ABOUT WHEEL ALIGNMENT AND BALANCE
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ABOUT WHEEL ALIGNEMENT AND BALANCE - Care Care Magazine


Wheel alignment and Wheel Balancing are two totally different things, but many people often get them confused.  In a nutshell,
wheel alignment consists of adjusting the angles of the wheels so that they are perpendicular to the ground and parallel to each other. The purpose of these adjustments is maximum tire life and a vehicle that tracks straight and true when driving along a straight and level road.  Wheel Balancing, on the other hand allows the tires and wheels to spin without causing any vibrations.  This is accomplished by checking for any heavy spots on the wheel-tire combination and compensating for it by placing a measured lead weight on the opposite site of the wheel from where the heavy spot is.

The symptoms of a car that is out of alignment are:

  • Uneven or rapid tire wear
  • Pulling or drifting away from a straight line
  • Wandering on a straight level road
  • Spokes of the steering wheel off to one side while driving on a straight and level road.

The symptoms of a wheel that is out of balance are:

  • Vibration in the steering wheel at certain highway speeds.
  • Vibration in the seat or floorboard at certain highway speeds.
  • Scalloped or cupped wear pattern on the tires

Wheel Alignment: To find out if you need an alignment, first check each tire and look for uneven wear patterns. The problem with this method, however, is that if you can see a wear pattern like the ones listed below, it may be too late to save that tire. This is why it is a good idea to have your alignment checked periodically. 

At each tire, take a coin and insert it in the tread at the inside, center and outside.

  • Overinflated TireIf the tread is deeper on the edges than in the center, the tire is over inflated.
  • Underinflated TireIf the tread is deeper in the center than the edges, the tire is under inflated.
  • Tire Wear from Wheel Alignment ProblemIf the tread is deeper on one side than the other, have your wheel alignment checked soon.
  • Tire Wear from Wheel Alignment ProblemRun your hand back and forth across the tread, being careful not to cut yourself on any debris or exposed steel belt wire. If the tread is smooth in one direction, but jagged in the other you have what is called a "saw-tooth" wear pattern which is caused by a toe-in problem. Have the alignment checked as soon as possible as this condition causes rapid tire wear.

The first two conditions do not call for a wheel alignment but the second two do. If these wear patterns are pronounced, you should replace the tires or move them to the rear before aligning the car. Ask your alignment specialist to be sure.

Another indication of an out-of-alignment condition is a car that continuously drifts or pulls to one side of the road when you let go of the wheel. A car that is hard to keep in a straight line without constant steering corrections is also a candidate. These conditions may or may not also contribute to premature tire wear.

A wheel alignment cannot be done on a car with loose or worn front end parts. The technician will first check for worn parts and inform you of any problems before beginning the alignment.

The best type of wheel alignment is a four wheel alignment. Many cars today have adjustable rear alignment settings, but even for cars without adjustments in the rear, a four wheel alignment will allow the technician to identify any rear tracking problems and compensate for them with adjustments to the front.

After the wheel alignment is finished, you should drive the car on a straight and level road and check that the car goes straight and that the steering wheel is in the proper position with the spokes level. If you notice a problem, take the car back and have the technician drive it and fine-tune the alignment settings.

In its most basic form, a wheel alignment consists of adjusting the angles of the wheels so that they are perpendicular to the ground and parallel to each other. The purpose of these adjustments is maximum tire life and a vehicle that tracks straight and true when driving along a straight and level road.

This article begins with information that any motorist should know; however, if you are interested in learning more about this topic, click on the underlined words for more detailed explanations of each term. We will cover various levels of detail with the deepest levels containing information that even a wheel alignment technician will find informative.

Wheel Alignment is often confused with Wheel Balancing.  The two really have nothing to do with each other except for the fact that they affect ride and handling.  If a wheel is out of balance, it will cause a vibration at highway speeds that can be felt in the steering wheel and/or the seat.  If the alignment is out, it can cause excessive tire wear and steering or tracking problems.  For more information on Wheel Balancing, Click Here.


 

If you know anything about wheel alignment, you've probably heard the terms Camber, Caster and Toe-in.

Camber

Camber is the angle of the wheel, measured in degrees, when viewed from the front of the vehicle. If the top of the wheel is leaning out from the center of the car, then the camber is positive ,if it's leaning in, then the camber is negative. If the camber is out of adjustment, it will cause tire wear on one side of the tire's tread. If the camber is too far negative, for instance, then the tire will wear on the inside of the tread.

