanical and environmental requirements.

  • Used in machinery and equipment to store and release mechanical energy.

  • Common in the automotive, aerospace, and manufacturing sectors.

  • Ideal for applications requiring high strength and durability under dynamic loads.


Industries:

  1. Automotive

  2. Aerospace

  3. Manufacturing


Specifications:

  • Material: 50 Cr V4 alloy with heat treatment and ball shot peening.

  • Working Temperature: Up to 250°C; performance varies with load and temperature.

  • Displacement Values: Max permissible displacement is 56% of the total wire-to-wire spring length.

  • Spring Forces Calculation: Force = Spring Coefficient (R) x Displacement (mm).

  • Available Sizes: Ø10, Ø13, Ø16, Ø20, Ø25, Ø32, Ø40, Ø50, Ø63.

  • Types: Round wire compression springs, Disc Springs (DIN 2093).


Dh = diameter of guide sleeve

Dm = mean coil diameter

Dd = diameter of guide pin

d = diameter of spring wire

L0 = free length of spring

L1...Ln = lengths of loaded spring as related to spring forces F1...Fn

R = spring rate [N/mm]

LBl = length of compacted spring (i.-e. wire-to-wire)

F1...Fn = forces [N] as related to lengths of spring L1...Ln

s1...sn = deflection as related to spring forces F1...Fn

if = number of active coils

s2 = working stroke of spring – i. e. working deflection


Round wire compression spring

Order No

Dh

Dd

Dm

d

L0

R

s1

F1 [N]*

I1

s2

F2 [N]**

l2

sn

Fn [N]***

Ln 

if

241.02.11.040

11

6.5

8.5

1.5

40

8.08

11.3

91

28.7

13.7

110

26.3

16.1

130

23.9

10.5

241.02.13.055

13

8.5

10.5

1.5

55

3.8

20.8

79

34.2

25.2

95

29.8

29.7

112

25.3

12

241.02.15.040

15

9.5

12

2

40

11.93

12.3

146

27.7

15

178

25

17.6

210

22.4

8

241.02.15.050

15

9.5

12

2

50

10

17.5

175

32.5

21.2

212

28.8

25

250

25

9.5

241.02.16.040

16

10.5

13

2

40

11

14

154

26

17

187

23

20

220

20

7

241.02.18.085

18

12

14.75

2.25

85

5.92

30.8

182

54.2

37.4

221

47.6

44

260

41

14

241.02.19.045

19

11

14.5

3

45

35

9.8

343

35.2

11.9

416

33.1

14

490

31

8

241.02.19.050

19

11

14.5

3

50

30

11.2

336

38.8

13.6

408

36.4

16

480

34

8.5

241.02.19.083

19.5

9

14

4

83

75

12.6

945

70.4

15.3

1,147

67.7

18

1,350

65

16

241.02.20.035

20.5

10

15

4

35

170

5.6

952

29.4

6.8

1,156

28.2

8

1,360

27

4.5

241.02.20.090

20.5

9

14.5

4.5

90

97.8

12.3

1,202

77.7

15

1,467

75

17.6

1,714

72.4

4

241.02.21.035

21

13.5

17

2.5

35

13.32

10.5

139

24.5

12.7

169

22.3

15

200

20

6

241.02.21.040

21

12

16.25

3

40

32.1

9.8

314

30.2

11.9

381

28.1

14

450

26

5.5

241.02.22.095

22

14.5

18

2.5

95

4.1

34.2

140

60.8

41.5

170

53.5

48.8

200

46.2

17

241.02.22.040

22.5

12

17

4

40

105.5

7.7

812

32.3

9.3

981

30.7

11

1,160

29

5

241.02.23.045

23

14.5

18.5

3

45

25.7

15

385

30

18.2

467

26.8

21.4

550

23.6

5

241.02.23.050

23

12.5

17.5

4

50

74.3

11

817

39

13.3

988

36.7

15.6

1,160

34.4

6.5

241.02.26.024

26.5

16

21

4

24

133.2

5

666

19

6.1

812

17.9

7.2

960

16.8

2

241.02.30.070

30

13

20.8

7

70

341

7.7

2,625

62.3

9.3

3,171

60.7

11

3,750

59

8

241.02.32.070

32

21

26

4

70

24.2

23.8

575

46.2

28.9

700

41.1

34

822

36

6

241.02.32.150

32

16

23.5

6.5

150

103.6

19.6

2,030

130.4

23.8

2,465

126

28

2,900

122

14

241.02.34.125

34

19

26

6

125

67.2

22.4

1,505

102.6

27.2

1,827

97.8

32

2,150

93

11.5

241.02.44.130

44

25

34

8

130

108.2

25.2

2,726

104.8

30.6

3,310

99.4

36

3,895

94

10

241.02.44.200

44

25

34

7.5

200

61.8

43.4

2,679

156.6

52.7

3,254

147.3

62

3,847

137.7

17

241.02.48.067

48

25

36

10

67

640

6.3

4,032

60.7

7.6

4,864

59.4

9

5,760

58

3.5

241.02.49.050

49

29

38.5

8.5

50

337

7.7

2,594

42.3

9.3

3,134

40.7

11

3,707

39

2.5

241.02.55.200

55

30

42

11

200

157

30.1

4,725

169.9

36.6

5,746

163.4

43

6,750

157

13

241.02.58.050

58

39

48

8

50

151.2

9.8

1,481

40.2

11.9

1,799

38.1

14

2,117

36

2.5

241.02.63.180

63

38

50

11

180

121

30.1

3,642

149.9

36.6

4,428

143.4

43

5,203

137

10


Disc spring DIN 2093

Order No

in accord. with DIN 2093 Series

Da
h12

Di
H12

s

h

I0

f1=
0,2 h

F1 [N]

f2=
0,4 h

F2 [N]

f3=
0,6 h

F3

f4=
0,7 h

F4 [N]

f5=
0,8 h

F5 [N]

