From fragile to stable: how potting compounds are revolutionizing 3D-printed components

Produce magnetic plastic components in 3D printing – without the time-consuming gluing in of metals. Our magnetic casting compound makes it possible to attach magnets anywhere on your 3D-printed component.

3D-printed components with thin walls are often unstable and can only withstand low mechanical loads before they break. Our fiber-reinforced potting compound significantly increases the tensile and compressive strength of these components.

Printing sturdy components with a high mass requires a lot of material and time. With our heavy potting compound, you can produce robust components efficiently and with a minimum amount of material.

In lightweight construction, the weight of 3D-printed components cannot be reduced indefinitely without compromising the load-bearing capacity. Our lightweight potting compound can be used to produce particularly lightweight components with outstanding mechanical strength.

Product range

DWH Filler Light #2598

DWH Filler Heavy #2597

DWH Filler FRP #2607

Unsure which dichtol is right for you?

No problem! Our expert Daniel Flachsenberg will be happy to help you find the perfect solution for your requirements.

Frequently asked questions

First of all, there must be a corresponding cavity in the component that is to be filled. The resin and hardener are then mixed together at the specified mixing ratio and filled into the cavity. After curing, the component is ready.

This depends on the volume. Due to the slightly exothermic chemical reaction, a larger volume cures faster than a small volume. We recommend a curing time of 24-48 hours.

No, the potting compound itself cannot attract metals. Due to the particles it contains, magnets adhere to the casting compound, just like they do to your refrigerator, for example.

Mr. Carsten Kunde

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I am happy to support you.

Mr. Erkan Polat

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I am happy to support you.