DRIVING HOME FROM WORK ON THE FREEWAY DURING A BAD STORM THE DEFROSTER WAS BLOWING COLD AIR ON THE WINDSHIELD AND IT COMPLETELY ICED OVER. I COULD NOT SEE. NOT TO MENTION-- I WAS FREEZING COLD. THE PASSENGER SIDE WAS BLOWING HEAT, HOWEVER ALL VENTS ON THE DRIVER SIDE WERE BLOWING COLD AIR. I TOOK MY CAR TO A HONDA DEALER. WIT…
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DRIVING HOME FROM WORK ON THE FREEWAY DURING A BAD STORM THE DEFROSTER WAS BLOWING COLD AIR ON THE WINDSHIELD AND IT COMPLETELY ICED OVER. I COULD NOT SEE. NOT TO MENTION-- I WAS FREEZING COLD. THE PASSENGER SIDE WAS BLOWING HEAT, HOWEVER ALL VENTS ON THE DRIVER SIDE WERE BLOWING COLD AIR. I TOOK MY CAR TO A HONDA DEALER. WITHOUT EVEN LOOKING AT IT, THEY SEEMED TO KNOW EXACTLY WHAT WAS WRONG AND TOLD ME IT WAS $330 TO REPAIR. I TOOK IT TO AN INDEPENDENT MECHANIC WHO CHARGED ME $172 TO FLUSH OUT THE HEATER CORE. THE MECHANIC ALSO TOLD ME IT WOULD PROBABLY HAPPEN AGAIN.
NHTSA ODI #11383058
Mileage unknown · Dec 10, 2020
Engine
LOUD GRINDING NOISE AT STARTUP. APPEARS TO BE A COMMON ISSUE IN THIS YEAR, MAKE AND MODEL THAT CAN CAUSE ENGINE FAILURE WHILE DRIVING.
NHTSA ODI #11382920
86,000 miles · Nov 4, 2020
Engine
ENGINE MAKES A RATTLING NOISE WHEN ACCELERATING. EVERY SINGLE TIME THE ACCELERATOR IS BEING PUSHED, I HEAR A RATTLE. I AM JUST COMING BACK FROM THE LOCAL MECHANIC WHO TOLD ME THAT THIS COULD BE SOMETHING RELATED TO ENGINE AND IS GOING TO COST 2000 OR MORE AND JUST DID A OIL TREATMENT TO THE ENGINE JUST TO SEE IF THAT WOULD HELP …
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ENGINE MAKES A RATTLING NOISE WHEN ACCELERATING. EVERY SINGLE TIME THE ACCELERATOR IS BEING PUSHED, I HEAR A RATTLE. I AM JUST COMING BACK FROM THE LOCAL MECHANIC WHO TOLD ME THAT THIS COULD BE SOMETHING RELATED TO ENGINE AND IS GOING TO COST 2000 OR MORE AND JUST DID A OIL TREATMENT TO THE ENGINE JUST TO SEE IF THAT WOULD HELP BEFORE DOING AN OPEN HEART SURGERY(MESSING WITH ENGINE). I HOPE HONDA COMES BACK AND FIXES THIS PROBLEM AS IT IS SO COMMON WITH SO MANY OF THEIR 2014 HONDA CRVS.
NHTSA ODI #11373018
56,000 miles · Oct 2, 2020
Engine
PURCHASED VEHICLE FROM MY MOTHER-IN-LAW. SHE HAD NOTICED THE RATTLING SOUND BUT HER MECHANIC SAID HIS DID THE SAME THING AND NOT TO WORRY ABOUT IT. WE IMMEDIATELY NOTICED THAT VEHICLE GRINDS ON COLD STARTUP. IS STARTING TO RATTLE A LITTLE ON ACCELERATION. CALLED MY HONDA DEALER, TOLD ME IT WOULD BE $1000 TO REPLACE THE VTC ACTUA…
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PURCHASED VEHICLE FROM MY MOTHER-IN-LAW. SHE HAD NOTICED THE RATTLING SOUND BUT HER MECHANIC SAID HIS DID THE SAME THING AND NOT TO WORRY ABOUT IT. WE IMMEDIATELY NOTICED THAT VEHICLE GRINDS ON COLD STARTUP. IS STARTING TO RATTLE A LITTLE ON ACCELERATION. CALLED MY HONDA DEALER, TOLD ME IT WOULD BE $1000 TO REPLACE THE VTC ACTUATOR. HE ALSO SAID THAT IT WOULD EVENTUALLY HAPPEN AGAIN, AND THAT IT DOESN'T HARM THE ENGINE SO WE SHOULDN'T WORRY ABOUT IT. RESEARCHING ONLINE UNCOVERED A SERVICE BULLETIN (09-010) FOR CRV'S UP THROUGH 2013, BUT NOT COVERING 2014. HONDA IS NOT SOLVING THEIR ENGINEERING PROBLEM AND ARE MAKING THE CONSUMER PAY FOR IT.
