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In this video I will discuss a little bit more about hydraulic cylinders here's a simple hydraulic system that contains a cylinder hydraulic cylinders are specified by giving the bore size the rod size and the Stroke the bore size is simply the inside diameter of the cylinder that's what the word bore means the diameter of a hole in this case it's two and a quarter inches the rod size is the diameter of the rod and the stroke indicates how far the rod moves as the cylinder extends or retracts for instance let's retract this cylinder all the way to the bottom and make a mark at the end of the rod as it extends it will eventually reach fully extended position the distance between the fully retracted and the fully extended position is the stroke of the cylinder now let's talk about how we calculate the load lifting capacity of a hydraulic system in this simple hydraulic system a pump provides a constant flow of hydraulic oil and if the directional control valve were shifted to this position the oil would flow through it and down into the bottom of the hydraulic cylinder as the hydraulic cylinder moves the oil in the top would be forced out back through the valve and into the reservoir if this hydraulic cylinder were required to lift a weight it is very important to notice that the pressure in this line that's leaving the hydraulic cylinder has nothing to do with the amount of weight that's being lifted pressure depends solely on downstream restrictions in the system and if fluid is free to flow through this pipe and no pressure would build up in this line because fluid is free to flow in this red line however pressure would have to build in order to overcome the load let's say the pressure was able to build to a thousand psi if you remember from your high school physics class pressure acts in all different directions so there would be a thousand psi of pressure in all different directions in the bottom of this cylinder the pressure on the outside walls would try to burst the cylinder open so we would need to make sure that the wall thickness was sufficient so that the cylinder didn't burst open the pressure along the bottom would try to blow off the N of this cylinder so we need to make sure that that was strong enough and the pressure on this piston would try to push the piston up so let's focus only on the pressure on this piston because that's what's going to prthe lifting capacity in this cylinder psi of pressure stands for pounds per square inch if there's a thousand pounds for every square inch then we will need to know how many square inches of area are on the bottom of the piston if this was a two and a quarter inch bore and we could calculate the.