ARTIFICIAL FOOT
The invention relates to a prosthetic foot comprising a base body having a front sole region, a heel body having a rear sole region, and a slot configured to receive at least one spring element, in particular at least one leaf spring, the spring element configured to be pushed or inserted into the slot. In a disposed state, the spring element engages in the base body and the heel body such that the heel body is spring mounted relative to the base body.
1 . A prosthetic foot comprising:
a base body having a front sole region;
a heel body having a rear sole region; and
a slot configured to receive at least one spring element, the spring element configured to be pushed or inserted into the slot,
wherein, in a disposed state, the spring element engages in the base body and the heel body such that the heel body is spring mounted relative to the base body.
2 . The prosthetic foot according to claim 1 , wherein:
the spring element is connected centrally to the base body using one of an adhesive connection, a screw connection, a latching connection, or a press fit connection.
3 . The prosthetic foot according to claim 1 , wherein:
the spring element is mounted in at least one of an opening in a front region of the base body or an opening in a rear region of the heel body so as to be movable in a longitudinal direction of the spring element.
4 . The prosthetic foot according to claim 1 , wherein:
the base body comprises a forefoot body and a mounting body, the front sole region located on an underside of the forefoot body, and
the mounting body is configured to receive an adapter.
5 . The prosthetic foot according to claim 4 , wherein:
the forefoot body is flexibly connected to the mounting body via a web.
6 . The prosthetic foot according to claim 1 , wherein:
the heel body is connected to the base body via a web, wherein the web is configured such that the web surrounds the spring element at least in sections.
7 . The prosthetic foot according to claim 1 , wherein:
the front sole region has a convex shape at least in sections, over at least 40% of a contact surface of the front sole region.
8 . The prosthetic foot according to claim 1 , wherein:
the base body comprises a stop element which extends downward at an angle of 30 to 60 degrees to a longitudinal axis of the spring element, and which rests on the spring element.
9 . The prosthetic foot according to claim 1 , wherein:
the spring element, in the disposed state, is disposed in a plane that is substantially parallel to an adapter plane, or is disposed in a plane that rises toward a front of the prosthetic foot.
10 . The prosthetic foot according to claim 1 , wherein:
the base body comprises a rear stop which is spaced apart from the heel body by a gap.
11 . The prosthetic foot according to claim 1 , wherein the prosthetic foot is produced in an additive process.
12 . The prosthetic foot according to claim 1 , wherein:
at least two of the base body, the heel body, a forefoot body, a mounting body, a web that flexibly connects the forefoot body to the mounting body, or a stop element that rests on the spring element formed in one piece.
13 . The prosthetic foot according to claim 1 , wherein:
the spring element comprises fiber-reinforced plastic.
14 . The prosthetic foot of claim 1 , wherein:
the spring element comprises GFRP or CFRP.
15 . The prosthetic foot of claim 1 , wherein:
the spring element is a leaf spring.
16 . The prosthetic foot of claim 2 , wherein:
the spring element connected centrally to the base body is connected to the base body at a point within a region of the spring element that comprises 10% of a total length from a center of the spring element.
17 . The prosthetic foot of claim 9 , wherein:
the adapter plane is defined by mounting points on the base body that are configured to mount an adapter.
18 . The prosthetic foot of claim 10 , wherein:
the gap is at least 1 cm.
19 . The prosthetic foot of claim 11 , wherein:
the additive process is a 3D printing process.