Ryan K Bergman, Age 538504 Belmor Lakes Dr, Mineral Wells, MS 38654

Ryan Bergman Phones & Addresses

8504 Belmor Lakes Dr, Olive Branch, MS 38654 (901) 351-6551

9650 Meade Cir, Olive Branch, MS 38654

Byhalia, MS

Memphis, TN

West Lafayette, IN

8504 Belmor Lakes Dr, Olive Branch, MS 38654

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Publications & IP owners

Us Patents

Measuring And Dispensing System For Solid Dry Flowable Materials

US Patent:
7075019, Jul 11, 2006
Filed:
Feb 15, 2002
Appl. No.:
10/466127
Inventors:
Ryan Keith Bergman - Olive Branch MS, US
Joseph Francis Gerling - West Grove PA, US
Assignee:
E. I. du Pont de Nemours and Company - Wilmington DE
International Classification:
G01G 13/00
G01G 13/18
G01G 11/08
B65B 1/32
US Classification:
177 59, 177105, 222 77, 141 83
Abstract:
An apparatus for measuring and dispensing solid dry flowable materials, comprising a supply container (), a reserve hopper (), a means for connecting said supply container () to said reserve hopper (), a means for weighing said reserve hopper () and a means for regulating the weight of said material dispensed from said reserve hopper ().

Self-Priming Transfer Pump With Quick Pump Attachment/Detachment

US Patent:
2022030, Sep 29, 2022
Filed:
Mar 22, 2022
Appl. No.:
17/655871
Inventors:
- Floyd IA, US
Ron Renkel - Floyd IA, US
Ryan Bergman - Memphis TN, US
Harley Thordson - Floyd IA, US
International Classification:
F04D 29/42
F04B 23/08
F04D 13/06
F04D 29/58
Abstract:
A self-priming transfer pump incudes fluid inlets and outlets that employ camlock fittings. The self-priming transfer pump also includes a unique motor plate and pump housing to allow a quarter-turn attachment after lining a splined motor shaft to a unique splined female mating portion. There exists a pump cartridge permanently affixed to the pump housing to eliminate user exposure and need for tools when replacing or changing out the pump. A quick connection and disconnection of pumping section from motor section requires no tools. An external locking mechanism prevents the pump section from rotating and disengaging from motor section. Multiple pump sections are usable with a single motor to prevent cross-contamination between products being pumped.

Mixing Systems, Methods, And Devices With Extendible Impellers

US Patent:
2017026, Sep 21, 2017
Filed:
May 31, 2017
Appl. No.:
15/610255
Inventors:
- Research Triangle Park NC, US
John F. GEE - Raleigh NC, US
Jeffrey R. SUSALLA - Apex NC, US
Ryan K. BERGMAN - Olive Branch MS, US
International Classification:
B01F 7/00
B01F 7/22
Abstract:
A mixing device includes a base, shaft, impeller sleeve, and impeller blades. The base can be constructed for releasable attachment to an opening of a container, such as a 55-gallon drum. The shaft extends from the base and is coupled thereto such that rotation can be transmitted to the shaft by way of or through the base. The impeller sleeve is mounted on the shaft and supports the impeller blades. Each impeller blade includes an attachment leg and a stirring leg extending from the attachment leg. The impeller blades are supported so as to transition from a collapsed position with the stirring leg proximal to a central axis of the shaft to an extended position with the stirring leg distal from the central axis when the shaft is rotated. Each impeller blade can be formed of a plastic, such as a glass-filled polypropylene or glass-filled nylon.

Mixing Systems, Methods, And Devices With Extendible Impellers

US Patent:
2015016, Jun 18, 2015
Filed:
Dec 17, 2014
Appl. No.:
14/572883
Inventors:
- Research Triangle Park NC, US
John F. GEE - Raleigh NC, US
Jeffrey R. SUSALLA - Apex NC, US
Ryan K. BERGMAN - Olive Branch MS, US
International Classification:
B01F 7/00
B01F 7/22
Abstract:
A mixing device includes a base, shaft, impeller sleeve, and impeller blades. The base can be constructed for releasable attachment to an opening of a container, such as a 55-gallon drum. The shaft extends from the base and is coupled thereto such that rotation can be transmitted to the shaft by way of or through the base. The impeller sleeve is mounted on the shaft and supports the impeller blades. Each impeller blade includes an attachment leg and a stirring leg extending from the attachment leg. The impeller blades are supported so as to transition from a collapsed position with the stirring leg proximal to a central axis of the shaft to an extended position with the stirring leg distal from the central axis when the shaft is rotated. Each impeller blade can be formed of a plastic, such as a glass-filled polypropylene or glass-filled nylon.

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