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US Patent 9284824 Method and apparatus for expendable tubing-conveyed perforating gun

Patent 9284824 was granted and assigned to Halliburton on March, 2016 by the United States Patent and Trademark Office.

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Is a
Patent
Patent
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Patent attributes

Patent Applicant
Halliburton
Halliburton
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Current Assignee
Halliburton
Halliburton
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Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
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Patent Number
92848240
Patent Inventor Names
John Hales0
Bryan Powell0
Dennis Crowdis0
Javier Fadul0
Michael Fripp0
Paul Herman0
Paul Ringgenberg0
Randy Moore0
Date of Patent
March 15, 2016
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Patent Application Number
140473550
Date Filed
October 7, 2013
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Patent Citations Received
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US Patent 12060778 Perforating gun assembly
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US Patent 12078038 Perforating gun orientation system
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US Patent 12091919 Bulkhead
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US Patent 11661824 Autonomous perforating drone
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US Patent 11661823 Perforating gun assembly and wellbore tool string with tandem seal adapter
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US Patent 11686195 Downhole switch and communication protocol
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US Patent 11713625 Bulkhead
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US Patent D1041608 Outer connector
0
...
Patent Primary Examiner
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William P. Neuder
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Patent abstract

Methods and apparatus are presented for a “disappearing” perforator gun assembly. In a preferred method of perforating a well casing, inserted into the well casing is a tubing conveyed perforator having an outer tubular made from a metallic glass alloy having high strength and low impact resistance. An inner structure is positioned within the outer tubular and holds one or more explosive charges. Upon detonating the explosive charges, the outer tubular is fragmented. The inner structure is preferably also substantially destroyed upon detonation of the one or more explosive charges. For example, the inner structure can be made from a combustible material, corrodible, dissolvable, etc., material. A disintegration-enhancing material is optionally positioned between the outer tubular and the inner structure. Additional embodiments are presented having gun housings which dematerialize upon detonation of the charges.

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