Modular exoskeleton for example for spinal cord injured patients
The invention concerns an exoskeleton made of elements combined or attached together, said elements being adjustable or not and said elements being made in a sandwich construction. The invention also concerns a method to manufacture such an exoskeleton.
1. An exoskeleton comprising:
articulated segments forming a structure of the exoskeleton;
body interface parts for attaching the exoskeleton to a user; and
a joint arranged between two of the articulated segments,
wherein the articulated segments include a sandwich construction, the sandwich construction including:
two outer layers made of a higher-strength material, and
an inner core layer made of a lower-strength material as compared to the higher-strength material, the inner core layer having a thickness that is thicker than a thickness of the outer layers.
2. The exoskeleton as defined in claim 1 , wherein the exoskeleton is formed as a limb exoskeleton including the two articulated segments via the joint.
3. The exoskeleton as defined in claim 1 , wherein at least one of the articulated segments includes two parts, one part having a longitudinal slit and the other part having a corresponding hole for allowing an individual length adjustment of the one segments.
4. The exoskeleton as defined in claim 2 , wherein the exoskeleton is formed as a lower limb exoskeleton, and the two articulated segments form a thigh and a shank of a leg, respectively.
5. The exoskeleton as defined in claim 2 , wherein the exoskeleton is formed as an upper limb exoskeleton with the two articulated segments forming a forearm and an arm, respectively.
6. The exoskeleton as defined in claim 1 , wherein the sandwich construction includes two additional outer layers, the additional outer layers located between the inner core layer and one of the outer layers, the two additional outer layers having the same outline as the inner core layer.
7. The exoskeleton as defined in claim 1 , wherein at least one of the body interface parts includes:
a fork element for attachment to the sandwich construction of the articulated segments, the fork element formed by two parallelly-arranged plates.
8. The exoskeleton as defined in claim 1 , further comprising:
reinforcement plates interconnected between the two outer layers, traversing the inner core layer.
9. The exoskeleton as defined in claim 1 , wherein the joint includes a motor for a joint actuation.
10. The exoskeleton as defined in claim 9 , further comprising:
a belt transmission actuated by the motor.
11. The exoskeleton as defined in claim 10 , further comprising:
a belt tensioner for tensioning the belt.
12. The exoskeleton as defined in claim 1 , wherein the inner core layer is made of at least one of a cell foam, a wood, and a honeycomb, and the outer layers are made of at least one of a carbon fiber composite, and a fiber reinforced polymer.
13. The exoskeleton as defined in claim 1 , wherein the sandwich construction further includes:
two adhesive layers located between the outer layers and the inner core layer.
14. The exoskeleton as defined in claim 7 , wherein the two outer layers each have an opening to accommodate the two parallelly-arranged plates of the fork element.