CN105499903B - The idling foaming tube processing method that transition has some setbacks - Google Patents

The idling foaming tube processing method that transition has some setbacks Download PDF

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Publication number
CN105499903B
CN105499903B CN201610000651.XA CN201610000651A CN105499903B CN 105499903 B CN105499903 B CN 105499903B CN 201610000651 A CN201610000651 A CN 201610000651A CN 105499903 B CN105499903 B CN 105499903B
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idling
foaming tube
electromotor
setbacks
transition
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CN201610000651.XA
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CN105499903A (en
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庄景阳
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"NANTONG CITY TONGZHOU DISTRICT BIAOYANG TEXTILE CO., LTD."
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Nan'an Tianhong Electronic Technology Co Ltd
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B23MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
    • B23PMETAL-WORKING NOT OTHERWISE PROVIDED FOR; COMBINED OPERATIONS; UNIVERSAL MACHINE TOOLS
    • B23P6/00Restoring or reconditioning objects
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F02COMBUSTION ENGINES; HOT-GAS OR COMBUSTION-PRODUCT ENGINE PLANTS
    • F02MSUPPLYING COMBUSTION ENGINES IN GENERAL WITH COMBUSTIBLE MIXTURES OR CONSTITUENTS THEREOF
    • F02M19/00Details, component parts, or accessories of carburettors, not provided for in, or of interest apart from, the apparatus of groups F02M1/00 - F02M17/00
    • F02M19/01Apparatus for testing, tuning, or synchronising carburettors, e.g. carburettor glow stands

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • General Engineering & Computer Science (AREA)
  • Lubricants (AREA)
  • Nozzles For Spraying Of Liquid Fuel (AREA)
  • Tires In General (AREA)

Abstract

The idling foaming tube processing method that a kind of transition has some setbacks, operating maintenance procedure is as follows: carburetor is decomposed, take off idling foaming tube, the process layer shown is fallen in 8 air inlet files or the sand papering of idling foaming tube side, with electric cautery, stannum is sealed 2 ~ 6 air inlets.Beneficial effect, uses the present invention to carry out the maintenance of idling foaming tube of carburetor, can effectively solve gasoline with air because foaming is the dilutest, causes power dropping, transition to have some setbacks, the effect of oil consumption rising.

