Automatic Transmission, How it works? - YouTube

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When it comes to high-performance automobiles, automatic transmission are
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the popular option for easy and reliable driving.
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In this video we will explore the working principles of this complex mechanism
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in a simple and logical way.
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We'll use an automatic transmission developed by Allison Transmission for this purpose.
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Automatic transmissions work based on the planetary gear set.
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In order to understand this process, let's take a look at the basic parts of planetary gear sets.
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Planetary gear sets have two input and one output.
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In automatic transmission the output rotation is drawn from the planet carrier.
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The two inputs are connected to the ring and sun gears.
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Now let's see what happens to the output speed when we apply different speeds to the inputs.
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Here the ring gear is stationary and rotation is given exclusive to the sun gear.
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This will cause the carrier to spin as you can see here.
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The ring gear is also rotating.
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The ring and sun gears rotate at the same speed.
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In this case the whole mechanism moves as a single unit.
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The ring gear speed is increased further.
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Turning the sun gear in the opposite direction will result in a reverse gear.
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So the operation of automatic transmission
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is all about transmitting different rotation speeds
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into the ring and sun gears.
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The beauty of automatic transmission is that this speed variation
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can be transmitted simply by engaging few clutch packs.
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In the coming sessions we well see how this is achieved in Allison.
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In an automatic transmission there is no direct connection
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between the input and the output shafts,
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rather there is an intermediate shaft between the two.
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In addition to clutch packs are used for transmitting power.
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Pressing the clutch packs together will lock the hub to the case.
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This is the simplest form of automatic transmission.
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With this in mind, let's see how 1st gear works.
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If 1st clutch pack is applied
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the input shaft will connect to the intermediate shaft.
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On the other hand, if 2nd clutch pack is applied,
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the ring gear will connect to the case
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which will make the gear become stationary.
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In order to achieve 1st gear
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just apply both the clutch packs together.
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You can note that the input shaft will turn the sun gear.
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Since the ring gear is stationary
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the output shaft will rotate as shown
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with almost one third of the input speed.
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To achieve additional gear ratios at another planetary gear set.
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It is clear that apply C1 will always rotate the both of sun gears at the input shaft speed.
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If we apply C4 as well the planet carrier of the 2nd set will turn.
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But here is the tricky part:
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this planet carrier is permanently linked to the ring gear of the 1st set.
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So, when C1 and C4 are applied together, the ring gear of the output set will turn.
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Thus, at the output set the situation is similar to that at 1st gear
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except that here the ring gear will rotate as well.
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This means that the speed of the output planet carrier will increase.
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This is 2nd gear of the transmission.
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The planet carrier is also fitted with a hollow shaft.
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The shaft can be directly connected to the input shaft with the help of a rotating clutch module.
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Take a moment to observe and understand this arrangement -
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the rest of the process will be easy.
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With this setup we can achieve 4th gear with a direct drive.
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We know: in order to get a direct drive
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the ring and sun gears of the output set should rotate at the speed of input shaft.
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If we apply C1 and C2, this is what happens:
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The sun and ring gears will be directly connected to the input shaft.
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In order to achieve 6th gear just remove C1 and apply C4.
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Here at 2nd set the input rotation is given to the carrier and the ring gear is stationary.
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This combination gives a very high rotational speed to the sun gear.
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Thus, we can achieve a high over drive ratio at the output.
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3rd planetary gear set is required to get the remaining gear ratios.
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The sun gear of this set is always connected to the input shaft as shown here.
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And here again the output of the set is connected to the input of the adjacent set.
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This means that applying C3 will always turn the ring gear of 2nd set.
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For the remaining gear ratios C3 is always applied.
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For 3rd gear just apply C1 as well.
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For 5th gear remove C1 and apply C2.
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In order to go in reverse apply the ring gear clutch C5 as well.
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Since the planet gear of 2nd set cannot revolve,
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they will spin as shown here.
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This will eventually lead to the reverse rotation of the sun gear.
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Consequently, the final output will be a rotation in the opposite direction.
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A transmission control unit will decide when to apply which clutch pack.
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Unlike manual transmissions a torque converter is needed in the automatic transmissions.
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When the transmission is in gear and we apply the brakes
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we have to isolate the rotation of the engine
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from the transmission.
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With a fluid coupling the torque converter will help accomplish this.
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A 2D animation will also give you a good idea of the automatic transmission system.
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Thank you!
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Subtitles are written by @IEEE_English