Claims
- 1. An electroforming method for making metal products having a pattern of openings separated by dykes using an electroforming mandrel in an electroplating bath, wherein metal from the electroplating bath is deposited on the mandrel, comprising:
- a.) providing the electroforming mandrel, including at least two electrically conducting regions electrically insulated from one another, said regions comprising at least one main pattern for product dykes to be formed, which main pattern is electrically insulated from at least one ancillary pattern for a reinforcement to be formed;
- b.) connecting the ancillary pattern to a current source;
- c.) electroforming to form a reinforcement on said ancillary pattern to effect an electrical connection between the ancillary pattern and the main pattern by grown metal; and,
- d.) continuing electroforming in order to thicken the reinforcement and to form product dykes.
- 2. An electroforming method according to claim 1 wherein the regions comprise one or more transition patterns situated between the main pattern and ancillary pattern, each transition pattern being electrically insulated from the other patterns.
- 3. A metal product produced by the process of claim 2 having a pattern of openings, and at least one reinforcement, which openings lie in one plane and are separated by dykes having thickness less than the thickness of the reinforcement, and wherein said reinforcement has no metal--metal interface.
- 4. A metal product according to claim 3, wherein the reinforcement projects at the front side and rear side above the remainder of the product.
- 5. An electroforming mandrel for making metal products having a pattern of openings separated by dykes by using the electroforming mandrel in an electroplating bath, wherein metal from the electroplating bath is deposited on the mandrel, comprising:
- a.) a substrate made of an electrically insulating material;
- b.) a layer of electrically conducting material, which layer comprises at least two regions electrically insulated from one another, the regions comprising at least one main pattern for the product dykes to be formed, which main pattern is electrically insulated from at least one ancillary pattern for a reinforcement to be formed; and,
- c.) connecting means for connecting the conducting material to a current source, wherein the connecting means are connected only to the ancillary pattern.
- 6. A mandrel according to claim 5, wherein the main pattern is surrounded on all sides by the ancillary pattern.
- 7. A mandrel according to claim 5, wherein the regions comprise one or more transition patterns situated between the main pattern and ancillary pattern, each transition pattern being electrically insulated form the other patterns.
- 8. A mandrel according to claim 5, wherein at least a part of the ancillary pattern is situated in recesses provided in the substrate surface.
- 9. A mandrel according to claim 5, wherein the ancillary pattern comprises conductors which are perpendicular to one another.
- 10. A mandrel according to claim 9, wherein said conductors are situated partly in two different planes.
- 11. A mandrel according to claim 5, wherein the mandrel is a through-flow mandrel having through-flow openings corresponding to the openings of a metal product to be formed.
Priority Claims (1)
Number |
Date |
Country |
Kind |
1002908 |
Apr 1996 |
NLX |
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Parent Case Info
This application is a continuation of copending application International Application No. PCT/NL97/00203, filed on Apr. 18, 1997, and which is designated the U.S.
US Referenced Citations (6)
Foreign Referenced Citations (3)
Number |
Date |
Country |
0192842A2 |
Sep 1986 |
EPX |
0272764A1 |
Jun 1988 |
EPX |
1001220C |
Mar 1996 |
NLX |
Continuations (1)
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Number |
Date |
Country |
Parent |
PCTNL9700203 |
Apr 1997 |
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