Fluids tank for work machine
An excavator has a unitary fluids tank formed from moldable cross linked high density polyethylene. The fluids tank has a compartment for hydraulic fluid and a compartment for power unit fuel. The compartments are separated by a coextensive integral wall providing an insulating barrier are formed from a polyethylene foam providing an insulating barrier between the compartments.
1. A fluids tank for a work machine, the fluids tank comprising:
a unitary body of moldable material defining first and second compartments for different fluids; and
a coextensive integral wall separating the first and second compartments, the coextensive wall providing an insulating heat transfer barrier between the compartments for containing fluids at different operating temperatures, the coextensive wall comprising air enclosures.
2. The fluids tank as claimed in claim 1 , wherein the fluids comprise a hydraulic fluid and a fuel for a power unit.
3. The fluids tank as claimed in claim 1 , wherein the compartments have different volumes.
4. The fluids tank as claimed in claim 1 , wherein the moldable material is a polyethylene and the coextensive integral wall is polyethylene foam.
5. The fluids tank as claimed in claim 4 , wherein a heat transfer coefficient of the coextensive integral wall is about 0.040 watts/square meter/Kelvin.
6. The fluids tank as claimed in claim 1 , wherein a maximum operating temperature in one of the first and second compartments is up to 90 degrees C. and a maximum operating temperature in the other of the first and second compartment is up to 70 degrees C.
7. The fluids tank as claimed in claim 1 , wherein the moldable material is a cross linkable high density polyethylene.
8. A work machine comprising:
a frame,
a ground movement assembly;
a boom arm assembly;
hydraulic actuators mounted on the frame to articulate the boom arm assembly;
a power unit mounted on the frame; and
a fluids tank comprising:
a unitary body of moldable material defining first and second compartments for different fluids; and
a coextensive integral wall separating the first and second compartments, the coextensive wall providing an insulating heat transfer barrier between the compartments for containing fluids at different operating temperatures,
wherein the fluids tank is mounted on the frame and supplies fuel to the power unit and hydraulic fluid to the hydraulic actuators, and
wherein a larger of the first and second compartments has a sump area at a bottom thereof for a fuel output supply fitting.