A high strength, high creep resistant, boron-doped, silicon carbon fiber having no boron nitride coating, originally formed by sintering, is produced by exposing the fiber to a nitrogen atmosphere at a temperature equal to or preferably elevated above the sintering temperature and also exposing the fiber to a carbon monoxide-containing atmosphere at a temperature sufficient to remove boron and boron nitride. The nitrogen atmosphere step may be performed before or after the carbon monoxide-containing atmosphere step. The resulting, uncoated SiC fibers have tensile strengths greater than approximately 2. 0 GPa and Morscher-DiCarlo BSR test creep resistance M values greater than approximately 0. 75 at 1400 degrees C for one hour in argon. The method is applicable to non-sintered fibers as well, in which case the nitrogen exposure is carried out at between approximately 1750 to 2250 degrees C and the carbon monoxide exposure is carried out at between approximately 1600 to 2200 degrees C.
Silicon carbide (SiC) fibers, or SiC bodies such as coatings, thin films, substrates or bulk objects, which have been sintered with boron containing additives to promote densification and pore removal, are further treated to remove a substantial amount of the residual boron from the SiC fibers. The SiC fibers, subsequent to the sintering steps and either before or after cooling, are exposed to a carbon monoxide (CO) containing atmosphere at elevated temperatures from approximately 1600-2200. degree. C. , but more preferably from approximately 1700-2000. degree. C. , with treatment times ranging from seconds to hours to days depending on the chosen treatment temperature. The resulting SiC fibers show a significant reduction of residual boron content, a reduction of greater than 90% in some cases, while retaining high tensile strength. Fibers with less than 0. 1 wt % residual boron have been obtained.
Alumina-Or Alumina/Zirconia-Silicon Carbide Whisker Ceramic Composites And Methods Of Manufacture
A SiC whisker-reinforced ceramic article produced by subjecting the SiC whiskers to acid- and/or base-washing; subjecting ceramic particles and SiC whiskers to fluid classification; forming a suspension of the powdered ceramic and SiC whiskers; consolidating the suspension to form a green compact; optionally infiltrating the green compact with an aluminum compound which is a precursor to Al. sub. 2 O. sub. 3, and pressureless sintering the green compact to produce an SiC whisker-reinforced composite having high relative density at high SiC whisker loading.
A high strength, high creep resistant, boron-doped, silicon carbon fiber having no boron nitride coating, originally formed by sintering, is produced by exposing the fiber to a nitrogen atmosphere at a temperature equal to or preferably elevated above the sintering temperature and also exposing the fiber to a carbon monoxide-containing atmosphere at a temperature sufficient to remove boron and boron nitride. The nitrogen atmosphere step may be performed before or after the carbon monoxide-containing atmosphere step. The resulting, uncoated SiC fibers have tensile strengths greater than approximately 2. 0 GPa and Morscher-DiCarlo BSR test creep resistance M values greater than approximately 0. 75 at 1400 degrees C. for one hour in argon.
Silicon Carbide Fibers With Boron Nitride Coatings
A process for forming a uniform, boron nitride coating on a boron-doped, refractory carbide body, and in particular on a sintered, boron-doped, silicon carbide fiber, where the body is exposed to a nitrogen-containing atmosphere at a temperature equal to or greater than the densification or sintering temperature. The coated fibers exhibit no loss in strength properties and show improved creep resistance.
Silicon Carbide Fibers With Boron Nitride Coatings
A process for forming a uniform, boron nitride coating on a boron-doped, refractory carbide body, and in particular on a sintered, boron-doped, silicon carbide fiber, where the body is exposed to a nitrogen-containing atmosphere at a temperature equal to or greater than the densification or sintering temperature. The coated fibers exhibit no loss in strength properties and show improved creep resistance.
Michael D. Sacks - Gainesville FL William Toreki - Gainesville FL Christopher D. Batich - Gainesville FL Guang J. Choi - Seoul, KR
Assignee:
University of Florida - Gainesville FL
International Classification:
C04B 35565
US Classification:
264625
Abstract:
A method of preparing polymer derived silicon fibers comprising the steps of providing a spin dope solution comprising a silicon carbide forming organosilicon polymer, preferably polycarbosilane, a solvent, a soluble boron precursor, preferably solid boron hydride, and a nitrogen containing precursor, preferably polyvinylsilazane; spinning the solution to form high strength green fibers; and heat treating the green fibers to produce high strength, homogeneously doped, boron containing fibers. The fibers produced are high strength, homogeneously boron doped silicon carbide fibers with average tensile strength in the range of from about 2. 0 to 4. 0 GPa at room temperature.
