Process for applying graphene layer to metallic firearm elements

    公开(公告)号:US11221187B2

    公开(公告)日:2022-01-11

    申请号:US16275579

    申请日:2019-02-14

    申请人: Jesse E Kearney

    发明人: Jesse E Kearney

    摘要: A process of eliminating friction and increasing structural hardness and durability and increasing longevity in the fabrication of metallic structures including at least one mechanical machining device with at least one cutting device, at least one element of material stock, and a reactionary lubricant, the process having the steps of placing the material stock on the working surface of a mechanical machining device, initiating the machining device wherein a cutting device will spin and be used to shape a firearm component, adding the reactionary lubricant to both the spinning drill bit engaged in shaping the firearm component and the firearm component's surface, and by an in situ chemical formation process the firearm component will obtain a layer of graphene formed through the friction, heat, and pressure bearing on spinning drill bit and firearm component surface, reducing the asperities in the material of the firearm component as the component is machined.

    PROCESS OF ELIMINATING FRICTION AND INCREASING STRUCTURAL HARDNESS AND DURABILITY AND INCREASING LONGEVITY IN THE FABRICATION OF METALLIC STRUCTURES

    公开(公告)号:US20190249941A1

    公开(公告)日:2019-08-15

    申请号:US16275579

    申请日:2019-02-14

    申请人: Jesse E. Kearney

    发明人: Jesse E. Kearney

    IPC分类号: F41A21/22 F41A21/20 B23C1/20

    CPC分类号: F41A21/22 B23C1/20 F41A21/20

    摘要: A process of eliminating friction and increasing structural hardness and durability and increasing longevity in the fabrication of metallic structures including at least one mechanical machining device with at least one cutting device, at least one element of material stock, and a reactionary lubricant, the process having the steps of placing the material stock on the working surface of a mechanical machining device, initiating the machining device wherein a cutting device will spin and be used to shape a firearm component, adding the reactionary lubricant to both the spinning drill bit engaged in shaping the firearm component and the firearm component's surface, and by an in situ chemical formation process the firearm component will obtain a layer of graphene formed through the friction, heat, and pressure bearing on spinning drill bit and firearm component surface, reducing the asperities in the material of the firearm component as the component is machined.