Tetbury, United Kingdom

Edward G Morley


Average Co-Inventor Count = 2.8

ph-index = 2

Forward Citations = 11(Granted Patents)


Location History:

  • Tetbury, GB (1978)
  • Malmesbury, GB (1980)
  • Charlton, GB (1981)

Company Filing History:


Years Active: 1978-1981

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3 patents (USPTO):Explore Patents

Title: Edward G. Morley: Innovator in Hydraulic Pump Technology

Introduction

Edward G. Morley is a notable inventor based in Tetbury, Great Britain. He has made significant contributions to the field of hydraulic pump technology, holding a total of three patents. His innovative designs have advanced the efficiency and functionality of hydraulic systems.

Latest Patents

Morley's latest patents include a "Hydraulic variable-displacement axial piston pump having torque" and a "Hydraulic pump with an improved sealing arrangement." The first patent describes a hydraulic variable-displacement axial piston pump that features a swash means designed to move to a de-swashed condition during operation. It incorporates a torque limiting device that enhances the pump's performance by controlling the flow of fluid based on the discharge pressure. The second patent outlines a pump design that includes a unique sealing arrangement, which utilizes both flexible and non-flexible ring members to prevent sudden increases in pump inlet pressure, thereby ensuring reliable operation.

Career Highlights

Edward G. Morley is associated with Plessey Handel und Investments A.G., where he has applied his expertise in hydraulic technology. His work has contributed to the development of advanced hydraulic systems that are crucial in various industrial applications.

Collaborations

Morley has collaborated with notable colleagues, including John A. Hudson and Nicholas A. James. Their combined efforts have fostered innovation and progress in hydraulic technology.

Conclusion

Edward G. Morley's contributions to hydraulic pump technology through his patents and collaborations highlight his role as a significant inventor in this field. His work continues to influence the design and functionality of hydraulic systems today.

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