live4thrillz
New member
Maybe rim size matters?
From an engineer's view: The larger the rim diameter (and same outer tire diameter) the tire sidewall is shorter. When torque is applied the rim turns, THEN the tire follows it. My theory is that when turning if he hits the gas the shorter sidewall makes the tire spin quickly because there's less "flex" which causes a skid. If there were a little more sidewall, the extra flex would allow the tire to "slowly" react to the rim turning and won't provide a sudden jerk or torque, reducing the tendency to skid. This is merely from an accelerating/turning standpoint.
I used to drive a Mustang and there's a reason why, in general, low profile tires spin more when accelerating. Look at funny drag cars when launching. Their bigger tires (compared to rim size) allow the tire to twist, and more controllably apply torque from the rim. Just a thought! Anyone agree?
From an engineer's view: The larger the rim diameter (and same outer tire diameter) the tire sidewall is shorter. When torque is applied the rim turns, THEN the tire follows it. My theory is that when turning if he hits the gas the shorter sidewall makes the tire spin quickly because there's less "flex" which causes a skid. If there were a little more sidewall, the extra flex would allow the tire to "slowly" react to the rim turning and won't provide a sudden jerk or torque, reducing the tendency to skid. This is merely from an accelerating/turning standpoint.
I used to drive a Mustang and there's a reason why, in general, low profile tires spin more when accelerating. Look at funny drag cars when launching. Their bigger tires (compared to rim size) allow the tire to twist, and more controllably apply torque from the rim. Just a thought! Anyone agree?