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Adhesive for wood-based panels, preparation method thereof, and plywood using the same

A technology for adhesives and wood-based panels, applied in the preparation of adhesives, animal glue or gelatin, adhesive types, etc., can solve problems such as increased product costs, reduced bonding strength, and reduced production efficiency, so as to achieve comprehensive utilization of resources and ensure bonding Strength, the effect of meeting the requirements of water resistance

Active Publication Date: 2016-04-20
SCHOLAR HOME SHANGHAI NEW MATERIAL CO LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, these technologies have many disadvantages
For example: 1) Although the use of a low molar ratio modified urea-formaldehyde resin adhesive can effectively reduce the formaldehyde emission of wood-based panel products, the bonding strength of the product is often reduced, which cannot meet the requirements of use; and the curing time is prolonged and the production efficiency is reduced; 2) Adding formaldehyde scavenger to urea-formaldehyde resin adhesives for wood-based panels can effectively reduce the release of free formaldehyde from wood-based panels, but it often also reduces the bonding strength of wood-based panels; at the same time, the price of general formaldehyde scavenger is often much higher than that of urea-formaldehyde resin adhesives. , its addition increases product cost and reduces product competitiveness; 3) Carry out post-processing to wood-based panels, such as the invention patent application with publication number CN1526528 (public date: September 8, 2004) discloses a method using The manufacturing process of E1 / EO grade environment-friendly wood-based panels prepared by ammonia vacuum method; the utility model patent with publication number CN2394770 (public date: September 6, 2000) discloses a treatment device for reducing formaldehyde emission from wood-based panels ; These post-processing methods not only make the manufacturing process of wood-based panels complicated, but also require huge investment in post-processing equipment and significantly increase production costs; The production process is more difficult, which is difficult for both enterprises and users to accept; moreover, there may still be problems in the disposal of its glued products (for example, poisonous gas hydrogen cyanide may be produced during incineration); Low bonding strength of boards, wood-based boards are easy to open glue
In summary, although the above technical means can effectively reduce the release of free formaldehyde from wood-based panels, they cannot completely solve the problem of formaldehyde release, or cannot be popularized due to reasons such as high production costs.
[0005] In addition, the currently widely used wood-based panel adhesives also have the problem of dependence on fossil resources of raw materials, which do not meet the requirements of sustainable development

Method used

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  • Adhesive for wood-based panels, preparation method thereof, and plywood using the same
  • Adhesive for wood-based panels, preparation method thereof, and plywood using the same
  • Adhesive for wood-based panels, preparation method thereof, and plywood using the same

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0051] 1) Prepare materials according to the following weight:

[0052] Softened water 70kg

[0053] Sodium carbonate 1kg

[0054] Defatted Soy Protein Powder 28kg

[0055] Furfuryl alcohol furfural type furan resin 1kg;

[0056] 2) Add sodium carbonate and defatted soybean protein powder into demineralized water in a reaction kettle equipped with a stirrer, thermometer and condensing device, and stir evenly;

[0057] 3) Heat the obtained mixture of sodium carbonate, defatted soybean protein powder and demineralized water to 45-47°C and keep it warm for 3 hours;

[0058] 4) Cool down the mixture obtained in the previous step to 30°C to obtain a uniform soy protein mucus;

[0059] 5) Add furfuryl alcohol furfural furan resin to the soy protein mucus obtained in the previous step, and stir evenly to make a soy protein adhesive for wood-based panels.

[0060] The performance and quality indicators of the obtained adhesive are shown in Table 1.

Embodiment 2

[0062] 1) Prepare materials according to the following weight:

[0063] Demineralized water 65kg

[0064] Sodium carbonate 2kg

[0065] Defatted Soy Protein Powder 30kg

[0066] Furfuryl alcohol furfural type furan resin 3kg;

[0067] 2) Add sodium carbonate and defatted soybean protein powder into demineralized water in a reaction kettle equipped with a stirrer, thermometer and condensing device, and stir evenly;

[0068] 3) Heat the obtained mixture of sodium carbonate, defatted soybean protein powder and demineralized water to 40-42°C and keep it warm for 6 hours;

[0069] 4) Cool down the mixture obtained in the previous step to 30°C to obtain a uniform soy protein mucus;

[0070] 5) Add furfuryl alcohol furfural furan resin to the soy protein mucus obtained in the previous step, and stir evenly to make a soy protein adhesive for wood-based panels.

[0071] The performance and quality indicators of the obtained adhesive are shown in Table 1.

Embodiment 3

[0073] 1) Prepare materials according to the following weight:

[0074] Demineralized water 64kg

[0075] Sodium carbonate 2kg

[0076] Defatted Soy Protein Powder 30kg

[0077] Furfuryl alcohol furfural type furan resin 4kg;

[0078] 2) Add sodium carbonate and defatted soybean protein powder into demineralized water in a reaction kettle equipped with a stirrer, thermometer and condensing device, and stir evenly;

[0079] 3) Heat the obtained mixture of sodium carbonate, defatted soybean protein powder and demineralized water to 68-70°C and keep it warm for 5 hours;

[0080] 4) Cool down the mixture obtained in the previous step to 30°C to obtain a uniform soy protein mucus;

[0081] 5) Add furfuryl alcohol furfural furan resin to the soy protein mucus obtained in the previous step, and stir evenly to make a soy protein adhesive for wood-based panels.

[0082] The performance and quality indicators of the obtained adhesive are shown in Table 1.

[0083] In Table 1, the ...

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Abstract

The invention relates to an adhesive for artificial boards and a preparation method thereof, and a plywood prepared from the adhesive. The adhesive for artificial boards is prepared from a dispersion medium, a protein substance, an alkaline compound and a crosslinking reinforcer, wherein the crosslinking reinforcer is a furfuryl alcohol-furfural furan resin. The adhesive for artificial boards is free of formaldehyde, is mainly prepared from renewable substances, and thus, is an environment-friendly adhesive for artificial boards; the adhesive provided by the invention thoroughly solves the problem of formaldehyde pollution when in use, and ensures water resistance, adhesion strength and other practical properties of the adhesive; compared with the prior art, the components have favorable synergetic effects, so that the effect is enhanced; the preparation method is simple, does not need very long curing time, is convenient to operate and has high production efficiency; and generally, the method comprehensively utilizes the resources, saves the production cost, conforms to the principles of environmental protection and sustainable development, and has favorable application prospects.

Description

technical field [0001] The invention relates to the field of chemical materials, in particular to an adhesive for wood-based panels, a preparation method thereof and a plywood using the adhesive. Background technique [0002] With the rapid development of construction, decoration, packaging and other industries, the output of wood-based panels in my country has increased rapidly. In 2012, the total output of wood-based panels in my country was 286 million square meters, accounting for about 50% of the world's total output. Among them, particleboard was 12.89 million square meters, a year-on-year increase of 7.2%; fiberboard was 55.54 million square meters, a year-on-year increase of 13.1%; plywood was 142 million square meters, a year-on-year increase of 18.3%. The total output of wood-based panels, plywood, furniture and wood flooring has ranked first in the world for many years. [0003] The adhesives commonly used in the production of wood-based panels are formaldehyde-...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): C09J189/00C09J161/00C09J11/04C08G16/02B32B7/12
Inventor 高强李建章张世锋周文瑞张伟陈惠
Owner SCHOLAR HOME SHANGHAI NEW MATERIAL CO LTD
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