CN102720581A - Mechanically telescopic device with three connection pipes - Google Patents

Mechanically telescopic device with three connection pipes Download PDF

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Publication number
CN102720581A
CN102720581A CN2012102162660A CN201210216266A CN102720581A CN 102720581 A CN102720581 A CN 102720581A CN 2012102162660 A CN2012102162660 A CN 2012102162660A CN 201210216266 A CN201210216266 A CN 201210216266A CN 102720581 A CN102720581 A CN 102720581A
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China
Prior art keywords
cavity volume
pipe
air inlet
connecting tube
engine
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Pending
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CN2012102162660A
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Chinese (zh)
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李昊东
吴卓琦
赵相晖
李雪松
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Shanghai Jiaotong University
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Shanghai Jiaotong University
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Priority to CN2012102162660A priority Critical patent/CN102720581A/en
Publication of CN102720581A publication Critical patent/CN102720581A/en
Pending legal-status Critical Current

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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02TCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO TRANSPORTATION
    • Y02T10/00Road transport of goods or passengers
    • Y02T10/10Internal combustion engine [ICE] based vehicles
    • Y02T10/12Improving ICE efficiencies

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Abstract

The invention relates to the technical field of internal combustion engines and discloses a mechanically telescopic device with three connection tubes. The device comprises a gas inlet pipe, a gas compressor, an engine, a gas exhaust pipe, a turbine, a volume cavity, connecting pipes, a moving body, a moving plate and a spring, wherein one end of the moving body stretches into the first connecting pipe; the other end of the moving body is fixedly connected with the left wall surface of the moving plate to form a whole; and the right wall surface of the moving plate is connected with the right wall surface of the volume cavity through the spring. When the engine is in a low-speed working condition, the moving plate moves to the left wall surface of the volume cavity, the volume of the gas exhaust pipe is relatively small, the pulse energy can be fully utilized, the gas inlet pressure of the engine is relatively high, and the overall performance of the engine is relatively good; and when the engine is in a high-speed working condition, the moving plate moves to the right wall surface of the volume cavity, the gas exhaust volume is relatively large, the pumping loss is relatively low, and the overall performance of the engine is relatively good. The device is rational in design and simple in structure and is applied to a turbocharging system with a single turbine inlet.

