Our manufacturing technologies integrate all key process steps into a seamless solution—from Stamped Parts through various joining processes to the finished Assembly, with optional surface finishing available. The close integration of tooling design, automated manufacturing, and further processing results in stable, cost-effective series production processes.
This means we offer you not just individual manufacturing steps, but genuine added value in the form of efficiency, quality, and reliable production performance.
We offer a wide range of manufacturing technologies across the entire process chain: from Stamping and Forming Technology to tooling and automation solutions, as well as mechanical and thermal joining processes and Assembly Manufacturing.
Combined with the appropriate surface treatments, this results in cost-effective, precise, and mass-production-ready solutions from a single source—tailored to your requirements.
We process a wide range of metallic materials to meet various requirements and applications. These include steel, galvanized sheet metal, stainless steel, and aluminum in various grades and sheet thicknesses. Depending on the application and manufacturing process, we select the appropriate material to ensure optimal formability, stability, and cost-effectiveness in Mass Production / High-Volume Production.
Our manufacturing technologies are particularly cost-effective for medium- to high-volume serial production runs. Especially for more complex components involving multiple forming or bending operations, a well-designed tooling solution offers clear advantages in terms of quality and efficiency. Through automated processes, our technologies realize their full potential for larger production runs and enable consistently optimized unit costs.
Punching is a sheet metal forming process in which precise components are produced from Coil Stock / Strip Material through cutting and forming.
In a tool, multiple machining steps are often carried out as part of an automated process. This makes it possible to manufacture even complex geometries cost-effectively and with high Repeatability in large quantities.
There are various stamping processes, depending on the requirements for precision and part geometry. Conventional stamping focuses on cost-effectiveness and high production volumes. Fine blanking, on the other hand, produces particularly smooth cut edges and tight tolerances, but is used for more demanding applications. The choice of process depends on the component’s function, quality, and production volume.
In conventional punching, the sheet metal is separated by a cutting gap between the Punch and the Die.
During this process, the material first undergoes elastic-plastic deformation and then fractures uncontrollably. This fracturing results in the typical cut edge, consisting of a drawn-in section, a smooth zone, and a fracture zone. At the point where the material exits, a burr forms—a fine protrusion of material. Its height and severity depend, among other factors, on the cutting gap, the condition of the die, and the material.
Fischer Fertigungstechnik GmbH & Co. KG
Stadtring Nordhorn 111
33334 Gütersloh
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