CN1654599A - Palygorskite compound flame retardant - Google Patents
Palygorskite compound flame retardant Download PDFInfo
- Publication number
- CN1654599A CN1654599A CN 200510041655 CN200510041655A CN1654599A CN 1654599 A CN1654599 A CN 1654599A CN 200510041655 CN200510041655 CN 200510041655 CN 200510041655 A CN200510041655 A CN 200510041655A CN 1654599 A CN1654599 A CN 1654599A
- Authority
- CN
- China
- Prior art keywords
- polygorskite
- paligorskite
- flame retardant
- composite
- retardant
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Granted
Links
Landscapes
- Compositions Of Macromolecular Compounds (AREA)
- Fireproofing Substances (AREA)
Abstract
The composite paligorskite flame retardant is prepared through mixing paligorskite powder of 100-5000 mesh and re-compounding agent in certain ratio. Paligorskite in microporous structure has powerful gas adsorbing effect and excellent water absorbing and maintaining performance, can produce water vapor to isolate oxygen and isolate heat transfer, and thus has excellent flame retarding effect. Compared with available flame retardants, the composite paligorskite flame retardant as one kind of green flame retardant has no volatilization, lasting effect, low cost, less smoke and no toxicity.
Description
Technical field
The present invention relates to a kind of additive, relate in particular to a kind of fire retardant, be specifically related to a kind of paligorskite composite combustion inhibitor.
Background technology
Palygorskite clay is to be the silicate clay mineral of main component with the polygorskite, because the formation condition harshness, thereby be worldwide rare environment mineral material.The world has the polygorskite of extraction value mainly to be distributed in a few countries such as China, the U.S., Spain, Senegal, France, Australia, Mexico, Russia.China's polygorskite reserves account for more than 95% of world saving, and wherein the polygorskite distant view reserves of Linze county, Gansu Province slab bridge township's recent findings are about 1,100,000,000 tons, account for more than 85% of world's distant view reserves.Show through quantitative analysis of X-ray diffraction and TEM (transmission electron microscope) analysis, polygorskite content is 25%~51%, its monocrystalline mostly is needle-like, fibrous, about 20~the 80nm of crystal diameter, be about 0.5~5 micron, it is the micropore of 0.32 * 0.73nm that the aperture consistent with its length direction arranged in the crystal, and out-of-shape nano-micrometre level micropore is arranged between the crystal, belongs to typical natural nano-submicron mineral fibre.Polygorskite density low (2.31-2.37), paler colour can not have a strong impact on its weight and the transparency with polymer after compound; Polygorskite hardness 2-2.5 is processed into the nano-micrometre grade particles easily; Its porous and hollow structure are the compound condition of having created of chemical modification and material.
Polygorskite is mainly used in water technology and the fertilizer synthetic technology as a kind of additive, and it does not at home and abroad appear in the newspapers as yet as the application of fire retardant.
Fire retardant material is a kind of auxiliary agent that can stop material to ignite or suppress propagation of flame, and it is that the needs with macromolecular material grow up in later stage the 1950's.Traditional fire retardant is as the still widely used bromide fire retardant of China, though have good flame retardant resistance, in case but presence of fire, because thermolysis and burning will produce a large amount of smog and deleterious corrosive gases, thereby hinder fire fighting and personnel's evacuation, and corrosion instrument and equipment.Though phosphorus flame retardant toxicity and cigarette amount are all less, it requires to be contained a large amount of H, O element in the fire retardant material structure, and could dewater forms charring layer, thereby its application also is restricted.The amount of being fuming is low during the inorganic combustion inhibitor burning, and does not produce poisonous, corrosive gases, is the optimal fire retardant of studying and using at present.American-European and Japanese, inorganic fire-retardant material has accounted for 50%~64% of all flame retardant products, mainly is Al (OH)
3And Mg (OH)
2Be the material of additive, but these interpolation prices are high, are unfavorable for applying.
The microvoid structure of polygorskite, make it strong adsorption be arranged to gas, the heat insulation thermal insulation of hollow can be blocked the transmission of heat, its suction and water retention property, at high temperature can produce water vapour blocking-up oxygen, polygorskite itself is non-volatile, and effect is lasting, cheap, smog is little, has fire-retardant, as to press down cigarette and reduction toxic gas function concurrently.So polygorskite nuisanceless fire retardant material that is ideal.
