HIGH TEMPERATURE MULTI-LAYER COOLANT TUBE
The present disclosure comprises a multi-layer tube that withstands temperatures up to 135 C in glycol heating and cooling systems for electrical, hybrid or internal combustion vehicles. The materials are chosen for their combination of resistance to permeation and coolant resistance. The thermoplastic material is selected to facilitate extrusion and provide a low cost, robust multi-layer tube for any high temperature glycol cooling system applications.
1 . A multi-layer tube comprising:
an inner layer comprising a thermoplastic elastomer or an aromatic polyamide PPA; and
an outer layer comprising an aromatic polyamide wherein the multi-layer tube withstands temperatures up to 135° C. in glycol heating and cooling systems.
2 . The multi-layer tube of claim 1 wherein said aromatic polyamide PPA is a 6T or 9T polymer.
3 . The multi-layer tube of claim 1 resistant to temperatures from -40° C. to 130° C. in continuous operation.
4 . The multi-layer tube of claim 1 capable of operation at pressures from about 1 to 4 bar.
5 . The multi-layer tube of claim 1 wherein said outer layer has a temperature resistance of a peak of 135° C.
6 . The multi-layer tube of claim 1 wherein said inner layer comprises TPV or PPA polymer.
7 . The multi-layer tube of claim 1 wherein said outer layer comprises a PPA or PA polymer.
8 . The multi-layer tube of claim 1 wherein said multilayer tube withstands up to 130° C. and 4 bar pressure in glycol heating and cooling systems.
9 . The multi-layer tube of claim 1 wherein said inner layer is TPV and said outer layer is PPA.
10 . The multi-layer tube of claim 8 further comprising an adhesive layer between said inner layer and said outer layer.
11 . The multi-layer tube of claim 8 further comprising a layer of PA between said inner layer and said outer layer.
12 . The multi-layer tube of claim 10 further comprising an adhesive layer between said layer of PA and said layer of TPV.