Michael Edwin Gaillard, Age 793401 W 74Th St, Prairie Village, KS 66208

Michael Gaillard Phones & Addresses

Prairie Village, KS

Fernandina Beach, FL

921 Rustic Rdg, Joplin, MO 64804

1027 4Th St, Joplin, MO 64801

Cassville, MO

Palestine, TX

Overland Park, KS

Columbia, MO

1027 W 4Th St, Joplin, MO 64801 (904) 382-7264

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Work

Position: Machine Operators, Assemblers, and Inspectors Occupations

Mentions for Michael Edwin Gaillard

Michael Gaillard resumes & CV records

Resumes

Michael Gaillard Photo 33

Architectural Manager At Rosemann & Associates, Pc

Location:
Kansas City, Missouri Area
Industry:
Architecture & Planning
Michael Gaillard Photo 34

Michael Gaillard

Michael Gaillard Photo 35

Michael Gaillard

Michael Gaillard Photo 36

Michael Gaillard

Publications & IP owners

Us Patents

Outlet Check Valve

US Patent:
2007021, Sep 20, 2007
Filed:
Mar 15, 2006
Appl. No.:
11/376407
Inventors:
Daniel Goodhope - Joplin MO, US
Michael Gaillard - Joplin MO, US
International Classification:
F16K 15/04
US Classification:
137512100, 137533110
Abstract:
An outlet check valve for use with a high pressure pump and having a retainer with an inlet cavity at one end. A retainer cavity extends between the inlet cavity and an opposite end. The retainer cavity has a volume for receiving a portion of the valve element and a plurality of flow passages that surround the retainer cavity and extend between the inlet cavity and the opposite end. The inlet cavity and the plurality of flow passages conduct a flow of high pressure fluid through the retainer.

Inlet Check Valve

US Patent:
6021810, Feb 8, 2000
Filed:
May 14, 1999
Appl. No.:
9/312138
Inventors:
Michael E. Gaillard - Joplin MO
Steve W. Balls - Joplin MO
Assignee:
Waterjet Service, Inc. - Joplin MO
International Classification:
F16K 1500
US Classification:
137533
Abstract:
A check valve assembly mounted on an end surface of a projection of a valve body. The check valve assembly includes a valve having a curved sealing surface disposed adjacent a fluid inlet intersecting the end surface of the projection. The check valve assembly further includes a rigid mounting plate having a cavity that receives and maintains the valve between the cavity and the fluid inlet. The curved surface of the valve partially extends into the fluid inlet and has a circular line of contact against the end surface of the projection around the fluid inlet to define a closed valve position. The valve is positioned away from the closed valve position to define an open valve position.

Inlet Check Valve

US Patent:
5904179, May 18, 1999
Filed:
Nov 14, 1997
Appl. No.:
8/971027
Inventors:
Michael E. Gaillard - Joplin MO
Steve W. Balls - Joplin MO
Assignee:
Waterjet Service, Inc. - Joplin MO
International Classification:
F16K15/00
US Classification:
137533
Abstract:
A check valve assembly mounted on an end surface of a projection of a valve body. The check valve assembly includes a valve having a sealing surface on one side and a stem on an opposite side, and the valve body includes a fluid inlet intersecting the end surface of the projection. A rigid mounting plate has a first locating element adapted to locate the mounting plate with respect to the end surface on the projection. The mounting plate has a second locating element adapted to receive a fastener for attaching the mounting plate to the end surface of the projection. A clearance hole in the mounting plate is sized to receive the stem of the valve. The stem of the valve moves freely within the first clearance hole thus permitting the valve to move freely between open and closed positions.

High-Pressure Cylinder Assembly For Waterjet Intensifier Pumps, And Related Methods

US Patent:
2016029, Oct 13, 2016
Filed:
Apr 7, 2015
Appl. No.:
14/680603
Inventors:
- Joplin MO, US
Michael E. Gaillard - Joplin MO, US
International Classification:
F04B 9/117
Abstract:
A high-pressure cylinder assembly for use with a waterjet intensifier pump includes a cylinder having a through bore and a radially inner surface extending along a length of the cylinder. A ceramic liner is provided in the through bore and contacts the radially inner surface of the cylinder. A first high-pressure seal is provided in the through bore of the cylinder and is constrained at a first end of the through bore. A second high-pressure seal is provided in the through bore and is constrained at a second end of the through bore. The first and second high-pressure seals are configured to maintain a sealed environment within the high-pressure cylinder assembly during operation of the waterjet intensifier pump.

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