Method of making a hybrid housing and hybrid housing
The hybrid housing includes a base housing and one or more separately made functional components joined in the base housing by electron beam welding to provide a hermetically sealed hybrid housing e.g. for use under water or in aircraft or spacecraft. The separately made functional components can included e.g. a KOVAR-glass feed-through device and/or a copper or molybdenum metal block for heat dissipation. The base housing can be made of aluminum, an aluminum alloy, stainless steel or VA steel.
1 . A method of making a hybrid housing, said method comprising joining or assembling a base housing and at least one separately made functional component with each other by electron beam welding;
wherein said at least one separately made functional component includes a KOVAR-glass feed-through device.
2 . The method as defined in claim 1 , wherein said at least one separately made functional component includes a metal block for heat dissipation.
3 . The method as defined in claim 2 , wherein said metal block is a copper or molybdenum block.
4 . The method as defined in claim 2 , wherein said metal block is provided with a duct or channel for a cooling medium and extends into an interior of the base housing.
5 . The method as defined in claim 1 , wherein said base housing comprises a non-magnetic metal.
6 . The method as defined in claim 5 , wherein said non-magnetic metal is aluminum, an aluminum alloy, stainless steel or VA steel.
7 . A hybrid housing comprising a base housing and at least one KOVAR-glass feed-through device acting as a functional component, which is joined to or assembled with said base housing by an electron beam weld seam.
8 . The hybrid housing as defined in claim 7 , further comprising a metal block for heat dissipation acting as another functional component, which is joined to or assembled with said base housing by another electron beam weld seam.
9 . The hybrid housing as defined in claim 8 , wherein said metal block extends into an interior of said base housing and includes a duct or channel for a cooling medium.
10 . The hybrid housing as defined in claim 7 , wherein said base housing comprises a non-magnetic metal selected from the group consisting of aluminum, aluminum alloys, stainless steel and VA steel.
11 . A hybrid housing comprising a base housing and a metal block acting as a functional component for heat dissipation, wherein said metal block is joined to or assembled with said base housing by an electron beam weld seam.
12 . The hybrid housing as defined in claim 8 or 11 , wherein said metal block consists of molybdenum or copper metal.
13 . The hybrid housing as defined in claim 11 , wherein said metal block protrudes into an interior of said base housing.
14 . The hybrid housing as defined in claim 11 or 13 , wherein said metal block has a duct for a cooling medium.