Frisco, TX, United States of America

David Symon Grant

USPTO Granted Patents = 6 

Average Co-Inventor Count = 3.4

ph-index = 1


Company Filing History:


Years Active: 2021-2025

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6 patents (USPTO):Explore Patents

Title: The Innovative Contributions of David Symon Grant

Introduction

David Symon Grant is a notable inventor based in Frisco, TX (US), recognized for his significant contributions to the field of downhole tools and hydraulic systems. With a total of 6 patents to his name, Grant has made strides in enhancing the efficiency and functionality of wellbore technology.

Latest Patents

Among his latest innovations is a wellbore anchor that includes one or more activation chambers. This anchor is designed for use with downhole tools in a wellbore and features a base pipe along with expandable chambers that can transition from a collapsed state to an activated state. These chambers are capable of handling at least 20.7 Bar of internal pressure in the activated state, allowing them to effectively engage the wall of a wellbore. Another significant patent is for a hydraulic screen that incorporates a joint with a flow path. This apparatus is essential for activating chambers of downhole hydraulic screens and consists of an outer sleeve, an inner sleeve, and a flow path that facilitates fluid movement between hydraulic screens.

Career Highlights

David Symon Grant is currently employed at Halliburton Energy Services, Inc., a leading company in the energy sector. His work focuses on developing innovative solutions that improve the performance of downhole tools, contributing to advancements in oil and gas extraction technologies.

Collaborations

Throughout his career, Grant has collaborated with talented individuals such as Ryan Wesley McChesney and Gordon McLeary, further enhancing the innovative capabilities of his projects.

Conclusion

David Symon Grant's contributions to the field of downhole technology exemplify the impact of innovation in the energy sector. His patents reflect a commitment to improving operational efficiency and safety in wellbore applications.

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