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Joseph W Hsieh, 544 Connor Ct, Trenton, NJ 08690

Joseph Hsieh Phones & Addresses

4 Connor Ct, Trenton, NJ 08690    908-8751992   

Hamilton, NJ   

Princeton, NJ   

Franklin Park, NJ   

Plainsboro, NJ   

Highland Park, NJ   

Harrison, NJ   

Kerman, CA   

Work

Company: Full-time church service and bible truth school (ftta) Aug 2012 Position: Post-graduate program

Education

School / High School: Drexel University- Philadelphia, PA 2007 Specialities: Bachelor's in Materials Engineering

Mentions for Joseph W Hsieh

Joseph Hsieh resumes & CV records

Resumes

Joseph Hsieh Photo 39

Joseph Hsieh

Joseph Hsieh Photo 40

Joseph Hsieh

Joseph Hsieh Photo 41

Joseph Hsieh

Joseph Hsieh Photo 42

Joseph Hsieh

Location:
United States
Joseph Hsieh Photo 43

Joseph Hsieh

Location:
United States
Joseph Hsieh Photo 44

Joseph Hsieh

Location:
United States
Joseph Hsieh Photo 45

Joseph Hsieh - Honey Brook, PA

Work:
Full-Time Church Service and Bible Truth School (FTTA) Aug 2012 to 2000
post-graduate program
Dynamic Characterization Group - Philadelphia, PA Mar 2011 to Jun 2012
Undergraduate researcher (full-time), Dynamic Characterization Group
Carpenter Technology - Reading, PA Mar 2010 to Sep 2010
Technical Services, Forge Bar and Billet Co-op (FBB)
Carpenter Techonolgy - Reading, PA Mar 2009 to Sep 2009
Technical Services, Strip and Wire Co-op
Education:
Drexel University - Philadelphia, PA 2007 to 2012
Bachelor's in Materials Engineering

Publications & IP owners

Us Patents

Selective Grain Boundary Engineering

US Patent:
2020002, Jan 23, 2020
Filed:
Feb 1, 2019
Appl. No.:
16/265243
Inventors:
Mitra Lenore Taheri - Philadelphia PA, US
Daniel Scotto D'Antuono - Philadelphia PA, US
Joseph Hsieh - Honey Brook PA, US
Assignee:
Drexel University - Philadelphia PA
International Classification:
C22F 1/047
C22C 21/08
C21D 9/46
C21D 8/02
C21D 1/26
C21D 1/84
C22C 21/06
Abstract:
A process for grain boundary engineering of an aluminum alloy of AA5XXX series which includes steps of annealing the aluminum alloy at a first temperature of from about 350 C. to about 450 C.; deforming the annealed aluminum alloy to reduce the thickness by from about 2% to about 20% of the original thickness of the aluminum alloy; heat treating the deformed aluminum alloy at a second temperature from about 450 C. to about 550 C., and optionally sensitizing the heat treated alloy in one or more sensitizing steps. Aluminum alloys of the AA5XXX series treated by the process of the present invention are also provided.

Selective Grain Boundary Engineering

US Patent:
2016020, Jul 14, 2016
Filed:
Aug 21, 2014
Appl. No.:
14/910272
Inventors:
Mitra Lenore TAHERI - Philadelphia PA, US
Daniel Scotto D'ANTUONO - Philadelphia PA, US
Joseph HSIEH - Honey Brook PA, US
Assignee:
Drexel University - Philadelphia PA
International Classification:
C22F 1/047
C21D 1/84
C21D 8/02
C21D 1/26
C22C 21/08
C21D 9/46
Abstract:
A process for grain boundary engineering of an aluminum alloy of AA5XXX series which includes steps of annealing the aluminum alloy at a first temperature of from about 350 C. to about 450 C.; deforming the annealed aluminum alloy to reduce the thickness by from about 2% to about 20% of the original thickness of the aluminum alloy; heat treating the deformed aluminum alloy at a second temperature from about 450 C. to about 550 C., and optionally sensitizing the heat treated alloy in one or more sensitizing steps. Aluminum alloys of the AA5XXX series treated by the process of the present invention are also provided.

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