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Working together in the early 1970s at
Corning Inc. in Corning, N.Y., Lachman, Bagley and Lewis all used cellular ceramic technology to create the ceramic honeycomb that became the essential core component of catalytic converters. Lachman and Lewis worked on the project for two years to develop a new
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Lachman and his colleagues were critical in developing an efficient and feasible catalytic converter. Lachman realized ceramics could be ideally suited to meet the demands placed on a catalytic converter. The composition he worked on offered better resistance to sudden and extreme temperature
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at a White House ceremony. The team also won the
International Ceramics Prize of the Academy for the Advanced Ceramics industry in 1996. Lachman holds 47 U.S. patents, and has authored numerous technical papers.
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ceramic material that had all the key characteristics they needed: high temperature durability, low thermal expansion, low thermal conductivity at high temperatures, light weight and controlled porosity.
159:. While working at Corning, Irwin Lachman co-invented the ceramic substrate found in almost all catalytic converters, which greatly reduce the amount of harmful pollutants in automotive emissions.
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Irwin M. Lachman was born in
Brooklyn, New York in 1930, but raised in Roosevelt, New Jersey. He graduated in 1948 from Upper Freehold Township High School, now called Allentown High School.
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before joining
Corning’s ceramic research department in 1960. Lachman retired in 1994 and pursued his artistic interests by creating monoprints that he exhibits at galleries and shows.
318:"The Class of 2002: They invented Lasik surgery, seat belts, and aspirin, among other things" By Jim Quinn, Invention and Technology Magazine, Fall 2002, Vol 18, Issue 2.
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President George W. Bush awards the 2003 National Medal of
Technology award to Corning Inc., scientists Ronald M. Lewis, left, Irwin Lachman, center, and Rodney D. Bagley
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Role of ceramics in a self-sustaining environment : discussions of the
Academy of ceramics Forum '96, Krakow, Poland
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from gasoline as an additive, their device offered a secondary benefit to the environment by reducing lead pollution.
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fluctuations. Lachman’s fundamental ceramics technology ultimately decreases pollution released into the environment
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for automobiles operating internal combustion engines. In addition to Irwin
Lachman, the team consisted of engineer
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327:"President awards national science and technology medals" from Associated Press in USAToday, March 14, 2005
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386:"Ceramics in a Self-Sustaining Environment Discussed at the 2nd Forum of the Academy of Ceramics"
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and reduced polluting emissions from the combustion process by 95%. Additionally, because the
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267:"Irwin M. Lachman, Ph.D: Engineer, Co-Inventor of the Practical Catalytic Converter"
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79:(born August 2, 1930), is an American engineer, and is a co-inventor of the
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in 1952, and then a M.S. and a Ph.D. in ceramic engineering while at
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Lachman, along with Bagley and Lewis, were inducted into the
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111:). He received a B.S. in ceramic engineering from
342:. R. Pampuch, K. Haberko. Faenza: Techna. 1997.
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192:National Inventors Hall of Fame
194:in 2002 and received the 2003
175:they used in their invention,
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419:American automotive engineers
91:Lachman was born August 2 in
16:American engineer (born 1930)
296:"Biography of Irwin Lachman"
196:National Medal of Technology
125:Sandia National Laboratories
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38:, New York, United States
219:Staff (March 14, 2005).
121:United States Air Force
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300:www.newmexicoearth.com
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117:Ohio State University
109:Allentown High School
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169:Clean Air Act (1970)
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233:. Retrieved
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434:1930 births
403:Categories
305:2023-07-09
281:2015-12-30
203:References
105:New Jersey
59:Occupation
366:cite book
87:Biography
70:1952-1994
358:37643394
177:platinum
173:catalyst
97:New York
93:Brooklyn
62:Engineer
36:Brooklyn
391:. 1996.
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389:(PDF)
372:link
354:OCLC
344:ISBN
237:2011
181:lead
131:Work
29:Born
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