CN105150353A - Production method for damp-proof ceiling decoration density board - Google Patents

Production method for damp-proof ceiling decoration density board Download PDF

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Publication number
CN105150353A
CN105150353A CN201510459679.5A CN201510459679A CN105150353A CN 105150353 A CN105150353 A CN 105150353A CN 201510459679 A CN201510459679 A CN 201510459679A CN 105150353 A CN105150353 A CN 105150353A
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temperature
hot pressing
board
pressure
proof
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钱秀英
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Abstract

The invention provides a production method for a damp-proof ceiling decoration density board. The production method includes the steps that broken wood materials or broken gains such as various types of straw and nutshells which are generated after crops are harvested and damp-proof urea-formaldehyde resin adhesives are mixed and pressed into a board, and the board and melamine-soaked paper or aluminium oxide wear-resistant paper are pressed and attached at a high temperature to form the damp-proof ceiling decoration density board. Three times of cold pressing, three times of hot pressing and two times of heat dissipation regimens are adopted for board forming. The cold pressing temperature is the room temperature, the cold pressing pressure is 2.5 MPa, and the hot pressing pressure is 1.5-2.0 MPa. The temperature of the first time of hot pressing is 130-135 DEG C. The temperature of the second time of hot pressing is 125-130 DEG C. The temperature of the third time of hot pressing is 120-125 DEG C. The heat dissipation regiments are achieved by lowering the temperature of a constant temperature room to the room temperature through natural ventilation cooling, and the time ranges from 3 h to 4 h. The melamine-soaked paper or the aluminium oxide wear-resistant paper is attached to the surface of the board at a temperature of 150 DEG C and under the pressure of 1.5 MPa.

