CN103396901B - Foam type throttle cleaning aerosol - Google Patents

Foam type throttle cleaning aerosol Download PDF

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Publication number
CN103396901B
CN103396901B CN201310330131.1A CN201310330131A CN103396901B CN 103396901 B CN103396901 B CN 103396901B CN 201310330131 A CN201310330131 A CN 201310330131A CN 103396901 B CN103396901 B CN 103396901B
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agent
parts
oils
aerosol
acid
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CN103396901A (en
Inventor
家新发
程小蓉
黄超
尚军权
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GUANGDONG HAOSHUN OUDISI TECHNOLOGY Co.,Ltd.
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ZHAOQING ODIS INDUSTRY Co Ltd
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Abstract

The invention relates to a foam type throttle cleaning aerosol. The foam type throttle cleaning aerosol is prepared from the following components in percentage by weight: 3.0-10.0% of fuel composite additive, 30.0-50.0% of environment-friendly solvent, 20.0-40.0% of surfactant, 5.0-15.0% of foam stabilizer, 0.01-0.2% of fluorocarbon surfactant, 3.0-10.0% of foaming agent and 0.5-5.0% of corrosion inhibitor. The foam type throttle cleaning aerosol disclosed by the invention is produced by environment-friendly raw materials, is non-toxic and low in odor, and has no pollution to human bodies, environments and atmosphere; and the foaming agent and the foam stabilizer are added in the raw materials, and water does not need to be added at the same time, so that the excellent foamability is realized. The agent is slow in liquid flow, can stay at a dirt and carbon accumulation part for a long time, is easy to realize precise control of a cleaning part, effectively prevents cleaning liquid from entering an engine, and protects the engine from being damaged.

Description

A kind of foam type butterfly cleans aerosol
Technical field
The present invention relates to a kind of automobile cleaning agent, belong to aerosol research field, be specifically related to a kind of foam type Environment protection cleaning aerosol for electro jet car butterfly.
Background technology
Butterfly is important composition parts of charge flow rate control in fuel electron spraying system, its front is air filter, rear is intake manifold and engine cylinder-body, it is the throat of motor car engine, vehicle accelerates whether degree of cleaning flexible and butterfly are most important, the immediate cause of the faults such as vehicle idling shakiness, bad Acceleration, oil consumption increase, difficulty in starting is all inseparable with the cleaning degree of butterfly, while there are these faults, will check and clean butterfly.
Due to the domestic scavenger specially that does not meet electrospray throttle valve cleaning, the serviceman of automobile maintenance industry can only clean butterfly with carb cleaner, often cause that engine idle can fall, the fault such as excessive fuel consumption, butterfly clamping stagnation, cruise system are malfunctioning, the serious faults such as engine scuffing that cause.
To clean what adopt be common carb cleaner to the butterfly of general electro jet car in the past, though can clean air throttle, exist some defects as pungent odour greatly, not environmental protection, butterfly parts are corrosive etc.On market, there is subsequently special environment protection solvent-borne type butterfly clean-out system, more existing solvent-borne type butterfly clean-out systems, in the time cleaning, ejection electrodes is wayward, the position residence time that solvent cleans at need is short, cleaning performance is received certain influence, and there have partial solvent to enter engine combustion to be indoor, likely the normal operation of engine is produced to some disadvantageous effects.The patent of invention that is CN102363736A as application publication number provides a kind of butterfly clean-out system, and the component that it comprises and mass percent are: C8-C13 without aromatic ring alkane 60-80%, polar solvent 3-6%, synthetic base oil 3-6%, anti-wear agent 1-3%, metal protection agent 1-2%, polymer detergent-dispersant additive 0.04-0.08%, deodorization liquefied petroleum gas (LPG) 10-14%, carbonic acid gas 2-3%.This clean-out system decapacitation is rapidly and efficiently removed and is adhered to butterfly cavity, throttling valve, and the greasy filth at the positions such as uptake, dust, carbon distribution, can also suppress generation and the gathering of settling on these parts.Although this invention has overcome the defect that carb cleaner brings for cleaning butterfly.But it is wide that the clean-out system of this kind solvent type sprays while cleaning, agent liquid flows fast, short in the dirt carbon distribution position residence time, be difficult for accurately controlling and clean position, also have part scavenging solution to enter into engine interior, or be splashed to the butterfly that does not need the other hole of air throttle of cleaning and affect the normal work, particularly some special vehicles of butterfly and just should not use general butterfly clean-out system cleaning.