Description

The idling foaming tube processing method that transition has some setbacks
Original bill
The applying date: 2013-11-25
Application number: 2013105972448
Denomination of invention: the idling foaming tube processing method that transition has some setbacks.
Technical field
The present invention relates to petrolic fuel atomization device, be concretely the idling foaming tube that has some setbacks of a kind of transition Processing method.
Background technology
Carburetor at work, because of the dust abrasion to each metering-orifice, the most main foaming tube, it it has to be ensured that air with The valid density of gasoline, electromotor could normally work, but, along with the time of use and the dust abrasion to metering-orifice, cause sky Pore becomes big, has a strong impact on the working condition of electromotor.
Particularly when electromotor refuel easily flame-out, without idling, have a strong impact on normally working of electromotor.
The present invention is to coordinate inventor, in the patent of invention technology ' fuel saving maintenance method for carburettor ' of application in 2008 ' the carburettor main nozzle bracing frame ' applied for 2012, after main burner being repaired in first patented technology, another energy-conservation Supplementing of technology.
Summary of the invention
It is an object of the invention to provide the idling foaming tube processing method that a kind of transition has some setbacks so that ensureing former carburetion The simple structure of device, easy to maintenance on the basis of, also have reduction oil consumption, cold car easily start, transition steadily, extend electromotor and make With the life-span, reduce the functions such as exhaust emissions.
The present invention realizes with following technical scheme: the idling foaming tube processing method that this transition has some setbacks,
Operating maintenance procedure is as follows:
1. carburetor is decomposed, take off idling foaming tube, 8 air inlet files or the sand paper of idling foaming tube side Polish off the process layer shown, with electric cautery, stannum is sealed 2 ~ 6 air inlets.Make the air capacity in entrance idling foaming tube Reduce, be effectively improved the gas concentration in idling foaming tube, to meet the consistency of foam of low speed in electromotor.
2. main spindle is reduced, in the idling state, with the actual gap of main burner after declining according to main spindle, then use The internal diameter of main burner is contracted to the external diameter of main spindle as consistent by cavity shrinkage rod of main nozzle.
After the hottest car, regulate micrometer adjusting screw, make the rotating speed of electromotor peak, and somewhat rotate one toward thin direction Determine angle.
When using above method, valve clearance and spark plug gap must be in critical fields, and electromotor is without burn oil, electronic Enrichment valve adjusts to crack state.
Effect confirms, after car routine road conditions travel 10 kilometers, in order to the carbon distribution in exhaustor or greasy dirt are discharged, so After, by a clean blank sheet of paper, on the other hand blank sheet of paper being placed on the afterbody of exhaustor, another hands open out, blank sheet of paper has dry black carbon Mark, declines main spindle to lattice again, and carbon mark is micro-moistening, for the oil filling excess of electromotor.Answering of exhaustor band echo chamber Having relatively juicy to discharge, conventional exhaust pipe should have slight moisture on the scraps of paper.
Beneficial effect, the utilization present invention carries out the maintenance of the idling foaming tube of carburetor, can effectively solve gasoline and air Because of foaming the dilutest, cause power dropping, transition to have some setbacks, oil consumption raise effect.
Detailed description of the invention
The idling foaming tube processing method that a kind of transition has some setbacks, operating maintenance procedure is as follows: carburetor is decomposed, and takes off idle Speed foaming tube, falls, 8 air inlet files or the sand papering of idling foaming tube side, the process layer shown, uses electric cautery handle Stannum seals 2 ~ 6 air inlets.
The motorcycle of one: one five sheep Honda CG125 rod engine of case, unstable idle speed, easy stopping working of refueling, finely tune spiral shell Nail regulation effect is little, and processing mode: 2 air inlet stannum of idling foaming tube side are sealed starts vehicle, micrometer adjusting screw Being screwed to the end, to exit the idling of a circle electromotor the most highly stable, and minimum speed adjusts to per minute 1000 and forwards motivations not send out Trembling, more steam discharged by open out exhaustor, and power increases a gear than in the past.
Two: one five sheep Honda camber beam C100 electromotor motorcycles of case, start every time and are required for opening enrichment-system Can start smoothly, engine speed less than per minute 2000 turns the most flame-out, micrometer adjusting screw regulation effect is little, processing mode: 4 air inlet stannum of idling foaming tube side seal, and, main spindle is dropped to the most fuel-efficient position, the end, starts vehicle, micro- Adjusting screw to be screwed to the end, to exit the idling of half-turn electromotor the most highly stable, and minimum speed adjusts to per minute 700 and forwards motivations also Not shaking, more steam discharged by open out exhaustor, and the acceleration of 0 ~ 60 kilometer is faster 1 second than in the past.
Three: one CG150 electromotor motorcycles of case, cold car difficult car, in electromotor, low speed can not control, micrometer adjusting screw Regulation effect is little, processing mode: 6 air inlet stannum of idling foaming tube side are sealed, and, main spindle is dropped to The end is the most fuel-efficient position, starts vehicle, and micrometer adjusting screw is screwed to the end, and to exit the idling of 2 circle electromotors the most highly stable, and minimum speed is adjusted Whole to per minute 1000 forward motivations do not shake, open out exhaustor in the detection of test paper without least bit carbon mark, dynamic property Can be good.

Claims (5)

1. the idling foaming tube processing method that transition has some setbacks, operating maintenance procedure is as follows: carburetor is decomposed, and takes off idling Foaming tube, falls 8 air inlet sand paperings of idling foaming tube side on the process layer on surface, with electric cautery stannum seal 2 ~ 6 air inlets, make the air capacity in entrance idling foaming tube reduce, are effectively improved the gas concentration in idling foaming tube, To meet the consistency of foam of low speed in electromotor, after hot car, regulate micrometer adjusting screw, make the rotating speed of electromotor peak, and Somewhat rotate to an angle toward thin direction,
Effect confirms, after car routine road conditions travel 10 kilometers, in order to the carbon distribution in exhaustor or greasy dirt are discharged, then, takes One clean blank sheet of paper, is placed on blank sheet of paper the afterbody of exhaustor, another hands open out on the other hand, and blank sheet of paper has dry black carbon mark, Main spindle declines lattice again, and carbon mark is micro-moistening, for the oil filling excess of electromotor.
The idling foaming tube processing method that a kind of transition the most according to claim 1 has some setbacks, is characterized in that, main spindle is dropped Low, in the idling state, with the actual gap of main burner after declining according to main spindle, then with cavity shrinkage rod of main nozzle to main burner Internal diameter be contracted to the external diameter of main spindle as consistent.
The idling foaming tube processing method that a kind of transition the most according to claim 1 has some setbacks, is characterized in that, five sheep Hondas CG125 rod engine motorcycle, unstable idle speed, easy stopping working of refueling, micrometer adjusting screw regulation effect is little, processing mode: idle 2 air inlet stannum of speed foaming tube side seal, and start vehicle, and micrometer adjusting screw is screwed to the end and exits the idling of a circle electromotor i.e. Highly stable, minimum speed adjusts does not shakes to 1000 forwarding motivations per minute, and more steam discharged by open out exhaustor, Power increases a gear than in the past.
The idling foaming tube processing method that a kind of transition the most according to claim 1 has some setbacks, is characterized in that, five sheep Hondas are curved Beam C100 electromotor motorcycle, each startup is required for opening enrichment-system and could start smoothly, and engine speed is less than every point 2000 turns of clock is the most flame-out, and micrometer adjusting screw regulation effect is little, processing mode: 4 air inlet stannum of idling foaming tube side Seal, and, main spindle being dropped to the most fuel-efficient position, the end, starts vehicle, micrometer adjusting screw is screwed to the end and exits half-turn electromotor Idling is the most highly stable, and minimum speed adjusts does not shakes to 700 forwarding motivations per minute, and open out exhaustor is discharged more Steam, the acceleration of 0 ~ 60 kilometer is faster 1 second than in the past.
The idling foaming tube processing method that a kind of transition the most according to claim 1 has some setbacks, is characterized in that, CG150 starts Machine motorcycle, cold car difficult car, in electromotor, low speed can not control, and micrometer adjusting screw regulation effect is little, processing mode: idling 6 air inlet stannum of foaming tube side seal, and, main spindle is dropped to the most fuel-efficient position, the end, starts vehicle, finely tune spiral shell Nail is screwed to the end, and to exit the idling of 2 circle electromotors the most highly stable, and minimum speed adjusts to per minute 1000 and forwards motivations not send out Trembling, open out exhaustor is without least bit carbon mark in the detection of test paper, and power performance is good.
CN201610000651.XA 2013-11-25 2013-11-25 The idling foaming tube processing method that transition has some setbacks Active CN105499903B (en)

