Most excavators now use hydraulic controls for almost everything except possibly forward and reverse track motion
Mechanized devices primarily use energy to perform work, converting it from one form to another, such as electrical energy into mechanical energy. However, some devices, like generators, can produce energy by converting kinetic energy from movement into electrical energy. In essence, while most mechanized devices utilize energy, certain types can also generate energy as a byproduct of their operation.
I think what you mean is Mechatronics. Mechatronics is the synergistic combination of precision mechanical engineering, electronic control and systems thinking in the design of products and manufacturing processes. It relates to the design of systems, devices and products aimed at achieving an optimal balance between basic mechanical structure and its overall control.
The pre-mechanical period refers to the early stages of information processing before the invention of mechanical devices. During this time, information was primarily recorded and transmitted through manual methods, such as writing on clay tablets, papyrus, and parchment. Key devices from this era include the abacus, which facilitated basic arithmetic calculations, and early counting devices like tally sticks. These tools laid the groundwork for more advanced mechanical innovations that followed in later periods.
A turbine is a device that converts fluid energy (such as from water, steam, or gas) into mechanical energy, typically to generate electricity or power machinery. In contrast, a motor converts electrical energy into mechanical energy, usually to drive machinery or vehicles. While both devices produce rotational motion, turbines primarily harness energy from a moving fluid, whereas motors rely on electrical power to create motion.
In the current state of science and medical technology many great things can be done to help people. Some doctors and scientists have discovered how to merge the human body with mechanical or robotic limbs and devices to help people who are amputees or who have lost limbs in accidents. In the future science and medicine will probably develop new ways to integrate the human body with mechanical and robotic devices to make daily life easier.
The electric motor
An electric motor, such as a starting motor
Control BUSES carries electrical signals that control devices & peripherals in Computers.
The Motor converts electrical into mechanical energy
Electrical degrees and mechanical degrees in dc motors are related by the equation: Deg(elec) = (Number of Poles/2) *(Deg(mech))
Yes, the difference between electronic and electrical devices primarily lies in how they utilize electric current. Electrical devices typically operate by using current to produce mechanical work or heat, such as motors and heaters. In contrast, electronic devices manipulate electric current to control and process information, often using semiconductors, like in computers and smartphones. Essentially, electronics involve signal processing, while electrical devices focus on power transfer.
Electromagnets are used in electronic devices because they can create a magnetic field when electricity passes through them, which can be used to control the movement of mechanical components or to convert electrical energy into mechanical energy. This makes them versatile and efficient for applications such as speakers, relays, and motors in electronic devices.
Electrical energy is converted to mechanical energy in devices like electric motors. This conversion is achieved by using the magnetic field generated by the flow of electrical current to produce a mechanical force that drives the motion of the motor. The electrical energy is transformed into rotational mechanical energy in the motor, allowing it to perform useful work.
Of course. Many electrical applications involve mechanical devices such as circuit breakers, motors, generators.
A generator typically converts mechanical energy (from, for example, fuel combustion or wind) into electrical energy. This electrical energy is then used to power various devices or systems.
Our civilization is heavily based upon mechanical and electrical devices. To understand their use and their maintenance, one must understand chemical and mechanical energy.
Mechanical torque is converted to electrical power through the use of a generator. When the generator is rotated by the mechanical torque, it induces a magnetic field that generates an electric current. This current is then converted into electrical power, which can be used to power devices or be stored in batteries.