Light valve cooling system
An additive manufacturing system includes a high power laser to form a laser beam directed against a light valve. An active light valve cooling system is arranged to remove heat from the light valve and a heat exchanger is connected to the active light valve cooling system. A heat exchange fluid is circulated through the active light valve cooling system and the heat exchanger.
1. An additive manufacturing system, comprising:
a laser configured to form a laser beam directed against a light valve;
an active light valve cooling system arranged to remove heat from the light valve,
wherein the active light valve cooling system comprises:
a cooling housing comprising a first window and a second window, the cooling housing arranged to hold one or more light valves;
a light valve carrier comprising a step-shaped edge recess that aligns a first component of the light valve with a second component of the light valve such that a back face of the first component is fixed in a particular position adjacent to a front face of the second component; and
a compression gasket, wherein the light valve carrier and the compression gasket hold the light valve between the first window and the second window of the cooling housing such that a first portion of a channel is formed across a front face of the first component of the light valve and a second portion of the channel is formed across a back face of the second component of the light valve;
a heat exchanger connected to the active light valve cooling system; and
a heat exchange fluid circulated through the channel across the front face of the first component of the light valve and the back face of the second component of the light valve and the heat exchanger.
2. The additive manufacturing system of claim 1 , wherein the heat exchanger is connected to provide energy to at least one component of the additive manufacturing system.
3. The additive manufacturing system of claim 1 , wherein the heat exchanger can power a heat engine able to generate mechanical, thermoelectric, or electric power.
4. The additive manufacturing system of claim 1 , wherein the heat exchanger can be connected to selected components of the additive manufacturing system to increase temperature of the selected components.
5. The additive manufacturing system of claim 1 , wherein the heat exchange fluid comprises a phase change material.
6. The additive manufacturing system of claim 1 , wherein the heat exchange fluid is sprayed onto the light valve.
7. The additive manufacturing system of claim 1 , wherein the active light valve cooling system is configured to cool an array of light valves.
8. The additive manufacturing system of claim 1 , further comprising multiple lasers.
9. The additive manufacturing system of claim 1 , wherein the light valve two-dimensionally patterns light from the laser.
10. The additive manufacturing system of claim 1 , further comprising a plurality of article processing units and build chambers positioned to receive light from at least one light valve.