Summary of the invention
In view of above content, the present invention is necessary to provide a kind of environmental protection, smell is little and can accurately locate the foam type cleaning aerosol that cleans butterfly.
The technical solution used in the present invention is: provide a kind of foam type butterfly to clean aerosol, each component is made up of the composition of following weight proportion:
Wherein, fuel oil composite additive is a kind of recombiner, and each component is made up of the composition of following weight proportion:
Wherein, the ashless detergent dispersant described in fuel oil composite additive is one or more in PIBA, polyisobutene succinimide, polyetheramine.
Wherein, the permeate agent described in fuel oil composite additive is one or more in sulfo-succinic acid dioctyl sodium salt, disecoctylmaleate sodium sulfonate.
Wherein, the agent of carrying described in fuel oil composite additive is one or more in kerosene, No. 200 solvent oils.
Wherein, the lubricant described in fuel oil composite additive is one or more in No. 15 base oils, No. 32 base oils, 100SN base oil.
Wherein, the defoamer described in fuel oil composite additive is dimethyl silicone oil.
Wherein, the oxidation inhibitor described in fuel oil composite additive is one or more in tertiarybutylhydroquinone, butylated hydroxy anisole.
Further, described environmentally friendly solvent be limonene, turps, N-Methyl pyrrolidone (AMP), nylon acid dimethyl ester (DBE), without one or more in the petroleum solvent (D40, D60, D80) of aromatic ring hydrocarbon.
Further, described tensio-active agent is one or more in alkyl glucoside (APG), methyl glucamine (APA), Fatty acid methyl ester sodium sulfonate (MES), tea saponin, rosin polyoxyethylene ester (RPGC).
Further, described suds-stabilizing agent is one or more in silicone resin polyethers emulsion suds-stabilizing agent (MPS), cocoanut fatty acid diethanolamide (6501), Brij 35 sulfuric ester sodium salt (AES), n-dodecanol, laurylamide, lauric acid, polysaccharide acid, Stearyl Amine, trolamine, fatty acid diethanolamine, oxidation of alkyl dimethyl amine (OA).
Further, described fluorocarbon surfactant is one or more in betaine type amphoteric surfac-tant, non-ion fluorin carbon surface active agent, negatively charged ion fluorocarbon surfactant.
Further, described pore forming material is one or more in pentane, iso-pentane, sherwood oil (30~60 DEG C), pine camphor oil, sodium lauryl sulphate.
Further, described inhibiter is one or more in sodium lauroyl sareosine (LS-30), dodecenylsuccinic acid (T746), KORANTIN SH-stearylamine salt (T711), benzotriazole (T601), triethanolamine oleate.
In component of the present invention, do not need to add water, thereby kept good whipability.
The present invention is after ejection agent liquid, and agent liquid continues foaming and intumescing, has both had post-foaming.
The making method that above-mentioned foam type butterfly cleans aerosol is as follows:
Step 1 adds environmentally friendly solvent in reactor;
Step 2, under normal temperature and pressure whipped state, adds environmentally friendly solvent, fuel oil composite additive, tensio-active agent, suds-stabilizing agent, fluorocarbon surfactant, pore forming material and inhibiter successively, and stirring at room temperature is fully uniformly dispersed it in 30 minutes, filters, and obtains feed liquid;
Step 3, is filled into inhalator jar by the weight proportion of feed liquid: propelling agent=4:1 with filling aerosol equipment, and adapted universal valve, gets product.
Compared to prior art, the present invention adopts environmental protection raw material to make, and nontoxic, low taste is pollution-free to human body, environment and atmosphere, adds pore forming material and suds-stabilizing agent in raw material, also does not need to add water simultaneously, has good whipability.This agent liquid flows slow, can stop at dirt carbon distribution position for a long time, also easily accurately controls and cleans position, effectively prevents that scavenging solution from entering into engine interior, and protection engine is not damaged.Meanwhile, the present invention coordinates universal valve to use, and can make this product all can normally spray foam in various orientation, is convenient to repairman and uses in narrow space.
Embodiment
Further illustrate composition, the preparation method of foam type butterfly cleaning aerosol of the present invention below in conjunction with embodiment.Specific embodiment is for further describing the present invention, non-limiting protection scope of the present invention.In embodiment, composition all adopts weight percent.