Summary of the invention
The paligorskite composite combustion inhibitor that the purpose of this invention is to provide a kind of efficient, inexpensive, low toxicity, low cigarette, non-environmental-pollution
Purpose of the present invention can realize by following measure:
A kind of paligorskite composite combustion inhibitor is by being crushed to 100~5000 purpose polygorskite powders and the composite dose of mixed with 1: 1~1: 10 forms.
Described composite dose is magnesium hydroxide and/or trimeric cyanamide; When being the mixture of magnesium hydroxide and trimeric cyanamide for composite dose, the ratio of magnesium hydroxide and trimeric cyanamide is: 1: 0.1~1: 10.
The present invention compared with prior art has the following advantages:
1, the present invention mixes with natural broken thread stone and the composite dose of mode with mechanical blending, because the microvoid structure of polygorskite has strong adsorption to gas, and the heat insulation thermal insulation of energy, the transmission of blocking-up heat is simultaneously because its good suction and water retention property at high temperature can produce water vapour blocking-up oxygen, make it have good flame-retardant effect, compare with other fire retardants, polygorskite itself is non-volatile, and effect is lasting, cheap, smog is little, nontoxic, be the nuisanceless fire retardant material of ideal.
2, technology of the present invention is simple, cost is low, is the perfect additive of producing flame retardant products such as plastics, rubber.
Embodiment
Further specify the preparation method of paligorskite composite combustion inhibitor below in conjunction with embodiment, and by with natural broken thread masonry being the flame retardant effect of the broken thread of the anti-flaming polypropylene material explanation stone of fire retardant preparation:
Embodiment 1: natural polygorskite is crushed to 100~5000 orders (granularity is 0.26-2.um) after selected, again polygorskite powder and magnesium hydroxide is promptly got paligorskite composite combustion inhibitor with 1: 1 ratio with the mode thorough mixing of mechanical blending.With above-mentioned gained polygorskite compound flame retardant and polypropylene with 45%, 55% weight ratio thorough mixing and with Shooting Technique injection moulding on injection moulding machine of routine, flame-retardant polypropylene composite material.It is as follows to measure its each performance index:
Oxygen index can reach 28; Combustionproperty is the UL94-1 level
Embodiment 2: natural polygorskite is crushed to 100~5000 orders (granularity is 0.26-2.um) after selected, again polygorskite powder and trimeric cyanamide is promptly got paligorskite composite combustion inhibitor with 1: 2 ratio with the mode thorough mixing of mechanical blending.With above-mentioned gained polygorskite compound flame retardant and polypropylene with 40%, 60% weight ratio thorough mixing and with Shooting Technique injection moulding on injection moulding machine of routine, flame-retardant polypropylene composite material.It is as follows to measure its each performance index:
Oxygen index can reach 30; Combustionproperty is the UL94-0 level
Embodiment 3: natural polygorskite is crushed to 100~5000 orders (granularity is 0.26-2.um) after selected, again the mixture (ratio of magnesium hydroxide and trimeric cyanamide is 1: 0.1) of polygorskite powder and magnesium hydroxide and trimeric cyanamide is promptly got paligorskite composite combustion inhibitor with 1: 3 ratio with the mode thorough mixing of mechanical blending.With above-mentioned gained polygorskite compound flame retardant and polypropylene with 30%, 70% weight ratio thorough mixing and with Shooting Technique injection moulding on injection moulding machine of routine, flame-retardant polypropylene composite material.It is as follows to measure its each performance index:
It is the UL94-0 level that oxygen index can reach 31 combustionproperties
Embodiment 4: natural polygorskite is crushed to 100~5000 orders (granularity is 0.26-2.um) after selected, again polygorskite powder and trimeric cyanamide is promptly got paligorskite composite combustion inhibitor with 1: 4 ratio with the mode thorough mixing of mechanical blending.With above-mentioned gained polygorskite compound flame retardant and polypropylene with 20%, 80% weight ratio thorough mixing, with Shooting Technique injection moulding on injection moulding machine of routine, flame-retardant polypropylene composite material.It is as follows to measure its each performance index:
It is the UL94-0 level that oxygen index can reach 28 combustionproperties
