Engen, Germany

Alexander Weh

USPTO Granted Patents = 2 

 

Average Co-Inventor Count = 4.5

ph-index = 2

Forward Citations = 8(Granted Patents)


Location History:

  • Bern, CH (2018)
  • Engen, DE (2021)

Company Filing History:


Years Active: 2018-2021

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2 patents (USPTO):Explore Patents

Title: Alexander Weh: Innovator in High-Voltage Fragmentation Technology

Introduction

Alexander Weh is a notable inventor based in Engen, Germany. He has made significant contributions to the field of material processing through his innovative methods involving high-voltage discharges. With a total of 2 patents, Weh's work focuses on enhancing the efficiency of fragmenting and weakening pourable materials.

Latest Patents

Weh's latest patents include a "Method and device for fragmenting and/or weakening pourable material by means of high-voltage discharges." This method involves guiding a material flow, immersed in a process liquid, past an electrode assembly using a conveying device. By applying high-voltage pulses to the electrode assembly, punctures are created through the material flow, facilitating its fragmentation. Another patent, titled "Method of fragmenting and/or weakening of material by means of high voltage discharges," describes a process where two electrodes face each other, generating high-voltage discharges to weaken or fragment the material within a process area filled with a process liquid.

Career Highlights

Alexander Weh is currently associated with Selfrag AG, a company that specializes in advanced material processing technologies. His work at Selfrag AG has positioned him as a key player in the development of innovative solutions for material fragmentation.

Collaborations

Weh collaborates with esteemed colleagues such as Jean-Pierre Aeby and Johannes Käppeler, contributing to the advancement of technology in their field.

Conclusion

Alexander Weh's innovative approaches to material processing through high-voltage discharges have established him as a significant figure in the industry. His patents reflect a commitment to enhancing the efficiency and effectiveness of material fragmentation techniques.

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