Clinch tooling:
Dies and punches

Our tooling is compatible with most North American machinery. To find your part, search your part number in the search bar below. If you can't find your part, please contact us.

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Filters
Die

Style 2

4.6mm

Punch length:

Punch tip radius:

Die depth:

0.035

Press Lock part #:

D21.35

Compatible with:

003954, 403954, 716000EE

1/4" Stem

1/4" Stem

Die

Style 2

4.6mm

Punch length:

Punch tip radius:

Die depth:

0.040

Press Lock part #:

D21.40

Compatible with:

003961, 403961, 716000FE

1/4" Stem

1/4" Stem

Die

Style 2

4.6mm

Punch length:

Punch tip radius:

Die depth:

0.045

Press Lock part #:

D21.45

Compatible with:

003969, 403939, 716000GE

1/4" Stem

1/4" Stem

Die

Style 2

4.6mm

Punch length:

Punch tip radius:

Die depth:

0.050

Press Lock part #:

D21.50

Compatible with:

003977, 403977, 716000HE

1/4" Stem

1/4" Stem

Die

Style 2

4.6mm

Punch length:

Punch tip radius:

Die depth:

0.055

Press Lock part #:

D21.55

Compatible with:

004037, 404037, 716000JE

1/4" Stem

1/4" Stem

Die

Style 2

4.6mm

Punch length:

Punch tip radius:

Die depth:

0.060

Press Lock part #:

D21.60

Compatible with:

006601, 406601, 716000KE

1/4" Stem

1/4" Stem

Die

Style 3

3.0mm

Punch length:

Punch tip radius:

Die depth:

0.015

Press Lock part #:

D30.15

Compatible with:

Threaded Base

Threaded Base

Die

Style 3

3.0mm

Punch length:

Punch tip radius:

Die depth:

0.020

Press Lock part #:

D30.20

Compatible with:

013743, 413743

Threaded Base

Threaded Base

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Save 30% on clinch tooling

Our dies and punches are 30% cheaper compared to OEMs. All tooling is compatible with BTM, Norlok, Midrivers, and all major manufacturers.

Become a clinching expert with our guides & articles

Get up to speed on the latest metal industry trends, business tips and Press Lock Technologies product updates.

Common questions about tooling

How do I choose the correct die?

The anvil depth can impact the strength and quality of a metal clinch joint by affecting the depth and shape of the deformed area in the metal where the joint is formed.

Choosing an appropriate anvil depth is crucial for achieving a strong and reliable clinch joint.

Here are some key points to consider:​
1. A shallow anvil depth is appropriate for thinner materials, to avoid piercing the top layer
2. A deeper anvil depth is appropriate for thicker materials, to allow material to form fully
3. The appropriate anvil depth should be chosen based on the thickness and material of the metal being joined to ensure that the joint is formed properly and without any defects.

Our Style 1 dies feature a tapered round shank for excellent retaining strength.

Ordering Example: D10.30
D1 = Style 1
0 = 3.0mm (2 Ton, Light Duty)
30 =0.030" Anvil Depth​

How do I choose the correct punch?

The punch tip radius (PTR) can impact the strength and quality of a metal clinch joint by affecting the size and shape of the deformed area in the metal where the joint is formed. Choosing an appropriate punch tip radius is crucial for achieving a strong and reliable clinch joint.

Here are some key points to consider:​
1. A smaller punch tip radius may cause excessive deformation and cracking of the metal, resulting in a weaker joint.
2. A larger punch tip radius may not provide enough deformation and interlocking of the metal, also resulting in a weaker joint.
3. The appropriate punch tip radius (PTR) should be chosen based on the thickness and material of the metal being joined to ensure that the joint is formed properly and without any defects.

Our Class 1 punches feature a tapered flat for excellent retaining strength, and a straight shank for easy and robust mounting options.

Ordering Example: P1.1275.15
P1 = Class 1
1 = 4.6mm (4 Ton, Medium Duty)
275 =2.75" Long
15 =0.015" Punch Tip Radius

Is your tooling compatible with other machines?

Yes, our tooling is compatible with most North American machines. For each die and punch, you can see the compatible part number. Type your part number into the search bar to find a compatible product quickly.

Frustrated by inconsistent material joining?

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