NHTSA ODI #11362428
96,500 miles · Sep 30, 2020
EngineFuel/propulsion System
ENGINE LOST POWER AND SEIZED WHILE TRAVELING ON RURAL ROUTE. LOCAL MECHANIC SAID GASOLINE HAD LEAKED INTO ENGINE AND HAD IT TOWED TO URSE HONDA IN BRIDGEPORT, WV. URSE ESTIMATED $9,000 IN REPAIRS
NHTSA ODI #11361968
Mileage unknown · Sep 20, 2020
Engine
TIMING CHAIN AND TENSIONER IS DEFECTIVE MAKING NOISE ON STARTING EVERY MORNING MAILLY ON COLD STARTS,BUT DOES IT WHEN HOT ALSO
NHTSA ODI #11360121
Mileage unknown · Sep 13, 2020
EngineFuel/propulsion System
VEHICLE GRINDS ON COLD STARTUP, EVERY SINGLE TIME. VEHICLE ALSO RATTLES ON ACCELERATION. TOOK IT TO MECHANIC AND WAS TOLD TIMING CHAIN AND VTC ACTUATOR NEEDED TO BE REPLACED TO THE TIME OF WELL OVER $2000. AFTER RESEARCH, I HAVE SEEN THAT THIS IS AN ONGOING ISSUE WITH ALL 2014 HONDA CRVS BUT HONDA HAS REFUSED TO TAKE RESPONSIBIL…
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VEHICLE GRINDS ON COLD STARTUP, EVERY SINGLE TIME. VEHICLE ALSO RATTLES ON ACCELERATION. TOOK IT TO MECHANIC AND WAS TOLD TIMING CHAIN AND VTC ACTUATOR NEEDED TO BE REPLACED TO THE TIME OF WELL OVER $2000. AFTER RESEARCH, I HAVE SEEN THAT THIS IS AN ONGOING ISSUE WITH ALL 2014 HONDA CRVS BUT HONDA HAS REFUSED TO TAKE RESPONSIBILITY FOR THIS ISSUE. THIS PROBLEM LEADS TO ENGINE FAILURE AND HONDA IS CONTINUING TO BUILD THESE VEHICLES WITH DEFECTIVE PARTS. THE TECHNICAL SERVICE BULLETIN OUT DOES NOT TAKE RESPONSIBILITY. I AM ASKING THAT HONDA ESTABLISH A RECALL FOR THE VTC ACTUATOR AND TIMING CHAIN TO PREVENT RESULTING ENGINE DAMAGE FROM THESE DEFECTIVE PARTS.
NHTSA ODI #11354814
65,000 miles · Aug 11, 2020
Engine
AFTER MY CAR HAS SAT FOR 5-6 HOURS OR LONGER, AT START UP MY ENGINE GRINDS FOR 1-2 SECONDS. READING SIMILAR PROBLEMS ONLINE THEY SAY IT IS A FAULTY VTC ACTUATOR THAT HONDA KNOWS ABOUT BUT REFUSES TO FIX OR RECALL. IS THERE PLANS TO RECALL THIS FAULTY PART BEFORE MY CAR FAILS AND BREAKS DOWN ON THE SIDE OF THE ROAD? THIS NOISE HA…
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AFTER MY CAR HAS SAT FOR 5-6 HOURS OR LONGER, AT START UP MY ENGINE GRINDS FOR 1-2 SECONDS. READING SIMILAR PROBLEMS ONLINE THEY SAY IT IS A FAULTY VTC ACTUATOR THAT HONDA KNOWS ABOUT BUT REFUSES TO FIX OR RECALL. IS THERE PLANS TO RECALL THIS FAULTY PART BEFORE MY CAR FAILS AND BREAKS DOWN ON THE SIDE OF THE ROAD? THIS NOISE HAS HAPPENED EVERY DAY FOR THE LAST YEAR OR SO.