Foam type butterfly of the present invention cleans aerosol moiety and is made up of fuel oil composite additive, environmentally friendly solvent, tensio-active agent, suds-stabilizing agent, fluorocarbon surfactant, pore forming material and inhibiter, each component is prepared according to following weight ratio: fuel oil composite additive 3.0~10.0%, environmentally friendly solvent 30.0~50.0%, tensio-active agent 20.0~40.0%, suds-stabilizing agent 5.0~15.0%, fluorocarbon surfactant 0.01~0.2%, pore forming material 3.0~10.0%, inhibiter 0.5~5.0%.
Described tensio-active agent is one or more in alkyl glucoside (APG), methyl glucamine (APA), Fatty acid methyl ester sodium sulfonate (MES), tea saponin, rosin polyoxyethylene ester (RPGC).
Described suds-stabilizing agent is one or more in silicone resin polyethers emulsion suds-stabilizing agent (MPS), cocoanut fatty acid diethanolamide (6501), Brij 35 sulfuric ester sodium salt (AES), n-dodecanol, laurylamide, lauric acid, polysaccharide acid, Stearyl Amine, trolamine, fatty acid diethanolamine, oxidation of alkyl dimethyl amine (OA).
Described fluorocarbon surfactant is one or more in betaine type amphoteric surfac-tant, non-ion fluorin carbon surface active agent, negatively charged ion fluorocarbon surfactant.
Described pore forming material is one or more in pentane, iso-pentane, sherwood oil (30~60 DEG C), pine camphor oil, sodium lauryl sulphate.
Described inhibiter is one or more in sodium lauroyl sareosine (LS-30), dodecenylsuccinic acid (T746), KORANTIN SH-stearylamine salt (T711), benzotriazole (T601), triethanolamine oleate.
Fuel oil composite additive is a kind of recombiner, and each component is made up of the composition of following weight proportion:
Ashless detergent dispersant described in fuel oil composite additive is one or more in PIBA, polyisobutene succinimide, polyetheramine.
Permeate agent described in fuel oil composite additive is one or more in sulfo-succinic acid dioctyl sodium salt, disecoctylmaleate sodium sulfonate.
The described agent of carrying is one or more in kerosene, No. 200 solvent oils.
Lubricant described in described fuel oil composite additive is one or more in No. 15 base oils, No. 32 base oils, 100SN base oil.
Described No. 15 base oils, No. 32 base oils, 100SN base oils are common neutral mineral oil, on market, all can buy.
Defoamer described in fuel oil composite additive is dimethyl silicone oil.
Oxidation inhibitor described in fuel oil composite additive is one or more in tertiarybutylhydroquinone, butylated hydroxy anisole.
Embodiment is as follows for fuel oil composite additive:
In reactor, add and carry agent kerosene 25g, under agitation, add successively polyisobutene succinimide 25g, PIBA 30g, sulfo-succinic acid dioctyl sodium salt 5g, No. 15 base oil 13g, dimethyl silicone oil 0.1g, butylated hydroxy anisole 2g, mixes, and both filters and obtains.
Described environmentally friendly solvent is limonene, turps, N-Methyl pyrrolidone (AMP), nylon acid dimethyl ester (DBE), without one or more in the petroleum solvent (D40, D60, D80) of aromatic ring hydrocarbon.
Foam type butterfly of the present invention cleans the preparation method of aerosol, and the method comprises the following steps:
Step 1 adds environmentally friendly solvent in reactor;
Step 2, under normal temperature and pressure whipped state, adds, fuel oil composite additive, tensio-active agent, suds-stabilizing agent, fluorocarbon surfactant, pore forming material and inhibiter successively, and stirring at room temperature is fully uniformly dispersed it in 30 minutes, filters, and obtains feed liquid;
Step 3, is filled into inhalator jar by the weight proportion of feed liquid: propelling agent=4:1 with filling aerosol equipment, and adapted universal valve, gets product.
Embodiment 1
In reactor, add 40 parts of limonene, 10 points of deodorized kerosines (D80), under agitation, add successively 7.0 parts of fuel oil composite additives (LZ9040), 25 parts of alkyl glucosides (APG), (6501) 4.0 parts of cocoanut fatty acid diethanolamides, 1.0 parts of silicone resin polyethers emulsion suds-stabilizing agents (MPS), 5.0 parts of trolamines, 0.1 part of non-ion fluorin carbon surface active agent, 6.0 parts of sherwood oils (30~60 DEG C), 3.0 parts of pine camphor oils, 1.0 parts of dodecenylsuccinic acids (T746), 3.0 parts of KORANTIN SH-stearylamine salt (T711), stirring is fully uniformly dispersed it in 30 minutes, filter, obtain feed liquid.Be filled into inhalator jar by the weight proportion of feed liquid: propelling agent=80:20 with professional filling aerosol equipment, and adapted universal valve, get product.
