CN106832595A - Printing consumables prepared by a kind of high level cycling and reutilization waste plastic and preparation method thereof - Google Patents

Printing consumables prepared by a kind of high level cycling and reutilization waste plastic and preparation method thereof Download PDF

Info

Publication number
CN106832595A
CN106832595A CN201710143556.XA CN201710143556A CN106832595A CN 106832595 A CN106832595 A CN 106832595A CN 201710143556 A CN201710143556 A CN 201710143556A CN 106832595 A CN106832595 A CN 106832595A
Authority
CN
China
Prior art keywords
parts
waste plastic
high level
agent
prepared
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.)
Withdrawn
Application number
CN201710143556.XA
Other languages
Chinese (zh)
Inventor
冯可发
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Guangxi Feng Da Three Dimensional Technology Co Ltd
Original Assignee
Guangxi Feng Da Three Dimensional Technology Co Ltd
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by Guangxi Feng Da Three Dimensional Technology Co Ltd filed Critical Guangxi Feng Da Three Dimensional Technology Co Ltd
Priority to CN201710143556.XA priority Critical patent/CN106832595A/en
Publication of CN106832595A publication Critical patent/CN106832595A/en
Withdrawn legal-status Critical Current

Links

Classifications

    • CCHEMISTRY; METALLURGY
    • C08ORGANIC MACROMOLECULAR COMPOUNDS; THEIR PREPARATION OR CHEMICAL WORKING-UP; COMPOSITIONS BASED THEREON
    • C08LCOMPOSITIONS OF MACROMOLECULAR COMPOUNDS
    • C08L23/00Compositions of homopolymers or copolymers of unsaturated aliphatic hydrocarbons having only one carbon-to-carbon double bond; Compositions of derivatives of such polymers
    • C08L23/02Compositions of homopolymers or copolymers of unsaturated aliphatic hydrocarbons having only one carbon-to-carbon double bond; Compositions of derivatives of such polymers not modified by chemical after-treatment
    • C08L23/10Homopolymers or copolymers of propene
    • C08L23/12Polypropene
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B33ADDITIVE MANUFACTURING TECHNOLOGY
    • B33YADDITIVE MANUFACTURING, i.e. MANUFACTURING OF THREE-DIMENSIONAL [3-D] OBJECTS BY ADDITIVE DEPOSITION, ADDITIVE AGGLOMERATION OR ADDITIVE LAYERING, e.g. BY 3-D PRINTING, STEREOLITHOGRAPHY OR SELECTIVE LASER SINTERING
    • B33Y70/00Materials specially adapted for additive manufacturing
    • CCHEMISTRY; METALLURGY
    • C08ORGANIC MACROMOLECULAR COMPOUNDS; THEIR PREPARATION OR CHEMICAL WORKING-UP; COMPOSITIONS BASED THEREON
    • C08LCOMPOSITIONS OF MACROMOLECULAR COMPOUNDS
    • C08L2201/00Properties
    • C08L2201/02Flame or fire retardant/resistant
    • CCHEMISTRY; METALLURGY
    • C08ORGANIC MACROMOLECULAR COMPOUNDS; THEIR PREPARATION OR CHEMICAL WORKING-UP; COMPOSITIONS BASED THEREON
    • C08LCOMPOSITIONS OF MACROMOLECULAR COMPOUNDS
    • C08L2205/00Polymer mixtures characterised by other features
    • C08L2205/02Polymer mixtures characterised by other features containing two or more polymers of the same C08L -group
    • C08L2205/025Polymer mixtures characterised by other features containing two or more polymers of the same C08L -group containing two or more polymers of the same hierarchy C08L, and differing only in parameters such as density, comonomer content, molecular weight, structure
    • CCHEMISTRY; METALLURGY
    • C08ORGANIC MACROMOLECULAR COMPOUNDS; THEIR PREPARATION OR CHEMICAL WORKING-UP; COMPOSITIONS BASED THEREON
    • C08LCOMPOSITIONS OF MACROMOLECULAR COMPOUNDS
    • C08L2205/00Polymer mixtures characterised by other features
    • C08L2205/03Polymer mixtures characterised by other features containing three or more polymers in a blend
    • C08L2205/035Polymer mixtures characterised by other features containing three or more polymers in a blend containing four or more polymers in a blend
    • CCHEMISTRY; METALLURGY
    • C08ORGANIC MACROMOLECULAR COMPOUNDS; THEIR PREPARATION OR CHEMICAL WORKING-UP; COMPOSITIONS BASED THEREON
    • C08LCOMPOSITIONS OF MACROMOLECULAR COMPOUNDS
    • C08L2205/00Polymer mixtures characterised by other features
    • C08L2205/14Polymer mixtures characterised by other features containing polymeric additives characterised by shape
    • C08L2205/16Fibres; Fibrils
    • CCHEMISTRY; METALLURGY
    • C08ORGANIC MACROMOLECULAR COMPOUNDS; THEIR PREPARATION OR CHEMICAL WORKING-UP; COMPOSITIONS BASED THEREON
    • C08LCOMPOSITIONS OF MACROMOLECULAR COMPOUNDS
    • C08L2207/00Properties characterising the ingredient of the composition
    • C08L2207/20Recycled plastic

Landscapes

  • Chemical & Material Sciences (AREA)
  • Health & Medical Sciences (AREA)
  • Chemical Kinetics & Catalysis (AREA)
  • Medicinal Chemistry (AREA)
  • Polymers & Plastics (AREA)
  • Organic Chemistry (AREA)
  • Engineering & Computer Science (AREA)
  • Manufacturing & Machinery (AREA)
  • Materials Engineering (AREA)
  • Compositions Of Macromolecular Compounds (AREA)

Abstract

Printing consumables prepared the invention discloses a kind of high level cycling and reutilization waste plastic and preparation method thereof, belongs to 3D printing technical field of material, and printing consumables prepared by the high level cycling and reutilization waste plastic includes following raw material:Waste plastic, wood powder, PLA, PTPP, ethylene glycol ether acetate, Graphene, surfactant, conditioning agent, propellant, crosslinking agent, catalyst, plasticizer, dispersant, tackifier, curing agent, antioxidant, heat stabilizer, antiager, fire retardant, smoke suppressant, printing consumables prepared by the high level cycling and reutilization waste plastic are made through steps such as over cleaning, drying, crushing, activation, mixing, extruding.Printing consumables good flame retardation effect prepared by high level cycling and reutilization waste plastic of the invention, strong shock resistance, toughness is strong, is a kind of excellent fire-retardant Graphene Modified wood plastic material of performance, can be applicable, and has significant economic and social benefit.

