Claims
- 1. The method of making a bismuth alloy fishing sinker comprising the steps of:
forming a first mold for a defining a first cavity with said first mold having a mold mating surface; forming a second mold for defining a second cavity with said second mold having a mold mating surface so that when said mold mating surface of said first mold is joined to said mold mating surface of said second mold the first mold and the second mold cooperate to define a fishing sinker mold cavity; forming a runner cavity to said fishing sinker mold cavity with said runner cavity to said fishing sinker mold cavity located at a junction between said first mold and said second mold so that said first mold and said second mold can be separated from each other with at least part of the runner cavity in each of said first mold and said second mold; injecting a molten bismuth alloy into the runner cavity and into the fishing sinker mold cavity; allowing the molten bismuth alloy to solidify in the runner cavity and the fishing sinker mold cavity; separating the first mold and the second mold to leave a solidified fishing sinker with a solidified runner cantileverly attached thereto; and separating the solidified fishing sinker from the solidified runner at the junction of the solidified sinker and the solidified runner.
- 2. The method of claim 1 wherein the junction of the runner cavity to the mold cavity comprises a minimum cross sectional area of the runner cavity.
- 3. The method of claim 1 wherein the runner cavity is located partially in the first mold and partially in the second mold with the termination of the runner cavity at a parting line between the first mold and the second mold.
- 4. The method of claim 1 wherein the liquid bismuth alloy comprises at least 48% bismuth.
- 5. The method of claim 1 wherein the bismuth alloy comprises an eutectic mixture of bismuth and tin.
- 6. The method of claim 1 wherein the bismuth alloy includes either antimony or silver.
- 7. The method of casting an environmental friendly fishing sinker containing bismuth;
heating a charge of bismuth having a solidification expansion until the bismuth reaches a molten state; superheating the bismuth in the molten state to produce a thermal expansion of the bismuth in the molten state until the amount of the thermal expansion is greater than the solidification expansion so that when the superheated bismuth injected into a sinker mold cavity the amount of thermal contraction of the molten bismuth as the molten bismuth cools to a solidification temperature exceeds the solidification expansion so that a solidified fishing sinker in the sinker mold cavity does not adhere to the mold.
- 8. The method of claim 7 wherein the step of heating includes heating a bismuth alloy of at least 48% bismuth and the balance tin.
- 9. The method of claim 8 wherein the step of heating a bismuth alloy comprises heating a eutectic alloy of bismuth and tin.
- 10. The method of claim 8 including superheating the bismuth alloy in the molten state to a temperature at least 600° F. above a solidification temperature of the bismuth alloy.
- 11. The method of simultaneously casting a plurality of bismuth tin alloy fishing sinkers comprising;
forming a plurality of molds with each of the plurality of molds having at least two parts that form a partial sinker cavity with each of the partial sinker cavities coacting to form a sinker mold cavity with the at least two parts separable to allow removal of a solidified fishing sinker as a unit from the sinker mold cavity; forming a runner cavity in each of the plurality of molds for directing a molten bismuth tin alloy into each of the plurality of molds with each of the plurality of runner cavities defined partially in each of the molds so that separation of the at least two parts of the molds alloys removal of a solidified runner as a unit from the mold cavity; and forming each of the runner cavities with a minimum cross sectional area located at a junction of the runner cavity to the mold cavity so that when the bismuth tin alloy in each of the runner cavity solidifies each of the solidified runners cantilevers outward from the solidified fishing sinker to enable the separation of the solidified fishing sinker from the solidified fishing sinker by breaking the solidified fishing sinker free of the runner.
- 11. The method of casting a bismuth alloy;
superheating a bismuth alloy until a molten charge of the bismuth alloy expands to a volume which is greater than a volume expansion of the bismuth alloy; and then pouring the superheated bismuth alloy into a mold so that upon cooling to a removal temperature the contraction of molten bismuth alloy exceeds the volume expansion to thereby prevent a solidified article in the mold from adhering thereto.
- 12. The method of claim 11 wherein a bismuth alloy is cast in the shape of a fishing sinker; and
the bismuth alloy includes at least 48% bismuth.
- 13. An environmental friendly fishing sinker comprising:
a body of material; and a line support on said body of material for connecting a fishing line thereto, said body of material containing sufficient bismuth so that the body of material has a specific gravity of the least 7.75 so that when the sinker is placed in a body of water, the fishing sinker and a line attached thereto sink, said body of material having sufficient integrity so that if the fishing sinker strikes a rock or other object the fishing sinker retains its integrity.
- 13. The fishing sinker of claim 12 wherein the body of material is a bismuth alloy that includes tin.
- 14. The fishing sinker of claim 13 wherein the bismuth alloy comprises and eutectic mixture of bismuth and tin.
- 15. The fishing sinker of claim 14 wherein the bismuth alloy contains at least 48% bismuth.
- 16. The fishing sinker of claim 12 wherein the bismuth alloy has a solidification expansion which is less than a thermal contraction of the bismuth alloy in a molten state as the bismuth alloy in the molten state cools from a temperature or injection into a mold to a temperature of solidification.
- 17. The fishing sinker of claim 11 wherein the body of material consists of bismuth.
CROSS REFERENCE TO RELATED APPLICATION
[0001] This application claims priority from provisional patent application Ser. No. 60/129,464 titled Bismuth and Bismuth Alloy Fishing Sinker filed Apr. 15, 1999.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60129464 |
Apr 1999 |
US |
Divisions (1)
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Number |
Date |
Country |
Parent |
09543203 |
Apr 2000 |
US |
Child |
09954786 |
Sep 2001 |
US |