NHTSA ODI #11348731
39,000 miles · Aug 10, 2020
Engine
MY VEHICLE IS EXPERIENCING THE KNOWN ISSUE OF VTC RATTLE AT STARTUP.
NHTSA ODI #11344315
55,000 miles · May 28, 2020
EnginePower Train
VIBRATION WHILE DRIVING UNDER LIGHT ACCELERATION USUALLY OCCURS WHEN ENGINE/TRANSMISSION IS COLD. USUALLY OCCURS AROUND 25 MPH DURING LIGHT ACCELERATION. *TR *BF *AS
Honda (American Honda Motor Co.) is recalling certain 2013-2023 Honda Accord, Civic Coupe, Civic Sedan, Civic Hatchback, Civic Type R, CR-V, HR-V, Ridgeline, Odyssey, Acura ILX, MDX, MDX Hybrid, RDX, RLX, TLX, 2019-2022 Honda Insight, Passport, 2020 Honda CR-V Hybrid, 2018-2019 Honda Clarity PHEV, Fit, and 2015-2020 Honda Accord Hybrid, Pilot, Acura NSX vehicles. The fuel pump inside the fuel tank may fail.
Consequence & remedy
Consequence: Fuel pump failure can cause an engine stall while driving, increasing the risk of a crash.
Remedy: Dealers will replace the fuel pump module, free of charge. Owner letters were mailed September 6, 2024. Owners may contact Honda customer service at 1-888-234-2138. Honda's numbers for this recall are KGC and KGD. This recall is an expansion of NHTSA recall numbers 21V-215 and 20V-314.
Model-level recall history does not show whether a particular VIN is affected or has received a repair. Check a VIN with NHTSA ↗
NHTSA investigations
2
EA21002 · Desiccated Air Bag Inflator Rupture
Opened Sep 17, 2021 · No close date supplied
Status: open (inferred from source dates) · Air Bags:frontal:driver Side:inflator Module; Air Bags:frontal:passenger Side:inflator Module
From 2000 through 2017, Takata produced millions of air bag inflators using two types of phase-stabilized ammonium nitrate ("PSAN") propellant -- propellant 2004 and propellant 2004L. After prolonged exposure to high temperature cycles and humidity, inflators using propellant 2004 can degrade, causing the propellant to burn too quickly when ignited. The rapid burning can cause the inflator to rupture during deployment, potentially causing serious or even fatal injury to vehicle occupants. See 2016 Blomquist Report at www.nhtsa.gov/sites/nhtsa.gov/files/documents/expert_report-hrblomquist.pdf.Consequently, all frontal inflators using propellant 2004 that do not contain a "desiccant" (a substance that traps and holds moisture) in US vehicles are under recall. These "non-desiccated" inflators either have been or are required to be replaced.In some cases, the remedy part for these recalled inflators was, or will be, an inflator using either propellant 2004 or 2004L that does contain a desiccant. None of these "desiccated" remedy parts (which were installed in older model year vehicles) are currently under recall for a degradation concern. Certain subsets of desiccated PSAN inflators using propellant 2004 for use as original equipment, however, have been recalled for a degradation concern. All Takata inflators produced with propellant 2004L contain desiccant, and none of these desiccated inflators using propellant 2004L are under recall for a degradation concern. There have been no reported field ruptures in any non-recalled desiccated PSAN inflators.It is understood that desiccants fully saturate at some threshold, at which point any additional moisture will not be captured. This means the degradation process observed in non-desiccated inflators using propellant 2004 may also occur in non-recalled desiccated inflators using propellant 2004, assuming additional moisture enters the inflator and high temperature cycling occurs. Based on available information, desiccant saturation can occur within the first five years in the worst environments, and the time required for full saturation is affected by multiple factors. While no present safety risk has been identified, further work is needed to evaluate the future risk of non-recalled desiccated inflators using propellant 2004.Three entities -- Takata (now known as TK Global), the Independent Testing Coalition, and Exponent -- have been studying the long-term behavior of Takata desiccated PSAN inflators using propellant 2004L (as well as 2004) in the presence of moisture and temperature cycling. The research efforts, which include development of predictive modeling techniques and field sample analysis, are ongoing. To date, none of the researchers have identified field evidence showing that propellant 2004L is undergoing a degradation process that leads to aggressive deployment and potential rupture. However, the time in service of such inflators remains short compared to that of the inflators using propellant 2004. Further study is needed to assess the long-term safety of desiccated inflators using propellant 2004L.The