Description

Printing consumables prepared by a kind of high level cycling and reutilization waste plastic and preparation method thereof
【Technical field】
The invention belongs to 3D printing technical field of material, and in particular to a kind of high level cycling and reutilization waste plastic Printing consumables of preparation and preparation method thereof.
【Background technology】
3D printing is also called rapid shaping technique, also referred to as increases material manufacturing technology, is that one kind does not need conventional tool, fixture And lathe, but based on mathematical model file, successively printed using the material with adhesion such as metal dust or plastics To manufacture the technology of arbitrary shape article.The article that 3D printer can be manufactured is a lot, such as aircraft, pistol, for another example food, human body Organ, toy for children etc..3D printing technique is an important breakthrough of world's manufacturing technology field over the past two decades.It is mechanic The multidisciplinary technology such as journey, computer technology, Numeric Control Technology, material science it is integrated.It is to beat that 3D printing is most difficult to most crucial technology Print the exploitation of material.Therefore developing more various multi-functional 3D printing material turns into focus of the future studies with application and pass Key.3D printing material of the invention is a kind of new material, has the performance of timber and plastics concurrently, for 3D printing provides more materials Selection in terms of material.
Polypropylene has nontoxic, tasteless, and mechanical property is good, and easy processing is corrosion-resistant, and melt temperature is relatively low, and good fluidity is cold But speed is fast, all meets requirement of the 3D printing technique to polymeric material the advantages of transparent easy dyeing, and pp material is originated Extensively, price is low;Lumber fibre/PP composite material causes its double grading for having timber and plastics concurrently, lumber fibre plus Enter reduce further polyacrylic condensation shrinkage factor, and the article for printing has woodiness touch, more friendliness.
The Geim and Novoselov of Man Chesidun universities of Britain in 2004 peel off high starch breeding and obtain solely by adhesive tape Since vertical two-dimensional graphene (Gra-phene, GN) crystal for existing, it is extremely concerned that Graphene has become material science One of study hotspot.The graphite of Graphene, actually monoatomic layer, it possesses the two-dimensional structure and excellent power of uniqueness , thermodynamics, optically and electrically performance.
Graphene be at present it is most thin in the world be but also most hard nano material, it is almost fully transparent, to inhale 2.3% light is received, thermal conductivity factor is up to 5300W/mk, higher than CNT and diamond.Graphene is one kind by carbon atom The new material of the individual layer laminated structure of composition, high with intensity, specific surface area is big, chemical reactivity high, the spy of fillibility high Point.
Current polypropylene composites are little as the document of 3D printing material.
China Patent Publication No. a kind of PP composite material for 102276920A is disclosed, using glass fibre, toughness reinforcing Agent, coupling agent, antioxidant, lubricant, Nucleating Agent on Pp are modified, the tool intensity of modified PP composite material It is higher and creep-resistant property is preferable.But its compatibility and heat distortion temperature to PP composite material is modified few, it is impossible to very well Ground meets printing demand.
A kind of China Patent Publication No. processing procedure of composite material of plant fiber for 101781472A is disclosed, its addition coupling Agent is uniformly mixed mixing material with high pass filter muller into mixing material, adds lubrication prescription to be mixed into micelle and make compound It is used finished material, and modified material has weight saving, is difficult the small characteristic of thermal deformation, thermal shrinkage force.But its compatibility It is not high, it is impossible to meet 3D printing demand well.
Single performance boost can not meet performance need of the 3D printing technique to polypropylene composites Ask, be badly in need of a kind of new polypropylene composites and widely applied in 3D printing technique.
【The content of the invention】
The present invention provides printing consumables prepared by a kind of high level cycling and reutilization waste plastic and preparation method thereof, to solve Existing polypropylene composites heat distortion temperature be modified low, mechanical property and flame retardant effect difference the problems such as.The present invention The printing consumables good flame retardation effect for preparing of high level cycling and reutilization waste plastic, strong shock resistance, toughness is strong, is a kind of property The excellent fire-retardant Graphene Modified wood plastic material of energy, can be applicable, and have significant economic and social benefit.
To solve above technical problem, the present invention uses following technical scheme:
Printing consumables prepared by a kind of high level cycling and reutilization waste plastic, in units of weight portion, including following raw material: Waste plastic 175-230 parts, wood powder 106-160 parts, PLA 42-58 parts, PTPP 24-32 parts, ethylene glycol ethyl ether vinegar Acid esters 28-34 parts, Graphene 2-4 parts, surfactant 1-1.6 parts, conditioning agent 0.4-0.8 parts, propellant 0.3-0.5 parts, friendship 0.5-0.8 parts of agent of connection, catalyst 0.3-0.5 parts, plasticizer 0.4-0.7 parts, dispersant 0.3-0.5 parts, tackifier 0.3-0.4 Part, curing agent 1-2 parts, antioxidant 0.2-0.4 parts, heat stabilizer 0.2-0.4 parts, antiager 0.8-1.5 parts, fire retardant 1.3- 1.8 parts, smoke suppressant 1-1.5 parts;
The surfactant is Pluronic F68;
The conditioning agent is ACR;
The propellant is aerogel generating agent;
The crosslinking agent is crosslinking aid S AC-100;
The fire retardant is in units of weight portion, including following raw material:Makrolon 60-68 parts, Caprylic Capric three Ester 25-28 parts, 22-24 parts of NPE ammonium sulfate, 18-22 parts of PPOX triol, urea 14-16 parts, oxygen Change 10-12 parts, antimony oxide 9-11 parts, lead oxide 7-10 parts, bentonite 8-12 parts, bleeding agent 1-2 parts of aluminium;
