AtWhatMileage
Brakes · 8 owner reports

Master cylinder or brake booster failure on the 2001 Chevrolet Silverado 2500

2 crashes 2 of the 8 reports for this failure mention a crash, a fire, an injury or a death. Those are the owner's words on the complaint form, not a verified finding, and one report can mention more than one.

Reports of this failure 8
With an odometer reading 8
Reports per 1,000 built 27 per 1,000
Filed below 36,000 miles 0%
Mention a crash, fire or injury 2
Typical repair $450–$2,200
What it means when it happens Critical
Rank among this year's problems 13th

When master cylinder or brake booster failure gets reported

Owners of the 2001 Chevrolet Silverado 2500 report master cylinder or brake booster failure at a median of 90,000 miles. A quarter of the reports come in before 60,000 miles and a quarter after 135,000 miles, from 8 reports that carried an odometer reading.

A part like this is normally expected to survive 92,000 miles. It is the 13th most-reported problem on this model year.

The mileage distribution

The reported range runs from 45,000 miles at the tenth percentile to 140,000 miles at the ninetieth, a spread of 91,000 miles across the middle 80% of reports.

A spread this wide points at use rather than design. Towing, climate, service history and city mileage all move a failure like this, so the median is a weak guide to any individual car.

0% of the dated reports were filed under 36,000 miles.

The whole distribution

Percentiles of the 8 odometer readings owners gave.
10th25thMedian 75th90th
47,000 miles 62,010 miles 89,000 miles 134,554 miles 138,000 miles

Read the 10th percentile as “one report in ten arrived this early”. Exact figures are shown in this table because it is the table of record; everywhere else on the site they are rounded to the precision the sample can carry.

What a percentile can and cannot tell you here

These five numbers describe the readings owners gave, in order. The median is the middle one: half the reports arrived below it. The 10th and 90th are the edges of the bulk of the distribution, and the distance between them is the part worth reading. A tight spread — say 70,000 to 95,000 miles — points at something that wears out on a schedule, and the schedule is knowable. A wide one, 20,000 to 190,000, points at a fault that hits some cars and never troubles others, which means the mileage on the listing in front of you tells you very little about your odds.

What these figures are not is a survival curve. Every reading here comes from a car whose owner filed a complaint, so the sample contains only failures: it cannot say what share of the fleet made it past 150,000 miles untouched, because those owners had nothing to report. Nor is the mileage the moment of failure — it is the odometer reading as recalled at the time of filing, which may be weeks later and is sometimes rounded to the nearest ten thousand by the person typing it.

Percentiles are shown at all only once 8 readings exist for the vehicle and mode. Below that the middle of a handful of numbers is noise wearing a decimal point, so the figures are withheld rather than dressed up.

What happens, and what it costs

Of these reports, 2 a crash is mentioned. Owners write their own complaints and the agency does not verify them, so read this as what the reports say happened rather than as a confirmed count.

Putting it right typically runs $450–$2,200 at an independent US shop. That range is an editorial estimate held in this site's failure-mode catalogue, not a figure from NHTSA, and it is a repair cost rather than a diagnosis cost.

This mode is classified as critical, which means a failure can leave the car unable to stop, steer, or stay out of the way of traffic. It is weighted accordingly in the risk score.

The same failure on other years

The same failure is reported on 6 model years of this car. It shows up earliest on the 2005, at a median of 40,000 miles, and latest on the 2004 at 100,000 miles.

By volume the 2004 carries the most reports, with 9; the 2001 has 8. A mode that appears across most years of a model is usually a design choice rather than a bad batch.

If one year stands out to the left, that is the year to avoid; if the whole line sits at a similar mileage, this is wear rather than a defect in one production run.

What owners wrote

Verbatim from NHTSA complaint narratives, trimmed for length. The mileage is the one the owner gave.

2001 chevy silverado 2500 hd 50,000 miles hydraulic brake lines are excessively rusted and have failed I am now in the process of having to replace all brake lines from the master cylinder to the wheels. Brake lines broke when coming to a stop. Frame is also excessively rusted. In november 2009 all allison transmission line were rusted through and also needed to be replaced as well as the cooler coil. *tr

47,000 miles NHTSA complaint 782927 filed 2010-04-21

2001 chevy silverado 2500 hd 50,000 miles hydraulic brake lines are excessively rusted and have failed I am now in the process of having to replace all brake lines from the master cylinder to the wheels. Brake lines broke when coming to a stop. Frame is also excessively rusted. In november 2009 all allison transmission line were rusted through and also needed to be replaced as well as the cooler coil. *tr

47,000 miles NHTSA complaint 782928 filed 2010-04-21

Brakes went all the way to the floor. Found out that brake line from master cylinder to proportional valve had rusted and a hole had formed allowing brake fluid to leak out. Second brake line rusted but intact. Am currently looking to have brake lines replaced. *tr

80,000 miles NHTSA complaint 794620 filed 2010-06-21

Also reported on the 2001 Chevrolet Silverado 2500

Other engine problem

40 reports median 65k

Loss of braking

31 reports median 99k

ABS module or sensor failure

29 reports median 84k

Brake line, hose or caliper failure

28 reports median 98k

Other brake problem

28 reports median 98k

CV axle or driveshaft failure

17 reports median 75k

How far this goes

Complaints are voluntary, so 8 is a floor and not a count of affected cars. Mileages are typed in by owners and cluster on round numbers. And the mode itself is assigned by software reading the complaint text, which is reliable in bulk and fallible one report at a time.

Questions this page answers

At what mileage does master cylinder or brake booster failure happen on the 2001 Chevrolet Silverado 2500?

Across 8 owner reports that included an odometer reading, half were filed by 90,000 miles. A quarter were filed before 60,000 miles and a quarter after 135,000 miles. These are the mileages owners reported when they complained, not a prediction for any individual car.

How common is master cylinder or brake booster failure on the 2001 Chevrolet Silverado 2500?

8 reports have been filed with NHTSA, about 27 per 1,000 vehicles. Complaints are voluntary, so this is a floor rather than a count of affected cars.

What this is and is not. These are the mileages at which owners chose to complain to a federal agency, which is not the same as the mileage at which the part fails on every car. It skews toward failures that happened outside warranty, cost real money, or frightened someone. It is still the only public dataset that carries failure mileage at all, and the shape of a few hundred readings is informative even when a single one is not. Methodology · JSON · this failure on other cars

Source Owner complaints and recall records published by the US National Highway Traffic Safety Administration, model years 1996–2027 Figures rebuilt Published by AtWhatMileage How every figure is computed