Cartridge receiving jaw for surgical stapler and associated method of manufacture with stamping
A method is used to manufacture a lower jaw of an end effector of a surgical instrument. The method includes providing a lower jaw that includes a U-shaped body portion. The U-shaped body portion includes a bottom wall interposed between first and second opposing side walls. The method also includes forming at least one feature into at least one of the first and second side walls, wherein the at least one feature has a near net shape. The method also includes subsequently machining the at least one feature to have a machined shape.
1. A method of manufacturing a lower jaw of an end effector of a surgical instrument, the method comprising:
(a) forming a lower jaw that includes a U-shaped body portion using at least one of stamping, additive manufacturing, selective laser melting, direct metal laser sintering, or metal injection molding, wherein the U-shaped body portion includes a bottom wall interposed between first and second opposing side walls;
(b) forming at least one feature into at least one of the first and second side walls; and
(c) subsequently machining the at least one feature.
2. The method of claim 1 , wherein forming the at least one feature comprises performing at least one stamping process to form the at least one feature after forming the lower jaw.
3. The method of claim 1 , wherein forming the at least one feature further comprises forming a first feature in the first side wall through a first manufacturing process, and subsequently forming a second feature in the second side wall through a second manufacturing process.
4. The method of claim 1 , wherein non-machined portions of the lower jaw have a first surface finish and machined portions of the lower jaw have a second surface finish, wherein the second surface finish is finer than the first surface finish.
5. The method of claim 1 , wherein the at least one feature comprises a first distal cutout in the first side wall and a second distal cutout in the second side wall, wherein the first and second distal cutouts are configured to align a staple cartridge, wherein the first and second distal cutouts produce obtuse interior angles prior to the machining step, wherein the first and second distal cutouts produce 90-degree interior angles after the machining step.
6. The method of claim 1 , wherein the at least one feature comprises a first proximal aperture in the first side wall and a second proximal aperture in the second side wall.
7. The method of claim 6 , wherein only distal portions of the first and second proximal apertures are machined such that the remainder of the first and second proximal apertures are not machined.
8. The method of claim 6 , wherein the first and second proximal apertures have a first area prior to the machining step, wherein the first and second proximal apertures have a second area after the machining step that is greater than the first area prior to the machining step.
9. The method of claim 1 , wherein forming the lower jaw comprises forming the lower jaw to include the U-shaped body portion with first and second outwardly extending flanges, wherein the first outwardly extending flange extends from the first side wall and the second outwardly extending flange extends from the second side wall.
10. The method of claim 9 , wherein forming the lower jaw comprises a first stamping process to form the U-shaped body portion and the first and second outwardly extending flanges, wherein forming at least one feature includes a second subsequent stamping process to impart the at least one feature.
11. The method of claim 9 , wherein the method further comprises providing a flat body prior to forming the lower jaw to include the U-shaped body portion.
12. The method of claim 9 , further comprising removing the first and second outwardly extending flanges using at least one manufacturing process.
13. The method of claim 1 , wherein after machining the at least one feature, the method further comprises coupling a lower longitudinally extending back to a bottom surface of the bottom wall.
14. The method of claim 1 , wherein forming the lower jaw further comprises forming the lower jaw using metal injection molding.
15. A method of manufacturing a lower jaw of an end effector of a surgical instrument, the method comprising:
(a) stamping a lower jaw of an end effector of the surgical instrument to include a U-shaped body portion, wherein the U-shaped body portion includes a bottom wall and opposing first and second side walls;
(b) stamping the first wall to include a first proximal aperture, wherein the first proximal aperture has a first area prior to machining;
(c) stamping the second wall to include a second proximal aperture, wherein the second proximal aperture has the first area prior to machining; and
(d) subsequently machining the first and second proximal apertures to have second areas that are greater than the first areas.
16. The method of claim 15 , subsequently machining only distal portions of the first and second proximal apertures such that the remainder of the first and second proximal apertures are not machined.
17. The method of claim 15 , wherein forming the lower jaw further comprises forming the lower jaw using metal injection molding.
18. A method of manufacturing a lower jaw of an end effector of a surgical instrument, the method comprising:
(a) providing a lower jaw that includes a U-shaped body portion, wherein the U-shaped body portion includes a bottom wall interposed between first and second opposing side walls;
(b) forming at least one feature into at least one of the first and second side walls;
(c) subsequently machining the at least one feature to have a machined shape; and
(d) coupling a lower longitudinally extending back to a bottom surface of the bottom wall.
19. The method of claim 18 , wherein coupling the lower longitudinally extending back to the bottom surface of the bottom wall further comprises welding the lower longitudinally extending back to the bottom surface of the bottom wall.
20. The method of claim 18 , wherein forming the lower jaw comprises forming the lower jaw using at least one of additive manufacturing, selective laser melting, direct metal laser sintering, or metal injection molding.