242.01.080.032.040


8

3.2

0.4

0.2

0.6

0.04

58

0.08

110

0.12

160

0.14

180

0.16

200

242.01.100.052.040

B

10

5.2

0.4

0.3

0.7

0.06

73

0.12

134

0.18

180

0.21

200

0.24

220

242.01.125.062.050

B

12.5

6.2

0.5

0.35

0.85

0.07

100

0.14

180

0.21

250

0.24

280

0.28

310

242.01.140.072.080

A

14

7.2

0.8

0.3

1.1

0.06

230

0.12

450

0.18

660

0.21

770

0.24

870

242.01.150.052.070


15

5.2

0.7

0.4

1.1

0.08

180

0.16

340

0.24

470

0.28

540

0.32

610

242.01.160.082.060

B

16

8.2

0.6

0.45

1.05

0.09

145

0.18

260

0.27

360

0.31

400

0.36

440

242.01.160.082.090

A

16

8.2

0.9

0.35

1.25

0.07

300

0.14

580

0.21

850

0.24

970

0.28

1,100

242.01.180.092.100

A

18

9.2

1

0.4

1.4

0.08

370

0.16

720

0.24

1,050

0.28

1,200

0.32

1,350

242.01.200.102.080

B

20

10.2

0.8

0.55

1.35

0.11

250

0.22

470

0.33

650

0.38

730

0.44

800

242.01.200.102.090


20

10.2

0.9

0.55

1.45

0.11

340

0.22

640

0.33

900

0.38

1,000

0.44

1,150

242.01.200.102.110

A

20

10.2

1.1

0.45

1.55

0.09

450

0.18

870

0.27

1,350

0.31

1,450

0.36

1,650

242.01.230.122.125


23

12.2

1.25

0.6

1.85

0.12

710

0.24

1,360

0.36

1,960

0.42

2,240

0.48

2,520

242.01.250.122.150

A

25

12.2

1.5

0.55

2.05

0.11

860

0.22

1,650

0.33

2,450

0.38

2,800

0.44

3,100

242.01.250.122.100


25

12.2

1

0.6

1.6

0.12

320

0.24

600

0.36

840

0.42

950

0.48

1,050

242.01.280.142.100

B

28

14.2

1

0.8

1.8

0.16

400

0.32

720

0.48

970

0.56

1,100

0.64

1,200

242.01.280.142.150

A

28

14.2

1.5

0.65

2.15

0.13

850

0.26

1,650

0.39

2,400

0.45

2,700

0.52

3,100

242.01.315.163.125

B

31.5

16.3

1.25

0.9

2.15

0.18

660

0.36

1,200

0.54

1,650

0.63

1,850

0.72

2,000

242.01.315.163.175

A

31.5

16.3

1.75

0.7

2.45

0.14

1,150

0.28

2,200

0.42

3,200

0.49

3,700

0.56

4,200

242.01.355.183.200

A

35.5

18.3

2

0.8

2.8

0.16

1,550

0.32

3,000

0.48

4,300

0.56

5,000

0.641

5,600

242.01.400.142.150


40

14.2

1.5

1.25

2.75

0.25

950

0.5

1,700

0.75

2,200

0.87

2,500

1

2,700

242.01.400.204.225

A

40

20.4

2.25

0.9

3.15

0.18

1,900

0.36

3,700

0.54

5,400

0.63

5,200

0.72

7,000

242.01.450.224.250

A

45

22.4

2.5

1

3.5

0.2

2,300

0.4

4,500

0.6

6,400

0.7

