LORD CORP has a total of 3,131 patent applications. It increased the IP activity by 7.0%. Its first patent ever was published in 1958. It filed its patents most often in United States, EPO (European Patent Office) and WIPO (World Intellectual Property Organization). Its main competitors in its focus markets macromolecular chemistry and polymers, basic materials chemistry and mechanical elements are LORD MFG CO, ZHUZHOU TIMES NEW MAT TECH CO and TOKAI RUBBER IND LTD.
# | Country | Total Patents | |
---|---|---|---|
#1 | United States | 764 | |
#2 | EPO (European Patent Office) | 466 | |
#3 | WIPO (World Intellectual Property Organization) | 435 | |
#4 | Canada | 336 | |
#5 | Japan | 152 | |
#6 | China | 135 | |
#7 | United Kingdom | 129 | |
#8 | Germany | 109 | |
#9 | France | 101 | |
#10 | Republic of Korea | 94 | |
#11 | Australia | 81 | |
#12 | Brazil | 64 | |
#13 | Italy | 37 | |
#14 | Mexico | 31 | |
#15 | Taiwan | 24 | |
#16 | South Africa | 21 | |
#17 | Sweden | 18 | |
#18 | Russian Federation | 13 | |
#19 | Czechia | 11 | |
#20 | Switzerland | 10 | |
#21 | Norway | 10 | |
#22 | Netherlands | 9 | |
#23 | Denmark | 8 | |
#24 | Hungary | 8 | |
#25 | Poland | 8 | |
#26 | Israel | 7 | |
#27 | Turkey | 7 | |
#28 | Bulgaria | 6 | |
#29 | Portugal | 6 | |
#30 | India | 5 | |
#31 | Belgium | 4 | |
#32 | Slovakia | 4 | |
#33 | Austria | 3 | |
#34 | USSR (Union of Socialist Soviet Republics) | 3 | |
#35 | Romania | 2 | |
#36 | Costa Rica | 1 | |
#37 | EAPO (Eurasian Patent Organization) | 1 | |
#38 | Egypt | 1 | |
#39 | Spain | 1 | |
#40 | Finland | 1 | |
#41 | Croatia | 1 | |
#42 | Ireland | 1 | |
#43 | Latvia | 1 | |
#44 | New Zealand | 1 | |
#45 | Yugoslavia (Serbia and Montenegro) | 1 |
# | Industry | |
---|---|---|
#1 | Macromolecular chemistry and polymers | |
#2 | Basic materials chemistry | |
#3 | Mechanical elements | |
#4 | Machines | |
#5 | Transport |
# | Name | Total Patents |
---|---|---|
#1 | Carlson J David | 190 |
#2 | Jolly Mark R | 143 |
#3 | Ivers Douglas E | 86 |
#4 | Abbey Kirk J | 83 |
#5 | Halladay James R | 82 |
#6 | Mowrey Douglas H | 81 |
#7 | Kucera Helmut W | 77 |
#8 | Warren Patrick A | 66 |
#9 | Badre-Alam Askari | 65 |
#10 | Whiteford Gerald P | 61 |
Publication | Filing date | Title |
---|---|---|
WO2021081030A1 | Tension torsion strap with arched winding pattern | |
WO2021072220A1 | Hanger bearing mounted torque sensor | |
WO2021022125A1 | Methods and systems for reducing adhesive strength and associated pull-off stresses | |
WO2021016568A1 | Rotating machine component clearance sensing systems and methods | |
WO2021016514A1 | One-part adhesive for thermoplastic urethanes | |
WO2021016560A1 | Single plane powertrain sensing using variable reluctance sensors | |
WO2020264287A1 | Dual rate torsional coupling | |
WO2020198288A1 | Moldable silicone elastomers having selective primerless adhesion | |
WO2020180939A1 | Conductive rubber block for a rail wheel and associated methods | |
WO2020205138A1 | Lateral isolator | |
WO2020180926A1 | Centralizer | |
WO2020176515A1 | Active vibration control system in a gunfire vibration environment | |
WO2021006931A1 | Rotatable shaft bearing with electromagnetically controlled support impedance | |
WO2020117722A1 | Adhesives for castable urethanes | |
WO2020081383A1 | Automotive active vibration control using circular force generators | |
WO2020077031A1 | Highly conductive additives to reduce settling | |
WO2020037019A1 | Methods and systems for measuring torque using sensor calibration | |
CN111247065A | Wide-bandwidth wide-circular force generator apparatus, system and method | |
CA3089841A1 | Active vibration control using circular force generators | |
US2019316630A1 | Asymmetric bearing for riser tensioner system |