The smoke suppressant is in units of weight portion, including following raw material:Tributyltin oxide 32-42 parts, lead hydroxide 16- 21 parts, diatomite 12-20 parts, aluminium hydroxide 8-10 parts, ammonium octamolybdate 4-6 parts, stearic acid 1.5-2 parts.
Preferably, the catalyst is vanadic anhydride.
Preferably, the plasticizer is citrate.
Preferably, the dispersant is Dispersant MF.
Preferably, the tackifier are butyl trimethoxy silane.
Preferably, the curing agent is epoxylite curing agent.
Preferably, the antioxidant is antioxidant 1098.
Preferably, the heat stabilizer is Dythal.
Preferably, the antiager is BASF UV-234 antiagers.
The preparation method that printing consumables prepared by a kind of high level cycling and reutilization waste plastic is also provided of the invention, including with Lower step:
S1:Dried after waste plastic is cleaned to water content≤0.8%, 200-300 mesh sieve is crossed after then crushing, be obtained Plastic powders;
S2:It it is 70-74 DEG C in temperature to surfactant is added in plastic powders obtained in step S1, rotating speed is 150- 1.2-1.8h is activated under 180r/min, activated plastics powder is obtained;
S3:Graphene is crushed, 200-300 mesh sieve is crossed, powder is obtained, gained powder is 7000- in magnetic field intensity 8200GS, ultrasonic power is 520-650W, and temperature is 52-56 DEG C, under rotating speed is 200-300r/min, stirs 42-55min, Graphene energy powder is obtained;
S4:Under nitrogen protection, to Graphene energy obtained in addition step S3 in activated plastics powder obtained in step S2 Amount powder, wood powder, PLA, PTPP, ethylene glycol ether acetate, conditioning agent, propellant, crosslinking agent, catalyst, increasing Modeling agent, dispersant, tackifier, are 260-270W in microwave power, and temperature is 132-140 DEG C, and rotating speed is under 200-400r/min Stirring 3-4h, is obtained mixture I;
S5:To addition curing agent, antioxidant, heat stabilizer, antiager, fire retardant, suppression in mixture I obtained in step S4 Fumicants, is 72-75 DEG C in temperature, and rotating speed is obtained mixture II to stir 1.8-2.2h under 100-200r/min;
The preparation method of the fire retardant, comprises the following steps:
A () adds NPE ammonium sulfate, water 320-400 parts in microwave reactor, be in speed of agitator 8-12min is stirred under 300-500r/min, mixture A is obtained;
B () is to addition ethylene glycol ether acetate, Miglyol 812N, polyoxygenated in mixture A obtained in step a Propylene triol, urea, aluminum oxide, antimony oxide, lead oxide, bentonite, bleeding agent, are 200-400r/ in speed of agitator Min, microwave power is 350-400W, and temperature is obtained mixture B to stir 1.3-1.8h at 92-96 DEG C, and the bleeding agent is to ooze Saturating agent JFC;
C () filters sediment by after mixture B is cooled to room temperature obtained in step b, be 4000-5000r/ in rotating speed Centrifugal drying is obtained fire retardant to water content≤1% under min;
The preparation method of the smoke suppressant, comprises the following steps:
(A) tributyltin oxide, lead hydroxide, diatomite, aluminium hydroxide, ammonium octamolybdate, stearic acid are mixed, in stirring Rotating speed is 300-400r/min, and microwave power is 200-250W, and temperature is obtained mixture to stir 1-1.5h at 110-120 DEG C C;
(B) after mixture C obtained in step A being cooled into room temperature, sediment is filtered, is 4000-5000r/ in rotating speed Centrifugal drying is obtained smoke suppressant to water content≤1% under min;
S6:Mixture II obtained in step S5 is put into screw extruding forming machine, is 190-200 DEG C, rotating speed in temperature Under for 125-140r/min, through extruding strand, printing consumables prepared by high level cycling and reutilization waste plastic is obtained.
The invention has the advantages that:
(1), using conventional waste plastic, source is wide, and price is low, has widened the selection of 3D printing material feedstock for the present invention Scope, while for effective treatment of waste plastic provides new approach;
(2) present invention uses Wood flour filled polypropylene, is made the printing consumables of high level cycling and reutilization waste plastic preparation, So that product has woodiness touch, more friendliness, can Partial digestion, more low-carbon environment-friendly;
(3) printing consumables good flame retardation effect prepared by high level cycling and reutilization waste plastic of the invention, impact resistance By force, toughness is strong, is a kind of excellent fire-retardant Graphene Modified wood plastic material of performance, can be applicable, and has significant economic and society Benefit.
【Specific embodiment】
For ease of more fully understanding the present invention, it is illustrated by following examples, these embodiments belong to of the invention Protection domain, but do not limit the scope of the invention.
In embodiment, printing consumables prepared by the high level cycling and reutilization waste plastic, in units of weight portion, bag Include following raw material:Waste plastic 175-230 parts, wood powder 106-160 parts, PLA 42-58 parts, PTPP 24-32 parts, second 28-34 parts of glycol ether acetate, Graphene 2-4 parts, surfactant 1-1.6 parts, conditioning agent 0.4-0.8 parts, propellant 0.3-0.5 parts, crosslinking agent 0.5-0.8 parts, catalyst 0.3-0.5 parts, plasticizer 0.4-0.7 parts, dispersant 0.3-0.5 parts, increasing Stick 0.3-0.4 parts, curing agent 1-2 parts, antioxidant 0.2-0.4 parts, heat stabilizer 0.2-0.4 parts, antiager 0.8-1.5 parts, Fire retardant 1.3-1.8 parts, smoke suppressant 1-1.5 parts;
The surfactant is Pluronic F68;
The conditioning agent is ACR;
The propellant is aerogel generating agent;
The crosslinking agent is crosslinking aid S AC-100;
The catalyst is vanadic anhydride;
The plasticizer is citrate;
The dispersant is Dispersant MF;
The tackifier are butyl trimethoxy silane;
The curing agent is epoxylite curing agent;
The antioxidant is antioxidant 1098;
The heat stabilizer is Dythal;
The antiager is BASF UV-234 antiagers;
The fire retardant is in units of weight portion, including following raw material:Makrolon 60-68 parts, Caprylic Capric three Ester 25-28 parts, 22-24 parts of NPE ammonium sulfate, 18-22 parts of PPOX triol, urea 14-16 parts, oxygen Change 10-12 parts, antimony oxide 9-11 parts, lead oxide 7-10 parts, bentonite 8-12 parts, bleeding agent 1-2 parts of aluminium;