Camber wear pattern

If the camber is different from side to side it can cause a pulling problem. The vehicle will pull to the side with the more positive camber. On many front-wheel-drive vehicles, camber is not adjustable. If the camber is out on these cars, it indicates that something is worn or bent, possibly from an accident and must be repaired or replaced.

 Caster

 

When you turn the steering wheel, the front wheels respond by turning on a pivot attached to the suspension system. Caster is the angle of this steering pivot, measured in degrees, when viewed from the side of the vehicle. If the top of the pivot is leaning toward the rear of the car, then the caster is positive, if it is leaning toward the front, it is negative. If the caster is out of adjustment, it can cause problems in straight line tracking. If the caster is different from side to side, the vehicle will pull to the side with the less positive caster. If the caster is equal but too negative, the steering will be light and the vehicle will wander and be difficult to keep in a straight line. If the caster is equal but too positive, the steering will be heavy and the steering wheel may kick when you hit a bump. Caster has little affect on tire wear.

The best way to visualize caster is to picture a shopping cart caster. The pivot of this type of caster, while not at an angle, intersects the ground ahead of the wheel contact patch. When the wheel is behind the pivot at the point where it contacts the ground, it is in positive caster. Picture yourself trying to push the cart and keep the wheel ahead of the pivot. The wheel will continually try to turn from straight ahead. That is what happens when a car has the caster set too far negative. Like camber, on many front-wheel-drive vehicles, caster is not adjustable. If the caster is out on these cars, it indicates that something is worn or bent, possibly from an accident, and must be repaired or replaced.

 

Toe-in 

The toe measurement is the difference in the distance between the front of the tires and the back of the tires. It is measured in fractions of an inch in the US and is usually set close to zero which means that the wheels are parallel with each other. Toe-in means that the fronts of the tires are closer to each other than the rears. Toe-out is just the opposite. An incorrect toe-in will cause rapid tire wear to both tires equally. This type of tire wear is called a saw-tooth wear pattern as shown in this illustration.

If the sharp edges of the tread sections are pointing to the center of the car, then there is too much toe-in. If they are pointed to the outside of the car then there is too much toe-out. Toe is always adjustable on the front wheels and on some cars, is also adjustable for the rear wheels.

Four-Wheel Alignments

There are two main types of 4-wheel alignments. In each case, the technician will place an instrument on all four wheels. In the first type the rear toe and tracking is checked, but all adjustments are made at the front wheels. This is done on vehicles that do not have adjustments on the rear. The second type is a full 4-wheel alignment where the adjustments are first made to true up the rear alignment, then the front is adjusted. A full 4-wheel alignment will cost more than the other type because there is more work involved.

Other facts every driver should know about wheel alignments.

  • A proper wheel alignment should always start and end with a test drive.

  • The front end and steering linkage should be checked for wear before performing an alignment.

  • The tires should all be in good shape with even wear patterns.  If you have a tire with excessive camber wear, for instance, and you correct the alignment problem that caused that wear, the tire will now be making only partial contact with the road. (see illustration on right)

  •  Pulling problems are not always related to wheel alignment.  Problems with tires (especially unequal air pressure), brakes and power steering can also be responsible. It is up to a good wheel alignment technician to determine the cause.

Advanced Wheel Alignment Information.

While Camber, Caster & Toe-in are the settings that are always checked when doing a wheel alignment, they are not the only settings. Below is a list of the alignment settings that are important for a wheel alignment technician to know about in order to diagnose front end problems.

To find out more about each of these measurements, click on them.

 

Camber

When camber specifications are determined during the design stage, a number of factors are taken into account. The engineers account for the fact that wheel alignment specifications used by alignment technicians are for a vehicle that is not moving. On many vehicles, camber changes with different road speeds. This is because aerodynamic forces cause a change in riding height from the height of a vehicle at rest. Because of this, riding height should be checked and problems corrected before setting camber. Camber specs are set so that when a vehicle is at highway speed, the camber is at the optimal setting for minimum tire wear.

For many years the trend has been to set the camber from zero to slightly positive to offset vehicle loading, however the current trend is to slightly negative settings to increase vehicle stability and improve handling.

Caster

Positive caster improves straight line tracking because the caster line (the line drawn through the steering pivot when viewed from the side) intersects the ground ahead of the contact patch of the tire. Just like a shopping cart caster, the wheel is forced behind the pivot allowing the vehicle to track in a straight line.