Embodiment 5: natural polygorskite is crushed to 100~5000 orders (granularity is 0.26-2.um) after selected, again the mixture (ratio of magnesium hydroxide and trimeric cyanamide is 1: 0.5) of polygorskite powder and magnesium hydroxide and trimeric cyanamide is promptly got paligorskite composite combustion inhibitor with 1: 5 ratio with the mode thorough mixing of mechanical blending.With above-mentioned gained polygorskite compound flame retardant and polypropylene with 10%, 90% weight ratio thorough mixing, and with Shooting Technique injection moulding on injection moulding machine of routine, flame-retardant polypropylene composite material.It is as follows to measure its each performance index:
It is the UL94-0 level that oxygen index can reach 28 combustionproperties
Embodiment 6: natural polygorskite is crushed to 100~5000 orders (granularity is 0.26-2.um) after selected, again the mixture (ratio of magnesium hydroxide and trimeric cyanamide is 1: 1) of polygorskite powder and magnesium hydroxide and trimeric cyanamide is promptly got paligorskite composite combustion inhibitor with 1: 6 ratio with the mode thorough mixing of mechanical blending.With above-mentioned gained polygorskite compound flame retardant and polypropylene with 5%, 95% weight ratio thorough mixing, and with Shooting Technique injection moulding on injection moulding machine of routine, flame-retardant polypropylene composite material.It is as follows to measure its each performance index:
It is the UL94-0 level that oxygen index can reach 28 combustionproperties
Embodiment 7: natural polygorskite is crushed to 100~5000 orders (granularity is 0.26-2.um) after selected, again the mixture (ratio of magnesium hydroxide and trimeric cyanamide is 1: 3) of polygorskite powder and magnesium hydroxide and trimeric cyanamide is promptly got paligorskite composite combustion inhibitor with 1: 7 ratio with the mode thorough mixing of mechanical blending; With gained polygorskite compound flame retardant and polypropylene with 40%, 60% weight ratio thorough mixing, and with Shooting Technique injection moulding on injection moulding machine of routine, flame-retardant polypropylene composite material.It is as follows to measure its each performance index:
It is the UL94-0 level that oxygen index can reach 28 combustionproperties
Embodiment 8: natural polygorskite is crushed to 100~5000 orders (granularity is 0.26-2.um) after selected, again the mixture (ratio of magnesium hydroxide and trimeric cyanamide is 1: 5) of polygorskite powder and magnesium hydroxide and trimeric cyanamide is promptly got paligorskite composite combustion inhibitor with 1: 8 ratio with the mode thorough mixing of mechanical blending.With gained polygorskite compound flame retardant and polypropylene with 40%, 60% weight ratio thorough mixing, and with Shooting Technique injection moulding on injection moulding machine of routine, flame-retardant polypropylene composite material.It is as follows to measure its each performance index:
Oxygen index can reach 28, and combustionproperty is the UL94-0 level
Embodiment 9: natural polygorskite is crushed to 100~5000 orders (granularity is 0.26-2.um) after selected, again the mixture (ratio of magnesium hydroxide and trimeric cyanamide is 1: 8) of polygorskite powder and magnesium hydroxide and trimeric cyanamide is promptly got paligorskite composite combustion inhibitor with 1: 9 ratio with the mode thorough mixing of mechanical blending.With gained polygorskite compound flame retardant and polypropylene with 40%, 60% weight ratio thorough mixing, and with Shooting Technique injection moulding on injection moulding machine of routine, flame-retardant polypropylene composite material.It is as follows to measure its each performance index:
Oxygen index can reach 28, and combustionproperty is the UL94-0 level
Embodiment 10: natural polygorskite is crushed to 100~5000 orders (granularity is 0.26-2.um) after selected, again the mixture (ratio of magnesium hydroxide and trimeric cyanamide is 1: 10) of polygorskite powder and magnesium hydroxide and trimeric cyanamide is promptly got paligorskite composite combustion inhibitor with 1: 10 ratio with the mode thorough mixing of mechanical blending.With polygorskite compound flame retardant and polypropylene with 40%, 60% weight ratio thorough mixing, and with Shooting Technique injection moulding on injection moulding machine of routine, flame-retardant polypropylene composite material.It is as follows to measure its each performance index:
Oxygen index can reach 28, and combustionproperty is the UL94-0 level.
Claims (2)
1, a kind of paligorskite composite combustion inhibitor is characterized in that: it is by being crushed to 100~5000 purpose polygorskite powders and the composite dose of mixed with 1: 1~1: 10 forms.