Embodiment 2
In reactor, add 30 parts of limonene, 15 points of deodorized kerosines (D80), under agitation, add successively 5.0 parts of fuel oil composite additives (LZ9049), 28 parts of methyl glucamines (APA), 5.0 parts of cocoanut fatty acid diethanolamides (MES), 1.5 parts of silicone resin polyethers emulsion suds-stabilizing agents (MPS), 4.9 parts of trolamines, 0.1 part of negatively charged ion fluorocarbon surfactant, 5.0 parts of Skellysolve As, 2.5 parts of pine camphor oils, 0.5 part of dodecenylsuccinic acid (T746), 2.5 parts of KORANTIN SH-stearylamine salt (T711), stirring is fully uniformly dispersed it in 30 minutes, filter, obtain feed liquid.Be filled into inhalator jar by the weight proportion of feed liquid: propelling agent=80:20 with professional filling aerosol equipment, and adapted universal valve, get product.
Embodiment 3
In reactor, add 20 parts of limonene, 25 points of nylon acid dimethyl ester (DBE), under agitation, add successively 5.0 parts of fuel oil composite additives (H6403), 18 parts of rosin polyoxyethylene ester (RPGC), 7.0 parts of cocoanut fatty acid diethanolamides (MES), 3.0 parts of pine camphor oils, 4.9 parts of trolamines, 3.0 parts of Brij 35 sulfuric ester sodium salts (AES), 0.1 part of betaine type amphoteric fluorocarbon surfactant, 4.0 parts of Skellysolve As, 3.0 parts of iso-pentane, 3.0 parts of pine camphor oils, 2.5 parts of sodium lauroyl sareosines (LS-30), 0.5 part of benzotriazole (T601), stirring is fully uniformly dispersed it in 30 minutes, filter, obtain feed liquid.Be filled into inhalator jar by the weight proportion of feed liquid: propelling agent=80:20 with professional filling aerosol equipment, and adapted universal valve, get product.
Embodiment 4
In reactor, add 25 parts, tasteless turps, 16 parts of N-Methyl pyrrolidone (AMP), under agitation, add successively 6.0 parts of fuel oil composite additives (Hitec4656), 22 parts of alkyl glucosides (APG), 8.0 parts of cocoanut fatty acid diethanolamides (MES), 3.0 parts of pine camphor oils, 4.9 parts of trolamines, (6501) 5.0 parts of cocoanut fatty acid diethanolamides, 0.1 part of non-ion fluorin carbon surface active agent, 5.0 parts of sherwood oils (30~60 DEG C), 4.5 parts of sodium lauroyl sareosines (LS-30), 0.5 part of benzotriazole (T601), stirring is fully uniformly dispersed it in 30 minutes, filter, obtain feed liquid.Be filled into inhalator jar by the weight proportion of feed liquid: propelling agent=80:20 with professional filling aerosol equipment, and adapted universal valve, get product.
Embodiment 5
In reactor, add 20 parts, tasteless turps, 20 parts of limonene, under agitation, add successively 4.0 parts of fuel oil composite additives (Hitec6403), 20 parts of alkyl glucosides (APG), 10.0 parts of cocoanut fatty acid diethanolamides (MES), 2.0 parts of lauryl alcohols, 4.9 parts of trolamines, (6501) 5.0 parts of cocoanut fatty acid diethanolamides, 0.1 part of non-ion fluorin carbon surface active agent, 5.0 parts of sherwood oils (30~60 DEG C), 4.5 parts of sodium lauroyl sareosines (LS-30), 0.5 part of KORANTIN SH-stearylamine salt (T711), stirring is fully uniformly dispersed it in 30 minutes, filter, obtain feed liquid.Be filled into inhalator jar by the weight proportion of feed liquid: propelling agent=80:20 with professional filling aerosol equipment, and adapted universal valve, get product.