The smoke suppressant is in units of weight portion, including following raw material:Tributyltin oxide 32-42 parts, lead hydroxide 16- 21 parts, diatomite 12-20 parts, aluminium hydroxide 8-10 parts, ammonium octamolybdate 4-6 parts, stearic acid 1.5-2 parts;
The preparation method of printing consumables prepared by the high level cycling and reutilization waste plastic, comprises the following steps:
S1:Dried after waste plastic is cleaned to water content≤0.8%, 200-300 mesh sieve is crossed after then crushing, be obtained Plastic powders;
S2:It it is 70-74 DEG C in temperature to surfactant is added in plastic powders obtained in step S1, rotating speed is 150- 1.2-1.8h is activated under 180r/min, activated plastics powder is obtained;
S3:Graphene is crushed, 200-300 mesh sieve is crossed, powder is obtained, gained powder is 7000- in magnetic field intensity 8200GS, ultrasonic power is 520-650W, and temperature is 52-56 DEG C, under rotating speed is 200-300r/min, stirs 42-55min, Graphene energy powder is obtained;
S4:Under nitrogen protection, to Graphene energy obtained in addition step S3 in activated plastics powder obtained in step S2 Amount powder, wood powder, PLA, PTPP, ethylene glycol ether acetate, conditioning agent, propellant, crosslinking agent, catalyst, increasing Modeling agent, dispersant, tackifier, are 260-270W in microwave power, and temperature is 132-140 DEG C, and rotating speed is under 200-400r/min Stirring 3-4h, is obtained mixture I;
S5:To addition curing agent, antioxidant, heat stabilizer, antiager, fire retardant, suppression in mixture I obtained in step S4 Fumicants, is 72-75 DEG C in temperature, and rotating speed is obtained mixture II to stir 1.8-2.2h under 100-200r/min;
The preparation method of the fire retardant, comprises the following steps:
A () adds NPE ammonium sulfate, water 320-400 parts in microwave reactor, be in speed of agitator 8-12min is stirred under 300-500r/min, mixture A is obtained;
B () is to addition ethylene glycol ether acetate, Miglyol 812N, polyoxygenated in mixture A obtained in step a Propylene triol, urea, aluminum oxide, antimony oxide, lead oxide, bentonite, bleeding agent, are 200-400r/ in speed of agitator Min, microwave power is 350-400W, and temperature is obtained mixture B to stir 1.3-1.8h at 92-96 DEG C, and the bleeding agent is to ooze Saturating agent JFC;
C () filters sediment by after mixture B is cooled to room temperature obtained in step b, be 4000-5000r/ in rotating speed Centrifugal drying is obtained fire retardant to water content≤1% under min;
The preparation method of the smoke suppressant, comprises the following steps:
(A) tributyltin oxide, lead hydroxide, diatomite, aluminium hydroxide, ammonium octamolybdate, stearic acid are mixed, in stirring Rotating speed is 300-400r/min, and microwave power is 200-250W, and temperature is obtained mixture to stir 1-1.5h at 110-120 DEG C C;
(B) after mixture C obtained in step A being cooled into room temperature, sediment is filtered, is 4000-5000r/ in rotating speed Centrifugal drying is obtained smoke suppressant to water content≤1% under min;
S6:Mixture II obtained in step S5 is put into screw extruding forming machine, is 190-200 DEG C, rotating speed in temperature Under for 125-140r/min, through extruding strand, printing consumables prepared by high level cycling and reutilization waste plastic, the printing is obtained Consumptive material is applied in 3d printings.
Below by more specific embodiment, the present invention will be described.
Embodiment 1
Printing consumables prepared by a kind of high level cycling and reutilization waste plastic, it is in units of weight portion including following Raw material:200 parts of waste plastic, 138 parts of wood powder, 50 parts of PLA, 28 parts of PTPP, 32 parts of ethylene glycol ether acetate, 3 parts of Graphene, 1.3 parts of surfactant, 0.6 part of conditioning agent, 0.4 part of propellant, 0.7 part of crosslinking agent, 0.4 part of catalyst, increasing It is 0.6 part of agent of modeling, 0.4 part of dispersant, 0.3 part of tackifier, 1.6 parts of curing agent, 0.3 part of antioxidant, 0.3 part of heat stabilizer, anti-ageing 1.2 parts of agent, 1.6 parts of fire retardant, 1.3 parts of smoke suppressant;
The surfactant is Pluronic F68;
The conditioning agent is ACR;
The propellant is aerogel generating agent;
The crosslinking agent is crosslinking aid S AC-100;
The catalyst is vanadic anhydride;
The plasticizer is citrate;
The dispersant is Dispersant MF;
The tackifier are butyl trimethoxy silane;
The curing agent is epoxylite curing agent;
The antioxidant is antioxidant 1098;
The heat stabilizer is Dythal;
The antiager is BASF UV-234 antiagers;
The fire retardant is in units of weight portion, including following raw material:65 parts of makrolon, Miglyol 812N 27 Part, 23 parts of NPE ammonium sulfate, 20 parts of PPOX triol, 15 parts of urea, 12 parts of aluminum oxide, three oxidations two 10 parts of antimony, 8 parts of lead oxide, 10 parts of bentonite, 1.5 parts of bleeding agent;
The smoke suppressant is in units of weight portion, including following raw material:38 parts of tributyltin oxide, 18 parts of lead hydroxide, 16 parts of diatomite, 9 parts of aluminium hydroxide, 5 parts of ammonium octamolybdate, 1.7 parts of stearic acid;
The preparation method of printing consumables prepared by the high level cycling and reutilization waste plastic, comprises the following steps:
S1:It is 0.8% to be dried after waste plastic is cleaned to water content, and 200 mesh sieve are crossed after then crushing, and plastics are obtained Powder;
S2:It it is 72 DEG C in temperature to surfactant is added in plastic powders obtained in step S1, rotating speed is 170r/min Lower activation 1.5h, is obtained activated plastics powder;
S3:Graphene is crushed, 200 mesh sieve are crossed, powder is obtained, gained powder is 7600GS, ultrasound in magnetic field intensity Wave power is 580W, and temperature is 55 DEG C, and rotating speed is obtained Graphene energy powder under 200r/min, to stir 50min;
S4:Under nitrogen protection, to Graphene energy obtained in addition step S3 in activated plastics powder obtained in step S2 Amount powder, wood powder, PLA, PTPP, ethylene glycol ether acetate, conditioning agent, propellant, crosslinking agent, catalyst, increasing Modeling agent, dispersant, tackifier, are 265W in microwave power, and temperature is 136 DEG C, and rotating speed is obtained to stir 3.5h under 300r/min Mixture I;
