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02/25/2025

ADDmold for LSR

The goal of the DLR-IGF joint research project with SKZ is to produce high-quality, additive-manufactured, resin-based injection molds for liquid silicone rubber.

The target batch size is 10 to 50 components, each weighing 1 to 10 g. The particular challenge here lies in the durability and precision of the molds. Another advantage is the cost of the mold, which is expected to be significantly lower than that of steel injection molds. Special attention must be paid to the following properties:

  • The effects of the molding parameters on the tool’s subsequent performance are unknown and must be determined. In particular, continuous temperature control in the range of 130–150 °C, combined with dynamic stress caused by the clamping motion of the injection molding process, must be included in the working hypothesis.
  • Material aging of the mold increases with service life or depending on the process parameters. As the material ages, its mechanical properties—including stress, strain, tensile strength, and dimensional stability—will change.
  • The thermal expansion of the printed plastic must be determined in order to obtain precise cavity dimensions and installation dimensions. This may depend on the printing process.

The purpose of these studies is to enable mold makers to utilize additive manufacturing for small- and medium-volume production runs of LSR molds in the future. This will allow them to save costs on the one hand and respond very quickly to new products or product changes on the other. Mold makers in this industry are almost exclusively small and medium-sized enterprises (SMEs).

Image: IfW

Cured (150 °C, 10 min in the oven) LSR samples on two of the four inserts tested. Left: Mold insert made of Somos PerForm Reflect; right: Material sample made of EnvisionTec E-Mould