2, paligorskite composite combustion inhibitor as claimed in claim 1 is characterized in that: described composite dose is magnesium hydroxide and/or trimeric cyanamide; When being the mixture of magnesium hydroxide and trimeric cyanamide for composite dose, the ratio of magnesium hydroxide and trimeric cyanamide is: 1: 0.1~1: 10.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CNB2005100416554A CN100350015C (en) | 2005-01-18 | 2005-01-18 | Palygorskite compound flame retardant |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CNB2005100416554A CN100350015C (en) | 2005-01-18 | 2005-01-18 | Palygorskite compound flame retardant |
Publications (2)
Publication Number | Publication Date |
---|---|
CN1654599A true CN1654599A (en) | 2005-08-17 |
CN100350015C CN100350015C (en) | 2007-11-21 |
Family
ID=34894443
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
CNB2005100416554A Expired - Fee Related CN100350015C (en) | 2005-01-18 | 2005-01-18 | Palygorskite compound flame retardant |
Country Status (1)
Country | Link |
---|---|
CN (1) | CN100350015C (en) |
Cited By (9)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN100335551C (en) * | 2005-08-27 | 2007-09-05 | 西北师范大学 | Paligorskite ethene-vinyl acetate composite flame-proof material |
CN100360640C (en) * | 2005-08-27 | 2008-01-09 | 西北师范大学 | Paligorskite composite combustion inhibitor |
CN101195694B (en) * | 2007-12-22 | 2011-01-19 | 西北师范大学 | Degradable composite plastics and method for producing the same |
CN102010585A (en) * | 2010-11-16 | 2011-04-13 | 淮阴师范学院 | Preparation method of efficient and environment-friendly composite fire retardant |
CN102352057A (en) * | 2011-09-08 | 2012-02-15 | 西北师范大学 | Non-halogen composite flame retardant and application thereof in preparation of flame retardant thermoplastic elastomer composite |
CN103483878A (en) * | 2013-09-09 | 2014-01-01 | 中国地质科学院郑州矿产综合利用研究所 | Dolomite attapulgite composite reinforced flame retardant and preparation method thereof |
CN104119614A (en) * | 2014-08-12 | 2014-10-29 | 西北师范大学 | Preparation and application of zinc hydroxystannate-palygorskite-trithiocyanuric acid compound smoke-suppressed fire retardant |
CN105385036A (en) * | 2015-12-17 | 2016-03-09 | 西北师范大学 | Halogen-free smoke suppression fire retardant used for preparation of polypropylene material |
CN105542230A (en) * | 2016-02-02 | 2016-05-04 | 中国地质科学院郑州矿产综合利用研究所 | Halogen-free flame retardant and preparation method thereof |
Family Cites Families (7)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US3730890A (en) * | 1971-12-03 | 1973-05-01 | Early California Ind | Fire retardant composition and method of production |
JPS5921799A (en) * | 1982-07-21 | 1984-02-03 | 株式会社大阪パツキング製造所 | Incombustible and fire retardant paper |
JPS6166764A (en) * | 1984-09-11 | 1986-04-05 | Toyota Central Res & Dev Lab Inc | Corrosion-proofing paint |
WO1998036022A1 (en) * | 1997-02-17 | 1998-08-20 | Basf Aktiengesellschaft | Flameproof thermoplastic molding materials |
CN1259601A (en) * | 1999-01-04 | 2000-07-12 | 北京市建筑材料科学研究院 | Asbestos free fire protection flame retarding paper |
CN1128199C (en) * | 2001-09-19 | 2003-11-19 | 北京化工大学 | Preparation process of magnesium hydroxide fire-retarding nanomaterial |
CN1202205C (en) * | 2002-04-30 | 2005-05-18 | 合肥精汇化工研究所 | Method for synthesizing environment protective fire-retartant agent MP |
-
2005
- 2005-01-18 CN CNB2005100416554A patent/CN100350015C/en not_active Expired - Fee Related
Cited By (11)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN100335551C (en) * | 2005-08-27 | 2007-09-05 | 西北师范大学 | Paligorskite ethene-vinyl acetate composite flame-proof material |
CN100360640C (en) * | 2005-08-27 | 2008-01-09 | 西北师范大学 | Paligorskite composite combustion inhibitor |
CN101195694B (en) * | 2007-12-22 | 2011-01-19 | 西北师范大学 | Degradable composite plastics and method for producing the same |
CN102010585A (en) * | 2010-11-16 | 2011-04-13 | 淮阴师范学院 | Preparation method of efficient and environment-friendly composite fire retardant |