Description

Three connect tubular type mechanical-stretching device
Technical field
What the present invention relates to is a kind of turbo charge system of field of internal combustion engine, and particularly a kind of three connect tubular type mechanical-stretching device.
Background technique
Along with the development of society and the raising of environmental requirement, the engine booster The Application of Technology more and more widely, in powerful motor mostly adopt turbocharging technology, to improve power and to reduce fuel consumption rate.Two kinds of basic patterns of turbo charge system are constant pressure charging system and impulse pressure charging system.Constant pressure charging system; The shared outlet pipe that volume is bigger of each cylinder, exhaust piping is relatively simple for structure, and it is constant that the outlet pipe internal pressure keeps basically; The pressure size is only relevant with the load and the rotating speed of motor, and the pressurization system that different cylinders are counted diesel engine can be designed for uniformity.Constant pressure charging system is when high-speed working condition, and pumping loss is less, and turbine efficiency is higher, and performance is more excellent; But when the low speed operating mode, can not make full use of the exhaust pulses energy.Impulse pressure charging system, according to each cylinder firing order, two cylinders or three cylinders that exhaust is not disturbed are connected with same outlet pipe, and the exhaust piping caliber is less, and the exhaust pulses energy can make full use of, low speed operating mode and instantaneous conditions better performances; But when high-speed working condition, pumping loss is bigger.This shows, if a waste pipe volume can change along with the conversion of operating mode, make exhaust pipe volume become big during high-speed working condition, during the low speed operating mode exhaust pipe volume is diminished, this is comparatively desirable.
Retrieval through to the existing technology document is found; Chinese patent ZL200410050996.; Patent name: the variable modular pulse converter supercharging device of a kind of turbo-charged diesel; This patented technology provides a kind of device of exhaust pipe volume continuous variable, can take into account the high and low rotating speed operating mode of motor preferably; But the variation of its exhaust pipe volume is to realize through moving up and down of movement rod, and this just needs to increase the special control mechanism of a cover and controls moving of movement rod, thus the more complicated that the pressurization system structure is become.
Summary of the invention
The present invention is directed to the deficiency of above-mentioned existing technology, provide a kind of three to connect tubular type mechanical-stretching devices, make its exhaust pipe volume can self-control, take into account the high and low rotating speed operating mode of motor preferably, and simple in structure, do not need special control mechanism.
The present invention realizes through following technological scheme; The present invention includes: compressor air inlet machine pipe, gas compressor, engine air inlet tube, motor, exhaust branch pipe, outlet pipe, turbine, turbine exhaust pipe, coupling shaft, first connecting tube, second connecting tube, cavity volume, cavity volume upper wall surface, cavity volume lower wall surface, cavity volume left side wall, the right wall of cavity volume, cavity volume front face, cavity volume rear surface, spring, moving body, shifting board and the 3rd connecting tube; The air inlet/outlet of gas compressor is connected with the air outlet of compressor air inlet machine pipe, the suction port of engine air inlet tube respectively; The suction port of motor is connected with the air outlet of engine air inlet tube; Each cylinder exhaust outlet of motor is connected with outlet pipe through exhaust branch pipe respectively; The air inlet/outlet of turbine is connected with the air outlet of outlet pipe, the suction port of turbine exhaust pipe respectively; Gas compressor is connected through coupling shaft with turbine; The cross section of cavity volume is a rectangular, and cavity volume upper wall surface, cavity volume lower wall surface, cavity volume left side wall, the right wall of cavity volume, cavity volume front face, cavity volume rear surface fix as one, and the two ends of first connecting tube are connected with afterbody, the cavity volume left side wall of outlet pipe respectively; The two ends of second connecting tube are connected with engine air inlet tube, cavity volume left side wall respectively; The two ends of the 3rd connecting tube are connected with outlet pipe, the right wall of cavity volume respectively, and shifting board is installed in the cavity volume and with the internal face sealing of cavity volume and contacts, and an end of moving body stretches in first connecting tube; The left wall of the other end of moving body and shifting board fixes as one, and the right wall of shifting board is connected through the right wall of spring and cavity volume.First connecting tube is a pipe, and moving body is a cylinder.
In the present invention, the two fixes as one moving body and shifting board, can move simultaneously.When motor was in the low speed operating mode, the engine air inlet tube internal pressure was lower, and the cavity volume internal pressure in shifting board left side is also lower; Under the elastic reaction of spring; Shifting board is moved to the left and promotes moving body and also is moved to the left, thereby makes the shared volume of turbine front exhaust less, and pulse energy can make full use of; Engine charge pressure is bigger, and motor complete machine performance is more excellent; When motor is in high-speed working condition; The engine air inlet tube internal pressure is higher, and the cavity volume internal pressure in shifting board left side is also higher, and shifting board moves right and pressure spring; Moving body also and then moves right; Thereby make the shared volume of turbine front exhaust bigger, pumping loss is less, and motor complete machine performance is more excellent.Through the 3rd connecting tube, be incorporated into the exhaust in the outlet pipe in the cavity volume on shifting board right side, when high-speed working condition, can prevent too much the moving right of moving body, thereby prevent that the gas in the engine air inlet tube from getting in the outlet pipe.
