elbow neck shoulder feet knee finger nose
4
Stationary Robots. These are robot that are fixed in position. They tend to have robot arms that can move about. The diagram below shows a large-scale stationary robot arm. It has mobile joints called 'the wrist', 'the elbow', 'the waist' and 'the shoulder'.
The future of robot joints is likely to focus on bio-inspired designs, utilizing soft robotics for greater flexibility and adaptability. Advances in materials science, such as smart materials and soft actuators, will enable joints that mimic human movement more closely. Furthermore, the integration of artificial intelligence will enhance the coordination and functionality of these joints, allowing robots to perform complex tasks in dynamic environments. Overall, the future of robot joints will emphasize agility, efficiency, and collaboration with humans.
Robear, the caregiving robot developed in Japan, features multiple degrees of freedom to effectively assist in tasks such as lifting and supporting patients. It has approximately 16 degrees of freedom, allowing for flexible movements that mimic human-like interactions. This level of articulation enables Robear to navigate various caregiving scenarios while ensuring safety and comfort for those it assists.
A robot
cats
However many the designer wants it to have.
Entertainment robots apparently have 7 flexible joints.
The same number as a car driven by a person. The precise number would depend on the make and model of the car.
It depends on what kind of robot you are talking about.
Rescue robots typically have multiple degrees of freedom (DoF) in their flexible joints to navigate complex environments effectively. The number of DoF can vary depending on the robot's design; for instance, robotic arms may have 5 to 7 DoF to allow for a wide range of motion. Additionally, mobile rescue robots may have wheels or tracks that provide further movement capabilities, contributing to their overall flexibility. Ultimately, the specific configuration will depend on the robot's intended tasks and design.
to keep joints flexible u need regular exercises
In a robot there is a joint where ever you put a motor that will move the metal/plastic "bones" of the robot so you can have as many joints as you like. Source: My Brain
Ligaments are present in the joints of the bones.As joints ought to show free movement the substance by which they are made of should be flexible and ellastic. Bones are not elastic and flexible but cartilage is elastic and flexible..hence cartilage is present in ligaments. Ligaments are present in the joints of the bones.As joints ought to show free movement the substance by which they are made of should be flexible and ellastic. Bones are not elastic and flexible but cartilage is elastic and flexible..hence cartilage is present in ligaments.
Yes
cartilage
Study which deals with the construction and components of a robot. (It deals with the components such as wrist, arm, joints and body).