Abstract:
A tank for a heat exchanger comprises a casing including a substantially planar header opening formed therein and a foot disposed around a perimeter of the header opening. The foot forms an outwardly extending flange from which a pair of oppositely arranged walls extend, the oppositely arranged walls forming an arcuate shape including a spine extending along an apex of the arcuate shape. The oppositely arranged walls each have a corrugated profile adjacent the foot due to the presence of outwardly projecting ribs formed in the oppositely arranged walls. Each of the ribs extend lengthwise from the foot toward the spine, wherein a distal end of each of the ribs is formed adjacent a neutral stress portion of the casing which undergoes a minimal stress when the casing is subjected to an internal pressure from a fluid flowing therethrough.
Abstract:
A charge air system of a motor vehicle having a charger disposed in a charge air circuit and an air-cooled charge air cooler in fluid communication with the charger. The charge air system further includes a pre-cooler is in fluid communication with the air-cooled charge air cooler and an engine coolant circuit in heat exchange communication with the pre-cooler. The engine coolant circuit configured to deliver a flow of coolant through an engine of the motor vehicle.
Abstract:
A tank for a heat exchanger includes a casing including a substantially planar header opening formed therein and a foot disposed around a perimeter of the header opening. The foot forms an outwardly extending flange from which a pair of oppositely arranged walls extend, the oppositely arranged walls forming an arcuate shape including a spine extending along an apex of the arcuate shape. The oppositely arranged walls each have a corrugated profile adjacent the foot due to the presence of outwardly projecting ribs formed in the oppositely arranged walls. Each of the ribs extend lengthwise from the foot toward the spine, wherein a distal end of each of the ribs is formed adjacent a neutral stress portion of the casing which undergoes a minimal stress when the casing is subjected to an internal pressure from a fluid flowing there through.
Abstract:
A cooling module including a first heat exchanger cooling a first heat exchange medium, a second heat exchanger cooling a second heat exchange medium, a third heat exchanger cooling a third heat exchange medium, and a fan and shroud assembly arranged in parallel in an air flow direction, wherein a flow of the first heat exchange medium inside first tubes forming the first heat exchanger is perpendicular to a flow of the second heat exchange medium inside second tubes forming the second heat exchanger and parallel with a flow of the third heat exchange medium inside third tubes forming the third heat exchanger. The cooling module capable of sufficiently securing the first heat exchange medium condensing performance, the third heat exchange medium cooling performance, and the second heat exchange medium cooling performance and being miniaturized.
Abstract:
A cooling module including a first heat exchanger cooling a first heat exchange medium, a second heat exchanger cooling a second heat exchange medium, a third heat exchanger cooling a third heat exchange medium, and a fan and shroud assembly arranged in parallel in an air flow direction, wherein a flow of the first heat exchange medium inside first tubes forming the first heat exchanger is perpendicular to a flow of the second heat exchange medium inside second tubes forming the second heat exchanger and parallel with a flow of the third heat exchange medium inside third tubes forming the third heat exchanger. The cooling module capable of sufficiently securing the first heat exchange medium condensing performance, the third heat exchange medium cooling performance, and the second heat exchange medium cooling performance and being miniaturized.
Abstract:
A charge air cooler includes a plurality of plate assemblies. Each of the plate assemblies includes a unitary first plate and a unitary second plate. The first plate and the second plate each have a channel forming surface. The channel forming surface of the first plate cooperating with the channel forming surface of the second plate to form a first flow channel for receiving a first coolant and a second flow channel for receiving a second coolant. A plurality of fins is interposed between the plate assemblies.
Abstract:
A charge air cooler includes a plurality of plate assemblies. Each of the plate assemblies includes a unitary first plate and a unitary second plate. The first plate and the second plate each have a channel forming surface. The channel forming surface of the first plate cooperating with the channel forming surface of the second plate to form a first flow channel for receiving a first coolant and a second flow channel for receiving a second coolant. A plurality of fins is interposed between the plate assemblies.