CN102352057A (en) * | 2011-09-08 | 2012-02-15 | 西北师范大学 | Non-halogen composite flame retardant and application thereof in preparation of flame retardant thermoplastic elastomer composite |
CN103483878A (en) * | 2013-09-09 | 2014-01-01 | 中国地质科学院郑州矿产综合利用研究所 | Dolomite attapulgite composite reinforced flame retardant and preparation method thereof |
CN103483878B (en) * | 2013-09-09 | 2015-04-01 | 中国地质科学院郑州矿产综合利用研究所 | Dolomite attapulgite composite reinforced flame retardant and preparation method thereof |
CN104119614A (en) * | 2014-08-12 | 2014-10-29 | 西北师范大学 | Preparation and application of zinc hydroxystannate-palygorskite-trithiocyanuric acid compound smoke-suppressed fire retardant |
CN105385036A (en) * | 2015-12-17 | 2016-03-09 | 西北师范大学 | Halogen-free smoke suppression fire retardant used for preparation of polypropylene material |
CN105542230A (en) * | 2016-02-02 | 2016-05-04 | 中国地质科学院郑州矿产综合利用研究所 | Halogen-free flame retardant and preparation method thereof |
CN105542230B (en) * | 2016-02-02 | 2018-01-09 | 中国地质科学院郑州矿产综合利用研究所 | Halogen-free flame retardant and preparation method thereof |
Also Published As
Publication number | Publication date |
---|---|
CN100350015C (en) | 2007-11-21 |
Similar Documents
Publication | Publication Date | Title |
---|---|---|
CN100350015C (en) | Palygorskite compound flame retardant | |
CN102120856B (en) | Polyvinyl chloride/organic hydrotalcite nanocomposite and preparation method thereof | |
CN100535056C (en) | Flame-proof filling material special for tunnel sheet pavement | |
Wang et al. | The flame resistance properties of expandable polystyrene foams coated with a cheap and effective barrier layer | |
CN102069519B (en) | Fire retardant for wood, and preparation method and treatment process thereof | |
CN102173631B (en) | Flame retardant for tunnel asphalt pavement | |
CN113968700B (en) | High-toughness high-strength low-wet-expansion fiber cement external wall panel and preparation method thereof | |
WO2008037168A1 (en) | A flame retardant modifier for asphalt | |
CN100365052C (en) | Flame-retardant polypropylene composite materials with palygorskite as flame retardant | |
EP0351670B1 (en) | Poorly inflammable construction parts, especially boards, and process for their manufacture | |
Piao et al. | Zn-doped carbon microspheres as synergist in intumescent flame-retardant thermoplastic polyurethane composites: Mechanism of char residues layer regulation | |
CN107176819A (en) | A kind of abatvoix and preparation method thereof | |
CN101831192A (en) | Flame-retardant lignin fiber for roads and preparation method thereof | |
Jiang et al. | Effect of modified wheat straw fiber on properties of fiber cement-based composites at high temperatures | |
CN1569963A (en) | Fire-retardant and modified asphalt mixture | |
Qiu et al. | Supramolecular elastomers with high strength and low toxicity are suitable for safety protection | |
CN1565673A (en) | Back-fire relief bag | |
CN101280074A (en) | Environment-friendly flame-proof nitrile rubber and preparation thereof | |
CN1827696A (en) | Refractory modified asphalt horse's hoofs fat crushed stones(SMA) mixtures | |
CN102294716B (en) | Wood fire retardant with low cost and high efficiency | |
CN1923882A (en) | Expansion type inflaming retarding polypropylene material | |
CN105585280B (en) | A kind of compositional flame-retardant miberal powder and antiflaming asphalt mixture for tunnel sheet pavement | |
CN1199080A (en) | Fire extinguishing package and its making method | |
CN1927928A (en) | Paligorskite-linear low density polyethylene composite flame-proof material | |
CN1737083A (en) | Paligorskite composite combustion inhibitor |
Legal Events
Date | Code | Title | Description |
---|---|---|---|
C06 | Publication | ||
PB01 | Publication | ||
C10 | Entry into substantive examination | ||
SE01 | Entry into force of request for substantive examination | ||
C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20071121 Termination date: 20130118 |