Pipe permitted extending mechanism

A technology for extending mechanisms and pipelines, applied to mechanical equipment, engine components, machines/engines, etc., can solve the problems of self-rotation and manual rotation, etc., and achieve simple structure, continuously variable volume, and reasonable design Effect

Inactive Publication Date: 2015-05-06
王春海
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

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Problems solved by technology

[0003] After searching the existing literature, it is found that the patent application number is 200810203032.6, which is called the patented technology of the turbocharger device that uses the rotation of the partition to adjust the volume of the exhaust pipe. It provides a continuous variable volume of the exhaust pipe by using a rotating plate. technology, but its rotation needs to be done manually, and it cannot achieve self-rotation

Method used

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Examples

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Embodiment

[0015] Examples of the present invention are Figure 1 to Figure 5 As shown, the present invention includes engine intake pipe 1, air filter 2, compressor 3, intercooler 4, throttle valve 5, engine 6, engine exhaust pipe 7, turbine 8, catalytic package 9, muffler 10, first Connecting pipe 11, adjusting chamber 12, rotating shaft 13, rotating plate 14, fixing plate 15, control chamber 16, fixing body 17, first inner pipe 18, second inner pipe 19, spring 20, separator 21, rotating body 22 , connecting plate 23, second connecting pipe 24, the air outlet of engine intake pipe 1 is connected with the air intake of engine 6, the air outlet of engine exhaust pipe 7 is connected with the exhaust passage of engine 6, air filter 2, The compressor 3, the intercooler 4, and the throttle valve 5 are sequentially arranged on the engine intake pipe 1, the turbine 8, the catalytic package 9, and the muffler 10 are sequentially arranged on the engine exhaust pipe 7, the first connecting pipe 1...

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Abstract

The invention provides a pipe permitted extending mechanism, and belongs to the technical field of internal combustion engines. The pipe permitted extending mechanism comprises an engine air inlet pipe, a supercharger, an engine, an engine exhaust pipe, a turbine, connection pipes, an adjusting cavity, a rotating shaft, a rotating plate, a control cavity, internal pipes, a spring and a rotating body. The adjusting cavity and the control cavity are coaxially connected through the rotating shaft. The upper wall face of a second internal pipe is connected with a partition plate through the spring. One end of a second connection pipe penetrates through a fixed body and then is communicated with a first internal pipe, and the other end of the second connection pipe is connected with the engine air inlet pipe between an intercooler and an air damper. According to the pipe permitted extending mechanism, when the engine operates under a high-speed working condition, the exhaust volume before the turbine is larger, the air pumping loss is smaller, and oil consumption is lower; when the engine operates under a low-speed working condition, the exhaust volume before the turbine is smaller, the pulse energy can be fully utilized, and oil consumption is lower. The pipe permitted extending mechanism is reasonable in design, simple in structure and suitable for optimal design of a turbocharged engine exhaust system.

Description

technical field [0001] The invention belongs to the technical field of internal combustion engines, and in particular relates to a pipeline quasi-extending mechanism capable of realizing the self-regulation of the volume of the exhaust pipe of a supercharged engine. Background technique [0002] The turbocharging system mainly includes a pulse supercharging system and a constant pressure supercharging system. In the constant-pressure supercharging system, each cylinder shares a large-volume exhaust pipe. The structure of the exhaust pipe system is relatively simple. The pressure in the exhaust pipe is basically kept constant, and the pressure is only related to the load and speed of the engine. The constant pressure supercharging system has less pumping loss, higher turbine efficiency and better performance under high-speed conditions; however, it cannot fully utilize the exhaust pulse energy under low-speed conditions. Pulse supercharging system, according to the firing se...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): F01N13/08
Inventor 王春海
Owner 王春海
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