Achieve maximum return from every wire EDM machine.
Consistent concentration for accurate production.
Optimal air quality in every production environment.
Even minor variations in temperature or coolant conditions directly affect dimensional accuracy. Stable process conditions are required to maintain reproducible tolerances across all machining operations.
Within the high-tech industry, even minimal temperature fluctuations affect form accuracy, flatness and contour precision. A stable thermal environment is essential for reproducible results in fine mechanical and micron-level machining.
Fluctuations in coolant concentration or temperature disrupt heat dissipation and process stability at micron level. Accurate control and continuous filtration prevent variation and support consistent quality in high-precision machining.
Oil mist and micro-particles cause deposits on components, sensors and measuring equipment. A controlled and clean airflow supports reliable metrology, accurate inspection and error-free assembly.
Unplanned downtime caused by contamination or unstable process conditions disrupts lead times and production planning. Continuous process control is critical for stable production in fine mechanical and high-tech environments.
High-tech production requires controlled process conditions and consistent dimensional accuracy. Our systems support critical machining operations, ensuring accuracy, throughput and quality remain predictable, even for complex and temperature-sensitive processes.
We assess the process conditions within your production environment and determine which systems are required to achieve reproducible machining results.
In high-tech production, every variation matters. Dependable maintenance keeps your process stable so dimensional accuracy and reproducibility are maintained. Service moments are fixed, filters are cleaned or replaced on time, and system conditions and air quality are monitored.
After each service visit, you receive a clear report with system status and next steps. This provides insight, prevents disruptions and keeps machining processes predictable.
Our systems support stable process conditions by keeping coolant, oil and air quality consistent. This limits temperature fluctuations and contamination, ensuring tolerances remain reproducible. MP Solutions advises the configuration that aligns with your machining operations and accuracy requirements.
Fluctuations in Brix, pH and temperature directly affect dimensional accuracy and surface quality. Automatic coolant monitoring keeps these values stable, even during long cycles and unattended production, supporting a predictable machining process.
Mist extraction prevents disruption of air quality and thermal balance within the production environment. This is essential for accurate machining, stable measurement results and protection of sensitive components in high-tech production.
Effective filtration prevents the build-up of micro-contamination that can cause heat peaks, blockages or accelerated wear. This keeps processes stable, increases machine reliability and maintains consistent quality in fine mechanical machining.
MP Solutions analyses your machining operations, tolerances and sensitivity to temperature, contamination and process variation. Based on this, we advise a configuration in which systems, settings and technical expertise work together to deliver the required process stability, including for high-precision and wire EDM applications.
Wire EDM processes operate at micron level. Small deviations in machine conditions or consumables directly affect cutting quality, contour accuracy and repeatability. Proper alignment of machine, consumables and expert process advice ensures clean and reproducible wire EDM geometries.
Stable and controlled process conditions are essential for applications such as:
Our specialists are happy to support you in creating a stable production environment, reliable filtration and accurate machining processes within the high-tech industry. Plan a consultation and receive personal advice for your production environment.