I'm trying to model a special type on rack and pinion gear system where what is special is that the rack in not linear but circular(bigger rides on a circle off center from the pinion gear and much bigger than the pinion gear diameter pitch)

and I'm having problems with calculating the ration(in degrees) for the motion link between the rack and pinnion for confirming the model is right maybe I've got the pitch distance for the rack in the "pattern along path" wrong as well.


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The spacing in the rack pattern was correct, but you used the outside diameter of the tooth as the path, instead of the construction diameter - for want of a better description. I think it is PCD but not sure on that. Updated that.

I am also looking for designing a similar type of circular rack and pinion system where circular rack will be driving the pinion. I want to know how to calculate gear ratio for this system, and whether it can have a gear ratio of 50:1 or above?? Can someone please help me out. Thanking in advance

i just had to replace the power steering rack on my 2013 Fusion, 145k km. First the repair shop just reset the computer and got rid of the codes and I was back on the road, but that only worked for 4 days and 500 km. Problem came back, and this time wouldn't go away - they could clear the codes but they would comeback and no power steering as soon as the wheel was turned once. So, a new rack was installed. It didn't take long, and they had a Ford software tool so they were able to reprogram it without sending to the dealer. Cost was $150 for the first code clearing exercise (waste of money, it didn't solve anything), then $2200 for the replacement. The rack itself was $1400, another $150 to reprogram, $150 for wheel alignment, and the rest was labour and 13% HST. All prices were CAD of course. It's been 3 days and 100 km so far so good with the new rack installed. As stated, they aren't cheap; I didn't shop around for a repair centre, I just went to "my man" down the street. HIH.

A method of transforming a vertical rack and pinion-type electrode slide into a miniature drill press is described. Advantages of the instrument are noted and several applications suggested. Specifications are included for the aluminum electrode mold for cat cortical electrode casts.

When walking, the body is like an inverted pendulum. After the foot is put down to take a step, the body vaults over it, causing the hip to move up and down about 1.6 to 2.7 inches (4 to 7 cm). The Suspended-load Backpack frame sits still on the wearer's back, and the load is mounted on a load plate that is suspended from the frame by springs. The springs allow the load to slide up and down on bushings constrained to vertical rods, thus allowing the load to move with the same vertical motion as the hip, but lagging it by a fraction of a second, producing differential movement between the frame and load. The pogo-stick-like movement of the load generates mechanical energy that drives a rack-and-pinion device that powers a geared DC motor that acts as a generator mounted on the frame. The load plate can be locked to stop the device from sliding up and down and generating electricity. 2351a5e196

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