Location History:
- Nümberg, DE (2018)
- Nürnberg, DE (2014 - 2020)
- Nuremberg, DE (2015 - 2023)
Company Filing History:
Years Active: 2014-2023
Title: Michael Hacker: Innovator in Machining Technology
Introduction
Michael Hacker is a prominent inventor based in Nuremberg, Germany. He has made significant contributions to the field of machining technology, holding a total of 10 patents. His innovative designs focus on improving the efficiency and precision of machining tools.
Latest Patents
Among his latest patents are a machining tool and a processing device designed for the efficient processing of workpieces. The machining tool is specifically engineered for processing a bore in a workpiece, allowing for the simultaneous processing of multiple bores that are distanced from one another by a predefined distance. This tool features a cutting body that extends along the tool's longitudinal axis and includes at least one circumferentially arranged cutting element. Additionally, the guide body is designed to exert a preload force, ensuring that the guide element maintains contact with a bearing during use. Another notable patent involves a rotary tool for precision machining of drilled holes, which enhances the alignment of the reamer and improves the quality of the drilled holes.
Career Highlights
Michael Hacker is currently employed at Kennametal Inc., a company renowned for its advanced manufacturing solutions. His work at Kennametal has allowed him to develop innovative tools that significantly enhance machining processes. His expertise in this field has positioned him as a key player in the industry.
Collaborations
Michael collaborates with talented coworkers, including Sebastian Kunschir and Xaver Spichtinger. Their combined efforts contribute to the development of cutting-edge technologies in machining.
Conclusion
Michael Hacker's contributions to machining technology through his patents and work at Kennametal Inc. highlight his role as an influential inventor. His innovative designs continue to shape the future of machining processes.