Description

The production method of moistureproof ceiling decoration density board
The divisional application that the application is the applying date is " on 08 28th, 2013 ", application number is " 201310380105X ", name is called the patent of invention of " production method of moistureproof decorative ceiling board ".
Technical field
The present invention relates to a kind of production method of wood-based plate, particularly the production method of the wood-based plate for the production of ceiling decoration material of humidity resistance excellence.
Background technology
The ornament materials of current smallpox mainly adopts plasterboard, it be a kind of lightweight, intensity is higher, thinner thickness, easy to process and sound insulation is adiabatic and the construction material of the better performances such as fire prevention, is one of novel light sheet material of current development emphatically.Along with country encourages to produce sawdust, wood shavings, bark, sanding powder, brush wood in the surplus thing of three in production of forestry, timber processing, bamboo processing and Wood-based Panel Production, all kinds of stalks, shuck etc. that crops produce after receiving are raw material production wood-based plate, increasing producer starts to attempt adopting woods, agricultural byproduct produces particieboard, density board, and the price of wood-based plate is more and more esthetically acceptable to the consumers.Therefore the ceiling decoration material adopting wood-based plate to make has progressed into the family of common people.The production method of particieboard and density board adopts adhesive to mix with fiber grain, is then pressed into sheet material.And the Main Ingredients and Appearance of adhesive is Lauxite, one of its raw materials for production are the formaldehyde of the title having " the stealthy killer of human health ".Often producing the adhesive that one cubic metre of particieboard and density board use is 100 ~ 400kg, even if the residual quantity of formaldehyde is 0.05mg/Kg in Lauxite, the formaldehyde that so every cubic metre of wood-based plate is residual is still at more than 5mg.Particieboard and density board poor water resistance, because producing expansive force difference, bow warping is out of shape after moisture absorption, and ceiling is the building structure being the most easily subject to moisture attack, therefore easily play drum, distortion after the ceiling decoration material that the particieboard adopted at present and density board are made makes moist, service life is short.
Summary of the invention
The object of this invention is to provide a kind of production method of density board, waterproof, the humidity resistance of wood-based plate can be improved by production method of the present invention, and can burst size of methanal be reduced, be very suitable for making ceiling decoration material.
Technical scheme of the present invention is: a kind of production method of moistureproof ceiling decoration density board, be that the particle such as all kinds of stalks, shuck produced after wood particulate or crops being received mixes with Moisture-proof urea-formaldehyde resin adhesive and is pressed into sheet material, then sheet material overlays with melamine impregnated paper or alundum (Al2O3) abrasion-proof paper high temperature and forms; Plate forming adopts colds pressing for three times and three hot pressing, twice heat radiation health; Described temperature of colding pressing is room temperature, and pressure is 2.5MPa, and hot pressing pressure is 1.5 ~ 2.0MPa; The temperature of first time hot pressing is 130 ~ 135 DEG C; The temperature of second time hot pressing is 125 ~ 130 DEG C, and the temperature of third time hot pressing is 120 ~ 125 DEG C; Described heat radiation health is that thermostatic chamber gravity-flow ventilation is cooled to room temperature, and the time is 3 ~ 4h; Plate surface pastes melamine impregnated paper or alundum (Al2O3) abrasion-proof paper is at 150 DEG C, and pressure is carry out under 1.5Mpa;
Described Moisture-proof urea-formaldehyde resin adhesive raw material and parts by weight comprise:
Lauxite 46;
Polyacrylate dispersion 10;
Dimethyl silicone polymer 0.6;
300 order precipitated calcium carbonates 30;
EVA latex 5;
Described Lauxite adopts following method to make: formaldehyde is disposable feeding intake, and urea divides and feeds intake for three times; The production of Lauxite is divided into prepolymerization, polymerization and later stage polymerization three phases, and later stage polymerization adds polyacrylate dispersion, dimethyl silicone polymer and EVA latex later, and add filler obtains moistureproof urea-formaldehyde resin adhesive to stirring reaction completely later.
Described polyacrylate dispersion is Guangzhou Qi Sheng Chemical Co., Ltd. model is the general pure-acrylic emulsion of M-862, it all adopts acrylate to be raw material, form through emulsion polymerisation, there is excellent water resistance and weatherability, as the raw material of adhesive together with Lauxite, the resistance to water of Lauxite can be improved, improve the humidity resistance of adhesive.
Described dimethyl silicone polymer is that Dow Corning Corporation produces, and model is the silicone oil of XIAMETER PMX-200, has high surfactant, as defoamer and levelling agent in adhesive, improves adhesive to the wetability of base material, strengthens adhesive strength.And due to dimethyl silicone polymer very hydrophobic, the waterproof of adhesive, humidity resistance can be improved.
Precipitated calcium carbonate can dilute the component of adhesive main component, reduces production cost, and because Lauxite component is diluted, the Lauxite that the wood-based plate of unit volume contains reduces, and can reduce burst size of methanal.And precipitated calcium carbonate can increase substantially polymeric material mechanical strength, dimensional stability and heat distortion temperature, the bonding strength improving adhesive and base material is played a key effect.
Described EVA latex is ethyl vinyl acetate ethylene copolymer emulsion, comes from Celanese Corp. and produces the EVA latex that the trade mark is Ateva.Compared with polyethylene, EVA owing to introducing VAM in strand, thus reduce high-crystallinity, improve pliability, impact resistance, filler intermiscibility and heat seal performance, the sealing of wood-based plate can be improved in the hot pressing production process of wood-based plate, improve waterproof, humidity resistance.
The good effect that the present invention produces:
