DR. YANG LU, M.D., PH.D.
Medical Practice at Holcombe Blvd, Houston, TX

License number
Texas 336090464
Category
Medical Practice
Type
Nuclear Medicine
License number
Texas R1575
Category
Medical Practice
Type
Nuclear Medicine
Address
Address
1515 Holcombe Blvd, Houston, TX 77030
Phone
(713) 792-6161
(713) 792-2991

Personal information

See more information about YANG LU at radaris.com
Name
Address
Phone
Yang Lu
3643 Buchanan Hill Ln, Katy, TX 77494
Yang Lu
810 Penstemon Trl, San Antonio, TX 78256
Yang Lu
810 Penstemon Trl, San Antonio, TX 78256
Yang Lu
810 Persimmon Wl, San Antonio, TX 78256
Yang Lu
6805 Bankhead Ln, Plano, TX 75074

Professional information

See more information about YANG LU at trustoria.com
Yang Lu Photo 1
Yang Lu - Houston, TX

Yang Lu - Houston, TX

Work:
Grace Computer & Internet
Computer Technician & Website Maintainer
University of Houston - Houston, TX
Research Assistant--- Wireless Sensor Network
University of Houston - Houston, TX
Lab Instructional Assistant
Education:
University of Houston - Houston, TX
Master of Science in Engineering Technology
Hebei University of Science and Technology
Bachelor of Electrical Engineering in Telecommunication
Skills:
Labview, SQL, NESC, Html5, CSS3, JavaScript, Matlab, Linux, VHDL, Keil, Microsoft Office Software, Photoshop


Yang Lu Photo 2
Micromechanical Devices For Materials Characterization

Micromechanical Devices For Materials Characterization

US Patent:
8058613, Nov 15, 2011
Filed:
Oct 28, 2009
Appl. No.:
12/607550
Inventors:
Jun Lou - Houston TX, US
Yogeeswaran Ganesan - Houston TX, US
Yang Lu - Houston TX, US
Cheng Peng - Houston TX, US
Assignee:
William Marsh Rice University - Houston TX
International Classification:
G01N 23/225, G01N 3/42, G01N 3/48
US Classification:
250310, 25044211, 73 78, 73 81, 73 82
Abstract:
The present disclosure describes micromechanical devices and methods for using such devices for characterizing a material's strength. The micromechanical devices include an anchor pad, a top shuttle platform, a nanoindenter in movable contact with the top shuttle platform and at least two sample stage shuttles. The nanoindenter applies a compression force to the top shuttle platform, and the at least two sample stage shuttles move apart in response to the compression force. Each of the at least two sample stage shuttles is connected to the top shuttle platform and to the anchor pad by at least one inclined beam. Methods for using the devices include connecting a sample between the at least two sample stage shuttles and applying a compression force to the top shuttle platform. Application of the compression force to the top shuttle platform results in a tensile force being applied to the sample. Measuring a tip displacement of the nanoindenter is correlated with the sample's strength.