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Air-fuel ratio control adjusting system in an internal combustion engine

  • US 4,075,834 A
  • Filed: 12/03/1975
  • Issued: 02/28/1978
  • Est. Priority Date: 12/06/1974
  • Status: Expired due to Term
First Claim
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1. An air-fuel ratio control adjusting system in combination with an internal combustion engine and a motor vehicle equipped with said engine, said engine including an intake passageway for feeding air into said engine, a throttle valve rotatably mounted in said intake passageway, an air-fuel mixture forming device communicating with said intake passageway for feeding fuel into air fed through said intake passageway to form an air-fuel mixture to be burned in said engine, and an exhaust gas passageway for conducting exhaust gas from said engine, said system comprising a device for electrically controlling the air-fuel ratio of said air-fuel mixture to a desired air-fuel ratio, a sensor located in said exhaust gas passageway for sensing a concentration of oxygen contained in the engine exhaust gas which concentration is a function of the air-fuel ratio of said air-fuel mixture burned in said engine, said sensor having means to generate an output signal having a value representative of the sensed concentration of said oxygen, an electric control circuit which is electrically connected to said sensor and compares the value of said output signal of said sensor with a reference value representative of said desired air-fuel ratio, and has means to generate an error signal representative of a difference between the value of said output signal and said reference value, and fuel flow control means which is integral with said air-fuel mixture forming device and is electrically connected to said control circuit to receive said error signal thereof and controls in accordance with said error signal the flow of fuel fed into said air to thereby control, to said desired air-fuel ratio, the air-fuel ratio of said air-fuel mixture formed by said air-fuel mixture forming device, and a secondary air supply device for feeding secondary air into said exhaust gas passageway during idling and slow speed running of said engine for increasing the concentration of said oxygen in said engine exhaust gas sensed by said sensor, said secondary air supply device thereby causing said fuel flow control means to temporarily increase the flow of fuel fed into said air to enrich said air-fuel mixture formed by said air-fuel mixture forming device, said secondary air supply device comprising passage means opening into said exhaust gas passageway in a position upstream of said sensor for supplying secondary air into said exhaust gas passageway, a throttle switch opened in response to a first degree of opening of said throttle valve which is above a predetermined value and closed in response to a second degree of opening of said throttle valve which is below said predetermined value and representative of idling and slow speed running of said engine, a vehicle speed switch opened in response to a first speed of said motor vehicle which is above a predetermined value and closed in response to a second speed of said motor vehicle which is below said predetermined value and is representative of idling and slow speed running of said engine, a flow control valve located in said passage means, and operating means connected to said throttle and vehicle speed switches for causing, in response to opening of at least one of said throttle and vehicle speed switches, said flow control valve to close said passage means to inhibit supply of said secondary air into said exhaust gas passageway and further causing, in response to closing of both said throttle and vehicle speed switches, said flow control valve to open said passage means to permit supply of said secondary air into said exhaust means to increase the concentration of said oxygen sensed by said sensor.

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