S5:To addition curing agent, antioxidant, heat stabilizer, antiager, fire retardant, suppression in mixture I obtained in step S4 Fumicants, is 73 DEG C in temperature, and rotating speed is obtained mixture II to stir 2h under 100r/min;
The preparation method of the fire retardant, comprises the following steps:
A () adds NPE ammonium sulfate, 380 parts of water in microwave reactor, be 400r/ in speed of agitator 10min is stirred under min, mixture A is obtained;
B () is to addition ethylene glycol ether acetate, Miglyol 812N, polyoxygenated in mixture A obtained in step a Propylene triol, urea, aluminum oxide, antimony oxide, lead oxide, bentonite, bleeding agent, are 300r/min in speed of agitator, micro- Wave power is 380W, and temperature is obtained mixture B to stir 1.7h at 95 DEG C, and the bleeding agent is penetrating agent JFC;
C () filters sediment by after mixture B is cooled to room temperature obtained in step b, in the case where rotating speed is 4500r/min Centrifugal drying to water content is 1%, and fire retardant is obtained;
The preparation method of the smoke suppressant, comprises the following steps:
(A) tributyltin oxide, lead hydroxide, diatomite, aluminium hydroxide, ammonium octamolybdate, stearic acid are mixed, in stirring Rotating speed is 300r/min, and microwave power is 220W, and temperature is obtained mixture C to stir 1.2h at 110 DEG C;
(B) after mixture C obtained in step A being cooled into room temperature, sediment is filtered, in the case where rotating speed is 4500r/min Centrifugal drying to water content is 1%, and smoke suppressant is obtained;
S6:Mixture II obtained in step S5 is put into screw extruding forming machine, is 195 DEG C in temperature, rotating speed is Under 132r/min, through extruding strand, printing consumables prepared by high level cycling and reutilization waste plastic is obtained, the printing consumables should In being printed for 3d.
Embodiment 2
Printing consumables prepared by a kind of high level cycling and reutilization waste plastic, it is in units of weight portion including following Raw material:176 parts of waste plastic, 108 parts of wood powder, 42 parts of PLA, 24 parts of PTPP, 28 parts of ethylene glycol ether acetate, 2 parts of Graphene, 1 part of surfactant, 0.4 part of conditioning agent, 0.3 part of propellant, 0.5 part of crosslinking agent, 0.3 part of catalyst, plasticising 0.4 part of agent, 0.3 part of dispersant, 0.3 part of tackifier, 1 part of curing agent, 0.2 part of antioxidant, 0.2 part of heat stabilizer, antiager 0.8 Part, 1.3 parts of fire retardant, 1 part of smoke suppressant;
The surfactant is Pluronic F68;
The conditioning agent is ACR;
The propellant is aerogel generating agent;
The crosslinking agent is crosslinking aid S AC-100;
The catalyst is vanadic anhydride;
The plasticizer is citrate;
The dispersant is Dispersant MF;
The tackifier are butyl trimethoxy silane;
The curing agent is epoxylite curing agent;
The antioxidant is antioxidant 1098;
The heat stabilizer is Dythal;
The antiager is BASF UV-234 antiagers;
The fire retardant is in units of weight portion, including following raw material:60 parts of makrolon, Miglyol 812N 25 Part, 22 parts of NPE ammonium sulfate, 18 parts of PPOX triol, 14 parts of urea, 10 parts of aluminum oxide, three oxidations two 9 parts of antimony, 7 parts of lead oxide, 8 parts of bentonite, 1 part of bleeding agent;
The smoke suppressant is in units of weight portion, including following raw material:32 parts of tributyltin oxide, 16 parts of lead hydroxide, 12 parts of diatomite, 8 parts of aluminium hydroxide, 4 parts of ammonium octamolybdate, 1.5 parts of stearic acid;
The preparation method of printing consumables prepared by the high level cycling and reutilization waste plastic, comprises the following steps:
S1:It is 0.6% to be dried after waste plastic is cleaned to water content, and 200 mesh sieve are crossed after then crushing, and plastics are obtained Powder;
S2:It it is 70 DEG C in temperature to surfactant is added in plastic powders obtained in step S1, rotating speed is 150r/min Lower activation 1.8h, is obtained activated plastics powder;
S3:Graphene is crushed, 200 mesh sieve are crossed, powder is obtained, gained powder is 7000GS, ultrasound in magnetic field intensity Wave power is 520W, and temperature is 52 DEG C, and rotating speed is obtained Graphene energy powder under 200r/min, to stir 55min;
S4:Under nitrogen protection, to Graphene energy obtained in addition step S3 in activated plastics powder obtained in step S2 Amount powder, wood powder, PLA, PTPP, ethylene glycol ether acetate, conditioning agent, propellant, crosslinking agent, catalyst, increasing Modeling agent, dispersant, tackifier, are 260W in microwave power, and temperature is 132 DEG C, and rotating speed is obtained mixed to stir 4h under 200r/min Compound I;
S5:To addition curing agent, antioxidant, heat stabilizer, antiager, fire retardant, suppression in mixture I obtained in step S4 Fumicants, is 72 DEG C in temperature, and rotating speed is obtained mixture II to stir 2.2h under 100r/min;
The preparation method of the fire retardant, comprises the following steps:
A () adds NPE ammonium sulfate, 320 parts of water in microwave reactor, be 300r/ in speed of agitator 12min is stirred under min, mixture A is obtained;
B () is to addition ethylene glycol ether acetate, Miglyol 812N, polyoxygenated in mixture A obtained in step a Propylene triol, urea, aluminum oxide, antimony oxide, lead oxide, bentonite, bleeding agent, are 200r/min in speed of agitator, micro- Wave power is 350W, and temperature is obtained mixture B to stir 1.8h at 92 DEG C, and the bleeding agent is penetrating agent JFC;
C () filters sediment by after mixture B is cooled to room temperature obtained in step b, in the case where rotating speed is 4000r/min Centrifugal drying to water content is 0.9%, and fire retardant is obtained;
The preparation method of the smoke suppressant, comprises the following steps:
(A) tributyltin oxide, lead hydroxide, diatomite, aluminium hydroxide, ammonium octamolybdate, stearic acid are mixed, in stirring Rotating speed is 300r/min, and microwave power is 200W, and temperature is obtained mixture C to stir 1.5h at 110 DEG C;
