Reactor and method of forming reactor that includes at least one wall section having an inner surface bounding an interior space, a lining arranged on the inner surface of the at least one wall to face the interior space, and at least one fluid connection, to which a negative pressure is appliable,
Reactor and method of forming reactor that includes at least one wall section having an inner surface bounding an interior space, a lining arranged on the inner surface of the at least one wall to face the interior space, and at least one fluid connection, to which a negative pressure is appliable, that is structured to run through the at least one wall section to open into a space between the inner surface and the lining.
대표청구항▼
1. A reactor comprising: at least one wall section having an inner surface bounding an interior space;a lining arranged on the inner surface of the at least one wall to face the interior space, wherein the lining comprises at least two parts connected to one another by a connection seam; andat least
1. A reactor comprising: at least one wall section having an inner surface bounding an interior space;a lining arranged on the inner surface of the at least one wall to face the interior space, wherein the lining comprises at least two parts connected to one another by a connection seam; andat least one fluid connection, which is connected to a negative pressure production device, being structured to run through the at least one wall section in a region of the connection seam to open into a space between the inner surface and the connection seam. 2. The reactor according to claim 1, wherein the lining, under an applied negative pressure via the at least one fluid connection, bears against the inner surface. 3. The reactor according to claim 1, wherein the inner surface and the lining have cylinder shapes. 4. The reactor according to claim 3, wherein the cylinder shape has a circular cross-section. 5. The reactor according to claim 1, wherein the lining has a maximum radial thickness of 1 mm. 6. The reactor according to claim 1, wherein the lining comprises tantalum. 7. The reactor according to claim 6, wherein tantalum is a main component of the lining. 8. The reactor according to claim 1, wherein the connection seam comprises a weld seam. 9. The reactor according to claim 1, further comprising a protective strip arranged between the connection seam and the inner surface. 10. The reactor according to claim 9, wherein the protective strip is formed from a same material as the lining. 11. The reactor according to claim 9, wherein at least one of the lining and the at least one wall section in a region of the connection seam comprise a shaping structured to form a hollow space in which the protective strip is arranged. 12. The reactor according to claim 11, wherein the protective strip is arranged at a distance from at least one boundary wall of the hollow space. 13. A method of forming a reactor comprising: inserting a lining, which comprises at least two parts, into an interior space bounded by at least one wall section having an inner surface, so that the lining is arranged on the inner surface of the at least one wall to face the interior space,connecting the at least two parts to one another by a connection seam; andapplying a negative pressure to a space between the inner surface and the lining connection seam via at least one fluid connection running through the at least one wall section in a region of the connection seam. 14. The method according to claim 13, wherein the lining comprises tantalum. 15. The method according to claim 14, wherein the lining has a maximum radial thickness of 1 mm. 16. The method according to claim 13, wherein, before connecting the at least two parts to one another, the method further comprises arranging a protective strip between the inner surface and a location for the connection seam. 17. The method according to claim 16, further comprising: forming a shaping in at least one of the lining and the at least one wall section in a region of the location for the connection seam to form a hollow space; andarranging the protective strip in the hollow space. 18. A reactor comprising: at least one wall section having an inner surface bounding an interior space;a lining arranged on the inner surface of the at least one wall to face the interior space;at least one fluid connection, to which a negative pressure is appliable, is structured to run through the at least one wall section to open into a space between the inner surface and the lining, wherein the lining comprises at least two parts connected to one another by a connection seam and the at least one fluid connection is arranged in a region of the connection seam; anda protective strip arranged between the connection seam and the inner surface,wherein at least one of the lining and the at least one wall section in a region of the connection seam comprise a shaping structured to form a hollow space in which the protective strip is arranged, and the protective strip is arranged at a distance from at least one boundary wall of the hollow space. 19. The reactor according to claim 18, wherein the lining, under an applied negative pressure via the at least one fluid connection, bears against the inner surface. 20. The reactor according to claim 18, wherein the inner surface and the lining have cylinder shapes. 21. The reactor according to claim 20, wherein the cylinder shape has a circular cross-section. 22. The reactor according to claim 18, wherein the lining has a maximum radial thickness of 1 mm. 23. The reactor according to claim 18, wherein the lining comprises tantalum. 24. The reactor according to claim 23, wherein tantalum is a main component of the lining. 25. The reactor according to claim 18, wherein the connection seam comprises a weld seam. 26. The reactor according to claim 18, wherein the protective strip is formed from a same material as the lining. 27. A method of forming a reactor comprising: inserting a lining into an interior space bounded by at least one wall section having an inner surface, so that the lining is arranged on the inner surface of the at least one wall to face the interior space,wherein the lining comprises at least two edges connected to one another by a connection seam, wherein at least one of the lining and the at least one wall section comprises, in a region of the connection seam, a shaping forming a hollow space between the lining and the at least one wall section, and wherein the at least one connection is arranged in a region of the hollow space;arranging a protective strip in the hollow space between the connection seam and the inner surface and at a distance from at least one boundary wall of the hollow space; andapplying a negative pressure to the hollow space between the inner surface and the lining via at least one fluid connection running through the at least one wall section.
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