7,400

0.8

8,500

242.01.500.183.150


50

18.3

1.5

1.8

3.3

0.36

1,200

0.72

2,000

1.08

2,400

1.26

2,600

1.44

2,700

242.01.500.254.250


50

25.4

2.5

1.4

3.9

0.28

2,850

0.56

5,350

0.84

7,600

0.98

8,650

1.12

9,650

242.01.500.254.300

A

50

25.4

3

1.1

4.1

0.22

3,500

0.44

6,800

0.66

10,000

0.77

11,500

0.88

13,000

242.01.560.285.200

B

56

28.5

2

1.6

3.6

0.32

1,600

0.64

2,900

0.96

3,900

1.12

4,300

1.28

4,700

242.01.600.204.200


60

20.4

2

2.1

4.1

0.42

2,000

0.84

3,400

1.26

4,300

1.47

4,700

1.68

5,000


Enquire Form

Compression Springs

Compression springs are mechanical components designed to store and release energy through compression. They work by resisting compressive forces, returning to their original shape when the load is removed. Made from high-strength metal alloys, these springs are precision-engineered for durability and performance. 


Product Features:

  • Manufactured with advanced machinery and stringent industry norms.

  • Made from premium 50 Cr V4 alloy, treated for optimal performance.

  • Available in various specifications and colors (Green, Blue, Red, Yellow).

  • Designed for maximum shear stress of 800 N/mm² and optimal performance under oscillating loads.


Applications:

Compression springs are widely used in various industries for applications such as cushioning, load-bearing, and vibration reduction. It comes in various sizes and configurations, tailored to meet specific mechanical and environmental requirements.

  • Used in machinery and equipment to store and release mechanical energy.

  • Common in the automotive, aerospace, and manufacturing sectors.

  • Ideal for applications requiring high strength and durability under dynamic loads.


Industries:

  1. Automotive

  2. Aerospace

  3. Manufacturing


Specifications:

  • Material: 50 Cr V4 alloy with heat treatment and ball shot peening.

  • Working Temperature: Up to 250°C; performance varies with load and temperature.

  • Displacement Values: Max permissible displacement is 56% of the total wire-to-wire spring length.

  • Spring Forces Calculation: Force = Spring Coefficient (R) x Displacement (mm).

  • Available Sizes: Ø10, Ø13, Ø16, Ø20, Ø25, Ø32, Ø40, Ø50, Ø63.

  • Types: Round wire compression springs, Disc Springs (DIN 2093).