If this is the case, then why did most cars have negative caster specs prior to 1975 ? There are a couple of reasons for this. In those days, people were looking for cars that steered as light as a feather, and cars back then were not equipped with radial tires. Non-radial tires had a tendency to distort at highway speed so that the contact patch moved back past the centerline of the tire (Picture a cartoon car speeding along, the tires are generally drawn as egg-shaped). The contact patch generally moves behind the caster line causing, in effect, a positive caster. This is why, when you put radial tires on this type of car, the car wanders from side to side and no longer tracks straight. To correct this condition, re-adjust the caster to positive and the car should steer like a new car.

 

Toe

Like camber, toe will change depending on vehicle speed. As aerodynamic forces change the riding height, the toe setting may change due to the geometry of the steering linkage in relation to the geometry of the suspension. Because of this, specifications are determined for a vehicle that is not moving based on the toe being at zero when the vehicle is at highway speed. In the early days prior to radial tires, extra toe-in was added to compensate for tire drag at highway speed.

On some older alignment machines, toe-in was measured at each wheel by referencing the opposite wheel. This method caused problems with getting the steering wheel straight the first time and necessitated corrective adjustments before the wheel was straight. Newer machines reference the vehicle's centerline by putting instruments on all four wheels. For more information on this see Steering Center and Thrust angle.

Steering Axis Inclination (SAI)

SAI is the measurement in degrees of the steering pivot line when viewed from the front of the vehicle. This angle, when added to the camber to form the included angle (see below) causes the vehicle to lift slightly when you turn the wheel away from a straight ahead position. This action uses the weight of the vehicle to cause the steering wheel to return to the center when you let go of it after making a turn. Because of this, if the SAI is different from side to side, it will cause a pull at very slow speeds. Most alignment machines have a way to measure SAI; however it is not separately adjustable. The most likely cause for SAI being out is bent parts which must be replaced to correct the condition. SAI is also referred to as KPI (King Pin Inclination) on trucks and old cars with king pins instead of ball joints.

 

Included Angle

Included angle is the angle formed between the SAI and the camber. Included angle is not directly measurable. To determine the included angle, you add the SAI to the camber. If the camber is negative, then the included angle will be less than the SAI, if the camber is positive, it will be greater. The included angle must be the same from side to side even if the camber is different. If it is not the same, then something is bent, most likely the steering knuckle.

 

 

 

Scrub Radius

Scrub radius is the distance between where the SAI intersects the ground and the center of the tire. This distance must be exactly the same from side to side or the vehicle will pull strongly at all speeds. While included angle problems will affect the scrub radius, it is not the only thing that will affect it. Different wheels or tires from side to side will cause differences in scrub radius as well as a tire that is low on air. Positive scrub radius is when the tire contact patch is outside of the SAI pivot, while negative scrub radius is when the contact patch is inboard of the SAI pivot (front wheel drive vehicles usually have negative scrub radius).

If the brake on one front wheel is not working, with positive scrub radius, stepping on the brake will cause the steering wheel to try to rip out of your hand. Negative scrub radius will minimize that effect.

Scrub radius is designed at the factory and is not adjustable. If you have a vehicle that is pulling even though the alignment is correct, look for something that will affect scrub radius.

Riding Height

Riding height is measured, usually in inches, from the rocker panel to the ground. Good wheel alignment charts provide specs, but the main thing is that the measurements should be within one inch from side to side and front to rear. Riding height is not adjustable except on vehicles with torsion bar type springs.  The best way to fix this problem is to replace the springs (Note: springs should only be replaced in matched pairs). Changes in riding height will affect camber and toe so if springs are replaced or torsion bars are adjusted, then the wheel alignment must be checked to avoid the possibility of tire wear. It is important to note that the only symptom of weak coil springs is a sag in the riding height. If the riding height is good, then the springs are good.

 

Set Back

Set back is when one front wheel is set further back than the other wheel. With alignment equipment that measures toe by using only the front instruments, any setback will cause an uncentered steering wheel. Any good 4-wheel aligner will reference the rear wheels when setting toe in order to eliminate this problem.

Some good alignment equipment will measure set back and give you a reading in inches or millimeters. A set back of less than 1/4 inch is considered normal tolerance by some manufacturers. More than that and there is a good chance that something is bent.

Thrust Angle

Thrust angle is the direction that the rear wheels are pointing in relation to the center line of the vehicle. If the thrust angle is not zero, then the vehicle will "dog track" and the steering wheel will not be centered. The best solution is to first adjust the rear toe to the center line and then adjust the front toe. This is normally done during a 4-wheel alignment as long as the rear toe is adjustable. If the rear is not adjustable, then the front toe must be set to compensate for the thrust angle, allowing the steering to be centered.

