SEATS
2018 Thomas Built Buses Saf-T-Liner C2
Recalls, owner-reported complaints, investigations and safety data
Data refreshed
Overview
Our database contains 1 NHTSA owner-reported complaint for the 2018 Thomas Built Buses Saf-T-Liner C2, most frequently naming the body & structure category. 22 safety recalls have been issued covering this model year; 1 NHTSA investigation names it; and 261 manufacturer communications are on file.
Complaints are reports submitted by owners and drivers to NHTSA. They are not verified and do not establish that a defect exists.
Complaint activity over time
When owners filed reports about this model year
Not enough dated records to plot a meaningful trend — 1 month of data.
What owners report
Complaints grouped by the component NHTSA recorded
- Body & structure1100.0%
Percentages are of component mentions. A single complaint can name more than one component, so these do not sum to the total complaint count.
Safety recalls
22 campaigns cover this model year
Recalls apply to specific vehicles, not to every vehicle of a model year. Check your VIN with NHTSA or your manufacturer's dealer to confirm whether a recall affects your vehicle.
Check a VIN on NHTSA.govPOWER TRAIN:AUTOMATIC TRANSMISSION:TORQUE CONVERTER
SERVICE BRAKES, AIR:DISC
Safety investigations
NHTSA inquiries naming this vehicle. An investigation is not a finding of a defect.
Rear Leaf Spring Fractures
On June 18, 2019, the Office of Defects Investigation (ODI) opened PE19-007 to investigate instances of leaf-style suspension springs fracturing in various model 2008-2018 Thomas Built Buses (TBB) school buses, which could lead to a road hazard if a piece of the leaf spring detaches from the vehicle while driving. This investigation was prompted by ODI’s review of field reports in Daimler Truck North America's (DTNA) Early Warning Reporting (EWR) data, describing cracked rear leaf-style suspension springs in Thomas Built school buses. ODI contacted three municipal school bus fleets with subject vehicles. These fleets described similar failures where a fractured piece of leaf spring separated from the vehicle while driving. In addition, ODI contacted a nationwide school bus transportation service provider who identified several failures of this component. DTNA’s response to NHTSA’s Information Request (IR) in this investigation acknowledged that TBB school bus leaf springs may corrode and fracture. DTNA data provided in response to the IR did not show a high frequency of failures that result in portions of a cracked leaf spring detaching from the vehicle.In the response, the majority of the information concerned C2 springs. While the C2 represents approximately 71% of the sales, 136 of 141 warranty claims (97%) were for C2 buses, and 94% of all of the replacement parts sales were for C2 springs. In 2021, DTNA retained Exponent to assess reports of rear leaf spring fractures on TBB C2 school buses. As part of its assessment, Exponent inspected in-service buses and leaf springs, conducted material and metallurgical analyses of exemplar leaf springs, and analyzed manufacturer- and fleet-generated claims data. Exponent concluded based on its assessment that DTNA’s leaf springs are typical for the industry and within DTNA’s specification, and it found a low frequency of a cracked leaf springs detaching from vehicles. Exponent also asserted that it could not confirm any instance of detachment while driving, resulting in roadway debris. In 2022, in response to NHTSA’s ongoing investigation, Exponent conducted additional analysis of the metallurgical characteristics of new and used (in-service) subject leaf springs and reviewed data from a major nationwide school bus transportation provider that had obtained leaf spring replacements. Similar to its initial findings, Exponent determined that the leaf spring material specified by DTNA is commonly used for leaf springs and adheres to industry-adopted standards. Exponent’s metallurgical analysis also showed that DTNA’s springs are coated with a corrosion inhibitor. Exponent’s failure analysis of fractured leaf springs found that the fractures were due to fatigue crack initiation and growth, a common fracture mode for this component. Exponent’s inspection of in-service leaf springs found surface corrosion within the expected range. Exponent also found that corrosion pitting may play a role in fatigue crack initiation. Exponent’s analysis of DTNA warranty data found one claim in which part of the leaf spring was described as missing. Based on NHTSA’s investigation, including its careful review and assessment of the analysis provided by DTNA’s consultant Exponent, there is insufficient information at this time to conclude that a defect results in detached leaf springs creating a hazard for other roadway users. However, ODI does acknowledge that most roadway users encountering this type of debris would not know what it was or where it came from. For reporting purposes, using roadway debris as a measure could result in this issue being under-reported. Additionally, leaf springs are generally considered wear components that need routine inspection. If signs of corrosion or fracture are present, leaf springs should be immediately replaced. During NHTSA’s investigation, DTNA did share messaging with school bus fleets reminding them of the importance of routine and required inspection of school bus wear components, including leaf springs. Considering the nature of this component and available information, including the metallurgical analysis of DTNA’s in-use components and low rate of broken or missing leaf springs for the subject population, this Preliminary Evaluation is closed. The closing of this investigation does not constitute a finding by NHTSA that a safety‐related defect does not exist. The Agency reserves the right to take additional action if warranted by future circumstances.
