Valve actuatorA valve actuator is the mechanism for opening and closing a valve. Manually operated valves require someone in attendance to adjust them using a direct or geared mechanism attached to the valve stem. Power-operated actuators, using gas pressure, hydraulic pressure or electricity, allow a valve to be adjusted remotely, or allow rapid operation of large valves. Power-operated valve actuators may be the final elements of an automatic control loop which automatically regulates some flow, level or other process.
Robot autonomevignette|exemple de robot autonome de type rover Un robot autonome, également appelé simplement autorobot ou autobot, est un robot qui exécute des comportements ou des tâches avec un degré élevé d'autonomie (sans influence extérieure). La robotique autonome est généralement considérée comme un sous-domaine de l'intelligence artificielle, de la robotique et de l'. Les premières versions ont été proposées et démontrées par l'auteur/inventeur David L. Heiserman.
Linear actuatorA linear actuator is an actuator that creates motion in a straight line, in contrast to the circular motion of a conventional electric motor. Linear actuators are used in machine tools and industrial machinery, in computer peripherals such as disk drives and printers, in valves and dampers, and in many other places where linear motion is required. Hydraulic or pneumatic cylinders inherently produce linear motion. Many other mechanisms are used to generate linear motion from a rotating motor.
Undulatory locomotionUndulatory locomotion is the type of motion characterized by wave-like movement patterns that act to propel an animal forward. Examples of this type of gait include crawling in snakes, or swimming in the lamprey. Although this is typically the type of gait utilized by limbless animals, some creatures with limbs, such as the salamander, forgo use of their legs in certain environments and exhibit undulatory locomotion. In robotics this movement strategy is studied in order to create novel robotic devices capable of traversing a variety of environments.
Bio-inspired roboticsBio-inspired robotic locomotion is a fairly new subcategory of bio-inspired design. It is about learning concepts from nature and applying them to the design of real-world engineered systems. More specifically, this field is about making robots that are inspired by biological systems, including Biomimicry. Biomimicry is copying from nature while bio-inspired design is learning from nature and making a mechanism that is simpler and more effective than the system observed in nature.
Robotique industriellevignette|droite|Un robot industriel Kawasaki FS-03N, robot de soudage La robotique industrielle est officiellement définie par l'Organisation Internationale de Normalisation (ISO) comme étant un système commandé automatiquement, multi-applicatif, reprogrammable, polyvalent, manipulateur et programmable sur trois axes ou plus. Les applications typiques incluent les robots de soudage, de peinture et d'assemblage. L'avantage de la robotique industrielle est sa rapidité d'exécution et sa précision ainsi que la répétition de cette précision dans le temps.
Self-reconfiguring modular robotModular self-reconfiguring robotic systems or self-reconfigurable modular robots are autonomous kinematic machines with variable morphology. Beyond conventional actuation, sensing and control typically found in fixed-morphology robots, self-reconfiguring robots are also able to deliberately change their own shape by rearranging the connectivity of their parts, in order to adapt to new circumstances, perform new tasks, or recover from damage.
Aquatic locomotionAquatic locomotion or swimming is biologically propelled motion through a liquid medium. The simplest propulsive systems are composed of cilia and flagella. Swimming has evolved a number of times in a range of organisms including arthropods, fish, molluscs, amphibians, reptiles, birds, and mammals. Swimming evolved a number of times in unrelated lineages. Supposed jellyfish fossils occur in the Ediacaran, but the first free-swimming animals appear in the Early to Middle Cambrian.
Robotvignette|Atlas (2013), robot androïde de Boston Dynamics vignette|Bras manipulateurs dans un laboratoire (2009) vignette|NAO (2006), robot humanoïde éducatif d'Aldebaran Robotics vignette|DER1 (2005), un actroïde d'accueil vignette|Roomba (2002), un robot ménager Un robot est un dispositif mécatronique (alliant mécanique, électronique et informatique) conçu pour accomplir automatiquement des tâches imitant ou reproduisant, dans un domaine précis, des actions humaines.
Atlas (robot)vignette|Vue de face du robot Atlas en 2013. Atlas est un robot de type androïde principalement développé par Boston Dynamics, sous financement et surveillance de la Defense Advanced Research Projects Agency (DARPA). Il mesure 1,88 m et est conçu pour diverses tâches de recherche et sauvetage, il a été dévoilé au public le . Le développement d'Atlas fait partie du Darpa Robotics Challenge. En 2016, une vidéo présentant une évolution du robot est diffusée par Boston Dynamics.