Dielectric, circumferentially continuous, multilayered textile sleeve and method of construction thereof
A multilayered textile sleeve for routing and protecting elongate members and method of construction thereof are provided. The multilayered textile sleeve includes a plurality of textile layers overlying one another to form a multilayered tubular wall extending lengthwise about a central axis between opposite open ends. The plurality of textile layers include a textile innermost layer and a textile outer layer. At least one silicone layer is sandwiched between the textile innermost layer and the textile outer layer.
1. A multilayered textile sleeve for routing and protecting elongate members, comprising:
a plurality of textile layers overlying one another to form a multilayered tubular wall extending lengthwise about a central axis between opposite open ends, said plurality of textile layers including a textile innermost layer and at least one textile outer layer; and
at least one silicone layer sandwiched between said textile innermost layer and said at least one textile outer layer,
wherein said at least one textile outer layer includes a textile outermost layer, said textile outermost layer is in engagement with a first silicone layer of said at least one silicone layer, and wherein said textile outermost layer is not bonded to said first silicone layer and is free to move relative to said first silicone layer.
2. The multilayered textile sleeve of claim 1 , wherein said first silicone layer is bonded directly to said textile innermost layer.
3. The multilayered textile sleeve of claim 1 , wherein said textile outermost layer is spaced from said textile innermost layer by a thickness of said first silicone layer.
4. The multilayered textile sleeve of claim 3 , wherein said thickness of said first silicone layer is between about 0.05 mm and 3 mm.
5. The multilayered textile sleeve of claim 4 , wherein said thickness of said first silicone layer is between about 0.1 mm and 0.3 mm.
6. The multilayered textile sleeve of claim 4 , wherein said textile innermost layer is exposed to a central cavity extending between said opposite ends and said textile outermost layer is exposed to an outer environment.
7. The multilayered textile sleeve of claim 4 , wherein said first silicone layer has a dielectric breakdown voltage between about 5 to 40 kV.
8. The multilayered textile sleeve of claim 1 , wherein said textile innermost layer is one of a circumferentially continuous woven, braided or knit tubular wall.
9. The multilayered textile sleeve of claim 8 , wherein said textile outermost layer is one of a circumferentially continuous braided or knit tubular wall.
10. The multilayered textile sleeve of claim 1 , wherein said at least one textile outer layer includes an intermediate textile outer layer spaced from said textile innermost layer by a second silicone layer of said at least one silicone layer.
11. A multilayered textile sleeve for routing and protecting elongate members, consisting of:
a tubular textile innermost layer;
a tubular textile outermost layer; and
a silicone layer sandwiched between said textile innermost layer and said textile outermost layer, wherein said tubular textile outermost layer is not bonded to said silicone layer and is free to move relative to said silicone layer.
12. The multilayered textile sleeve of claim 11 , wherein said tubular textile innermost layer and said tubular textile outermost layer are in engagement with said silicone layer.
13. The multilayered textile sleeve of claim 12 , wherein said silicone layer is bonded to said tubular textile innermost layer.
14. The multilayered textile sleeve of claim 13 , wherein said tubular textile outermost layer is spaced from said tubular textile innermost layer by a thickness of said silicone layer.
15. The multilayered textile sleeve of claim 14 , wherein said thickness of said silicone layer is between about 0.05 mm and 3 mm.