FLUOR CORP has a total of 714 patent applications. Its first patent ever was published in 1930. It filed its patents most often in United States, Canada and WIPO (World Intellectual Property Organization). Its main competitors in its focus markets chemical engineering, environmental technology and materials and metallurgy are LINDE AKTSIENGEZELLSHAFT, ENERFEX INC and SUZHOU XINGLU AIR SEPARATION PLANT SCIENCE AND TECH DEVELOPMENT CO LTD.
# | Country | Total Patents | |
---|---|---|---|
#1 | United States | 205 | |
#2 | Canada | 96 | |
#3 | WIPO (World Intellectual Property Organization) | 69 | |
#4 | EPO (European Patent Office) | 54 | |
#5 | Australia | 46 | |
#6 | United Kingdom | 37 | |
#7 | Mexico | 30 | |
#8 | China | 23 | |
#9 | South Africa | 21 | |
#10 | Norway | 20 | |
#11 | France | 16 | |
#12 | EAPO (Eurasian Patent Organization) | 13 | |
#13 | Germany | 12 | |
#14 | Spain | 10 | |
#15 | Belgium | 8 | |
#16 | Brazil | 8 | |
#17 | Netherlands | 7 | |
#18 | Japan | 5 | |
#19 | Republic of Korea | 5 | |
#20 | Denmark | 4 | |
#21 | Italy | 3 | |
#22 | New Zealand | 3 | |
#23 | Argentina | 2 | |
#24 | Indonesia | 2 | |
#25 | Ireland | 2 | |
#26 | India | 2 | |
#27 | Russian Federation | 2 | |
#28 | Austria | 1 | |
#29 | Switzerland | 1 | |
#30 | Colombia | 1 | |
#31 | Estonia | 1 | |
#32 | Greece | 1 | |
#33 | Hungary | 1 | |
#34 | Malaysia | 1 | |
#35 | Poland | 1 | |
#36 | USSR (Union of Socialist Soviet Republics) | 1 |
# | Industry | |
---|---|---|
#1 | Chemical engineering | |
#2 | Environmental technology | |
#3 | Materials and metallurgy | |
#4 | Organic fine chemistry | |
#5 | Machines | |
#6 | Basic materials chemistry |
# | Name | Total Patents |
---|---|---|
#1 | Mak John | 49 |
#2 | Reddy Satish | 28 |
#3 | Kohl Arthur L | 21 |
#4 | Jacobs Garry E | 19 |
#5 | Stephens Foster M | 18 |
#6 | Graham Curt | 17 |
#7 | Stupin Steven W | 17 |
#8 | Knowles Michael B | 17 |
#9 | Martin Samuel A | 17 |
#10 | Antalffy Leslie P | 16 |
Publication | Filing date | Title |
---|---|---|
US8678268B1 | Friction stir welding using a sacrificial anvil | |
WO2014081431A1 | Friction Stir Welding Using a Sacrificial Anvil | |
ZA200507243B | Humid air turbine cycle with carbon dioxide recovery | |
ZA200506038B | Configuration and process for carbonyl removal | |
WO2005108973A1 | Ultrasound phased array devices and methods for use with stainless steel | |
WO2005118198A1 | Improved welding processes | |
WO2005045337A1 | Lng vapor handling configurations and methods | |
WO2005024071A1 | Post weld heat treatment for chemically stabilized austenitic stainless steel | |
EA007305B1 | Plant for shift conversion and process for operating same | |
US6800120B1 | Split-flow process and apparatus | |
EA009089B1 | Configurations and methods of acid gas removal | |
MY137248A | Improved ammonia plant configurations and methods | |
KR20050085103A | Configurations and methods for ribbed downcomer wall | |
CA2531818A1 | Improved solvent use and regeneration | |
RU2331461C2 | Improved use and solovent recovery | |
CA2513379A1 | Configurations and methods for ultrasonic time of flight diffraction analysis | |
CA2491163A1 | Improved split flow process and apparatus | |
WO03099426A1 | Methods and apparatus for mixing and distributing fluids | |
EA010169B1 | Configurations and methods for acid gas and contaminant removal with near zero emission | |
US6746201B1 | Bundle puller with adjustable length carriage frame |