Heat exchanger core layer
A pin for a core layer of a heat exchanger, the pin extending from a first pin end to a second pin end and having an outer surface between the first and second pin ends, wherein the pin comprises a plurality of surface features protruding from the outer surface.
1 . A layer for a heat exchanger, the layer comprising:
an inlet;
an outlet;
an upper sheet;
a lower sheet;
a fluid flowpath defined between the upper sheet and lower sheet and from the inlet to the outlet; and
a plurality of pins disposed in the flowpath and connecting the upper sheet to the lower sheet, wherein each pin includes having a first and a second end and an outer surface between the first and second ends, and wherein a plurality of surface features are provided on and protruding from the outer surface;
wherein the layer defines an inflow path from the inlet, and an outflow path to the outlet, the inflow path and the outflow path being separated in the layer by a separation bar, the inflow path and the outflow path each having a plurality of said pins, the layer further comprising a plurality of turning vanes to turn the direction of flow from the inflow path by substantially 180 degrees to the outflow path.
2 . The layer according to claim 1 , wherein pin has a cross-section that tapers from an inlet side of the pin to an outlet side of the pin.
3 . The layer according to claim 2 , wherein the cross-section is a rounded triangular shape.
4 . The layer of claim 1 , wherein the plurality of turning vanes includes a first plurality of vanes to turn the direction of flow from the inflow path by substantially 90 degrees and a second plurality of turning vanes to turn the direction of flow by a further 90 degrees to the outflow path.
5 . A heat exchanger comprising a first layer and a second layer;
wherein the first layer is a layer according to claim 4 ; and
wherein the upper sheet of the second layer is also the lower sheet of the first layer.
6 . The heat exchanger according to claim 5 , wherein the number of pins disposed in the flowpath of the first layer is different from the number of pins disposed in the flowpath of the second layer.
7 . A method of manufacturing a heat exchanger, the method comprising:
manufacturing a first plurality of layers interleaved with a second plurality of layers, wherein each layer of the first and second pluralities of layers is a layer according to claim 1 ;
manufacturing a first header fluidly connected to each of the first plurality of layers; and
manufacturing a second header fluidly connected to each of the second plurality of layers.
8 . The method according to claim 7 , wherein each step of manufacturing the first and second pluralities of layers is performed using a metal powder bed SLM additive manufacturing process or other additive manufacturing process.
9 . The method of claim 8 , wherein a powder of the metal powder bed is one of an aluminium alloy, a titanium alloy, an austenitic nickel-chromium-based superalloy, stainless steel or copper.