1. the production of one of the raw material Lauxite of adhesive that the production method of moistureproof decorative ceiling board of the present invention uses adopts and once adds formaldehyde; add the technique of urea for three times; polymerization rate remains steady; avoid the generation of polymerisation gel effect; almost or complete reaction, gained Lauxite residual formaldehyde is low, and the adhesive burst size of methanal thus made is few for formaldehyde monomers; the residual formaldehyde of final wood-based plate is low, is conducive to the health of Protection of consumer.
2. the adhesive that the production method of moistureproof decorative ceiling board of the present invention uses adds polyacrylate dispersion, dimethyl silicone polymer and EVA latex on Lauxite, improve the resistance to water of Lauxite, the adhesive waterproof made, humidity resistance are good, the sealing property of wood-based plate can be improved, make moisture, that moisture is difficult to infiltrate wood-based plate is inner, improve the resistance to water of wood-based plate.
3. the production method of moistureproof decorative ceiling board of the present invention adopt cold pressing for three times, three hot pressing and twice heat radiation craft, at repeatedly cold, hot pressure and radiation processes, can the Form aldehyde release in wood-based plate out, and collect process by extract system, therefore the artificial board formaldehyde residual quantity finally obtained is low, and cold pressing for three times, three hot pressing and twice heat radiation craft make adhesive and fiber fit tighter, seal more comprehensively, the wood-based plate waterproof finally obtained, humidity resistance are better.
Detailed description of the invention
Embodiment 1
The production of Lauxite, comprises the steps: prepolymerisation stage: disposablely in polymerization reaction kettle add formalin, is 2 ~ 2.5, adds the urea of formalin weight 15%, be warming up to 46 DEG C, insulation reaction 60min by formic acid adjust ph.
Polymerization stage: prepolymerisation stage terminates, adds alkali and regulates the pH value of reactant liquor to be 8 ~ 8.5, add the urea of formalin weight 30%, add in 40 ~ 60min, then temperature reaction liquid to 88 ~ 92 DEG C, insulation reaction 90min.
Polymerization later stage: polymerization stage terminates, and adds the urea of formalin weight 30 ~ 40%, adds in 40 ~ 60min, then reduces reaction temperature to 70 ~ 85 DEG C, and reaction 60 ~ 90min, is cooled to room temperature, obtains Lauxite; The Lauxite obtained 46 parts, adds polyacrylate dispersion 10 parts under stirring, dimethyl silicone polymer 0.6 part and EVA latex 5 parts, after being uniformly mixed, add 30 parts of precipitated calcium carbonates, with three-roller type grinder grinding 30min, obtain Moisture-proof urea-formaldehyde resin adhesive.
Embodiment 2
1m3 sawdust adds the Moisture-proof urea-formaldehyde resin adhesive that 150kg embodiment 1 obtains, and stirs with mixer, puts into board mould, and by compressor compresses under normal temperature, pressure is 2.5Mpa; Then hot press is put into, at 130 ~ 135 DEG C, hot pressing under 1.5Mpa; Sheet material is put into thermostatic chamber gravity-flow ventilation cooling 3 ~ 4h, normal temperature compressed with compressor, pressure is 2.5Mpa; Put into hot press, second time hot pressing, temperature is 125 ~ 130 DEG C, and pressure is 1.5Mpa, sheet material is put into thermostatic chamber gravity-flow ventilation cooling 3 ~ 4h; Normal temperature compressed with compressor, pressure is 2.5Mpa; Put into hot press again, third time hot pressing, temperature is 120 ~ 120 DEG C, and pressure is 1.5Mpa; Then be warming up to 150 DEG C, sheet material double face pastes melamine impregnated paper at 1.5Mpa pressure lower surface, and air blast is cooled to room temperature, obtains moistureproof decorative ceiling board.
Embodiment 3
1m3 nut shell particle adds the Moisture-proof urea-formaldehyde resin adhesive that 180kg embodiment 1 obtains, and stirs with mixer, puts into board mould, and by compressor compresses under normal temperature, pressure is 2.5Mpa; Then hot press is put into, at 130 ~ 135 DEG C, hot pressing under 1.8Mpa; Sheet material is put into thermostatic chamber gravity-flow ventilation cooling 3 ~ 4h, normal temperature compressed with compressor, pressure is 2.5Mpa; Put into hot press, second time hot pressing, temperature is 125 ~ 130 DEG C, and pressure is 1.8Mpa, sheet material is put into thermostatic chamber gravity-flow ventilation cooling 3 ~ 4h; Normal temperature compressed with compressor, pressure is 2.5Mpa; Put into hot press again, third time hot pressing, temperature is 120 ~ 120 DEG C, and pressure is 1.8Mpa; Then be warming up to 150 DEG C, sheet material double face pastes alundum (Al2O3) abrasion-proof paper at 1.5Mpa pressure lower surface, and air blast is cooled to room temperature a, obtains moistureproof decorative ceiling board.
Embodiment 4
1m3 ramulus mori bits add the Moisture-proof urea-formaldehyde resin adhesive that 200kg embodiment 1 obtains, and stir, put into board mould with mixer, and by compressor compresses under normal temperature, pressure is 2.5Mpa; Then hot press is put into, at 130 ~ 135 DEG C, hot pressing under 2.0Mpa; Sheet material is put into thermostatic chamber gravity-flow ventilation cooling 3 ~ 4h, normal temperature compressed with compressor, pressure is 2.5Mpa; Put into hot press, second time hot pressing, temperature is 125 ~ 130 DEG C, and pressure is 2.0Mpa, sheet material is put into thermostatic chamber gravity-flow ventilation cooling 3 ~ 4h; Normal temperature compressed with compressor, pressure is 2.5Mpa; Put into hot press again, third time hot pressing, temperature is 120 ~ 120 DEG C, and pressure is 2.0Mpa; Then be warming up to 150 DEG C, sheet material double face pastes melamine impregnated paper at 1.5Mpa pressure lower surface, and air blast is cooled to room temperature, obtains moistureproof decorative ceiling board.
According to GB/T11718-2009 " medium density fibre board (MDF) ", thickness 9 ~ 13mm, carries out performance test to the wood-based plate in embodiment, and every testing result is as shown in the table:
It can be seen from the table, the production method of moistureproof decorative ceiling board of the present invention adopt cold pressing for three times, three hot pressing, the production technology of twice heat radiation health can reduce burst size of methanal, and can improve the humidity resistance of wood-based plate; The wood-based plate adopting method of the present invention to make is suitable for producing ceiling decoration material.

