发明名称 EXHAUST GAS PURIFICATION APPARATUS FOR AN INTERNAL COMBUSTION ENGINE
摘要 An exhaust gas purification apparatus for an internal combustion engine, capable of carrying out oxidation removal of PM deposited in a filter as a whole in an efficient manner, includes a filter arranged in an exhaust passage of the internal combustion engine and having an oxidation catalyst supported in at least an upstream side portion thereof, and a heating device arranged so as to be able to heat the upstream side portion of the filter irrespective of oxidation reaction heat of the oxidation catalyst, wherein when filter upstream regeneration processing to oxidize and remove deposition PM in the upstream side portion of the filter is carried out by controlling a heating device, an amount of decrease of the upstream side deposition PM by the filter upstream regeneration processing is reflected on an amount of filter PM deposition in the ordinary filter regeneration processing which oxidizes and removes the deposition PM in the entire filter by means of oxidation reaction heat of unburnt fuel generated by the oxidation catalyst supported in the filter, and the filter upstream regeneration processing is ended, even if the thus reflected amount of filter PM deposition is in a state of being larger than a reference amount of deposition which is a threshold value for ending the ordinary filter regeneration processing.
申请公布号 US2016097310(A1) 申请公布日期 2016.04.07
申请号 US201514874574 申请日期 2015.10.05
申请人 TOYOTA JIDOSHA KABUSHIKI KAISHA 发明人 YAMASHITA Yoshio
分类号 F01N3/025 主分类号 F01N3/025
代理机构 代理人
主权项 1. An exhaust gas purification apparatus for an internal combustion engine comprising: a filter that is arranged in an exhaust passage of the internal combustion engine for trapping particulate matter in exhaust gas, and has an oxidation catalyst supported in at least an upstream side portion of said filter; a heating device that is arranged so as to be able to heat said upstream side portion of said filter irrespective of oxidation reaction heat of said oxidation catalyst; a first estimation unit configured to estimate an amount of filter PM deposition which is an amount of deposition of particulate matter deposited in said filter as a whole; a second estimation unit configured to estimate an amount of upstream side PM deposition which is an amount of deposition of upstream side deposition PM which is particulate matter deposited in said upstream side portion; an ordinary filter regeneration unit configured to carry out ordinary filter regeneration processing to oxidize and remove the particulate matter until said amount of filter PM deposition is decreased to a second amount of deposition smaller than a first amount of deposition by means of oxidation reaction heat of unburnt fuel generated by said oxidation catalyst supported in said filter, when said amount of filter PM deposition estimated by said first estimation unit exceeds said first amount of deposition; and a filter upstream regeneration unit configured to carry out filter upstream regeneration processing to oxidize and remove said upstream side deposition PM by controlling said heating device, when said amount of upstream side PM deposition estimated by said second estimation unit exceeds a third amount of deposition; wherein when said filter upstream regeneration processing is carried out by said filter upstream regeneration unit, an amount of decrease of said upstream side deposition PM by said filter upstream regeneration processing is reflected on said amount of filter PM deposition estimated by said first estimation unit, and even if the thus reflected amount of filter PM deposition is in a state of being larger than said second amount of deposition, said filter upstream regeneration unit ends said filter upstream regeneration processing, when said amount of upstream side PM deposition reaches a fourth amount of deposition smaller than said third amount of deposition.
地址 Toyota-shi JP