Cooling energy saving structure
Abstract
A cooling energy saving structure, capable of connecting to a PCB multi-axial driller, includes a chiller, a freezing dryer, and a thermal superconductive recycling device, where the chiller has a liquid outward piping and a liquid inward piping, the freezing dryer has a gas outward piping and a gas inward piping, and the thermal superconductive recycling device accommodates the liquid inward piping of the chiller and the gas outward piping of the dryer. The device further features cooling the liquid in the inward piping before it flows back to the chiller, and heating the gas in the outward piping before it is discharged. The heat exchange performed between the flow back liquid of the chiller and the discharged gas of the dryer takes advantage of the device, which proves to have substantially cut down energy consumption and power expenditure for a very effective use of energy resources.
Claims
exact text as granted — not AI-modified1 . A cooling energy saving structure, comprising:
a chiller, having a liquid outward piping and a liquid inward piping; a freezing dryer, being located in one side of said chiller, said freezing dryer having a gas outward piping and a gas inward piping; and a thermal superconductive recycling device, for accommodating the liquid inward piping of said chiller and the gas outward piping of said freezing dryer, for cooling liquid in the liquid inward piping before the liquid flows back to said chiller, and for heating gas in the outward gas piping before the gas is discharged.
2 . A cooling energy saving structure according to claim 1 , wherein said cooling energy saving structure is connected to a PCB multi-axial driller, which has a Z-axis motor and a rotary axis joined to the Z-axis motor, and the liquid outward piping of said chiller is connected to the Z-axis motor and the rotary axis, whereas the gas outward piping of said freezing dryer is connected to the rotary axis.
3 . A cooling energy saving structure according to claim 1 , wherein said thermal superconductive recycling device comprises a barrel and a module of uniform temperature plates built in the barrel.
4 . A cooling energy saving structure according to claim 3 , wherein the module of uniform temperature plates comprises a tube, a plurality of uniform temperature plates, a pair of radiating plate bank sticking on the top and bottom surfaces of each uniform temperature plate, and two fixing sheets where each can fasten one uniform temperature plate to the tube.
5 . A cooling energy saving structure according to claim 4 , wherein the radiating plate bank comprises a plurality of radiating plates, and gas interspaces are formed in between any of two plates, where the gas interspaces are kept parallel with the axial direction of the barrel.
6 . A cooling energy saving structure according to claim 3 , wherein the barrel is round in shape, and has a front cover plate and a back cover plate attached on its two ends, where the front cover plate has a liquid outlet, a liquid inlet, and a gas outlet, and the back cover plate has a gas inlet.
7 . A cooling energy saving structure according to claim 6 , wherein the liquid inward piping of said chiller is connected to the liquid inlet and liquid outlet of said thermal superconductive recycling device, and the gas outward piping of said freezing dryer is connected to the gas inlet and the gas outlet of said thermal superconductive recycling device.
8 . A cooling energy saving structure according to claim 3 , wherein a heat insulation substance is fitted in the space between the inside wall of the barrel and the module of uniform temperature plates.
9 . A cooling energy saving structure according to claim 1 , further comprising a case, where the case has a hollow space which accommodates said chiller, said freezing dryer, and said thermal superconductive recycling device, and the piping relating to said chiller and said freezing dryer respectively pass through the case in an inward or outward manner.Join the waitlist — get patent alerts
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