US2015184056A1PendingUtilityA1
Thermally Conductive Polymer Compositions and Articles Made Therefrom
Est. expiryJul 24, 2029(~3 yrs left)· nominal 20-yr term from priority
Inventors:Yuji Saga
C09K 5/14C08K 2201/016C08K 7/04H05K 7/20481C08K 3/013C08K 2003/2217C08K 3/22C09K 19/3809C09K 19/52C08K 7/02C08L 101/12C08K 3/01C09K 19/02C08K 3/40C08J 5/005
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Claims
Abstract
Thermally conductive polymer compositions comprising polymer, highly moisture resistant magnesium oxide, and filler having higher aspect ratio than 5. The compositions are particularly useful for metal/polymer hybrid parts.
Claims
exact text as granted — not AI-modified1 . A thermally conductive polymer composition, comprising:
(a) about 15 to about 70 weight percent of thermoplastic polymer (b) about 20 to about 60 weight percent of magnesium oxide and (c) about 5 to about 50 weight percent of filler having an aspect ratio greater than wherein said (b) magnesium oxide has a weight gain by conditioning at 90° C., 90% RH for 100 hours of less than 1%; and, wherein said polymer composition has a thermal conductivity of at least 0.5 W/mK, the percentages being based on the total weight of the composition.
2 . The composition of claim 1 , wherein one or more of said (c) fillers are used, selected from the group consisting of glass fibers, wallastonites, glass flakes, talc, mica, boron nitride, titanium oxide fiber and alumina fiber.
3 . The composition of claim 1 , wherein one or more of said (c) fillers is glass fibers.
4 . The composition as recited in claim 1 , wherein said (b) magnesium oxide is coated with a coupling agent selected from silane series, titanate series, zirconate series, aluminate series, and zircoaluminate series.
5 . The composition as recited in claim 1 , wherein said (b) magnesium oxide has a BET surface area of less than 3 square meters per gram.
6 . The composition as recited in claim 1 , wherein one or more of said (a) thermoplastic polymers are used, selected from the group consisting of thermoplastic polyester, thermoplastic polyamide, liquid crystalline polymer and polyarylene sulfide.
7 . The composition as recited in claim 1 , additionally comprising 0.01 to about 15 volume percent of at least one polymeric toughening agent.
8 . An article made from the composition of claim 1 .
9 . A metal/polymer hybrid article made with the composition of claim 1 .
10 . An insulator of a stator core of motors or generators made of the composition of claim 1 .
11 . A stator assembly encapsulated with the composition of claim 1 .Join the waitlist — get patent alerts
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