(B) after mixture C obtained in step A being cooled into room temperature, sediment is filtered, in the case where rotating speed is 4000r/min Centrifugal drying to water content is 0.8%, and smoke suppressant is obtained;
S6:Mixture II obtained in step S5 is put into screw extruding forming machine, is 190 DEG C in temperature, rotating speed is Under 125r/min, through extruding strand, printing consumables prepared by high level cycling and reutilization waste plastic is obtained, the printing consumables should In being printed for 3d.
Embodiment 3
Printing consumables prepared by a kind of high level cycling and reutilization waste plastic, it is in units of weight portion including following Raw material:230 parts of waste plastic, 160 parts of wood powder, 58 parts of PLA, 32 parts of PTPP, 34 parts of ethylene glycol ether acetate, 4 parts of Graphene, 1.6 parts of surfactant, 0.8 part of conditioning agent, 0.5 part of propellant, 0.8 part of crosslinking agent, 0.5 part of catalyst, increasing 0.7 part of agent of modeling, 0.5 part of dispersant, 0.4 part of tackifier, 2 parts of curing agent, 0.4 part of antioxidant, 0.4 part of heat stabilizer, antiager 1.5 parts, 1.8 parts of fire retardant, 1.5 parts of smoke suppressant;
The surfactant is Pluronic F68;
The conditioning agent is ACR;
The propellant is aerogel generating agent;
The crosslinking agent is crosslinking aid S AC-100;
The catalyst is vanadic anhydride;
The plasticizer is citrate;
The dispersant is Dispersant MF;
The tackifier are butyl trimethoxy silane;
The curing agent is epoxylite curing agent;
The antioxidant is antioxidant 1098;
The heat stabilizer is Dythal;
The antiager is BASF UV-234 antiagers;
The fire retardant is in units of weight portion, including following raw material:68 parts of makrolon, Miglyol 812N 28 Part, 24 parts of NPE ammonium sulfate, 22 parts of PPOX triol, 16 parts of urea, 12 parts of aluminum oxide, three oxidations two 11 parts of antimony, 10 parts of lead oxide, 12 parts of bentonite, 2 parts of bleeding agent;
The smoke suppressant is in units of weight portion, including following raw material:42 parts of tributyltin oxide, 21 parts of lead hydroxide, 20 parts of diatomite, 10 parts of aluminium hydroxide, 6 parts of ammonium octamolybdate, 2 parts of stearic acid;
The preparation method of printing consumables prepared by the high level cycling and reutilization waste plastic, comprises the following steps:
S1:It is 0.6% to be dried after waste plastic is cleaned to water content, and 300 mesh sieve are crossed after then crushing, and plastics are obtained Powder;
S2:It it is 74 DEG C in temperature to surfactant is added in plastic powders obtained in step S1, rotating speed is 180r/min Lower activation 1.2h, is obtained activated plastics powder;
S3:Graphene is crushed, 300 mesh sieve are crossed, powder is obtained, gained powder is 8200GS, ultrasound in magnetic field intensity Wave power is 650W, and temperature is 56 DEG C, and rotating speed is obtained Graphene energy powder under 300r/min, to stir 42min;
S4:Under nitrogen protection, to Graphene energy obtained in addition step S3 in activated plastics powder obtained in step S2 Amount powder, wood powder, PLA, PTPP, ethylene glycol ether acetate, conditioning agent, propellant, crosslinking agent, catalyst, increasing Modeling agent, dispersant, tackifier, are 270W in microwave power, and temperature is 140 DEG C, and rotating speed is obtained mixed to stir 3h under 400r/min Compound I;
S5:To addition curing agent, antioxidant, heat stabilizer, antiager, fire retardant, suppression in mixture I obtained in step S4 Fumicants, is 75 DEG C in temperature, and rotating speed is obtained mixture II to stir 1.8h under 200r/min;
The preparation method of the fire retardant, comprises the following steps:
A () adds NPE ammonium sulfate, 400 parts of water in microwave reactor, be 500r/ in speed of agitator 8min is stirred under min, mixture A is obtained;
B () is to addition ethylene glycol ether acetate, Miglyol 812N, polyoxygenated in mixture A obtained in step a Propylene triol, urea, aluminum oxide, antimony oxide, lead oxide, bentonite, bleeding agent, are 400r/min in speed of agitator, micro- Wave power is 400W, and temperature is obtained mixture B to stir 1.3h at 96 DEG C, and the bleeding agent is penetrating agent JFC;
C () filters sediment by after mixture B is cooled to room temperature obtained in step b, in the case where rotating speed is 5000r/min Centrifugal drying to water content is 0.7%, and fire retardant is obtained;
The preparation method of the smoke suppressant, comprises the following steps:
(A) tributyltin oxide, lead hydroxide, diatomite, aluminium hydroxide, ammonium octamolybdate, stearic acid are mixed, in stirring Rotating speed is 400r/min, and microwave power is 250W, and temperature is obtained mixture C to stir 1h at 120 DEG C;
(B) after mixture C obtained in step A being cooled into room temperature, sediment is filtered, in the case where rotating speed is 5000r/min Centrifugal drying to water content is 0.8%, and smoke suppressant is obtained;
S6:Mixture II obtained in step S5 is put into screw extruding forming machine, is 200 DEG C in temperature, rotating speed is Under 140r/min, through extruding strand, printing consumables prepared by high level cycling and reutilization waste plastic is obtained, the printing consumables should In being printed for 3d.
After testing, its performance is such as printing consumables prepared by high level cycling and reutilization waste plastic prepared by the present embodiment 1-3 Shown in following table:
As seen from the above table, the printing consumables good flame retardation effect that prepared by high level cycling and reutilization waste plastic of the invention, resists Impact capacity is strong, and toughness is strong, is a kind of excellent fire-retardant Graphene Modified wood plastic material of performance, can be applicable, and has significant warp Ji and social benefit.
Above content is confined to these explanations it cannot be assumed that the present invention is embodied, for the technical field of the invention Those of ordinary skill for, under the premise of present inventive concept is not departed from, some simple deduction or replace can also be made, all should When being considered as belonging to the scope of patent protection that claims by being submitted to of the present invention determine.