Dh = diameter of guide sleeve

Dm = mean coil diameter

Dd = diameter of guide pin

d = diameter of spring wire

L0 = free length of spring

L1...Ln = lengths of loaded spring as related to spring forces F1...Fn

R = spring rate [N/mm]

LBl = length of compacted spring (i.-e. wire-to-wire)

F1...Fn = forces [N] as related to lengths of spring L1...Ln

s1...sn = deflection as related to spring forces F1...Fn

if = number of active coils

s2 = working stroke of spring – i. e. working deflection


Round wire compression spring

Order No

Dh

Dd

Dm

d

L0

R

s1

F1 [N]*

I1

s2

F2 [N]**

l2

sn

Fn [N]***

Ln 

if

241.02.11.040

11

6.5

8.5

1.5

40

8.08

11.3

91

28.7

13.7

110

26.3

16.1

130

23.9

10.5

241.02.13.055

13

8.5

10.5

1.5

55

3.8

20.8

79

34.2

25.2

95

29.8

29.7

112

25.3

12

241.02.15.040

15

9.5

12

2

40

11.93

12.3

146

27.7

15

178

25

17.6

210

22.4

8

241.02.15.050

15

9.5

12

2

50

10

17.5

175

32.5

21.2

212

28.8

25

250

25

9.5

241.02.16.040

16

10.5

13

2

40

11

14

154

26

17

187

23

20

220

20

7

241.02.18.085

18

12

14.75

2.25

85

5.92

30.8

182

54.2

37.4

221

47.6

44

260

41

14

241.02.19.045

19

11

14.5

3

45

35

9.8

343

35.2

11.9

416

33.1

14

490

31

8

241.02.19.050

19

11

14.5

3

50

30

11.2

336

38.8

13.6

408

36.4

16

480

34

8.5

241.02.19.083

19.5

9

14

4

83

75

12.6

945

70.4

15.3

1,147

67.7

18

1,350

65

16

241.02.20.035

20.5

10

15

4

35

170

5.6

952

29.4

6.8

1,156

28.2

8

1,360

27

4.5

241.02.20.090

20.5

9

14.5

4.5

90

97.8

12.3

1,202

77.7

15

1,467

75

17.6

1,714

72.4

4

241.02.21.035

21

13.5

17

2.5

35

13.32

10.5

139

24.5

12.7

169

22.3

15

200

20

6

241.02.21.040

21

12

16.25

3

40

32.1

9.8

314

30.2

11.9

381

28.1

14

450

26

5.5

241.02.22.095

22

14.5

18

2.5

95

4.1

34.2

140

60.8

41.5

170

53.5

48.8

200

46.2

17

241.02.22.040

22.5

12

17

4

40

105.5

7.7

812

32.3

9.3

981

30.7

11

1,160

29

5

241.02.23.045

23

14.5

18.5

3

45

25.7

15

385

30

18.2

467

26.8

21.4

550

23.6

5

241.02.23.050

23

12.5

17.5

4

50

74.3

11

817

39

13.3

988

36.7

15.6

1,160

34.4

6.5

241.02.26.024

26.5

16

21

4

24

133.2

5

666

19

6.1

812

17.9

7.2

960

16.8

2

241.02.30.070

30

13

20.8

7

70

341

7.7

2,625

62.3

9.3

3,171

60.7

11

3,750

59

8

241.02.32.070

32

21

26

4

70

24.2

23.8

575

46.2

28.9

700

41.1

34

822

36

6

241.02.32.150

32

16

23.5

6.5

150

103.6

19.6

2,030

130.4

23.8

2,465

126

28

2,900

122

14

241.02.34.125

34

19

26

6

125

67.2

22.4

1,505

102.6

27.2

1,827

97.8

32

2,150

93

11.5

241.02.44.130

44

25

34

8

130

108.2

25.2

2,726

104.8

30.6

3,310

99.4

36

3,895

94

10

241.02.44.200

44

25

34

7.5

200

61.8

43.4

2,679

156.6

52.7

3,254

147.3

62

3,847

137.7

17

241.02.48.067

48

25

36

10

67

640

6.3

4,032

60.7

7.6

4,864

59.4

9

5,760

58

3.5

241.02.49.050

49

29

38.5

8.5

50

337

7.7

2,594

42.3

9.3

3,134

40.7

11

3,707

39

2.5

241.02.55.200

55

30

42

11