Recent owner complaints
Reports submitted to NHTSA, shown in the owner's own words
A 2018 THOMAS BUILT TYPE C SCHOOL BUS WAS TRAVELING AT A SPEED OF APPROXIMATELY 42 MPH ON A CITY/URBAN STREET WITH 5 PASSENGERS, PLUS THE OPERATOR ON BOARD. A TREE FELL AND STRUCK THE BUS NEAR, OR ON, THE RIGHT FRONT WINDSHIELD/ROOF AREA. THIS IMPACT CAUSED THE ENTIRE ROOF AREA TO COLLAPSE WITH SEVERE DAMAGE THROUGHOUT THE ENTIRE LENGTH OF THE BUS.
- NHTSA ID
- 11084351
- Incident
- Mar 21, 2018
- Mileage
- 2,100 mi
Manufacturer communications
A bulletin sent by a manufacturer to its dealers. Not a recall, and repairs are not necessarily free.
ENGINE
Service Solution for DEF Header Service Replacement Additional Parts (293)
ENGINE
Warranty Information letter for Detroit Line or Line Seal, High Pressure Fuel Injector Standard Repair Time Updates
ENGINE
CX Advocate for CARB tightening the Readiness Criteria applied to On-Board Diagnostic (OBD) test submissions for the Clean Truck Check.
ENGINE
Service Solution for Detroit Successful Regen Reference for GHG17 DD Engines
ENGINE AND ENGINE COOLING
Extended Warranty Policy for certain Cummins B6.7 engines with SSI DEF headers for EPA and CARB Emissions Reporting
ENGINE AND ENGINE COOLING
Revised Emissions Recall: Cummins DEF Sensor Shortage. REVISION: Some vehicles formerly in Group F have been moved to Group G and have been assigned a new part number as specified in Table 1. An SRT for 'Calibration Code Only: Update or Confirm' has been added, as shown in Table 2, to be used when a new DEF header is not required. There have been some other minor changes to the work instructions and SRT times.
Manufacturers file copies of the bulletins they send to dealers with NHTSA. These often describe diagnostic or repair procedures for a known condition. They are not recalls: repairs described in a bulletin are usually only free if the vehicle is still under warranty or the manufacturer has extended coverage.
Compare model years
Complaint and recall counts across every year of this model
| Year | Complaints | Recalls | Investigations | Issue Index |
|---|---|---|---|---|
| 2027 | 0 | 6 | 0 | — |
| 2026 | 0 | 7 | 0 | — |
| 2025 | 0 | 13 | 0 | — |
| 2024 | 0 | 14 | 0 | — |
| 2023 | 0 | 12 | 0 | — |
| 2022 | 1 | 12 | 0 | — |
| 2021 | 0 | 15 | 0 | — |
| 2020 | 1 | 16 | 0 | — |
| 2019 | 0 | 24 | 0 | — |
| 2018Viewing | 1 | 22 | 1 | — |
| 2017 | 0 | 28 | 1 | — |
| 2016 | 0 | 25 | 1 | — |
| 2015 | 2 | 20 | 1 | — |
| 2014 | 0 | 18 | 1 | — |
| 2013 | 1 | 18 | 2 | — |
| 2012 | 3 | 16 | 1 | — |
| 2011 | 0 | 22 | 4 | — |
| 2010 | 1 | 22 | 6 | — |
| 2009 | 2 | 21 | 7 | — |
| 2008 | 5 | 27 | 9 | — |
| 2007 | 1 | 25 | 4 | — |
| 2006 | 2 | 21 | 4 | — |
| 2005 | 0 | 16 | 4 | — |
| 2004 | 0 | 5 | 1 | — |
| 2003 | 1 | 4 | 1 | — |
| 2002 | 1 | 2 | 0 | — |
| 2001 | 0 | 1 | 0 | — |
| 2000 | 0 | 1 | 0 | — |
| 1999 | 0 | 1 | 0 | — |
| 1998 | 0 | 1 | 0 | — |
| 1997 | 0 | 1 | 0 | — |
| 1996 | 0 | 1 | 0 | — |
| 1995 | 0 | 1 | 0 | — |
Higher-selling and older vehicles accumulate more reports. Counts are not failure rates and are not directly comparable between vehicles that sold in very different numbers. Older model years have had longer for reports to accumulate.