Claims (10)

1. the printing consumables that prepared by a kind of high level cycling and reutilization waste plastic, it is characterised in that in units of weight portion, including Following raw material:Waste plastic 175-230 parts, wood powder 106-160 parts, PLA 42-58 parts, PTPP 24-32 parts, second two 28-34 parts of alcohol ethyl ether acetate ester, Graphene 2-4 parts, surfactant 1-1.6 parts, conditioning agent 0.4-0.8 parts, propellant 0.3- 0.5 part, crosslinking agent 0.5-0.8 parts, catalyst 0.3-0.5 parts, plasticizer 0.4-0.7 parts, dispersant 0.3-0.5 parts, tackifier 0.3-0.4 parts, curing agent 1-2 parts, antioxidant 0.2-0.4 parts, heat stabilizer 0.2-0.4 parts, antiager 0.8-1.5 parts, it is fire-retardant Agent 1.3-1.8 parts, smoke suppressant 1-1.5 parts;
The surfactant is Pluronic F68;
The conditioning agent is ACR;
The propellant is aerogel generating agent;
The crosslinking agent is crosslinking aid S AC-100;
The fire retardant is in units of weight portion, including following raw material:Makrolon 60-68 parts, Miglyol 812N 25- 28 parts, 22-24 parts of NPE ammonium sulfate, 18-22 parts of PPOX triol, urea 14-16 parts, aluminum oxide 10-12 parts, antimony oxide 9-11 parts, lead oxide 7-10 parts, bentonite 8-12 parts, bleeding agent 1-2 parts;
The smoke suppressant is in units of weight portion, including following raw material:Tributyltin oxide 32-42 parts, lead hydroxide 16-21 Part, diatomite 12-20 parts, aluminium hydroxide 8-10 parts, ammonium octamolybdate 4-6 parts, stearic acid 1.5-2 parts.
2. the printing consumables that prepared by high level cycling and reutilization waste plastic according to claim 1, it is characterised in that described Catalyst is vanadic anhydride.
3. the printing consumables that prepared by high level cycling and reutilization waste plastic according to claim 1, it is characterised in that described Plasticizer is citrate.
4. the printing consumables that prepared by high level cycling and reutilization waste plastic according to claim 1, it is characterised in that described Dispersant is Dispersant MF.
5. the printing consumables that prepared by high level cycling and reutilization waste plastic according to claim 1, it is characterised in that described Tackifier are butyl trimethoxy silane.
6. the printing consumables that prepared by high level cycling and reutilization waste plastic according to claim 1, it is characterised in that described Curing agent is epoxylite curing agent.
7. the printing consumables that prepared by high level cycling and reutilization waste plastic according to claim 1, it is characterised in that described Antioxidant is antioxidant 1098.
8. the printing consumables that prepared by high level cycling and reutilization waste plastic according to claim 1, it is characterised in that described Heat stabilizer is Dythal.
9. the printing consumables that prepared by high level cycling and reutilization waste plastic according to claim 1, it is characterised in that described Antiager is BASF UV-234 antiagers.
10. the preparation of printing consumables prepared by the high level cycling and reutilization waste plastic according to claim any one of 1-9 Method, it is characterised in that comprise the following steps:
S1:Dried after waste plastic is cleaned to water content≤0.8%, 200-300 mesh sieve is crossed after then crushing, plastics are obtained Powder;
S2:It it is 70-74 DEG C in temperature to surfactant is added in plastic powders obtained in step S1, rotating speed is 150-180r/ 1.2-1.8h is activated under min, activated plastics powder is obtained;
S3:Graphene is crushed, 200-300 mesh sieve is crossed, powder is obtained, gained powder is 7000-8200GS in magnetic field intensity, Ultrasonic power is 520-650W, and temperature is 52-56 DEG C, and rotating speed is obtained graphite under 200-300r/min, to stir 42-55min Alkene energy powder;
S4:Under nitrogen protection, to Graphene energy powder obtained in addition step S3 in activated plastics powder obtained in step S2 End, wood powder, PLA, PTPP, ethylene glycol ether acetate, conditioning agent, propellant, crosslinking agent, catalyst, plasticising Agent, dispersant, tackifier, microwave power be 260-270W, temperature be 132-140 DEG C, rotating speed be 200-400r/min under stir 3-4h is mixed, mixture I is obtained;
S5:To addition curing agent, antioxidant, heat stabilizer, antiager, fire retardant, suppression cigarette in mixture I obtained in step S4 Agent, is 72-75 DEG C in temperature, and rotating speed is obtained mixture II to stir 1.8-2.2h under 100-200r/min;
The preparation method of the fire retardant, comprises the following steps:
A () adds NPE ammonium sulfate, water 320-400 parts in microwave reactor, be 300- in speed of agitator 8-12min is stirred under 500r/min, mixture A is obtained;
B () is to addition ethylene glycol ether acetate, Miglyol 812N, PPOX in mixture A obtained in step a Triol, urea, aluminum oxide, antimony oxide, lead oxide, bentonite, bleeding agent, are 200-400r/min in speed of agitator, micro- Wave power is 350-400W, and temperature is obtained mixture B to stir 1.3-1.8h at 92-96 DEG C, and the bleeding agent is bleeding agent JFC;
C () filters sediment by after mixture B is cooled to room temperature obtained in step b, in the case where rotating speed is 4000-5000r/min Centrifugal drying is obtained fire retardant to water content≤1%;
The preparation method of the smoke suppressant, comprises the following steps:
(A) tributyltin oxide, lead hydroxide, diatomite, aluminium hydroxide, ammonium octamolybdate, stearic acid are mixed, in speed of agitator It is 300-400r/min, microwave power is 200-250W, and temperature is obtained mixture C to stir 1-1.5h at 110-120 DEG C;
(B) after mixture C obtained in step A being cooled into room temperature, sediment is filtered, in the case where rotating speed is 4000-5000r/min Centrifugal drying is obtained smoke suppressant to water content≤1%;
S6:Mixture II obtained in step S5 is put into screw extruding forming machine, is 190-200 DEG C in temperature, rotating speed is Under 125-140r/min, through extruding strand, printing consumables prepared by high level cycling and reutilization waste plastic is obtained.
CN201710143556.XA 2017-03-12 2017-03-12 Printing consumables prepared by a kind of high level cycling and reutilization waste plastic and preparation method thereof Withdrawn CN106832595A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201710143556.XA CN106832595A (en) 2017-03-12 2017-03-12 Printing consumables prepared by a kind of high level cycling and reutilization waste plastic and preparation method thereof