Return

Steering Center

Steering center is simply the fact that the steering wheel is centered when the vehicle is traveling down a straight and level road. A crooked steering wheel is usually the most common complaint that a customer has after a wheel alignment is performed. Assuming that the steering wheel stays in the same position when you let go of the wheel (in other words, the car is not pulling), then steering center is controlled by the front and rear toe settings. When setting steering center, the rear toe should be set first bringing the Thrust Angle as close to the vehicle centerline as possible. Then the steering wheel is locked in a straight ahead position while the front toe is set. Before locking the steering wheel, the engine should be started and the wheel should be turned right and left a couple of times to take any stress off the power steering valve. After setting the toe, the engine should be started again to be sure that the steering valve wasn't loaded again due to the tie rod adjustments. Of course, you should always road test the vehicle after every alignment as a quality control check.

Another problem with steering center has to do with the type of roads that are driven on. Most roads are crowned to allow for water drainage, and unless you drive in England, Japan or another country where they drive on the wrong (sorry) left side of the road, you usually drive on the right side of the crown. This may cause the vehicle to drift to the right so that the steering wheel will appear to be off-center to the left on a straight road. The best way to compensate for this is as follows:

  • If there is a difference in caster, it should be that the left wheel is more negative than the right wheel, but not more than 1/2 degree. Check the specs for any specific recommendations on side-to-side differences.

  • If there is a difference in camber, then the left wheel should be more positive than the right wheel. Check the specs to see what the allowable difference is.

 

Toe Out on Turns

toeout.GIF (2907 bytes)When you steer a car through a turn, the outside front wheel has to navigate a wider arc then the inside wheel.  For this reason, the inside front wheel must steer at a sharper angle than the outside wheel.

Toe-out on turns is measured by the turning angle gauges (turn plates) that are a part of every wheel alignment machine. The readings are either directly on the turn plate or they are measured electronically and displayed on the screen.  Wheel alignment specifications will usually provide the measurements for toe-out on turns. They will give an angle for the inside wheel and the outside wheel such as 20º for the inside wheel and 18º for the outside wheel. Make sure that the readings are at zero on each side when the wheels are straight ahead, then turn the steering wheel so that the inside wheel is at the inside spec. then check the outside wheel.

The toe-out angles are accomplished by the angle of the steering arm. This arm allows the inside wheel to turn sharper than the outside wheel.  The steering arm is either part of the steering knuckle or part of the ball joint and is not adjustable. If there is a problem with the toe-out, it is due to a bent steering arm that must be replaced.



Wheel Balance: Out-of-balance tires will cause a car to vibrate at certain speeds, usually between 50 and 70 mph. A tire is out of balance when one section of the tire is heavier than the others. One ounce of imbalance on a front tire is enough to cause a noticeable vibration in the steering wheel at about 60 mph. To balance a wheel, the technician will mount it on a balancing machine which spins the wheel to locate the heavier part. He will then compensate for the heavy part by attaching a lead weight on the opposite side. Many people are pleasantly surprised at how smooth their car drives after balancing all four wheels.

Most high quality tires will hold their balance fairly well and go out of balance very gradually. If you notice a vibration that wasn't there the day before, it is possible that one of the lead balancing weights fell off. If you feel the vibration mostly in the steering wheel, the problem is most likely in a front wheel. If the vibration is mostly in the seat, the problem is probably in the rear.

For those of you who are very sensitive about vibrations and your shop can't seem to get that last bit of vibration out, check to see if you have locking wheel lugs. Some locking lugs are as much as 1.5 ounces heavier than the other lug nuts which translates to about 1/2 ounce at the wheel rim. Try putting a 1/2 ounce weight opposite the locking lug and see if it helps.

 

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Come visit us in our NEW State-Of-The-Art Facility - Auto Repair Mission Viejo - serves: Aliso Viejo, Irvine, Mission Viejo, Lake Forest, Rancho Santa Margarita, Laguna Beach, Laguna Hills, Laguna Niguel, Laguna Woods, Ladera Ranch, San Juan Capistrano and beyond. We specialize in the service and repair of Toyota, Honda, Lexus, Nissan, Infiniti, Acura, Mitsubishi, Hyundia, Isuzu, Subaru, Mazda, Hybrids, Deisels, Saturn, Land Rover, BMW, GM, Ford, Mercedes, Chrystler, Volkswagen, and more automobiles for over 20 years. We adhere strictly to Factory Specifications in all our services.

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Don't see something you need to have done? Call (949) 830-4204. Auto Repair Service Mission, offers a wide range of solutions to the literally thousands of possible repairs and improvements for your vehicles.

