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One-component silane-modified polyether sealant for rapid assembly of automobile glass and preparation method thereof

A technology of silane-modified polyether and automotive glass, which is used in polyether adhesives, adhesives, non-polymer adhesive additives, etc. Problems such as poor convenience and waste of processing time can achieve the effect of improving production and assembly efficiency, saving on-site operation time, and fast bonding and positioning.

Active Publication Date: 2021-07-30
GUANGZHOU JOINTAS CHEM
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] In order to achieve rapid assembly at the construction site of the vehicle factory, two-component technology is mainly used to improve the curing speed of the product at this stage. Unlike the single-component curing mode from the outside to the inside, the two-component sealant can achieve Curing at the same time, so it has a great advantage in fast curing. However, compared with the operation of one-component, the construction operation of two-component adhesives at the construction site of the vehicle factory is complicated, and the skill requirements for operators are very high. If Failure to meet the technical requirements will lead to poor operation convenience, often a lot of processing time will be wasted in the pre-processing
[0005] The initial bonding strength (4h bonding strength) of the further evolved one-component silane-modified polyether sealant is not high enough in practical applications.

Method used

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  • One-component silane-modified polyether sealant for rapid assembly of automobile glass and preparation method thereof
  • One-component silane-modified polyether sealant for rapid assembly of automobile glass and preparation method thereof
  • One-component silane-modified polyether sealant for rapid assembly of automobile glass and preparation method thereof

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0044] The parts by weight ratio of the components of Example 1 is shown in Table 1:

[0045] Table 1

[0046]

[0047] Preparation

[0048] (1) dry nano-calcium carbonate and high specific surface carbon black at 120 ℃ for 3 hours, and set aside;

[0049] (2) Add S303H, SAX530, phenyl alkylsulfonate, polyamide wax, nano-calcium carbonate, high specific carbon black and vinyltrimethoxysilane with a mass fraction of 20% in sequence to the planetary kettle, and disperse at high speed for 30 minutes~ 40min; then stir for 20min~30min under the condition of vacuum degree of -0.09MPa~-0.1MPa;

[0050] (3) Add Tinuvin 326, Tinuvin 770, Irganox 1010, ethyl orthosilicate, 80% by mass of vinyltrimethoxysilane and dibutyltin bis(acetylacetonate) are mixed evenly, stirred for 20min to 40min under the condition of vacuum degree of -0.09MPa~-0.1MPa, and then discharged.

Embodiment 2

[0052] The parts by weight ratio of the components of Example 2 is shown in Table 2:

[0053] Table 2

[0054]

[0055] Preparation

[0056] (1) dry nano-calcium carbonate and high specific surface carbon black at 120 ℃ for 3 hours, and set aside;

[0057] (2) Add SAX400, SAX580, phenyl alkylsulfonate, polyamide wax, nano-calcium carbonate, high specific carbon black and vinyltrimethoxysilane with a mass fraction of 20% in sequence to the planetary kettle, and disperse at a high speed for 30 minutes~ 40min; then stir for 20min~30min under the condition of vacuum degree of -0.09MPa~-0.1MPa;

[0058] (3) Add Tinuvin 326, Tinuvin 770, Irganox 1010, ethyl orthosilicate, N-β-(aminoethyl)-γ-aminopropylmethyldimethoxysilane, γ-glycidyl ether oxypropyl Trimethoxysilane, 80% by mass of vinyltrimethoxysilane and dibutyltin bis(acetylacetonate) were mixed uniformly, and stirred for 20min to 40min under the condition of vacuum degree of -0.09MPa~-0.1MPa, Ready to go.

Embodiment 3

[0060] The parts by weight ratio of the components of embodiment 3 is as follows in table 3:

[0061] table 3

[0062]

[0063] Preparation

[0064] (1) dry nano-calcium carbonate and high specific surface carbon black at 120 ℃ for 3 hours, and set aside;

[0065] (2) Add SAX400, SAX580, cyclohexane 1,2-diisononyl dicarboxylate, polyamide wax, nano-calcium carbonate, high specific carbon black and 20% vinyl trimethoxy in the planetary kettle in sequence Base silane, disperse at high speed for 30min~40min; then stir for 20min~30min under the condition of vacuum degree of -0.09MPa~-0.1MPa;

[0066] (3) Add Tinuvin 326, Tinuvin 770, Irganox 1010, ethyl orthosilicate, 80% by mass of vinyltrimethoxysilane and dibutyltin bis(acetylacetonate) are mixed evenly, stirred for 20min to 40min under the condition of vacuum degree of -0.09MPa~-0.1MPa, and then discharged.

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Abstract

The invention discloses a one-component silane-modified polyether sealant for rapid assembly of automobile glass, which comprises the following components in parts by weight: 30-60 parts of silane-modified polyether resin; 8-30 parts of environment-friendly plasticizer; filler 10~15; reinforcing material 10~30; thixotropic agent 0.1~1; ultraviolet absorber 0.1~1; light stabilizer 0.1~1; antioxidant 0.2~2; water remover 0.2~2; ~10; coupling agent 0.1~5; catalyst 0.1~2. The invention also discloses its preparation method. The product obtained in the present invention ensures sufficient bonding strength of the sealant, and at the same time improves the initial bonding strength of the one-component silane-modified polyether sealant, has the properties of fast bonding speed, safety and environmental protection, and excellent bonding effect, and is suitable for passenger use The rapid assembly process of windshield glass, sunroof and side window glass of vehicles, logistics vehicles, fire trucks and other vehicles.

Description

technical field [0001] The invention belongs to the field of automobile sealants, and in particular relates to a one-component silane-modified polyether sealant for rapid assembly of automobile glass and a preparation method thereof. Background technique [0002] With the improvement of automobile manufacturing technology level, the adoption of new materials and new technologies, and the improvement of customers' requirements for automobile economy and comfort, new varieties and new processes of sealants are more and more widely used in automobiles, and are used in shockproof , heat insulation, anti-corrosion, anti-rust, anti-leakage, reduce noise, reduce self-weight, improve the comfort and safety of the car, etc. have this special effect. In order to improve the safety of the car, ensure the safety of the occupants, and prevent the occupants from being injured due to the poor assembly of the window glass during sudden braking or collision during high-speed driving, the dir...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): C09J171/00C09J11/04C09J11/06
CPCC08K2003/265C08K2201/011C08L2205/025C08L2205/03C09J11/04C09J11/06C09J171/00C08L71/00C08K13/02C08K3/26C08K3/04C08K5/5425
Inventor 杨海兵李义博郑品石正金
Owner GUANGZHOU JOINTAS CHEM
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