Office of Defects Investigation is opening this investigation to examine whether a safety defect related to propellant degradation exists in non-recalled desiccated PSAN frontal inflators manufactured by Takata. This investigation will require extensive information on Takata production processes and surveys of inflators in the field. Lists of recall actions that may have used desiccated PSAN inflators as remedy parts, as well as the makes and models originally manufactured with them, is available with the downloadable version of this document (see nhtsa.gov/recalls?nhtsaId=EA21002 -- note this information is subject to change/revision as the investigation proceeds). This investigation does not supersede EA15-001, which remains open.
Additional source detail variants (2)
Air Bags:frontal:driver Side:inflator Module
From 2000 through 2017, Takata produced millions of air bag inflators using two types of phase-stabilized ammonium nitrate ("PSAN") propellant -- propellant 2004 and propellant 2004L. After prolonged exposure to high temperature cycles and humidity, inflators using propellant 2004 can degrade, causing the propellant to burn too quickly when ignited. The rapid burning can cause the inflator to rupture during deployment, potentially causing serious or even fatal injury to vehicle occupants. See 2016 Blomquist Report at www.nhtsa.gov/sites/nhtsa.gov/files/documents/expert_report-hrblomquist.pdf.Consequently, all frontal inflators using propellant 2004 that do not contain a "desiccant" (a substance that traps and holds moisture) in US vehicles are under recall. These "non-desiccated" inflators either have been or are required to be replaced.In some cases, the remedy part for these recalled inflators was, or will be, an inflator using either propellant 2004 or 2004L that does contain a desiccant. None of these "desiccated" remedy parts (which were installed in older model year vehicles) are currently under recall for a degradation concern. Certain subsets of desiccated PSAN inflators using propellant 2004 for use as original equipment, however, have been recalled for a degradation concern. All Takata inflators produced with propellant 2004L contain desiccant, and none of these desiccated inflators using propellant 2004L are under recall for a degradation concern. There have been no reported field ruptures in any non-recalled desiccated PSAN inflators.It is understood that desiccants fully saturate at some threshold, at which point any additional moisture will not be captured. This means the degradation process observed in non-desiccated inflators using propellant 2004 may also occur in non-recalled desiccated inflators using propellant 2004, assuming additional moisture enters the inflator and high temperature cycling occurs. Based on available information, desiccant saturation can occur within the first five years in the worst environments, and the time required for full saturation is affected by multiple factors. While no present safety risk has been identified, further work is needed to evaluate the future risk of non-recalled desiccated inflators using propellant 2004.Three entities -- Takata (now known as TK Global), the Independent Testing Coalition, and Exponent -- have been studying the long-term behavior of Takata desiccated PSAN inflators using propellant 2004L (as well as 2004) in the presence of moisture and temperature cycling. The research efforts, which include development of predictive modeling techniques and field sample analysis, are ongoing. To date, none of the researchers have identified field evidence showing that propellant 2004L is undergoing a degradation process that leads to aggressive deployment and potential rupture. However, the time in service of such inflators remains short compared to that of the inflators using propellant 2004. Further study is needed to assess the long-term safety of desiccated inflators using propellant 2004L.The Office of Defects Investigation is opening this investigation to examine whether a safety defect related to propellant degradation exists in non-recalled desiccated PSAN frontal inflators manufactured by Takata. This investigation will require extensive information on Takata production processes and surveys of inflators in the field. Lists of recall actions that may have used desiccated PSAN inflators as remedy parts, as well as the makes and models originally manufactured with them, is available with the downloadable version of this document (see nhtsa.gov/recalls?nhtsaId=EA21002 -- note this information is subject to change/revision as the investigation proceeds). This investigation does not supersede EA15-001, which remains open.
