One-pack room temperature-curable sealant composition for...

Synthetic resins or natural rubbers -- part of the class 520 ser – Synthetic resins – At least one aryl ring which is part of a fused or bridged...

Reexamination Certificate

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C524S430000, C524S588000, C528S034000, C528S038000

Reexamination Certificate

active

06713546

ABSTRACT:

BACKGROUND OF THE INVENTION
1. Field of the Invention
The present invention relates to a one-pack room temperature-curable sealant composition for automobile, and particularly, to a one-pack room temperature-curable liquid gasket (FIPG) manifesting an excellent adhesive property not only for automobile members or parts made of cast iron and aluminum widely used conventionally but also for automobile members made of magnesium alloy paid to attention recently, and having excellent durability against engine oils, gear oils, automatic transmission oils, long life coolants and the like.
2. Description of the Related Art
Conventionally, most of materials of automobile metal members are made of cast iron, aluminum and the like, and since an adhesive property to the metals is sufficiently obtained even if conventional automobile sealants are used, there was no problem in adhesion and sealing property.
However, recently, a magnesium alloy of which weight is about two third of aluminum is paid to attention as an automobile member. As members already investigated and put into practical use, examples thereof around body include sheet frames, instrument panels, door handles, window motor housings, radio amplifier housings, mirror brackets, head light retainers, sheet belt parts, sun roof frames, wind shield arms, convertible top frames, name plates and the like, examples thereof around engine include cylinder head covers, oil pump housings, oil filter adapters, engine oil pans, intake manifolds, EGR system bulb covers, turbo charger parts, throttle bodies, starter housing and the like, examples thereof around driving system include clutch housings, MT housings, AT stators, AT side covers, AT housings, AT pistons and the like, and examples thereof around chassis include wheels, steering cores, steering cram parts, brake pedal brackets and the like.
In actual use of a magnesium alloy, conversion-coating treatments (chromic acid treatment, dichromic acid treatment, improved chromic acid treatment, ferric nitrate treatment, stannate treatment and the like) are performed depending on use to improve corrosion resistance, heat resistance and the like.
However, cost increases significantly since the conversion-coating treatment is complicated, and practical use of a magnesium alloy without any surface treatment is increasing recently.
In magnesium alloy members on which surface treatment has been performed, by using a conventional liquid gasket (FIPG), for example, Three Bond 1216E, 1217F, 1280E and the like (manufactured by Three Bond Co. Ltd.), an adhesive property sufficient for coagulation fracture (CF) is obtained, and use as a present commodity is possible, causing no problem. However, in magnesium alloy members on which surface treatment has not been performed, a sufficient adhesive property is not obtained, leading to interface fracture (AF). When a sufficient adhesive property is not obtained in a liquid gasket, a possibility of surface contact leakage due to vibration, impact and the like during driving is high, therefore, it is necessary to obtain a satisfactory adhesive causing not interface fracture but coagulation fracture.
In obtaining a sufficient adhesive property (coagulation fracture) to a magnesium alloy material (which has not substantially been subjected to surface treatment), improvement is known to be possible by using means such as surface UV washing, metal primer and the like, however, such means are very inefficient from the standpoints of use of materials, increase in step number, environmental problems and the like.
SUMMARY OF THE INVENTION
The main object of the present invention is to provide a one-pack room temperature-curable sealant composition, namely, liquid gasket (FIPG), manifesting an excellent adhesive property and a chemical resistance also for an automobile magnesium alloy material single body, and being able to be used also for cast iron and aluminum members and the like conventionally used.
The one-pack room temperature-curable liquid gasket for automobile of the present invention is composed of a composition comprising
(A) an organopolysiloxane which both ends of the molecular chain are each blocked by a hydroxyl group and the viscosity at 25° C. is from 30000 to 70000 mPa·s,
(B) a cross-linking agent,
(C) zinc carbonate and/or zinc oxide,
(D) tabular alumina having an average particle size of 5 &mgr;m or less, and
(E) a silane coupling agent of the following general formula (1):
(wherein R
1
, R
2
and R
3
represent each independently a divalent hydrocarbon group having 1 to 3 carbon atoms, and Me represents a methyl group.).
DESCRIPTION OF THE PREFERRED EMBODIMENTS
In the present invention, the component (A) is a main component constituting the sealant composition of the present invention wherein both ends of the molecular chain are each blocked by a hydroxyl group and the viscosity at 25° C. is from 30000 to 70000 mPa·s. The organic group bonded to siloxane silicon is preferably a lower alkyl group having 1 to 4 carbon atoms or a phenyl group, and particularly preferably a methyl group. When the viscosity is 30000 mPa·s or less, the resulting rubber shows too high modulus, leading to decrease in adhesion to a magnesium alloy, and when over 70000 mPa·s, the composition shows too high viscosity, being not practical.
The component (B) is a cross-linking component in the composition of the present invention, and preferably a silane of the general formula (3):
R
4
4-n
SiXn
(wherein R
4
is not present or represents a monovalent hydrocarbon group, X represents a hydrolyzable group, and n represents 3 or 4.)
or a hydrolyzate thereof. When R
4
represents a monovalent hydrocarbon group in the general formula (3), examples thereof include preferably alkyl groups or alkenyl groups having 1 to 6 carbon atoms such as a methyl group, ethyl group, vinyl group and the like. Examples of the hydrolyzable group X include alkoxy groups such as a methoxy group, ethoxy group, propoxy group and the like, alkenyloxy groups such as an isopropenoxy group, 1-ethyl-2-methylvinyloxime group and the like, keto oxime groups such as a dimethyl keto oxime group, methyl ethyl keto oxime group and the like, acyloxy groups such as an acetoxy group, propionoxy group, butyloyloxy group, benzoyloxime group and the like, amino groups such as a dimethylamino group, diethylamino group and the like, aminoxy groups such as a dimethylaminoxy group, diethylaminoxy group and the like, and amide groups such as an N-methylacetamide group, N-ethylacetamide group, N-methylbenzamide group and the like.
Examples of the component (B) include ethyl silicate, propyl silicate, methyltrimethoxysilane, methylethoxysilane, vinyltrimethoxysilane, vinyltriethoxysilane, methyltris(methoxyethoxy)silane, vinyltris(methoxyethoxy)silane, methyltripropenoxysilane, methyltriacetoxysilane, vinyltriacetoxysilane, vinyltrimethylethyl keto oxime silane, methyltrimethylethyl keto oxime silane, methyltri(butanoxime)silane, vinyltri(butanoxime)silane, phenyltri(butanoxime)silane, propyltri(butanoxime)silane, tetra(butanoxime)silane, 3,3,3-trifluoropropyl(butanoxime)silane, 3-chloropropyl(butanoxime)silane, methyltri(propanoxime)silane, methyltri(butanoxime)silane, methyltri(isopentanoxime)silane, vinyl(cyclopentanoxime)silane, methyltri(cyclohexanoxime)silane and the like and partial hydrolyzates thereof. Particularly, vinyltrimethylethyl keto oximesilane, methyltrimethylethyl keto oxime silane or a mixture thereof is suitably used. The amount of the component (B) is usually from 6 to 10 parts by weight, preferably from 7 to 9 parts by weight based on 100 parts by weight of the component (A). When less than 6 parts by weight, the composition tends to be gelled in kneading, and when over 10 parts by weight, sufficient rubber physical property is not obtained, leading to fragile cured substance.
The component (C) is a filler composed of zinc carbonate and/or zinc oxide. This filler improves the chemical resistance of the composition, and by a synergic effect with other components, an adhesive property to a magnesium alloy

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