The present invention relates to an anti-freezing device for an EGR device which prevents an EGR valve from freezing when ambient air is extremely low in temperature.
Conventionally, so-called exhaust gas recirculation (EGR) has been conducted, for example, in a vehicle engine such that a part of exhaust gas is extracted and returned from an exhaust side to an intake side to suppress combustion of fuel in the engine, thereby lowering combustion temperature to reduce generation of NOx (nitrogen oxides).
Usually in this kind of EGR device for the exhaust gas recirculation, an appropriate position in an exhaust passage extending from an exhaust manifold to an exhaust pipe is connected through an EGR pipe with an appropriate position in an intake passage extending from an intake pipe to an intake manifold, thereby recirculating the exhaust gas through the EGR pipe.
An EGR cooler may be provided midway of the EGR pipe to cool the exhaust gas to be recirculated to the engine, which lowers and reduces a temperature and a volume of the exhaust gas to lower a combustion temperature without substantial decrease in output of the engine, thereby effectively suppressing generation of NOx.
In this kind of EGR device, for example, during cold idling with an exhaust brake being on in a cold district where an ambient air temperature is below freezing, water vapor in the exhaust gas may be condensed near an outlet of the EGR cooler; and the condensed water may accumulate in a tube of the EGR cooler and on an EGR valve arranged at the outlet of the EGR cooler, resulting in clogging of the tube of the EGR cooler or inoperativeness of the EGR valve due to freezing of the accumulating, condensed water. As a result, the EGR device may become inactive.
In order to overcome the above problem, conventionally, the EGR pipe is kept warm by wrapping heat-retaining and -insulating material around the EGR pipe. This is, however, troublesome with respect to an operation of wrapping the heat-retaining and -insulating material around the EGR pipe, leading to increase in cost; moreover, this may not reliably prevent the condensed water from freezing under the condition of extremely low temperature.
Thus, Patent Literature 1 in the name of the applicant of the present invention discloses an EGR vale wherein an actuator capable of operating a valve body has a housing including a water jacket with ports connectable to a coolant circulation system.
[Patent Literature 1] JP 04-63960A
However, the EGR valve shown in the Patent Literature 1 serves to circulate coolant to the water jacket in the housing to prevent temperature increase in components of the actuator, not to prevent the valve body from freezing. Therefore, when the coolant is circulated to the ports in the housing of the actuator in the Patent Literature 1 so as to prevent the valve body from freezing, the valve body may be indirectly warmed by the coolant at the ports, disadvantageously resulting in little temperature increase of the valve body and low effect on prevention of the accumulating, condensed water from freezing. Moreover, to provide the ports in the housing of the actuator makes the housing troublesome in production thereof.
The invention was made in view of the above and has its object to provide an anti-freezing device for an EGR device which can elevate, with a simple structure, temperature at an outlet of an EGR pipe to prevent an EGR valve arranged at the outlet of the EGR pipe from freezing.
The invention is directed to an anti-freezing device for an EGR device wherein an EGR cooler is provided midway of an EGR pipe which extracts a part of exhaust gas from an exhaust side to recirculate the extracted exhaust gas to an intake side, a downstream EGR pipe downstream of said EGR cooler being connected through a flange section with an EGR valve, characterized in that said flange section is provided with a warm-water passage to and from which engine warm water is guided through warm-water conduits.
Thus, according to the anti-freezing device for the EGR device, the engine warm water is guided to the warm-water passage on the flange section which in turn connects the downstream EGR pipe downstream of the EGR cooler with the EGR valve, so that the flange section is warmed by the engine warm water. As a result, during cold, the condensed water guided in separation from the exhaust gas by the EGR cooler is prevented from freezing on the EGR valve positioned downstream of the flange section.
Preferably, the warm-water passage is provided by a passage groove on a flange surface of the outlet flange on the downstream EGR pipe; and the provision by the passage groove facilitates production of the downstream EGR pipe by casting.
Alternatively, the warm-water passage may be provided by a passage groove on a flange surface of the fixed flange for the EGR valve. Further alternatively, the warm-water passage may comprise a passage groove on the flange surface of the outlet flange on the downstream EGR pipe and a passage groove on the fixed flange for the EGR valve which are opposing to each other.
According to the anti-freezing device for the EGR device as mentioned in the above, the flange section, which connects the downstream EGR pipe downstream of the EGR cooler with the EGR valve, is provided with the warm-water passage for guidance of the engine warm water, so that the flange section is warmed by the engine warm water. Thus, during cold, the condensed water separated from the exhaust gas by the EGR cooler is prevented from freezing in the EGR valve positioned downstream of the flange section.
Next, embodiments of the invention will be described in conjunction with the drawings.
Then, the exhaust gas 8 discharged through the respective cylinders 2 of the engine 1 is fed through an exhaust gas manifold 9 to a turbine 3b of the turbocharger 3. The exhaust gas 8 having driven the turbine 3b is discharged through an exhaust gas pipe 10 to outside of the vehicle.
The engine 1 is equipped with an EGR device 14 which in turn comprises an EGR pipe 11 extracting part of exhaust gas 8 from an exhaust gas manifold 9 to guide the same to an intake duct 4 at an inlet of the suction manifold 7, an EGR cooler 12 arranged midway of the EGR pipe 11 to cool the exhaust gas 8, and an EGR valve 13 arranged at the EGR pipe 11 downstream of the EGR cooler 12 and openable/closable to control an amount of the cooled exhaust gas 8 to be recirculated to the intake duct 4.
The EGR pipe 11 comprises upstream and downstream EGR pipes 11a and 11b upstream and downstream of the EGR cooler 12, respectively. The downstream EGR pipe 11b has an downstream outlet connected through a flange section 15 with the EGR valve 13 arranged at the intake duct 4. In
Shown in
In lieu of the passage groove 16A on the flange surface 17 of the outlet flange 15a as shown in
Further alternatively, as shown in an embodiment of
As shown in
The warm-water conduit 23 is arranged so as to guide engine warm water 22, from a higher pressure portion in an engine block constituting the engine 1, to the communication passage 18; and the warm-water conduit 24 is arranged so as to return the engine warm water 22, flowing through the warm-water passage 16 and out of the communication passage 19, to a lower pressure portion in the engine block.
A mode of operation of the above embodiments will be described.
In the engine shown in
However, in the invention, as shown in
It is to be understood that an anti-freezing device for an EGR device according to the invention is not limited to the above-mentioned embodiments and that various changes and modifications may be made without departing from the scope of the invention. For example, the warm-water passage may be variously changed in shape; and the invention is applicable to various types of engines with EGR device.
An anti-freezing device for an EGR device according to the invention may be applied for prevention of condensed water from freezing in a cold district where water vapor in exhaust gas might be condensed in a downstream EGR pipe at an outlet of an EGR cooler and the condensed water might accumulate and freeze on an EGR valve.
Number | Date | Country | Kind |
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2011-192397 | Sep 2011 | JP | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/JP12/05553 | 9/3/2012 | WO | 00 | 2/20/2014 |