Air Bags:frontal:passenger Side:inflator Module
From 2000 through 2017, Takata produced millions of air bag inflators using two types of phase-stabilized ammonium nitrate ("PSAN") propellant -- propellant 2004 and propellant 2004L. After prolonged exposure to high temperature cycles and humidity, inflators using propellant 2004 can degrade, causing the propellant to burn too quickly when ignited. The rapid burning can cause the inflator to rupture during deployment, potentially causing serious or even fatal injury to vehicle occupants. See 2016 Blomquist Report at www.nhtsa.gov/sites/nhtsa.gov/files/documents/expert_report-hrblomquist.pdf.Consequently, all frontal inflators using propellant 2004 that do not contain a "desiccant" (a substance that traps and holds moisture) in US vehicles are under recall. These "non-desiccated" inflators either have been or are required to be replaced.In some cases, the remedy part for these recalled inflators was, or will be, an inflator using either propellant 2004 or 2004L that does contain a desiccant. None of these "desiccated" remedy parts (which were installed in older model year vehicles) are currently under recall for a degradation concern. Certain subsets of desiccated PSAN inflators using propellant 2004 for use as original equipment, however, have been recalled for a degradation concern. All Takata inflators produced with propellant 2004L contain desiccant, and none of these desiccated inflators using propellant 2004L are under recall for a degradation concern. There have been no reported field ruptures in any non-recalled desiccated PSAN inflators.It is understood that desiccants fully saturate at some threshold, at which point any additional moisture will not be captured. This means the degradation process observed in non-desiccated inflators using propellant 2004 may also occur in non-recalled desiccated inflators using propellant 2004, assuming additional moisture enters the inflator and high temperature cycling occurs. Based on available information, desiccant saturation can occur within the first five years in the worst environments, and the time required for full saturation is affected by multiple factors. While no present safety risk has been identified, further work is needed to evaluate the future risk of non-recalled desiccated inflators using propellant 2004.Three entities -- Takata (now known as TK Global), the Independent Testing Coalition, and Exponent -- have been studying the long-term behavior of Takata desiccated PSAN inflators using propellant 2004L (as well as 2004) in the presence of moisture and temperature cycling. The research efforts, which include development of predictive modeling techniques and field sample analysis, are ongoing. To date, none of the researchers have identified field evidence showing that propellant 2004L is undergoing a degradation process that leads to aggressive deployment and potential rupture. However, the time in service of such inflators remains short compared to that of the inflators using propellant 2004. Further study is needed to assess the long-term safety of desiccated inflators using propellant 2004L.The Office of Defects Investigation is opening this investigation to examine whether a safety defect related to propellant degradation exists in non-recalled desiccated PSAN frontal inflators manufactured by Takata. This investigation will require extensive information on Takata production processes and surveys of inflators in the field. Lists of recall actions that may have used desiccated PSAN inflators as remedy parts, as well as the makes and models originally manufactured with them, is available with the downloadable version of this document (see nhtsa.gov/recalls?nhtsaId=EA21002 -- note this information is subject to change/revision as the investigation proceeds). This investigation does not supersede EA15-001, which remains open.