Compared with prior art, the present invention has following beneficial effect and is: the present invention is reasonable in design, and is simple in structure, can take into account the high and low rotating speed operating mode of motor, can make pressurization system not need special exhaust pipe volume control mechanism again.
Description of drawings
Fig. 1 connects the structural representation of tubular type mechanical-stretching device for the present invention three;
Fig. 2 is the structural representation of A-A section among Fig. 1;
Fig. 3 is the structural representation of B-B section among Fig. 1;
Wherein: 1, compressor air inlet machine pipe, 2, gas compressor, 3, engine air inlet tube, 4, motor, 5, exhaust branch pipe; 6, outlet pipe, 7, turbine, 8, turbine exhaust pipe, 9, coupling shaft, 10, first connecting tube; 11, second connecting tube, 12, cavity volume, 13, the cavity volume upper wall surface, 14, the cavity volume lower wall surface; 15, cavity volume left side wall, 16, the right wall of cavity volume, 17, the cavity volume front face, 18, the cavity volume rear surface; 19, spring, 20, moving body, 21, shifting board, the 22, the 3rd connecting tube.
Embodiment
Below in conjunction with accompanying drawing embodiments of the invention are elaborated, present embodiment is a prerequisite with technological scheme of the present invention, provided detailed mode of execution and concrete operating process, but protection scope of the present invention is not limited to following embodiment.
Embodiment
Like Fig. 1, Fig. 2 and shown in Figure 3; The present invention includes: compressor air inlet machine pipe 1, gas compressor 2, engine air inlet tube 3, motor 4, exhaust branch pipe 5, outlet pipe 6, turbine 7, turbine exhaust pipe 8, coupling shaft 9, first connecting tube 10, second connecting tube 11, cavity volume 12, cavity volume upper wall surface 13, cavity volume lower wall surface 14, cavity volume left side wall 15, the right wall 16 of cavity volume, cavity volume front face 17, cavity volume rear surface 18, spring 19, moving body 20, shifting board 21 and the 3rd connecting tube 22; The air inlet/outlet of gas compressor 2 is connected with the air outlet of compressor air inlet machine pipe 1, the suction port of engine air inlet tube 3 respectively; The suction port of motor 4 is connected with the air outlet of engine air inlet tube 3; Each cylinder exhaust outlet of motor 4 is connected with outlet pipe 6 through exhaust branch pipe 5 respectively; The air inlet/outlet of turbine 7 is connected with the air outlet of outlet pipe 6, the suction port of turbine exhaust pipe 8 respectively; Gas compressor 2 is connected through coupling shaft 9 with turbine 7; The cross section of cavity volume 12 is a rectangular, and cavity volume upper wall surface 13, cavity volume lower wall surface 14, cavity volume left side wall 15, the right wall 16 of cavity volume, cavity volume front face 17, cavity volume rear surface 18 fix as one, and the two ends of first connecting tube 10 are connected with afterbody, the cavity volume left side wall 15 of outlet pipe 6 respectively; The two ends of second connecting tube 11 are connected with engine air inlet tube 3, cavity volume left side wall 15 respectively; The two ends of the 3rd connecting tube 22 are connected with outlet pipe 6, the right wall 16 of cavity volume respectively, and shifting board 21 is installed in the cavity volume 12 and with the internal face sealing of cavity volume 12 and contacts, and an end of moving body 20 stretches in first connecting tube 10; The left wall of the other end of moving body 20 and shifting board 21 fixes as one; The right wall of shifting board 21 is connected through the right wall 16 of spring 19 and cavity volume, and first connecting tube 10 is a pipe, and moving body 20 is a cylinder.
In the present invention, the two fixes as one moving body 20 and shifting board 21, can move simultaneously.When motor 4 was in the low speed operating mode, engine air inlet tube 3 internal pressures were lower, and cavity volume 12 internal pressures in shifting board 21 left sides are also lower; Under the elastic reaction of spring 19; Shifting board 21 is moved to the left and promotes moving body 20 and also is moved to the left, thereby makes the shared volume of turbine 7 front exhaust less, and pulse energy can make full use of; Engine charge pressure is bigger, and motor 4 complete machine performances are more excellent; When motor 4 is in high-speed working condition; Engine air inlet tube 3 internal pressures are higher, and cavity volume 12 internal pressures in shifting board 21 left sides are also higher, and shifting board 21 moves right and pressure spring 19; Moving body 20 also and then moves right; Thereby make the shared volume of turbine front exhaust bigger, pumping loss is less, and motor 4 complete machine performances are more excellent.Through the 3rd connecting tube 22, be incorporated into the exhaust in the outlet pipe 6 in the cavity volume 12 on shifting board 21 right sides, when high-speed working condition, can prevent moving body 20 too much moving right, thereby prevent that the gas in the engine air inlet tube 3 from getting in the outlet pipe 6.Therefore, the present invention can take into account the high and low rotating speed operating mode of motor 4 preferably.