INSTALL • BUILD • REPAIR • IMPROVE • CLEAN

"We are AAA Approved for 20+ Years and offer 18 month / 18K Mile Guarantee on our work"





   



Larry's customers come from all over Orange County, please find some of the zipcodes and cities below:
Anaheim 92801, 92802, 92803, 92804, 92805, 92806, 92807, 92808, 92809, 92812, 92814, 92815, 92816, 92817, 92825, 92850, 92899, Brea 92821, 92822, 92823, Buena Park 90620, 90621, 90622, 90623, 90624, Costa Mesa 92626, 92627, 92628, Cypress 90630, Fountain Valley 92708, 92728, Fullerton 92831, 92832, 92833, 92834, 92835, 92836, 92837, 92838, Garden Grove 92840, 92841, 92842, 92843, 92844, 92845, 92846, Huntington Beach 92605, 92615, 92646, 92647, 92648, 92649, La Habra 90631, 90632, 90633, La Palma 90623, Los Alamitos 90720, 90721, Orange 92856, 92857, 92859, 92861, 92862, 92863, 92864, 92865, 92866, 92867, 92868, 92869, Placentia 92870, 92871, Santa Ana 92701, 92702, 92703, 92704, 92705, 92706, 92707, 92708, 92711, 92712, 92725, 92728, 92735, 92799, Seal Beach 90740, Stanton 90680, Tusin 92780, 92781, 92782, Villa Park 92861, 92867, Westminister 92683, 92684, 92685, Yorba Linda 92885, 92886, 92887, Aliso Viejo 92653, 92656, 92698, Dana Point 92624, 92629, Irvine 92602, 92603, 92604, 92606, 92612, 92614, 92616, 92618, 92619, 92620, 92623, 92650, 92697, 92709, 92710, Laguna Beach 92607, 92637, 92651, 92652, 92653, 92654, 92656, 92677, 92698, Laguna Hills 92637, 92653, 92654, 92656, Laguna Niguel 92607, 92677, Laguna Woods 92653, 92654, Lake Forest 92609, 92630, Mission Viejo 92675, 92690, 92691, 92692, 92694, Newport Beach 92657, 92658, 92659, 92660, 92661, 92662, 92663, Rancho Santa Margarita 92688, San Clemente 92672, 92673, 92674, San Juan Capistrano 92675, 92690, 92691, 92692, 92693, 92694 Ladera Ranch 92694, Coto De Caza 92679 Anaheim Hills 92807, 92808, 92809, 92817 Dove Canyon 92679 Oceanside, CA:92049, 92051, 92052, 92054, 92055, 92056, 92057, 92058, Dove Canyon 92679

CALL LARRY FOR HELP, TODAY!
(949) 830-4204
My Favorite Auto Repair Service in Mission Viejo
AUTO REPAIR MISSION VIEJO

Aliso Viejo, Irvine, Lake Forest, Rancho Santa Margarita
TOYOTA - HONDA - LEXUS - NISSAN - ACURA
INFINITI - MITSUBISHI - SUBARU - FORD - GMC

"We would Love to Help Repair Your Car or Truck"


We Repair Cars, SUVs, Trucks, Diesels, Vans, RVs, Hybrids
All Makes & Models Welcome - Commercial Fleet Programs


We can work on the following Cars, Trucks, Vans, SUVs, and RVs:
Toyota, Honda, Lexus, Nissan, Infiniiti, Acura, Mitsubishi, Hyundia, Isuzu, Subaru, Mazda, Saturn, Land Rover, BMW, GM, GMC, Ford, Mercedes, Hummer, Jaguar, Volvo, Chrysler, Volkswagen, Volvo, Saab, Kia, Audi, Cadillac, Chevrolet, Buick, Aston Martin, Alfa Romeo, Ferrari, Oldsmobile, Peugeot, Porsche, Saturn, Pontiac,Corvette, Lincoln, Daewoo, Mercedes-Benz, Daimler AG, Holden, Opel, Dodge, Plymoth, Rolls-Royce,
Prius, Highlander, Camry, Civic, Accent, Insight, Escape, Tahoe, GS 450h, Lexus LS 600h L, RX 400h, Mercury Mariner, Altima, Datsun, Blue Bird, SunnyBrook, Airstream, National RV, Thor, Starcraft, Georgie Boy, Rexhall, Holiday Rambler, Dutchmen, Newmar, Jayco, R-Vision, Keystone, Monaco, Forest River, Gulf Stream, Coachmen, Fleetwood, Winnebago.


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