Humidifying a Sealant Cure Oven. Traditional Method Large monuments – big enough to drive a car into. No Flow control – holds to many parts. Costly to.

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Presentation transcript:

Humidifying a Sealant Cure Oven

Traditional Method Large monuments – big enough to drive a car into. No Flow control – holds to many parts. Costly to move – anchored to floor, must be hardwired, requires a moving company. Has humidity control.

Traditional Method Large monuments – smaller than previous one but still too large No Flow control – holds to many parts. Costly to move – anchored to floor, must be hardwired, requires a moving company. Has humidity control.

Traditional Method Right sized. Placed in assembly cell. No product departure Flow control – holds only one part. Must be hardwired. Does not have humidity control.

Lean Method Right sized. Placed in assembly cell. No product departure Flow control – holds only one part. Can be plugged into 120v AC. Does not have humidity control.

Lean Method Right sized. Placed in assembly cell. No product departure Flow control – holds only two parts. Can be plugged into 120v AC. Does not have humidity control.

Lean Method Right sized. Placed in assembly cell. No product departure Flow control – holds only two parts. Can be plugged into 120v AC. Does not have humidity control.

Requirements  The temperature needs to held to135 +/- 5 degrees Fahrenheit.  The humidity needs to be maintained at 50% +/- 10%  Our ovens vary in size according to what product they are used for. For this project we could go with a 3' wide x 3' tall x 4' deep chamber that opens on one end.  No silicone products can be used in the fabrication or assembly of the oven.  120v AC, 20 amp is the preferred power source requirement.  If possible, the water source would be self contained (utilize a water cooler jug maybe)

Oven is available for use as test platform if desired.