Claims (1)

1. the production method of a moistureproof ceiling decoration density board, it is characterized in that: be that the particle such as all kinds of stalks, shuck produced after wood particulate or crops being received mixes with Moisture-proof urea-formaldehyde resin adhesive and is pressed into sheet material, then sheet material overlays with melamine impregnated paper or alundum (Al2O3) abrasion-proof paper high temperature and forms; Plate forming adopts colds pressing for three times and three hot pressing, twice heat radiation health; Described temperature of colding pressing is room temperature, and pressure is 2.5MPa, and hot pressing pressure is 1.5 ~ 2.0MPa; The temperature of first time hot pressing is 130 ~ 135 DEG C; The temperature of second time hot pressing is 125 ~ 130 DEG C, and the temperature of third time hot pressing is 120 ~ 125 DEG C; Described heat radiation health is that thermostatic chamber gravity-flow ventilation is cooled to room temperature, and the time is 3 ~ 4h; Plate surface pastes melamine impregnated paper or alundum (Al2O3) abrasion-proof paper is at 150 DEG C, and pressure is carry out under 1.5Mpa;
Described Moisture-proof urea-formaldehyde resin adhesive raw material and parts by weight comprise:
Lauxite 46;
Polyacrylate dispersion 10;
Dimethyl silicone polymer 0.6;
300 order precipitated calcium carbonates 30;
EVA latex 5;
Described Lauxite adopts following method to make: formaldehyde is disposable feeding intake, and urea divides and feeds intake for three times; The production of Lauxite is divided into prepolymerization, polymerization and later stage polymerization three phases, and later stage polymerization adds polyacrylate dispersion, dimethyl silicone polymer and EVA latex later, and add filler obtains moistureproof urea-formaldehyde resin adhesive to stirring reaction completely later.
CN201510459679.5A 2013-08-28 2013-08-28 Production method for damp-proof ceiling decoration density board Pending CN105150353A (en)