Embodiment 6
In reactor, add 22 parts of nylon acid dimethyl ester (DBE), 18 parts of N-Methyl pyrrolidone (AMP), under agitation, add successively 3.0 parts of fuel oil composite additives (Hitec4656), 10 parts of alkyl glucosides (APG), 25.0 parts of cocoanut fatty acid diethanolamides (MES), 2.0 parts of lauryl alcohols, 4.9 parts of trolamines, (6501) 5.0 parts of cocoanut fatty acid diethanolamides, 0.1 part of non-ion fluorin carbon surface active agent, 5.0 parts of isohexanes, 2.0 parts of triethanolamine oleates, 3.0 parts of KORANTIN SH-stearylamine salt (T711), stirring is fully uniformly dispersed it in 30 minutes, filter, obtain feed liquid.Be filled into inhalator jar by the weight proportion of feed liquid: propelling agent=80:20 with professional filling aerosol equipment, and adapted universal valve, get product.
Described foam type butterfly in example of the present invention cleans aerosol, selects arbitrarily a kind of foam type butterfly to clean aerosol and makes test sample, and technical indicator is as shown in table 1:
Table 1, arbitrary cleaning aerosol Performance Detection table making in embodiment 1-5:
From table 1 Performance Detection, foam type butterfly of the present invention cleans nontoxic, the low taste of aerosol, pollution-free to human body, environment and atmosphere, stable performance, cleaning performance is good, and foam type butterfly of the present invention cleaning aerosol is easy to use, simple to operate, adopt foam type agent liquid to flow slow, easily accurately control and clean position, can effectively reduce the infringement to engine.
The foregoing is only embodiments of the invention; not thereby limit the scope of the claims of the present invention; every equivalent structure or conversion of equivalent flow process that utilizes description of the present invention to do; or be directly or indirectly used in other relevant technical fields, be all in like manner included in scope of patent protection of the present invention.

Claims (2)

1. foam type butterfly cleans an aerosol, it is characterized in that: the component by following weight proportion forms:
Described environmentally friendly solvent be limonene, turps, N ?methyl-2-pyrrolidone, nylon acid dimethyl ester, without one or more in the petroleum solvent of aromatic ring hydrocarbon;
Described tensio-active agent is one or more in alkyl glucoside, methyl glucamine, Fatty acid methyl ester sodium sulfonate, tea saponin, rosin polyoxyethylene ester;
Described suds-stabilizing agent is one or more in silicone resin polyethers emulsion suds-stabilizing agent, cocoanut fatty acid diethanolamide, Brij 35 sulfuric ester sodium salt, n-dodecanol, laurylamide, lauric acid, polysaccharide acid, Stearyl Amine, trolamine, fatty acid diethanolamine, oxidation of alkyl dimethyl amine;
Described fluorocarbon surfactant is one or more in betaine type amphoteric surfac-tant, non-ion fluorin carbon surface active agent, negatively charged ion fluorocarbon surfactant;
Described pore forming material is one or more in pentane, iso-pentane, 30~60 DEG C of sherwood oils, pine camphor oil, sodium lauryl sulphate;
Described inhibiter be sodium lauroyl sareosine, dodecenylsuccinic acid, N ?You acyl Ji An Suan ?one or more in stearylamine salt, benzotriazole, triethanolamine oleate;
Wherein, described fuel oil composite additive is prepared according to following weight ratio by each component:
Wherein,
Described ashless detergent dispersant is one or more in PIBA, polyisobutene succinimide, polyetheramine;
Described permeate agent is one or more in sulfo-succinic acid dioctyl sodium salt, disecoctylmaleate sodium sulfonate;
The described agent of carrying is one or more in kerosene, No. 200 solvent oils;
Described lubricant is one or more in No. 15 base oils, No. 32 base oils, 100SN base oil;
Described defoamer is dimethyl silicone oil;
Described oxidation inhibitor is one or more in tertiarybutylhydroquinone, butylated hydroxy anisole.
2. a fuel oil composite additive, each component is prepared according to following weight ratio:
Wherein, the described agent of carrying is one or more in kerosene, No. 200 solvent oils;
Described lubricant is one or more in No. 15 base oils, No. 32 base oils, 100SN base oil;
Described ashless detergent dispersant is one or more in PIBA, polyisobutene succinimide, polyetheramine;
Described permeate agent is one or more in sulfo-succinic acid dioctyl sodium salt, disecoctylmaleate sodium sulfonate;
Described defoamer is dimethyl silicone oil;
Described oxidation inhibitor is one or more in tertiarybutylhydroquinone, butylated hydroxy anisole.
CN201310330131.1A 2013-07-31 2013-07-31 Foam type throttle cleaning aerosol Active CN103396901B (en)

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