Nano microcrystal wood floor and production method thereof

A nano-crystal, wood floor technology, applied in the direction of buildings, building structures, floors, etc., can solve the problems of wasting water resources, time-consuming, waste of resources, etc., and achieves enhanced dimensional stability, increased specific surface area, response The effect of increasing activity

Inactive Publication Date: 2010-10-20
吉林吉瑞莱板材科技有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] ① Huge waste of resources; traditional heating takes up valuable land resources to build boiler rooms, coal storage yards, and slag discharge yards. Since water is used as the heat transfer medium, a large amount of increasingly scarce water resources are wasted; the heating pipeline route is long, Running, popping, dripping, and leaking are inevitable, which will cause waste of hot water
[0004] ② Serious pollution; using traditional heating, coal and slag will cause environmental pollution during transportation and storage; in addition, necessary equipment in the boiler operation process such as: coal loading machine, grate machine, slag remover, induced draft fan, blower, circulation Pumps, etc., will emit noise during operation and will also pollute the environment; in addition, lubricating oil during mechanical operation and cleaning agents used during maintenance will cause ground and drainage pollution
[0005] ③Passive heating: The traditional heating method is passive heating. As long as the heating fee for the whole winter is paid, how to use it is up to the user. Cause energy waste; In addition, if the heating period is not reached or the heating period has passed, even if you feel cold, you have to endure it or use other auxiliary heating supplements in an emergency, and the heating method lacks humanization; There is no way to solve this kind of problem in water heating and heating, and the heating fee still needs to be paid, and the individual has no autonomy, so it costs a lot of money; traditional heating cannot be controlled by room, and both rooms where no one is active and the room where people are occupied have to be heated
[0006] ④Inconvenient installation and maintenance; annual inspection and maintenance of traditional heating boilers and mechanical equipment is essential; the rupture and corrosion of outdoor heating pipes and radiators need to be repaired and replaced, which will consume a lot of manpower and material resources; traditional heating The inner pipes need to be cleaned in 3 to 5 years, maintained in 5 to 8 years, and the boiler needs to be replaced in 15 years; the outer pipes also need to be replaced in stages; in traditional geothermal heating, the geothermal layer is laid in a wet method, which consumes a lot of cement to increase the floor slab heavy load, the installation work is complicated and time-consuming, and the quality is difficult to guarantee

Method used

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Examples

Experimental program
Comparison scheme
Effect test

example 1

[0033] Input 1150kg of raw materials, including 180kg of PVC-S-4 resin; 750kg of 400-600 mesh heavy calcium carbonate (CaCO3); 150kg of chemical polyethylene toughening agent; 4kg of silane coupling agent; 10kg of PVC calcium-zinc composite stabilizer; 50kg of 1-100um graphite or acetylene carbon black; 2kg of cornstarch;

[0034] Because the water content of heavy calcium carbonate (CaCO3) is 2-8%, generally 920-980 kg of products can be produced. Production method and process flow:

[0035] 1. First, add the above-mentioned heavy calcium carbonate, carbon black or acetylene carbon black, nano-scale heavy calcium carbonate, and silane coupling agent into the high-speed cold and hot mixing unit in sequence according to the above-mentioned ratio of parts by weight. The material is fully stirred and the mixing time is 5-20 minutes, and the stirring temperature is 80-120°C;

[0036] 2. After mixing, add PVC-S-4 resin, chlorinated polyethylene toughener, PVC calcium-zinc composi...

example 2

[0046] Input 1060kg of raw materials, including 100kg of PVC-S-5 resin; 650kg of 300-500 mesh ground calcium carbonate (CaCO3); 60kg of copolymer toughening agent of methyl acrylate and acrylate; 6kg of SBW-3 coupling agent; 8kg of rare earth calcium zinc composite stabilizer modified by nanotechnology; 230kg of 1-100um graphite or acetylene carbon black ; Add cornstarch color material and sapphire blue color material to 1kg each;

[0047] Since the water content of heavy calcium carbonate (CaCO3) is 2-8%, generally 980-1040 kg of products can be produced.

[0048] The production method and technological process are the same as those mentioned above, so they are omitted.

example 3

[0050] Input 1100kg of raw materials, including 100kg of PVC-S-5 resin; 550kg of ground calcium carbonate (CaCO3) of 500-800 mesh; 100kg of chemical polyethylene toughening agent; 3kg of aluminate coupling agent; 9kg of KSR organic rare earth composite stabilizer; 330kg of 1-100um graphite or acetylene carbon black; Color material and pearlescent powder color material are 1kg each;

[0051] Because the water content of heavy calcium carbonate (CaCO3) is 2-8%, generally about 1020-1080 kilograms of products can be produced.

[0052] The production method and technological process are the same as those mentioned above, so they are omitted.

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Abstract

The invention discloses a nano microcrystal wood floor and a production method thereof. The technical point is that the nano microcrystal wood floor comprises the following components: PVC-S-4 or PVC-S-5 type PVC resin, heavy calcium carbonate with 250-800 meshes, nanoscale heavy calcium carbonate, flexibilizer, PVC dedicated coupling agent and heat stabilizer. The method comprises the following steps: evenly mixing the above components according to a certain proportion, drying, extruding a plate-type structure through an extruder according to a mould; vacuum sizing, cutting, sanding the bottom surface and the surface; and mortising grooves at the periphery and deeply processing the surfaces to obtain the wood floor. Because of adding a small amount of nanoscale heave calcium carbonate, the invention leads the nanoscale heavy calcium carbonate to be filled between big particles of the heavy calcium carbonate, thus forming complete packing to PVC resin particles and increasing specific surface area; reactivity is improved due to the increasing of specific surface area and improvement of reaction contact surface; the PVC resin particle has high hardness and strong plasticity; and the nano particles in a nano composite can block the formation of crystals, thus greatly improving thermal conductivity.

Description

technical field [0001] The invention relates to the technical field of thermal conduction floor for civil use, in particular to a nano-microcrystalline wooden floor and a production method thereof. Background technique [0002] With the continuous development of society and the continuous progress of science and technology, people's living standards and quality requirements are also constantly improving. As we all know, in recent years, the winter heating method has gradually changed from the traditional casting radiator heating method to a diversified heating method. For example: the "geothermal" heating method of aluminum-plastic pipes, the air-conditioning hot air heating method, the electric heating method, and stainless steel or aluminum alloy heaters, among which the "geothermal" heating method of aluminum-plastic pipes is the most popular. The above-mentioned "geothermal" heating method has indeed relatively beautified the indoor environment and relatively improved t...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C08L27/06C08L23/28C08L33/12C08L33/08C08K13/06C08K9/06C08K9/04C08K3/26C08K3/04E04F15/10B29C47/00
Inventor 钟锋
Owner 吉林吉瑞莱板材科技有限公司
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