Claims (2)

1. one kind three connects tubular type mechanical-stretching device; Comprise: compressor air inlet machine pipe (1), gas compressor (2), engine air inlet tube (3), motor (4), exhaust branch pipe (5), outlet pipe (6), turbine (7), turbine exhaust pipe (8) and coupling shaft (9); The air inlet/outlet of gas compressor (2) is connected with the air outlet of compressor air inlet machine pipe (1), the suction port of engine air inlet tube (3) respectively; The suction port of motor (4) is connected with the air outlet of engine air inlet tube (3); Each cylinder exhaust outlet of motor (4) is connected with outlet pipe (6) through exhaust branch pipe (5) respectively; The air inlet/outlet of turbine (7) is connected with the air outlet of outlet pipe (6), the suction port of turbine exhaust pipe (8) respectively; Gas compressor (2) is connected through coupling shaft (9) with turbine (7); It is characterized in that also comprising first connecting tube (10), second connecting tube (11), cavity volume (12), cavity volume upper wall surface (13), cavity volume lower wall surface (14), cavity volume left side wall (15), the right wall (16) of cavity volume, cavity volume front face (17), cavity volume rear surface (18), spring (19), moving body (20), shifting board (21) and the 3rd connecting tube (22); The cross section of cavity volume (12) is a rectangular; Cavity volume upper wall surface (13), cavity volume lower wall surface (14), cavity volume left side wall (15), the right wall (16) of cavity volume, cavity volume front face (17), cavity volume rear surface (18) fix as one; The two ends of first connecting tube (10) are connected with afterbody, the cavity volume left side wall (15) of outlet pipe (6) respectively; The two ends of second connecting tube (11) are connected with engine air inlet tube (3), cavity volume left side wall (15) respectively; The two ends of the 3rd connecting tube (22) are connected with outlet pipe (6), the right wall of cavity volume (16) respectively; Shifting board (21) is installed in the cavity volume (12) and with the internal face sealing of cavity volume (12) and contacts; One end of moving body (20) stretches in first connecting tube (10), and the left wall of the other end of moving body (20) and shifting board (21) fixes as one, and the right wall of shifting board (21) is connected with the right wall of cavity volume (16) through spring (19).
2. according to claim 1 three connect tubular type mechanical-stretching device, it is characterized in that said first connecting tube (10) is a pipe, and moving body (20) is a cylinder.
CN2012102162660A 2012-06-27 2012-06-27 Mechanically telescopic device with three connection pipes Pending CN102720581A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN2012102162660A CN102720581A (en) 2012-06-27 2012-06-27 Mechanically telescopic device with three connection pipes

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Application Number Priority Date Filing Date Title
CN2012102162660A CN102720581A (en) 2012-06-27 2012-06-27 Mechanically telescopic device with three connection pipes

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102733928A (en) * 2012-06-27 2012-10-17 上海交通大学 Mechanical device with in-pipe moving body capable of moving front and back
CN107701297A (en) * 2017-10-18 2018-02-16 山东交通学院 A kind of piston type pulse energy sustained release turbo charging installation
CN107725175A (en) * 2017-10-18 2018-02-23 山东交通学院 A kind of resonant pulse energy sustained release turbo charge system of spring oscillator

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB2205606A (en) * 1987-05-29 1988-12-14 Usui Kokusai Sangyo Kk I c engine with multiple turbo-chargers
US6295814B1 (en) * 1997-04-23 2001-10-02 Daimlerchrysler Ag Internal-combustion engine with an exhaust gas turbocharger
KR20020031671A (en) * 2000-10-23 2002-05-03 이계안 Exhast pipe apparatus
CN1598265A (en) * 2004-08-04 2005-03-23 湛江海洋大学 Variable module type impulse sapercharging device of turbocharging diesel engine
CN201763438U (en) * 2010-09-17 2011-03-16 上海交通大学 Turbo charging device with variable outlet area of an exhaust pipe

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB2205606A (en) * 1987-05-29 1988-12-14 Usui Kokusai Sangyo Kk I c engine with multiple turbo-chargers
US6295814B1 (en) * 1997-04-23 2001-10-02 Daimlerchrysler Ag Internal-combustion engine with an exhaust gas turbocharger
KR20020031671A (en) * 2000-10-23 2002-05-03 이계안 Exhast pipe apparatus
CN1598265A (en) * 2004-08-04 2005-03-23 湛江海洋大学 Variable module type impulse sapercharging device of turbocharging diesel engine
CN201763438U (en) * 2010-09-17 2011-03-16 上海交通大学 Turbo charging device with variable outlet area of an exhaust pipe

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102733928A (en) * 2012-06-27 2012-10-17 上海交通大学 Mechanical device with in-pipe moving body capable of moving front and back
CN107701297A (en) * 2017-10-18 2018-02-16 山东交通学院 A kind of piston type pulse energy sustained release turbo charging installation
CN107725175A (en) * 2017-10-18 2018-02-23 山东交通学院 A kind of resonant pulse energy sustained release turbo charge system of spring oscillator
CN107701297B (en) * 2017-10-18 2023-08-11 山东交通学院 Piston type pulse energy delayed release turbocharging device
CN107725175B (en) * 2017-10-18 2024-03-26 山东交通学院 Spring vibrator resonance type pulse energy delayed release turbocharging system

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Application publication date: 20121010