Espoo, Finland

Jyri Juhala


 

Average Co-Inventor Count = 3.0

ph-index = 1


Company Filing History:


Years Active: 2019

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1 patent (USPTO):Explore Patents

Title: Jyri Juhala: Innovator in Pressure Accumulator Technology

Introduction

Jyri Juhala is a notable inventor based in Espoo, Finland. He has made significant contributions to the field of hydraulic systems, particularly with his innovative designs that enhance efficiency and functionality. His work is recognized for its practical applications in various industries.

Latest Patents

Jyri Juhala holds a patent for a "Plunger Pressure Accumulator." This invention features a shell and a plunger that moves relative to the shell into an interior space. The interior space is divided into at least two subspaces, with one subspace supplied with hydraulic fluid from an external system and the other containing pressurized gas. A slide element is arranged between the plunger and the shell, allowing the plunger to move away from the internal surfaces of both subspaces. Additionally, the accumulator is equipped with at least one regenerator that remains stationary relative to either the shell or the plunger. This innovative design enhances the performance and reliability of hydraulic systems.

Career Highlights

Jyri Juhala is affiliated with the Aalto University Foundation, where he contributes to research and development in engineering and technology. His work at the university allows him to collaborate with other experts in the field and to further his research on hydraulic systems and their applications.

Collaborations

Jyri has worked alongside notable colleagues such as Jyrki Kajaste and Kari Saari. Their collaborative efforts have contributed to advancements in their respective fields and have fostered a productive research environment.

Conclusion

Jyri Juhala's contributions to the field of hydraulic technology, particularly through his plunger pressure accumulator patent, demonstrate his innovative spirit and commitment to engineering excellence. His work continues to influence the development of efficient hydraulic systems.

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