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CN201510459679.5A Pending CN105150353A (en) 2013-08-28 2013-08-28 Production method for damp-proof ceiling decoration density board
CN201510459680.8A Pending CN105479583A (en) 2013-08-28 2013-08-28 Production method for producing damp-proof ceiling decorative density board from mulberry branch powder
CN201310380105.XA Active CN103433993B (en) 2013-08-28 2013-08-28 The production method of moistureproof decorative ceiling board
CN201510459124.0A Withdrawn CN105291244A (en) 2013-08-28 2013-08-28 Production method of dampproof ceiling decoration density plate
CN201510458492.3A Pending CN105291243A (en) 2013-08-28 2013-08-28 Production method of dampproof ceiling decoration plate
CN201510460870.1A Withdrawn CN105291245A (en) 2013-08-28 2013-08-28 Production method for producing dampproof ceiling decoration density plate by using nut shell particles
CN201510458974.9A Withdrawn CN105235047A (en) 2013-08-28 2013-08-28 Production method for producing damp-proof ceiling decoration density board through saw dust

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CN201510459680.8A Pending CN105479583A (en) 2013-08-28 2013-08-28 Production method for producing damp-proof ceiling decorative density board from mulberry branch powder
CN201310380105.XA Active CN103433993B (en) 2013-08-28 2013-08-28 The production method of moistureproof decorative ceiling board
CN201510459124.0A Withdrawn CN105291244A (en) 2013-08-28 2013-08-28 Production method of dampproof ceiling decoration density plate
CN201510458492.3A Pending CN105291243A (en) 2013-08-28 2013-08-28 Production method of dampproof ceiling decoration plate
CN201510460870.1A Withdrawn CN105291245A (en) 2013-08-28 2013-08-28 Production method for producing dampproof ceiling decoration density plate by using nut shell particles
CN201510458974.9A Withdrawn CN105235047A (en) 2013-08-28 2013-08-28 Production method for producing damp-proof ceiling decoration density board through saw dust

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CN108356929A (en) * 2018-03-16 2018-08-03 广东始兴县华洲木业有限公司 A kind of production method of new type compound glued board
CN108406980A (en) * 2018-03-19 2018-08-17 广东始兴县华洲木业有限公司 A kind of production method of new type compound core-board

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CN104118026B (en) * 2014-07-23 2016-05-04 连云港保丽森实业有限公司 A kind of fire-retardant wheat straw flakeboard of environmental protection inorganic and production method thereof
CN106675472A (en) * 2016-12-17 2017-05-17 浦北县建业胶合板有限责任公司 Urea-formaldehyde resin adhesive and preparation method thereof
CN107553683A (en) * 2017-09-30 2018-01-09 徐州雅来基桑拿设备有限公司 A kind of production method of density board
CN110253811A (en) * 2019-05-25 2019-09-20 北京化工大学 A kind of preparation process of lightweight formaldehyde-free wood-plastic flame-proof sheet material
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CN106541482A (en) * 2016-09-29 2017-03-29 阜南县星光工艺品有限公司 A kind of preparation method of formaldehydeless fire-resistant-chipboard
CN108356929A (en) * 2018-03-16 2018-08-03 广东始兴县华洲木业有限公司 A kind of production method of new type compound glued board
CN108406980A (en) * 2018-03-19 2018-08-17 广东始兴县华洲木业有限公司 A kind of production method of new type compound core-board

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CN105479583A (en) 2016-04-13
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CN105291245A (en) 2016-02-03
CN105235047A (en) 2016-01-13
CN105291244A (en) 2016-02-03
CN103433993A (en) 2013-12-11

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