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201710143556.XA CN106832595A (en) 2017-03-12 2017-03-12 Printing consumables prepared by a kind of high level cycling and reutilization waste plastic and preparation method thereof

Publications (1)

Publication Number Publication Date
CN106832595A true CN106832595A (en) 2017-06-13

Family

ID=59145080

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201710143556.XA Withdrawn CN106832595A (en) 2017-03-12 2017-03-12 Printing consumables prepared by a kind of high level cycling and reutilization waste plastic and preparation method thereof

Country Status (1)

Country Link
CN (1) CN106832595A (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107141546A (en) * 2017-06-23 2017-09-08 广西南宁桂尔创环保科技有限公司 3D printing consumptive material prepared by a kind of high level cycling and reutilization waste rubber and preparation method thereof
CN109021392A (en) * 2018-07-11 2018-12-18 合肥广民建材有限公司 A kind of fire-resistant waterproof Wood plastic boards and preparation method thereof

Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106317935A (en) * 2016-09-08 2017-01-11 广西南宁桂尔创环保科技有限公司 Environmental-friendly artificial board
CN106380745A (en) * 2016-10-17 2017-02-08 黄宇 Graphene-modified PVC (polyvinyl chloride) material
CN106479050A (en) * 2016-10-17 2017-03-08 蒙宇 A kind of 3D printing wood plastic composite

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106317935A (en) * 2016-09-08 2017-01-11 广西南宁桂尔创环保科技有限公司 Environmental-friendly artificial board
CN106380745A (en) * 2016-10-17 2017-02-08 黄宇 Graphene-modified PVC (polyvinyl chloride) material
CN106479050A (en) * 2016-10-17 2017-03-08 蒙宇 A kind of 3D printing wood plastic composite

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107141546A (en) * 2017-06-23 2017-09-08 广西南宁桂尔创环保科技有限公司 3D printing consumptive material prepared by a kind of high level cycling and reutilization waste rubber and preparation method thereof
CN107141546B (en) * 2017-06-23 2018-06-05 东莞市好印象实业有限公司 3D printing consumptive material prepared by a kind of high level cycling and reutilization waste rubber and preparation method thereof
CN108690240A (en) * 2017-06-23 2018-10-23 惠安县信达友工业设计有限公司 A kind of fire retardant and preparation method thereof
CN109021392A (en) * 2018-07-11 2018-12-18 合肥广民建材有限公司 A kind of fire-resistant waterproof Wood plastic boards and preparation method thereof

Similar Documents

Publication Publication Date Title
CN106751597A (en) Modified sheathing material of a kind of Graphene and preparation method thereof
CN106752056A (en) A kind of modified Environment-friendlywear-resistant wear-resistant plastic material of Graphene
CN106832595A (en) Printing consumables prepared by a kind of high level cycling and reutilization waste plastic and preparation method thereof
CN105086472A (en) Carbon-based porous flexible composite wave-absorbing material and preparation method thereof
CN104944846B (en) Compression-resistant fireproof board and preparation method thereof
CN106833000A (en) A kind of flame retardant type stone wood plastic composite, preparation method and applications
CN108102255A (en) A kind of flame retardant type PVC wood plastic plate and preparation method thereof
CN106928666A (en) A kind of modified printing of Graphene radiating consumptive material and its application
CN105153564B (en) A kind of Graphene molybdenum oxide nano fire-retarding composite material
CN107057146A (en) A kind of preparation technology for the 3D printing elastomeric material that graphene is modified
CN106589581A (en) Special material for wind wheels of air conditioners and preparation method for special material
CN106010034A (en) Solar heat-absorbing paint with high weatherability
CN106832745A (en) A kind of preparation technology of the modified 3D printing material of Graphene
CN106832999A (en) Composite and its application that a kind of utilization waste plastic is made
CN103194012B (en) Method for preparing rubber reinforcing agent from red mud
CN106893179A (en) A kind of sound insulation type material, preparation method and applications
CN106883546A (en) A kind of modified environmentally friendly heat dissipation composite material of Graphene
CN103898348B (en) A kind of preparation method of foamed aluminium material
CN106893200A (en) A kind of preparation technology of Environmental-protection bamboo plastotype composite
CN106833001A (en) A kind of printing of high impact properties bamboo moulding material
CN106905714A (en) A kind of Graphene modified flame retardant type bamboo moulding material, preparation method and applications
CN107129614A (en) A kind of environmental protection type material of rubber and its application
CN106916469A (en) A kind of environment-friendly materials with high tensile, preparation method and applications
CN107043478A (en) A kind of application of modified rubber
CN106867215A (en) A kind of stone Wood-plastic material strong with toughness and its application

Legal Events

Date Code Title Description
PB01 Publication
PB01 Publication
SE01 Entry into force of request for substantive examination
SE01 Entry into force of request for substantive examination
WW01 Invention patent application withdrawn after publication
WW01 Invention patent application withdrawn after publication

Application publication date: 20170613