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37mm DC Gear Motor 12v 24v 30W High Torque Gear Micro Speed Regulation Electric Engine CW CCW
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DC12V 24V 45-200RPM High Torque Electric DC Gear Box Motor Speed Reducer Motor Reciprocating
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Brushless Impact Driver Electric Screwdriver 10mm 21+2 Torque Cordless Drill 2 Gear Speed Power
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28mm High Precision High Torque planetary gear reduction box speed ratio 3-461 for CM28-385
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What is the difference between torque and speed?
Torque is the measure of the rotational force applied to an object, while speed is the measure of how quickly an object is rotating. Torque is typically measured in units like pound-feet or Newton-meters, while speed is measured in units like revolutions per minute (RPM) or radians per second. In simple terms, torque determines the object's ability to overcome resistance, while speed determines how fast the object can rotate.
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What is the relationship between speed and torque?
The relationship between speed and torque is inversely proportional in a motor or engine. This means that as speed increases, torque decreases, and vice versa. This relationship is governed by the power equation, where power is the product of torque and speed. Therefore, a motor or engine can produce high torque at low speeds or high speeds with low torque, but not both simultaneously.
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How much torque can a torque converter automatic transmission transfer?
A torque converter automatic transmission can transfer a significant amount of torque, typically ranging from 200 to 600 lb-ft in most passenger vehicles. However, heavy-duty trucks and high-performance vehicles can handle even higher torque levels, up to 1000 lb-ft or more. The torque converter allows for smooth power delivery and torque multiplication, making it suitable for a wide range of vehicles and driving conditions.
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Why does the torque decrease as the speed increases?
As the speed of an object increases, the torque required to maintain that speed decreases due to the conservation of angular momentum. At higher speeds, the object has more kinetic energy, which means less torque is needed to maintain its motion. Additionally, at higher speeds, there is less resistance or friction acting against the object's motion, further reducing the torque required.
Similar search terms for Torque:
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Double Shaft Worm Gear Motor DC 12V 24V High Torque Maximum 70KG Self Locking Adjustable Speed
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Dsservo Waterproof DS5180 80KG High Speed Torque Digital Servo 8.4V Metal Gear Motor For Redcat HPI
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Micro 37GA Full Metal Gear Motor with Waterproof Cover Large Torque DC 24V 26RPM Slow Speed
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SHAHE TSQ Fixed Torque Screwdriver Adjustable Torque Screwdriver With 4 Pieces Batch Head Torque
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What is the difference between the torque and the holding torque?
Torque is a measure of the rotational force produced by a motor, while holding torque is the amount of torque required to maintain a stationary position. In other words, torque is the force that causes rotation, while holding torque is the force that resists rotation and keeps an object in place. Holding torque is important in applications where the motor needs to hold a position without moving, such as in robotics or CNC machines.
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Who can explain torque?
Torque can be explained by a physicist or an engineer who understands the concept of rotational force. Torque is a measure of the rotational force applied to an object, causing it to rotate around an axis. It is calculated by multiplying the force applied by the distance from the axis of rotation. Understanding torque is essential in various fields such as mechanics, engineering, and physics.
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Why does the torque decrease as the rotational speed increases?
The torque decreases as the rotational speed increases due to the conservation of energy. As the rotational speed increases, the kinetic energy of the rotating object also increases. In order to maintain the conservation of energy, the torque must decrease to compensate for the increase in kinetic energy. This relationship is described by the equation T = Iα, where T is torque, I is the moment of inertia, and α is the angular acceleration. As the rotational speed increases, the angular acceleration decreases, resulting in a decrease in torque.
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How do the speed and torque of series-wound motors behave?
Series-wound motors have a unique characteristic where the speed and torque are inversely proportional. This means that as the speed of the motor increases, the torque decreases, and vice versa. This relationship is due to the fact that the magnetic field strength in the motor is directly related to the current flowing through it, affecting both speed and torque. As a result, series-wound motors are well-suited for applications that require high starting torque but can tolerate variations in speed.
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