An expanding tool comprising: an actuator comprising a cylindrical housing that defines an actuator housing cavity; a primary ram disposed within the actuator housing cavity, the primary ram defining an internal primary ram cavity; a secondary ram disposed within the internal primary ram cavity; a c
An expanding tool comprising: an actuator comprising a cylindrical housing that defines an actuator housing cavity; a primary ram disposed within the actuator housing cavity, the primary ram defining an internal primary ram cavity; a secondary ram disposed within the internal primary ram cavity; a cam roller carrier coupled to a distal end of the secondary ram; a drive collar positioned within a distal end of the actuator housing cavity; a roller clutch disposed within an internal cavity defined by an inner surface of the drive collar; a shuttle cam positioned between the roller clutch and a distal end of the primary ram; an expander cone coupled to the primary ram; and an expander head operably coupled to the drive collar. When triggered, the actuator first rotates the expander head and then the actuator expands the expander head.
대표청구항▼
1. An expanding tool comprising: a housing defining a first cavity therein;a primary ram disposed within the first cavity of the housing, wherein the primary ram defines a second cavity;a secondary ram disposed in the second cavity of the primary ram;a drive collar positioned at a distal end of the
1. An expanding tool comprising: a housing defining a first cavity therein;a primary ram disposed within the first cavity of the housing, wherein the primary ram defines a second cavity;a secondary ram disposed in the second cavity of the primary ram;a drive collar positioned at a distal end of the first cavity;a shuttle cam positioned at a distal end of the primary ram, wherein the shuttle cam is operably coupled to the secondary ram;a roller clutch disposed between the drive collar and the shuttle cam; andan expander head operably coupled to the drive collar, wherein when the expanding tool is triggered, the secondary ram moves in a distal direction causing the shuttle cam and the drive collar to rotate about the primary ram,as the drive collar rotates, the expander head rotates a predetermined rotation amount. 2. The expanding tool of claim 1, wherein the primary ram comprises a proximal end and a distal end, the primary ram further comprising a primary ram flange at the proximal end of the primary ram. 3. The expanding tool of claim 2, further comprising: a primary ram hard-stop collar disposed within the first cavity. 4. The expanding tool of claim 3, further comprising: a primary ram return spring provided along an external surface of the primary ram between the primary ram flange and a proximal face of the primary ram hard-stop collar. 5. The expanding tool of claim 1, wherein the shuttle cam is seated along a distal face of the primary ram hard-stop collar. 6. The expanding tool of claim 1, wherein the secondary ram comprises a proximal end and a distal end, andwherein the secondary ram includes a secondary ram flange at the proximal end of the secondary ram. 7. The expanding tool of claim 6, wherein the second cavity comprises a stepped cavity, andwherein a secondary ram return spring is provided along an external surface of the secondary ram between the secondary ram flange and a step surface of the stepped cavity. 8. The expanding tool of claim 7, wherein the secondary ram includes a ridge that protrudes outward from the external surface of the secondary ram. 9. The expanding tool of claim 8, wherein the expander head rotates until the ridge of the secondary ram reaches the step surface of the stepped cavity. 10. The expanding tool of claim 9, further comprising: an expander cone coupled to the primary ram, wherein the expander head comprises a plurality of expander head segments, wherein, when the ridge of the secondary ram reaches the step surface of the stepped cavity: (i) rotation of the expander head stops, and (ii) the secondary ram and the primary ram move together in the distal direction driving the expander cone toward the expander head causing the plurality of expander head segments to expand radially. 11. The expanding tool of claim 1, wherein the roller clutch is configured to allow the drive collar to freewheel on the shuttle cam in a first rotary direction and allow the shuttle cam to engage and rotate the drive collar in a second rotary direction opposite the first rotary direction. 12. The expanding tool of claim 1, wherein the shuttle cam includes a slanted groove that forms a cam, and wherein the expanding tool further comprises: a cam roller coupled to the secondary ram, wherein the cam roller is positioned within, and configured to roll along an internal surface of, the groove. 13. The expanding tool of claim 12, further comprising: a cam roller carrier coupled to the secondary ram, wherein the cam roller carrier is cylindrical in shape and comprises the cam roller at a distal end of the cam roller carrier. 14. The expanding tool of claim 1, wherein the drive collar comprises an engaging face comprising a plurality of lugs. 15. The expanding tool of claim 14, wherein a proximal surface of the expander head comprises a plurality of grooves that are geometrically configured to match the plurality of lugs of the engaging face of the drive collar, such that rotation of the drive collar causes the expander head to rotate. 16. The expanding tool of claim 15, wherein the plurality of lugs comprise a trapezoidal geometrical configuration and the plurality of grooves of the expander head are trapezoidal to match the plurality of lugs. 17. The expanding tool of claim 1, wherein the expander head comprises a plurality of expander head segments, andwherein an outer surface of the plurality of expander head segments comprises a plurality of ribs provided near a frustoconical end of the expander head. 18. The expanding tool of claim 1, further comprising: a motor, anda pump, wherein activation of the motor causes the pump to provide pressurized hydraulic fluid to the first cavity causing the secondary ram to move in the distal direction. 19. The expanding tool of claim 18, further comprising: a pressure sensor configured to provide pressure sensor information indicative of a pressure level of the pressurized hydraulic fluid in the first cavity, wherein, when the pressure sensor information indicate that the pressure level of the pressurized hydraulic fluid in the in the first cavity has reached a predetermined pressure level, the motor is deactivated. 20. The expanding tool of claim 19, further comprising: a dump valve connecting the first cavity to a fluid reservoir, wherein, when the motor is deactivated, the dump valve is activated so as to provide a path for the pressurized hydraulic fluid in the first cavity to flow to the fluid reservoir.
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이 특허에 인용된 특허 (62)
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