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CN201610000651.XA Active CN105499903B (en) 2013-11-25 2013-11-25 The idling foaming tube processing method that transition has some setbacks
CN201610000335.2A Pending CN105537850A (en) 2013-11-25 2013-11-25 C100 idling unsmooth transition processing method
CN201610000337.1A Pending CN105563005A (en) 2013-11-25 2013-11-25 Handling method for unsmooth idling transition of CG150 engine
CN201610000338.6A Active CN105563006B (en) 2013-11-25 2013-11-25 The processing method that CG125 bar transfer has some setbacks

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CN201610000338.6A Active CN105563006B (en) 2013-11-25 2013-11-25 The processing method that CG125 bar transfer has some setbacks

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Publication number Priority date Publication date Assignee Title
CN103624476B (en) * 2013-11-25 2016-02-17 庄景阳 The idling foaming tube processing method that transition has some setbacks
CN104214011A (en) * 2014-08-25 2014-12-17 庄景阳 Repair method for lifting power of motorcycle engine
CN105834928A (en) * 2014-09-19 2016-08-10 泉州市中研智能机电研究院有限公司 Operating tool for power lifting of carburetor

Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101498257B (en) * 2008-09-26 2011-01-12 庄景阳 Fuel saving maintenance method for carburettor
CN103624476B (en) * 2013-11-25 2016-02-17 庄景阳 The idling foaming tube processing method that transition has some setbacks

Family Cites Families (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4913855A (en) * 1988-02-29 1990-04-03 Custom Chrome, Inc. Carburetor usable with motorcycle engine
JPH09158782A (en) * 1995-12-06 1997-06-17 Mikuni Corp Starting device of carburetor for motorcycle
CN2329776Y (en) * 1998-02-25 1999-07-21 天津华博罗工业有限公司 Single-chamber horizontal sucking plunger-type carburetor
CN2367779Y (en) * 1999-02-04 2000-03-08 南京金城机械有限公司 Fuel regulator of engine of motorcycle
CN2394015Y (en) * 1999-10-26 2000-08-30 王品强 Adjustable air jet of carburettor
CN2937520Y (en) * 2006-08-11 2007-08-22 三阳工业股份有限公司 Engine air inlet control mechanism
CN101585130B (en) * 2009-07-17 2010-07-28 南安市柳城高捷图文设计工作室 Fuel-economizing maintenance tool of carburetor
CN201448165U (en) * 2009-07-22 2010-05-05 史毅 Motorcycle carburetor
CN102848129A (en) * 2012-09-06 2013-01-02 庄景阳 Oil-saving maintenance method for foaming pipe of carburetor

Patent Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101498257B (en) * 2008-09-26 2011-01-12 庄景阳 Fuel saving maintenance method for carburettor
CN103624476B (en) * 2013-11-25 2016-02-17 庄景阳 The idling foaming tube processing method that transition has some setbacks

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CN105563006B (en) 2016-08-31
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