Michael D. Sacks - Gainesville FL William Toreki - Gainesville FL Christopher D. Batich - Gainesville FL Guang J. Choi - Seoul, KR
Assignee:
University of Florida - Gainesville FL
International Classification:
C04B 35565 C04B 3552
US Classification:
501 951
Abstract:
A method of preparing polymer derived silicon fibers comprising the steps of providing a spin dope solution comprising a silicon carbide forming organosilicon polymer, preferably polycarbosilane, a solvent, a soluble boron precursor, preferably solid boron hydride, and a nitrogen containing precursor, preferably polyvinylsilazane; spinning the solution to form high strength green fibers; and heat treating the green fibers to produce high strength, homogeneously doped, boron containing fibers. The fibers produced are high strength, homogeneously boron doped silicon carbide fibers with average tensile strength in the range of from about 2. 0 to 4. 0 GPa at room temperature.
UC Irvine - University of California, Irvine, Department of Economics since Aug 2011
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Nordstrom Apr 2008 - May 2009
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Sears Holdings Corporation May 2007 - Jan 2008
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Sears Holdings Corporation Dec 2006 - May 2007
Service Writer in the Automotive Center
Education:
University of California, Irvine 2011 - 2016
Doctor of Philosophy (Ph.D.), Economics
University of California, Irvine 2011 - 2013
M.A., Economics
Towson University 2006 - 2010
B.S., Economics
Palatine Capital Partners since Jan 2013
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CIM Group Aug 2011 - Jan 2013
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CIM Group Aug 2009 - Jul 2011
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THL Credit Group Jul 2008 - Sep 2008
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BA, Economics and History
Harvard-Westlake 1999 - 2005
AustraliaProfessor of Surgery at Hospital I am currently working in Adelaide,Australia as the University of Adelaide Professor of Breast and Reconstructive Surgery based at the Lyell McEwin Hospital.I... I am currently working in Adelaide,Australia as the University of Adelaide Professor of Breast and Reconstructive Surgery based at the Lyell McEwin Hospital.I originally trained at the University of Melbourne and then the Royal Melbourne Hospital in both Breast and Plastic Surgery.I then went to the...
Other sources said state Comptroller Susana Mendoza, former White House chief of staff Bill Daley and GCM Grosvenor CEO Michael Sacks, Emanuels close friend, confidant and top campaign donor, also are making calls to weigh bids.
l Sneed: "GCM Grosvenor CEO Michael Sacks, a top personal adviser to Mayor Rahm Emanuel, informed his firm that Grosvenor managing director Jeremy Katz is leaving to serve as deputy director of the National Economic Council as well as a deputy assistant to the president.Katz, 39, a Chicago native
Date: Jan 19, 2017
Category: World
Source: Google
Open records experts see loopholes in Emanuel's email lawsuit settlement
That ongoing suit is based on an open records request that sought electronic communications related to subjects that include the city's scandal-plagued red light camera program, as well as email and text correspondence between Emanuel and Michael Sacks, the mayor's close confidant and top campaign c
The Tribune lawsuit stemmed from an open records request for electronic communications related to subjects that include the city's scandal-plagued red light camera program, as well as email and text correspondence between Emanuel and Michael Sacks, the mayor's close confidant and top campaign donor.
Date: Dec 21, 2016
Category: U.S.
Source: Google
Sneed: Pope elevates Chicago archbishop to cardinal
At a private dinner Friday night put onby Mayor Emanuel for an eclectic group of 22 friends, which included Senate President John Cullerton, Rahms best friend/investment guru Michael Sacks and restauranteur Phil Stefani, Cupich showed up as a surprise guest for a glass of wine.
Date: Nov 19, 2016
Category: U.S.
Source: Google
KIRK's stunning debate moment -- LIFT donors revealed -- CUBS back home
documents made public Thursday indicate. Names of the Democratic donors who poured millions into the PAC were made public late Thursday. Financial heavy-hitters for Democrats as well as labor groups were on the list. Some examples: Michael Sacks at $2.5 million; Fred Eychaner in for $1 million; J.B.
Date: Oct 28, 2016
Category: U.S.
Source: Google
Rauner Says Emanuel Is 'Biggest Disappointment' Of His Time As Governor
Despite the strong criticisms of Emanuel and the management of Chicago Public Schools, Rauner said he spent the weekend talking with Emanuel, mayoral advisor Michael Sacks and Democratic lawmakers. The House of Representatives is scheduled to return to Springfield on Wednesday.
Date: Jun 06, 2016
Category: U.S.
Source: Google
Morning Spin: What you need to know on Election Day
*State Rep. Christian Mitchell, facing a Democratic primary rematch against Jay Travis, reported $48,000in contributions, led by $25,000 from Michael Sacks, the Grosvenor Capital CEO and confidant of Mayor Rahm Emanuel.
Meadowbrook Elementary School Northbrook IL 1994-2000, Northbrook Junior High School Northbrook IL 2000-2003, Glenbrook North High School Northbrook IL 2003-2007
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