EA19001 · Electrical Overstress
Opened Apr 19, 2019 · Closed Sep 19, 2024
Status: closed (inferred from source dates) · Air Bags: Air Bag/restraint Control Module
The Office of Defects Investigation (ODI) opened this investigation to determine if the failure of airbags to deploy during severe crashes, in certain vehicles, was the result of a safety related defect. During the investigation a complex failure was studied that can result in non-deployment of subject vehicle air bags and other restraint system devices in severe crash events. The subject vehicles may be equipped with an airbag control unit (ACU) for the supplemental restraint system (SRS) Electronic Control Unit (ECU) manufactured by ZF-TRW. The ECU receives signals from crash sensors mounted in the vehicle and deploys the vehicle air bags and seat belt pretensioners in accordance with manufacturer design specifications. The ECU in the subject vehicles contains a model DS84 application-specific integrated circuit (ASIC) which controls the communication of the crash sensor signal, firing commands (i.e., when to deploy the airbag(s) and/or pretensioners), and fault information (e.g., diagnostic trouble codes). In September 2016, FCA announced recall 16V-668 for certain model year (MY) 2010 to 2014 Chrysler, Dodge and Jeep products manufactured with the subject ZF-TRW ACU. In this recall, FCA discussed an EOS condition that resulted in a failure of the subject DS84 ASIC, which caused air bag non-deployment. FCA noted that the defect condition had only been observed in vehicles equipped with sensor harnessing routed across the front of the vehicle. Other FCA vehicles that also used the subject ACU, but were not equipped with cross-car harnessing, had not experienced EOS failures, despite similar time in service. During the course of this investigation, ODI sent two separate Information Request (IR) letters to six vehicle manufactures (including FCA, Hyundai, Honda, Kia, Mitsubishi, and Toyota) and one IR letter to ZF-TRW. These IR letters resulted in ODI receiving comprehensive data from these manufacturers and suppliers. Studies of this data found that the DS84 ASIC does not have sufficient protection against negative electrical transients or electrical overstress (“EOS”) that can be generated in certain severe crashes. An electrical transient occurs when the electrical power supplied to a circuit changes momentarily over a short duration of time. In these severe crash cases, the crash sensors and other powered wiring can be damaged and short circuited so as to create a negative electrical transient of sufficient intensity and duration (that are outside the vehicle manufacturer's specification) to damage the ASIC before the restraint device deployment signal is received by the SRS ECU. This damaged signal can lead to incomplete or nondeployment of the air bags and/or pretensioners. Airbag non-deployment and/or lack of pretensioner operation can increase the risk or severity of injury in a crash.A total of 8 fatalities and 14 injuries were associated with known EOS events. The common element in all investigated manufacturers vehicles is the SRS ECU containing a DS84 ASIC manufactured by ZF-TRW. The risk associated with the ASIC is equally shared among all OEMS involved in the investigation. The actual real-world risk can be mitigated by other factors which were assessed by ODI during this investigation. The first mitigating factor involves protections built into the ACU design which protect the DS84 ASIC from damage. There are multiple strategies and levels of protection employed by different OEMs that provide effective EOS mitigation. The two most common strategies at the ACU level are circuit protection diodes on the remote senor signal lines, and current limiting resistors that protect critical components. The second mitigating factor is found at the vehicle level and involves the location and routing of the wires leading from the crash sensors to the SRS ECU. If the wires are well protected in a crash and are not routed with other power wires carrying large currents, the risk for an EOS event is significantly reduced or eliminated. These design specific factors combine to produce a spectrum of risk for the vehicles equipped with ACUs using the DS84 ASIC. Given the many of years of field exposure, it is possible to divide the subject population into two groups; vehicles which have experienced EOS events, and vehicles which have not experienced EOS field events. Four of the six OEMs involved in this investigation have experienced EOS field events on at least one of their models equipped with a DS84 ASIC. All vehicle models (including the Toyota models identified in the Failure Report Summary of the opening resume for this investigation) with field events have been recalled. In an abundance of caution, ODI kept this investigation open five years to monitor field performance and did not identify any field events on vehicles not included in existing safety recalls. Given the spectrum of risk identified in this investigation and that all vehicles with a demonstrated unreasonable risk have been recalled, ODI is closing this investigation. ODI is closing this investigation with the following manufacturer safety recalls: 16V-668, 18E-043, 18V-137, 18V-363, and 20V-024. With the recall actions taken by the subject vehicle and equipment manufacturers, this investigation is closed. The closing of this investigation does not constitute a finding by NHTSA that a safety-related defect does not exists on other model or model year vehicles outside of the recall scopes. The agency reserves the right to take further action if warranted by the circumstances.