Frangible projectiles for firearms and processes for making such projectiles are disclosed. The projectiles include a sintered, compacted iron-based mixture of particles. The disclosed projectiles produce a similar feel and mimic the ballistic properties of lead projectiles of similar size and calib
Frangible projectiles for firearms and processes for making such projectiles are disclosed. The projectiles include a sintered, compacted iron-based mixture of particles. The disclosed projectiles produce a similar feel and mimic the ballistic properties of lead projectiles of similar size and caliber, yet readily break-up upon impact with a hard surface in order to minimize ricochet or splatter. The disclosed projectiles and processes for making the projectiles meet the need for inexpensive, lead-free frangible projectiles.
대표청구항▼
I claim: 1. A process for making a lead-free, frangible, sintered firearm projectile, comprising: admixing powdered iron particles with at least one other type of powdered metal particles selected from the group consisting of powdered copper particles and powdered tin particles, or a mixture thereo
I claim: 1. A process for making a lead-free, frangible, sintered firearm projectile, comprising: admixing powdered iron particles with at least one other type of powdered metal particles selected from the group consisting of powdered copper particles and powdered tin particles, or a mixture thereof, wherein the powdered iron particles comprise at least 70% by volume of metal particles in admixed powders; cold compacting the admixed powders in a mold to form a projectile core; and sintering the projectile core at a temperature of 850° F.-1450° F. (454° C.-788° C.). 2. The process of claim 1, further comprising: sealing the projectile core; and plating the projectile core to form a jacket over the core. 3. The process of claim 2, wherein the step of sealing projectile core is by impregnating the core with a silicone solution. 4. The process of claim 2, wherein the step of sealing the projectile core is by dipping the projectile core in a metal solution. 5. The process of claim 1, wherein powdered iron particles and powdered copper particles are present in volumetric percentages of 80% and 20%, respectively. 6. The process of claim 1, wherein powdered iron particles, powdered copper particles and powdered tin particles are present in volumetric percentages of 70%, 20% and 10%, respectively. 7. A process for making a lead-free, frangible, sintered firearm projectile, comprising: admixing powdered iron particles with powdered copper particles, wherein the powdered iron particles and powdered copper particles are present in volumetric percentages of about 80% and about 20%, respectively; cold compacting the admixed powders in a mold to form a projectile core; and sintering the projectile core at a temperature of about 850° F.-1450° F. (454° C.-788° C.). 8. The process of claim 7, wherein a lubricant is added when admixing the powdered metal particles. 9. The process of claim 7, wherein sintering is at a pressure of about 50,000 psi to 120,000 psi. 10. The process of claim 7, further comprising: sealing the projectile core; and plating the projectile core to form a jacket over the core. 11. A process for making a lead-free, frangible, sintered firearm projectile, comprising: admixing powdered iron particles with powdered copper particles and powdered tin particles, wherein the powdered iron particles, powdered copper particles, and powdered tin particles are present in volumetric percentages of about 70%, about 20%, and about 10%, respectively; cold compacting the admixed powders in a mold to form a projectile core; and sintering the projectile core at a temperature of about 850° F.-1450° F. (454° C.-788° C.). 12. The process of claim 11, further comprising: sealing the projectile core; and plating the projectile core to form a jacket over the core.
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Benini Joseph C., Frangible metal bullets, ammunition and method of making such articles.
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