LOW COMPRESSION SET AEROGELS AND AEROGEL COMPOSITES AND METHODS OF MAKING
This disclosure relates generally to acrogel technology. The disclosure relates more particularly, in various embodiments, to improved methods for producing acrogels and improved acrogel composites having a low compression set.
1 . A silica aerogel comprising a porous silica framework, wherein the silica aerogel has a compressibility set of less than or equal to 15% as determined by ASTM D3574-Test D.
2 . The silica aerogel of claim 1 , wherein the porous silica framework is a reaction product of MTES, TEOS, and an amine catalyst.
3 . The silica aerogel of claim 1 , wherein the porous silica framework is a reaction product of MTES, TEOS, an amine catalyst, reacted in an air atmosphere at a temperature of from 200° C. to 400° C.
4 . The silica aerogel of claim 1 , wherein the porous silica framework has a silica density of from 0.055 grams/cubic centimeter to 0.085 grams/cubic centimeter.
5 . The silica aerogel of claim 1 , wherein the porous silica framework comprises a hydrophobic-bound silicon.
6 . The silica aerogel of claim 1 , wherein the silica aerogel comprises a sheet.
7 . The silica aerogel of claim 1 , wherein the silica aerogel has a compression set less than or equal to 10% as determined by ASTM D3574-Test D.
8 . The silica aerogel of claim 1 , wherein the silica aerogel is an aerogel composite comprising a reinforcement material.
9 . The silica aerogel of claim 8 , wherein the reinforcement material is a fiber reinforcement material.
10 . The silica aerogel of claim 1 , wherein the silica aerogel is an aerogel composite comprising an opacifying additive.
11 . The silica aerogel of claim 10 , wherein the opacifying additive is selected from the group consisting of B4C, Diatomite, Manganese ferrite, MnO, NiO, SnO, Ag20, Bh03, TiC, WC, carbon black, titanium oxide, iron titanium oxide, zirconium silicate, zirconium oxide, iron (I) oxide, iron (III) oxide, manganese dioxide, iron titanium oxide (ilmenite), chromium oxide, or mixtures thereof.
12 . The silica aerogel of claim 11 , wherein the opacifying additive comprises silicon carbide.
13 . An insulation barrier for use in an electrical storage system, the insulation barrier comprising:
at least one insulation layer including a silica aerogel including a porous silica framework,
wherein the silica aerogel has a compressibility set of less than or equal to 15% as determined by ASTM D3574-Test D.
14 . The insulation barrier of claim 13 , wherein the porous silica framework is a reaction product of MTES, TEOS, and an amine catalyst.
15 . The insulation barrier of claim 13 , wherein the porous silica framework is a reaction product of MTES, TEOS, an amine catalyst, reacted in an air atmosphere at a temperature of from 200° C. to 400° C.
16 . The insulation barrier of claim 13 , wherein the porous silica framework comprises a hydrophobic-bound silicon.
17 . The insulation barrier of claim 13 , wherein the silica aerogel has a compression set less than or equal to 10% as determined by ASTM D3574-Test D.
18 . A battery module comprising:
a plurality of battery cells, and
one or more insulation barriers comprising a silica aerogel including a porous silica framework,
wherein the silica aerogel has a compressibility set of less than or equal to 15% as determined by ASTM D3574-Test D,
wherein at least one insulation barrier is disposed between adjacent battery cells.
19 . The battery module of claim 18 , wherein the porous silica framework is a reaction product of MTES, TEOS, and an amine catalyst.
20 . The battery module of claim 18 , wherein the silica aerogel is an aerogel composite comprising a reinforcement material.